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Home > FPGA Technology > FPGA > XC7A100T-1CSG324C Specifications and Datasheet - Xilinx - FPGA Technology

XC7A100T-1CSG324C Specifications and Datasheet - Xilinx

Date: May 11, 2024

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XC7A100T-1CSG324C Overview

The XC7A100T-1CSG324C FPGA, a formidable member of Xilinx's Artix™ 7 family, is meticulously engineered to excel in a myriad of applications, thanks to its impressive array of features and capabilities. With its high integration boasting 7925 LABs/CLBs and 101440 logic elements/cells, this FPGA is ideally suited for demanding tasks requiring intricate designs and robust functionality. Its extensive memory options, including distributed RAM, embedded block RAM (EBR), and embedded memory totaling 4.75 Mbit, ensure seamless data processing and storage, making it indispensable in applications such as telecommunications infrastructure, where rapid data packet processing and management are paramount.


Moreover, the XC7A100T-1CSG324C's versatile I/O capability, consisting of 210 pins, facilitates seamless communication with external devices and peripherals, making it an ideal choice for industrial automation systems. Here, it can serve as the cornerstone for implementing control algorithms, managing sensor data, and interfacing with machinery, enabling real-time control and monitoring in manufacturing plants and robotics. Additionally, its robust operating conditions, spanning a wide temperature range from 0°C to 85°C (TJ), ensure reliability in diverse environmental settings, making it indispensable in aerospace and defense applications, such as radar systems and satellite communications.

Overall, the XC7A100T-1CSG324C FPGA represents the pinnacle of engineering excellence, offering unmatched performance, versatility, and reliability across a spectrum of applications. Whether it's powering telecommunications infrastructure, driving industrial automation systems, or bolstering aerospace and defense solutions, this FPGA stands as a testament to Xilinx's unwavering commitment to innovation and technological advancement.

XC7A100T-1CSG324C Manufacturer

The XC7A100T-1CSG324C FPGA is manufactured by Xilinx Inc., a prominent leader in the semiconductor industry renowned for its pioneering FPGA and SoC solutions. With decades of experience and a commitment to innovation, Xilinx has established itself as a trusted provider of cutting-edge technologies. The Artix™ 7 family, to which the XC7A100T-1CSG324C belongs, represents a significant milestone in Xilinx's portfolio, offering a compelling blend of performance, flexibility, and cost-effectiveness. As a key player in the FPGA market, Xilinx continues to push the boundaries of what's possible, empowering engineers and designers to create groundbreaking solutions across diverse application domains.

Within the Artix™ 7 family, the XC7A100T-1CSG324C stands out as a prime example of Xilinx's commitment to delivering high-quality, cost-optimized FPGAs. Engineered to provide an optimal balance between performance and affordability, this FPGA is well-suited for a wide range of applications, from telecommunications to automotive and beyond. Featuring advanced features such as support for the MicroBlaze™ soft processor and integrated AMS functionality, the XC7A100T-1CSG324C offers designers unparalleled flexibility and versatility. Whether it's powering software-defined radios, machine vision cameras, or low-end wireless backhaul systems, the XC7A100T-1CSG324C embodies Xilinx's dedication to providing customers with innovative solutions that meet their evolving needs.

Footprints and Models





3d model

3d model


XC7A100T-1CSG324C Specifications





Package / Case


Operating Temperature

0°C ~ 85°C (TJ)

Voltage - Supply

0.95V ~ 1.05V

Supply Voltage - Min

950 mV

Supply Voltage - Max

1.05 V

Mounting Type

Surface Mount

Number of LABs/CLBs


Number of Logic Elements/Cells


Total RAM Bits


Distributed RAM

1188 kbit

Embedded Block RAM - EBR

4860 kbit

Embedded Memory

4.75 Mbit

Number of I/O


Adaptive Logic Modules - ALMs

15850 ALM

Moisture Sensitive


Unit Weight

3.337199 oz

Features of XC7A100T-1CSG324C

  • High Integration: The XC7A100T-1CSG324C features a high level of integration with 7925 LABs/CLBs and 101440 logic elements/cells, allowing for complex designs and functionality.
  • Extensive Memory Options: With a total of 4976640 RAM bits, including distributed RAM and embedded block RAM (EBR) totaling 6048 kbit, and embedded memory of 4.75 Mbit, this device offers extensive memory options suitable for a wide range of applications.
  • Versatile I/O Capability: With 210 I/O pins, the XC7A100T-1CSG324C provides versatile input/output capability, facilitating communication with external devices and peripherals.
  • Adaptive Logic Modules (ALMs): Featuring 15850 ALMs, this device offers flexible and adaptive logic resources, enabling efficient implementation of various logic functions and algorithms.
  • Robust Operating Conditions: The XC7A100T-1CSG324C is designed to operate reliably across a wide temperature range from 0°C to 85°C (TJ), making it suitable for deployment in diverse environmental conditions.
  • Compact Surface Mount Package: Housed in a compact 324-LFBGA, CSPBGA package, this device is well-suited for surface mount applications, enabling space-efficient and streamlined PCB designs.

XC7A100T-1CSG324C Application & Uses

Communications and Networking: The XC7A100T-1CSG324C can be utilized in communication infrastructure equipment such as routers, switches, and base stations to process data packets, manage network traffic, and implement communication protocols efficiently.

Industrial Automation: In industrial automation systems, this FPGA can serve as a core component for implementing control algorithms, managing sensor data, and interfacing with actuators and machinery. It enables real-time control and monitoring in manufacturing plants, process automation, and robotics.

