Mastercam X4 MU1 includes many exciting new tools, including:
* Multi-threading
* New Dynamic Mill toolpath
* Feature Based Machining (FBM) Drill enhancements
* Feature Based Machining (FBM) Mill enhancements
* Tree-style dialog boxes for 2D toolpaths
* New toolpath refinement delivers improved 3D surface finish
* New Circle 5-axis toolpath
* Multiple materials for generic Mastercam Automatic Toolpathing (ATP)
* Nesting drag-and-drop support
* Vertical/horizontal cut-off options in Nesting
* Updated dialogs for Lathe C-axis toolpaths
* Lathe grooving enhancements
* Support for Agie EDM with Agievision controls
* Post debugger enhancements and new features
* New Dynamic Plane creation method for defining parameters
* Level Manager improvements and reorganization
* Viewsheet improvements
* Wireframe feature recognition in chaining
* User-customizable setup sheet
* Rewritten surface fillet code to improve surfaces
* New Dynamic Xform function
What does this mean for you? It means that when you choose Mastercam, you’re using innovative CAM software that has helped more shops achieve success than any other. It also means that skilled Mastercam users are much easier to find.
Mastercam’s Support is Second to None
Mastercam is supported by a worldwide network of dedicated, expert resellers who focus exclusively on ensuring that Mastercam fits your needs. They know the software, know your area, and are there when you need them.
Mastercam also enjoys a large online user community that offers advice, help, tips and tricks to fellow Mastercam programmers.
Mastercam is Dedicated to the Future
As one of the pioneers in PC-based CAD/CAM, Mastercam has a long history of company security and health. As a privately-owned company, we continue to focus exclusively on the needs of NC programmers. And as a CAD/CAM innovator, we’ll be here to work with you as you move into the future.
2009-10-16
2009-10-14
2009-09 crack software download
2009-09-29 Tekla Structures 15.0 SR4
2009-09-27 SolidCAM 2009 SP0.0 for SolidWorks
2009-09-27 3DQuickMold 2008 SP1 for SW2008-2009
2009-09-26 CimatronE_V9.0_SP1
2009-09-26 SAFETECHNOLOGIES_FE-SAFE_V5.4-04
2009-09-25 Autodesk.Algor.Simulation.Pro.v2010.WiNNT2K
2009-09-24 PGI.Visual.Fortran.2008.v9.0.4
2009-09-22 GIBBSCAM.2009.V9.3.17
2009-09-22 Delcam PartMaker 9.2 SP3
2009-09-22 AUTODESK.IFFFS.2010SP4.WITH.KEYGEN
2009-09-21 СncKad 9.5
2009-09-20 MoldWorks 2009 SP0 for SolidWorks
2009-09-20 SheetWorks v10_sp45
2009-09-19 Cgtech Vericut v7.0
2009-09-18 Geomagic Studio v10 SR1
2009-09-18 AutoCAD.Plant.3D.2010
2009-09-17 Tessel.CADRaster.Pro.v10.1.for.Autocad
2009-09-16 AUTODESK.MOTIONBUILDER.V2010
2009-09-16 IMSI_TURBOCAD_PRO_v16.1.2
2009-09-15 AVL.Fire.v2009
2009-09-15 AUTODESK_SOFTIMAGE_V2010_WIN32&win64
2009-09-14 Novapoint v17.20
2009-09-12 JETCAM EXPERT v15.52
2009-09-10 BioSolveIT.ReCore.v1.8.16.DD
2009-09-08 Bentley AutoPipe v09.01.01.02
2009-09-07 Moldplus 10 MR1 for Mastercam_ X4
2009-09-06 Premier.v12.3.726.iSO.Multilanguage
2009-09-05 DASSAULT.SYSTEMES.CATIA.V5R19.SP5.WIN64
2009-09-04 AVL.Workspace.Suite.v2009
2009-09-04 Cambridge Accelrys Materials Studio 4.3.1
2009-09-02 Friendship.Framework.v2.0.3
2009-09-01 Nemetschek_Allplan_BIM_v2009_MULTiLANGUAGE
2009-09-01 Xceed.Ultimate.Suite.2009.v3.2.9417.Incl.Keygen
from:caxcrack
009-09-26 Cadence MMSIM v7.11.071 Update
2009-09-25 Cadence SOC8.10.002
2009-09-24 xilinx ISE 11.3
2009-09-23 Cadence_IC6.13.541
2009-09-22 Simetrix 5.6
2009-09-21 Cadence Assura v4.10.002
2009-09-18 Synplify FPGA_vC-2009.06
2009-09-16 SpyGlass 4.2
2009-09-15 IAR Embedded Workbench for MSP430 v4.20.1
2009-09-14 IAR Embedded Workbench for ARM v5.40
2009-09-13 Mathworks.Matlab.R2009b
2009-09-12 Proteus V7.6_SP0
2009-09-11 Synopsys_saber_vC-2009.06-SP1
2009-09-10 Cadence IFV 8.1 Linux
2009-09-09 Altera.Quartus.II.v9.0.SP2
2009-09-08 Feko Suite 5.5
2009-09-08 Synopsys Tcad_Taurus_md_vC-2009.06
2009-09-07 Fintronic.Super.FinSim.v10.0.03
2009-09-06 Impulse.CoDeveloper.Universal.v3.60.a.2
2009-09-05 SynaptiCAD.Product.Suite.v14.07d
2009-09-04 Ansoft Maxwell v12.2
2009-09-03 NI.LabVIEW.2009.v9.0.Touch.Panel.Module
2009-09-03 NI.LabVIEW.2009.v9.0.System.Identification.Toolkit
2009-09-03 NI.LabVIEW.2009.v9.0.SoftMotion.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Mobile.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Real.Time.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Microprocessor.SDK
2009-09-03 NI.LabVIEW.2009.v9.0.DSC.Module
2009-09-03 NI.LabVIEW.2009.v9.0
2009-09-03 NI.LabVIEW.2009.v9.0.Control.Design.and.Simulation.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Desktop.Execution.Trace.Toolkit
2009-09-02 Synopsys Cadabra vB-2008.09 Linux
2009-09-02 Synopsys Customdesigner vC-2009.06 Linux
2009-09-02 Synopsys ESP vC-2009.06 Linux
2009-09-02 Cadence.Allegro.SPB.v16.20.014 Update Only
2009-09-02 Synopsys NS vC-2009.06 Linux
2009-09-01 Mentor Graphics FloEFD pro 9.1
2009-09-01 Mentor.Graphics.Expedition.Enterprise.Flow.v2007.6
2009-09-01 Pulsonix 6.0 build 3818
from:caxcrack
2009-09-27 SolidCAM 2009 SP0.0 for SolidWorks
2009-09-27 3DQuickMold 2008 SP1 for SW2008-2009
2009-09-26 CimatronE_V9.0_SP1
2009-09-26 SAFETECHNOLOGIES_FE-SAFE_V5.4-04
2009-09-25 Autodesk.Algor.Simulation.Pro.v2010.WiNNT2K
2009-09-24 PGI.Visual.Fortran.2008.v9.0.4
2009-09-22 GIBBSCAM.2009.V9.3.17
2009-09-22 Delcam PartMaker 9.2 SP3
2009-09-22 AUTODESK.IFFFS.2010SP4.WITH.KEYGEN
2009-09-21 СncKad 9.5
2009-09-20 MoldWorks 2009 SP0 for SolidWorks
2009-09-20 SheetWorks v10_sp45
2009-09-19 Cgtech Vericut v7.0
2009-09-18 Geomagic Studio v10 SR1
2009-09-18 AutoCAD.Plant.3D.2010
2009-09-17 Tessel.CADRaster.Pro.v10.1.for.Autocad
2009-09-16 AUTODESK.MOTIONBUILDER.V2010
2009-09-16 IMSI_TURBOCAD_PRO_v16.1.2
2009-09-15 AVL.Fire.v2009
2009-09-15 AUTODESK_SOFTIMAGE_V2010_WIN32&win64
2009-09-14 Novapoint v17.20
2009-09-12 JETCAM EXPERT v15.52
2009-09-10 BioSolveIT.ReCore.v1.8.16.DD
2009-09-08 Bentley AutoPipe v09.01.01.02
2009-09-07 Moldplus 10 MR1 for Mastercam_ X4
2009-09-06 Premier.v12.3.726.iSO.Multilanguage
2009-09-05 DASSAULT.SYSTEMES.CATIA.V5R19.SP5.WIN64
2009-09-04 AVL.Workspace.Suite.v2009
2009-09-04 Cambridge Accelrys Materials Studio 4.3.1
2009-09-02 Friendship.Framework.v2.0.3
2009-09-01 Nemetschek_Allplan_BIM_v2009_MULTiLANGUAGE
2009-09-01 Xceed.Ultimate.Suite.2009.v3.2.9417.Incl.Keygen
from:caxcrack
009-09-26 Cadence MMSIM v7.11.071 Update
2009-09-25 Cadence SOC8.10.002
2009-09-24 xilinx ISE 11.3
2009-09-23 Cadence_IC6.13.541
2009-09-22 Simetrix 5.6
2009-09-21 Cadence Assura v4.10.002
2009-09-18 Synplify FPGA_vC-2009.06
2009-09-16 SpyGlass 4.2
2009-09-15 IAR Embedded Workbench for MSP430 v4.20.1
2009-09-14 IAR Embedded Workbench for ARM v5.40
2009-09-13 Mathworks.Matlab.R2009b
2009-09-12 Proteus V7.6_SP0
2009-09-11 Synopsys_saber_vC-2009.06-SP1
2009-09-10 Cadence IFV 8.1 Linux
2009-09-09 Altera.Quartus.II.v9.0.SP2
2009-09-08 Feko Suite 5.5
2009-09-08 Synopsys Tcad_Taurus_md_vC-2009.06
2009-09-07 Fintronic.Super.FinSim.v10.0.03
2009-09-06 Impulse.CoDeveloper.Universal.v3.60.a.2
2009-09-05 SynaptiCAD.Product.Suite.v14.07d
2009-09-04 Ansoft Maxwell v12.2
2009-09-03 NI.LabVIEW.2009.v9.0.Touch.Panel.Module
2009-09-03 NI.LabVIEW.2009.v9.0.System.Identification.Toolkit
2009-09-03 NI.LabVIEW.2009.v9.0.SoftMotion.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Mobile.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Real.Time.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Microprocessor.SDK
2009-09-03 NI.LabVIEW.2009.v9.0.DSC.Module
2009-09-03 NI.LabVIEW.2009.v9.0
2009-09-03 NI.LabVIEW.2009.v9.0.Control.Design.and.Simulation.Module
2009-09-03 NI.LabVIEW.2009.v9.0.Desktop.Execution.Trace.Toolkit
2009-09-02 Synopsys Cadabra vB-2008.09 Linux
2009-09-02 Synopsys Customdesigner vC-2009.06 Linux
2009-09-02 Synopsys ESP vC-2009.06 Linux
2009-09-02 Cadence.Allegro.SPB.v16.20.014 Update Only
2009-09-02 Synopsys NS vC-2009.06 Linux
2009-09-01 Mentor Graphics FloEFD pro 9.1
2009-09-01 Mentor.Graphics.Expedition.Enterprise.Flow.v2007.6
2009-09-01 Pulsonix 6.0 build 3818
from:caxcrack
2009-09-22
simetrix-v5.6

Circuit Simulation Software
SIMetrix Technologies provides reliability, ease of use and accuracy in a range of professionally-packaged circuit simulation tools.
With industry-proven performance and technical support to match, SIMetrix Technologies offers an affordable alternative to unsupported freeware and high-priced EDA solutions.
Mixed-mode simulator, superior convergence and speed
Convergence is often a problem with many simulators especially in power electronics. This is because the wide range of currents, voltages and conductances present in power circuits stretches the precision of the underlying algorithms. Many other products have to be coaxed into completing such designs by requiring the user to experiment with various option settings. This is rarely necessary with SIMetrix and is the result of over 15 years of development on the core algorithms and model equations along with real world experience in simulator use.
Extended sweep modes
SIMetrix has six sweep modes applicable to DC, AC, Noise and Transfer Function analyses whereas SPICE has just one for each. For example you can sweep a voltage source at a constant frequency in AC analysis with SIMetrix but not other SPICE programs.
Real time noise analysis
Applies noise in transient analysis. This unique feature makes it possible to analyse noise in oscillators and sampled data systems. Requires SIMetrix Micron A-D or SIMetrix/SIMPLIS Micron
Transient snapshots
Stores the circuit state at any point during a transient run. Result can be used to initialise an AC analysis. Useful for investigating the stability of circuits in operating conditions that cannot be obtained using a DC analysis. Requires SIMetrix Micron A-D or SIMetrix/SIMPLIS Micron
Model support for IC design
Includes, BSIM3, BSIM4, MOS9, MOS11, PSP, Mextram, Hicum, EKV and VBIC models, schematic support for L/W editing. Requires SIMetrix Micron A-D or SIMetrix/SIMPLIS Micron
HSPICE model file compatible
Includes: support for HSPICE syntax for parameter expressions; .LIB/.ENDL support; process binning; .GLOBAL; LEVEL 49 and 53 BSIM3 model parameters. Requires SIMetrix Micron A-D or SIMetrix/SIMPLIS Micron
Fast Monte Carlo analysis
SIMetrix has possibly the fastest Monte Carlo analysis of any PC based product. Unlike other simulators, the SIMetrix Monte Carlo feature is built into the simulator core making it possible to use algorithms that avoid unnecessary repetition.
Sophisticated tolerance specification
As well as high performance SIMetrix also provides sophisticated tolerance specification allowing simple cases to be setup quickly while providing the flexibility needed for large IC designs. SIMetrix also features a facility to create histograms of analysis data using a wide range of goal functions.
Multi-step analysis
Repeats an analysis while varying some circuit variable using one of six modes.
Safe Operating Area (SOA) analysis
Displays violations of voltage, current or power limits as the simulation runs.
Non-linear magnetics with support for air gaps
Two models are available: the Jiles-Atherton hysteresis model and a simple non-hysteresis model.
Power models
Built-in IGBT model compatible with PSpice.
Full support for Infineon physics based models including CoolMos and Optimos devices.
New soft recovery diode model. Includes parameter extraction facility to create models from data sheet values.
Transient restart
Transient analysis can be restarted after the stop time has been reached. Useful when a circuit takes longer to settle than originally expected.
The SIMetrix Environment
Design Entry
Integrated hierarchical schematic editor designed exclusively for simulation and so is not burdened by features needed only for PCB design.
PSpice "Schematics" Translator SIMetrix can directly read in schematic and symbol files from the PSpice "Schematics" program. (The original Microsim program not Orcad Capture).
Comprehensive schematic cross-probing.
Just point and click to plot a voltage, current or device power before, during or after a simulation run.
Waveform Viewer
Powerful waveform viewer with all the features you would expect from a professional circuit simulation package including multiple grids and axes, cursor measurements, annotation features and smart analysis functions.
Models
Parts browser with full support for external SPICE model libraries. Displays a categorised list of parts for easy placement onto the schematic.
Drag and drop SPICE model installation. Just pick up a SPICE model file in windows explorer and drop into SIMetrix. SIMetrix is compatible with 99% of available SPICE models.
2009-09-10
atrenta-SpyGlass-v4.2

Using advanced static and dynamic analysis, the SpyGlass® solution pinpoints structural, coding and consistency problems at RTL. In addition, the solution offers the industy's most comprehensive solution for analysis of clock, reset and clock domain crossings (CDC). It traces problems to their source, helps users resolve issues before they creep into downstream design implementation. The SpyGlass solution also helps address electrical rules (ERC) in the design.
Slashing the Risk of Complex IC Development
The SpyGlass solution greatly reduces the risk of developing complex multimillion-gate, nanometer-scale ICs, enabling companies to build better products, faster and more economically. The SpyGlass solution accurately detects design issues at the point of creation. In traditional flows, such problems are typically discovered much later, at the gate level, if at all, after much time and expense have been invested in the design. With the SpyGlass solution, designers can optimize designs at RTL, when the ability to make enhancements is greatest and the cost of modifications lowest. And the SpyGlass solution flags areas of the design that are likely to present implementation challenges, so that appropriate resources can be applied to mitigate schedule and complexity risk.
