گروه خدمات فنی مهندسی رهگشافن

معرفی نرم افزار Inus Rapidfrom XOR2


Inus Rapidfrom XOR2



Rapidform XOR, the only 3G (third-generation) reverse engineering software, is a complete software application for creating CAD models from 3D scan data. With Rapidform XOR, you can open data from any 3D scanner and quickly create editable, parametric solid models of virtually any physical . These models can be transferred from XOR into popular CAD applications, including SolidWorks®, Siemens NX™ and Pro/ENGINEER®, with complete feature trees intact. This means that – unlike second generation reverse engineering software – the models from XOR are editable just like any other part designed in CAD. And XOR can save models as Parasolid®, STP, IGS and STL for use in any CAD/CAM/CAE application.

The third-generation parametric reverse engineering approach inside XOR makes creating high quality, ready to manufacture CAD models fast and easy. Creating complete solid models accurate to within a few microns of a 3D scan takes less time than redrawing it in CAD. XOR, paired with a 3D scanner, is simply the fastest, most accurate way to create a design model of a real-world .

Parametric CAD Models from 3D Scan Data
Rapidform XOR uses proven solid and surface modeling techniques to create CAD models from point clouds and polygon meshes produced by 3D scanners. Unlike the raw data that is created by a 3D scanner, these CAD models are lightweight, made up of editable features, and are directly usable for machining, design changes, simulations, analysis and much more. And unlike first- or second-generation reverse engineering approaches, the models you create in XOR aren"t just static NURBS surfaces. They can be manipulated, edited, updated and changed at any time and in any way you define.

And every model created in Rapidform XOR is sure to be accurate. The patent-pending Accuracy Analyzer™ shows real time deviation analysis while you redesign the part, so you can ensure your finished model is faithful to the original 3D scan. And it saves time because you never have to leave XOR to check your modeling accuracy.

Capture Design Intent
In Rapidform XOR, you"re not just capturing the shape of the scanned , you"re capturing its original design intent as well. XOR automatically detects features, such as revolves, extrusions, sweeps and fillets, on the scanned . Finished CAD models from XOR are “intelligent” – they contain both form and function. Because the models are made up of features extracted from scans, rather than just surfaces that are fit to scan data, they are much cleaner and have defined dimensions and constraints.

Depending on the need, you may want your reverse engineered models to match the exact geometry of the real world part, including all of its imperfections. But more often than not, a pristine, idealized CAD model that represents the original design intent of the part is preferred. XOR is the only reverse engineering software that extracts design intent as CAD features.

Seamless Interoperability with Full Modeling History in CAD System
CAD models are the industry standard for communicating design parameters and manufacturing requirements. Once the 3D scan data of a part has been modeled in Rapidform XOR, a fully parametric solid model with modeling history can be exported through XOR"s patent-pending liveTransfer™ and modified in SolidWorks®, Siemens NX™ and Pro/ENGINEER®. Other 3D applications can open models created in XOR using industry-standard formats like Parasolid®, STP and IGS.

Faster Than Any Other Reverse Engineering Approach
Rapidform XOR takes an elegantly simple approach to reverse engineering: redesign an the same way it was originally designed. Because XOR uses 3D scan data as a template on which to build a CAD model, rather than converting the scan data into a NURBS surface model, you don’t need to spend much time cleaning or editing the point cloud or polygon mesh itself. Traditional first- and second-generation reverse engineering approaches require a perfected mesh, which can sometimes take hours to refine. With XOR, you skip directly to making the CAD model. Benchmark tests have shown that XOR’s third-generation approach cuts complex reverse engineering jobs from days to hours.

