
Allicdata Part #: | XCV800-6BG560C-ND |
Manufacturer Part#: |
XCV800-6BG560C |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Xilinx Inc. |
Short Description: | IC FPGA 404 I/O 560MBGA |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | Virtex® |
Part Status: | Obsolete |
Number of LABs/CLBs: | 4704 |
Number of Logic Elements/Cells: | 21168 |
Total RAM Bits: | 114688 |
Number of I/O: | 404 |
Number of Gates: | 888439 |
Voltage - Supply: | 2.375 V ~ 2.625 V |
Mounting Type: | Surface Mount |
Operating Temperature: | 0°C ~ 85°C (TJ) |
Package / Case: | 560-LBGA Exposed Pad, Metal |
Supplier Device Package: | 560-MBGA (42.5x42.5) |
Base Part Number: | XCV800 |
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Embedded - FPGAs (Field Programmable Gate Array) are a complex, rapidly evolving series of computer chips with many different applications.
The XCV800-6BG560C FPGA, known as a medium-density FPGA, is a device designed to meet the requirements of a wide range of embedded applications. The underlying architecture of the XCV800-6BG560C FPGA provides low speed, low power, and low cost, along with excellent reliability and flexibility.
The XCV800-6BG560C FPGA is widely used in automation, robotics, avionics, security systems, military, medical and automotive applications. Additionally, it can be used in various computational and network-related applications, such as networking and communications, data processing and acquisition, control systems, test equipment, and scientific applications.
The XCV800-6BG560C FPGA is based on the Altera Cyclone V FPGA, which is a 28nm high-performance, low-cost, power-efficient FPGA device with improved levels of operations. It is designed to facilitate the development and deployment of complex embedded systems. It delivers unparalleled connectivity and performance at a lower cost.
The XCV800-6BG560C FPGA has a wide range of features and capabilities that enable it to be well suited for a variety of embedded applications. Its improved architecture provides higher performance and improved power efficiency compared to the earlier FPGA devices. Its high-bandwidth I/Os and programmable logic clock networks enable it to execute complex tasks quickly.
The working principle of the XCV800-6BG560C FPGA is based on the principle of configurability. This principle enables the device to be programmed to perform various functions and operations. It makes use of arrays of AND and OR gates, multiplexers, and flip-flops to create a set of logic operations. The programmable behavior of the device is achieved by providing the digital logic configuration necessary to enable the device to perform the desired operations.
The XCV800-6BG560C FPGA is also equipped with resources that enable it to be used in a wide range of applications. It includes block RAM, DSP blocks, and multipliers, which provide increased parallelism and improve the performance of the FPGA. It supports high-speed differential I/O interfaces, which enable fast communication with external devices. It also provides efficient power monitoring and control, which helps to efficiently manage power consumption in embedded systems.
The XCV800-6BG560C FPGA is a highly efficient and reliable device that can be used in a wide range of embedded applications. It is a cost-effective and reliable solution for many embedded applications, providing a compact and reliable platform for developing advanced solutions.
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Part Number | Manufacturer | Price | Quantity | Description |
---|
XCV800-5HQ240I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 166 I/O 240HQFP |
XCV800-4FG676I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 444 I/O 676FBGA |
XCV800-4HQ240I | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240HQFP |
XCV800-4FG676C | Xilinx Inc. | -- | 1000 | IC FPGA 444 I/O 676FBGA |
XCV800-5BG432I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 316 I/O 432MBGA |
XCV800-5BG432C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 316 I/O 432MBGA |
XCV800-4BG560I | Xilinx Inc. | -- | 1000 | IC FPGA 404 I/O 560MBGA |
XCV800-5FG680C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 512 I/O 680FBGA |
XCV800-4FG680C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 512 I/O 680FBGA |
XCV800-6BG432C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 316 I/O 432MBGA |
XCV800-5BG560I | Xilinx Inc. | -- | 1000 | IC FPGA 404 I/O 560MBGA |
XCV812E-6BG560C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 404 I/O 560MBGA |
XCV812E-8BG560C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 404 I/O 560MBGA |
XCV800-4BG432C | Xilinx Inc. | -- | 1000 | IC FPGA 316 I/O 432MBGA |
XCV800-5FG676I | Xilinx Inc. | -- | 1000 | IC FPGA 444 I/O 676FBGA |
XCV800-6BG560C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 404 I/O 560MBGA |
XCV812E-6FG900C | Xilinx Inc. | -- | 1000 | IC FPGA 556 I/O 900FBGA |
XCV800-5HQ240C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 166 I/O 240HQFP |
XCV812E-7BG560C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 404 I/O 560MBGA |
XCV800-5FG676C | Xilinx Inc. | -- | 1000 | IC FPGA 444 I/O 676FBGA |
XCV800-4HQ240C | Xilinx Inc. | -- | 1000 | IC FPGA 166 I/O 240HQFP |
XCV800-4FG680I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 512 I/O 680FBGA |
XCV800-5FG680I | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 512 I/O 680FBGA |
XCV800-6FG680C | Xilinx Inc. | -- | 1000 | IC FPGA 512 I/O 680FBGA |
XCV800-6HQ240C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 166 I/O 240HQFP |
XCV800-6FG676C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 444 I/O 676FBGA |
XCV800-4BG560C | Xilinx Inc. | -- | 1000 | IC FPGA 404 I/O 560MBGA |
XCV812E-7FG900C | Xilinx Inc. | 0.0 $ | 1000 | IC FPGA 556 I/O 900FBGA |
XCV800-5BG560C | Xilinx Inc. | -- | 1000 | IC FPGA 404 I/O 560MBGA |
XCV812E-8FG900C | Xilinx Inc. | -- | 1000 | IC FPGA 556 I/O 900FBGA |
XCV800-4BG432I | Xilinx Inc. | -- | 1000 | IC FPGA 316 I/O 432MBGA |
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