In detecting problems and helping effect their resolution, the SpyGlass solution leverages decades of accumulated design experience. It integrates a large base of industry-standard best practices, as well as Atrenta's own extensive experience working with industry-leading customers. It includes design reuse compliance checks such as STARC and OpenMORE to enforce consistent style throughout the design, ease the integration of multi-team and multi-vendor IP and promote design reuse.
The Methodology
Atrenta's SpyGlass solution methodology provides a structured, easy to use and a comprehensive method for solving RTL design issues, thereby ensuring high quality RTL with fewer but meaningful violations.
Provides methodology documentation and rule-sets as part of the product
Provides an infrastructure for rule selection and customization aligned with design milestones
Walks users through a series of recommended steps to ensure design compliance to HDL standards, coding style, synthesis, simulation, verification, connectivity finite-state machine, clock and reset issues
This step-by-step approach detects and fixes design bugs in alignment with design milestones, and ensures predictable design closure without any last minute surprises or a high volume of violations
Features & Benefits
Sophisticated static and dynamic analysis--identifies critical design issues at RTL
Industry-leading comprehensive clock, reset and clock domain crossing (CDC) analysis
A comprehensive set of electrical rules checks to ensure netlist integrity
Customizable framework to capture and automate company expertise
High performance and capacity to rapidly analyze complex, multimillion-gate designs
Integrated debug environment enables easy cross-probing among violation reports, schematic and RTL source
The most comprehensive knowledge base of design expertise and industry-standard best practices
Supports Verilog, VHDL, V2K, SystemVerilog and mixed-language designs
2009-09-08
MVTec- HALCON-v9.0.1
HALCON 9.0 licenses are also valid for HALCON 9.0.1. In contrast, all HALCON 8.0 licenses must be replaced or upgraded. Please contact your local distributor.
o HALCON Library
HALCON 9.0.1 is fully compatible with HALCON 9.0. Compared to HALCON 8.0, many extensions have been introduced. Thus, the HALCON 9.0.1 libraries are not compatible with HALCON 8.0 or earlier versions.
o HALCON Applications
Applications (i.e., executables) developed with HALCON 9.0 can be used with HALCON 9.0.1, i.e., HALCON 9.0.1 is binary compatible with HALCON 9.0.
The incompatibility with HALCON 8.0 or earlier versions mainly concerns the binaries, with only few changes in the language interfaces. If you encounter problems during recompiling your programs, please check the detailed description of changes below and for HALCON 9.0, respectively.
Please note the following source-code incompatibilities:
* Because problems concerning erroneous calculations for the polynomial camera model have been fixed, all camera parameters using the polynomial camera model obtained by camera_calibration or binocular_calibration cannot be used anymore and must be recomputed. Additionally, all 3D shape models, descriptor models, deformable models, and sheet-of-light models using the polynomial camera model must be recreated.
* Applications that use the operators find_uncalib_descriptor_model or find_calib_descriptor_model might need adapted parameter values because of the new point matching algorithm.
* Applications that use the operator points_lepetit might need adapted parameter values because of the modified score calculation of this operator.
* The output of gen_arrow_contour_xld for point pairs with identical start and end points has been changed so that now an XLD consisting of a single point is returned.
* Because problems concerning the assignment of the axes shown in the '3d_plot' paint mode have been fixed, all applications that supply a quaternion in the call to set_paint must be adapted.
* Because the error messages for wrong input control parameters returned by zoom_image_factor and zoom_image_size have been corrected, programs that evaluate the returned error messages must be adapted accordingly.
Please note that applications using HALCON/.NET (and HDevEngine/.NET) have local copies of the corresponding assemblies (halcondotnet.dll etc.). After installing HALCON 9.0.1, these applications would therefore still use the old HALCON versions. You must either replace the assemblies manually or re-compile the projects.
o HALCON Library
HALCON 9.0.1 is fully compatible with HALCON 9.0. Compared to HALCON 8.0, many extensions have been introduced. Thus, the HALCON 9.0.1 libraries are not compatible with HALCON 8.0 or earlier versions.
o HALCON Applications
Applications (i.e., executables) developed with HALCON 9.0 can be used with HALCON 9.0.1, i.e., HALCON 9.0.1 is binary compatible with HALCON 9.0.
The incompatibility with HALCON 8.0 or earlier versions mainly concerns the binaries, with only few changes in the language interfaces. If you encounter problems during recompiling your programs, please check the detailed description of changes below and for HALCON 9.0, respectively.
Please note the following source-code incompatibilities:
* Because problems concerning erroneous calculations for the polynomial camera model have been fixed, all camera parameters using the polynomial camera model obtained by camera_calibration or binocular_calibration cannot be used anymore and must be recomputed. Additionally, all 3D shape models, descriptor models, deformable models, and sheet-of-light models using the polynomial camera model must be recreated.
* Applications that use the operators find_uncalib_descriptor_model or find_calib_descriptor_model might need adapted parameter values because of the new point matching algorithm.
* Applications that use the operator points_lepetit might need adapted parameter values because of the modified score calculation of this operator.
* The output of gen_arrow_contour_xld for point pairs with identical start and end points has been changed so that now an XLD consisting of a single point is returned.
* Because problems concerning the assignment of the axes shown in the '3d_plot' paint mode have been fixed, all applications that supply a quaternion in the call to set_paint must be adapted.
* Because the error messages for wrong input control parameters returned by zoom_image_factor and zoom_image_size have been corrected, programs that evaluate the returned error messages must be adapted accordingly.
Please note that applications using HALCON/.NET (and HDevEngine/.NET) have local copies of the corresponding assemblies (halcondotnet.dll etc.). After installing HALCON 9.0.1, these applications would therefore still use the old HALCON versions. You must either replace the assemblies manually or re-compile the projects.
2009-09-07
Pipeline-Studio-v3.2 llicense
PipelineStudio is the industry-leading pipeline design and engineering solution that combines graphical configuration and reporting tools with industry-proven simulation engines. It provides fast, accurate, robust and reliable answers to a wide range of steady-state and transient analysis challenges.
PipelineStudio delivers rapid and accurate offline design, planning and hydraulic analysis for natural gas and liquid pipelines through advanced state-of-the-art simulation techniques. The combination of both steady-state and transient hydraulic simulation within a feature rich Windows graphical interface enables better understanding of even the most demanding problems by providing appropriate analysis of the process. PipelineStudio has been proven to be an effective decision support tool that really can deliver financial benefit to your organization.
Its familiar Windows look and feel makes it easy to use right out of the box. Workflow enhancing techniques such as templates and complexity management along with a comprehensive set of pipes and pipeline equipment enable rapid configuration of robust and accurate models of your whole pipeline network. And once PipelineStudio has constructed an engineering model of your pipeline network, the same model can be integrated into custom applications, or other EnergySolutions products, to enhance specific business processes and your financial performance.
Use PipelineStudio for:
* Flow assurance
* Designing, routing, sizing of pipeline networks
* Upset, leak and survival time analysis
* Strategic, operational and capacity planning
* Rapid assessment of unscheduled changes in operation
* Operational prognosis
* Compressor requirements
* Fuel consumption calculations
* Line pack management
* Assessment of storage requirements
* Surge Analysis
PipelineStudio delivers rapid and accurate offline design, planning and hydraulic analysis for natural gas and liquid pipelines through advanced state-of-the-art simulation techniques. The combination of both steady-state and transient hydraulic simulation within a feature rich Windows graphical interface enables better understanding of even the most demanding problems by providing appropriate analysis of the process. PipelineStudio has been proven to be an effective decision support tool that really can deliver financial benefit to your organization.
Its familiar Windows look and feel makes it easy to use right out of the box. Workflow enhancing techniques such as templates and complexity management along with a comprehensive set of pipes and pipeline equipment enable rapid configuration of robust and accurate models of your whole pipeline network. And once PipelineStudio has constructed an engineering model of your pipeline network, the same model can be integrated into custom applications, or other EnergySolutions products, to enhance specific business processes and your financial performance.
Use PipelineStudio for:
* Flow assurance
* Designing, routing, sizing of pipeline networks
* Upset, leak and survival time analysis
* Strategic, operational and capacity planning
* Rapid assessment of unscheduled changes in operation
* Operational prognosis
* Compressor requirements
* Fuel consumption calculations
* Line pack management
* Assessment of storage requirements
* Surge Analysis
LMS-RAYNOISE-v3.1 license-crack
LMS RAYNOISE
Computer-aided refinement of building acoustics…
A successful building project is one which combines aesthetic appeal with a practical functionality. But how can you guarantee that people can talk to each other in comfort – or understand an important announcement? Can you be sure that a new housing development will not suffer from highway noise – or the factory that you want to build? Will the audience in cinemas, theaters, and concert halls be amazed at the exquisite sound quality – or be shocked by the echoes, flutters and muffled production? It is so easy to make a mistake – and fixing an acoustic problem by palliative treatments is very, very expensive.
LMS RAYNOISE is a computer-aided acoustic design and analysis system for the architect or building acoustician. It uses advanced acoustic ray tracing methods to predict the sound field produced from multiple sources at any location inside a 3D space and in the far field outside. It automatically handles complex interactions - such as multiple reflections from different surfaces. The results are shown in a variety of ways – from 1/3 octave spectra and echograms, to colormapped SPLs and a choice of sound quality metrics. You can even listen to how a performance would sound from any seat in the auditorium using binaural playback.
LMS RAYNOISE enables you to model, design, and even optimize the acoustic character of your project while it is still on the drawing board. You’ll be able to make well informed concept decisions; examine more candidate designs – and avoid the flawed concept altogether.
Computer-aided refinement of building acoustics…
A successful building project is one which combines aesthetic appeal with a practical functionality. But how can you guarantee that people can talk to each other in comfort – or understand an important announcement? Can you be sure that a new housing development will not suffer from highway noise – or the factory that you want to build? Will the audience in cinemas, theaters, and concert halls be amazed at the exquisite sound quality – or be shocked by the echoes, flutters and muffled production? It is so easy to make a mistake – and fixing an acoustic problem by palliative treatments is very, very expensive.
LMS RAYNOISE is a computer-aided acoustic design and analysis system for the architect or building acoustician. It uses advanced acoustic ray tracing methods to predict the sound field produced from multiple sources at any location inside a 3D space and in the far field outside. It automatically handles complex interactions - such as multiple reflections from different surfaces. The results are shown in a variety of ways – from 1/3 octave spectra and echograms, to colormapped SPLs and a choice of sound quality metrics. You can even listen to how a performance would sound from any seat in the auditorium using binaural playback.
LMS RAYNOISE enables you to model, design, and even optimize the acoustic character of your project while it is still on the drawing board. You’ll be able to make well informed concept decisions; examine more candidate designs – and avoid the flawed concept altogether.
2009-09-02
SURFCAM-Velocity-2009-v4.0-sp1
SURFCAM Velocity® 4 SP1, Powered by TrueMill® is now available to the public. This powerful release contains new features as well as enhancements from the SURFCAM user-base such as direct reading of SolidWorks Sketches, improved toolkits, and enhancements to 4-5 axis cutting. Click here to download Velocity 4 SP1 or contact your dealer for more information.
Among the features implemented in Velocity 4 are: brand-new 3-Axis High-Speed Machining strategies, top-quality HSM operations including Rest Machining, Offset Pencil Cut and 3D Offset. With Velocity 4’s new 4- and 5-Axis functionality, you gain total control of the tool motion during any event of the cutting process, thus ensuring best cutting conditions and safe tool motions.
SURFCAM offers true simultaneous 4- and 5-axis machining, full visualization and verification. This enables the NC programmer to gain precise control over every aspect of multi-axis machining, ensuring safe tool motion in the most challenging applications. 4/5-Axis provides support for all standard tools with collision checking, avoidance, toolpath containment -- and more.
4/5-Axis Product highlights include: Milling Software Velocity Powered by TrueMill
* Multi-surface 4 and 5-axis machining.
* Full tool and shank gouge protection ensures safe tool moves in the most challenging applications.
* Full support for multiple gouge check strategies -- up to four separate groups of check surfaces.
* Control of surface gap and stepover handling, including lead in and lead out options.
* Retract options including plane, sphere and cylinder for increased tool control.
* Powerful tool axis control during swarf cutting.
* 5-axis drilling capabilities.
* Tool plane locking and limiting for enhanced control.
* Advanced vector control to provide toolpath optimization.
* Full visualization and verification.
Among the features implemented in Velocity 4 are: brand-new 3-Axis High-Speed Machining strategies, top-quality HSM operations including Rest Machining, Offset Pencil Cut and 3D Offset. With Velocity 4’s new 4- and 5-Axis functionality, you gain total control of the tool motion during any event of the cutting process, thus ensuring best cutting conditions and safe tool motions.
SURFCAM offers true simultaneous 4- and 5-axis machining, full visualization and verification. This enables the NC programmer to gain precise control over every aspect of multi-axis machining, ensuring safe tool motion in the most challenging applications. 4/5-Axis provides support for all standard tools with collision checking, avoidance, toolpath containment -- and more.
4/5-Axis Product highlights include: Milling Software Velocity Powered by TrueMill
* Multi-surface 4 and 5-axis machining.
* Full tool and shank gouge protection ensures safe tool moves in the most challenging applications.
* Full support for multiple gouge check strategies -- up to four separate groups of check surfaces.
* Control of surface gap and stepover handling, including lead in and lead out options.
* Retract options including plane, sphere and cylinder for increased tool control.
* Powerful tool axis control during swarf cutting.
* 5-axis drilling capabilities.
* Tool plane locking and limiting for enhanced control.
* Advanced vector control to provide toolpath optimization.
* Full visualization and verification.
Golden.Software.Surfer.V9.5.510
Surfer is a contouring and 3D surface mapping program that runs under Microsoft Windows. It quickly and easily converts your data into outstanding contour, 3D surface, 3D wireframe, vector, image, shaded relief, and post maps. Virtually all aspects of your maps can be customized to produce exactly the presentation you want. Producing publication quality maps has never been quicker or easier.
Transparency!
See all your data! Make colors, map layers, fill patterns, images, and missing data for image maps and shaded relief maps transparent! You have full control over the opacity percentage.
Import and Export Georeferenced Images!
No more guesswork! Save time and frustration by importing georeferenced image files in their real world coordinates, ready to combine with other map types. Also export your maps as georeferenced images files! You can save the spatial reference information in Golden Software Reference format, internal referencing format (ie. GeoTIFF), with an ESRI world file, or Blue Marble RSF format!
Add, Remove and Edit Individual Objects in Base Maps!
Surfer 9 adds the ability to expand your base maps to show you all the individual components of the base map! You can add, copy, paste and delete objects from a base map, or double click on a particular object to edit its individual properties. You can even reshape polylines and polygons in a base map! You can still collapse the base map, double click on Base and globally change the properties for all items in the map.
Convert the Projection of Data in the Worksheet!
Project your data from more than 1,500 predefined coordinate systems or define your own custom projection or datum! Add frequently used coordinate systems to your Favorites list to be easily accessible in the future.
Convert the Projection of Data in the Worksheet!
Project your data from more than 1,500 predefined coordinate systems or define your own custom projection or datum! Add frequently used coordinate systems to your Favorites list to be easily accessible in the future.
Length and Area Calculations!
Area and length calculations are here! Surfer reports the area and perimeter length of polygons and the length of polylines in a base map. Simply double click on the polygon or polylines and the information is reported. The polygons and polylines don�t even have to be a part of the original base map file. Import the base map, enter the base map group and simply draw the polygon or polylines right on the base map! It�s that easy to get area and length values
Transparency!
See all your data! Make colors, map layers, fill patterns, images, and missing data for image maps and shaded relief maps transparent! You have full control over the opacity percentage.
Import and Export Georeferenced Images!
No more guesswork! Save time and frustration by importing georeferenced image files in their real world coordinates, ready to combine with other map types. Also export your maps as georeferenced images files! You can save the spatial reference information in Golden Software Reference format, internal referencing format (ie. GeoTIFF), with an ESRI world file, or Blue Marble RSF format!
Add, Remove and Edit Individual Objects in Base Maps!
Surfer 9 adds the ability to expand your base maps to show you all the individual components of the base map! You can add, copy, paste and delete objects from a base map, or double click on a particular object to edit its individual properties. You can even reshape polylines and polygons in a base map! You can still collapse the base map, double click on Base and globally change the properties for all items in the map.
