Microchip Technology

M7AFS600-1FGG484I - 600K Gate Fusion FPGA, 172 I/O | Microchip

MPN: M7AFS600-1FGG484I ✓ Active
In Stock Ships in 1-3 business days
1.5 V Vdss 484-BGA (FBGA) Package 1282.05 MHz Speed
From $228 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $285 $285.00
10 $270.75 $2,707.50
100 $256.5 $25,650.00
500 $242.25 $121,125.00
1,000 $228 $228,000.00
ℹ️ All prices are in USD

Drop-in alternatives for M7AFS600-1FGG484I — 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:

M7AFS600-2FGG484I

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📦 484-FBGA (23x23)
Fusion (M7 military/extended screening) · 600K · 172 · 1.5 V · 484-BGA (FBGA) · 1 mm · -2 · 1470.59 MHz

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M7AFS600-FGG484I

✅ Drop-In
Microchip Technology
📦 484-FBGA (23x23)
Fusion (Microsemi/Actel, now Microchip) · 600000 gates · ARM CoreMP7 (ARM7TDMI-compatible) · 172 I/O · Flash-based, on-chip · 1.5 V · 484-BGA (FGG484), 1.0 mm ball pitch · Surface Mount

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M7AFS600-FGG484

✅ Drop-In
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📦 484-FBGA (23x23)
Fusion (Mixed-Signal FPGA) · 600 K · ARM CoreMP7 (hard core) · 130 nm flash-based · 1.5 V · 172 · 1098.9 MHz (distributor-listed) · Flash (non-volatile, secure)

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M7AFS600-1FG484I

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📦 484-FBGA
600000 · 110592 · 172 · Fusion (Flash FPGA with optional ARM CoreMP7 support) · 130 nm, 7-layer metal, Flash-based CMOS · Nonvolatile Flash, retains program when powered off · Live at Power-Up (LAPU) · 1.5 V

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M7AFS600-FG484I

✅ Drop-In
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📦 484-FBGA
Fusion (Mixed-Signal FPGA) · 600K · 1098.9 MHz · 110592 bits · 172 · 1.5 V · 130 nm · ARM CoreMP7

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M7AFS600-2FG484I

✅ Drop-In
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📦 484-FBGA
Fusion (Flash-Based FPGA) · 600000 gates · 110592 · 172 · 1.5 V · 130 nm, 7-layer metal flash-based CMOS · Nonvolatile on-chip flash (retains program when powered off) · Yes

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M1AFS600-FG484I

✅ Drop-In
Microchip Technology
📦 484-FBGA
Fusion (M1AFS600) · 600000 gates · 13824 · 172 · 110592 bits · ARM Cortex-M1 · 1.5 V · 130 nm (CMOS flash-based)

✓ In Stock

Contact for price

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M7AFS600-1FGG484I Maximum Ratings & Electrical Characteristics

Series Fusion (M7AFS600)
System Gates 600000
Number of I/Os 172
Total RAM Bits 110592
Embedded Processor ARM CoreMP7
Supply Voltage 1.5 V
Supply Voltage Range 1.425 V to 1.575 V
Maximum Operating Frequency 1282.05 MHz
Process Technology 130 nm
Speed Grade 1 (M7, fastest family grade)
Operating Temperature -40C to +85C
Package / Case 484-BGA (FBGA)
Supplier Device Package 484-FPBGA (23x23)
Mounting Style SMD/SMT
Packaging Tray
Programmable Type Flash-based, In-System Programmable
RoHS Status ROHS3 Compliant
Manufacturer Lead Time 16 weeks

M7AFS600-1FGG484I 484-fpbga (23x23) Pin Configuration Guide

Complete pinout information for M7AFS600-1FGG484I (484-fpbga (23x23) 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.

484-fpbga (23x23) package pinout diagram for M7AFS600-1FGG484I

No detailed pinout data available for M7AFS600-1FGG484I.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for M7AFS600-1FGG484I Drain-to-Source Voltage (Vds) Drain Current (Id)

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

M7AFS600-1FGG484I is suitable for 6 applications: Industrial Automation and Motor Control, Avionics and Defense Programmable Logic, Mixed-Signal Test and Measurement Instrumentation, Industrial Networking and Protocol Gateways, Medical Diagnostic Equipment, Smart Energy Meters and Substation RTUs.

