2015-04-17

Ticra_grasp_10.1_download_tutorials

GRASP has established itself long ago as the industry standard for precise modelling of reflector antennas. It builds on decades of research and development in numerical methods for solving EM problems, and the thorough testing by the demanding satellite industry vouches for accuracy and efficiency.

  • Easy definition of single and dual reflector geometries by built-in wizards
  • Support for several reflector shapes and materials
  • Mathematical and numerical (measured) feed definitions
  • Near-field and far-field calculations of vector fields
  • Flexible analysis approach enables the calculation of individual scattering components of the radiated field
  • Highly efficient PO algorithms, GTD and optional moment-method solver
  • Increased productivity through efficient project file handling
  • Several optional add-ons - see links in the left paneThe Method of Moments (MoM) GRASP add-on is a very accurate analysis tool that is used for general scattering problems, including problems where the prerequisites of the high-frequency methods used in GRASP (PO/GTD) are not fulfilled. The MoM add-on module for GRASP is ideal for antenna designers who require extremely accurate analyses of electrically small and moderately sized sub-reflectors, struts, plates, and general scattering objects that cannot be defined in the standard edition of GRASP.
    The MoM solver has been specifically designed by TICRA to provide high accuracy for the curved surfaces encountered in reflector antenna problems. This implementation is very efficient and enables analysis of even quite large scatterers on a standard PC. The MoM implementation lists the following core features:
    • Automatic meshing using curved patches given by 4, 9, 16, or 25 interpolation points
    • Adaptive selection of current-expansion using near-orthogonal higher-order basis functions of up to 12th order
    • Efficient multi-threaded matrix-fill routines and packed matrix storage for symmetric matrices
    • Direct or iterative solver using efficient pre-conditioner tailored for higher-order basis functions

2015-04-15

CST-Studio-Suite-V2015_tutorials_download

CST MICROWAVE STUDIO Solvers
Simulation ribbon tab is now tailored to the selected solver
T-Solver (Hexahedral Mesh)
- Support of spatially varying material models (radial dependency)
- Time dependent conductivity for lossy metal
- 1D time power loss curve for surface impedance materials
- Inhomogeneous port accuracy enhancement for the generalized port mode solver (preview)