Convert the Projection of Data in the Worksheet!
Project your data from more than 1,500 predefined coordinate systems or define your own custom projection or datum! Add frequently used coordinate systems to your Favorites list to be easily accessible in the future.
Convert the Projection of Data in the Worksheet!
Project your data from more than 1,500 predefined coordinate systems or define your own custom projection or datum! Add frequently used coordinate systems to your Favorites list to be easily accessible in the future.
Length and Area Calculations!
Area and length calculations are here! Surfer reports the area and perimeter length of polygons and the length of polylines in a base map. Simply double click on the polygon or polylines and the information is reported. The polygons and polylines don�t even have to be a part of the original base map file. Import the base map, enter the base map group and simply draw the polygon or polylines right on the base map! It�s that easy to get area and length values
2009-09-01
2009 08 crack software ftp download
2009-08-30 InventorCAM 2010
2009-08-30 Bentley.RAM.Structural.System.V8i Release 14.00.01.00
2009-08-30 SURFCAM Velocity 2009 v4.0 SP1 build 248
2009-08-28 MSC.PATRAN.V2008.R2
2009-08-27 The.Foundry.Nuke.v5.2.1
2009-08-26 SPSS.Amos.v18
2009-08-25 Cimatron Elite v9.SP1
2009-08-25 EMIT.Maxwell.v5.0.3.5607.Incl.Keygen
2009-08-24 MecSoft.VisualMILL.Professional.v6.0.5.14.for.VisualCAM
2009-08-24 MecSoft.VisualART.v1.0.2.1.for.VisualCAM
2009-08-23 Aquaveo.GMS.v7.0
2009-08-22 Delcam ArtCAM 2009 SP2 build 176
2009-08-20 PTC Pro ToolMake v9.0 M030
2009-08-19 PGI.Workstation.Complete.v9.0.3
2009-08-19 IVS.3D.Fledermaus.Professional.v7.0.0d.258
2009-08-17 DASSAULT.SYSTEMES.CATIA.V5R19.SP5
2009-08-16 GIBBSCAM.2009.V9.3.14
2009-08-15 PTC.PRO.ENGINEER.WILDFIRE.V4.M100.Win32.&64
2009-08-13 AUTODESK_MAYA_V2010
2009-08-13 CORE.TECHNOLOGIE.3D.EVOLUTION.V2009.SP1
2009-08-12 SIEMENS.NX.V6.0.3
2009-08-12 iMold v9 SP0
2009-08-11 Luxology.modo.401.SP1.WIN.OSX
2009-08-11 Gurobi.Optimization.Gurobi.v1.1.2.Cracked
2009-08-10 Smith_Micro_Poser_v8.0
2009-08-10 Siemens.Tecnomatix.v9.0
2009-08-09 CD-adapco.Star-CCM.Plus.v4.04.Windows32&Linux
2009-08-08 SIEMENS.NX.I-DEAS.V6.M2
2009-08-08 CAPVIDIA_3DTRANSVIDIA_V2009
2009-08-07 TEKLA.STRUCTURES.V15.SR2
2009-08-07 GS AFES Professional v3.0 070809
2009-08-07 LMS.Test.Xpress.V3A.SL1
2009-08-06 Zona.Zaero.V8.2
2009-08-06 Bentley.CivilStorm.V8i.08.11.00.08
2009-08-05 Codev v10.1
2009-08-04 Arup.Oasys.v9.3.1
2009-08-04 Xceed.Ultimate.Suite.2009.v3.2.9373.Incl.Keygen
2009-08-04 3DVIA.Composer.2010.v6.4.0.1411
2009-08-03 CSI.SAP2000.V14.1
2009-08-01 MicroSurvey.CAD.2010.v10.0
2009-08-01 PLANIT_EDGECAM_V2009_R2
2009-08-01 THERMOANALYTICS_RADTHERM_V9.2
2009-08-01 GNS_ANIMATOR4_V1.1.4
from caxcrack
2009-08-30 CoDeveloper.Universal.3.50.b.3
2009-08-27 Sonnet.V12.52
2009-08-26 Synopsys.ns_hsim_xa_vC-2009.06
2009-08-25 BluePrint-PCB.v2.0.1.422.with.CAM350.v10.0.1.316
2009-08-23 Synopsys.CoreTool vB-2008.Linux
2009-08-23 Ansoft.Links.v4.2
2009-08-23 Ansoft.siwave.v4
2009-08-19 CLC.Genomics.Workbench.v3.6.5 For win &Linux
2009-08-15 Cadence IUS V8.2
2009-08-15 Denali.PureSuite.V3.2
2009-08-13 Synopsys.VCS.MX-2009.06
2009-08-11 Synplify FPGA 200906
2009-08-05 Altium Designer Summer 2009 Build9.0.0.17654
2009-08-04 Denali.PureSuite.V3.2.062
2009-08-02 DownStream CAM350 v10.0.1.314
2009-08-02 DownStream BluePrint-PCB v2.0.1.418
2009-07-30 ARM SOC DESIGNER 7.1
2009-07-29 CoWare.Processor.Designer.V2009.1
2009-07-29 CoWare.Signal.Processing.Designer.v2009.1
2009-07-27 Cadence CONFRML V8.1
2009-07-24 Mentor.Graphics.PADS.Flow.9.0.1
2009-07-24 Novas 2009.07
2009-07-23 Mentor Graphics Precision Synthesis v2009a
2009-07-22 Simucad 2009
2009-07-19 HDL.Works.HDL.Design.Entry.EASE.v7.2.R8
2009-07-18 AWR.Design.Environment.v8.06
2009-07-16 Synopsys TetraMax 2008.09 SP5
2009-07-15 Magma FineSimPro 2008.09
2009-07-14 Synopsys.Sold.v2009.4
2009-07-13 Cadence LDV v5.16
2009-07-12 Cadence_IC v6.13
2009-07-11 Aldec.ALINT.2009.02
2009-07-10 Agilent.Genomic.Workbench.v5.0.14
2009-07-01 SpeedXP Suite V8.0
GMG-MESA.v11.01
Asphalt.Test.Report.System.v4.0.0046
FRI.Device.Rating.Program.V1.4.0
Gedco.Vista.Seismic.Processing.V9.00
IPM.Petroleum.Expert.v7.10.Build143
Paradigm.Sysdrill.v2009
Intergraph SmartPlant Enterprise 2007
COADE TANK V3.10
Applied.Flow.Technology.Impulse.v4.0.2009.07.17.Cracke
Applied.Flow.Technology.Fathom.v7.0.2008.12.03.Cracked
Applied.Flow.Technology.Arrow.v4.0.2008.12.0
Applied.Flow.Technology.Engineering.Utility.Suite.v2.0.2008.01.15
CambridgeSoft.ChemOffice.2010.v12
Wavefunction.Spartan.08.v1.2
Wavefunction.Odyssey.College.Chemistry.v3.1.Cracked
Process.Systems.Enterprise.gPROMS.v3.15.
Midland.Valley.Move.V2009.1
PetrisWinds Recall 5.2 system
Hampson-Russell.CE8.R4.2
GEMCOM.Minex.V5.3
Temis Suite 2008
Seismic Processing Workshop v2.2.10
Discover v.10.1
Discover3D v.4.0.77
Paradigm Interpret 2008
PvtSim V18 (c)CALSEP
HEXTRAN v9.1
Kingdom Suite SMT 8.3
Omni 3D Design v8.0
HAZOP phapro6
Micromine v11
CGM Studio 9.5 Larson Software Technology
Tempest 6.5
PipeDataPro v8
Roxar_IRAP_RMS_2009
Geolog 6.7
Geoframe 4.4
Golden.Software.Surfer.V9.5.510
Eclipse 2008.2
DNV Phast and Safeti v6.51
Kappa Emeraude 2.42.10
SubPump V9.1
IHS.QUESTOR.v9.4
VMG Sim V4
Plant-4D v7.703
Vista V8.0 2D/3D Seismic Processing
Interactive petrophysics 3.5 (c)Schlumberger
PetrisWinds Recall 5.2 system
Pipe flow expert 2008
Schlumberger.FracCADE.V5.10
SCHLUMBERGER.PIPESIM.V2008
Petrel 2009.1 FOR Win32&Win64
Schlumberger TDAS 6.1.6
Schlumberger.Drilling.Office.V4.0
COADE CADWorx 2010
Eclipse 2008.2
IHS_DEEPE$T_3.7
SIMSCI PRO II v8.2 Patch 2
AspenONE Suite v7.1
2009-08-30 Bentley.RAM.Structural.System.V8i Release 14.00.01.00
2009-08-30 SURFCAM Velocity 2009 v4.0 SP1 build 248
2009-08-28 MSC.PATRAN.V2008.R2
2009-08-27 The.Foundry.Nuke.v5.2.1
2009-08-26 SPSS.Amos.v18
2009-08-25 Cimatron Elite v9.SP1
2009-08-25 EMIT.Maxwell.v5.0.3.5607.Incl.Keygen
2009-08-24 MecSoft.VisualMILL.Professional.v6.0.5.14.for.VisualCAM
2009-08-24 MecSoft.VisualART.v1.0.2.1.for.VisualCAM
2009-08-23 Aquaveo.GMS.v7.0
2009-08-22 Delcam ArtCAM 2009 SP2 build 176
2009-08-20 PTC Pro ToolMake v9.0 M030
2009-08-19 PGI.Workstation.Complete.v9.0.3
2009-08-19 IVS.3D.Fledermaus.Professional.v7.0.0d.258
2009-08-17 DASSAULT.SYSTEMES.CATIA.V5R19.SP5
2009-08-16 GIBBSCAM.2009.V9.3.14
2009-08-15 PTC.PRO.ENGINEER.WILDFIRE.V4.M100.Win32.&64
2009-08-13 AUTODESK_MAYA_V2010
2009-08-13 CORE.TECHNOLOGIE.3D.EVOLUTION.V2009.SP1
2009-08-12 SIEMENS.NX.V6.0.3
2009-08-12 iMold v9 SP0
2009-08-11 Luxology.modo.401.SP1.WIN.OSX
2009-08-11 Gurobi.Optimization.Gurobi.v1.1.2.Cracked
2009-08-10 Smith_Micro_Poser_v8.0
2009-08-10 Siemens.Tecnomatix.v9.0
2009-08-09 CD-adapco.Star-CCM.Plus.v4.04.Windows32&Linux
2009-08-08 SIEMENS.NX.I-DEAS.V6.M2
2009-08-08 CAPVIDIA_3DTRANSVIDIA_V2009
2009-08-07 TEKLA.STRUCTURES.V15.SR2
2009-08-07 GS AFES Professional v3.0 070809
2009-08-07 LMS.Test.Xpress.V3A.SL1
2009-08-06 Zona.Zaero.V8.2
2009-08-06 Bentley.CivilStorm.V8i.08.11.00.08
2009-08-05 Codev v10.1
2009-08-04 Arup.Oasys.v9.3.1
2009-08-04 Xceed.Ultimate.Suite.2009.v3.2.9373.Incl.Keygen
2009-08-04 3DVIA.Composer.2010.v6.4.0.1411
2009-08-03 CSI.SAP2000.V14.1
2009-08-01 MicroSurvey.CAD.2010.v10.0
2009-08-01 PLANIT_EDGECAM_V2009_R2
2009-08-01 THERMOANALYTICS_RADTHERM_V9.2
2009-08-01 GNS_ANIMATOR4_V1.1.4
from caxcrack
2009-08-30 CoDeveloper.Universal.3.50.b.3
2009-08-27 Sonnet.V12.52
2009-08-26 Synopsys.ns_hsim_xa_vC-2009.06
2009-08-25 BluePrint-PCB.v2.0.1.422.with.CAM350.v10.0.1.316
2009-08-23 Synopsys.CoreTool vB-2008.Linux
2009-08-23 Ansoft.Links.v4.2
2009-08-23 Ansoft.siwave.v4
2009-08-19 CLC.Genomics.Workbench.v3.6.5 For win &Linux
2009-08-15 Cadence IUS V8.2
2009-08-15 Denali.PureSuite.V3.2
2009-08-13 Synopsys.VCS.MX-2009.06
2009-08-11 Synplify FPGA 200906
2009-08-05 Altium Designer Summer 2009 Build9.0.0.17654
2009-08-04 Denali.PureSuite.V3.2.062
2009-08-02 DownStream CAM350 v10.0.1.314
2009-08-02 DownStream BluePrint-PCB v2.0.1.418
2009-07-30 ARM SOC DESIGNER 7.1
2009-07-29 CoWare.Processor.Designer.V2009.1
2009-07-29 CoWare.Signal.Processing.Designer.v2009.1
2009-07-27 Cadence CONFRML V8.1
2009-07-24 Mentor.Graphics.PADS.Flow.9.0.1
2009-07-24 Novas 2009.07
2009-07-23 Mentor Graphics Precision Synthesis v2009a
2009-07-22 Simucad 2009
2009-07-19 HDL.Works.HDL.Design.Entry.EASE.v7.2.R8
2009-07-18 AWR.Design.Environment.v8.06
2009-07-16 Synopsys TetraMax 2008.09 SP5
2009-07-15 Magma FineSimPro 2008.09
2009-07-14 Synopsys.Sold.v2009.4
2009-07-13 Cadence LDV v5.16
2009-07-12 Cadence_IC v6.13
2009-07-11 Aldec.ALINT.2009.02
2009-07-10 Agilent.Genomic.Workbench.v5.0.14
2009-07-01 SpeedXP Suite V8.0
GMG-MESA.v11.01
Asphalt.Test.Report.System.v4.0.0046
FRI.Device.Rating.Program.V1.4.0
Gedco.Vista.Seismic.Processing.V9.00
IPM.Petroleum.Expert.v7.10.Build143
Paradigm.Sysdrill.v2009
Intergraph SmartPlant Enterprise 2007
COADE TANK V3.10
Applied.Flow.Technology.Impulse.v4.0.2009.07.17.Cracke
Applied.Flow.Technology.Fathom.v7.0.2008.12.03.Cracked
Applied.Flow.Technology.Arrow.v4.0.2008.12.0
Applied.Flow.Technology.Engineering.Utility.Suite.v2.0.2008.01.15
CambridgeSoft.ChemOffice.2010.v12
Wavefunction.Spartan.08.v1.2
Wavefunction.Odyssey.College.Chemistry.v3.1.Cracked
Process.Systems.Enterprise.gPROMS.v3.15.
Midland.Valley.Move.V2009.1
PetrisWinds Recall 5.2 system
Hampson-Russell.CE8.R4.2
GEMCOM.Minex.V5.3
Temis Suite 2008
Seismic Processing Workshop v2.2.10
Discover v.10.1
Discover3D v.4.0.77
Paradigm Interpret 2008
PvtSim V18 (c)CALSEP
HEXTRAN v9.1
Kingdom Suite SMT 8.3
Omni 3D Design v8.0
HAZOP phapro6
Micromine v11
CGM Studio 9.5 Larson Software Technology
Tempest 6.5
PipeDataPro v8
Roxar_IRAP_RMS_2009
Geolog 6.7
Geoframe 4.4
Golden.Software.Surfer.V9.5.510
Eclipse 2008.2
DNV Phast and Safeti v6.51
Kappa Emeraude 2.42.10
SubPump V9.1
IHS.QUESTOR.v9.4
VMG Sim V4
Plant-4D v7.703
Vista V8.0 2D/3D Seismic Processing
Interactive petrophysics 3.5 (c)Schlumberger
PetrisWinds Recall 5.2 system
Pipe flow expert 2008
Schlumberger.FracCADE.V5.10
SCHLUMBERGER.PIPESIM.V2008
Petrel 2009.1 FOR Win32&Win64
Schlumberger TDAS 6.1.6
Schlumberger.Drilling.Office.V4.0
COADE CADWorx 2010
Eclipse 2008.2
IHS_DEEPE$T_3.7
SIMSCI PRO II v8.2 Patch 2
AspenONE Suite v7.1
2009-08-18
IPM.Petroleum.Expert.v7.10.Build143 license
IPM Products
Petroleum Experts develop the Integrated Production Modelling software (IPM). IPM models the complete oil or gas production system including reservoir, wells and the surface network.
