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XC7VX690T
+StücklisteAMD XC7VX690T-1FFG1926C
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HerstellerAMD und Xilinx
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Herstellerteil #XC7VX690T
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Auf Lager10939
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| StandardPackQty | 24 |
Übersicht
Description
The device offers substantial memory resources, including block RAM and distributed RAM, and supports a wide range of I/O standards. It is typically used in applications such as high-speed networking, digital signal processing, aerospace, and defense systems. The XC7VX690T also supports partial reconfiguration, allowing for dynamic adjustment of resources without powering down the entire system. Comprehensive design tools from Xilinx, such as Vivado Design Suite, aid in developing and optimizing applications on this FPGA. Overall, the XC7VX690T is aimed at designs that demand high logic density and bandwidth with efficient power consumption.
Equivalent
Features
1. Logic Resources: It contains approximately 693,120 logic cells, providing a significant amount of flexibility for complex designs.
2. DSP Slices: Equipped with 3,600 DSP slices, facilitating efficient handling of signal processing tasks.
3. Memory: Offers 52.9 Mb of block RAM, useful for data storage and processing needs.
4. I/O Pins: Capable of supporting up to 1,200 user I/O pins, allowing for extensive interfacing capabilities.
5. Transceivers: Includes 80 high-speed serial transceivers, each capable of up to 13.1 Gb/s, supporting high-bandwidth communication.
6. Clock Management: Features advanced clock management capabilities, including multiple clock networks and phase-locked loops (PLLs).
7. Process Technology: Built on a 28nm process technology, offering a balance between performance and power efficiency.
8. Application Suitability: Ideal for applications such as data centers, wireless communications, and video processing due to its high logic density and processing power.
These features make the XC7VX690T suitable for demanding, high-throughput applications.
Pinout
Key functions of the XC7VX690T include:
1. Logic Cells: It has approximately 693,120 logic cells, ideal for complex computations.
2. DSP Slices: Equipped with 3,600 DSP slices for digital signal processing tasks.
3. Block RAM: Provides up to 52.9 Mb of block RAM for data storage.
4. I/O Pins: Supports a wide range of I/O standards with numerous configurable I/O pins.
5. Transceivers: Includes high-speed serial transceivers for high-bandwidth communication.
6. PCI Express®: Supports PCIe Gen3, suitable for high-speed data transfer applications.
This FPGA is used in applications requiring substantial processing power, such as digital signal processing, high-speed networking, and advanced data center functions. Its high pin count and versatile functions make it suitable for complex, high-performance systems.
Manufacturer
Xilinx is recognized for its innovation in the semiconductor industry, particularly with its focus on programmable logic solutions that allow for customizable and reconfigurable hardware. This flexibility makes their products well-suited for a range of industries and applications that require adaptable and efficient computing solutions. In 2020, Xilinx was acquired by Advanced Micro Devices, Inc. (AMD), a multinational semiconductor company that designs and produces computer processors and related technologies, further enhancing its capabilities and market reach in the semiconductor industry.
Application
1. Telecommunications: Supports high-speed data transfer and processing for networking infrastructure.
2. Data Centers: Facilitates acceleration of data processing tasks and helps in implementing custom compute engines.
3. Aerospace and Defense: Provides robust solutions for radar, electronic warfare, and signal intelligence.
4. Broadcast and Pro AV: Enables real-time video processing and high-resolution video transmission.
5. Scientific Research: Used in complex simulations and data analyses in high-performance computing environments.
These FPGAs are chosen for their scalability, high logic density, and efficient power consumption.