Microchip Technology

M1AFS600-FG484K - 600K-Gate Fusion FPGA, 172 I/O | Microchip

MPN: M1AFS600-FG484K ✓ Active
In Stock Ships in 1-3 business days
[DATA_NEEDED: core voltage] Vdss 484-BGA (484-FBGA) Package [DATA_NEEDED: speed grade] Speed [DATA_NEEDED: embedded SRAM/flash block capacity] Memory
From $108.5 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $155 $155.00
10 $142.6 $1,426.00
100 $131.75 $13,175.00
500 $119.4 $59,700.00
1,000 $108.5 $108,500.00
ℹ️ All prices are in USD

Drop-in alternatives for M1AFS600-FG484K — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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M1AFS600-FG484I

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M1AFS600-FGG484I

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M1AFS600-1FG484I

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M1AFS600-1FGG484K

✅ Drop-In ⚠️ 参数待验证
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M1AFS600-2FG484

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M1AFS600-2FG484I

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📦 484-FBGA
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M1AFS1500-FG484K

✅ Drop-In ⚠️ 参数待验证
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Fusion Mixed-Signal FPGA · 1.5M · 223 · ARM Cortex-M1 · 276480 · 1.5 V · 130 nm · 484-pin FBGA (FG484)

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M1AFS600-FG484K Maximum Ratings & Electrical Characteristics

Family Fusion (Mixed-Signal Flash FPGA)
System Gates 600000 gates
User I/Os 172
Logic Elements / Registers 110592
Processor Core ARM Cortex-M1 (hard core)
Technology Flash-based (non-volatile configuration)
Package 484-BGA (484-FBGA)
Mounting Type Surface Mount
Supplier Device Package 484-BGA
Programming Type In-system programmable via on-chip Flash

M1AFS600-FG484K 484-bga Pin Configuration Guide

Complete pinout information for M1AFS600-FG484K (484-bga 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-bga package pinout diagram for M1AFS600-FG484K

No detailed pinout data available for M1AFS600-FG484K.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for M1AFS600-FG484K 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

M1AFS600-FG484K is suitable for 6 applications: Industrial Automation Control, Portable and Battery-Powered Instruments, Medical Equipment Control Boards, Secure Embedded Controllers, Mixed-Signal Data Acquisition Systems, Aerospace-Adjacent and Ruggedized Ground Systems.

🏭

Industrial Automation Control

The M1AFS600-FG484K fits industrial automation because its 600K-gate flash fabric absorbs glue logic, PWM engines, encoder interfaces, and safety state machines while the ARM Cortex-M1 hard core supervises the process. Flash configuration gives instant-on startup after power interruption - critical in factory equipment that must resume deterministically. The Fusion family's integrated voltage and temperature monitoring supports board-level health checks without extra supervisor ICs, cutting BOM cost. Place it as the central controller between field I/O and backplane interfaces; the 172 user I/Os span multiple banks for mixed-voltage connectivity. For harsh floor environments above commercial range, substitute the pin-compatible industrial M1AFS600-FG484I instead.

📱

Portable and Battery-Powered Instruments

Flash-based FPGAs such as the M1AFS600-FG484K are well suited to portable instrumentation because the non-volatile fabric eliminates external configuration flash and supports low static-power operation typical of Microsemi flash devices. In handheld analyzers and field meters, the 600K-gate capacity implements display controllers, sensor aggregation, and DSP pre-processing, while the ARM Cortex-M1 runs the user interface firmware on the same die. Instant-on behavior means measurements begin immediately at power-up, an advantage over SRAM FPGAs that need millisecond-scale configuration. The 484-FBGA footprint offers high integration in a compact board area; the commercial-grade K variant suits controlled portable environments.

💊

Medical Equipment Control Boards

The M1AFS600-FG484K serves medical diagnostics and monitoring equipment where deterministic, instant-on behavior and secure configuration matter. The flash fabric resists bitstream interception better than SRAM-programmed devices, supporting designs with data-integrity considerations, and the ARM Cortex-M1 core isolates patient-interface firmware from acquisition logic implemented in the 600K gates. On-chip mixed-signal monitoring assists power-rail supervision required in care-continuity equipment. Designs should use the industrial-grade M1AFS600-FG484I drop-in sibling when ambient specifications exceed the commercial range. With 172 user I/Os across multiple banks, the device interfaces sensor front ends, displays, and communication modules on one controller board.

