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| Image | Part Number | Manufacturer | Description | Series | Operating Temperature | Packaging | Mounting Type | RoHS Status | Manufacturer Part Number | Type | Lead Free Status | Package / Case |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| EPM9480RC240-20 | Altera (Intel® Programmable Solutions Group) | IC CPLD 480MC 20NS 240RQFP | MAX® 9000 | 0°C ~ 70°C (TA) | Tray | Surface Mount | - | - | - | - | 240-BFQFP Exposed Pad | |
| CY37512VP256-83BGC | Cypress Semiconductor | IC CPLD 512MC 15NS 292BGA | Ultra37000™ | 0°C ~ 70°C (TA) | Tray | Surface Mount | - | - | - | - | 292-BGA | |
| ISPLSI 1048C-50LQI | Lattice Semiconductor | IC CPLD 192MC 24NS 128QFP | ispLSI® 1000 | -40°C ~ 85°C (TA) | Tray | Surface Mount | - | - | - | - | 128-BQFP | |
| GAL22V10D-15LPI | Lattice Semiconductor | IC CPLD 10MC 15NS 24DIP | GAL®22V10 | -40°C ~ 85°C (TA) | Tray | Through Hole | - | - | - | - | 24-DIP (0.300", 7.62mm) | |
| M4A3-64/32-12VNI48 | Lattice Semiconductor | IC CPLD 64MC 12NS 48TQFP | ispMACH® 4A | -40°C ~ 85°C (TA) | Tray | Surface Mount | - | - | - | - | 48-LQFP | |
| M4A5-32/32-5JNC | Lattice Semiconductor | IC CPLD 32MC 5NS 44PLCC | ispMACH® 4A | 0°C ~ 70°C (TA) | Tube | Surface Mount | - | - | - | - | 44-LCC (J-Lead) | |
| ATF1504AS-10AU44 | Micrel / Microchip Technology | IC CPLD 64MC 10NS 44TQFP | ATF15xx | -40°C ~ 85°C (TA) | Tray | Surface Mount | - | - | - | - | 44-TQFP | |
| EPM1270GT144I5N | Intel® FPGAs | IC CPLD 980MC 6.2NS 144TQFP | MAX® II | -40°C ~ 100°C (TJ) | Tray | Surface Mount | - | - | - | - | 144-LQFP | |
| LC4256B-75FT256BI | Lattice Semiconductor | IC CPLD 256MC 7.5NS 256FTBG | ispMACH® 4000B | -40°C ~ 105°C (TJ) | Tray | Surface Mount | - | - | - | - | 256-LBGA | |
| XC2C256-7TQG144I | Xilinx | IC CPLD 256MC 6.7NS 144TQFP | CoolRunner II | -40°C ~ 85°C (TA) | Tray | Surface Mount | - | - | - | - | 144-LQFP |
CPLDs are programmable logic devices that contain configurable logic blocks and interconnects similar to FPGAs but with a smaller capacity and simpler architecture. CPLDs are often used in applications requiring glue logic, interface bridging, and simple state machine implementations. They offer advantages such as fast design turnaround, low power consumption, and predictable timing characteristics, making them suitable for a wide range of embedded system designs.