M1AFS600-1FG484 - Fusion FPGA 600K Gates | Microchip
MPN: M1AFS600-1FG484 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $228.78 | $228.78 |
| 10 | $215 | $2,150.00 |
| 100 | $198.5 | $19,850.00 |
| 500 | $185 | $92,500.00 |
| 1,000 | $172 | $172,000.00 |
Drop-in alternatives for M1AFS600-1FG484 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
M1AFS600-2FG484
β Drop-Inπ Reference alternative (not in catalog)
M1AFS600-1FG484I
β Drop-Inπ Reference alternative (not in catalog)
M1AFS600-2FG484I
β Drop-Inπ Reference alternative (not in catalog)
AFS600-1FG484
β Drop-Inπ Reference alternative (not in catalog)
P1AFS600-2FG484
β Drop-Inπ Reference alternative (not in catalog)
M1AFS600-1FG484 Maximum Ratings & Electrical Characteristics
| Family | Fusion |
| System Gates | 600K |
| Number of I/O | 172 |
| Flash Memory Bits | 110592 |
| Core Voltage | 1.5V |
| Technology | 130nm |
| Package | 484-BGA (FBGA) |
| Mounting Type | Surface Mount |
| Maximum Clock Frequency | 1282.05MHz |
| RoHS Status | Non-Compliant |
| Lead Free Status | Contains Lead |
M1AFS600-1FG484 484-bga (fbga) Pin Configuration Guide
Complete pinout information for M1AFS600-1FG484 (484-bga (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 M1AFS600-1FG484.
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
M1AFS600-1FG484 is suitable for 6 applications: Motor Control, Power Management, Industrial Automation, Medical Devices, Aerospace and Defense, Communications.
Motor Control
The M1AFS600-1FG484 is ideal for motor control applications due to its integrated configurable analog blocks, including a 12-bit ADC and DAC, and its flash-based FPGA fabric. The device can implement high-speed PWM generation, current sensing, and position feedback processing in a single chip. The 600K system gates provide ample logic for complex control algorithms, while the 172 I/Os allow interfacing with multiple sensors and drivers. The 1.5V core and 130nm technology ensure low power consumption, critical for industrial motor drives. The flash-based configuration provides instant-on operation, eliminating boot time and ensuring deterministic startup. The integrated analog blocks reduce external component count, simplifying PCB design and improving reliability. The device's secure configuration protects intellectual property, which is important in competitive industrial markets. Overall, the M1AFS600-1FG484 enables a compact, efficient, and secure motor control solution.
Recommended
Power Management
The M1AFS600-1FG484 excels in power management applications, such as smart power supplies and battery management systems, due to its integrated analog front-end and flash-based FPGA. The configurable analog blocks can monitor voltage, current, and temperature, while the FPGA logic implements control loops, protection algorithms, and communication interfaces. The 600K gates provide ample resources for digital power control, and the 172 I/Os allow connection to multiple power stages and monitoring circuits. The 1.5V core and 130nm technology contribute to low power consumption, essential for energy-efficient designs. The flash-based configuration ensures secure, instant-on operation, which is critical for safety in power systems. The device's integrated flash memory can store calibration data and configuration parameters, reducing external memory requirements. This integration simplifies design, reduces BOM cost, and enhances system reliability.
Recommended
Industrial Automation
In industrial automation, the M1AFS600-1FG484 provides a flexible platform for implementing PLCs, motor drives, and robotic controllers. Its 600K system gates and 172 I/Os support a wide range of industrial protocols and sensor interfaces. The integrated analog blocks enable direct connection to analog sensors, reducing the need for external ADCs. The flash-based FPGA offers instant-on operation, which is crucial for safety-critical industrial equipment that must start immediately upon power-up. The device's secure configuration protects intellectual property and prevents unauthorized modifications. The 1.5V core and 130nm technology ensure low power dissipation, reducing heat in enclosed industrial cabinets. The 484-FBGA package provides good thermal performance and allows for compact PCB designs. Overall, the M1AFS600-1FG484 is a robust choice for industrial automation systems requiring mixed-signal processing and high reliability.
Recommended
Medical Devices
The M1AFS600-1FG484 is well-suited for medical devices such as patient monitors, infusion pumps, and diagnostic equipment. Its integrated analog blocks allow precise measurement of physiological signals, while the FPGA fabric implements signal processing and control algorithms. The 600K gates provide ample logic for complex algorithms, and the 172 I/Os support various sensors and displays. The flash-based configuration ensures secure, instant-on operation, which is critical for medical devices that must be ready immediately. The device's low power consumption is beneficial for battery-powered portable medical devices. The 1.5V core and 130nm technology contribute to reliable operation over a wide temperature range. The secure configuration protects patient data and device firmware. The 484-FBGA package allows for compact, high-density designs, which is important for space-constrained medical equipment.
