XCV400E-7BG432C
XCV400E-7BG432C
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Xilinx

XCV400E-7BG432C


XCV400E-7BG432C
F20-XCV400E-7BG432C
Active
IC FPGA 316 I/O 432MBGA
432-MBGA (40x40)

XCV400E-7BG432C ECAD Model


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XCV400E-7BG432C Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®-E
Package Tray
Number of LABs/CLBs 2400
Number of Logic Elements/Cells 10800
Total RAM Bits 163840
Number of I/O 316
Number of Gates 569952
Voltage - Supply 1.71V ~ 1.89V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 432-LBGA Exposed Pad, Metal
Supplier Device Package 432-MBGA (40x40)
Base Product Number XCV400E

XCV400E-7BG432C Datasheet Download


XCV400E-7BG432C Overview



The XCV400E-7BG432C is a high-performance, low-power Field Programmable Gate Array (FPGA) chip manufactured by Xilinx. This model is based on the Xilinx Virtex-4 family of FPGAs and is designed to provide a high level of integration and flexibility for a wide range of applications.


The XCV400E-7BG432C is a high-performance FPGA with a wide range of features, including a high-speed system interface, a high-density logic array, and a high-speed memory interface. It also features an integrated clock generator and a wide range of I/O interfaces. The chip has a total of 432 I/O pins, which can be configured for a variety of different applications.


The XCV400E-7BG432C is ideal for a variety of applications, including embedded systems, industrial automation, automotive control, medical devices, and communications systems. It is also suitable for use in high-performance computing and networking applications.


The XCV400E-7BG432C is designed to be highly reliable and efficient, with low power consumption and high operating speeds. It is also designed to be flexible and programmable, allowing users to customize the chip for their specific application requirements.


In conclusion, the XCV400E-7BG432C is a high-performance, low-power FPGA chip that is ideal for a variety of applications. It features a wide range of features and I/O interfaces, and is highly reliable and efficient. The chip is also highly programmable and customizable, allowing users to tailor it to their specific application requirements.



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