The IPM suite of tools: GAP, PROSPER, MBAL, PVTP, REVEAL and RESOLVE can be run together seamlessly, allowing the engineer to design complete field models. The models can include the reservoir tanks, all the wells and the surface gathering system. IPM can model and optimise the production and the water or gas injection system simultaneously.
With the Reservoir, Wells and Complete Surface Systems model completed and the production history matched, the production system can be optimised and production forecasts run.
The unique global optimisation approach permits the engineer to determine the optimum setting to maximum production or revenue, taking account of all constraints that are set in the system. These results can then be used to implement adjustments at the field level to achieve the optimisation goals.
There are literally several thousand fields worldwide having their production managed and optimised using IPM. Here is a recent article published in the E&P magizine using the IPM technology on the Draugen field in Norway. E&P Article
All common naturally flowing well configurations, including multi-lateral, whether naturally flowing or with artificial lift can be modelled and optimised together.
With the use of RESOLVE and OpenServer the IPM approach has been extended to connecting the PETEX software to third party software such as Reservoir Simulators and Process Simulators.
These products form a suite of complementary tools assisting engineers to improve their reservoir simulations by describing and modelling a production system more accurately.
Petroleum Experts develop the Integrated Production Modelling software (IPM). IPM models the complete oil or gas production system including reservoir, wells and the surface network.
The IPM suite of tools: GAP, PROSPER, MBAL, PVTP, REVEAL and RESOLVE can be run together seamlessly, allowing the engineer to design complete field models. The models can include the reservoir tanks, all the wells and the surface gathering system. IPM can model and optimise the production and the water or gas injection system simultaneously.
With the Reservoir, Wells and Complete Surface Systems model completed and the production history matched, the production system can be optimised and production forecasts run.
The unique global optimisation approach permits the engineer to determine the optimum setting to maximum production or revenue, taking account of all constraints that are set in the system. These results can then be used to implement adjustments at the field level to achieve the optimisation goals.
There are literally several thousand fields worldwide having their production managed and optimised using IPM. Here is a recent article published in the E&P magizine using the IPM technology on the Draugen field in Norway. E&P Article
All common naturally flowing well configurations, including multi-lateral, whether naturally flowing or with artificial lift can be modelled and optimised together.
With the use of RESOLVE and OpenServer the IPM approach has been extended to connecting the PETEX software to third party software such as Reservoir Simulators and Process Simulators.
These products form a suite of complementary tools assisting engineers to improve their reservoir simulations by describing and modelling a production system more accurately.
2009-08-14
Paradigm.Sysdrill.v2009 license
Paradigm Sysdrill is designed to reduce drilling risk and cost by enabling the drilling engineer to model every phase of well bore construction within a single application. The high level of engineering analysis available in Sysdrill enables users to identify and eliminate potential design problems with flexibility and accuracy.
The Sysdrill application suite includes well planning, survey management, anti-collision, torque and drag, hydraulics, casing design, cementing, and well control in a single integrated package.
Integrated well planning, drilling engineering analysis and visualization allows drilling engineers to perform quick and accurate well design by incorporating the geological model.
Paradigm Sysdrill is designed to reduce drilling risk and cost by enabling the drilling engineer to model every phase of well bore construction within a single application. The high level of engineering analysis available in Sysdrill enables users to identify and eliminate potential design problems with flexibility and accuracy.
The Sysdrill application suite includes well planning, survey management, anti-collision, torque and drag, hydraulics, casing design, cementing, and well control in a single integrated package.
Improve well planning accuracy
Target selection from seismic, reservoir, and log data for reduced well planning cycle times, improved wellbore placement, and reduced drilling risk
Geometric and engineering constrained well planning to ensure wellbore drillability
Positional uncertainty modeling to allow target sizing and survey tool program design
Improve drilling safety
Survey management and anti-collision analysis minimize the possibility of collision
Project-ahead-during-drilling and sidetracking help to determine how best to drill ahead and optimize wellbore positioning within the reservoir
Casing and mud design to ensure wellbore hydraulic integrity
Reduce drilling risk
BHA (bottom hole assembly) design to allow wellbore drillability
Fatigue analysis enables prediction and avoidance of mechanical failure of the drill string
Pressure data extractions along the wellbore to allow for avoidance of pressure hazards, improved casing seat placement, and optimized hydraulic design
Components of Sysdrill 2009:
Sysdrill Casing Design
Sysdrill Cementing
Sysdrill Designer
Sysdrill Director®
Sysdrill DirectorGeo™
Sysdrill Hydraulics
Sysdrill Torque and Drag
Sysdrill Well Control
Note: The following Paradigm applications can be used with Sysdrill to achieve extended workflows:
Geolog® Geosteer™
OpsLink®
VoxelGeo™
The Sysdrill application suite includes well planning, survey management, anti-collision, torque and drag, hydraulics, casing design, cementing, and well control in a single integrated package.
Integrated well planning, drilling engineering analysis and visualization allows drilling engineers to perform quick and accurate well design by incorporating the geological model.
Paradigm Sysdrill is designed to reduce drilling risk and cost by enabling the drilling engineer to model every phase of well bore construction within a single application. The high level of engineering analysis available in Sysdrill enables users to identify and eliminate potential design problems with flexibility and accuracy.
The Sysdrill application suite includes well planning, survey management, anti-collision, torque and drag, hydraulics, casing design, cementing, and well control in a single integrated package.
Improve well planning accuracy
Target selection from seismic, reservoir, and log data for reduced well planning cycle times, improved wellbore placement, and reduced drilling risk
Geometric and engineering constrained well planning to ensure wellbore drillability
Positional uncertainty modeling to allow target sizing and survey tool program design
Improve drilling safety
Survey management and anti-collision analysis minimize the possibility of collision
Project-ahead-during-drilling and sidetracking help to determine how best to drill ahead and optimize wellbore positioning within the reservoir
Casing and mud design to ensure wellbore hydraulic integrity
Reduce drilling risk
BHA (bottom hole assembly) design to allow wellbore drillability
Fatigue analysis enables prediction and avoidance of mechanical failure of the drill string
Pressure data extractions along the wellbore to allow for avoidance of pressure hazards, improved casing seat placement, and optimized hydraulic design
Components of Sysdrill 2009:
Sysdrill Casing Design
Sysdrill Cementing
Sysdrill Designer
Sysdrill Director®
Sysdrill DirectorGeo™
Sysdrill Hydraulics
Sysdrill Torque and Drag
Sysdrill Well Control
Note: The following Paradigm applications can be used with Sysdrill to achieve extended workflows:
Geolog® Geosteer™
OpsLink®
VoxelGeo™
2009-08-13
IAR Embedded Workbench for ARM 5.4

IAR Systems introduced Version 5.40 of IAR Embedded Workbench for ARM. Version 5.40 featurees new debug capabilities for ARM Cortex-M3 processors that were previously only available in dedicated devices and costly debug probes. In addition, Version 5.40 supports source code compliance checking to the MISRA-C:2004 standard, for high integrity applications such as automotive as well as support for the ARM Cortex Microcontroller Software Interface Standard (CMSIS).
News in the current product version Version 5.40 of IAR Embedded Workbench for ARM includes the following new and enhanced functionality:
Information Center A new, web based navigation system that gives easy access to tutorials, product documentation, and example projects. Select Help>Information Center to display the Information Center.
Cortex-R4
Support for code generation and debugging of ARM Cortex-R4 cores.
Cortex-M0
Support for code generation and debugging of ARM Cortex-M0 cores. Debugging on Cortex-M0 hardware is supported using the J-Link probe.
J-Trace for Cortex-M3 Using the J-Trace for Cortex-M3 debug, the debugger can now take advantage of the ETM trace port available on some Cortex-M3 devices. Instruction trace can be started and stopped based on conditions like code locations and data accesses. This feature requires the J-Trace for Cortex-M3 trace probe.
Direct flash erase and download
Flash erase and download can be performed without starting the debugger.
Debugging multiple images C-SPY is now capable of debugging several independently built images during one debug session. Under Project options>Debugger>Images you specify the location of the images to be downloaded in addition to the current application. There is also a new debugger window called Images where you select for which application debug information will be displayed.
Cortex-M3 data breakpoint enhancements
A data breakpoint in Cortex-M3 is now able to break on a specific value in addition to the address of the accessed variable.
Auto refresh in the debugger memory window
The debugger memory window can be refreshed during program execution, both manually and periodically.
Example projects
Over 1400 example projects for various evaluation boards, including evaluation boards from IAR Systems, Actel, Analog Devices, Aiji Systems, ARM, Atmel, Cirrus Logic, Freescale, Keil, LogicPD, Luminary, Micronas, Nohau, OKI, Olimex, Pasat, NXP, Phytec, ST, Texas Instruments and Toshiba are included in the product installation, see the Information Center, or arm\examples directory.
New device support Support for many new devices are added in this release. Please see update-to-date device list for more details.
The compiler optimizer has been tuned to generate industry-leading code size for Cortex-M3 code. The linker can also now compress initialized data to minimize demands on Flash memory: the compressed data will be automatically uncompressed when moved from Flash to RAM by the startup code.
2009-08-11
VECTOR FIELDS OPERA V12
FEA modelling of static and time-varying electromagnetic fields
Opera provides the complete toolchain for electromagnetic design, simulation and analysis of results, for use on 32- or 64-bit Windows and Linux platforms. It consists of a powerful pre-processing environment for creating design models (or importing them from CAD programs), plus a powerful finite element analysis (FEA) solver from our range. Three generic solvers are optionally available:
* static electromagnetic fields (the widely used 'Tosca' tool) - More
* low-frequency time-varying electromagnetic fields - More
* high frequency time-varying electromagnetic fields* - More
Opera can alternatively be purchased in a number of forms optimised for specific design problems:
* linear and rotating machinery design - More
* superconducting magnet quenching - More
* space charge effects from particle beams - More
* permanent magnet magnetisation/demagnetisation - More
* thermal and stress analysis (standalone or coupled) - More
* electric field analysis in conducting-dielectric media - More
*Vector Fields produces a dedicated package for RF and microwave electromagnetic design, Concerto, with FDTD or MoM solvers. The FEA solver used in Opera is optionally available, for design problems where extreme solution accuracy is needed.
Detailed product information
Click on the two- or three-dimensional (2D/3D) Opera module of interest for more information:
Opera 2D
Static fields
Dynamics (low frequency)
Rotating machines
Linear motion
Space charge
Lossy dielectrics
Demagnetisation
Stress and thermal
Opera 3D
Static fields
Dynamics (low frequency)
Rotating machines
Space charge
Thermal
Quench
High frequency
Lossy dielectrics
Demagnetisation
Click here to download the Opera brochure.
How Opera works
Opera provides the complete toolchain for electromagnetic design, simulation and analysis of results, for use on 32- or 64-bit Windows and Linux platforms. It consists of a powerful pre-processing environment for creating design models (or importing them from CAD programs), plus a powerful finite element analysis (FEA) solver from our range. Three generic solvers are optionally available:
* static electromagnetic fields (the widely used 'Tosca' tool) - More
* low-frequency time-varying electromagnetic fields - More
* high frequency time-varying electromagnetic fields* - More
Opera can alternatively be purchased in a number of forms optimised for specific design problems:
* linear and rotating machinery design - More
* superconducting magnet quenching - More
* space charge effects from particle beams - More
* permanent magnet magnetisation/demagnetisation - More
* thermal and stress analysis (standalone or coupled) - More
* electric field analysis in conducting-dielectric media - More
*Vector Fields produces a dedicated package for RF and microwave electromagnetic design, Concerto, with FDTD or MoM solvers. The FEA solver used in Opera is optionally available, for design problems where extreme solution accuracy is needed.
Detailed product information
Click on the two- or three-dimensional (2D/3D) Opera module of interest for more information:
Opera 2D
Static fields
Dynamics (low frequency)
Rotating machines
Linear motion
Space charge
Lossy dielectrics
Demagnetisation
Stress and thermal
Opera 3D
Static fields
Dynamics (low frequency)
Rotating machines
Space charge
Thermal
Quench
High frequency
Lossy dielectrics
Demagnetisation
Click here to download the Opera brochure.
How Opera works
Process-Systems-Enterprise-gPROMS-v3.20-license
gPROMS v3.2: modelling, usability and solution power
Powerful custom modelling in a flowsheeting environment
We are pleased to announce the release of gPROMS version 3.2.
V3.2 builds on the new functionality in the previous v3.0 and v3.1 releases, refining and completing some of the many features introduced with the new gPROMS v3 architecture. This takes PSE's aim of providing the world's most powerful custom modelling within a flowsheeting environment a significant step forward.
Apart from the numerous productivity, speed and robustness enhancements, v3.2 contains significant enhancements to the ability to handle discrete logic within the equation-oriented modelling environment, as requested by a number of customers over the years.
Building on gPROMS' already strong capabilities for modelling and optimising both complex physics and discrete operating procedures, each physical model can now invoke discrete logic that is automatically triggered for every instance of the model included in a flowsheet. This allows, for example, gPROMS library models to include sophisticated supervisory controllers, whose execution is completely transparent to end-users.
There are a number of usability enhancements aimed at simplifying the creation and maintenance of complex flowsheets. These range from minor improvements such as the ability to align flowsheet elements to the ability to use text array indices consistently throughout gPROMS, including dialogue specifications.
v3.2 contains significantly-enhanced diagnostics that make information more easily accessible both for model developers and users. These include facilities for diagnosing over-and under specification and making intelligent suggestions for the choice of specification variables. There is improved analysis and assistance for numerical failures during execution, as well as improved information at the flowsheet level during model construction.
For results presentation, a new data export facility provides semi-automated selective export of variables to postprocessing facilities such as MS Excel for - for example - pivot table analysis. In addition to providing formatted output and addition calculations, this helps reduce model size and execution time.
Emphasizing the fact that PSE's development continues to focus on the underlying solution technology for which gPROMS is renowned, there have been some significant enhancements to solution power and efficiency.
Exact model reduction techniques to eliminate inessential equations and variables during solution mean that many classes of problem now run 20% faster than in previous versions and use less memory. Examples from testing to date are a parameter estimation problem that ran in half the time taken in v3.1.5, a typical 20% reduction in memory footprint and, in one case, a reduction in the number of variables by a factor of 40% and simulation time by a factor of 35%.
These improvements allow increases in the number of discretisation points used, in order to improve accuracy, or increases in complexity of flowsheets, while keeping simulation times and memory requirements within acceptable limits.
On the CFD front, an extended Hybrid Multizonal interface now supports FLUENT® multiphase models with or without energy conservation, FLUENT dynamic simulations in two-way mode, FLUENT 2-D models and FLUENT parallel processing in either one or two-way mode.
Powerful custom modelling in a flowsheeting environment
We are pleased to announce the release of gPROMS version 3.2.
V3.2 builds on the new functionality in the previous v3.0 and v3.1 releases, refining and completing some of the many features introduced with the new gPROMS v3 architecture. This takes PSE's aim of providing the world's most powerful custom modelling within a flowsheeting environment a significant step forward.
Apart from the numerous productivity, speed and robustness enhancements, v3.2 contains significant enhancements to the ability to handle discrete logic within the equation-oriented modelling environment, as requested by a number of customers over the years.
Building on gPROMS' already strong capabilities for modelling and optimising both complex physics and discrete operating procedures, each physical model can now invoke discrete logic that is automatically triggered for every instance of the model included in a flowsheet. This allows, for example, gPROMS library models to include sophisticated supervisory controllers, whose execution is completely transparent to end-users.
There are a number of usability enhancements aimed at simplifying the creation and maintenance of complex flowsheets. These range from minor improvements such as the ability to align flowsheet elements to the ability to use text array indices consistently throughout gPROMS, including dialogue specifications.
v3.2 contains significantly-enhanced diagnostics that make information more easily accessible both for model developers and users. These include facilities for diagnosing over-and under specification and making intelligent suggestions for the choice of specification variables. There is improved analysis and assistance for numerical failures during execution, as well as improved information at the flowsheet level during model construction.
For results presentation, a new data export facility provides semi-automated selective export of variables to postprocessing facilities such as MS Excel for - for example - pivot table analysis. In addition to providing formatted output and addition calculations, this helps reduce model size and execution time.