• Automatic point cloud/mesh healing & cleaning
• Automatic scan data processing from multi-shot point cloud into qualified mesh - Mesh Buildup Wizard™
• Watertight and optimized mesh from raw scan data just with one click - Rewrap™
• Advanced CAD mesh healing
• Automatic hole filling with high curvature continuity
Best-in-class Point Cloud & Mesh Operations
• Cross sectioning freeform curve design on point cloud and mesh
• Instant mesh optimization for direct use in RP, CAM & CAE
• Detail resolution controls(decimate & subdivide)
• Smoothness controls(global & local smoothing)
• Automatic re-meshing for CAE functional models
• Professional yet highly interactive point cloud/mesh editing tools
• Advanced point cloud/mesh modeling & optimization
global remesh, remove marker, de-feature, hole filling, fix boundary, smooth boundary, fit boundary, fit region to analytic shape,
split & trim, divide, thicken, offset, etc.
Direct Color Texture Editing
• Color-texture-aware mesh operation and texture preservation
• Color parameter adjustments and editing
• Automatic color balancing between multiple scans
• Create single texture atlas from multiple textures with minimizing mosaic textures
• 3D data compression and streaming for web publishing
Loft Wizard™
• Automatically create high quality lofted surfaces from scan data
• Generate smooth lofted surfaces and profile curves within a user controlled tolerance
Redesign Assistant™
• Unprecedented tools for extracting design parameters from 3D scan data
• Utilize meshes as redesign parameters Automatic mesh region segmentation
• Automatic extraction of design feature parameters from meshes
filet radius and center, sketch plane & profile(automatic sketching), sweep path curve, extrusion axis, mirroring plane, revolving center axis, pipe center axis, drafting angle, 3D section curve for lofting, feature curve, offset/thickening distance, cylinder/cone axis, slot axis, pattern axis and direction, silhouette curve, parting line, bead line, helix and spiral curve, etc. • Automatically create sketch profiles with dimensions and constraints from mesh models
• Automatic extraction of 2D/3D design features from mesh
• Intelligent real-time 2D/3D geometry recognition and snapping
Accuracy Analyzer™
• Redesign within user-defined allowable tolerances
• Automatic and real-time error visualization
• Diverse sensitive analysis tools(mesh to mesh, mesh to CAD, etc.)
Hybrid Modeling– Solid, Surface, Mesh, Point Cloud and Texture
• Highly sophisticated yet familiar by utilizing widely accepted solid and surface modeling features
Solid Features: extrude, sweep, revolve, pipe, thicken, draft, round with various radius, chamfer, hollow (shell), linear/circular/curve pattern, boolean modeling, embossing, engraving, etc.
Surfacing Features: drape, blend, extrude, revolve, sweep, loft, ruled, offset, mirror, fill face, extend, trim/untrim, match, heal, etc.
• Modeling history management(feature history rebuild, reroute & reorder)
• CAD-like parametric feature management
Quick Mesh-to-Surface
• Automatic shrink wrapped surface model generation
• Optimized representations of original mesh data with negligible deviation error
• Interactive mesh-fit surfacing(region fit & boundary fit)
CAD Correct™– CAD-to-Scan Refit & Redesign
• Update the original CAD model to represent the changes in the as-built part
• Import CAD data in a variety of CAD file formats
• Fast and automatic CAD & mesh model coordinate alignment
• CAD local modification and one-button CAD-to-Scan refit
Sophisticated Curve/Sketch Tools
• Automatic extraction of sketch profile and feature curve from mesh
• Automatic dimensioning & constraining Variety of 2D drafting tools
• Comprehensive 3D curve design tools e.g. section curves
• Intelligent real-time geometry recognition
• Curvature-based curve network design
liveTransfer™ - Seamless Data Transfer
• Transfer output model with full history to CAD system
• Export models in a variety of standard file formats
liveScan™ - Direct Interface with 3D Scanning Devices
• Real-time guided scanning
• Scan and generate design features on-the-fly
• Tightly integrated with Mesh Buildup Wizard
• Fully automated multi-shot registration and scan data processing

Supported File Formats
Rapidform Proprietary Formats
XRL(XOR model file), XDL(Rapidform XOV(XOS) model file), MDL(Rapidform2006 model file), FCS(mesh file), ICF(INUS Compression Format), RPS(Rapidform Point-Stream file)
Standard File Formats
STL, OBJ, PLY, 3DS, WRL(VRML), IGES, STEP, VDAFS, Parasolid model file(X_T, X_B), Rhino(3DM)
3D scanner file format
VVD/CDM/CAM/CDK(Minolta), AC(Steinbichler), CBK/GRK/CWK(Kreon), G3D/CLOUD/SURF(GOM), HYM(Hymarc), CV/SNX(Solutionix), IQSCAN(iQvolution), PSL(LDI), PMJ/PMJX(3D Digital Corp.), RTPI/XYZI/XYZRGB(3rd Tech), PTS/PTX(Cyra), SAB/SAB2(3D Scanners), SOI(MENSI), 3DD(Riegl), STB(Scantech), SWL/BIN/SWB(Perceptron), TFM(Wicks & Wilson), XYZ/CRS/LIN/SMH/BIN(Opton), 3PI(Shape Grabber), PLY(Cyberware), BRE(Breuckmann), M3D(Steintek), FLS(Faro), SCN(NextEngine), PIX(Roland DG)
Point Cloud & Mesh Cleanup

