AMD
Available — quote-only
Please contact us or request a quote for current pricing and availability.
XCR3512XL-10PQG208I – 512-Macrocell CPLD, 9ns Delay – AMD
This AMD CoolRunner XPLA3 CPLD delivers high-performance logic integration for complex digital designs. Featuring 512 macrocells and ultra-fast 9ns propagation delay, it enables efficient system control and interface management while operating at low voltage (2.7-3.6V). Ideal for legacy system upgrades and industrial applications requiring reliable programmable logic.
Key Features
Manufacturer: AMD
Series: CoolRunner XPLA3
Macrocells: 512
Max Delay: 9ns (tpd)
Voltage Range: 2.7V – 3.6V
I/O Count: 180 pins
Gates: 12,000
Operating Temp: -40°C to +85°C
Package: 208-PQFP (28x28mm)
Technical Details
This surface-mount CPLD features 32 logic blocks with In-System Programmable (ISP) architecture supporting ≥1,000 program/erase cycles. The 208-BFQFP package provides robust thermal performance across industrial temperature ranges. Note: This component is marked obsolete by AMD but remains available through PCX for legacy system support.
Applications
Industrial automation controllers
Communications interface bridging
Legacy equipment maintenance
Medical device control systems
Test & measurement instrumentation
About AMD
AMD is a global leader in high-performance computing technologies with decades of innovation in programmable logic solutions. Their CoolRunner series CPLDs set industry benchmarks for power efficiency and design flexibility, trusted by engineers for mission-critical applications.
AMD’s rigorous quality control and architectural expertise ensure reliable operation in demanding environments. As an authorized supplier, PCX guarantees genuine AMD components with full traceability and technical support.
About CPLDs
Complex Programmable Logic Devices (CPLDs) provide reconfigurable digital circuitry for custom logic implementation without ASIC development costs. They excel at glue logic, state machines, and I/O expansion with deterministic timing and instant-on capability.
CPLDs bridge design gaps between discrete logic and FPGAs, offering non-volatile programming retention and lower power consumption. Their architecture makes them ideal for control-oriented tasks in embedded systems, industrial hardware, and communication interfaces.
For:
Sending your request…
Thank you — someone will be in contact shortly.