Emphasizing the fact that PSE's development continues to focus on the underlying solution technology for which gPROMS is renowned, there have been some significant enhancements to solution power and efficiency.
Exact model reduction techniques to eliminate inessential equations and variables during solution mean that many classes of problem now run 20% faster than in previous versions and use less memory. Examples from testing to date are a parameter estimation problem that ran in half the time taken in v3.1.5, a typical 20% reduction in memory footprint and, in one case, a reduction in the number of variables by a factor of 40% and simulation time by a factor of 35%.
These improvements allow increases in the number of discretisation points used, in order to improve accuracy, or increases in complexity of flowsheets, while keeping simulation times and memory requirements within acceptable limits.
On the CFD front, an extended Hybrid Multizonal interface now supports FLUENT® multiphase models with or without energy conservation, FLUENT dynamic simulations in two-way mode, FLUENT 2-D models and FLUENT parallel processing in either one or two-way mode.
2009-08-06
Cadence software product list
Front End Design Newest Base Release(s) Other recent Base Releases
Encounter ConFRML Technologies CONFRML 8.1, CCD 8.1 CONFRML 7.1, CCD 6.2, CONFRML 6.1
Encounter Test ET 6.2 ET 3.1
Encounter RTL Complier RC 7.1 RC 6.2
Virtuoso Custom Chip Design Newest Base Release(s) Other recent Base Releases
Cadence Chip Optimizer FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Cadence Space-Based Router FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Virtuoso AMS Designer IC 6.1.0, IUS 6.1 IC 5.1.41, IUS 5.8, IUS 5.7
Virtuoso Analog Design Environment IC 6.1.0 IC 5.1.41
Virtuoso Aptivia Specification-driven Environment VSDE 4.1 VSDE 3.3
Virtuoso Chip Assembly Router IC 6.1.0 ICC 11.2.41
Virtuoso Chip Editor IC 6.1.0 IC 5.1.41
Virtuoso Layout Editor IC 6.1.0 IC 5.1.41
Virtuoso Layout Editor-Turbo IC 6.1.0 IC 5.1.41
Virtuoso Layout Migrate IC 6.1.0 IC 5.1.41
Virtuoso Layout Suite IC 6.1.0
Virtuoso MultiMode Simulation MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso NeoCell Analog Physical Synthesis NEOCELL 3.4 NEOCELL 3.3
Virtuoso NeoCircuit Sizing and Optimization NEOCKT 3.4 NEOCKT 3.3
Virtuoso QRC Extr*** EXT 6.2 EXT 5.1
Virtuoso RET Suite RET 1.7 RET 1.6, RET 1.5
Virtuoso Schematic Editor IC 6.1.0 IC 5.1.41
Virtuoso Spectre Circuit Simulator MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso Spectre RF Simulation Option MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso UltraSim Full-chip Simulator MMSIM 8.2 MMSIM 6.1, USIM 4.2, USIM 4.1
Virtuoso XL Layout Editor IC 5.1.41
Encounter Digital Chip Design Newest Base Release(s) Other recent Base Releases
CeltIC NDC TSI 7.1 TSI 6.2
ElectronStorm ANLS 7.0 ANLS 6.1, SEV 3.2
Cadence Chip Optimizer FINALE 2.0
Encounter Con***al Technologies CONFRML 7.1, CCD 7.1 CONFRML 6.2, CCD 6.2, CONFRML 6.1
Encounter QRC Extr*** (Fire & Ice QX) EXT 6.2 EXT 5.1
Encounter RTL Complier RCV 7.1 RCV 6.2
Encounter Test ET 6.2 ET 3.1
Encounter Timing System ETS 7.1 ETS 6.2, ETS 6.1
Encounter X SOC 8.1 XAE 6.1, XAE 5.2
First Encounter SOC81 SOC81,SOC61, SOC52
NanoRoute Ultra SOC81 SOC81,SOC61, SOC52
PacifIC Static Noise Analyzer PACIFIC61
SignalStorm NDC TSI 6.1 TSI 5.2
Silicon Ensemble-PKS Optimization SOC 6.2 SOC 6.1
SoC Encounter SOC 6.2 SOC 6.1
VoltageStorm ANLS 7.1 ANLS 6.2, ANLS 6.1
Incisive Emulation Hardware Newest Base Release(s) Other recent Base Releases
Incisive Palladium IXE 5.1 IXE 5.0, IXE 4.0, IXE 3.1
Incisive Xtreme RCC 7.1 RCC 6.3,RCC 6.2, RCC 5.3, RCC 5.2, RCC 5.1, RCC 4.4
Incisive Design Verification and Acceleration Newest Base Release(s) Other recent Base Releases
Design Team Simulator IUS 8.1 IUS 5.8, IUS 5.7
eAnalyzer SPMN 6.0 EANL 5.1, EANL 1.0
FPGA Compiler RCC 6.3 RCC 6.2, RCC 5.3, RCC 5.2, RCC 5.1, RCC 4.4
HDL Simulator IUS 8.1 IUS 5.8, IUS 5.7
Incisive Design Team Manager VMGR 1.4 EMGR 2.02, EMGR 2.0
Incisive Enterprise Manager VMGR 1.4 EMGR 2.02, EMGR 2.0
Incisive Enterprise Simulator IES 6.1 IES 2.0
Incisive Enterprise Specman Simulator IES 6.1 IES 2.0, SPECSIM 1.3
Incisive Formal IFV 6.1 IFV 5.8
Incisive Scenario Builder SPMN 6.0 SBLD 1.1, SBLD 1.0
Incisive Unified Simulator IUS 8.1 IUS 5.8, IUS 5.7
NC-Sim IUS 8.1 IUS 5.8, IUS 5.7
NC-SystemC IUS 8.1 IUS 5.8, IUS 5.7
NC-Verilog IUS 8.1 IUS 5.8, IUS 5.7
NC-VHDL IUS 8.1 IUS 5.8, IUS 5.7
Plan-to-Closure Methodology IPCM 6.1 IPCM 6.0
Specman Elite SPMN 6.1 SPMN 6.0
Verifault IUS 8.1 IUS 5.8, IUS 5.7
Verification IP Newest Base Release(s) Other recent Base Releases
AMBA EVCAMBA 2.2
eVC-AHB ABVIPAHB 1.0
eVC-AXI EVCAXI 1.2
eVC-Ethernet EVCETH 2.2
eVC-PCI EVCPCI 2.11
eVC-PCI Express EVCPCIE 2.2
eVC-USB EVCUSB 2.3 EVCUSB 2.2
Silicon Signoff and Optimization Newest Base Release(s) Other recent Base Releases
Assura (DRC/LVS) Physical Verification ASSURA 3.1.7
Cadence Physical Verification System PVS 6.1 PVS 5.2
Chameleon KCL 4.3 KCL 4.2
Diva Physical Verification IC 6.1.0 IC 5.1.41, ICOA 5.1.41
Dracula Physical Verification IC 6.1.0 IC 5.1.41, ICOA 5.0.33, ICOA 5.2.51, ICOA 5.1.41
ElectronStorm ANLS 6.2 ANLS 6.1, SEV 3.2
MaskCompose KMC 3.8
PacifIC Static Noise Analyzer PACIFIC 6.1
QuickView KQV 4.3.1 KQV 4.3
VoltageStorm Analog ANLS 7.1 ANLS 6.2,ANLS 6.1, SEV 3.2
Manufacturing Models and Implementation Newest Base Release(s) Other recent Base Releases
Cadence Chip Optimizer FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Cadence Space-Based Router FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Encounter QRC Extr*** (***erly Fire & Ice QX) ANLS 7.1 ANLS 7.1,ANLS 6.1, SEV 3.2
Virtuoso QRC Extr*** (***erly Assura RCX) EXT 6.2 EXT 5.1
Vituoso RET Suite RET 1.7 RET 1.6, RET 1.5
Allegro PCB & IC Packaging Newest Base Release(s) Other recent Base Releases
Allegro AMS Simulator SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Entry CIS SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Entry HDL SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Publisher SPB 16.2 SPB 15.7
Allegro IC Package Designer SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro IC Package SI SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Editor SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Librarian SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Router SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB SI SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro System Architect SPB 16.2 SPB 15.7, SPB 15.5.1
Cadence 3D Design Viewer SPB 16.2 SPB 15.7, SPB 15.5.1
OrCAD PCB Newest Base Release(s) Other recent Base Releases
OrCAD Capture/CIS ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD Layout ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD PCB Editor ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD Signal Explorer ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
PSpice ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Cadence SiP Design (System-in-Package) Newest Base Release(s) Other recent Base Releases
Cadence 3D Design Viewer SPB 16.0 SPB 15.7, SPB 15.5.1
Cadence SiP Digital ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Cadence SiP RF ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Allegro Design Workbench Newest Base Release(s) Other recent Base Releases
PCB Collaboration Workbench ADW 16.0 ADW 15.7, ADW 15.5
PCB Design Workbench ADW 16.0 ADW 15.7, ADW 15.5
PCB Library Workbench ADW 16.0 ADW 15.7, ADW 15.5
Cadence Design Kits Newest Base Release(s) Other recent Base Releases
Cadence AMS Methodology Kit AMSKIT 6.1 AMSKIT 5.1
Cadence Functional Verification Kit for ARM VKARM01 6.1
Cadence RF Design Methodology Kit RFKIT 5.2
Cadence RF SiP Methodology Kit RFSIPKT 6.1
Cadence Low Power Methodology Kit LPKIT 0.7
Encounter ConFRML Technologies CONFRML 8.1, CCD 8.1 CONFRML 7.1, CCD 6.2, CONFRML 6.1
Encounter Test ET 6.2 ET 3.1
Encounter RTL Complier RC 7.1 RC 6.2
Virtuoso Custom Chip Design Newest Base Release(s) Other recent Base Releases
Cadence Chip Optimizer FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Cadence Space-Based Router FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Virtuoso AMS Designer IC 6.1.0, IUS 6.1 IC 5.1.41, IUS 5.8, IUS 5.7
Virtuoso Analog Design Environment IC 6.1.0 IC 5.1.41
Virtuoso Aptivia Specification-driven Environment VSDE 4.1 VSDE 3.3
Virtuoso Chip Assembly Router IC 6.1.0 ICC 11.2.41
Virtuoso Chip Editor IC 6.1.0 IC 5.1.41
Virtuoso Layout Editor IC 6.1.0 IC 5.1.41
Virtuoso Layout Editor-Turbo IC 6.1.0 IC 5.1.41
Virtuoso Layout Migrate IC 6.1.0 IC 5.1.41
Virtuoso Layout Suite IC 6.1.0
Virtuoso MultiMode Simulation MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso NeoCell Analog Physical Synthesis NEOCELL 3.4 NEOCELL 3.3
Virtuoso NeoCircuit Sizing and Optimization NEOCKT 3.4 NEOCKT 3.3
Virtuoso QRC Extr*** EXT 6.2 EXT 5.1
Virtuoso RET Suite RET 1.7 RET 1.6, RET 1.5
Virtuoso Schematic Editor IC 6.1.0 IC 5.1.41
Virtuoso Spectre Circuit Simulator MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso Spectre RF Simulation Option MMSIM 8.2 MMSIM 6.1, IC 5.1.41
Virtuoso UltraSim Full-chip Simulator MMSIM 8.2 MMSIM 6.1, USIM 4.2, USIM 4.1
Virtuoso XL Layout Editor IC 5.1.41
Encounter Digital Chip Design Newest Base Release(s) Other recent Base Releases
CeltIC NDC TSI 7.1 TSI 6.2
ElectronStorm ANLS 7.0 ANLS 6.1, SEV 3.2
Cadence Chip Optimizer FINALE 2.0
Encounter Con***al Technologies CONFRML 7.1, CCD 7.1 CONFRML 6.2, CCD 6.2, CONFRML 6.1
Encounter QRC Extr*** (Fire & Ice QX) EXT 6.2 EXT 5.1
Encounter RTL Complier RCV 7.1 RCV 6.2
Encounter Test ET 6.2 ET 3.1
Encounter Timing System ETS 7.1 ETS 6.2, ETS 6.1
Encounter X SOC 8.1 XAE 6.1, XAE 5.2
First Encounter SOC81 SOC81,SOC61, SOC52
NanoRoute Ultra SOC81 SOC81,SOC61, SOC52
PacifIC Static Noise Analyzer PACIFIC61
SignalStorm NDC TSI 6.1 TSI 5.2
Silicon Ensemble-PKS Optimization SOC 6.2 SOC 6.1
SoC Encounter SOC 6.2 SOC 6.1
VoltageStorm ANLS 7.1 ANLS 6.2, ANLS 6.1
Incisive Emulation Hardware Newest Base Release(s) Other recent Base Releases
Incisive Palladium IXE 5.1 IXE 5.0, IXE 4.0, IXE 3.1
Incisive Xtreme RCC 7.1 RCC 6.3,RCC 6.2, RCC 5.3, RCC 5.2, RCC 5.1, RCC 4.4
Incisive Design Verification and Acceleration Newest Base Release(s) Other recent Base Releases
Design Team Simulator IUS 8.1 IUS 5.8, IUS 5.7
eAnalyzer SPMN 6.0 EANL 5.1, EANL 1.0
FPGA Compiler RCC 6.3 RCC 6.2, RCC 5.3, RCC 5.2, RCC 5.1, RCC 4.4
HDL Simulator IUS 8.1 IUS 5.8, IUS 5.7
Incisive Design Team Manager VMGR 1.4 EMGR 2.02, EMGR 2.0
Incisive Enterprise Manager VMGR 1.4 EMGR 2.02, EMGR 2.0
Incisive Enterprise Simulator IES 6.1 IES 2.0
Incisive Enterprise Specman Simulator IES 6.1 IES 2.0, SPECSIM 1.3
Incisive Formal IFV 6.1 IFV 5.8
Incisive Scenario Builder SPMN 6.0 SBLD 1.1, SBLD 1.0
Incisive Unified Simulator IUS 8.1 IUS 5.8, IUS 5.7
NC-Sim IUS 8.1 IUS 5.8, IUS 5.7
NC-SystemC IUS 8.1 IUS 5.8, IUS 5.7
NC-Verilog IUS 8.1 IUS 5.8, IUS 5.7
NC-VHDL IUS 8.1 IUS 5.8, IUS 5.7
Plan-to-Closure Methodology IPCM 6.1 IPCM 6.0
Specman Elite SPMN 6.1 SPMN 6.0
Verifault IUS 8.1 IUS 5.8, IUS 5.7
Verification IP Newest Base Release(s) Other recent Base Releases
AMBA EVCAMBA 2.2
eVC-AHB ABVIPAHB 1.0
eVC-AXI EVCAXI 1.2
eVC-Ethernet EVCETH 2.2
eVC-PCI EVCPCI 2.11
eVC-PCI Express EVCPCIE 2.2
eVC-USB EVCUSB 2.3 EVCUSB 2.2
Silicon Signoff and Optimization Newest Base Release(s) Other recent Base Releases
Assura (DRC/LVS) Physical Verification ASSURA 3.1.7
Cadence Physical Verification System PVS 6.1 PVS 5.2
Chameleon KCL 4.3 KCL 4.2
Diva Physical Verification IC 6.1.0 IC 5.1.41, ICOA 5.1.41
Dracula Physical Verification IC 6.1.0 IC 5.1.41, ICOA 5.0.33, ICOA 5.2.51, ICOA 5.1.41
ElectronStorm ANLS 6.2 ANLS 6.1, SEV 3.2
MaskCompose KMC 3.8
PacifIC Static Noise Analyzer PACIFIC 6.1
QuickView KQV 4.3.1 KQV 4.3
VoltageStorm Analog ANLS 7.1 ANLS 6.2,ANLS 6.1, SEV 3.2
Manufacturing Models and Implementation Newest Base Release(s) Other recent Base Releases
Cadence Chip Optimizer FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Cadence Space-Based Router FINALE 6.2 FINALE 6.11, FINALE 6.1, FINALE 2.0
Encounter QRC Extr*** (***erly Fire & Ice QX) ANLS 7.1 ANLS 7.1,ANLS 6.1, SEV 3.2
Virtuoso QRC Extr*** (***erly Assura RCX) EXT 6.2 EXT 5.1
Vituoso RET Suite RET 1.7 RET 1.6, RET 1.5
Allegro PCB & IC Packaging Newest Base Release(s) Other recent Base Releases
Allegro AMS Simulator SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Entry CIS SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Entry HDL SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro Design Publisher SPB 16.2 SPB 15.7
Allegro IC Package Designer SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro IC Package SI SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Editor SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Librarian SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB Router SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro PCB SI SPB 16.2 SPB 15.7, SPB 15.5.1
Allegro System Architect SPB 16.2 SPB 15.7, SPB 15.5.1
Cadence 3D Design Viewer SPB 16.2 SPB 15.7, SPB 15.5.1
OrCAD PCB Newest Base Release(s) Other recent Base Releases
OrCAD Capture/CIS ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD Layout ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD PCB Editor ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
OrCAD Signal Explorer ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
PSpice ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Cadence SiP Design (System-in-Package) Newest Base Release(s) Other recent Base Releases
Cadence 3D Design Viewer SPB 16.0 SPB 15.7, SPB 15.5.1
Cadence SiP Digital ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Cadence SiP RF ORCAD 16.0 ORCAD 15.7, ORCAD 15.5
Allegro Design Workbench Newest Base Release(s) Other recent Base Releases
PCB Collaboration Workbench ADW 16.0 ADW 15.7, ADW 15.5
PCB Design Workbench ADW 16.0 ADW 15.7, ADW 15.5
PCB Library Workbench ADW 16.0 ADW 15.7, ADW 15.5
Cadence Design Kits Newest Base Release(s) Other recent Base Releases
Cadence AMS Methodology Kit AMSKIT 6.1 AMSKIT 5.1
Cadence Functional Verification Kit for ARM VKARM01 6.1
Cadence RF Design Methodology Kit RFKIT 5.2
Cadence RF SiP Methodology Kit RFSIPKT 6.1
Cadence Low Power Methodology Kit LPKIT 0.7
2009-08-05
CoWare.Processor.Designer 2009

CoWare Processor Designer
Programmable Accelerators for Platform-Driven ESL Design
* Integrated design environment for unified application specific processor, programmable accelerator design and software development tool generation
* Slashes application specific processor and programmable accelerator hardware design time by months
* Eliminates months of engineer-effort for software tool development
* Ensures compatibility of instruction set simulator (ISS), software development tools and RTL implementation
* Software development environment enables application software development prior to silicon availability
CoWare® Processor Designer is an automated, application-specific embedded processor design and optimization environment that slashes months from processor hardware design time and engineer-month from the creation of application processor-specific software development tools. Processor Designer's high degree of automation enables design teams to focus on architecture exploration and application-specific processor development, rather than on consistency checking and verification of individual tools.