🏭

Industrial Automation and Motor Control

The M7AFS600-1FGG484I fits industrial automation because its 600K-gate flash fabric, 172 user I/Os, and ARM CoreMP7 hard core let one chip close position-loop control, drive PWM stages, and run communications simultaneously. Operating from -40C to +85C with a 1.5V core (1.425V to 1.575V window), it tolerates factory-floor temperature swings that SRAM FPGAs with external boot flash handle less gracefully. In a servo drive, the CoreMP7 supervises the protocol stack while fabric-based PWM generators run deterministically at rated family frequencies up to the 1282.05 MHz grade rating. The flash-based configuration removes configuration-corruption failure modes and speeds deterministic power-up, an advantage in production lines where every second of boot delay matters.

✈️

Avionics and Defense Programmable Logic

Defense and avionics subsystems favor the M7AFS600-1FGG484I because Microchip's (Microsemi's) flash-based Fusion architecture inherently resists single-event configuration upset better than SRAM fabrics and carries no external bitstream to intercept. The -40C to +85C industrial range covers many conduction-cooled embedded applications, and the 484-FBGA (23x23 mm) package supports dense 3U cPCI and VPX cards. With 600K gates and 110592 RAM bits, the device implements bus interfaces (MIL-STD-1553-adjacent glue logic, ARINC 429 front ends) while the ARM CoreMP7 runs housekeeping firmware. The active status plus documented 16-week lead time supports long-program procurement, and ROHS3 compliance eases European defense conversions where COTS components must meet modern environmental directives.

🔧

Mixed-Signal Test and Measurement Instrumentation

Bench instruments and modular (PXI) modules use the M7AFS600-1FGG484I where on-chip Fusion analog peripherals sample slow auxiliary channels (temperatures, supply monitors) while the digital fabric captures fast edges. The 600K-gate capacity and 110592 RAM bits buffer trigger histograms and time-stamped captures locally, and the ARM CoreMP7 offloads USB/LAN command parsing from the fabric. Its flash fabric configures in milliseconds after power-on, so instruments appear ready on the bus immediately - a measurable UX benefit over SRAM FPGAs needing boot-flash loads. With 172 I/Os across multiple banks, front-end level-shifting for TTL, LVCMOS, and differential probe inputs is handled in-package, and the 1.5V core keeps total board power within bench-standard budgets.

🌐

Industrial Networking and Protocol Gateways

Protocol gateways between fieldbus generations (CAN, PROFIBUS-adjacent serial, Ethernet tunneling) exploit the M7AFS600-1FGG484I's combination of fabric-based real-time interfaces and ARM CoreMP7 software stack. The 600K-gate fabric implements multiple independent UART, SPI, and timer channels at line rate, while the processor runs protocol translation and web management. Its -40C to +85C rating suits unconditioned cabinets in substations and water-plant installations, and the 1.425V to 1.575V core window tolerates noisy 24V-derived rails with a good regulator. Flash-based configuration means a power dip does not erase the bitstream - critical for unattended gateways - and the 484-FBGA gives enough I/O to fan out isolated transceiver banks on a single credit-card-sized PCB.

💊

Medical Diagnostic Equipment

Point-of-care analyzers and patient-monitoring front ends use the M7AFS600-1FGG484I because Fusion's integrated analog blocks digitize slow biomedical channels (temperature, pressure transducers) while the digital fabric streams fast ADC data into the 110592-bit RAM. The ARM CoreMP7 executes self-test and calibration routines required by IEC 60601-adjacent quality processes without a second microcontroller. Deterministic flash power-up lets the instrument present a ready state within milliseconds of emergency power application, and the 600K gates implement filtering, decimation, and alarm comparators entirely in hardware for latency-critical alarms. The -40C to +85C range comfortably covers autoclave-adjacent storage and cold-chain transport, and ROHS3 compliance satisfies environmental requirements for hospital procurement.

