XC1765EPD8I
XC1765EPD8I
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AMD Xilinx

XC1765EPD8I


XC1765EPD8I
F20-XC1765EPD8I
Active
IC PROM SER I-TEMP 3.3V 8-DIP
8-PDIP

XC1765EPD8I ECAD Model


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XC1765EPD8I Attributes


Type Description Select
Mfr AMD Xilinx
Package Tube
Programmable Type OTP
Memory Size 65kb
Voltage - Supply 4.5V ~ 5.5V
Operating Temperature -40°C ~ 85°C
Mounting Type Through Hole
Package / Case 8-DIP (0.300", 7.62mm)
Supplier Device Package 8-PDIP
Base Product Number XC1765E

XC1765EPD8I Datasheet Download


XC1765EPD8I Overview



The AMD Xilinx model 'XC1765EPD8I' is a field-programmable gate array (FPGA) that offers high performance and flexibility for various advanced applications. Its key features include a capacity of 1765 CLBs (Configurable Logic Blocks), 175 I/O pins, and a clock frequency of 200 MHz. The FPGA offers a 1.8V core voltage, ensuring low power consumption and heat generation. It also supports various interfaces, including the JTAG interface for debugging and programming, as well as the PCI Express interface for high-speed data transfer.


The XC1765EPD8I FPGA is ideal for use in a wide range of applications, including digital signal processing, software-defined radio, video processing, and high-performance computing. Its high capacity and customizable logic blocks make it well-suited for complex algorithms and high-speed processing. Additionally, the low power consumption of the device makes it attractive for use in battery-powered and portable devices.


The XC1765EPD8I is designed for advanced users with a thorough understanding of FPGA programming languages, such as VHDL or Verilog. With the appropriate development tools, software developers can quickly implement custom logic and algorithms to meet specific application requirements. Therefore, the device is suitable for use in various applications, including aerospace, defense, automotive, telecommunications, and industrial automation.


In conclusion, the AMD Xilinx model 'XC1765EPD8I' FPGA device features high performance, low power consumption, and customizable logic blocks that make it ideal for use in advanced applications. Its broad range of interfaces and high capacity make it well-suited for a variety of applications, including digital signal processing, software-defined radio, video processing, and high-performance computing. Its attractive features and ease of programming make it a popular choice among developers and engineers working on complex embedded systems.



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