Processor Designer dramatically accelerates the design of both custom processors and programmable accelerators, including the application-specific instruction set processors (ASIPs) that are increasingly essential to convergent system-on-chip (SoC) functionality. Processor Designer is used to develop a wide range of processor architectures, including architectures with DSP-specific and RISC-specific features as well as SIMD and VLIW architectures.
Processor Designer's generated software development environment enables the commencement of application software development prior to silicon availability, thus eradicating a common bottleneck in embedded system development.
The key to Processor Designer's automation is its Language for Instruction Set Architectures, LISA 2.0. In contrast to SystemC, which has been developed for efficient specification of systems, LISA 2.0 is a processor description language that incorporates all necessary processor-specific components such as register files, pipelines, pins, memory and caches, and instructions. It enables the efficient creation of a single "golden" processor specification as the source for the automatic generation of the instruction set simulator (ISS) and the complete suite of software development tools, like Assembler, Linker, Archiver and C-Compiler, and synthesizable RTL code. The development tools, together with the extensive profiling capabilities of the debugger, enable rapid analysis and exploration of the application-specific processor's instruction set architecture to determine the optimal instruction set for the target application domain. Processor Designer enables the designer to optimize instruction set design, processor micro-architecture and memory sub-systems, including caches.
Processor Designer's use of a single high-level processor specification ensures the consistency of the ISS, software development tools and RTL implementation, eliminating the verification and debug effort necessitated by multiple, independently-created models.
Operating at a high level of abstraction, Processor Designer not only eliminates the time and cost inherent in HDL-based processor design and manual tool development, but also enables hardware and software designers to customize the instruction set to their needs.
2009-08-04
ALDEC-Alint-2009

Design Rule Checking
ALINT™ is an RTL design analysis tool that identifies design issues early in the development cycle. VHDL, Verilog® or mixed-language designs are checked for coding inconsistencies, design structure issues, synthesis, simulation, and clock and reset issues prior to simulation and synthesis. ALINT significantly reduces verification time for complex FPGA and ASIC designs, results in uniform, reusable and reliable code and reduces the risk of costly ASIC re-spins. Comprehensive rule sets are available for VHDL, Verilog and mixed-language designs. ALINT includes powerful utilities for rule management, violation analysis, and debugging.
Top Features
* Fast design analysis of complex ASIC/FPGA-SOC designs
* Comprehensive set of rules to check most complex design issues
* Integrated results analysis and debugging environment
* Supports IEEE VHDL, Verilog and mixed-language designs
* Supports Custom Design Rules
The increasing adoption of large, high-pin-count and high-speed FPGA devices means that right-first-time printed circuit board (PCB) design practices are more essential than ever for ensuring correct system operation. Typically, the PCB design takes place concurrently with the design and programming of the FPGA. Signal and pin assignments are initially made by the FPGA designer, and the board designer must correctly transfer these assignments to the symbols used in their system circuit schematics and board layout. As the board design progresses, pin reassignments may be needed to optimize the PCB layout. These reassignments must in turn be relayed back to the FPGA designer so that the new assignments can be processed through updated placement and routing of the FPGA design. To overcome these challenges, Zuken and Aldec provide an integrated design environment to support these design flows.
2009-08-03
Etap-PowerStation-v7.0(ETАP Pоwer Stаtiоn, ETАP Enterprise Sоlution fоr Electricаl Pоwer Systеms)
Delivering Unmatched
Speed, Precision, & Reliability
Etap.PowerStation.v7.0
Release 7.0 of the ETAP Enterprise Solution brings design and analysis innovation to a new level of advancement and provides the platform upon which future ETAP innovation will follow.
This release adds new powerful analysis modules and time-saving capabilities to the ETAP suite. This brochure highlights key functionality in Release 7.0 of ETAP, which encompasses a broad and robust set of new features and enhancements.
Templates
One-Line Diagram
- Auto-Select
- Keyboard Shortcuts
- Symbol Library
Load Analyzer
Single-Phase Arc Flash
Arc Flash Analyzer
Switching Management
Libraries
- Solid State Trip Devices
- Cable
- Transmission Line
- Relay
- Battery
Modules
- Base Package
- Load Flow Analysis
- Arc Flash Analysis
- Transient Stability
- Harmonic Analysis
- Star Device Coordination / Selectivity
- Star Sequence-of-Operation
- Data Exchange
ETAP Real-Time
- Real-Time Server
- Advanced Monitoring
- Real-Time Simulation
- Automatic Generation Control
- Energy Accounting
- Load Forecasting
- Intelligent Load Shedding
ETAP 7.0 Brochure
ETАP Pоwer Stаtiоn, ETАP Enterprise Sоlution fоr Electricаl Pоwer Systеms
Speed, Precision, & Reliability
Etap.PowerStation.v7.0
Release 7.0 of the ETAP Enterprise Solution brings design and analysis innovation to a new level of advancement and provides the platform upon which future ETAP innovation will follow.
This release adds new powerful analysis modules and time-saving capabilities to the ETAP suite. This brochure highlights key functionality in Release 7.0 of ETAP, which encompasses a broad and robust set of new features and enhancements.
Templates
One-Line Diagram
- Auto-Select
- Keyboard Shortcuts
- Symbol Library
Load Analyzer
Single-Phase Arc Flash
Arc Flash Analyzer
Switching Management
Libraries
- Solid State Trip Devices
- Cable
- Transmission Line
- Relay
- Battery
Modules
- Base Package
- Load Flow Analysis
- Arc Flash Analysis
- Transient Stability
- Harmonic Analysis
- Star Device Coordination / Selectivity
- Star Sequence-of-Operation
- Data Exchange
ETAP Real-Time
- Real-Time Server
- Advanced Monitoring
- Real-Time Simulation
- Automatic Generation Control
- Energy Accounting
- Load Forecasting
- Intelligent Load Shedding
ETAP 7.0 Brochure
ETАP Pоwer Stаtiоn, ETАP Enterprise Sоlution fоr Electricаl Pоwer Systеms
2009 07 latest crack software download
2009-07-31 ArtCAM v2009 SP2
2009-07-29 Reaction.Design.Chemkin.Pro.v15083 for Linux &Win
2009-07-28 AUTODESK.SHOWCASE.PROFESSIONAL.2010.R1
2009-07-28 VERO_VISI-SERIES_V17 (c) VERO SOFTWARE
2009-07-27 Bentley.CulvertMaster.03.02.00.01
2009-07-26 ICAM.CAMPOST.v18
2009-07-24 Maplesoft.Maple.v13.01.UPDAT
2009-07-23 Vellum Xenon v8.841
2009-07-23 PamStamp.2G.V2008.0.2
2009-07-22 VSNI.GenStat.v12.1.0.3278
2009-07-21 Tecplot.RS.2009.R2.b5281
2009-07-20 WAsP.v9.1 WAsP.Map.Editor.v9.1
2009-07-19 Etap.PowerStation.v6.0
2009-07-19 Leica.Cyclone.v6.0.4
2009-07-18 CSI Column v8.4.0
2009-07-15 TracePro 5.0.4
2009-07-15 DHI.MIKEZero 2009
2009-07-13 Csi.Etabs.StandAlone.V9.6
2009-07-11 Numeca.Fine.V8.7.2
2009-07-10 DELCAM POWERMILL V10
2009-07-09 Siemens.SIMATIC.S7.PLCSIM.v5.4.SP3
2009-07-07 AUTODESK.MOLDFLOW.V2010
2009-07-05 Siemens.Simatic.Step7.Professional.Edition.2006.SR6
2009-07-04 PTC.PRO.ENGINEER.WILDFIRE.V4.M092.Win32&WIN64
2009-07-04 GIBBSCAM.2009.V9.3.9
2009-07-03 Nemetschek Allplan 2009 Multilingual Retail
2009-07-03 WaveMetrics.IGOR.Pro.v6.1.0.Incl.Keymaker
2009-07-02 Solidworks 2009 with sp4
2009-07-02 SOLIDCAM 2009
2009-07-01 Autodesk.Navisworks.Review.2010.Multilangual
FROM caxcrack
2009-07-30 ARM SOC DESIGNER 7.1
2009-07-29 CoWare.Processor.Designer.V2009.1
2009-07-29 CoWare.Signal.Processing.Designer.v2009.1
2009-07-27 Cadence CONFRML V8.1
2009-07-24 Mentor.Graphics.PADS.Flow.9.0.1
2009-07-24 Novas 2009.07
2009-07-23 Mentor Graphics Precision Synthesis v2009a
2009-07-22 Simucad 2009
2009-07-19 HDL.Works.HDL.Design.Entry.EASE.v7.2.R8
2009-07-18 AWR.Design.Environment.v8.06
2009-07-16 Synopsys TetraMax 2008.09 SP5
2009-07-15 Magma FineSimPro 2008.09
2009-07-14 Synopsys.Sold.v2009.4
2009-07-13 Cadence LDV v5.16
2009-07-12 Cadence_IC v6.13
2009-07-11 Aldec.ALINT.2009.02
2009-07-10 Agilent.Genomic.Workbench.v5.0.14
2009-07-01 SpeedXP Suite V8.0
2009-06-30 MikroBasic Pro AVR 2009 v1.50
2009-06-30 MikroBasic Pro PIC 2009 v2.15
2009-06-28 Aldec.ALINT.2009.02
2009-06-25 Laker 32v4 P2
2009-06-23 Verdi v2009.04
2009-06-22 Altium Designer Winter 09 Build 8.3.0.16776
2009-06-20 Cadence.CTS v9.1
2009-06-19 Cadence TSI v6.1
2009-06-18 Tanner Tools V14
2009-06-15 LAker 32v3p6 LINUX
2009-06-12 Mentor Graphics HyperLynx 2009
2009-06-11 Agilent.SystemVue.v2009.05
2009-06-09 Mentor Graphics PADS 9.0 updata1
2009-06-08 Cadence SPB 16.2 Linux
2009-06-07 Mentor Graphics EE2007.5 with update2 Linux
2009-07-29 Reaction.Design.Chemkin.Pro.v15083 for Linux &Win
2009-07-28 AUTODESK.SHOWCASE.PROFESSIONAL.2010.R1
2009-07-28 VERO_VISI-SERIES_V17 (c) VERO SOFTWARE
2009-07-27 Bentley.CulvertMaster.03.02.00.01
2009-07-26 ICAM.CAMPOST.v18
2009-07-24 Maplesoft.Maple.v13.01.UPDAT
2009-07-23 Vellum Xenon v8.841
2009-07-23 PamStamp.2G.V2008.0.2
2009-07-22 VSNI.GenStat.v12.1.0.3278
2009-07-21 Tecplot.RS.2009.R2.b5281
2009-07-20 WAsP.v9.1 WAsP.Map.Editor.v9.1
2009-07-19 Etap.PowerStation.v6.0
2009-07-19 Leica.Cyclone.v6.0.4
2009-07-18 CSI Column v8.4.0
2009-07-15 TracePro 5.0.4
2009-07-15 DHI.MIKEZero 2009
2009-07-13 Csi.Etabs.StandAlone.V9.6
2009-07-11 Numeca.Fine.V8.7.2
2009-07-10 DELCAM POWERMILL V10
2009-07-09 Siemens.SIMATIC.S7.PLCSIM.v5.4.SP3
2009-07-07 AUTODESK.MOLDFLOW.V2010
2009-07-05 Siemens.Simatic.Step7.Professional.Edition.2006.SR6
2009-07-04 PTC.PRO.ENGINEER.WILDFIRE.V4.M092.Win32&WIN64
2009-07-04 GIBBSCAM.2009.V9.3.9
2009-07-03 Nemetschek Allplan 2009 Multilingual Retail
2009-07-03 WaveMetrics.IGOR.Pro.v6.1.0.Incl.Keymaker
2009-07-02 Solidworks 2009 with sp4
2009-07-02 SOLIDCAM 2009
2009-07-01 Autodesk.Navisworks.Review.2010.Multilangual
FROM caxcrack
2009-07-30 ARM SOC DESIGNER 7.1
2009-07-29 CoWare.Processor.Designer.V2009.1
2009-07-29 CoWare.Signal.Processing.Designer.v2009.1
2009-07-27 Cadence CONFRML V8.1
2009-07-24 Mentor.Graphics.PADS.Flow.9.0.1
2009-07-24 Novas 2009.07
2009-07-23 Mentor Graphics Precision Synthesis v2009a
2009-07-22 Simucad 2009
2009-07-19 HDL.Works.HDL.Design.Entry.EASE.v7.2.R8
2009-07-18 AWR.Design.Environment.v8.06
2009-07-16 Synopsys TetraMax 2008.09 SP5
2009-07-15 Magma FineSimPro 2008.09
2009-07-14 Synopsys.Sold.v2009.4
2009-07-13 Cadence LDV v5.16
2009-07-12 Cadence_IC v6.13
2009-07-11 Aldec.ALINT.2009.02
2009-07-10 Agilent.Genomic.Workbench.v5.0.14
2009-07-01 SpeedXP Suite V8.0
2009-06-30 MikroBasic Pro AVR 2009 v1.50
2009-06-30 MikroBasic Pro PIC 2009 v2.15
2009-06-28 Aldec.ALINT.2009.02
2009-06-25 Laker 32v4 P2
2009-06-23 Verdi v2009.04
2009-06-22 Altium Designer Winter 09 Build 8.3.0.16776
2009-06-20 Cadence.CTS v9.1
2009-06-19 Cadence TSI v6.1
2009-06-18 Tanner Tools V14
2009-06-15 LAker 32v3p6 LINUX
2009-06-12 Mentor Graphics HyperLynx 2009
2009-06-11 Agilent.SystemVue.v2009.05
2009-06-09 Mentor Graphics PADS 9.0 updata1
2009-06-08 Cadence SPB 16.2 Linux
2009-06-07 Mentor Graphics EE2007.5 with update2 Linux
2009-07-31
LightTools-6.3 license
Optical Research Associates (ORA) has released LightTools 6.3, an updated version of the illumination design and analysis software, which delivers an expanded, more powerful tool set for optical system modelling and optimisation. The software features an alternate optimisation engine, which supplements the existing optimiser and enables users to successfully address a broader range of design problems. In addition, LightTools 6.3 permits optimisation with user-defined variables, merit functions and constraints, utilising either of the optimisation engines, to further expand the classes of systems for which the software can converge on an efficient solution.
