APA150-PQG208I Microchip APA150-PQG208I Field Programmable Gate Arrays (FPGAs) 158 I/Os 4.5kB 180MHz
Microchip APA150-PQG208I FPGA ProASICPLUS Family 150K Gates 180MHz 0.22um (CMOS) Technology 2.5V 208-Pin PQFP
Microchip APA150-PQG208I Field Programmable Gate Arrays (FPGAs) Overview
FPGA ProASICPLUS Family 150K Gates 180MHz 0.22um (CMOS) Technology 2.5V 208-Pin PQFP
Key Features of Microchip APA150-PQG208I Field Programmable Gate Arrays (FPGAs)
- Built to rAM Size: 4.5kB, making integration easier across a wide range of systems.
- Built to number of I/Os: 158, making integration easier across a wide range of systems.
- Built to max Frequency: 180MHz, making integration easier across a wide range of systems.
Microchip APA150-PQG208I Field Programmable Gate Arrays (FPGAs) Applications
Finance / Timing / Glue Logic & Misc
- Commonly applied in write-once safety event recorder logic — WORM, timestamp, integrity, supporting stable and efficient system performance.
- Often used in secure kiosk peripheral firewall (USB filtering subset) — USB HID, whitelist, policy, where predictable behavior and reliability are important.
- Often used in legacy bus bridge (PCI ↔ custom I/O) controller — PCI, GPIO, DMA, where predictable behavior and reliability are important.
- Well-suited for factory vision defect classification prefilter engine — vision DSP, ROI, low latency, helping designers meet typical integration requirements.
- Commonly applied in railway signaling redundancy voting and timing control — redundancy, timestamp, safety, supporting stable and efficient system performance.
Energy / Grid / Power Electronics
- Commonly applied in pMU phasor measurement computation assist engine — synchrophasor, FFT, PTP, supporting stable and efficient system performance.
- Often used in synchronized ADC capture + compression for grid sensors — ADC sync, DDR, compression, where predictable behavior and reliability are important.
- Well-suited for high-speed desat/overcurrent fault latch logic — fault latch, GPIO, low latency, helping designers meet typical integration requirements.
- Commonly applied in hVDC protection traveling wave detection prototype — high-speed capture, detection, timestamp, supporting stable and efficient system performance.
- Well-suited for eV fast charger PWM + safety interlock logic — PWM, safety, sequencing, helping designers meet typical integration requirements.
Automotive Powertrain / Charging / Body Control
- Often used in contactor precharge sequencing controller — HV sequencing, GPIO, safety, where predictable behavior and reliability are important.
- Often used in beyond ADAS, FPGAs provide deterministic timing, safety monitoring, and sequencing in power electronics and body control. They are strong fits for PWM-heavy functions, redundant monitoring, and high-voltage sequencing logic, where predictable behavior and reliability are important.
- Commonly applied in iSO 26262 safety I/O lockstep monitor logic — lockstep, monitors, watchdog, supporting stable and efficient system performance.
- Often used in bMS daisy-chain sensor aggregator (isoSPI-style) — isoSPI, SPI, CRC, where predictable behavior and reliability are important.
- Often used in eVSE PLC modem interface timing glue — HomePlug Green PHY, PLC, timing, where predictable behavior and reliability are important.
Display / HDMI / DP / LED Wall
- Often used in multi-display synchronization across tiled panels — genlock, vsync align, PTP, where predictable behavior and reliability are important.
- Commonly applied in hDMI/DisplayPort EDID/HDCP management controller — HDMI, DP, EDID, HDCP, supporting stable and efficient system performance.
- Well-suited for video wall health monitoring + pixel fault mapper — telemetry, scan feedback, I2C, helping designers meet typical integration requirements.
- Often used in on-screen display (OSD) overlay and blending core — OSD, alpha, LUT, where predictable behavior and reliability are important.
- Commonly applied in uI animation engine for simple menu overlays — OSD, sprite blit, timing, supporting stable and efficient system performance.
Motion Control / Drives / Robotics Control
- Often used in encoder interface hub (BiSS-C/SSI/EnDat) — LVDS, serial encoders, timing, where predictable behavior and reliability are important.
- Commonly applied in space-vector PWM timing generator for motor drives — SVPWM, deadtime, sync ADC, supporting stable and efficient system performance.
- Well-suited for multi-axis PID loop accelerator for robot joints — PID, fixed-point, high-rate, helping designers meet typical integration requirements.
- Often used in etherCAT master assist for servo coordination — EtherCAT, DC, low-latency, where predictable behavior and reliability are important.
- Well-suited for safety perimeter sensor fusion (IR/ultrasonic) — GPIO, time-of-flight, fusion, helping designers meet typical integration requirements.
Microchip APA150-PQG208I Specifications
General
| Case/Package | PQFP |
| Frequency | 180MHz |
| Height | 3.4mm |
| Lead Free | Lead Free |
| Length | 28mm |
| Lifecycle Status | Production |
| Max Frequency | 180MHz |
| Max Operating Temperature | 85°C |
| Max Supply Voltage | 2.7V |
| Memory Size | 4.5kB |
| Min Operating Temperature | -40°C |
| Min Supply Voltage | 2.3V |
| Mount | Surface Mount |
| Number of Gates | 150000 |
| Number of I/Os | 158 |
| Number of Pins | 208 |
| Number of Registers | 6144 |
| Operating Supply Current | 5mA |
| Operating Supply Voltage | 2.5V |
| RAM Size | 4.5kB |
| Radiation Hardening | No |
| RoHS | Compliant |
| Schedule B | 8542390000 |
| Width | 28mm |
Specification: Microchip APA150-PQG208I Field Programmable Gate Arrays (FPGAs) 158 I/Os 4.5kB 180MHz
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