XC7S25-1FTGB196C FPGA Chip – Xilinx Spartan-7, 196-Pin FTGB Package

  • The XC7S25-1FTGB196C is designed for efficient digital signal processing tasks.
  • It features a high-speed architecture, enabling faster computations in complex applications.
  • This component’s compact footprint allows for better space utilization on the circuit board.
  • Ideal for data acquisition systems, it enhances performance in real-time processing environments.
  • Manufactured under strict quality standards, ensuring reliable operation over time.
SKU: XC7S25-1FTGB196C FPGA Chip - Xilinx Spartan-7, 196-Pin FTGB Package Category: Brand:
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产品上方询盘

XC7S25-1FTGB196C Overview

The XC7S25-1FTGB196C is a versatile and efficient SoC (System on Chip) designed for a range of industrial applications. With its compact size and robust architecture, it delivers high performance and low power consumption. This device is ideal for engineers and sourcing specialists seeking reliable solutions for complex designs. For more detailed information, visit IC Manufacturer.

XC7S25-1FTGB196C Key Features

  • High-performance processing with optimized architecture enables faster computations, enhancing overall system efficiency.
  • Integrated programmable logic allows for flexible design changes, which is essential for adapting to specific application requirements.
  • Low power consumption contributes to energy efficiency, making it a reliable choice for battery-operated devices.
  • Support for multiple I/O configurations enables seamless integration into various systems, facilitating design flexibility.

XC7S25-1FTGB196C Technical Specifications

Parameter Value
Device Type FPGA
Logic Cells 25,000
Maximum I/O Pins 196
Operating Voltage 1.2V
Package Type FTG196
Temperature Range -40??C to 100??C
Speed Grade 1
Logic Resources 1,200 LUTs

XC7S25-1FTGB196C Advantages vs Typical Alternatives

The XC7S25-1FTGB196C offers distinct advantages over typical alternatives, including enhanced sensitivity and improved power efficiency. Its integrated programmable logic provides greater flexibility and reliability, making it suitable for diverse applications.

Typical Applications

  • Industrial automation systems benefit from the high processing capabilities and integration features, allowing for complex control tasks in manufacturing environments.
  • Telecommunications devices utilize its flexible I/O configurations for seamless data transmission and processing.
  • Medical devices can leverage its low power consumption and reliability for critical health monitoring applications.
  • Automotive systems, such as advanced driver-assistance systems (ADAS), can use its high-performance processing for real-time data analysis.

XC7S25-1FTGB196C Brand Info

The XC7S25-1FTGB196C is part of a renowned line of products known for their innovative designs and advanced capabilities in the semiconductor industry. This specific model is tailored to meet the demands of engineers seeking high-performance solutions in their projects.

FAQ

What is the primary application for the XC7S25-1FTGB196C?

The XC7S25-1FTGB196C is primarily used in industrial automation and control systems, offering the processing power needed for complex tasks while maintaining low power consumption.

How does the XC7S25-1FTGB196C compare to similar devices?

This device stands out due to its combination of high logic cell count and low operating voltage, providing a balance of performance and efficiency not commonly found in similar products.

Can the XC7S25-1FTGB196C be used in automotive applications?

Yes, the XC7S25-1FTGB196C is suitable for automotive applications, especially in systems requiring real-time processing and reliability, such as ADAS features.

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产品中间询盘

What are the temperature specifications for this device?

The XC7S25-1FTGB196C operates within a temperature range of -40??C to 100??C, making it suitable for harsh environments commonly encountered in industrial applications.

Is the programming logic on the XC7S25-1FTGB196C flexible?

Absolutely, the integrated programmable logic allows for significant design flexibility, enabling engineers to adapt the device to a wide range of application requirements quickly.

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