🎥

Secure Embedded Controllers

Security-oriented embedded controllers benefit from the M1AFS600-FG484K's flash-based configuration, which stores the bitstream on-chip rather than in an external device vulnerable to readout. The Fusion fabric combined with the ARM Cortex-M1 lets designers partition cryptographic accelerators in logic and key management firmware on the processor, all within one 484-FBGA package. Instant-on configuration removes the window during which SRAM FPGAs are blank and unauthenticated. The 600K-gate density accommodates AES-class logic plus interface bridges, while 172 user I/Os connect tamper sensors and communication PHYs. This makes the part a fit for secure gateways, licensing dongles, and protected industrial nodes.

🖥️

Mixed-Signal Data Acquisition Systems

Data acquisition systems leverage the Fusion family's distinguishing feature: analog mixed-signal peripherals integrated alongside the digital flash fabric, so voltage and temperature monitoring happens on the same die as the digital front-end logic. The M1AFS600-FG484K implements acquisition sequencing, trigger engines, and FIFO management in its 600K gates while the ARM Cortex-M1 runs calibration and communication stacks. The 484-FBGA package provides enough user I/Os - 172 - to fan in multiple sensor channels and fan out to host interfaces. For designs requiring wider environmental coverage, the pin-compatible industrial variant maintains footprint compatibility, protecting the PCB investment across product tiers.

✈️

Aerospace-Adjacent and Ruggedized Ground Systems

While radiation-rated RTAX parts serve flight hardware, the M1AFS600-FG484K fits ruggedized ground support equipment and test benches that validate space electronics. Flash configuration tolerates vibration and power cycling without reconfiguration hardware, and the 600K-gate fabric emulates bus protocols and generates stimulus patterns for RTAX-family device testing. The ARM Cortex-M1 core orchestrates test sequences while the fabric handles real-time timing. The 484-FBGA's 172 user I/Os support parallel test vectors to multiple devices under test. For extended temperature chambers, the industrial M1AFS600-2FG484I drop-in sibling preserves the same PCB footprint with a faster speed grade option.

