

Lattice Semiconductor
LC4064ZC-37M56C
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LC4064ZC-37M56C Description
LC4064ZC-37M56C Description
The LC4064ZC-37M56C is a high-performance Complex Programmable Logic Device (CPLD) from the ispMACH® 4000Z series, manufactured by Lattice Semiconductor Corporation. This device is designed for a wide range of embedded applications, offering a robust combination of programmability, performance, and flexibility. The LC4064ZC-37M56C features 64 macrocells, 32 I/O pins, and a maximum propagation delay of 3.7 ns, making it suitable for high-speed logic operations. It operates within a temperature range of 0°C to 90°C (TJ) and requires an internal supply voltage between 1.7V and 1.9V. The device is surface-mountable and comes in a 56-ball CSP BGA package, ensuring compact and efficient integration into modern electronic systems.
LC4064ZC3-7M56C Features
- Programmability: The LC4064ZC-37M56C is in-system programmable, allowing for easy updates and reconfigurations without the need for additional hardware. This feature enhances the flexibility and adaptability of the device, making it ideal for applications that require frequent modifications.
- High-Speed Performance: With a maximum propagation delay (tpd) of 3.7 ns, this CPLD is capable of handling high-speed logic operations efficiently. This ensures minimal latency and high throughput, critical for real-time and high-performance applications.
- Robust I/O and Logic Capacity: The device boasts 64 macrocells and 32 I/O pins, providing ample resources for complex logic designs. This capacity allows for the implementation of intricate control and interfacing circuits within a single chip.
- Wide Operating Voltage Range: The LC4064ZC-37M56C operates within a voltage range of 1.7V to 1.9V, making it compatible with a variety of power supply configurations and ensuring reliable performance across different operating conditions.
- Surface-Mount Technology: The surface-mount package type facilitates easy integration into compact and space-constrained designs. The 56CSBGA package ensures a small footprint while maintaining high performance.
- Extended Temperature Range: The operating temperature range of 0°C to 90°C (TJ) makes this CPLD suitable for applications in various environmental conditions, including those with elevated temperatures.
- Moisture Sensitivity Level: With a moisture sensitivity level (MSL) of 3 (168 hours), the LC4064ZC-37M56C is well-suited for manufacturing processes that may expose the device to moisture, ensuring reliability and durability.
LC4064ZC-3M756C Applications
The LC4064ZC-37M56C is ideal for a variety of applications due to its high performance, flexibility, and robust features. Some specific use cases include:
- Embedded Systems: The device's high-speed performance and programmability make it suitable for embedded systems requiring real-time processing and control, such as industrial automation, automotive electronics, and telecommunications.
- Digital Signal Processing: The CPLD's logic capacity and I/O capabilities enable efficient implementation of digital signal processing algorithms, making it a valuable component in applications like audio processing and data communication.
- Control Interface and Circuits: The LC4064ZC-37M56C can be used to design complex control and interface circuits, such as those found in consumer electronics, medical devices, and instrumentation.
- FPGA Prototyping: The in-system programmability feature allows engineers to prototype and test FPGA designs using the CPLD, providing a cost-effective and flexible alternative for early development stages.
Conclusion of LC4064ZC-37M56C
The LC4064ZC-37M56C is a versatile and high-performance CPLD from the ispMACH® 4000Z series, offering a unique combination of features and benefits. Its in-system programmability, high-speed performance, and robust I/O capacity make it an ideal choice for a wide range of embedded applications. The device's extended temperature range and surface-mount package further enhance its suitability for modern electronic systems. Although the LC4064ZC-37M56C is now obsolete, its legacy continues to influence the design and development of advanced programmable logic devices.



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