CPU
- Intel® and AMD® processors.
- Dual processors recommended for greater performance
RAM
- Minimum: 512 MB (XP), 1 GB (Vista)
- Recommended: 2 GB
- Virtual Memory; XP: recommended to 2.5 times the amount of RAM Vista: recommended to use the default option; "Automatically manage paging file size for all drives"
Hard Disk
- Temporary file cache requires a minimum of 4 GB free disk space
- 10 GB or more recommended
Display
- 1280X1024 resolution recommended, 32-bit true color required
Graphics Card
Minimum:
- OpenGL 1.2 or above
- NVIDIA GeForce 4 or above
- ATI Radeon 9600 or above
Recommended:
- 512 MB or higher graphic memory
- OpenGL 2.0 or above
- NVIDIA GeForce 6600 or above
- ATI Radeon X1650 or above

معرفی نرم افزار The Chemical Thesaurus


The Chemical Thesaurus Version.4, Chemistry Software 


Version 4 of The Chemical Thesaurus has a subset of the reaction chemistry database designed to support students and teachers of the British GCE AS/A2 Chemistry exam system, a university entrance qualification used in many countries.

In The Database:
• atoms, isotopes & ions
• simple molecules & molecular ions
• main group chemistry
• industrial chemistry
• organic functional group chemistry
• reaction mechanisms
• Lewis acids & Lewis bases
• redox agents
• radicals & diradicals
• pericyclic processes
• VSEPR geometries
• Br?nsted acids + conjugate bases
• material types
• minerals
• radioactive decay series
• flame chemistry
• quarks, leptons, fermions & bosons
• common natural products
• pharmaceutical agents

Software Gadgets:
• mol.wt. calculator
• redox chemistry
• Gibbs free energy
• aromatic substitution
• clickable periodic table

معرفی نرم افزار NCSS PASS


NCSS PASS 2008 v8.0.10

PASS performs power analysis and calculates sample sizes. Use it before you begin a study to calculate an appropriate sample size (it meets the requirements of government agencies that demand technical justification of the sample size you have used). Use it after a study to determine if your sample size was large enough.
PASS lets you solve for power, sample size, effect size, and alpha level. It automatically displays charts and graphs along with numeric tables and text summaries in a portable format that is cut and paste compatible with all word processors so you can easily include the results in your proposal.

PASS is a standalone system. Although it is integrated with NCSS, you do not have to own NCSS to run it. You can use it with any statistical software you want. PASS 2008 runs under Windows Vista, XP, 2000, NT, ME, 98, and 95.

PASS is accurate. It has been extensively verified using books and reference articles. Proof of the accuracy of each procedure is included in the extensive documentation.

PASS comes with three manuals that contain tutorials, examples, annotated output, references, formulas, verification, and complete instructions on each procedure. And, if you cannot find an answer in the manual, our free technical support staff (which includes three PhD statisticians) is available.

No other program calculates sample sizes and power for as many different statistical procedures as does PASS. Specifying your input is easy, especially with the online help and manual.

معرفی نرم افزار Crystal Impact Match


Crystal Impact Match! 1.9a

Match! is an easy-to-use software for phase identification from powder diffraction data, which has become a daily task in material scientists work. Match! compares the powder diffraction pattern of your sample to a database containing reference patterns in order to identify the phases which are present. Single as well as multiple phases can be identified based on both peak data and raw (profile) data. The portable app is packaged with AMCSD, COD, and IUCr reference pattern databases (which contain more than 75000 entries in total). You can also create your own database. The user database patterns can be edited manually, imported from peak files, calculated from crystal structure data (e.g. CIF files), or imported from your colleague"s user database.

Supported diffraction data file formats (automatic detection):
ASCII profile (start, step, intensities or 2 columns)
Bruker/Siemens raw data (old and new) (*.raw)
Bruker/Siemens DIFFRAC AT peak data (*.dif)
DBWS (*.rfl, *.dat)
ENDEAVOUR peak list (2 columns: 2theta/d intensity; *.dif)
Inel raw data (*.dat)
Ital Structures raw data (*.esg)
Jade/MDI/SCINTAG raw data (*.mdi)
JEOL ASCII Export raw data (*.txt)
PANalytical XRDML Scan raw data (*.xrdml)
PANalytical/Philips peak data (*.udi)
PANalytical/Philips raw data (*.rd, *.udf)
Rigaku raw data (*.raw)
SCINTAG raw data (*.raw, *.rd)
Shimadzu raw data (*.raw)
Siemens (*.uxd)
Sietronics XRD scan data (*.cpi)
Stoe raw data (*.raw)
Stoe peak data (*.pks)

