2008-06-27

SolidCAM 2008 r12 For solidwokrs2008


With more than 100 new features, SolidCAM2008 R12 will be the most powerful CAM software seamlessly integrated in the 3D CAD mainstream system SolidWorks2008.

The single-window user interface and the full associativity between the CAD model and NC tool path, guarantees a short learning curve and an efficient flow from the 3D design model to the machined part.

The new version provides a complete manufacturing solution with enhanced user friendliness, more integration and automation features, and additional CAM functions.

The user friendliness will be enhanced by a new user interface for Mill operations and the new capability to define user-specific Default templates for parameter settings for all operations.

Furthermore, the 3D connexion SpaceNavigator mouse is supported as new input device. The new version also contains a framework to integrate external application programs.

As first examples, the external tool library from Vardex (www.vardex.com) and the tool management system from TDM Systems (www.tdmsystems.com) are now linked to SolidCAM2008 R12.

SolidCAM´s automatic feature recognition and machining capability (AFRM) for multiple drills and complex holes has now been greatly enhanced in SolidCAM2008 R12 with a new capability for 2.5D pockets.

This capability provides automatic recognition and machining of multi-level closed and open pockets in a solid model, in addition to through pockets.

SolidCAM2008 R12 offers a new tool table for milling that supports a broader range of milling-tools.

For 2.5D milling, new operations for the milling of 3D profiles and T-Slots have been added. The Pocket operation has also been enhanced in the support of open pockets.

The powerful HSM module has been enhanced in SolidCAM2008 R12, including use of STL files as input for the generation of high-speed machining tool paths.

In simultaneous 5-axis milling, 12 dedicated operations are now available for specific tasks including swarf and port machining, electrode milling, impeller and turbine blade machining.

2008-06-21

CoventorWare 2008


The only simulation tool available for quickly and accurately evaluating the behavior of a MEMS device in a surrounding system

Design engineers can efficiently simulate complex MEMS devices and MEMS-based products, including inertial sensors, RF switches, resonators and oscillators, and optical mirrors with the CoventorWare-ARCHITECT™ module. ARCHITECT goes way beyond the limitations of simple SPICE-based models and macro-models derived from FEA.
With ARCHITECT, you will:

create your designs faster, using the world’s most comprehensive MEMS component library
significantly reduce your product development time by means of extraordinarily fast simulation speeds
perform fast system-level simulations with finite-element accuracy
simulate very complex designs where finite-element analysis would be impractical
achieve more "first-time-right" designs
maximize your design creativity
not be constrained by software limitations, when using your legacy design tools and data
conveniently specify your process sequence and materials in one place for subsequent use in all CoventorWare modules
create 2D layouts of your MEMS design that include true (not segmented) arcs and curves – essential for efficient finite element analysis
import and export layouts in widely used formats such as GDSII and DXF
perform MEMS-specific design rule checks on your layouts
automatically generate 3D solid models from 2D layouts
quickly prepare solid models for meshing, and automatically generate efficient meshes for high-aspect ratio MEMS structures, view meshes, and do mesh quality checks
import and export solid models in widely used CAD formats
model the foundry process that will be used to fabricate your MEMS design
jump start your design by choosing from among the included Foundry Access Kits for more than 10 standard MEMS fabrication processes
investigate the impact of alternative foundries or changes in the processing sequence
quickly investigate packaging options by accessing a library of 3D models of standard MEMS packages
Foundry Access Kits include a process sequence, material properties, a layout template with all necessary layers, and design rule checks (DRCs). MEMS foundries can use DESIGNER to create their own access kits, or partner with Coventor to distribute their access kit to Coventor’s worldwide customer base.
With ANALYZER, you can:

simulate the physical behavior of your MEMS or microfluidics design using the most appropriate, best-of-breed 3D field solvers
perform multi-physics simulations that are critical to MEMS, such as coupled electro-mechanics and fluid-structure interaction
explore a variety of design concepts to find out which ones work
perform parametric studies to optimize your design
investigate manufacturing effects such as residual stress
understand the impact of changes in the fab process and material properties
incorporate packaging effects such as the effects of ambient temperature and pressure
predict or validate experimental measurements
validate simulation results from other tools
CoventorWare 2008

