XC7A75T-1FGG676C FPGA Chip – High-Performance, 676-Pin Package

  • The XC7A75T-1FGG676C provides high-performance FPGA functionality for complex processing tasks.
  • Featuring multiple I/O options, it allows flexible connections for various applications.
  • Its compact package type offers space-saving benefits on circuit boards.
  • This model is suitable for real-time data processing in industrial automation systems.
  • Designed for reliability, it ensures consistent performance in critical applications.
SKU: XC7A75T-1FGG676C FPGA Chip - High-Performance, 676-Pin Package Category: Brand:
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产品上方询盘

XC7A75T-1FGG676C Overview

The XC7A75T-1FGG676C is a versatile FPGA that combines flexibility with performance, making it ideal for a range of industrial applications. It features a robust architecture designed to handle complex tasks with efficiency and reliability. With its advanced integration capabilities, this device provides engineers with a powerful solution for various design needs. For further details, visit IC Manufacturer.

XC7A75T-1FGG676C Key Features

  • High-performance processing capabilities allow for real-time data processing, enhancing system responsiveness.
  • Low power consumption ensures energy efficiency, which is crucial for battery-operated and energy-sensitive applications.
  • Integrated I/O options streamline design processes, reducing the need for additional components and simplifying layout.
  • Scalable architecture supports a wide range of applications, offering flexibility for future upgrades and modifications.

XC7A75T-1FGG676C Technical Specifications

Parameter Value
Device Family Artix-7
Package Type FG676
Logic Cells 75,000
Max I/O Pins 180
Memory Type Block RAM
Operating Voltage 0.95V to 1.05V
Package Size 20mm x 20mm
Temperature Range -40??C to 100??C

XC7A75T-1FGG676C Advantages vs Typical Alternatives

The XC7A75T-1FGG676C offers significant advantages over typical alternatives in terms of power efficiency, processing speed, and integration capabilities. Its optimized architecture allows for superior performance in complex tasks while maintaining lower energy consumption, making it an ideal choice for demanding applications.

Typical Applications

  • Industrial automation systems benefit from the device’s real-time processing capabilities, enabling enhanced control and monitoring of operations in manufacturing environments.
  • Telecommunications equipment can leverage its high-speed data handling to improve signal processing and routing.
  • Medical imaging systems utilize the FPGA’s processing power for real-time analysis and imaging improvements.
  • Automotive applications take advantage of the reliability and efficiency of the device for advanced driver assistance systems (ADAS).

XC7A75T-1FGG676C Brand Info

The XC7A75T-1FGG676C is manufactured by a leading name in the semiconductor industry, known for its commitment to innovation and quality. This product exemplifies cutting-edge technology designed for flexibility and high performance across various applications.

FAQ

What types of applications is the XC7A75T-1FGG676C suitable for?

The device is suitable for a diverse range of applications, including industrial automation, telecommunications, medical imaging, and automotive systems, owing to its high performance and low power consumption.

What is the maximum operating temperature for the XC7A75T-1FGG676C?

The XC7A75T-1FGG676C operates effectively within a temperature range of -40??C to 100??C, making it suitable for demanding environments.

How many logic cells does the XC7A75T-1FGG676C feature?

This FPGA features 75,000 logic cells, providing ample capacity for complex logic functions and designs.

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产品中间询盘

What power supply voltage does the XC7A75T-1FGG676C require?

The device operates within a voltage range of 0.95V to 1.05V, ensuring compatibility with various power supply designs.

Is the XC7A75T-1FGG676C suitable for low-power applications?

Yes, its low power consumption makes it an excellent choice for battery-operated and energy-sensitive applications, ensuring efficiency without sacrificing performance.

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