XC7Z045-2FFG676I
Manufacturer | Xilinx |
Description | IC SOC CORTEX-A9 800MHZ 676FCBGA |
Category | Integrated Circuit |
Package | BGA |
Status | New & original |
Ship From | HK/SHENZHEN |
Stocks | 10,000 |
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Description
The XC7Z045-2FFG676I is a model from the Xilinx Zynq-7000 family of System-on-Chip (SoC) devices. It combines a dual-core ARM Cortex-A9 processor with programmable logic, providing a powerful and flexible platform for a wide range of applications.
Description:
The XC7Z045-2FFG676I features a dual-core ARM Cortex-A9 processor running at up to 800 MHz, along with 1.3 million logic cells, 53.2 Mb of block RAM, and 220 DSP slices. It operates at a speed grade of 2, meaning it can handle signals with a maximum frequency of 2 GHz. The “2FFG676I” package indicates that it comes in a plastic flip-chip ball grid array (FFGBA) with 676 balls.
Application:
The XC7Z045-2FFG676I can be used in a wide range of applications, including:
1. Embedded Systems: It can be used as the main processing unit in embedded systems, providing both the processing power of the ARM Cortex-A9 cores and the flexibility of the programmable logic for custom logic functions.
2. Industrial Automation: The XC7Z045-2FFG676I is suitable for industrial automation applications, such as machine control, real-time monitoring, and data acquisition.
3. High-Performance Computing: It can be used in high-performance computing systems to accelerate computationally intensive tasks, such as scientific simulations, data analytics, and machine learning.
4. Communications and Networking: The XC7Z045-2FFG676I’s processing capabilities and programmable logic make it suitable for use in networking equipment, such as routers, switches, and network processing units, to handle high-speed data processing and packet routing tasks.
5. Medical Imaging: It can be utilized in medical imaging systems for tasks like image processing, analysis, and real-time visualization.
These are just a few examples of the applications where the XC7Z045-2FFG676I can be used. Its combination of ARM processing power and FPGA flexibility makes it a versatile solution for various domains requiring both software and hardware customization.