2008-06-16

imold 2008 for solidworks 2008 sp2.1


The IMOLD V8 is SolidWorks 2008 ready which is yet another solid demonstration of Manusoft’s intent to ensure that it is ahead of the competition. Beyond the label and specifications, IMOLD V8 is engineered to attract the attention and imagination of the mold designers worldwide with its significant improvement in all round performance ensuring users of maximum returns to their investments.

IMOLD V8’s new user interface provides users with a fresh and enhanced intuitive experience that will certainly set to spark designers’ imaginations to greater heights. The enhancements to the interface does not just include changes in icons, they also include additions of useful productive tools and toolbars. The IMOLD interface is now improved to decrease mouse travel and events. A new toolbar layout, embedded right mouse menus, and customizable shortcuts increase efficiency and workflow. Getting to commonly used commands and customizing the layout is easier than ever and will benefit new and existing users alike.

Additional Core & Cavity toolbar on part level is one such major introduction to the interface. This new dedicated toolbar for part level is an extraction of commonly used functions pulled out from the main IMOLD toolbar CCB menu. This well placed dedicated tool helps eliminate extra time in searching for required tools from the main menu and certainly contributes tremendously in enhancing user friendliness of IMOLD.

Another new tool developed in IMOLD V8 is Parameter Manager which is a complete set of functions designers can use to better manage references, associations, mates and other parameters. The Parameter Manager is one of the new innovations in IMOLD V8 that is designed also to enhance processing speed when using IMOLD. It allows users to lock or unlock references. Once the references are locked, the system performance is enhanced and the memory usage is reduced. The result: a significant increase in the processing speed of the software, which now allows designers to work with large mold assemblies faster than ever and they are now provided with new tools for large mold assembly management. Mr Chiang said, “We have received numerous feedbacks from our users of their need to be able to work on a mold design software that does not slow down as they progressively create and save more parts and files, particularly when working in large assemblies. The IMOLD V8 is designed with this requirement as one of its development cornerstones.”

Other significant enhancements in IMOLD V8 include in such areas as Drawings, Smart Points, Preparing the Product, Tooling Split Tagging, Information, User Defined Cooling, and others. For full details on the new features and enhancements, please refer to What s New in IMOLD V8.

Mold design professionals will certainly look forward to a significantly noticeable difference in the user interface of IMOLD. The great reduction in the overall design lead time made possible with the tremendous innovations and enhancements in the new IMOLD V8 is expected to be most welcomed by the industry

2008-06-12

Autofrom v4.1.2 MSK


This section is only relevant if you have used a previous version of AutoForm.
The main advantages for Windows users are:
Support of Windows XP x64 (64 bit).
The incremental solver runs in parallel mode.
Zero footprint installation
(no interference with other software installations).
Reduced dependency on the third party software due to easier installation. The AutoForm software can now be installed without Services for UNIX (SFU) and without the necessary environmental adjustments.

Data compatibility
AutoForm 4.1.2 ensures backward compatibility of its .sim-files. That means all sime files can be used without any conversion between the versions 4.1.0, 4.1.1 and 4.1.2. In addition the user-interface of version 4.1.2 (xaf_4.1.2.exe) can open sim-files created with older versions. It will automatically convert them to the current sim-file format. Such sim-files can then be used by the 4.1.X solvers. It is not possible that the 4.1.X solvers work directly with sim-files from earlier versions, including version 4.0, nor is it possible that the 4.1.X solvers are started from other user-interface versions than
4.1.X. Due to the parametric formulation of AutoForm-DieDesigner and due to modified algorithms in version 4.1.X, the converted geometry may be slightly different from that originally created with older major versions (4.0X and older).