LightTools 6.3 also adds functionality for LED modelling and simulation. An expanded LED library has been incorporated that contains mechanical models for hundreds of LEDs from all major manufacturers, including apodisation files that allow accurate far-field modelling of source output, as well as ray data files for both near-field and far-field output. Furthermore, LightTools ray data files now include colour information to model the spatial and angular output characteristics of the source as a function of colour.
Another significant feature of the software is an enhanced thin film modelling utility. This allows the user to enter a thin film coating and then simulate the performance of that coating on any substrate and under any conditions of use. Other new features include an IES file format import utility that reads and converts IES formatted angular intensity data files into LightTools angular apodisation files, and the ability to perform colorimetric analyses of spatial and angular luminance calculations.
greater than the number of merit function
components
– The merit function is relatively flat with many
local minima
LightTools 6.3 New Features Webinar, Slide 10
Alternate Engine User Interface
• Switching
between the
Standard and
Alternate engines
in done on the
Optimization>
Input screen
– Increment
adjustments ar
adjustments are
handled
automatically
LightTools 6.3 New Features Webinar, Slide 11
User Defined Optimization Element
• LightTools 6.3 introduces user-defined
optmization elements
– Variables, Merit Functions and Constraints
• User-defined elements allow users to
program their own dll to manipulate the
LightTools model or perform complex merit
function evaluations
– Dll can be written using Visual Basic or C++
– Allows users great flexibility in defining their
optimization problem
LightTools 6.3 New Features Webinar, Slide 12
Variable Boundaries
• Variable boundaries
can now be used as
physical limits
– Used when exceeding the variable bounds would cause the system to beunbuildable
– Prevents the optimizer from attempting trial solutions outside the declared boundaries
– Used only with the
Standard Engine
LightTools 6.3 New Features Webinar, Slide 13
• File System
LightTools 6.3 New Features Webinar, Slide 14
LED Library
• A new LED library has been added
• Over 400 LEDs included from major
manufacturers
– Cree; Lumileds; Nichia; and OSRAM
• LEDs can be imported as
– Mechanical Only, includes only the
mechanical structure
– Angular Apodization – includes a source with an angular apodization definition. Suitable for the far field
for the far field
– Ray Data Source – includes the mechanical
structure with a ray data source attached
The license file location has been moved from the installation folder to the Shared
Documents folder
• An installation program has been added that will copy the license.dat file to the
appropriate folder
– Access this program through the Start menu
– License file is shared between all users on the
same computer
File System
Overview
Changes/Vista®
Compatibility
Compatibility
• Optimization
• LED Library
• Ray Data Files
• Cylindrical Receivers
• Thin Film Utility
• Phosphor
Enhancements
Enhancements
• RGB Improvements
LightTools 6.3 New Features Webinar, Slide 2
Vista Compatibility
• LightTools 6.3 is now fully compatible with
Windows Vista
– With and without administrator privileges
• This required some changes to how
LightTools is installed
– Changes affect both Windows XP®and
Windows Vista®users
2009-07-30
SimSci-Esscor PROII V8.3
IPS is changing the way we do business to drive market-leading quality and reliability. We have unified the breadth of our offerings to deliver a cohesive and comprehensive set of industry and business solutions that solve manufacturing, supply chain, and business operations challenges with greater impact and unprecedented results. We’re bringing more than any single product or discipline to achieve this – we’re bringing consulting, services, and a proven portfolio of specialized offerings from our well-known legacy brands of Foxboro, Triconex, SimSci-Esscor, and Avantis.
As part of the transformation comes this website that includes improved content from our legacy brand websites - and so much more. Please take a moment to become familiar with the pages and sections of the new website, such as the Solutions area and the Knowledge Center. You will gain greater understanding of how much more value IPS can offer as one, united organization. Be sure to update your SimSci-Esscor web site bookmarks to reflect the new IPS site.
SimSci-Esscor is dedicated to supporting our customers' needs in the most effective and efficient ways possible. We offer many different levels of support for each product or solution, including subsequent licensing.
As part of the transformation comes this website that includes improved content from our legacy brand websites - and so much more. Please take a moment to become familiar with the pages and sections of the new website, such as the Solutions area and the Knowledge Center. You will gain greater understanding of how much more value IPS can offer as one, united organization. Be sure to update your SimSci-Esscor web site bookmarks to reflect the new IPS site.
SimSci-Esscor is dedicated to supporting our customers' needs in the most effective and efficient ways possible. We offer many different levels of support for each product or solution, including subsequent licensing.
Vero visit v17
Vero visi 17 Software Plc is a company that creates and distributes CAD / CAM / CAE software for aiding the design and manufacturing process in specific sectors of the industry with a knowledge driven focus on Mould & Die. The specific sectors include the design and manufacture of plastic injection moulds, sheet metal stamping dies, progressive dies, shoe moulds, electrode production, multi-axis laser cutting, Wire EDM and others. These widespread product types are in turn to be found in a multitude of manufacturing industry sectors such as automotive, electronic, medical, white goods and aerospace.
Vero visi 17 Software has offices in Italy, England, Japan, France, Canada, USA and China. The company now has a user base that numbers more than 20,000 and supplies products to more than 40 countries through its wholly owned subsidiaries and competence centres.
5 axis machining has traditionally been regarded as advanced technology best suited to the aerospace and automotive industry. 5 axis machining offers many advantages, all of which are now being applied to the mould and die sector. VISI Machining provides the operator with a productive solution for creating highly efficient toolpaths with advanced collision control for the most complex 3D data.
Features at a glance:
* Extensive CAD interfaces
* 3D to 5 axis toolpath conversion
* Continuous 5 axis roughing / finishing
* 3 + 2 positional machining
* Multiple tool tilting options
* Full gouge protection
* Optimised toolpath movement
* Kinematic simulation
* Customisable postprocessors
* HTML & XLS report output
Extensive range of CAD interfaces. VISI can work directly with Parasolid, IGES, CATIA v4 & v5, Pro-E, UG, STEP, Solid Works, Solid Edge, ACIS, DXF, DWG, STL and VDA files. The extensive range of translators ensures that users can work with data from almost any supplier. For complex 5 axis programming it is often necessary to tweak the geometry so companies working with complex designs will benefit from the simplicity with which their customer's CAD data can be manipulated.
Deep cavity / core machining. Many complex moulds contain deep cavity areas and small radii which need to be machined with small diameter tools. Generally this would involve the use of tool extensions or longer tools which would increase the risk of deflection and provide a poor surface finish. By approaching this from a different angle, the head can be lowered and the collision detection will automatically tilt the tool and holder away from the work piece. The major advantage of this strategy is the use of shorter tools which will increase tool rigidity, reducing vibration and deflection. As a result, a constant chip load and higher cutting speed can be achieved which will ultimately increase tool life and produce a high quality surface finish. In more shallow areas, larger bull nose cutters can be used with a small lag angle. The major advantage of this approach is a lower number of toolpath passes which also reduces machining time and improves surface finish.
3D > 5 axis conversion. All 3D toolpaths can be converted to 5 axis operations which dramatically increases the number of strategies available to cover any scenario. Using this approach will apply high speed machining technology to 5 axis toolpaths. The 3D > 5 axis conversion provides intelligent collision detection and will automatically tilt away from the piece only when required. This type of semi-automatic toolpath will dramatically speed up programming and shorten the learning curve.
Vero visi 17 Software has offices in Italy, England, Japan, France, Canada, USA and China. The company now has a user base that numbers more than 20,000 and supplies products to more than 40 countries through its wholly owned subsidiaries and competence centres.
5 axis machining has traditionally been regarded as advanced technology best suited to the aerospace and automotive industry. 5 axis machining offers many advantages, all of which are now being applied to the mould and die sector. VISI Machining provides the operator with a productive solution for creating highly efficient toolpaths with advanced collision control for the most complex 3D data.
Features at a glance:
* Extensive CAD interfaces
* 3D to 5 axis toolpath conversion
* Continuous 5 axis roughing / finishing
* 3 + 2 positional machining
* Multiple tool tilting options
* Full gouge protection
* Optimised toolpath movement
* Kinematic simulation
* Customisable postprocessors
* HTML & XLS report output
Extensive range of CAD interfaces. VISI can work directly with Parasolid, IGES, CATIA v4 & v5, Pro-E, UG, STEP, Solid Works, Solid Edge, ACIS, DXF, DWG, STL and VDA files. The extensive range of translators ensures that users can work with data from almost any supplier. For complex 5 axis programming it is often necessary to tweak the geometry so companies working with complex designs will benefit from the simplicity with which their customer's CAD data can be manipulated.
Deep cavity / core machining. Many complex moulds contain deep cavity areas and small radii which need to be machined with small diameter tools. Generally this would involve the use of tool extensions or longer tools which would increase the risk of deflection and provide a poor surface finish. By approaching this from a different angle, the head can be lowered and the collision detection will automatically tilt the tool and holder away from the work piece. The major advantage of this strategy is the use of shorter tools which will increase tool rigidity, reducing vibration and deflection. As a result, a constant chip load and higher cutting speed can be achieved which will ultimately increase tool life and produce a high quality surface finish. In more shallow areas, larger bull nose cutters can be used with a small lag angle. The major advantage of this approach is a lower number of toolpath passes which also reduces machining time and improves surface finish.
3D > 5 axis conversion. All 3D toolpaths can be converted to 5 axis operations which dramatically increases the number of strategies available to cover any scenario. Using this approach will apply high speed machining technology to 5 axis toolpaths. The 3D > 5 axis conversion provides intelligent collision detection and will automatically tilt away from the piece only when required. This type of semi-automatic toolpath will dramatically speed up programming and shorten the learning curve.
2009-07-24
Mentor Graphics Precision Synthesis v2009a
Advanced FPGA SynthesisPrecision Synthesis is the most advanced synthesis tool for all FPGA applications including complex designs and ASIC prototyping. Precision Synthesis forms the centerpiece of Mentor Graphics FPGA flow — the industry's most comprehensive vendor-independent solution for FPGA design.
Precision Synthesis provides high quality of results, interactive design flows and award winning analysis. These capabilities reduce design iterations, and enable faster, more predictable completion of designs.
Precision RTL provides an intuitive logic synthesis environment and forms the centerpiece of the Mentor Graphics vendor-independent FPGA flow.
With a rich feature set that includes advanced optimizations, award-winning analysis, and industry-leading language support, Precision RTL enables vendor-independent design, accelerates time to market, eliminates design defects, and delivers superior quality of results (QoR).
Key Features & BenefitsVendor Independent Synthesis
Support for devices from Achronix, Actel, Altera, Lattice, Quicklogic, and Xilinx
Same constraints and language support for all device families
Excellent Quality of Results
Meet performance and area goals quickly
Advanced optimization and inference techniques for all vendors
Advanced retiming algorithm to improve performance
Easy-to-Use Interface
Improves designer efficiency
Design Bar guides users step by step through synthesis, analysis, placement and routing
Award-Winning Analysis
Powerful RTL and technology schematic views
Identify problems early in the design process
Interactive static-timing engine quickly performs "what-if" timing analysis for different scenarios
Leading Language Support
Supports any combination of Verilog, VHDL, SystemVerilog, and EDIF formats
Industry leading SystemVerilog support
Supports Synopsys Design Constraints (SDC)—the ASIC industry standard
ASIC Prototyping Support
Eases the ASIC-to-FPGA migration process
Automatic gated clock conversion
Conversion of DesignWare instances
Support for ASIC timing constraints (SDC)
Datasheets
Aerospace and Military SolutionsAerospace and military customers design innovative products at lower cost and in less time while maintaining absolute assurance of safety and reliability.
Precision Synthesis provides high quality of results, interactive design flows and award winning analysis. These capabilities reduce design iterations, and enable faster, more predictable completion of designs.
Precision RTL provides an intuitive logic synthesis environment and forms the centerpiece of the Mentor Graphics vendor-independent FPGA flow.
With a rich feature set that includes advanced optimizations, award-winning analysis, and industry-leading language support, Precision RTL enables vendor-independent design, accelerates time to market, eliminates design defects, and delivers superior quality of results (QoR).
Key Features & BenefitsVendor Independent Synthesis
Support for devices from Achronix, Actel, Altera, Lattice, Quicklogic, and Xilinx
Same constraints and language support for all device families
Excellent Quality of Results
Meet performance and area goals quickly
Advanced optimization and inference techniques for all vendors
Advanced retiming algorithm to improve performance
Easy-to-Use Interface
Improves designer efficiency
Design Bar guides users step by step through synthesis, analysis, placement and routing
Award-Winning Analysis
Powerful RTL and technology schematic views
Identify problems early in the design process
Interactive static-timing engine quickly performs "what-if" timing analysis for different scenarios
Leading Language Support
Supports any combination of Verilog, VHDL, SystemVerilog, and EDIF formats
Industry leading SystemVerilog support
Supports Synopsys Design Constraints (SDC)—the ASIC industry standard
ASIC Prototyping Support
Eases the ASIC-to-FPGA migration process
Automatic gated clock conversion
Conversion of DesignWare instances
Support for ASIC timing constraints (SDC)
Datasheets
Aerospace and Military SolutionsAerospace and military customers design innovative products at lower cost and in less time while maintaining absolute assurance of safety and reliability.
2009-07-23
Simucad 2009 license
Simucad delivers a comprehensive set of EDA tools that enable companies around the world to design
analog and mixed-signal integrated circuits. IC designers use our IC CAD products to design and
simulate analog circuits. Closure between manufacturing and design depends on accurately extracted
device models and accurate circuit simulation
UTMOST IV
Optimization Module for Compact/Macro-ModelingUTMOST IV represents the next generation in SPICE model
optimization software. Building on many years experience, UTMOST IV provides powerful tool for
developing SPICE models. UTMOST IV provides an easy to use tool for the generation of accurate,
compact models and macro-models for analog, mixed-signal and RF applications.
Key Features
Data storage and organization based on Firebird 64 bit relational database
High speed interface to SmartSpice provides rapid simulation without sacrificing the power and
accuracy of a full SPICE simulator
With unlimited model or macro-model complexity, UTMOST IV is capable of modeling any device
Scalable compact and macro-models, for passive or active devices is made easy using UTMOST IV
Easy data import from UTMOST III logfiles, or competitor data files
Family of advanced optimizers, including genetic type optimizers, makes extraction of even the most
complicated models an easy task
Any combination of data can be used during any optimization, e.g. multiple temperature, dc and
capacitance, etc.
SmartSpice
The New Gold Standard Analog Circuit SimulatorSmartSpice delivers the highest performance and accuracy
required to design complex high precision analog circuits, analog mixed-signal circuits, analyze
critical nets, characterize cell libraries, etc.. SmartSpice is compatible with popular analog design
flows and foundry-supplied device models.
Key Features
100% HSPICE™ and SPECTRE™ compatible for netlists, models, analysis features, and results
Provides the most accurate circuit simulation results for critical analog designs
Offers largest capacity of any true SPICE circuit simulator – up to 400 thousand active devices in
32-bit and 8 million active devices in 64-bit version
Fastest run-time of any true SPICE circuit simulator and the only SPICE supporting multiple threads
for parallel operation
Multiple solvers and stepping algorithms for robust convergence
Largest collection of calibrated SPICE models for traditional technologies (Bipolar, CMOS) and
emerging technologies (TFT, SOI, HBT, FRAM, etc.)
Provides open model development environment and extensive analog behavioral capability with Verilog-A
Enables SEE (Single Event Effects) reliability analysis for nanometer scale designs
Gateway
Schematic EditorGateway supports flat or hierarchical designs of any technology. Gateway readily accepts legacy designs from other schematic editors (PSPICE, ViewDraw, Composer, etc) through EDIF 200 standard. Gateway can be used by large design teams through global preferences and handles multiple designs and technologies with specific workspaces.
