Cadence OrCAD and Allegro (Incl ADW) 17.2 is comprised of the following executables which occupy 1.14 MB (1198568 bytes) on disk: setup.exe (1.14 MB) The current web page applies to Cadence OrCAD and Allegro (Incl ADW) 17.2 version 17.20.002 alone. For other Cadence OrCAD and Allegro (Incl ADW) 17.2 versions please click below: 17.20.022; 17.20.038. دانلود نرم افزار Cadence Design Systems Allegro and OrCAD v17.2 x64 - win. آخرین ورژن نرم افزار قدرتمند Cadence Design Systems Allegro and OrCAD v17.2 x64 با لینک مستقیم و راهنمای نصب کامل در سایت دانلود فارسی.
Direct Downloads to Free Viewer Software
Free viewer software for various CAD tools can be downloaded at the links below. If you have issues downloading or a link is no longer working, please contact us.
Cadence Allegro Physical Viewer
Versions: 16.6 & 17.2
Database viewer for Allegro PCB Editor, Allegro PCB SI, and Allegro IC package solutions. Includes property and element query, measure distance, find, reports, and more.
GC-Preview Gerber Viewer
Version: 21.4, Size: 36mb
GC-Preview is a powerful free Gerber viewer created by GraphiCode. GC-Prevue reads all common CAD generated electronic manufacturing outputs including Gerber, Barco DPF, Excellon, Sieb and Meyer, HPGL and HPGL2.
eDrawings Free Viewer
Size: 35mb
eDrawings Free Viewer lets you view, print, and review all types of native SolidWorks® parts, assemblies, and drawings as well as DWG & DXF files.
Allegro Viewer 17.2 Download
The first step to obtain one of theseprinted circuit boards(PCBs) is to design it using one of the specific tools on the market. One of the most popular ones is OrCAD.
OrCAD is the most powerful and intuitive tool to design printed circuit boards. The demo version offers you the possibility to evaluate the following functions: OrCADCapture, OrCADCapture CIS Option, PSpice A/D, PSpice A/A, OrCADPCB Editor and SPECCTRA.
The basic steps that have to be taken to designa printed circuit board with OrCAD are:
1. Design the circuit by creating the schematic in the 'Capture' module.
2. Generate the circuit's netlist.
3. Import the netlist to 'LayoutPlus'.
4. Place the components and trace the pathways.
5. Generate the files of its design.
Once the design of the copper pathways on the board has been finished, and we have simulated the behavior of the design, the next step will be to design the PCB from an insulating material, like for example a photosensitive fiberglass board.