Concurrent use of AutoForm 4.1.2 and previous versions AutoForm 4.1.2 is a patch release based on AutoForm 4.1.0/4.1.1. It can be installed
together with AutoForm 4.1.0 and replaces AutoForm 4.0X and earlier versions. There
should be no need to use 4.0 and 4.1 concurrently. If they are used concurrently, anyhow, certain restrictions will apply. If you intend to use version 4.1 together with an older major release, such as version 4.0X, please review the following remarks carefully:
o AutoForm 4.1.2 must be installed in a separate directory (AF_4.1.2) and cannot be merged with older release versions (for example with version 4.1.0). This will allow the usage of different releases concurrently with own configuration files for each release.
o If you changed the default settings for version 4.0X or 4.1.X in one of the configuration files (for example in AutoForm.cfg) and intend to continue using these settings with version 4.1.2, you have to redo the changes in the configuration files of version 4.1.2. Please do not simply overwrite a new configuration file with an old one, since the new files contain new default settings that were not present in the older version.
System Requirements RAM:

Minimum 1 GB, recommended 2 GB (XP32); 4 GB (XP64) or more

Disk space: 500 MB including third party software

Supported Windows versions:
o Windows XP Professional SP2
o Windows XP Professional x64 SP2

AutoForm 4.1.2 is NOT supported on:
o Windows ME
o Windows NT
o Windows 2000
o Windows XP Home Edition
o Windows Vista

Supported Windows platforms for FLEXnet 10.8 (only for Floating licenses):
o Windows Server 2003
o Windows XP Professional SP2
o Windows XP Professional x64 SP2

Additional hints:
o AutoForm requires a screen resolution of 1280 x 1024 or higher.
o AutoForm must be installed on an NTFS file system. To check whether your file
system is NTFS, check the properties of the drive where AutoForm should be installed (usually C:\).
o AutoForm must be installed on a machine with a network adapter even though
the machine does not need to be connected to a network.
o AutoForm requires the following third party software:
Hummingbird Exceed 2007 (12.0.2.132 or higher on XP32, 12.0.8.146 or
higher on XP64) Hummingbird Exceed 3D (12.0.2.132 or higher on XP32, 12.0.8.146 or higher on XP64) These software packages are included in the installation media and will be installed if “Typical Installation” is chosen in the Master Setup.

NOTE:
The Hummingbird packages contain only the data required to run AutoForm 4.1.2. These are not full copies of the distributions shipped by the original suppliers.

2008-06-10

Petrel 2007


Petrel 2007.1—What's New

New in Petrel – Visualize and analyze fractured reservoirs. Model discrete fracture networks and perform dual porosity and dual permeability simulations in ECLIPSE with Petrel 2007.1.

Seismic interpretation in Petrel 2007. From regional to reservoir and from 2d lines to 3d surveys, the capabilities of the new Petrel broaden into exploration.

Geophysics
Seismic scalability solved
Today, many seismic datasets commonly exceed tens or even hundreds of gigabytes of disk space. By handling data in a bricked seismic data format and using smart disk roaming technology, Petrel 2007.1 software can now easily handle datasets up to 60 GB without any degradation of data or performance.

For 3D datasets greater than 60 GB, Petrel software provides an optional Linux® seismic back-end cluster. Accessing data on the server is as simple as copying and pasting links to data that users wish to see in their local Petrel project. Operations (autotracking, attribute generation) run on data that resides on the server and will be processed on the server, not your local Petrel workstation. For attribute generation, the seismic server runs these computations in parallel-with considerable time savings and with the added benefit of allowing all members of an asset team to quickly review the results.