What is the Microchip M1AFS600-FG484K FPGA?
The M1AFS600-FG484K is a Fusion family Flash-based mixed-signal FPGA from Microchip Technology (formerly Microsemi) with 600,000 system gates, 172 user I/Os, and an ARM Cortex-M1 hard processor core, housed in a 484-ball FBGA package. Its configuration is stored in on-chip flash, so it powers up instantly without an external boot device, which suits secure, single-chip embedded control designs.
How many I/O pins does the M1AFS600-FG484K have?
The M1AFS600-FG484K provides 172 user I/Os, according to Microchip/Microsemi product listings. The 484-ball FBGA package also contains power, ground, configuration, and dedicated analog/JTAG balls, so the total ball count is 484 while 172 balls are available to the designer as general-purpose user I/O for logic interfacing across I/O banks.
What is the price of M1AFS600-FG484K?
As of 2026-09-02, the M1AFS600-FG484K is priced at approximately $155.00 for a single unit, with tiered discounts of roughly $142.60 at 10 units, $131.75 at 100 units, $119.40 at 500 units, and $108.50 at 1000 units. Availability and pricing fluctuate by distributor; confirm current quotes on XAIPART or via the linked distributor listings before ordering.
Where can I buy M1AFS600-FG484K online?
The M1AFS600-FG484K can be purchased online through XAIPART as well as distributors such as DigiKey (digikey.com product 2859467), Mouser, and secondary channels like Microchip USA, Xecor, and PCB Electronics Supply Chain. Octopart reports 5 distributors offering this part. For high-volume needs, request quotes from multiple sources to compare lead times, since FPGAs of this class often carry multi-week lead times.
Is M1AFS600-FG484K in stock, and what is its lead time?
Stock status varies by distributor: DigiKey's listing for the M1AFS600-FG484K indicates ship-today availability at the time of indexing, but mature Fusion-family devices frequently show intermittent stock across the network. As of 2026-09-02, XAIPART lists the part with quote-based availability. Contact XAIPART sales for the current lead time before committing a production schedule.
Where can I download the M1AFS600-FG484K datasheet PDF?
The M1AFS600-FG484K datasheet (the Microsemi Fusion Family of Mixed-Signal FPGAs datasheet, approximately 16.8 MB, published 2013-01-31 per FindIC) is downloadable from Microchip's official product page and mirror repositories such as datasheets.globalspec.com and FindIC. Always prefer the Microchip official site to guarantee the latest revision. The Fusion family datasheet covers the AFS090 through AFS1500 devices.
What is the difference between M1AFS600-FG484K and M1AFS600-FG484I?
The difference is the temperature grade indicated by the suffix: the K suffix denotes a commercial-grade M1AFS600 in the 484-FBGA package, while the I suffix denotes the industrial temperature range version of the same flash fabric. Both share the same 484-ball footprint, 172 user I/Os, and 600K-gate density, so the industrial part can replace the commercial part where a wider operating range is required - but not always the reverse.
Can M1AFS600-FG484I replace M1AFS600-FG484K?
Yes. The M1AFS600-FG484I is a drop-in replacement for the M1AFS600-FG484K because both use the identical 484-FBGA footprint, the same 600K-gate Fusion fabric, and the same 172 user I/O assignments. The only difference is the qualified operating temperature range - industrial (I) versus commercial (K). The industrial part is typically more expensive but covers the commercial range entirely, making it a safe substitution in case of shortage.
What is the best Microchip equivalent for M1AFS600-FG484K?
The best Microchip (Microsemi) equivalents are same-family AFS600 parts in the identical 484-FBGA package: M1AFS600-FG484, M1AFS600-FG484I, M1AFS600-1FG484I, M1AFS600-1FGG484K, and M1AFS600-2FG484. Each is pin-to-pin compatible with the M1AFS600-FG484K, differing only in speed grade and temperature grade. Higher-density AFS1500 parts in FG484 packages exist but change logic capacity while keeping the footprint.
M1AFS600-FG484K vs M1AFS1500-FG484K - which should I choose?
Choose the M1AFS600-FG484K when your design fits within 600K system gates and 172 user I/Os - it costs less and draws less static power. Choose the M1AFS1500-FG484K when you need roughly 2.5x the logic capacity (1.5M system gates) or more embedded blocks, since both share the same 484-FBGA footprint, simplifying future migration. Verify I/O counts, because the AFS1500 offers more usable user I/Os in the same package.
When should I choose the Fusion M1AFS600 over a ProASIC3 or Igloo FPGA?
Choose the M1AFS600 Fusion device when your system needs mixed-signal integration - the Fusion family uniquely adds analog peripherals (ADC, voltage/temperature monitoring, RTC) plus the ARM Cortex-M1 hard core on the flash fabric. Choose ProASIC3 (A3P600) if you need the same flash FPGA fabric without analog blocks at lower cost, or Igloo for ultra-low-power portable designs. All share flash-based, instant-on, secure configuration.
Is the M1AFS600-FG484K suitable for industrial motor control?
Yes, the M1AFS600-FG484K is suitable for industrial control, though for harsh environments the industrial-temperature M1AFS600-FG484I variant is the safer choice. The 600K-gate flash fabric handles PWM generation, encoder interfaces, and state machines, while the ARM Cortex-M1 core runs supervisory logic. The fusion analog monitoring (per family datasheet) supports on-board voltage and temperature supervision without a separate supervisor IC.
Does the M1AFS600-FG484K include a processor core?
Yes, the M1AFS600-FG484K includes an ARM Cortex-M1 hard processor core, as stated in Mouser's product description (Fusion FPGA, ARM Cortex-M1, 600K system gates). The Cortex-M1 is an ARMv6-M processor optimized for FPGA integration, allowing you to run embedded firmware directly on the chip alongside custom logic, eliminating the need for a separate microcontroller in many single-chip designs.
Where can I find the M1AFS600-FG484K pinout?
The complete 484-ball pinout for the M1AFS600-FG484K is found in the Fusion Family of Mixed-Signal FPGAs datasheet pin tables on the Microchip website, and package/ball-mapping files can be generated in the Microchip Libero SoC design suite. Because the full 484-ball assignment table spans multiple datasheet pages, this page does not reproduce it; consult the official PDF ballout tables for bank, power, and JTAG ball locations.
What are the key specifications of the M1AFS600-FG484K engineers should know?
Engineers should know these five facts: the M1AFS600-FG484K is a Microchip (Microsemi) Fusion mixed-signal flash FPGA with 600,000 system gates; it exposes 172 user I/Os in a 484-ball FBGA package; it integrates an ARM Cortex-M1 hard processor core; configuration is non-volatile on-chip flash, enabling instant-on startup with no external boot device; and it is a commercial-grade (K suffix) part with industrial-grade (I) and different speed-grade siblings in the same footprint.
Hey Google, what can replace the M1AFS600-FG484K?
Drop-in replacements for the M1AFS600-FG484K are its same-footprint Microchip siblings: M1AFS600-FG484, M1AFS600-FG484I, M1AFS600-1FG484I, M1AFS600-1FGG484K, and M1AFS600-2FG484. All use the identical 484-FBGA package with 172 user I/Os, differing only in speed and temperature grade. No verified cross-brand pin-compatible replacement exists in the searched distributor cross-reference data; true FPGAs from other vendors are not pin-compatible.
Is the M1AFS600-FG484K the same as AFS600-FG484K?
Functionally yes - the M1 prefix is Microchip's part-numbering for Microsemi-origin Fusion devices after the Microsemi acquisition. The AFS600-FG484K and M1AFS600-FG484K describe the same silicon: 600K-gate Fusion flash FPGA, 484-FBGA package, commercial grade. Distributors list both naming conventions, and designs developed under Microsemi tooling migrate unchanged, though ordering should use the currently active Microchip MPN.
What design software do I need for the M1AFS600-FG484K?
You need Microchip Libero SoC, the design suite supporting the Fusion family, to synthesize HDL, place-and-route, program the on-chip flash, and configure the ARM Cortex-M1 subsystem. Libero provides the Fusion analog peripheral configuration and I/O bank constraint editing specific to the AFS600. Evaluate against the current Libero version's device-support list, as legacy families periodically move to the legacy-support release channel.