Embedded Systems: The XC7A100T-1CSG324C is suitable for embedded system applications where customization and flexibility are required. It can be used in automotive electronics, medical devices, consumer electronics, and IoT (Internet of Things) devices for tasks such as sensor data processing, motor control, and system interfacing.

Video and Image Processing: With its high-speed processing capabilities and extensive memory resources, this FPGA is well-suited for video and image processing applications. It can be used in video surveillance systems, medical imaging devices, broadcast equipment, and digital signage for tasks such as image enhancement, object detection, and video encoding/decoding.

Aerospace and Defense: In aerospace and defense systems, the XC7A100T-1CSG324C can be employed in radar systems, avionics, electronic warfare, and satellite communications for tasks such as signal processing, encryption/decryption, and protocol handling. Its reliability and performance make it suitable for mission-critical applications in harsh environments.

Scientific Research: Researchers and scientists can utilize this FPGA for accelerating computational tasks in scientific simulations, data analysis, and signal processing. It offers parallel processing capabilities and can be reconfigured for different experiments and research projects in fields such as physics, biology, and astronomy.

Advantages of XC7A100T-1CSG324C

The XC7A100T-1CSG324C FPGA, belonging to the Artix™ 7 family, offers several distinct advantages tailored to meet the demands of cost-optimized and power-sensitive applications:

High Performance-per-Watt Fabric: The XC7A100T-1CSG324C features a high-performance fabric that delivers exceptional computational power while minimizing power consumption. This ensures efficient utilization of energy, making it ideal for applications where power efficiency is critical.

Transceiver Line Rates: With support for high-speed transceiver line rates, the XC7A100T-1CSG324C enables reliable and high-bandwidth data communication, essential for applications such as software-defined radio and wireless backhaul.

DSP Processing: Integrated DSP processing capabilities empower the XC7A100T-1CSG324C to efficiently handle complex signal processing tasks, offering enhanced performance for applications like machine vision cameras, where real-time processing of sensor data is essential.

Analog Mixed-Signal (AMS) Integration: The XC7A100T-1CSG324C integrates analog mixed-signal functionality, allowing seamless interfacing with analog sensors and peripherals. This integration streamlines system design and reduces component count, contributing to cost savings and simplified design.

MicroBlaze™ Soft Processor Support: Featuring support for the MicroBlaze™ soft processor, the XC7A100T-1CSG324C offers flexibility in implementing custom embedded processing solutions. This enables developers to efficiently incorporate compute-intensive algorithms and custom control logic into their designs.

DDR3 Support: With support for DDR3 memory running at speeds of up to 1,066Mb/s, the XC7A100T-1CSG324C facilitates high-speed data storage and retrieval, enhancing overall system performance and responsiveness.

Best Value for Cost and Power-Sensitive Applications: The XC7A100T-1CSG324C is specifically optimized to deliver the best value proposition for applications where cost and power consumption are primary considerations. Its combination of performance, flexibility, and affordability makes it an ideal choice for a wide range of cost-sensitive applications, including software-defined radio, machine vision cameras, and low-end wireless backhaul systems.

XC7A100T-1CSG324C Datasheet PDF 

Download XC7A100T-1CSG324C datasheet PDF>>


In conclusion, the XC7A100T-1CSG324C FPGA stands as a testament to Xilinx's commitment to innovation and excellence in the semiconductor industry. With its impressive integration, extensive memory options, versatile I/O capability, and robust operating conditions, this FPGA offers unmatched performance and reliability across a wide range of applications. Whether in telecommunications infrastructure, industrial automation, aerospace, or defense, the XC7A100T-1CSG324C continues to empower engineers and designers to push the boundaries of what's possible, driving forward progress and innovation in technology.


Can the XC7A100T-1CSG324C be used in safety-critical applications?

Yes, the XC7A100T-1CSG324C can be used in safety-critical applications with proper design considerations and adherence to industry standards such as ISO 26262 for automotive, DO-254 for avionics, and IEC 61508 for industrial automation. Ensuring functional safety requires rigorous verification, fault tolerance mechanisms, and appropriate safety architectures.

What are some design considerations when integrating the XC7A100T-1CSG324C into a system?

Design considerations include signal integrity, timing constraints, power delivery, thermal management, and security. Adequate planning and analysis are essential to meet performance requirements, minimize risks, and ensure reliability.

Is the XC7A100T-1CSG324C suitable for high-speed data processing applications?

Yes, the XC7A100T-1CSG324C is suitable for high-speed data processing applications due to its high logic density, fast I/O interfaces, and advanced DSP capabilities. It can handle complex algorithms and signal processing tasks efficiently.

What are some alternatives to the XC7A100T-1CSG324C?

Alternatives include FPGAs from other manufacturers such as Intel (formerly Altera), Microchip (formerly Actel), Lattice Semiconductor, and QuickLogic. Additionally, application-specific integrated circuits (ASICs) or system-on-chip (SoC) solutions may be considered depending on the specific requirements of the design.

Can the XC7A100T-1CSG324C be used in low-power applications?

While the XC7A100T-1CSG324C is not specifically optimized for low-power applications, it offers power-saving features such as dynamic power management, clock gating, and power optimization tools in the Vivado Design Suite. With proper design techniques and optimization, it can be used in moderate to low-power applications.

What support resources are available for developers working with the XC7A100T-1CSG324C?

Xilinx provides extensive documentation, application notes, reference designs, and online forums to support developers. Additionally, Xilinx's technical support team offers assistance for specific inquiries and troubleshooting. Third-party training courses, webinars, and community forums are also valuable resources for developers.

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