- Selective calculation of higher order port modes
- Absorption of unconsidered mode fields for homogeneous waveguide ports
- 1D power loss curve for port absorption
- Extended online TDR result to 50% time shift option
- Option to shrink farfield monitoring to structure box
- Reduced result download (1D signals and farfield monitors) for MPI
- Shared file server access for MPI
- Option to perform one single remote DC calculation
- Support of Xeon Phi Hardware Acceleration
- Improved broadband excitation technique for near field sources
T-Solver (TLM Mesh)
- PBA is available for the TLM mesh
- Cables and wires are more accurately routed close to metal surfaces
- Visualization of currents on wires and common mode cable currents
- Intermediate S-Parameters and FD results are available during the solver run
- Linux is now fully supported
F-Solver (Tetrahedral Mesh)
- Combine results for field source monitors
- Automatic separation of polarization degenerated higher order port modes
- Excitation of single-ended port modes with native single-ended field results
- Introduced near field sources on surface impedance material
- Improved robustness for field source monitors
F-Solver (General Purpose Sweep with Tetrahedral Mesh)
- Direct and iterative solver for large problems
- Active element pattern from parameter sweep over the unit cell scan angle
- Floquet port mode field polarization angle definition independent of phi
- Discrete face ports and lumped elements also supported with unit cells
- Farfield probe calculation for frequency samples
- Field source imprint on open boundaries, lossy metal, and ohmic sheets
F-Solver (Fast Reduced Order Model Sweep with Tetrahedral Mesh)
- Broadband field probes and farfield probes
- All 3D monitor types are now supported
- Perfectly matched layer (PML) open boundary condition
- Broadband reduced order model for waveguide port modes now default
E-Solver (Tetrahedral Mesh)
- Parametric storage of mode frequencies and Q factors
A-Solver
- Added support for angular and frequency dependent materials
- Added support for perfect absorber materials
- Added creation of RCS Maps
- Added support for near field sources
- Added RCS result for range profile calculations
I-Solver
- Support of hybrid Quad/Tri Meshes
- Local mesh properties are now supported for near field sources
M-Solver
- Support of hybrid Quad/Tri Meshes
CST EM STUDIO Solvers
M-Static Solver (Tetrahedral Mesh)
- Iron loss computation
- Open boundary condition
- Azimuthal magnetization for magnets
J-Static Solver (Tetrahedral Mesh )
- Contact resistance
LF Solver (Tetrahedral Mesh )
- Impedance matrix computation
- Open boundaries for EQS- and MQS-solver
LF Time Domain (MQS) Solver (Tetrahedral Mesh )
- Rigid body motion for planar meshes
- Nonlinear field circuit coupling to SaberRD and Design Studio
- Azimuthal magnetization for magnets
New transient EQS time domain solver
CST PARTICLE STUDIO Solvers
- Arbitrarily shaped bunches for the Wakefield Solver
- Import and handling of Tet-based fields from Statics- and Eigenmode-Solver
- Particle current- and charge- monitors for the PIC solver
- Alignment and stabilization of GPU- and CPU-algorithms in the PIC solver
CST PCB STUDIO
- 3D bondwire visualization
- Interactive shape editing in default viewer
- Improved display of component and pin names
- Auto-Tagging of netclass types and components for CST BOARDCHECK
- Import and visualization of DIE stacks (including bond wires) and BGAs
- New direct solver for IR-Drop analysis (in order to simulate large examples)
- New device type Integrated Circuit in order to enhance the IR-Drop analysis task
Power-Integrity Solver
- Accuracy enhancement for mounting inductances
- Improved convergence behavior upon reducing mesh step
- New dialog box which enables to generate Simulation-Projects.
Decap Tool
- Automatic sweeping and optimization of capacitor configurations
- Generation of Pareto front representing best configurations for specific price
CST CABLE STUDIO
- Parametrization of cables (VBA commands and history list)
- Cable Library
- Twisting of multiple cable groups
- Unification of radiation/irradiation workflow between Transient- and AC-Task
CST MPHYSICS Solvers
Thermal Stationary Solver
- 0D temperature monitor
- GUI for nonlinear blood flow coefficients
Thermal Transient Solver
- New Tet-based transient thermal solver
CST DESIGN STUDIO

- Blocks
- Selectable, parasitic models for lumped R/L/C elements
- New block type for file blocks: Project blocks now copy their files into the project instead of referencing them as file blocks do
- IBIS block: Improved robustness, support for more model types (I/O_open_drain / _sink / _source, Open_sink / _drain / _source ).
- Unified CST STUDIO SUITE blocks
- Enhanced CST EM STUDIO support: Automatic solver start for linear R/L/C matrices, state space based (nonlinear) L-Matrix support
- Support of CST MPHYSICS STUDIO blocks for linear, thermal simulations
Tasks/Results
- FD Tasks: Frequency limited blocks may now be treated as in time domain. The frequency response is not used directly, but an approximated version of it. The approximation is guaranteed to be broadband, causal and passive
- TD Task: Excitation signals may be named and can be stored/restored into/from the global signal library
- TD/S-Parameter Tasks: More secondary results are available: Y/Z parameters, VSWR and Group delay
- DC/FD/TD-Tasks: ‘HSPICE® input netlist’ file export
- TD Task: Nyquist down sampling option for 1D signal plotting
- Block Simulation Tasks: Parameter sweep and Optimizer included as solver types
Schematic
- Selectable, predefined pin layouts for blocks
- Improved routing
- Unified zooming behavior (same behavior as the 3D view of CST MICROWAVE STUDIO / CST EM STUDIO / …)
- New Filter synthesis tool: Filter Designer 2D, driven by Nuhertz Technologies®
Device Library
- Support for touchstone descriptions
Results/Post Processing
- Post Processing 1D
- New Polar Plot Settings dialog box
- Added dB scaling option for range profile visualization
Post Processing 2D/3D
- New color mapping options (hide out-/inside range)
- Hot color ramp
- Improved plot quality (HEX Mesh)
- Faster / less memory on first time visualization
- Improved viewer responsiveness when traversing the navigation tree
- Result plots under Linux
- Combine results for near field source monitors from F-Solver and I-Solver

