XCV1000E-7FG680I Overview
In the 680-LBGA Exposed Pad package, you will find fpga chips. This kind of FPGA is composed of FIELD PROGRAMMABLE GATE ARRAY. A total of 512 I/Os are programmed to ensure a more coherent data transfer. There are 27648 logic elements/cells to form a fundamental building block. In order to operate fpga chips, a voltage supply of 1.8V volts is required. This FPGA part belongs to the family of Field Programmable Gate Arrays. The Surface Mount-slot connector on the FPGA module can be connected to the development board. Powered by a 1.71V~1.89V supply voltage, fpga chips is able to operate at high speeds. It is a type of FPGA that belongs to the Virtex?-E series of FPGAs. Fpga chips is necessary to keep the operating temperature wFpga chipshin -40°C~100°C TJ when the device is operating. There are 512 outputs incorporated in this device. Fpga chips is designed to maximiTraye space efficiency by containing the FPGA model in Tray. Fpga chips is designed wFpga chipsh 680 terminations. Having a RAM bit size of 393216 means that this device will offer you a lot of memory. You can find related parts by using the part number XCV1000E, which is its base part number. It is crucial that the RAM si48kBe of this FPGA module reaches 48kB so that the program can run normally. A total of 6144 LABs/CLBs make up this FPGA array. Providing the FPGA is mounted in Surface Mount as per the specifications of the IC, then it should work perfectly according to its specifications. In the case of 1.8V supply voltage, designers can take full advantage of its flexibility. Among its basic building blocks, there are 1569178 gates that are included in it. This device has a pin count of 680 in fpga semiconductor. Normally, fpga semiconductor uses an oscillator, which oscillates at 400MHz, to create the signal.
XCV1000E-7FG680I Features
512 I/Os
Up to 393216 RAM bits
XCV1000E-7FG680I Applications
There are a lot of Xilinx Inc. XCV1000E-7FG680I FPGAs applications.
- High Performance Computing
- Enterprise networking
- Aerospace and Defense
- Industrial IoT
- Filtering and communication encoding
- Computer hardware emulation
- Defense Applications
- Automotive
- Data center search engines
- Device controllers