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| Image | Part Number | Manufacturer | Description | Series | Operating Temperature | Manufacturer Part Number | Size / Dimension | Module/Board Type | Operating System | Core Processor | Connector Type | Reverse Recovery Time (trr) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| A42MX36-3PQG208 | Microsemi | IC FPGA 176 I/O 208QFP | MX | 0°C ~ 70°C (TA) | - | - | - | - | - | - | - | |
| LCMXO3L-9400E-6BG256I | Lattice Semiconductor | MACHXO3L; 9400 LUTS; 1.2V | MachXO3 | -40°C ~ 100°C (TJ) | - | - | - | - | - | - | - | |
| LCMXO2-640HC-6MG132I | Lattice Semiconductor | IC FPGA 79 I/O 132CSBGA | MachXO2 | -40°C ~ 100°C (TJ) | - | - | - | - | - | - | - | |
| EP2C50F672C6 | Altera (Intel® Programmable Solutions Group) | IC FPGA 450 I/O 672FBGA | Cyclone® II | 0°C ~ 85°C (TJ) | - | - | - | - | - | - | - | |
| 5SGXMA7N2F45C2 | Altera (Intel® Programmable Solutions Group) | IC FPGA 840 I/O 1932FBGA | Stratix® V GX | 0°C ~ 85°C (TJ) | - | - | - | - | - | - | - | |
| EP1S30B956C7 | Altera (Intel® Programmable Solutions Group) | IC FPGA 683 I/O 956BGA | Stratix® | 0°C ~ 85°C (TJ) | - | - | - | - | - | - | - | |
| 5SGXMBBR3H43I3N | Altera (Intel® Programmable Solutions Group) | IC FPGA 600 I/O 1760HBGA | Stratix® V GX | -40°C ~ 100°C (TJ) | - | - | - | - | - | - | - | |
| LIF-MD6000-6UWG36ITR | Lattice Semiconductor | LATTCE CROSSLNK - NTERFACE MP D- | CrossLink™ | -40°C ~ 100°C (TJ) | - | - | - | - | - | - | - | |
| M2GL150T-FCVG484I | Microsemi | IC FPGA 248 I/O 484VFBGA | IGLOO2 | -40°C ~ 100°C (TJ) | - | - | - | - | - | - | - | |
| EP1S20F780C5N | Altera (Intel® Programmable Solutions Group) | IC FPGA 586 I/O 780FBGA | Stratix® | 0°C ~ 85°C (TJ) | - | - | - | - | - | - | - |
FPGAs are semiconductor devices that contain configurable logic blocks and interconnects, allowing users to implement custom digital logic circuits. Unlike microcontrollers and microprocessors, which execute predefined instructions, FPGAs can be programmed to perform specific tasks by configuring the interconnections between logic blocks. This flexibility makes FPGAs suitable for a wide range of applications, including digital signal processing, telecommunications, data processing, and hardware acceleration.