XC2V1000-4FGG256C
XC2V1000-4FGG256C
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AMD Xilinx

XC2V1000-4FGG256C


XC2V1000-4FGG256C
F20-XC2V1000-4FGG256C
Active
IC FPGA 172 I/O 256FBGA
256-FBGA (17x17)

XC2V1000-4FGG256C ECAD Model


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XC2V1000-4FGG256C Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®-II
Package Tray
Number of LABs/CLBs 1280
Total RAM Bits 737280
Number of I/O 172
Number of Gates 1000000
Voltage - Supply 1.425V ~ 1.575V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 256-BGA
Supplier Device Package 256-FBGA (17x17)
Base Product Number XC2V1000

XC2V1000-4FGG256C Datasheet Download


XC2V1000-4FGG256C Overview



The XC2V1000-4FGG256C is a Field Programmable Gate Array (FPGA) chip from Xilinx. This chip is designed to be used in high-performance applications requiring multiple levels of integration. It features an array of configurable logic blocks, a high-speed interconnect network, and a range of embedded memory blocks.


The XC2V1000-4FGG256C is built around a Virtex-II Pro platform, which offers a range of features designed to improve performance, reduce power consumption, and increase system integration. It has 256Kbits of embedded memory, a 4-input look-up table (LUT), and a range of high-speed I/O options. The chip is further supported by an extensive range of development tools, including a comprehensive set of IP cores.


The XC2V1000-4FGG256C is suitable for a wide range of applications, including communication networks, embedded systems, and digital signal processing. It can be used to create custom logic blocks, as well as to implement complex algorithms. It is also suitable for high-speed data acquisition and processing, and is an ideal choice for applications requiring high-performance and low power consumption.


The XC2V1000-4FGG256C is a powerful and versatile chip, offering a range of features and performance levels that make it a suitable choice for a wide range of applications. Its configurability, embedded memory, and high-speed I/O options make it an ideal choice for applications requiring a high level of integration and performance.



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