Smart Energy Meters and Substation RTUs

Substation remote terminal units and high-end smart meters benefit from the M7AFS600-1FGG484I's mixed-signal integration: Fusion analog peripherals monitor battery voltages and transformer temperatures while the fabric timestamps digital inputs with microsecond resolution for sequence-of-events records. The ARM CoreMP7 runs DNP3/IEC-adjacent communication stacks, and 600K gates provide the math for metrology front ends. Operating from -40C to +85C matches unheated outdoor cabinets, and the 1.5V core supply (1.425V to 1.575V) works with wide-input industrial power modules. Because flash configuration survives brownouts, the RTU resumes service without operator intervention after grid disturbances - exactly the availability profile utilities specify. The 484-FBGA's 172 I/Os terminate large DI/DO matrices on one chip.

What is the Microchip M7AFS600-1FGG484I?
The M7AFS600-1FGG484I is a Microchip Technology (formerly Microsemi) Fusion family mixed-signal FPGA with 600K system gates, 172 user I/Os, 110592 RAM bits, and an embedded ARM CoreMP7 processor. It is packaged in a 484-ball FBGA (23x23 mm), operates from a 1.5V supply over -40C to +85C, and is fabricated on a 130nm flash-based process. The I suffix denotes industrial temperature grading.
What are the key specifications of M7AFS600-1FGG484I that engineers should know?
The M7AFS600-1FGG484I offers 600K system gates, 172 user I/Os, 110592 total RAM bits, an ARM CoreMP7 hard core, and a maximum operating frequency of 1282.05 MHz on a 130nm flash-based fabric. It runs from a 1.425V to 1.575V core supply, operates from -40C to +85C, and is supplied in a 484-FPBGA (23x23) tray package that is ROHS3 compliant. Manufacturer lead time is currently 16 weeks per Microchip USA listing.
What is the difference between M7AFS600-1FGG484I and M7AFS600-FGG484I?
The primary difference is speed grade. According to the Xecor comparison, the M7AFS600-1FGG484I supports a maximum operating frequency of 1282.05 GHz family rating listed as 1.28205 GHz, while the M7AFS600-FGG484I is specified at 1098.9 MHz. Both share the same 484-ball FBGA footprint, 600K gates, and pinout, so the slower -FGG484I variant is pin-compatible; choose the speed-1 part for timing-critical paths.
What is the price of M7AFS600-1FGG484I as of 2026-09-02?
Pricing for the M7AFS600-1FGG484I is quote-based at most authorized distributors because of its high unit cost and 16-week lead time. Indicative XAIPART pricing as of 2026-09-02 starts at 285.00 USD at quantity 1, scaling to approximately 228.00 USD at quantity 1000. Always request a formal quote from Microchip or authorized distributors such as DigiKey or Mouser for contract volumes.
Where to buy M7AFS600-1FGG484I online?
The M7AFS600-1FGG484I can be purchased online from XAIPART, Mouser, DigiKey, and specialist distributors such as Microchip USA, plus brokers like Heisener where 2192 pieces were reported in stock at last check. Given the 16-week manufacturer lead time, check authorized distributor inventory first and verify date codes and traceability when buying from independent distributors or brokers for defense or avionics programs.
Is M7AFS600-1FGG484I in stock and what is the lead time?
Stock is intermittent. Microchip USA lists the part as Active with a 16-week manufacturer lead time, and broker Heisener reported 2192 pieces in stock with delivery to be confirmed. Authorized distributors (DigiKey, Mouser) list limited quantities; for production volumes, order early or consider pin-compatible speed-grade alternates such as M7AFS600-FGG484I when timing requirements allow, as those variants may have better availability.
M7AFS600-1FGG484I vs M7AFS600-2FGG484I - which is better?
The speed-1 M7AFS600-1FGG484I is the faster grade, supporting up to 1282.05 MHz versus the slower speed-2 grade, so it is better for timing-critical or high-frequency designs. The speed-2 part typically costs less and may have shorter lead times. Both share the identical 484-FBGA footprint, 600K gates, 172 I/Os, and -40C to +85C range, so migration between them is a pin-to-pin drop-in.
What is the best drop-in replacement for M7AFS600-1FGG484I?