معرفی نرم افزار RoboLab


RoboLab 2.5.4

Based on LabVIEW™, from National Instruments, Texas USA, the ROBOLAB Software uses an icon-based, diagram building environment to write programs that control the RCX. ROBOLAB"s customized user interface is designed for student users ages 8 and up.
ROBOLAB has progressive programming phases that allow the programming level to match the student"s knowledge and skills.
PILOT is a basic environment where programs are built using a click-and choose interface.
INVENTOR provides a more open-ended, icon-based environment.
ROBOLAB INVESTIGATOR uses PIOLT and INVENTOR programming to incorporate data collection into projects.
Current Version
Current version, ROBOLAB 2.5
ROBOLAB 2.0
ROBOLAB 1.0/1.5
Other Languages
ROBOLAB 2.5 with Training Missions
Training Mission Tutorials to become more familiar with ROBOLAB programming
Auto wiring of INVENTOR icons
Supports the LEGO Camera and standard digital web cameras (PC and Mac)
Improved remote internet control
In the Piano Player, choose music to download to your RCX or compose your own
Pilot
View camera display while program runs
Upload RCX programs to PILOT
Inventor:
View camera display while program runs
Use camera as intelligent vision sensor with image processing
Investigator
Supports Additional Sensors
DCP Current Probe (-1A to + 1A)
DCP LUX light level sensor
DCP Designer Sensor analogue (0-2.5V)
DCP Barometric/Low Air Pressure
DCP Accelerometer - 2 alternative scales both G and m/s/s Redox/Ion Selective Electrodes (-1250mV to + 1250mV)
All versions of ROBOLAB software can be used with the Infrared Transmitter with Serial Cable. However, the ROBOLAB 2.5 is required to use the Infrared Transmitter with USB tower

System Requirements
Windows 95 or higher
(Windows 98 or higher for USB Transmitter use)
Windows 95 or higher, NT 4.0 or higher
133 Mhz processor
32 Mb RAM
180 Mb Hard Drive space (405 MB if Training Missions are installed locally)
1 free serial port (Legacy or USB)

معرفی نرم افزار MultiQC


MultiQC 6.0.4.3

MultiQC is a Windows software application for quality control in clinical chemistry laboratories. It was created by a chemical pathologist disappointed with the heterogeneity, the inappropriate design and the poor efficiency of the ancillary QC programmes supplied with analyzers or LIS. The daily investigation of issues arising at the workbench combined with the great improvements in industrial QC for the last three decades led to MultiQC, a programme which provides technicians with a comprehensive control panel to monitor and improve the quality of analytical processes.

معرفی نرم افزار Cresset BMD FieldAlign


Cresset BMD FieldAlign v2.1.1

FieldAlign™ is a smart molecular alignment tool for modellers and medicinal chemists. Given a 3D template molecule, it can align other molecules entered in 2D to that template rapidly and in a biologically-relevant manner. The template would commonly be an active molecule (or set of molecules) in its bioactive conformation. The template molecule could be obtained from a FieldTemplater™ alignment hypothesis, a ligand extracted from the active site of a protein, docking or pharmacophore studies.

FieldAlign™ is ideal for visual inspection of alignments of actives from different series and identifying shared field features or pharmacophores, providing a qualitative indication of field SAR. FieldAlign is useful at the early stage of library design as small virtual libraries can be aligned to an active template and the chemist can select those scaffolds and monomers which together best match the active field template. FieldAlign can also be used as an aid to lead optimisation: iteratively changing molecules in FieldAlign and observing the alignments and field patterns can provide powerful insights into the direction that your chemistry should go. It is also invaluable for overlaying series of molecules prior to 3D QSAR studies where a good alignment of the molecules is critical for obtaining meaningful models.

معرفی نرم افزار Emss Feko


Emss Feko v5.5 

FEKO is a comprehensive electromagnetic (EM) analysis software suite, building on state of the art computational EM (CEM) techniques to provide users with software that can solve a wide range of electromagnetic problems.

