XCV300E-7BG352C
XCV300E-7BG352C
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Xilinx

XCV300E-7BG352C


XCV300E-7BG352C
F20-XCV300E-7BG352C
Active
IC FPGA 260 I/O 352MBGA
352-MBGA (35x35)

XCV300E-7BG352C ECAD Model


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XCV300E-7BG352C Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®-E
Package Tray
Number of LABs/CLBs 1536
Number of Logic Elements/Cells 6912
Total RAM Bits 131072
Number of I/O 260
Number of Gates 411955
Voltage - Supply 1.71V ~ 1.89V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 352-LBGA Exposed Pad, Metal
Supplier Device Package 352-MBGA (35x35)
Base Product Number XCV300E

XCV300E-7BG352C Datasheet Download


XCV300E-7BG352C Overview



The XCV300E-7BG352C is an FPGA (Field Programmable Gate Array) chip manufactured by Xilinx. This chip is based on the Virtex-E family of devices and is capable of providing high performance, low power and high density solutions. It has a total of 352 I/O pins and a total of 7 million system gates. The device is also capable of supporting up to 4.3V I/O standards and can provide up to 800 MHz system performance.


The XCV300E-7BG352C chip has a wide range of applications, including high-speed networking, video processing, digital signal processing, telecommunications and embedded systems. It is also well suited for use in automotive, aerospace and industrial applications. It is suitable for use in high-performance computing applications, such as image processing, machine learning and artificial intelligence.


The XCV300E-7BG352C chip is also capable of supporting up to four independent clock domains and provides a wide range of features, such as a low-power mode, clock gating, and programmable logic. It also provides a high-speed I/O interface, which allows for a wide range of data transfer speeds. The chip also supports a wide range of memory types, including SRAM, DRAM and Flash.


The XCV300E-7BG352C chip is a powerful and versatile FPGA device that can provide high-performance solutions for a wide range of applications. It has a wide range of features, such as a low-power mode, clock gating and programmable logic, which make it an ideal choice for high-performance computing applications. It is also well suited for use in automotive, aerospace and industrial applications.



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