The best drop-in replacement is another Microchip Fusion M7AFS600 variant in the 484-ball FBGA package, such as M7AFS600-FGG484I (same package and pinout, lower 1098.9 MHz speed grade) or M7AFS600-FGG484 (commercial temperature). Because flash-based Fusion devices are pin-compatible within a package and gate-count class, migration requires only a timing closure re-run in Libero SoC, not PCB rework.
Can M7AFS600-FGG484I replace M7AFS600-1FGG484I?
Yes, the M7AFS600-FGG484I can replace the M7AFS600-1FGG484I on the same PCB because both use the identical 484-ball FBGA footprint and pinout with 600K gates. The trade-off is maximum operating frequency: 1098.9 MHz for the FGG variant versus 1282.05 MHz for the speed-1 part. Verify your timing constraints close in Microchip Libero SoC at the slower grade before qualifying the substitution.
What is the best non-Microchip equivalent for M7AFS600-1FGG484I?
There is no verified cross-brand pin-compatible equivalent for the M7AFS600-1FGG484I in the reviewed cross-reference data. Its unique value proposition - flash-based fabric, ARM CoreMP7 hard core, and mixed-signal analog peripherals in a 484-FBGA - has no direct competitor footprint match from Xilinx, Intel (Altera), or Lattice. Cross-brand FPGA substitutes require PCB redesign and firmware porting; consult Microchip Fusion family variants for same-footprint migration instead.
Where to download the M7AFS600-1FGG484I datasheet PDF?
The M7AFS600-1FGG484I datasheet PDF is available from Microchip Technology's official documentation portal and mirrored on distributor sites such as AiPCBA, where the M7AFS600-1FGG484 Fusion datasheet is listed as a 331-page document. On XAIPART product pages the datasheet link points to the manufacturer product documentation. Always download from Microchip/Microsemi official sources to guarantee the latest revision.
Where can I find the M7AFS600-1FGG484I pinout?
The complete 484-ball pinout for the M7AFS600-1FGG484I is specified in the Microchip/Microsemi Fusion FPGA family datasheet (a 331-page document covering the FG484 package). Because the pin map spans all 484 balls including power, ground, JTAG, and banked I/O assignments, it cannot be reproduced inline here; download the FG484 package chapter of the Fusion datasheet from the Microchip documentation portal.
Is the M7AFS600-1FGG484I RoHS compliant?
Yes. According to the Microchip USA product listing, the M7AFS600-1FGG484I is ROHS3 Compliant and lead-free, supplied in a tray package with Active product status. The 484-FPBGA package uses lead-free solder balls suitable for standard reflow profiles. REACH and halogen-free status are not explicitly stated in the reviewed data, so confirm those items on the Microchip product page if required for your compliance documentation.
What supply voltage does the M7AFS600-1FGG484I require?
The M7AFS600-1FGG484I operates from a nominal 1.5V supply with an allowable range of 1.425V to 1.575V, per the Microchip USA technical details. As a mixed-signal Fusion device it also uses auxiliary supply domains; consult the family datasheet for bank-specific I/O voltages. Design your 1.5V rail with regulation tight enough to stay inside the 1.425V-1.575V window across all load and temperature conditions.
Is the M7AFS600-1FGG484I suitable for industrial automation applications?
Yes. With its -40C to +85C industrial temperature range, 172 user I/Os, embedded ARM CoreMP7, and flash-based configuration, the M7AFS600-1FGG484I fits industrial automation, motor control, and instrumentation. The Fusion family's integrated analog peripherals reduce external component count in sensor-interface designs, and the non-volatile flash fabric eliminates configuration-boot hardware, improving uptime in PLC and drive electronics where configuration corruption is unacceptable.
What supply chain risks apply when designing in M7AFS600-1FGG484I?
The main risks are a 16-week manufacturer lead time, intermittent authorized stock, and the part being a legacy 130nm Fusion product with no cross-brand second source. Mitigate by qualifying at least one pin-compatible same-family variant (e.g., M7AFS600-FGG484I or M7AFS600-FGG484) as a second line item, buying against a rolling forecast, and verifying broker stock date codes before committing to an end-of-life-sensitive design.

Engineering reference data for M7AFS600-1FGG484I — comparison, design guidance, and compliance information.

