A3P600-FGG484 Microchip A3P600-FGG484 Field Programmable Gate Arrays (FPGAs) 235 I/Os 6500 Logic Elements/Cells 13.5kB 231MHz
Microchip A3P600-FGG484 FPGA ProASIC3 Family 600K Gates 231MHz 130nm (CMOS) Technology 1.5V 484-Pin FBGA
Microchip A3P600-FGG484 Field Programmable Gate Arrays (FPGAs) Overview
FPGA ProASIC3 Family 600K Gates 231MHz 130nm (CMOS) Technology 1.5V 484-Pin FBGA
Key Features of Microchip A3P600-FGG484 Field Programmable Gate Arrays (FPGAs)
- Built to number of Logic Elements/Cells: 6500, making integration easier across a wide range of systems.
- Built to rAM Size: 13.5kB, making integration easier across a wide range of systems.
- Designed to number of I/Os: 235, helping ensure consistent and reliable operation.
- Designed to max Frequency: 231MHz, helping ensure consistent and reliable operation.
Microchip A3P600-FGG484 Field Programmable Gate Arrays (FPGAs) Applications
Wireless / SDR / RF
- Often used in rF test signal generation (DDS + modulation shaping) — DDS, LUT, DAC interface, low-jitter, where predictable behavior and reliability are important.
- Well-suited for rF front-end control sequencer (PA/LNA/switch bias timing) — SPI, I2C, GPIO, microsecond timing, helping designers meet typical integration requirements.
- Well-suited for real-time RSSI/CSI aggregation for channel sounding — IQ stats, PTP/1588, Ethernet, timestamping, helping designers meet typical integration requirements.
- Well-suited for fMCW radar chirp timing generator and DAC feeding — DAC interface, PWM timing, trigger sync, JESD, helping designers meet typical integration requirements.
- Often used in satellite modem interleaver/deinterleaver engine — FEC, DVB-S2/S2X, streaming, DDR, where predictable behavior and reliability are important.
Finance / Timing / Glue Logic & Misc
- Well-suited for precision timestamping appliance for trading networks — PTP/1588, SyncE, timestamp, helping designers meet typical integration requirements.
- Often used in time translator between PTP/SyncE/IRIG-B domains — PTP, SyncE, IRIG-B, where predictable behavior and reliability are important.
- Well-suited for broadcast transport packet repair assist (SRT/RIST) — SRT/RIST, FEC, jitter buffer, helping designers meet typical integration requirements.
- Often used in edge gateway multi-protocol serial-to-Ethernet concentrator — UART/RS-485, Ethernet, buffering, where predictable behavior and reliability are important.
- Commonly applied in factory vision defect classification prefilter engine — vision DSP, ROI, low latency, supporting stable and efficient system performance.
Medical / Healthcare Devices
- Often used in endoscope low-latency video pre-processing engine — MIPI/HDMI, low latency, where predictable behavior and reliability are important.
- Often used in wearable PPG sensor aggregation + artifact filter — PPG, DSP, low power, where predictable behavior and reliability are important.
- Often used in mRI digital downconversion and filtering engine — DDC, DSP, multi-channel, where predictable behavior and reliability are important.
- Well-suited for digital microscope HDR merge and enhancement pipeline — HDR, ISP, DDR, helping designers meet typical integration requirements.
- Well-suited for ventilator sensor capture and valve timing controller — ADC, PWM, safety interlocks, helping designers meet typical integration requirements.
Data Center Offload / SmartNIC / DPU
- Commonly applied in nVMe-oF target front-end protocol offload — NVMe-oF, TCP/RDMA, PCIe, DDR4/5, supporting stable and efficient system performance.
- Commonly applied in erasure coding engine (Reed-Solomon) — GF arithmetic, DDR bandwidth, DMA, supporting stable and efficient system performance.
- Commonly applied in pCIe endpoint + DMA engine for accelerator cards — PCIe Gen4/Gen5, DMA, MSI-X, SR-IOV, supporting stable and efficient system performance.
- Often used in dedup prefilter (hashing + bloom filter) — hash, bloom, DDR, NVMe, where predictable behavior and reliability are important.
- Often used in iPsec ESP/AH encryption/decryption datapath assist — IPsec, AES-GCM, ESP, 25G/100G, where predictable behavior and reliability are important.
Space / Rad-Tolerant / Satellite Payload
- Well-suited for downlink framing prototype (DVB-S2-like) — DVB-S2, FEC, interleaver, helping designers meet typical integration requirements.
- Commonly applied in attitude sensor multiplexing (SPI/I2C) concentrator — SPI/I2C mux, timestamp, supporting stable and efficient system performance.
- Commonly applied in gN&C sensor time alignment and voting logic — voting, redundancy, timestamp, supporting stable and efficient system performance.
- Commonly applied in on-board mass memory NAND controller prototype — NAND, ECC, wear leveling proto, supporting stable and efficient system performance.
- Commonly applied in space systems rely on reconfigurable logic for payload processing, telemetry framing, and fault-tolerant control. FPGA fabrics are used for robust interfaces (SpaceWire/CCSDS), redundancy (TMR), and deterministic sequencing under radiation-aware design constraints, supporting stable and efficient system performance.
Microchip A3P600-FGG484 Specifications
General
| Case/Package | FBGA |
| Contact Plating | Copper, Silver, Tin |
| Frequency | 231MHz |
| Height | 1.73mm |
| Lead Free | Lead Free |
| Length | 23mm |
| Lifecycle Status | Production |
| Max Frequency | 231MHz |
| Max Junction Temperature (Tj) | 85°C |
| Max Operating Temperature | 70°C |
| Max Supply Voltage | 1.575V |
| Memory Size | 128B |
| Memory Type | FLASH |
| Min Operating Temperature | 0°C |
| Min Supply Voltage | 1.4V |
| Mount | Surface Mount |
| Number of Gates | 600000 |
| Number of I/Os | 235 |
| Number of Logic Elements/Cells | 6500 |
| Number of Pins | 484 |
| Number of Registers | 13824 |
| Operating Supply Current | 5mA |
| Operating Supply Voltage | 1.5V |
| RAM Size | 13.5kB |
| Radiation Hardening | No |
| RoHS | Compliant |
| Schedule B | 8542390000 |
| Width | 23mm |
Specification: Microchip A3P600-FGG484 Field Programmable Gate Arrays (FPGAs) 235 I/Os 6500 Logic Elements/Cells 13.5kB 231MHz
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