Introduction to Embedded System Design Using Field Programmable Gate Arrays,Used

Introduction to Embedded System Design Using Field Programmable Gate Arrays,Used

In Stock
SKU: DADAX1849968152
Brand: Springer
Sale price$116.91 Regular price$167.01
Save $50.10
Quantity
Add to wishlist
Add to compare

Processing time: 1-3 days

US Orders Ships in: 3-5 days

International Orders Ships in: 8-12 days

Return Policy: 15-days return on defective items

Payment Option
Payment Methods

Help

If you have any questions, you are always welcome to contact us. We'll get back to you as soon as possible, withing 24 hours on weekdays.

Customer service

All questions about your order, return and delivery must be sent to our customer service team by e-mail at yourstore@yourdomain.com

Sale & Press

If you are interested in selling our products, need more information about our brand or wish to make a collaboration, please contact us at press@yourdomain.com

"Introduction to Embedded System Design Using Field Programmable Gate Arrays" provides a starting point for the use of field programmable gate arrays in the design of embedded systems. The text considers a hypothetical robot controller as an embedded application and weaves around it related concepts of FPGAbased digital design. The book details: use of FPGA visvis general purpose processor and microcontroller; design using Verilog hardware description language; digital design synthesis using Verilog and Xilinx SpartanTM 3 FPGA; FPGAbased embedded processors and peripherals; overview of serial data communications and signal conditioning using FPGA; FPGAbased motor drive controllers; and prototyping digital systems using FPGA.The book is a good introductory text for FPGAbased design for both students and digital systems designers. Its endofchapter exercises and frequent use of example can be used for teaching or for selfstudy.

⚠️ WARNING (California Proposition 65):

This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.

For more information, please visit www.P65Warnings.ca.gov.

Recently Viewed