XC7S75-1FGGA676I FPGA Chip – High-Performance, 676-Pin Package

  • The XC7S75-1FGGA676I delivers high-performance processing for complex tasks, enhancing user productivity.
  • Featuring advanced logic capabilities, it supports extensive design flexibility for varied applications.
  • Its compact footprint allows for efficient use of board space, facilitating smaller device designs.
  • This model is ideal for digital signal processing in telecommunications, improving communication efficiency.
  • Designed with rigorous quality standards, it ensures reliable operation in demanding environments.
SKU: XC7S75-1FGGA676I FPGA Chip - High-Performance, 676-Pin Package Category: Brand:
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XC7S75-1FGGA676I Overview

The XC7S75-1FGGA676I is a highly integrated FPGA designed for versatile applications requiring advanced processing capabilities. With a focus on efficiency and performance, this device is ideal for engineers seeking to optimize design cycles while maintaining reliability. Leveraging cutting-edge technology, it supports high-speed data handling and is suitable for various industrial and commercial uses. For more information, visit IC Manufacturer.

XC7S75-1FGGA676I Key Features

  • High-performance processing: With its architecture, the device delivers superior processing speeds, allowing users to execute complex algorithms efficiently.
  • Flexible I/O options: This flexibility enables seamless integration into various systems, enhancing design adaptability.
  • Low power consumption: The design prioritizes energy efficiency, making it suitable for battery-operated and remote applications.
  • Robust security features: Integrated security protocols help protect sensitive data, crucial for applications in finance or telecommunications.

XC7S75-1FGGA676I Technical Specifications

Parameter Value
Logic Cells 75,000
Max I/O Pins 676
Package Type FGGA676
Operating Voltage 1.0V – 3.3V
Maximum Operating Frequency 400 MHz
RAM (Block RAM) 4.2 Mb
DSP Slices 90
Temperature Range -40??C to 100??C

XC7S75-1FGGA676I Advantages vs Typical Alternatives

This FPGA offers enhanced performance and lower power consumption compared to typical alternatives. Its flexibility in I/O configurations and integration capabilities make it a superior choice for demanding applications, ensuring reliability and accuracy in various environments.

Typical Applications

  • Industrial Automation: The device is widely used in PLCs and robotic systems, providing real-time processing and control capabilities essential for efficient operations.
  • Telecommunications: Suitable for network equipment, offering high-speed data handling and secure communications.
  • Medical Devices: Supports advanced imaging and monitoring systems, ensuring reliable performance in critical applications.
  • Aerospace and Defense: Ideal for applications requiring rugged reliability and high performance under extreme conditions.

XC7S75-1FGGA676I Brand Info

This product is brought to you by a leading manufacturer known for innovation in the semiconductor industry. The XC7S75-1FGGA676I exemplifies the brand’s commitment to delivering high-quality, efficient, and reliable FPGA solutions for engineers and design professionals across various sectors.

FAQ

What is the maximum operating frequency of the XC7S75-1FGGA676I?

The maximum operating frequency is 400 MHz, allowing for high-speed processing suitable for complex applications requiring rapid data handling.

What are the I/O capabilities of the device?

The XC7S75-1FGGA676I supports up to 676 I/O pins, providing flexibility in system integration and allowing for extensive connectivity options.

Is the device suitable for temperature-sensitive applications?

Yes, it operates effectively within a temperature range of -40??C to 100??C, making it ideal for use in harsh environments.

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产品中间询盘

What type of memory does the XC7S75-1FGGA676I include?

It features 4.2 Mb of Block RAM, which enhances its capability for data storage and processing in various applications.

How does this FPGA support energy efficiency?

The XC7S75-1FGGA676I is designed for low power consumption, which is crucial for battery-operated devices and helps reduce overall energy costs in deployments.

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