Selection Guide

Choose M7AFS600-1FGG484I when your design needs the fastest Fusion timing margin (1282.05 MHz grade rating), industrial -40C to +85C operation, and the ARM CoreMP7 plus mixed-signal analog in one 600K-gate flash device. Choose M7AFS600-FGG484I or M7AFS600-2FGG484I if your timing analysis closes at the slower 1098.9 MHz class and you need better availability or cost. Choose M7AFS600-FGG484 only for controlled 0C to +70C environments. If you do not need the ARM core or analog blocks, the same-footprint ProASIC3E parts (e.g., A3P600-1FG484I) may be cheaper. There is no cross-brand pin-compatible equivalent - Xilinx, Intel, and Lattice FPGAs require PCB redesign - so this family is also the only drop-in path once the 484-FBGA Fusion footprint is committed.

Comparison with Alternatives

Parameter This Product M7AFS600-2FGG484I M7AFS600-FGG484I M7AFS600-FGG484 M1AFS600-FG484I
Package 484-FBGA (23x23) 484-FBGA (23x23) - same 484-FBGA (23x23) - same 484-FBGA (23x23) - same 484-FBGA - same family
Brand Microchip Technology (Microsemi) Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 600000 600000 600000 600000 600000
Number of I/Os 172 172 172 172 172
Max Operating Frequency 1282.05 MHz 1098.9 MHz class (speed 2) 1098.9 MHz 1098.9 MHz class [DATA_NEEDED]
Operating Temperature -40C to +85C -40C to +85C -40C to +85C 0C to +70C (commercial) -40C to +85C
Supply Voltage 1.5 V (1.425-1.575 V) 1.5 V 1.5 V 1.5 V 1.5 V
Embedded Processor ARM CoreMP7 ARM CoreMP7 ARM CoreMP7 ARM CoreMP7 [DATA_NEEDED]
Packaging Tray Tray Tray Tray Tray

Key Differentiators

  • Fastest Fusion M7AFS600 speed grade in the FG484 footprint (vs M7AFS600-FGG484I)
  • Industrial temperature rating for harsh environments (vs M7AFS600-FGG484)
  • Mixed-signal Fabric plus ARM CoreMP7 hard core (vs A3P600-1FG484I (ProASIC3E))

Design Notes

The core supply must remain within the 1.425V to 1.575V window per the Microchip USA technical details. Estimated: at 600K flash gates in 130nm, core current is typically in the hundreds of milliamps under toggle-heavy conditions, so select a 1.5V regulator with at least 1.5A headroom and 3% or better load regulation. Separate the analog domain of the Fusion mixed-signal block onto its own filtered rail per the Fusion family datasheet power-up sequencing section, and confirm rail sequencing order before layout freeze.

The 484-FPBGA (23x23 mm) uses a fine-pitch ball grid requiring controlled-impedance fan-out. Recommended: dedicate at least two inner layers to a solid ground pour under the package, place 0.1uF ceramic decoupling capacitors on the underside of the PCB directly beneath power/ground ball clusters, and use via-in-pad or dog-house fan-out per Microchip's Fusion PCB layout application guidance. Follow IPC-recommended reflow profiles for lead-free BGA balls and X-ray inspect after assembly given the invisible joints.

Two recurring pitfalls: first, timing closure - if you substitute the slower M7AFS600-FGG484I (1098.9 MHz) for this speed-1 part, re-run static timing in Microchip Libero SoC at the new grade; paths that met 1282.05 MHz margins may fail. Second, supply chain - the manufacturer lead time is 16 weeks and authorized stock is intermittent, so do not freeze a production BOM on this MPN without a qualified same-family second source such as M7AFS600-2FGG484I already validated in your design.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

ROHS3 Compliant per Microchip USA product listing. Active product status with 16-week manufacturer lead time. REACH, halogen-free, and conflict minerals status not stated in reviewed data.

Data verified on: 2026-09-02 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Microchip Technology Microsemi Corporation M7AFS600-1FGG484I M7AFS600-FGG484I M7AFS600-2FGG484I M1AFS600-FG484I A3P600-1FG484I Fusion FPGA ARM CoreMP7 FPGA field-programmable gate array flash-based configuration 484-FBGA FBGA surface mount 130 nm process RoHS ROHS3 Compliant Libero SoC PSRAM RAM bits industrial automation avionics operating temperature range system gates
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