Composite lines
Interpreters can quickly create composite lines across multiple surveys, both 3D and 2D, as needed. Using the composite line display on the interpretation window, it is possible to visualize and easily interpret seismic horizons across multiple surveys.
Geology and modeling
Discrete fracture networks
Modeling flow in fractured reservoirs is challenging, requiring a software solution that supports tight integration between the static and dynamic reservoir modeling disciplines and which provides a way to visualize and analyze many data types that may be direct or indirect indicators of fractures.

The Petrel 2007.1 software release includes integrated technology from Golder Associates, a leader in fracture modeling, that enables the creation of an integrated workflow for fractured reservoir characterization. In addition, Petrel 2007.1 now supports ECLIPSE* dual-porosity models, making it even easier to simulate naturally fractured reservoirs.

Reservoir engineering
Multisegmented well model
Conventional reservoir simulator well models treat the entire wellbore as a single entity, with constant or averaged fluid properties throughout the well. These models neglect pressure drops resulting from friction, interphase slip, and acceleration. This is a perfectly reasonable approximation for vertical wells producing from only one zone. However, with horizontal wells, friction becomes extremely important. The multisegmented well model in Petrel and ECLIPSE divides the entire wellbore into segments, much as a reservoir is divided into cells when making the grid. Petrel 2007.1 gives each well segment the physical properties of the casing or tubing that contains it, allowing ECLIPSE software to accurately model the fluid physics throughout the wellbore.

Field development strategies
The field development strategy option makes it easy to set up and manage complex well controls without becoming overwhelmed by detail. Wells can now be organized into time-varying group hierarchies, allowing controls to be applied at the level that makes sense to you. Wells can also be organized into many folders, allowing you to easily apply the same controls to hundreds or even thousands of wells.
Drilling
Real-Time Data Link
The Real-Time Data Link component accepts streaming real-time data such as logs, events, and trajectories from InterACT and other third-party WITSML file servers. Data is immediately incorporated into Petrel for real-time monitoring and modeling. The data link facilitates rapid assessment of the impact of the new geological knowledge on the well being drilled, enhancing understanding and improving collaboration.
Usability
Usability starts with a belief in designing a product that meets user needs and a focus on creating an excellent user experience. In Petrel 2007.1 the graphical user interface has been updated to Microsoft® WinForms, making it even more efficient and usable.

Each explorer pane (Input, Model, Process diagram, and so forth) can now be manipulated independently with standard controls such as dock/pin/float/hide. This new system provides a stable and predictable toolbar appearance and behavior, while at the same time improving efficiency.

Conclusion
Petrel 2007.1 is the strongest release ever, broadening into exploration geophysics, strengthening core modeling and geology workflows, refining the reservoir simulation user experience, and supporting real-time drilling workflows.