Breault_Asap_2014_v1_sp1_download_tutorials_crack

ASAP® is the time-proven industry standard in optical software, offering optical-system designers unmatched capability, flexibility, speed, and accuracy. ASAP accurately predicts the real-world performance of automotive lighting, bio-optic systems, coherent systems, displays, imaging systems, lightpipes, luminaires, and medical devices.

Capability

The product of more than 20 years of continuous development, ASAP is able to simulate the physics of more optical systems than any other program available. ASAP unites geometrical and physical optics with full 3D models of optical and mechanical systems. Built-in graphical tools allow visualization of odel geometry, ray-trace details, and results analysis. ASAP handles it all, including scattering, diffraction, reflection, refraction, absorption, polarization, and Gaussian beam propagation.

Flexibility

ASAP is now interoperable with many CAD programs. ASAP can be configured to open native CAA V5 CATIA® files from the program by Dassault Systemes, to write ASAP-specific GTX files from within SolidWorks®, the program by SolidWorks Corp., to write ASAP-specific IGES files from within Rhinoceros®, the program by McNeel & Associates, and to import IGES files from other CAD programs — numerous options for accurate, seamless geometry transitions into ASAP.
ASAP is also able to import (and export) complex vector field distributions from the finite-difference, time-domain code FDTD Solutions™, by Lumerical. Together, ASAP and FDTD Solutions are able to handle both macroscopic optical systems and microstructures in an elegant manner. No other software combination spans such a large optical space.

Speed

The speed-optimized ASAP non-sequential ray-tracing engine is the fastest available, and without the accuracy-compromising surface approximations of other programs. Model almost any conceivable geometry in a single working model, and analyze the behavior of your system in hours instead of weeks.

Accuracy

Optical system designers in 35 countries rely on ASAP for virtual prototyping with great accuracy and confidence. ASAP will model the finest details, which means you can depend on your simulation results to mirror real-world performance.

ASAP Benefits

With ASAP, you get the most sophisticated software program available for creating optical solutions in-house — everything you need to create without compromise and reduce your product development timeline.

Benefits

  • Comprehensive modeling capabilities for producing groundbreaking, innovative optical designs without costly experimental prototyping iterations
  • Exclusive interoperability features to address a whole range of problems inaccessible with other software programs
  • The fastest non-sequential ray-tracing engine available
  • Results you can count on every time

ASAP

The standard edition of ASAP includes everything necessary to design and analyze basic imaging and illumination systems while interoperating with CAD programs.

ASAP PRO


This PRO edition of ASAP is everything you need to turn your creative visions into working prototypes, taking into consideration the most complex of optical phenomena and interoperability challenges.

