M1AFS1500-2FGG676I - Fusion FPGA 1.5M Gates | Microchip
MPN: M1AFS1500-2FGG676I ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $89.5 | $89.50 |
| 10 | $82.3 | $823.00 |
| 100 | $74.1 | $7,410.00 |
| 500 | $66.8 | $33,400.00 |
| 1,000 | $59.6 | $59,600.00 |
Drop-in alternatives for M1AFS1500-2FGG676I — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool — Select alternative parts for side-by-side comparison:
M1AFS1500-2FGG676Y
✅ Drop-In📋 Reference alternative (not in catalog)
M1AFS1500-1FGG676I
✅ Drop-In✓ In Stock
Contact for price
View Datasheet →M1AFS1500-1FGG676
✅ Drop-In✓ In Stock
Contact for price
View Datasheet →M1AFS1500-FGG676I
✅ Drop-In✓ In Stock
$89.9 / Unit
View Datasheet →M1AFS1500-FGG676
✅ Drop-In✓ In Stock
$198 / Unit
View Datasheet →M1AFS1500-2FG676I
✅ Drop-In✓ In Stock
$405 / Unit
View Datasheet →M1AFS1500-2FGG676I Maximum Ratings & Electrical Characteristics
| Family | Fusion |
| System Gates | 1.5M |
| Logic Cells | 38400 |
| Maximum Clock Frequency | 350 MHz |
| Technology | 130nm |
| Supply Voltage | 1.5V (1.425V to 1.575V) |
| Total RAM Bits | 276480 |
| Number of I/Os | 252 |
| Package | 676-ball FBGA |
| Terminal Pitch | 1.00 mm |
| Operating Temperature Range | -40°C to +100°C |
| Mounting Type | Surface Mount |
| RoHS Status | Compliant |
| Flash-Based | Yes |
| Security | 128-bit flash lock, AES decryption |
M1AFS1500-2FGG676I 676-ball fbga Pin Configuration Guide
Complete pinout information for M1AFS1500-2FGG676I (676-ball fbga package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for M1AFS1500-2FGG676I.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
M1AFS1500-2FGG676I is suitable for 6 applications: Motor Control, Power Management, Industrial Automation, Medical Devices, Aerospace and Defense, IoT and Smart Energy.
Motor Control
The M1AFS1500-2FGG676I is ideal for motor control applications due to its integrated 12-bit ADC and analog comparators, which enable direct monitoring of motor currents and voltages. The programmable logic can implement PWM generation, commutation algorithms, and fault protection. Its flash-based instant-on capability ensures immediate operation on power-up, which is critical for safety in industrial drives. The 1.5M gates provide ample resources for complex control loops and communication interfaces. With 252 I/Os, it can interface with multiple sensors and drivers. The industrial temperature range (-40°C to +100°C) suits harsh factory environments. Compared to discrete solutions, this FPGA reduces board space and improves reliability by integrating analog and digital functions.
Recommended
Power Management
The M1AFS1500-2FGG676I excels in power management systems, such as smart power supplies and battery management, by integrating analog monitoring and digital control. Its 12-bit ADC can measure voltage and current with high precision, while the programmable logic implements control algorithms like MPPT or charging profiles. The flash memory allows storing calibration data and configuration. The device's low power consumption and wide temperature range make it suitable for industrial and automotive power systems. With 1.5M gates, it can handle complex state machines and communication protocols like PMBus. The instant-on feature ensures the power supply starts correctly without external boot time. This integration reduces component count and enhances system reliability.
Recommended
Industrial Automation
In industrial automation, the M1AFS1500-2FGG676I provides a flexible platform for PLCs, robotics, and process control. Its mixed-signal capabilities allow direct interfacing with analog sensors (temperature, pressure, flow) without external ADCs. The programmable logic can implement real-time control loops, communication interfaces (EtherCAT, PROFIBUS), and safety logic. The 1.5M gates and 252 I/Os support multiple fieldbus connections and I/O expansion. The flash-based configuration ensures reliable operation in noisy environments and allows secure field updates. The industrial temperature range and robust design make it suitable for 24/7 operation. Compared to microcontrollers, this FPGA offers higher parallelism and deterministic timing, essential for precise automation.
