XC6SLX45T-3FG484I Overview
The XC6SLX45T-3FG484I is a versatile field-programmable gate array (FPGA) designed to meet the demands of various industrial applications. With its robust architecture, it provides engineers with the flexibility to implement custom digital circuits efficiently. This device features a balance of performance and power efficiency, making it ideal for real-time processing tasks. Its integration capabilities allow for seamless deployment in complex systems, enhancing design capabilities in a wide range of applications. For more information, visit IC Manufacturer.
XC6SLX45T-3FG484I Key Features
- Low Power Consumption: This FPGA operates with minimal power usage, helping to extend the life of battery-operated devices and reduce operational costs.
- High Logic Density: With a large number of logic cells, this device allows for the implementation of complex algorithms and data processing tasks.
- Flexible I/O Configuration: The multiple I/O options enable easy integration with various peripherals, enhancing system design capabilities.
- Built-in DSP Slices: These features provide advanced signal processing capabilities, critical for applications requiring high-speed data manipulation.
XC6SLX45T-3FG484I Technical Specifications
| Parameter | Value |
|---|---|
| Logic Cells | 45,000 |
| Maximum I/O Pins | 232 |
| Package Type | FG484 |
| Supply Voltage | 1.0V to 3.3V |
| Temperature Range | -40??C to +100??C |
| DSP Slices | 80 |
| Maximum Clock Frequency | 550 MHz |
| RAM Blocks | 1.8 Mbits |
XC6SLX45T-3FG484I Advantages vs Typical Alternatives
This device offers significant advantages over typical alternatives in terms of power efficiency and performance. Its low power consumption is comparable to more costly options, providing a cost-effective solution for high-performance applications. The high logic density allows for greater design flexibility and integration, which is essential for modern electronics.
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Typical Applications
- Industrial Automation: The XC6SLX45T-3FG484I is utilized in control systems and robotics, allowing for real-time processing and automation of tasks in industrial settings.
- Telecommunications: It is ideal for base stations and network devices, where high data throughput and low latency are essential.
- Medical Devices: This FPGA plays a critical role in imaging and diagnostic equipment, providing the necessary processing power for complex algorithms.
- Consumer Electronics: The device is used in high-definition displays and smart devices, enhancing the user experience with faster processing capabilities.
XC6SLX45T-3FG484I Brand Info
The XC6SLX45T-3FG484I is part of a leading family of FPGAs known for their performance and reliability. This brand is synonymous with innovation, offering solutions that empower engineers to develop cutting-edge applications. The product is manufactured with stringent quality standards, ensuring it meets the rigorous demands of various industries.
FAQ
What types of applications is the XC6SLX45T-3FG484I best suited for?
The XC6SLX45T-3FG484I is ideal for applications such as industrial automation, telecommunications, medical devices, and consumer electronics, where high performance and flexibility are required.
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How does the power consumption of XC6SLX45T-3FG484I compare to other FPGAs?
This FPGA is designed for low power consumption, making it more efficient than many alternatives. It provides a balance of performance and energy efficiency, especially for battery-operated devices.
What is the maximum operating temperature for this device?
The XC6SLX45T-3FG484I operates within a temperature range of -40??C to +100??C, making it suitable for harsh environments commonly found in industrial applications.
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Can the XC6SLX45T-3FG484I be used for real-time processing?
Yes, its high logic density and built-in DSP slices make the device well-suited for real-time processing tasks, particularly in applications such as signal processing and control systems.
What are the benefits of using the XC6SLX45T-3FG484I in design projects?
Using this FPGA in design projects provides enhanced flexibility, high performance, and low power consumption, which can significantly reduce development time and overall costs in various applications.