2008-06-09

Ansoft-Designer-V4.0

General:
o Nexxim linear analysis is available from Ansoft Designer by chosing to
install Nexxim customization from the Designer installation and installing
Nexxim from the Nexxim CD. No Nexxim licenses are required: Nexxim
linear analysis is unlicensed. Advanced Nexxim simulation capabilities
can be accessed by configuring Nexxim licenses.
o User customizable hot keys
o Ability to enable/disable an analysis
o User can "check passivity" on all imported data types (Nport, HFSS?
o Additional script commands
o C++ model editing wizard for Nexxim
o Linear components are now automatically configured for the system tool
o Toolbar customization with user set-able buttons
o The user can translate legacy circuits using right mouse menu click in the
project tree
o User can define callback scripts that run when a component is placed
- Component handling:
o Users can re-map dynamic link component pin assignments
o Component pin matching constraints relaxed
o Encryption of aclb's, aslb's, scripted footprints etc
o Designer now manages "models" that can be re-used in components
o Nport and field solver components now have similar options
o Subcircuits can be exported as component; optionally with solution data
o Various dynamic link enhancements that improve usability
o Users can drag and drop components from the main project tree or from the
component search tab onto a schematic
o Users can drag and drop models from the main project tree onto components in
a schematic
- Layout:
o Cross hierarchy snapping
o Layer manager is now modal and user can choose which columns to display
o Ruler now supports multiple segments
o User can define relative (hierarchical) coordinate systems
- Schematic:
o Schematic annotation improvements (colors, boxes etc)
o ERC enhancements
o User can add floating pins etc from right mouse menu in schematic
o User can have symbols change based on solver on demand selection
o Wiring improvements
o User can put plots or "reports" on schematic
o Reports can be dragged & dropped from the project tree onto the
schematic
o Mouse wheel can be used to move up & down, or with zoom when used
with the shift key
- PlanarEM:
o 64 bit support
o Multiprocessor support
o Progress bar for mesher
o Support for frequency dependent materials
o Access to PlanarEM output variables
o Fast sweep error tolerance is now user adjustable
o Frequency selective surfaces now support fast frequency sweeps
o User can now "clean stop" fast frequency sweeps
o Maximum amount of simulation data is kept after a user changes to frequency
sweep setup
o Additional information about fast frequency sweep progress is listed in
the simulation profile.
o PlanarEM supports terminal excitations
o Distributed Solve Option (DSO) for PlanarEM
- Dynamic links to Ansoft products:
o Users can push excitations for swept frequency EMI problems to SIWave
o New dynamic link to the 2D Extractor tool in Q3D
o Additional advanced dynamic link options when generating simulation setups
automatically
- Design Verification:
o DRC zoom to selected error
- Optimetrics:
o New Genetic Algorithm optimizer
- Reporter and post processing:
o Completely new user interface for better usability
o Fully scriptable
o Copy and paste of data or plot definitions from one report to another
o Support for re-usable report templates
o Improved data filtering & interpolation for Nexxim
o Reporter FFT/IFFT functionality
o Ranged functions for better data reduction. Examples include maximum, minimum,
rise time, overshoot...
o Enhanced eye diagrams
o Stacked plots
o Plots update dynamically when used with dynamic probes


MAJOR ENHANCEMENTS Nexxim V4.0
--------------------------------
- Nexxim user interface:
o Ability to compute the reciprocal response of subcircuits, Nports and
FieldSolver elements
o Usability enhancements to the Spice and IBIS component import dialogs
o User now has control of convolution on individual models
o TRL tool support
o New interface for Nexxim-based statistical runs / Monte Carlo
o User can use planarEM simulation on hierarchial components
o Simulation setups can be dragged and dropped between designs
o Linear analysis is now unlicensed
o Improved solution file serializer handling of large datasets
- Language features:
o .measure - Nexxim and Designer now support most HSpice .measure statements,
which can calculate maximum, minimum, average, integral, derivative,
RMS, peak-to-peak, and curve intersections for transient, AC, and
DC sweep analyses.
o Parser support for Spectre checklimit statements
- Envelope analysis:
o Bug fix associated with Envelope Analysis results
- Oscillator analysis:
o Improved two-tone oscillator transient initial guess;
o Improved escape from non-convergent oscillator analysis;
o W-elements are evaluated in time domain under oscillator analysis.
- HB analysis:
o The method for calculating the initial HB guess has been improved.
o Bug fix associated with sweeping mutual inductor in HB analysis
- Transient analysis:
o Support for simulating transient noise.
o Bug fixes include improved handling of minimum step size and discontinuous
events.
- Sparse Matrix Solver:
o Includes new sparse matrix ordering package delivering better performance
via the option -auto_select_solver=yes.
o Features partial pivoting strategy as an option for robust matrix solutions
via the option -do_partial_pivot=yes.
- DC Analysis:
o Bug fixes for convergence issues.
o Features pseudo_arc_length continuation scheme.
- Small Signal Analysis:
o Bug fixes for AC, noise and linear network analyses.
o The ability to do parameter sweep in addition to frequency sweep has been
added.
- Eye analysis:
o Support for eye analysis via statistical eye analysis of transient solutions
has been added. This methodology maintains accuracy while offering major
reductions in run time compared to conventional methods of eye analysis.
- System Engine:
o The newly added capability for system level mixed simulation seamlessly
integrates the system-level time domain behavioral simulation with
transistor-level transient simulation. Designers can include system
behavioral models and physical models (like transistor, S-parameter
data block, etc.) in the same design project and perform a transient
simulation on the design. Such hybrid integration enables designers in a
reasonable time period to simulate a complete system consisting of various
levels of abstraction, which complexity otherwise would demand a much longer
simulation time of a simulator operating on the transistor level only.
- New device models:
o Advanced Curtice 2
o Amorphous TF
o BSIM level 13
o Quadratic Curtice
o Cubic Curtice
o ISPDT
o MOSFET level 38
o VSPDT
o Juncap2
o LDMOS20
o LDMOS30
o LDMOS40
o CMC MOSvaractor
o CMC R2
o CMC R3
o TOM2
o Dynamic probes
- Improved models:
o BSIM4
o HICUM Level 2 2.22
o Random Bit Source
o HiSIM updated to latest version: HiSIM2.4.0
o S-elements
o Verilog-A support
o IBIS