The multiple solution techniques available within FEKO make it applicable to a wide range of problems for a large array of industries. Typical applications include:

* Antennas: analysis of horns, microstrip patches, wire antennas, reflector antennas, conformal antennas, broadband antennas, arrays
* Antenna placement: analysis of antenna radiation patterns, radiation hazard zones, etc. with an antenna placed on a large structure, e.g. ship, aircraft, armoured car
* EMC: analysis of diverse EMC problems including shielding effectiveness of an enclosure, cable coupling analysis in complex environments, e.g. wiring in a car, radiation hazard analysis
* Bio-electromagnetics: analysis of homogeneous or non-homogeneous bodies, SAR extraction
* RF components: analysis of waveguide structures, e.g. filter, slotted antennas, directional couplers
* 3D EM circuits: analysis of microstrip filters, couplers, inductors, etc.
* Radomes: analysis of multiple dielectric layers in a large structure
* Scattering problems: RCS analysis of large and small structures

GUI Features

* Large array of primitives for model creation (e.g. helix, cone, wire, paraboloid, hyperboloid, bezier curves)
* Importation of externally computed lists of points for creation of lines, polygons, etc.
* Tree based access to simulation elements (settings, materials, grids, results, etc.)
* Selection, zooming, 3-D mouse-only based handling, etc.
* Full solver control via GUI

Excitations

* Voltage or current source at a port
* Port definitions at wires, edges, waveguide aperture or stripline
* Plane wave
* Magnetic point source
* Electric point source
* Point source with specified radiation pattern
* Impressed line currents
* Near-field aperture
* Spherical modes

CAD Import and Export Features

* Parasolid import and export are standard components of FEKO
* AutoCAD DXF, IGES, STEP, ProEngineer, Unigraphics, CATIA V4, CATIA V5 and ACIS Exchange (SAT) are additional, licenced options

Mesh Import Features

* FEKO mesh import is a standard component of FEKO
* FEMAP neutral, NASTRAN, meshed AUTOCAD DXF, STL mesh, PATRAN mesh, Ansys CDB file mesh, Concept mesh, ABAQUS mesh, ASCII data format mesh as additional options

Meshing Features

* Variable mesh densities in a single model to accurately and efficiently model small features
* Mesh density specifiable on faces and edges
* Mesh fixing tools

Post Processing Features

* 2-D and 3-D views
* 2-D XY plots, polar plots, Smith chart
* Radiation pattern (3-D in model, 2-D XY/polar)
* Radiation and far-field data, Radar Cross-Section (RCS), etc.
* SAR (IEEE standard compliant whole body average, 10g cube localized, 1g cube localized)
* Full multi-port S-Parameter extraction
* Several visualization options for surfaces, incl. isosurfaces, 2D field cuts
* Multiple results displayable in same viewport for comparison
* 64-bit enabled for large model viewing
* Export views to image formats

Automatic software updates

* For users with maintenance and support agreements
* Update from online repository or local repository (on private network)

Homepage: http://www.feko.info/overview-of-feko

معرفی نرم افزار oretechnologie 3D Evolution


Coretechnologie 3D Evolution 2009 SP3

3D Evolution Conversion Engine Loss-free data conversion with healing technology Today, a product.s data processing chain is a significant competitive factor. A break in this chain leads to a considerable increase in throughput time and engineering costs. The loss-free conversion of 3D data is an indispensable prerequisite for the successful integration of all systems involved . from the virtual design through the FEM analysis to production.

The software was specially developed for data conversion and includes smart correction algorithms that automatically eliminate system and construction-related errors in the geometry. It eliminates system and construction related geometry errors, such as overlapping, gaps and mini elements.
Furthermore, Advanced Repair Technology consistently orientates surface vectors, reduces multi-patch surfaces, and creates topology. Quilts are corrected fully automatically and sewn together into solids of userdefined accuracy. The adaptive conversion optimizes the mathematical deion of the models for the respective target system by identifying canonical surfaces such as cylinders, planes, conical and toroidal planes as well as freeform Bzier, B-Spline and NURBS surfaces. This technology ensures topologically consistent models that can then be optimally processed in the target system. The native interfaces . such as CATIA V4 / V5, Unigraphics, Pro/Engineer and IDEAS . as well the standard interfaces STEP, IGES and VDA formats guarantee a high degree of flexibility in data exchange. Interfaces are expanded and upgraded on an ongoing basis. On request, we will gladly send you a detailed list of interfaces and interface release versions available. In interactive mode, users have visual control of inaccuracies, free edges and structural errors. Highly effective manual repair functions supplement the automatic correction tools as required. For data integration into batch processing for PDM and data transmission systems, 3D_Evolution is activated through a command line and managed through its internal language.