XC7K410T-2FBG676I Overview
The XC7K410T-2FBG676I is a cutting-edge FPGA solution designed to meet the demanding requirements of modern applications. With its robust architecture and high-performance capabilities, it delivers exceptional processing power and flexibility for various industrial and commercial uses. This device is engineered to provide efficient resource utilization, making it an ideal choice for engineers and sourcing specialists seeking reliable performance in programmable logic applications. For more information, visit IC Manufacturer.
XC7K410T-2FBG676I Key Features
- High logic capacity: The XC7K410T-2FBG676I features a large number of logic cells, enabling complex design implementations that enhance overall system performance.
- Advanced I/O capabilities: Equipped with versatile I/O options, this device allows for seamless integration with various peripherals and communication standards, which is critical for modern applications.
- Power efficiency: This model is designed for low power consumption, ensuring that it operates efficiently without sacrificing performance, which is vital in energy-sensitive applications.
- Flexible configuration: The device supports multiple configuration modes for enhanced versatility, catering to a wide range of application requirements.
XC7K410T-2FBG676I Technical Specifications
| Parameter | Value |
|---|---|
| Logic Cells | 410,000 |
| Max I/O Pins | 676 |
| Maximum Clock Frequency | 450 MHz |
| Package Type | FBG |
| Operating Voltage | 0.95V to 1.05V |
| Temperature Range | -40??C to +100??C |
| Power Dissipation | 18W |
| RAM Size | 36 Mb |
XC7K410T-2FBG676I Advantages vs Typical Alternatives
This model offers substantial advantages over typical alternatives by combining high logic density with low power consumption, ensuring exceptional performance in demanding applications. Its versatile I/O configuration provides enhanced integration capabilities, making it a preferred choice for engineers looking to optimize system designs.
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Typical Applications
- Telecommunications: The XC7K410T-2FBG676I is ideal for high-speed data processing in telecommunications infrastructure, facilitating efficient signal processing and data routing.
- Industrial Automation: This device is commonly utilized in automated industrial systems for real-time data acquisition and control.
- Medical Devices: Its reliability and performance make it suitable for critical applications in medical imaging and diagnostic equipment.
- Aerospace and Defense: The rugged design and operational reliability support applications in harsh environments, ensuring dependable performance in aerospace and defense systems.
XC7K410T-2FBG676I Brand Info
The XC7K410T-2FBG676I is produced by a leading manufacturer known for its innovative solutions in the semiconductor industry. This brand has a strong reputation for delivering high-quality FPGAs that empower engineers and designers to create advanced applications across various sectors, including telecommunications, industrial automation, and more.
FAQ
What is the maximum clock frequency of the XC7K410T-2FBG676I?
The XC7K410T-2FBG676I has a maximum clock frequency of 450 MHz, allowing it to perform complex calculations and data processing tasks efficiently.
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What types of applications can benefit from this FPGA?
This FPGA is suitable for a wide range of applications, including telecommunications, industrial automation, medical devices, and aerospace systems, due to its versatility and performance capabilities.
How does the power consumption of XC7K410T-2FBG676I compare to similar devices?
This model is designed for low power consumption, which enhances energy efficiency and reduces operational costs compared to many similar devices in its class.
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What temperature range can the XC7K410T-2FBG676I operate within?
The device can operate within a wide temperature range of -40??C to +100??C, making it suitable for use in both standard and harsh environmental conditions.
Is the XC7K410T-2FBG676I suitable for real-time applications?
Yes, the XC7K410T-2FBG676I is engineered for high performance, making it well-suited for real-time applications where processing speed and reliability are critical.