Nexxim Model features, new and improved:
----------------------------------------

- IBIS:
o IBIS driver schedule support
- Causal low-pass filter:
o Developed causal low pass filter with only known real part
- Microwave models:
o Introduced power combiner to the list of ideal microwave models
- Chain-based ABCD:
o Added an instance parameter "delayhandle" to the model so that the user can
choose to do state-space based rational function fitting during time domain
and/or transient simulation versus default: convolution.
- CPW-based distributed library:
o Added different many co-planar waveguide models.
- Distributed models:
o Added several ideal distributed models to the ideal distributed library to
be used with Smith Chart tool in Nexxim.
- Edged TEE model:
o Enhanced.
- GCPW-based distributed library:
o Added different many grounded co-planar waveguide models.
- HCOM ideal_tuner:
o Enhanced the existing passive tuner to an ideal tuner that includes as well
as matches all of the HCOM ideal tuner features.
- Field solver model:
o Enhancements have been made to the field solver model. When ground
conductors are used as reference planes we need to make sure the minimum and
maximum length of the dielectric layers extend to cover the ground
conductors.
- Frequency-based R L C devices:
o Transient Analysis can use frequency-based capacitor, inductor, and
resistor. Previously, the frequency-based capacitor, inductor, and resistor
were supported only in frequency-domain analyses.
o A new parameter, tran_eval_freq, has been added to the net-list format for
these three elements to allow them to be used with transient analysis.
When tran_eval_freq is present in the net-list entry, Nexxim can run a
transient analysis on circuit containing the frequency-dependent capacitor;
inductor, or resistor.
- Inductor Q:
o Analytically added causality correction for the special cases of exponent
selection, i.e. exp=1/2 and 0.Fixed DC resistance calculations for the
inductor with Q model.
- Modulation sources:
o Added several IQ-based modulation sources to the modulation sources library.
In particular, the quadrature amplitude modulation (QAM), phase shift keying
(PSK) and the continuous phase modulation (CPM) schemes are included.
- Negative impedance converter:
o Added DC path to ground to all the nodes needed for the model to run with
the HFSS dynamic link.
- S-elements:
o Implemented new "passive" flag from Hspice; checks passivity of input data
if passive=1. If passive=2, checks passivity of state-space fit.
o Supporting Hspice's DELAYHANDLE=ON (synonym for convolution=3).
o Added s_element.errorif option. By default, 1. Rejects state-space model
if error is larger than 10%.
o Convolution now uses interpolation and extrapolation flags.
o Added test_sss option, default =1; set to zero to bypass the testing of the
cached state-space systems.
o Reports fitting error for convolution=1.
o Added option s_element.rational_fitting_iteration_limit, default=2, to allow
for fine tuning rational fitting.
o Added trace message for differing port impedances.
o Added MOR singular perturbation option (s_element.mor_sp=1): preserves DC
fit while reducing the order of the model.
o Added limit to Q (quality factor) of poles in rational fitting.
Default is 1e4, can be changed with new option s_element.q_limit.
- TFT:
o Model improvements
- W-elements:
o Minimum number of frequencies for the W-table is now 100; fewer than that
will be interpolated.
o Added limit to Q (quality factor) of poles in rational fitting.
Default is 1e4; can be changed with new option s_element.q_limit.
- VSIQ:
o Fixed the polarity issue with the model.
- Verilog-A support:
o Events support added: Nexxim now supports initial_step, final_step, cross.
System tasks support have been extended.
o Nexxim now supports $display, $strobe, $write, $debug and $monitor.
"genvar" support added
o Asian characters supported inside comments
internal nets supported
o Various other Verilog-A enhancements

