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XC2C384-7FT256C Description
XC2C384-7FT256C Description
The XC2C384-7FT256C is a high-performance Complex Programmable Logic Device (CPLD) from AMD's CoolRunner™ II series, designed for low-power, high-speed applications. This 384-macrocell device operates at a 1.7V to 1.9V internal supply voltage, ensuring efficient power consumption while delivering a maximum propagation delay of 7.1 ns. Packaged in a 256-pin Fine-Pitch Ball Grid Array (FTBGA), it offers 212 I/O pins, making it suitable for dense, high-speed designs. With 24 logic blocks and 9,000 equivalent gates, it provides ample logic resources for complex digital systems.
XC2C384-7FT256C Features
- 384 Macrocells & 9,000 Gates: High logic density for complex designs.
- Low Power Consumption: Operates at 1.7V–1.9V, ideal for power-sensitive applications.
- Fast Performance: 7.1 ns max delay ensures high-speed signal processing.
- In-System Programmability (ISP): Allows field updates without hardware changes.
- 212 I/O Pins: Supports extensive interfacing with peripherals.
- Surface-Mount FTBGA Package: Compact footprint for space-constrained PCBs.
- Industrial Temperature Range (0°C to 70°C): Reliable operation in standard environments.
- Last Time Buy Status: Recommended for legacy system upgrades or final production runs.
XC2C384-7FT256C Applications
This CPLD excels in applications requiring real-time processing, signal routing, and glue logic integration, such as:
- Telecommunications: Protocol bridging and interface management.
- Embedded Systems: Custom logic for microcontrollers or FPGAs.
- Industrial Automation: Control logic for PLCs and motor drives.
- Consumer Electronics: Power management and display control.
- Legacy System Upgrades: Replacing older PLDs due to its high pin count and ISP capability.
Conclusion of XC2C384-7FT256C
The XC2C384-7FT256C stands out for its balance of speed, power efficiency, and logic density, making it a versatile choice for designers needing reliable programmable logic. Its high I/O count and FTBGA package cater to modern PCB layouts, while in-system programmability ensures long-term flexibility. Although marked as Last Time Buy, it remains a robust solution for legacy upgrades or final production batches in industrial, telecom, and embedded systems.



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