XCV600E-7HQ240I
XCV600E-7HQ240I
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AMD Xilinx

XCV600E-7HQ240I


XCV600E-7HQ240I
F20-XCV600E-7HQ240I
Active
IC FPGA 158 I/O 240QFP
240-PQFP (32x32)

XCV600E-7HQ240I ECAD Model


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XCV600E-7HQ240I Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®-E
Package Tray
Number of LABs/CLBs 3456
Number of Logic Elements/Cells 15552
Total RAM Bits 294912
Number of I/O 158
Number of Gates 985882
Voltage - Supply 1.71V ~ 1.89V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 240-BFQFP Exposed Pad
Supplier Device Package 240-PQFP (32x32)
Base Product Number XCV600E

XCV600E-7HQ240I Datasheet Download


XCV600E-7HQ240I Overview



The XCV600E-7HQ240I chip is a high-performance, field-programmable gate array (FPGA) designed by Xilinx. It is a member of the Virtex-6 family of FPGAs, which are optimized for high-performance applications. The XCV600E-7HQ240I chip has a total of 240K logic cells, which can be used to implement logic functions, memories, and digital signal processing (DSP) functions. It also has 480 DSP slices, which can be used to implement various types of digital signal processing functions. The chip also features a number of I/O blocks, which can be used to interface with external devices.


The XCV600E-7HQ240I chip is designed for a wide range of applications, including high-performance computing, video processing, communications, and industrial control. It is also suitable for use in embedded systems, as it can be programmed to perform specific tasks. The chip is capable of operating at a maximum clock frequency of 250MHz, and can be used to implement a wide range of functions.


In terms of power consumption, the XCV600E-7HQ240I chip is designed to be power-efficient, consuming only a small amount of power when compared to other FPGAs. It also features a low-power sleep mode, which can be used to reduce power consumption when the chip is not in use.


Overall, the XCV600E-7HQ240I chip is a powerful and versatile FPGA, which can be used to implement a wide range of applications. It is suitable for use in both embedded systems and high-performance computing applications, and can be programmed to perform specific tasks. The chip is also power-efficient, making it a good choice for applications where power consumption is a concern.



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