2008-06-07

ShipConstructor v2008 R2 License crack

ShipConstructor is a world leader in CAD/CAM software for the shipbuilding and offshore industries. Designed from the start specifically for the unique requirements of ship and rig construction, it offers a comprehensive, flexible and reliable suite of capabilities designed to maximize efficiency and enable both design teams and shipyards to deliver on time and on budget.

With over 300 customers on six continents, ShipConstructor has been specifically designed to be tailored to unique, local requirements. Its AutoCAD platform, with seamless compatibility to complementary industry-standard software, is easy to integrate into any work environment.

Whether you are from a huge shipyard building super tankers and semi-sub rigs, or an up-and-coming yard building world class workboats, or a highly-specialized design firm serving a the luxury yacht market, ShipConstructor is the ideal tool to optimize your shipbuilding software solution.
Use the Pipe module to route pipe within the 3D structural model and create 3D spool and arrangement drawings. Based on the pipe catalog with specs and connections, a 3D pipe model can be quickly generated, referencing any number of 3D structure drawings to ensure collision free routing. Interference checking against structure and outfitting allows for worry-free production.

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HVAC (Heating, Ventilation, Air Conditioning) is fully integrated with other modules to ensure that all systems work together smoothly. As a result, time-to-production and rework is drastically reduced. HVAC items can be created on-the-fly or selected from a spec-driven catalog. All HVAC items are logically connected and can be dynamically altered. HVAC is fully supported by ShipConstructor's Interference Checking System, making costly rework a thing of the past.

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The Penetrations module lets users easily implement spec-driven penetrations which are controlled by an approval mechanism starting with the proposal of placing a penetration, through sign-off by a specialist, to the final implementation. The Penetrations module comes with predefined Penetration Packages, which are groupings of items such as plates, sleeves, collars and accessories.

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ManualNest is tightly integrated into the central database, providing features to nest by assembly, stock, material, surface treatment, port/starboard, like/mirror cut, and full remnant control. Parts changes after nesting can be easily located and re-nested any time, ensuring error-free production.

AutomaticNest allows you to automatically nest all plate parts; then use ManualNest to further optimize the results.


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ProfileNest performs linear nesting of profiles onto available stock to optimize utilization and streamline production, including available and used stock control, heat number tracking, and full production reports. Nests can be marked as issued and cut. Any item on such nests are now locked in the product model.


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NC-Pyros reliably creates NC-Code for any type of NC-cutting machine, oxy-fuel, plasma, laser, water-jet, or router. The integration with the product model automatically feeds back important information, such as estimated cutting time, processing date, and operator name, completing report data and simplifying any recalls.

NC-Pyros-Bevel allows for adding variable angle cut and multi-torch weld preparation to NC-Pyros.


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FlyThrough brings instant virtual reality to ShipConstructor - no file conversions required or other programs to tackle. At the click of a button, the current ShipConstructor drawing is loaded into the FlyThrough module, providing you with the perfect tool to ensure that the models created by the hull, structure, piping, HVAC, and other departments fit together.