2015-04-14

Ucamx_v2015_download_crack

The standard functionality of Ucam can be extended by adding dedicated features
True Etch Compensation
Improves etchant performance on today's dense and complex PCB's
Ucam to Polar Link
Seamless Ucam to Polar integration allowing you to use the best of both worlds

Visual HyperScript
Visual HyperScript (VHS) is a scripting environment for Ucam. It is designed to help Ucam users to automate all kinds of operator actions. The user can record simple repetitive tasks or he can build complete applications with Launch Pads and interactive Dialogs. Scripting is fun and can be done by people with any skill level.
The HyperScript API Reference Guide can be found in the Ucam Help Menu.
Hypertool
Scripting tool for experienced Java programmers providing full Ucam functionality.
The HyperTool API Reference Guide can be found in the Ucam Help Menu.
Ucamco released Ucam version 10.1.9
This maintenance release includes minor feature updates:
- Better support for non-ASCII characters
- Layer Info kept when merging layers
- Better Modify Layer dialog handling
- Configuration of font directory location
and several maintenance updates on Ucam functions

LUCIDSHAPE_1.11_download

LucidShape is the most powerful and advanced computer aided designing software for lighting design tasks. It's friendly and very extensive user-interface enables engineers from all over the world to create all kinds of reflectors and other lighting applications in very short time. You can create the geometry in 3D with our high-innovative
A rapid forward Monte-Carlo ray trace algorithm gives a prediction for the product's intended functions. LucidShape's Monte-Carlo raytrace algorithm is the Lastest for reflector design on the market. In addition, LucidShape offers an even faster ray tracing method, called "Light Mapping" and interactive raytracing. Interactive raytracing is a powerful tool to investigate the behavior of reflectors and lenses in the visualization of light rays traveling through the scene. In LucidStudio one can interactively "touch" the shapes and watch ray bundles come from a source and bounce via the touch point through the whole scene until they hit an absorber or launch to infinity.

ECE low beam
A typical analysis of light data is the comparison between the computer prediction and measurements. LucidStudio also offers a huge number of test tables for regulation requirements, i.e. automotive lighting for ECE, SAE & JIS. LucidShape is as interactive as you wish. Add your own defined dialog interfaces for your design, simulation, analysis, and documentation. LucidShape meets your individual needs.

TracePro-v7.3.4_ crack

TracePro-v7.3.4_ crack
Illumination system designs using TracePro are often accomplished in an iterative manner with modifications between steps handled manually or through 2D and 3D optimization based on user-defined criteria:
  • Layout of physical geometry, setting optical properties, specifying location, and orientation 
  • Definition of optical sources as grid sources, surface sources or ray files
  • Tracing rays to calculate illumination distributions throughout the system
  • Optimization
  • Results analysis
  • Reporting

Solid Modeling

TracePro models are created by importing lens design or CAD files, or by directly creating solid geometry within TracePro. You can modify imported or built geometry using move, rotate, and scale operations for solid objects and sweep and revolve operations for surfaces via the user-friendly, 3D CAD interface. Special tools allow you to insert primitive solids (tubes, blocks, cones, and spheres), and optical elements (lens elements, reflectors, and Fresnel lenses).
TracePro’s utilities allow interactive sketching to quickly enter 2D and 3D profiles and then extrude, revolve, and combine these profiles to create sophisticated geometry, like lightpipes and biconic reflectors, as well as free-form optics. Visualization options include solid rendering, silhouette, wireframe, hidden line views, and the ability to pan, rotate, and zoom, as well as other standard geometry manipulation techniques.

Optical Properties

A wide range of material and surface properties are available to apply to objects and surfaces in the model. Optical properties that you can specify include index of refraction and absorption coefficient, aperture diffraction, reflectance and transmittance coefficients, surface absorption, surface and volume scatter, polarization, fluorescence, gradient index, and temperature distribution. You can create surfaces with random or periodic arrays of repeated structures using the RepTile™ feature. You can define custom properties or choose from TracePro’s database of commercially-available materials and coatings.

