Manufacturer Part Number
XC95288XL-7PQG208C
Manufacturer
Xilinx
Introduction
The XC95288XL-7PQG208C is part of Xilinx's XC9500XL series of CPLDs designed for high-performance, high-density logic integration and optimized for low-voltage applications.
Product Features and Performance
High-density 288 macrocells with 6400 gates
In-system programmable with a minimum of 10,000 program/erase cycles
Low propagation delay of 7.5 ns maximum
Supports 3V to 3.6V internal voltage supply
16 logic elements/blocks for versatile logic partitioning
168 configurable I/O ports
Robust 208-pin PQFP package
Product Advantages
Optimal design for surface mount technology enhances board-level reliability
High I/O count suitable for complex digital integrations
Low operating voltage reduces power consumption
Extended programmable capabilities prolong product lifespan in dynamic environments
Key Technical Parameters
Voltage Supply - Internal: 3V ~ 3.6V
Number of Logic Elements/Blocks: 16
Number of Macrocells: 288
Number of Gates: 6400
Number of I/O: 168
Delay Time tpd(1) Max: 7.5 ns
Operating Temperature: 0°C ~ 70°C
Quality and Safety Features
Rigorous testing ensures operational stability from 0°C to 70°C
Designed for minimum 10,000 programming cycles ensuring long-term reliability
Compatibility
Compatible with various digital design and development platforms supporting PQFP-208 packaging
Application Areas
Ideal for use in telecommunications, data processing equipment, industrial controllers, and consumer electronics
Product Lifecycle
The XC95288XL-7PQG208C is marked as an Obsolete product, however replacements or upgrades might be available within Xilinx's CPLD product offerings
Several Key Reasons to Choose This Product
High integration capability with 288 macrocells and 6400 gates facilitates complex logic functions
Low power operation supported by 3V to 3.6V internal voltage
Durable and reliable in a wide range of operational environments
Supports sophisticated in-system programmability features for design flexibility
Designed for advanced electronic applications due to high I/O pin count and compact packaging