XC7A12T-2CSG325I FPGA Chip – High-Performance Programmable Logic Device

  • Delivers high-performance logic and DSP capabilities for diverse applications.
  • Features a high-speed interface for efficient data processing and communication.
  • Compact CSG325 package ensures minimal board space usage, aiding design efficiency.
  • Ideal for embedded systems, enhancing functionality in space-constrained environments.
  • Manufactured with rigorous standards for improved reliability and operational longevity.
SKU: XC7A12T-2CSG325I FPGA Chip - High-Performance Programmable Logic Device Category: Brand:
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XC7A12T-2CSG325I Overview

The XC7A12T-2CSG325I is a versatile and efficient FPGA designed for a wide range of applications in industrial automation, telecommunications, and data processing. With its advanced architecture and scalability, this device offers high performance and flexibility, making it an ideal choice for engineers and sourcing specialists looking to optimize their designs. For more details, visit IC Manufacturer.

XC7A12T-2CSG325I Key Features

  • High Logic Density: This FPGA provides a significant number of logic cells, enabling complex designs and reducing the need for additional components.
  • Low Power Consumption: The device is optimized for energy efficiency, which helps reduce operational costs while maintaining performance.
  • Integrated DSP Capabilities: With built-in digital signal processing features, it enhances computational efficiency for applications requiring high-speed data processing.
  • Flexible I/O Options: Multiple I/O configurations allow seamless integration into various systems, facilitating easier design and development processes.

XC7A12T-2CSG325I Technical Specifications

Parameter Value
Logic Cells 12,000
Maximum I/O Pins 325
RAM (kbits) 624
DSP Slices 36
Operating Voltage (V) 0.9V
Package Type CSG325
Temperature Range (??C) -40 to 100
Configuration Method JTAG

XC7A12T-2CSG325I Advantages vs Typical Alternatives

This device stands out compared to typical alternatives due to its superior logic density, low power consumption, and integrated DSP capabilities. These features offer better performance and efficiency, making it a reliable choice for demanding applications.

Typical Applications

  • Industrial Automation: The XC7A12T-2CSG325I is ideal for controlling processes, monitoring systems, and enhancing machine communication in industrial settings, leading to optimized production efficiency.
  • Telecommunications: It can be utilized in data routing and signal processing applications.
  • Medical Devices: The FPGA can support complex algorithms needed for diagnostic equipment and imaging systems.
  • Data Centers: Suitable for accelerating data processing tasks and optimizing resource management.

XC7A12T-2CSG325I Brand Info

The XC7A12T-2CSG325I is a product of a leading manufacturer recognized for its innovation in FPGA technology. This device exemplifies the brand’s commitment to providing high-performance and reliable solutions tailored for various industrial applications.

FAQ

What is the maximum operating temperature for the XC7A12T-2CSG325I?

The maximum operating temperature for this device is 100??C, making it suitable for use in demanding environments where temperature fluctuations may occur.

How many logic cells does the XC7A12T-2CSG325I have?

The XC7A12T-2CSG325I features 12,000 logic cells, allowing for complex designs and efficient processing capabilities in various applications.

What type of package does the XC7A12T-2CSG325I come in?

This FPGA is available in a CSG325 package, which provides a compact form factor while accommodating numerous I/O connections for flexible integration.

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Can the XC7A12T-2CSG325I be used for DSP applications?

Yes, it includes 36 DSP slices, making it highly suitable for digital signal processing tasks, enhancing its capability for high-speed data computations.

What configuration method is used for the XC7A12T-2CSG325I?

The device can be configured using JTAG, which facilitates easy programming and debugging during the development process.

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