Light Sources

TracePro simulates the distribution of luminous intensity, irradiance/illuminance, and flux throughout a model or at selected surfaces by tracing rays using the Monte Carlo method. Light sources are modeled by emitting rays. Additionally, TracePro’s Surface Source Property Utility enables you to digitize angular and spectral information directly from a manufacturer’s datasheet.
You can define ray sets using any combination of three methods:
  • Grid – specify spatial and angular beam profile, weighting, and dimensions along with beam orientation, polarization state, and degree of polarization.
  • Surface – specify angular distribution from one or more surfaces of a solid object using luminance flux, or irradiance/illuminance. Surfaces can also be defined as blackbody or gray body radiators.
  • Ray File – predefined ray tables consisting of XYZ starting points and direction vectors, polarization states, wavelength data, and the initial flux value or Stokes Vector for each ray. Ray files are typically created from measured results or theoretical calculation.

Zemax_2013_v13_r2_for_64bit


Zemax 13 Release 2 Highlights:

  • Optimize and tolerance your design to achieve the best possible performance at the lowest cost
  • Wide range of built-in surface types means that almost every conceivable optic is built in
  • Extensive catalogs of commercial glasses, lenses, mirrors, sources and test plates
  • Visual Optimizer simplifies initial design setup with fast, interactive performance feedback and control of system parameters via intuitive slider controls
  • Automate repetitive tasks and present data exactly the way your application needs to with Zemax Programming Language
  • Define relationships between multiple optical components with easy-to-use spreadsheet interface
  • Single file backup and restore makes it easy to create archives of your designs for documentation and historical records
  • Project-based folder structure lets you store all the files your system needs in project-specific locations
  • Export sequential optical designs to a “Black Box” so you can distribute your designs to customers without revealing design secrets
  • Optical and Illumination Design
  • Design optical and illumination systems with speed and confidence using industry-leading 
  • analysis, optimization and tolerancing capabilities in Zemax 13 Release 2. 
  • • Fastest sequential and non-sequential ray 
  • tracing using multi-CPU, 
  • multi-thread architecture
  • • Patent-pending LightningTrace™ technology for 
  • rapid illumination system design
  • • Multi-variable system optimization
  • • Component tolerancing
  • • Physical optics
  • • Diffractive optics
  • • Polarization
  • • Reverse ray tracing
  • • Colorimetry
  • • Advanced Path Analysis
  • • Visual Optimizer
  • Comprehensive Design and Engineering Resources
  • Shorten time-to-innovation using comprehensive material catalogs, online model libraries and 
  • example files–plus much more!
  • • Stock Lens Matching Tool
  • • Material BSDF Scatter Model online library
  • • 600+ Radiant Source Model™ online library
  • • Source Spectrum library
  • • Surface and bulk scattering materials
  • • Numerous example files
  • • Glass and lens catalogs from all leading 
  • manufacturers
  • Unified CAD Capabilities 
  • Streamline your workflow with CAD part and assembly capabilities that are fully integrated with 
  • Zemax 13 Release 2, not bolted on. 
  • • Dynamically modify parts from SolidWorks®, 
  • Creo® Parametric® and Autodesk® Inventor®
  • • Read native assembly files from SolidWorks, 
  • Creo Parametric and Autodesk Inventor
  • • Work with multiple configuration parts from 
  • SolidWorks, Creo Parametric and Autodesk 
  • Inventor 
  • • Import and export with STEP, SAT, IGES and 
  • STL CAD format files
  • • Explode STEP, SAT and IGES files into 
  • constituent parts
  • • Zemax Part Designer for creation of optical 
  • and mechanical components without a 
  • separate CAD package

Delcam_Powermill_ 2014_download

PowerMILL’s comprehensive range of patented high speed machining and multi-axis toolpath strategies, such asVortex, raceline and trochoidal machining, allow you to tackle the most difficult and challenging parts whilst achieving faster machining times, reduced tool loads and smoother surface finishes.
Whether you are using 2, 3, 4 or 5-axis CNC machines, or even 6 or 7-axis robots, PowerMILL enables you to program the most efficient toolpaths you can imagine.
Multi-threading spreads complex calculations across all available cores in a multi-core processor. Even for single toolpaths, PowerMILL's multi-threading optimizes calculation times, making the best possible use of your hardware.
Background processing enables PowerMILL to perform complex calculations while you continue to define and edit toolpaths in the foreground.
Uniquely, in PowerMILL both foreground and background processes are fully multi-threaded letting you get NC programs to your machine tools in the shortest possible time.

