XCV1000E-7FG900I
XCV1000E-7FG900I
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AMD Xilinx

XCV1000E-7FG900I


XCV1000E-7FG900I
F20-XCV1000E-7FG900I
Active
IC FPGA 660 I/O 900FBGA
900-FBGA (31x31)

XCV1000E-7FG900I ECAD Model


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XCV1000E-7FG900I Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®-E
Package Tray
Number of LABs/CLBs 6144
Number of Logic Elements/Cells 27648
Total RAM Bits 393216
Number of I/O 660
Number of Gates 1569178
Voltage - Supply 1.71V ~ 1.89V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 900-BBGA
Supplier Device Package 900-FBGA (31x31)
Base Product Number XCV1000E

XCV1000E-7FG900I Datasheet Download


XCV1000E-7FG900I Overview



The XCV1000E-7FG900I is a high performance FPGA chip from Xilinx. It is based on the Virtex-7 family of FPGAs and is designed for high-speed, low-power applications. The chip features 900K logic cells, 28Mbits of distributed memory, and up to 5.8TFLOPS of processing power. It supports up to 12.5Gbps transceivers and provides up to 1.6Tbps of bandwidth. It also has up to 1.6Gbps of DDR3 memory interface.


The XCV1000E-7FG900I is ideal for applications such as high performance computing, high speed networking, embedded control, and data processing. It can be used in a variety of applications such as high speed data transfer, video processing, image processing, and signal processing. It is also suitable for applications that require high levels of integration, such as medical imaging and automotive systems.


The XCV1000E-7FG900I is designed to be power efficient, with a power consumption of only 10W at full speed. It also features advanced power management features, such as dynamic voltage and frequency scaling and adaptive voltage scaling. This allows the chip to be used in applications that require low power consumption, such as battery powered devices.


The XCV1000E-7FG900I is a highly versatile chip that can be used in a wide range of applications. It is designed to meet the needs of high performance and low power applications, and is suitable for a variety of applications. Its high speed transceivers, distributed memory, and processing power make it ideal for a variety of applications.



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