EPM2210GF324C5 Description
The EPM2210GF324C5 is a high-performance CPLD (Complex Programmable Logic Device) from Intel, belonging to the MAX® II series. This device is designed for a wide range of embedded applications, offering a robust combination of programmability, performance, and flexibility. With 2210 logic elements/blocks and 1700 macrocells, it provides significant capacity for complex logic designs. The EPM2210GF324C5 operates within a voltage supply range of 1.71V to 1.89V and can function in an operating temperature range of 0°C to 85°C (TJ). It features a delay time tpd(1) max of 7 ns, ensuring high-speed performance. The device is available in a 324-pin FBGA package, making it suitable for surface mount applications. It has 272 I/Os, providing ample connectivity options for various applications. The EPM2210GF324C5 is programmable in-system, allowing for flexible and dynamic programming needs. It is classified under ECCN 3A001A7A and HTSUS 8542.39.0001, and it is REACH unaffected, ensuring compliance with environmental regulations. The device is packaged in trays and has a moisture sensitivity level (MSL) of 3 (168 hours), making it suitable for standard manufacturing processes.
EPM2210GF324C5 Features
- High Logic Capacity: With 2210 logic elements/blocks and 1700 macrocells, the EPM2210GF324C5 can handle complex logic designs, making it ideal for applications requiring significant processing power.
- Fast Performance: The device offers a maximum delay time tpd(1) of 7 ns, ensuring high-speed operation and efficient data processing.
- Flexible Programming: The in-system programmability of the EPM2210GF324C5 allows for dynamic reconfiguration and updates, providing flexibility and adaptability in various applications.
- Wide Operating Temperature Range: The operating temperature range of 0°C to 85°C (TJ) makes the device suitable for a variety of environments, from industrial to consumer applications.
- Robust I/O Connectivity: With 272 I/Os, the EPM2210GF324C5 offers extensive connectivity options, enabling it to interface with multiple peripherals and systems.
- Compliance and Safety: The device is REACH unaffected and has an MSL of 3 (168 hours), ensuring compliance with environmental regulations and suitability for standard manufacturing processes.
- Surface Mount Compatibility: The surface mount mounting type and 324-pin FBGA package make the EPM2210GF324C5 ideal for modern, compact electronic designs.
EPM2210GF324C5 Applications
The EPM2210GF324C5 is well-suited for a variety of applications due to its high logic capacity, fast performance, and flexible programming capabilities. Some specific use cases include:
- Industrial Automation: The device's robust logic capacity and fast performance make it ideal for controlling complex industrial processes and systems.
- Telecommunications: The EPM2210GF324C5 can be used in telecom infrastructure for signal processing, routing, and control applications.
- Consumer Electronics: The device's flexibility and high-speed performance make it suitable for consumer electronics, such as smart home devices and IoT applications.
- Medical Devices: The EPM2210GF324C5 can be used in medical equipment for real-time data processing and control, ensuring reliable and efficient operation.
- Automotive Systems: The device's wide operating temperature range and robust I/O connectivity make it suitable for automotive applications, such as engine control units and advanced driver-assistance systems (ADAS).
Conclusion of EPM2210GF324C5
The EPM2210GF324C5 is a versatile and high-performance CPLD from Intel, offering significant advantages over similar models. Its high logic capacity, fast performance, and flexible programming capabilities make it suitable for a wide range of applications, from industrial automation to consumer electronics. The device's compliance with environmental regulations and suitability for standard manufacturing processes further enhance its value. The EPM2210GF324C5 is an excellent choice for designers and engineers looking for a reliable and efficient solution for their complex logic needs.