PowerMILL is widely known as the CAM solution of choice for complex machining. However, learning PowerMILL is a simple process for the majority of CAM programmers - as proven by more than 15,000 organisations worldwide using PowerMILL for 2, 3 and 5-axis machining.
PowerMILL’s streamlined and well-designed user interface allows for even the novice user to become proficient in only a few days.
Delcam’s global network of Sales Partners in over 80 countries provides you with round the clock PowerMILL technical support, helping to maximise your productivity and reduce delivery times.

2015-04-13

2015_April_ Latest_crack_software_ list

[Other CAD/CAM] HiCAD 2015
[Development ] HELiOS.v2015
 [DELCAM] Delcam PowerInspect 2015 SP1
 [Other CFD] DS SIMULIA ABAQUS 6.14-3
 [Dassault CATIA ] DS DELMIA V5-6R2015 GA
 [SolidWorks] 3DQuickPress 6.0.3 HotFix
 [DELCAM] Delcam PowerSHAPE 2015 R2 SP1
 [DELCAM] Delcam Crispin PatternCut 2015 R1
 [Dassault CATIA ] DS CATIA P3 V5-6R2015 GA
 [MENTOR] Mentor.Graphics.QuestaSim.v10.4a
 [PTC] PTC Creo Elements Pro v5.0.M260
 [Autodesk] Autodesk AutoCAD Utility Design 2016
 [Autodesk] Autodesk Revit Architecture 2016 Win64
 [Autodesk] CADdoctor for Autodesk Simulation 2016
 [Autodesk] Autodesk Simulation Moldflow Synergy 2016
[Autodesk] Autodesk Simulation Moldflow Adviser 2016 Ultimate
 [ANSYS] ACT Acoustics 16.0
[Biomedicine] Tripos SYBYL-X 2.1.1
[Other CAD/CAM] SolidCAM 2014 SP5 for SolidWorks
 [DELCAM] Delcam Crispin OrthoMODEL Pro 2013_OrthoMILL 2013
 [DELCAM] Delcam Crispin ShoeCost 2015 R2 SP2
   [MENTOR] Mentor.Graphics.ModelSIM.SE.v10.4.Win64
[Autodesk] Autodesk Simulation Mechanical 2016
[Dassault CATIA ] Dassault.Systemes.Simulia.FE-Safe.v6.5-02
 [Other CFD] Altair HyperWorks Solvers 13.0.212 HofFix
 [Other CFD] PyroSim 2015.1.0130
 [Water Conservancy] PetraSim.v2015.1.0225
 [Other EDA] SPEAG SEMCAD X Matterhorn 15
 [SYNOPSYS] Synopsys Synthesis 2014.09 SP3
 [Autodesk] AUTODESK VRED V2016
 [Chemical] Chemstations CHEMCAD v6.5.6
 [Structural Analysis] CADopia.Professional.v15.0.1.87
 [Other CAD/CAM] SolidCAM 2015 SP2 for SolidWorks 2012-2015
 [Other EDA] Aldec.Riviera-PRO.2015.02.76
 [Structural Analysis] Cype 2014p
  [Cadence] Cadence Allegro SPB v17.0 Windows
  [Math Statistics] Wolfram Mathematica v10.1.0
 [Other CAD/CAM] Vero Machining Strategist v15.0.6
 [Other EDA] IMST EMPIRE XPU 7.0
 [Development ] solidThinking Evolve 2015.4848 Win64
 [ANSYS] ANSYS 16.0 nCode DesignLife buld 193
 [Autodesk] AutoCAD Civil 3D 2016
[Other CFD] Siemens FEMAP v11.2.0 with NX Nastran