2008-06-04

Dynavista-v8.0-Nihon-Unisys


High performance and robust fillet creation for complex support shape

-High robustness guaranteed by specifically developed own geometric engine
-Variety of functions such as variable radius, chord length specification, variable radius/independent end
-High flexibility realized by separated or combined running of fillet creation and merger

Interactive DIE FACE DESIGN support for automotive stamping die. Die face design cycle requires combination of easy to use and very quick die face specific shape creation and good performance design evaluation functions from press forming severity evaluation point of view. Dynavista DIE FACE DESIGN meets this requirement. It provides easy to use die face specific shape creation functions together with simplified press forming severity evaluation functions. It will enable users to complete good quality die face design with minimum design time in fully parametric environment.
Die face specific shape creation with simplified formability check
-Simplified forming severity evaluation functions realizes trial and error in design process.
-Easy to estimate flange expansion and spring back
-Die face specific shape creation such as extrapolated surface, addendum shape and bead
Fast mold die design applicable from small & medium to large scale
-Ease of use realized by maximum introduction of 2D like operation and functions
-Flexible size/position change is available
-Automatic transformation of design attributes to machining attributes which realizes strong association with CAM process (Dynavista Die CAM modules)
Benefits :
Simplified formability check functionality
Flange expansion estimation
Die face specific shape creation
Formability related surface/curve deformation functions
Direct linkage to Dynavista 3D AXIS DIE CAM
FOR CATIA V5R7-CATIA V5R18

2008-06-02

2008.05 0day softwares

2008-05-31 CIMCO.Software.Suite.v5.11.71
2008-05-29 Aptech.GAUSS.v9.0.0.1108
2008-05-28 MSC.MD.Nastran.R2.1.LINUX &Linux64
2008-05-27 Functionbay.RecurDyn.v7.R1
2008-05-26 Dassault.Systemes.CATIA.P2.v5R18.SP5.MULTiLANGUAGE.for 32bit&64bit
2008-05-25 CMG.SUITE.V2004.11
2008-05-24 GEOMATIC_STUDIO_V10_SR1
2008-05-23 MSC EASY5 2008 R1
2008-05-22 MAGICAD.V2007.11.SR1
2008-05-21 Sesam.March.2007
2008-05-20 CHEMSTATIONS.CHEMCAD.V6.0.1
2008-05-20 CADMAX.Solid.Master.v10.00
2008-05-19 Tecplot.360.2008.v11.2.0.563
2008-05-19 IVS.3D.Fledermaus.Pro.v6.7.0g.371
2008-05-17 Altair.Hyperworks. v9.0
2008-05-17 Flow 3D 9.2
2008-05-16 OSLO_PREMIUM_V6.41
2008-05-16 ESI Visual-Environment v4.0
2008-05-15 LUSAS.FEA.V14.1
2008-05-14 WORKNC G3 V19.13 (C) SESCO
2008-05-13 ASPENTECH_ASPEN_HX-NET_V2006
2008-05-11 ASPENTECH_ASPEN_FLARENET_V2006
2008-05-11 ASPENTECH_ASPEN_BATCH_PLUS_V2006
2008-05-11 ASPENTECH_ASPEN_CASE_ANALYSIS_TOOLS_V2006
2008-05-10 CSCS_MASTERSERIES_V2007.16
2008-05-09 Hampson.Russell.CE.v8.R2.1
2008-05-08 Dassault.Systemes.Catia.P3.V5R17 With SP8
2008-05-07 Delcam PowerMill8009 SP8 Update with crack
2008-05-07 GibbsCAM.2007.v8.7.15
2008-05-07 AutoForm Master 4.1.1 for Linux &Win
2008-05-03 PTC.Mathcad.v14.0.M020.ISO
2008-05-02 AUTODESK.AUTOCAD.PID.V2009.32BIT&64BIT
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