Recommended
Medical Devices
The M1AFS1500-2FGG676I is suitable for medical devices such as patient monitors, infusion pumps, and diagnostic equipment. Its integrated analog front-end (ADC, comparators) enables precise sensor signal conditioning, while the programmable logic handles data processing and communication. The flash-based architecture provides secure storage of patient data and firmware, meeting regulatory requirements. The device's low power consumption is critical for battery-powered portable devices. With 1.5M gates, it can implement complex algorithms like ECG filtering and analysis. The industrial temperature range ensures reliable operation in clinical environments. The instant-on feature allows immediate device readiness, which is vital in emergency situations. This integration reduces system size and improves reliability.
Recommended
Aerospace and Defense
The M1AFS1500-2FGG676I is designed for aerospace and defense applications requiring high reliability and security. Its flash-based configuration provides inherent tamper resistance and secure boot, protecting IP from reverse engineering. The device operates over the industrial temperature range and is radiation-tolerant for many applications. The integrated analog capabilities allow direct sensor interfacing for flight control, navigation, and telemetry. With 1.5M gates, it can implement complex signal processing and communication protocols. The instant-on feature is critical for safety-critical systems. The 676-ball FBGA package offers robust mechanical reliability. Compared to SRAM-based FPGAs, this device does not require external configuration memory, reducing system complexity and vulnerability.
Recommended
IoT and Smart Energy
The M1AFS1500-2FGG676I is well-suited for IoT gateways and smart energy systems, such as smart meters and solar inverters. Its mixed-signal capabilities enable accurate energy measurement and monitoring. The programmable logic can implement communication protocols (Zigbee, Wi-Fi, Modbus) and data aggregation. The flash memory allows storing configuration and logging data. With 1.5M gates, it can handle edge computing tasks like anomaly detection. The low power consumption is essential for battery-powered IoT devices. The industrial temperature range supports outdoor installations. The instant-on feature ensures quick response to wake-up events. This integration reduces BOM cost and power consumption compared to multi-chip solutions.
Recommended
Recommended Products Summary
Engineering reference data for M1AFS1500-2FGG676I — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | M1AFS1500-2FGG676Y | M1AFS1500-1FGG676I | M1AFS1500-1FGG676 | M1AFS1500-FGG676I | M1AFS1500-FGG676 | M1AFS1500-2FG676I |
|---|---|---|---|---|---|---|---|
| Package | 676-ball FBGA | 676-ball FBGA | 676-ball FBGA | 676-ball FBGA | 676-ball FBGA | 676-ball FBGA | 676-ball FBGA (different pitch) |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| Speed Grade | 2 | 2 | 1 | 1 | Standard | Standard | 2 |
| Temperature Grade | Industrial (-40°C to +100°C) | Extended (-40°C to +100°C) | Industrial (-40°C to +100°C) | Commercial (0°C to +85°C) | Industrial (-40°C to +100°C) | Commercial (0°C to +85°C) | Industrial (-40°C to +100°C) |
| Maximum Clock Frequency | 350 MHz | 350 MHz | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | 350 MHz |
| Logic Cells | 38400 | 38400 | 38400 | 38400 | 38400 | 38400 | 38400 |
| Total RAM Bits | 276480 | 276480 | 276480 | 276480 | 276480 | 276480 | 276480 |
| Number of I/Os | 252 | 252 | 252 | 252 | 252 | 252 | 252 |
Key Differentiators
- Integrated mixed-signal capabilities (vs M1AFS1500-2FGG676Y)
- Higher speed grade (vs M1AFS1500-1FGG676I)
- Industrial temperature range (vs M1AFS1500-1FGG676)
Design Notes
The M1AFS1500-2FGG676I requires a 1.5V core supply with tight regulation (1.425V to 1.575V). Use a low-dropout regulator or a switching regulator with low ripple. Decouple each power pin with a 0.1uF ceramic capacitor and add bulk capacitance (10uF) near the FPGA. Estimated: For a design with 1.5V at 500mA, power dissipation is 0.75W. Ensure adequate copper pour for thermal dissipation.
For the 676-ball FBGA package, use a multi-layer PCB with dedicated power and ground planes. Route high-speed signals with controlled impedance (50 ohms for single-ended, 100 ohms differential). Place decoupling capacitors as close to the FPGA as possible, ideally on the opposite side of the board. Follow the manufacturer's layout guidelines for BGA escape routing.
The 676-ball FBGA package has a thermal resistance that depends on airflow and PCB design. Estimated: For a power dissipation of 2W, with a theta_JA of 15°C/W, the junction temperature rise is 30°C. At an ambient of 70°C, the junction would be 100°C, which is at the limit. Provide adequate airflow or a heatsink for high-power designs.
Compliance Information
RoHS compliant per distributor listings. AEC-Q100 not applicable for FPGA. Other compliance data not specified in provided sources.