 [DELCAM] Delcam Crispin ShoeMaker 2015 R2 SP1
 [Autodesk] AutoCAD Plant 3D 2016
 [Autodesk] Autodesk AutoCAD P&ID 2016
  [Autodesk] Autodesk Entertainment Creation Suite Ultimate 2016
  [MENTOR] Mentor Graphics Leonardo Spectrum 2015
 [Other EDA] Intel Parallel Studio XE 2015 Update 2
 [MENTOR] Mentor Graphics HyperLynx 9.1.1
[BENTLEY] Bentley AutoPIPE Vessel (Microprotol) V8i SS1 33.03.00.20
 [Other CFD] Altair HWDesktop 12.0.121 Win&Linux HotFix
 [Autodesk] Autodesk AutoCAD Design Suite Ultimate 2016
 [Structural Analysis] Consteel 9.0
 [Other CAD/CAM] DataKit CrossManager 2015
 [Autodesk] Autodesk AutoCAD Electrical 2016
 [BENTLEY] Bentley MOSES V8i (SELECTSeries 2) 07.10.00.17
  [Design_Tools] Transoft.AutoTURN.Pro.3D.v9.0.3.316
 [PTC] PTC WindChill R10 M020
 [BENTLEY] Bentley.Microstran.Advanced.09.20.01.35
   [Other CAD/CAM] CimatronE V12
   [Autodesk] Autodesk AutoCAD MEP 2016
 [Autodesk] Autodesk AutoCAD Architecture 2016
 [Autodesk] Autodesk Inventor 2016
[Optics] Lumerical 2015a build 387 MacOsx
 [Chemical] AspenONE Engineering suite v8.7
 [Other CFD] Samtech_Samcef_Solvers_16.1-02_Win64
  [Geographic Information] Applied.Imagery.Quick.Terrain.Modeller.v8.0.4.4
 [Other EDA] OMRON CX-ONE 4.32 with Updates
 [Other EDA] Altium Designer 15.0.15
 [SolidWorks] SolidWorks Enterprise PDM 2015 SP2.1
 [Other CAD/CAM] CAMWorks 2015 SP1.0
 [BENTLEY] Bentley RAM Structural System V8i (SELECTSeries 7) 14.07.00.05
 [Other CAD/CAM] Missler Topsolid 2015 v7.9
 [Math Statistics] Maplesoft Maple 2015
 [Geographic Information] SARMAP SARscape 5.1.1
 [Other CFD] ETA Inventium PreSys 2014 R1
[Development ] B&K PULSE LabShop 18.1
 [Ship Design] DNV SESAM 2014
 [Other EDA] Polar Instruments Si9000e 2014 v14.07
 [Other EDA] SNT QualNet Developer 5.2
 [SolidWorks] SolidWorks 2015 SP2.1 Full Multilanguage
  [SYNOPSYS] Synopsys Formality vJ-2014.09 SP3 Linux64
 [SYNOPSYS] Synopsys TetraMax vJ-2014.09 SP3
  [SYNOPSYS] Synopsys IC Compiler vJ-2014.09 SP3
 [Other EDA] CST Studio Suite 2015
 [Autodesk] AutoCAD.v2016.Win32.win64
[Other CAD/CAM] Vero.VISI.v21.1.Multilanguage
 [Autodesk] Autodesk.AutoCAD.Mechanical.v2016
 [Other EDA] Mathworks Matlab R2015a Win64
[petroleum] Cmost Studio 2014
 [Geographic Information] Paradigm Geolog v7.2
 [Geographic Information] Midland Valley Move 2015.1 win64
[Structural Analysis] Tekla.Structural.Designer.2015.v15.0.0.40
 [UGS] DFMPro v4.0.0.2746 for NX 6.0-10.0 Win32.64
 [Biomedicine] Schrodinger Suite 2015.1.win.linux
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