Recommended
Aerospace and Defense
The M1AFS600-1FG484 is designed for aerospace and defense applications requiring high reliability, security, and radiation tolerance. Its flash-based configuration is inherently more secure than SRAM-based FPGAs, protecting against configuration bitstream tampering. The 128-bit flash-based lock and AES decryption ensure IP protection. The device's instant-on capability is critical for mission-critical systems. The 600K gates and 172 I/Os provide sufficient resources for avionics, satellite, and military communication systems. The integrated analog blocks enable sensor interfacing and signal conditioning. The 1.5V core and 130nm technology offer a balance of performance and power. The 484-FBGA package is suitable for rugged environments. While not explicitly rated for radiation, the flash-based technology offers better immunity to single-event upsets compared to SRAM FPGAs, making it a preferred choice for many defense applications.
Recommended
Communications
The M1AFS600-1FG484 is suitable for communications applications such as base stations, routers, and software-defined radio. Its 600K gates and 172 I/Os support implementing protocol stacks, signal processing, and interface logic. The integrated analog blocks can be used for RF power monitoring and control. The flash-based configuration provides secure, instant-on operation, which is important for network equipment that must boot quickly. The device's low power consumption is beneficial for remote and edge devices. The 1.5V core and 130nm technology enable high-speed operation up to 1282.05MHz, suitable for high-throughput data paths. The 484-FBGA package offers good signal integrity for high-speed interfaces. The secure configuration protects proprietary algorithms and prevents unauthorized copying. Overall, the M1AFS600-1FG484 is a versatile FPGA for communications infrastructure.
Recommended
Recommended Products Summary
Engineering reference data for M1AFS600-1FG484 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | M1AFS600-2FG484 | M1AFS600-1FG484I | M1AFS600-2FG484I | AFS600-1FG484 | P1AFS600-2FG484 |
|---|---|---|---|---|---|---|
| Package | 484-BGA (FBGA) | 484-BGA (FBGA) | 484-BGA (FBGA) | 484-BGA (FBGA) | 484-BGA (FBGA) | 484-BGA (FBGA) |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| System Gates | 600K | 600K | 600K | 600K | 600K | 600K |
| Number of I/O | 172 | 172 | 172 | 172 | 172 | 172 |
| Core Voltage | 1.5V | 1.5V | 1.5V | 1.5V | 1.5V | 1.5V |
| Speed Grade | -1 | -2 | -1 | -2 | -1 | -2 |
| Temperature Range | Commercial (0Β°C to +70Β°C) | Commercial (0Β°C to +70Β°C) | Industrial (-40Β°C to +100Β°C) | Industrial (-40Β°C to +100Β°C) | Commercial (0Β°C to +70Β°C) | Commercial (0Β°C to +70Β°C) |
| Embedded Processor | ARM Cortex-M1 | ARM Cortex-M1 | ARM Cortex-M1 | ARM Cortex-M1 | None | ARM Cortex-M3 |
Key Differentiators
- Integrated ARM Cortex-M1 processor (vs AFS600-1FG484)
- Flash-based configuration with security (vs SRAM-based FPGAs)
- Integrated analog blocks (vs A3P600-1FG144)
Design Notes
The M1AFS600-1FG484 requires a 1.5V core supply. Use a low-dropout regulator (LDO) or a switching regulator with low ripple to provide this rail. Ensure adequate decoupling with 100nF ceramic capacitors placed close to each VCC pin, and a bulk capacitor (e.g., 10uF) per supply region. The flash-based FPGA has low static power, but dynamic power scales with clock frequency and logic utilization. Estimate power using the manufacturer's power calculator to size the regulator appropriately.
For the 484-ball FBGA package, use a multi-layer PCB with dedicated power and ground planes. Route high-speed signals with controlled impedance (e.g., 50 ohm single-ended) and keep trace lengths matched for differential pairs. Place decoupling capacitors on the bottom side directly under the BGA pads to minimize inductance. Follow the manufacturer's layout guidelines for the FBGA package to ensure reliable solder joints and signal integrity.
The M1AFS600-1FG484 is RoHS non-compliant and contains lead, which may restrict its use in certain markets. Verify compliance requirements for your target region. Also, note that the device is not AEC-Q100 qualified, so it is not recommended for automotive applications without additional qualification. Ensure proper power sequencing: apply core voltage before I/O voltage to avoid latch-up. Use the device's security features to protect your configuration bitstream.
Compliance Information
According to DigChip, the M1AFS600-1FG484 is RoHS non-compliant and contains lead. It is not AEC-Q100 qualified. Other compliance details are not specified in the provided data.