XCR5032C-6PC44C -Consumer Electronics -Wireless Technology

XCR5032C-6PC44C ApplicationField

-Internet of Things
-Artificial Intelligence
-Medical Equipment
-Cloud Computing
-5G Technology
-Wireless Technology
-Industrial Control
-Consumer Electronics

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XCR5032C-6PC44C FAQ Chips 

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Q: How to obtain XCR5032C-6PC44C technical support documents?
A: Enter the “XCR5032C-6PC44C” keyword in the search box of the website, or find these through the Download Channel or FPGA Forum .

Q: What should I do if I did not receive the technical support for XCR5032C6PC44C in time?
A: Depending on the time difference between your location and our location, it may take several hours for us to reply, please be patient, our FPGA technical engineer will help you with the XCR5032C-6PC44C pinout information, replacement, datasheet in pdf, programming tools, starter kit, etc.

Q: How can I obtain software development tools related to the Xilinx FPGA platform?
A: In FPGA/CPLD design tools, Xilinx’s Vivado Design Suite is easy to use, it is very user-friendly in synthesis and implementation, and it is easier to use than ISE design tools; The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.

Q: Where can I purchase Xilinx XCR5032 Development Boards, Evaluation Boards, or Macrocell CPLD Starter Kit? also provide technical information?
A: RAYPCB does not provide development board purchase services for the time being, but customers often consult about ZedBoard, Basys 3 board, TinyFPGA BX, Nexys4-DDR, Terasic DE10-Nano, Digilent Arty S7, etc. If you need relevant technical information, you can submit feedback information, our technicians will contact you soon.

ICs XCR5032C-6PC44C Features

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Xilinx XCR5032C-6PC44C Overview

The XCR5032C-6PC44C CPLD (Complex Programmable Logic
Device) is the first in a family of CoolRunner CPLDs from
Xilinx. These devices combine high speed and zero power
in a 32 macrocell CPLD. With the FZP design technique,
the XCR5032C-6PC44C offers true pin-to-pin speeds of 6 ns, while
simultaneously delivering power that is less than 75 µA at
standby without the need for “turbo bits” or other power
down schemes. By replacing conventional sense amplifier
methods for implementing product terms (a technique that
has been used in PLDs since the bipolar era) with a cascaded chain of pure CMOS gates, the dynamic power is
also substantially lower than any competing CPLD. These devices are the first TotalCMOS PLDs, as they use both a
CMOS process technology and the patented full CMOS
FZP design technique. For 3V applications, Xilinx also
offers the high speed XCR3032 CPLD that offers these features in a full 3V implementation.
The Xilinx FZP CPLDs utilize the patented XPLA
(eXtended Programmable Logic Array) architecture.

XPLA architecture combines the best features of both PLA
and PAL type structures to deliver high speed and flexible
logic allocation that results in superior ability to make
design changes with fixed pinouts. The XPLA structure in
each logic block provides a fast 6 ns PAL path with five dedicated product terms per output. This PAL path is joined by
an additional PLA structure that deploys a pool of 32 product terms to a fully programmable OR array that can allocate the PLA product terms to any output in the logic block.

This combination allows logic to be allocated efficiently
throughout the logic block and supports as many as 37
product terms on an output. The speed with which logic is
allocated from the PLA array to an output is only 2 ns,
regardless of the number of PLA product terms used, which
results in worst case tPD’s of only 8 ns from any pin to any
other pin. In addition, logic that is common to multiple outputs can be placed on a single PLA product term and
shared across multiple outputs via the OR array, effectively
increasing design density.
The XCR5032C-6PC44C CPLDs are supported by industry standard
CAE tools (Cadence/OrCAD, Exemplar Logic, Mentor,
Synopsys, Synario, Viewlogic, and Synplicity), using text
(ABEL, VHDL, Verilog) and/or schematic entry. Design verification uses industry standard simulators for functional
and timing simulation. Development is supported on personal computer, Sparc, and HP platforms. Device fitting
uses a Xilinx developed tool, XPLA Professional (available
on the Xilinx web site).
The XCR5032C-6PC44C CPLD is reprogrammable using industry
standard device programmers from vendors such as Data
I/O, BP Microsystems, SMS, and others.

XCR5032C-6PC44C Tags integrated circuit

1. XCR5032 development board
2. Macrocell CPLD XCR5032
3. XCR5032 evaluation board
4. Xilinx Macrocell CPLD development board
5. XCR5032 reference design
6. XCR5032C-6PC44C Datasheet PDF
7. Xilinx XCR5032
8. Macrocell CPLD evaluation kit
9. Xilinx Macrocell CPLD development board

Xilinx XCR5032C-6PC44C TechnicalAttributes

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