XC7Z020-1CLG484I
Manufacturer Part Number: XC7Z020-1CLG484I | Manufacturer / Brand: AMD |
Part of Description: SoC FPGA XC7Z020-1CLG484I | Lead Free Status / RoHS Status: 16-bit Microcontrollers - MCU MCU 3/5V 56K Pb-free 64-QFP |
Ship From: HK/Shen Zhen | Shipment Way: DHL/Fedex/TNT/UPS |
Datasheets: |
Product parameters
Manufacturer | AMD |
Details | RoHS |
Mounting Style | SMD/SMT |
Minimum Operating Temperature | – 40 C |
Maximum Operating Temperature | +100 C |
Packaging | Reel |
Moisture Sensitive | Yes |
Product Type | CAN Interface IC |
Factory Pack Quantity | 84 |
Subcategory | SOC – Systems on a Chip |
Protocol Supported | CAN |
Tradename | Zynq |
Unit Weight | 1.242878 oz |
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XC7Z020-1CLG484I is a member of the Xilinx Zynq-7000 series of Field-Programmable Gate Arrays (FPGAs). It is an embedded System on Chip (SoC) that combines both a processing system (PS) and programmable logic (PL) into a single device.
Manufactured by Xilinx Inc., XC7Z020-1CLG484I features a Cortex-A9 processor running at 667 MHz. It comes in a 484-ball CSPBGA (Chip Scale Package Ball Grid Array) package, providing a compact and high-density solution for various applications.
This SoC is designed for high performance and reliability, making it suitable for a wide range of applications such as high-performance computing, communications, industrial automation, and medical electronics. With its programmable logic, XC7Z020-1CLG484I offers flexibility and customization, allowing users to tailor the device to meet their specific needs.
Additionally, the Zynq-7000 series, of which XC7Z020-1CLG484I is a part, offers different speed grades (-3, -2, -1, and -1LI), with -3 having the highest performance. The -1LI devices can operate at either of two programmable logic (PL) VCCINT/VCCBRAM voltages, 0.95V and 1.0V, and are screened for lower maximum static power.
In summary, XC7Z020-1CLG484I is a powerful and versatile SoC that combines the benefits of an FPGA with a high-performance processor, making it an ideal choice for a wide range of embedded systems applications.