Key FeaturesPowerful schematic capture and editor functionality to create and modify multi-view, multi-sheet, hierarchical IC designs Seamless integration with SmartSpice Circuit Simulator that creates an interactive design environment with behavioral models, cross-probing, waveform display, and analysis Controls multi-user projects with shared work spaces for libraries of cells and symbols used by the design team Smooth transition from other schematic capture tools through
analog and mixed-signal integrated circuits. IC designers use our IC CAD products to design and
simulate analog circuits. Closure between manufacturing and design depends on accurately extracted
device models and accurate circuit simulation
UTMOST IV
Optimization Module for Compact/Macro-ModelingUTMOST IV represents the next generation in SPICE model
optimization software. Building on many years experience, UTMOST IV provides powerful tool for
developing SPICE models. UTMOST IV provides an easy to use tool for the generation of accurate,
compact models and macro-models for analog, mixed-signal and RF applications.
Key Features
Data storage and organization based on Firebird 64 bit relational database
High speed interface to SmartSpice provides rapid simulation without sacrificing the power and
accuracy of a full SPICE simulator
With unlimited model or macro-model complexity, UTMOST IV is capable of modeling any device
Scalable compact and macro-models, for passive or active devices is made easy using UTMOST IV
Easy data import from UTMOST III logfiles, or competitor data files
Family of advanced optimizers, including genetic type optimizers, makes extraction of even the most
complicated models an easy task
Any combination of data can be used during any optimization, e.g. multiple temperature, dc and
capacitance, etc.
SmartSpice
The New Gold Standard Analog Circuit SimulatorSmartSpice delivers the highest performance and accuracy
required to design complex high precision analog circuits, analog mixed-signal circuits, analyze
critical nets, characterize cell libraries, etc.. SmartSpice is compatible with popular analog design
flows and foundry-supplied device models.
Key Features
100% HSPICE™ and SPECTRE™ compatible for netlists, models, analysis features, and results
Provides the most accurate circuit simulation results for critical analog designs
Offers largest capacity of any true SPICE circuit simulator – up to 400 thousand active devices in
32-bit and 8 million active devices in 64-bit version
Fastest run-time of any true SPICE circuit simulator and the only SPICE supporting multiple threads
for parallel operation
Multiple solvers and stepping algorithms for robust convergence
Largest collection of calibrated SPICE models for traditional technologies (Bipolar, CMOS) and
emerging technologies (TFT, SOI, HBT, FRAM, etc.)
Provides open model development environment and extensive analog behavioral capability with Verilog-A
Enables SEE (Single Event Effects) reliability analysis for nanometer scale designs
Gateway
Schematic EditorGateway supports flat or hierarchical designs of any technology. Gateway readily accepts legacy designs from other schematic editors (PSPICE, ViewDraw, Composer, etc) through EDIF 200 standard. Gateway can be used by large design teams through global preferences and handles multiple designs and technologies with specific workspaces.
Key FeaturesPowerful schematic capture and editor functionality to create and modify multi-view, multi-sheet, hierarchical IC designs Seamless integration with SmartSpice Circuit Simulator that creates an interactive design environment with behavioral models, cross-probing, waveform display, and analysis Controls multi-user projects with shared work spaces for libraries of cells and symbols used by the design team Smooth transition from other schematic capture tools through
2009-07-22
icam CAM-POST V18 license
; Montreal, Canada) released CAM-POST V18, the latest version of its graphical NC postprocessing software solution, an interactive development and deployment software product that supports most CAD / CAM systems, CNC controllers, and machine tools.
Version 18 delivers technological improvements based on the evolution of the NC manufacturing industry and the market intelligence gathered upon solving current manufacturing issues faced by leading aerospace and automotive companies.
CAM-POST V18 provides the environment for a tightly integrated postprocessing and machine simulation solution allowing users to create and automatically test NC programs against collisions and other programming errors within a single user-friendly graphical interface.
Building on its advanced features such as path planning and rotary axes pre-positioning / winding, developed to enhance the machining process while avoiding dwell marks, over-traveling and rotary repositioning, CAM-POST V18 offers an array of new features to its end-users including rotary head support for 5-axis Mill / Turn machines; new polar interpolation (TRANSMIT, G12.1…) and emulation support for Mill / Turn and Mill machines; rotary axis singular-positioning optimization to avoid linear axis over-traveling conditions; and automatic switching between Cartesian (xyz) and Polar (zxc) to avoid linear axis over-traveling.
ICAM’s complete NC manufacturing product line including CAM-POST V18 is now available for 64-bit processors and supports Windows Vista. The ICAM database supports extended postprocessor names and unlimited revisions.
Version 18 delivers technological improvements based on the evolution of the NC manufacturing industry and the market intelligence gathered upon solving current manufacturing issues faced by leading aerospace and automotive companies.
CAM-POST V18 provides the environment for a tightly integrated postprocessing and machine simulation solution allowing users to create and automatically test NC programs against collisions and other programming errors within a single user-friendly graphical interface.
Building on its advanced features such as path planning and rotary axes pre-positioning / winding, developed to enhance the machining process while avoiding dwell marks, over-traveling and rotary repositioning, CAM-POST V18 offers an array of new features to its end-users including rotary head support for 5-axis Mill / Turn machines; new polar interpolation (TRANSMIT, G12.1…) and emulation support for Mill / Turn and Mill machines; rotary axis singular-positioning optimization to avoid linear axis over-traveling conditions; and automatic switching between Cartesian (xyz) and Polar (zxc) to avoid linear axis over-traveling.
ICAM’s complete NC manufacturing product line including CAM-POST V18 is now available for 64-bit processors and supports Windows Vista. The ICAM database supports extended postprocessor names and unlimited revisions.
2009-07-16
DHI.MIKEZero 2009
MIKE Zero is the common name of DHI’s fully Windows integrated graphical user interface for setting up simulations, pre- and post-processing analysis, presentation and visualisation. Presently, the MIKE Zero framework gives access to the following DHI modelling systems:
MIKE 11 - a 1D modelling system for rivers and channels
MIKE 21 - a 2D modelling system for estuaries, coastal water and seas
MIKE 3 - a 3D modelling system for deep seas, estuaries and coastal waters
MIKE Flood - a 1D-2D modelling system for flood studies
LITPACK - a modelling system for littoral processes and coastline kinetics
MIKE SHE - a modelling system for integrated groundwater and water resources
MIKE 11 - a 1D modelling system for rivers and channels
MIKE 21 - a 2D modelling system for estuaries, coastal water and seas
MIKE 3 - a 3D modelling system for deep seas, estuaries and coastal waters
MIKE Flood - a 1D-2D modelling system for flood studies
LITPACK - a modelling system for littoral processes and coastline kinetics
MIKE SHE - a modelling system for integrated groundwater and water resources
AUTODESK Moldflow 2010
Autodesk?Moldflow?Adviser software, part of the Autodesk solution
for Digital Prototyping, provides easy-to-use tools that help you to
simulate and optimize your part, mold, and tool designs long before
manufacturing begins. By using a digital prototype to simulate the
injection molding process, you can reduce the number of physical
prototypes required to perfect a design and get your products to
market faster.
Autodesk?Moldflow?Insight injection molding simulation software,
part of the Autodesk solution for Digital Prototyping, provides a
complete set of advanced plastics engineering simulation tools for use
on digital prototypes. Providing in-depth analysis and optimization of
plastic parts and their associated molds, Moldflow Insight offers
powerful functionality that can simulate the most advanced molding
processes in use today.
for Digital Prototyping, provides easy-to-use tools that help you to
simulate and optimize your part, mold, and tool designs long before
manufacturing begins. By using a digital prototype to simulate the
injection molding process, you can reduce the number of physical
prototypes required to perfect a design and get your products to
market faster.
Autodesk?Moldflow?Insight injection molding simulation software,
part of the Autodesk solution for Digital Prototyping, provides a
complete set of advanced plastics engineering simulation tools for use
on digital prototypes. Providing in-depth analysis and optimization of
plastic parts and their associated molds, Moldflow Insight offers
powerful functionality that can simulate the most advanced molding
processes in use today.
Delcam powermill v10
delcam powermill v10
PowerMILL CAM system at the EASTEC exhibition to be held from 19th to 21st May in Springfield Massachusetts. This new release, version 10, offers the fastest-ever toolpath generation on multi-processor computers, giving greatly increased user productivity. It incorporates the latest background-processing and multi-threading technologies and so uses the full power of recent hardware developments to reduce calculation times and increase output dramatically.
PowerMILL 10 will offer even faster calculation times for large, complex parts
Other enhancements to further increase productivity include reduced memory usage when programming the largest and most complex parts, and improved ordering to give faster cycle times on the machine tool.
With PowerMILL 10, users can prepare data in the foreground while calculating toolpaths in the background. This eliminates the need for the user to wait for each calculation to be completed before he can start preparing the next operation. While this approach can be used with single core equipment, there may be a slowing of the calculation times. The benefits are much greater with computers having two or more cores as there will be no degradation of the processing speed.
Calculations can be queued by the operator and the software will automatically start the next operation as soon as each toolpath is generated. For example, it is no longer necessary to wait for a complete roughing path to be produced before work starts on programming the rest-roughing operation. Similarly, the user can be setting the parameters needed to machine one area of a part, while toolpaths are being calculated in the background for a second area with a different strategy.
The new multi-threading capabilities allow calculations to be divided between the cores in a multi-core machine. This improves calculation times significantly so increasing user productivity, reducing any down-time where machine tools are waiting for NC data and minimizing lead times.
The extent of the savings will depend on the size and complexity of the part being machined and on the programming strategies being used. Tests at Delcam indicate that a dual core computer will perform raster machining calculations in around 55% of the time taken by a single core machine. A quad core machine will complete the calculation in around 35% of the time and an eight core machine in around 25% of the time.
PowerMILL CAM system at the EASTEC exhibition to be held from 19th to 21st May in Springfield Massachusetts. This new release, version 10, offers the fastest-ever toolpath generation on multi-processor computers, giving greatly increased user productivity. It incorporates the latest background-processing and multi-threading technologies and so uses the full power of recent hardware developments to reduce calculation times and increase output dramatically.
PowerMILL 10 will offer even faster calculation times for large, complex parts
Other enhancements to further increase productivity include reduced memory usage when programming the largest and most complex parts, and improved ordering to give faster cycle times on the machine tool.
With PowerMILL 10, users can prepare data in the foreground while calculating toolpaths in the background. This eliminates the need for the user to wait for each calculation to be completed before he can start preparing the next operation. While this approach can be used with single core equipment, there may be a slowing of the calculation times. The benefits are much greater with computers having two or more cores as there will be no degradation of the processing speed.
Calculations can be queued by the operator and the software will automatically start the next operation as soon as each toolpath is generated. For example, it is no longer necessary to wait for a complete roughing path to be produced before work starts on programming the rest-roughing operation. Similarly, the user can be setting the parameters needed to machine one area of a part, while toolpaths are being calculated in the background for a second area with a different strategy.
The new multi-threading capabilities allow calculations to be divided between the cores in a multi-core machine. This improves calculation times significantly so increasing user productivity, reducing any down-time where machine tools are waiting for NC data and minimizing lead times.
The extent of the savings will depend on the size and complexity of the part being machined and on the programming strategies being used. Tests at Delcam indicate that a dual core computer will perform raster machining calculations in around 55% of the time taken by a single core machine. A quad core machine will complete the calculation in around 35% of the time and an eight core machine in around 25% of the time.
2009-07-09
Numeca Fine 8.7.2
NUMECA International's product strategy is based on the development of automated and customized Flow Integrated Environments (FINETM). It allows for rapid design, simulation, and optimization of flow problems. Our software environments cover a wide range of applications while providing feature-specific modules and capabilities dedicated to specific areas of application.
Our FINE environments integrate CAD modeling capabilities, advanced pre- and post-processing software, powerful flow solvers, optimization kernels, and a wide range of multiphysics models.
NUMECA's grid generation software AutoGrid5TM and HEXPRESSTM are unique on the market. They allow the generation of structured and unstructured full hexahedral meshes in a highly automated way, providing a high grid quality within short time frames.
NUMECA's visualization software CFViewTM provides a powerful, generic, and object-oriented platform to perform all standard qualitative and quantitative 2D/3D operations.
AutoBladeTM, IGGTM, AutoGrid5TM, HEXPRESSTM which are integrated in our FINE environments are also available as standalone software. They accept input/output files from other commercial software such as ANSYS CFX, Fluent, STARCD, ProE, Catia, etc.
FINETM/Turbo is a Flow Integrated Environment dedicated to the simulation of rotating and turbomachinery flows.
Gas Turbine film cooling analysis with FINE/Turbo, with conjugated heat transfer in solid bodies.
FINETM/Hexa is a Flow Integrated Environment dedicated to the simulation of complex internal and external applications.
Pedestrian air comfort analysis with FINE/Hexa, Covent Garden, Brussels. Courtesy Immobiliere du Royal Rogier and AM Art & Build/Montois Partners.
FINETM/Marine is a Flow Integrated Environment especially designed for marine applications.
Full 3D simulation of wave generation on the water surface around a high performance yacht (Courtesy Van Oossanen & Associates).
FINETM/Design3D is a Flow Integrated Environment dedicated to the design and optimization of blades and channels used in rotating machinery.
Multi-point optimization of the Rotor 37 with FINE/Design3D
Stand alone pre- and post-processing tools
NUMECA pre- and post-processing tools are available in FINETM series or as standalone products.
HEXPRESSTM is a highly automated hexahedral grid generator for internal and external applications.
AutoGridTM is a nearly automatic hexahedral grid generator for rotating and turbomachinery applications.
IGGTM is an interactive geometry modeler and advanced block-structured mesh generator.
AutoBladeTM is a parametric modeler dedicated to the design of blades and channels of rotating machinery.
CFViewTM is an advanced visualization system, offering qualitative and quantitative tools for CFD analysis.
Our FINE environments integrate CAD modeling capabilities, advanced pre- and post-processing software, powerful flow solvers, optimization kernels, and a wide range of multiphysics models.
NUMECA's grid generation software AutoGrid5TM and HEXPRESSTM are unique on the market. They allow the generation of structured and unstructured full hexahedral meshes in a highly automated way, providing a high grid quality within short time frames.
NUMECA's visualization software CFViewTM provides a powerful, generic, and object-oriented platform to perform all standard qualitative and quantitative 2D/3D operations.
AutoBladeTM, IGGTM, AutoGrid5TM, HEXPRESSTM which are integrated in our FINE environments are also available as standalone software. They accept input/output files from other commercial software such as ANSYS CFX, Fluent, STARCD, ProE, Catia, etc.
FINETM/Turbo is a Flow Integrated Environment dedicated to the simulation of rotating and turbomachinery flows.
Gas Turbine film cooling analysis with FINE/Turbo, with conjugated heat transfer in solid bodies.
FINETM/Hexa is a Flow Integrated Environment dedicated to the simulation of complex internal and external applications.
Pedestrian air comfort analysis with FINE/Hexa, Covent Garden, Brussels. Courtesy Immobiliere du Royal Rogier and AM Art & Build/Montois Partners.
FINETM/Marine is a Flow Integrated Environment especially designed for marine applications.
Full 3D simulation of wave generation on the water surface around a high performance yacht (Courtesy Van Oossanen & Associates).
FINETM/Design3D is a Flow Integrated Environment dedicated to the design and optimization of blades and channels used in rotating machinery.
Multi-point optimization of the Rotor 37 with FINE/Design3D
Stand alone pre- and post-processing tools
NUMECA pre- and post-processing tools are available in FINETM series or as standalone products.
HEXPRESSTM is a highly automated hexahedral grid generator for internal and external applications.
AutoGridTM is a nearly automatic hexahedral grid generator for rotating and turbomachinery applications.
IGGTM is an interactive geometry modeler and advanced block-structured mesh generator.
AutoBladeTM is a parametric modeler dedicated to the design of blades and channels of rotating machinery.
CFViewTM is an advanced visualization system, offering qualitative and quantitative tools for CFD analysis.
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