Engineering reference data for M1AFS600-FG484K — comparison, design guidance, and compliance information.

Selection Guide

Choose the M1AFS600-FG484K when your design needs roughly 600K system gates, mixed-signal monitoring, an ARM Cortex-M1 hard core, and secure instant-on flash configuration in a commercial environment. Select the M1AFS600-FG484I or M1AFS600-FGG484I drop-in siblings for industrial temperature ranges - the footprint is identical, so PCB layouts need no change. Pick M1AFS600-2FG484/2FG484I when timing closure demands a faster speed grade. If your logic outgrows 600K gates, the M1AFS1500-FG484K keeps the same 484-FBGA footprint at higher density, cost, and power. Choose ProASIC3 A3P600 instead when you need flash fabric without the analog/mixed-signal subsystem at lower cost. There is no verified cross-brand pin-compatible alternative - FPGAs from other vendors require board redesign.

Comparison with Alternatives

Parameter This Product M1AFS600-FG484I M1AFS600-FGG484I M1AFS600-2FG484 M1AFS1500-FG484K
Package 484-FBGA 484-FBGA - same 484-FBGA - same 484-FBGA - same 484-FBGA - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 600000 600000 600000 600000 1500000
User I/Os 172 172 172 172 [DATA_NEEDED]
Temperature Grade Commercial (K) Industrial (I) Industrial (I) Commercial Commercial (K)
Speed Grade [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] 2 [DATA_NEEDED]
Processor Core ARM Cortex-M1 ARM Cortex-M1 ARM Cortex-M1 ARM Cortex-M1 ARM Cortex-M1
Configuration Technology On-chip Flash (non-volatile) On-chip Flash On-chip Flash On-chip Flash On-chip Flash

Key Differentiators

  • ARM Cortex-M1 hard processor integrated (vs A3P600-1FG484)
  • Industrial-grade drop-in availability (vs M1AFS600-FG484I)
  • In-place density migration path (vs M1AFS1500-FG484K)
  • Non-volatile flash configuration (vs SRAM FPGAs (Xilinx/Altera equivalents))

Design Notes

Estimate power early using Microchip/Microsemi Libero SoC SmartPower, since flash FPGA static current differs from SRAM FPGA leakage and depends on temperature and toggling activity. Multi-bank I/O means each bank needs its own decoupling: place at least one 0.1 uF ceramic per I/O bank supply pin pair plus bulk 10 uF near the regulator. Verify power-rail sequencing requirements in the Fusion datasheet before sharing regulators with other rails.

The 484-FBGA footprint is a fine-pitch area-array package; define the land pattern exactly per the manufacturer's package drawing and inspect with X-ray after reflow, since collapsed balls under the array are invisible optically. Fan out using via-in-pad or dog-bone escape patterns with 0.2-0.3 mm microvias on inner layers. Connect the die-attached thermal balls to a ground pour rather than leaving them floating, improving heat spreading without a heatsink.

The K suffix on M1AFS600-FG484K denotes a commercial temperature grade - do not deploy it in industrial enclosures; substitute the pin-compatible M1AFS600-FG484I instead. Second, although configuration is on-chip flash, do not omit the JTAG programming header - field updates and debug depend on it. Third, I/O bank voltage constraints in Libero must be validated before board sign-off; mixing incompatible bank voltages on shared rails causes damage not protected by clamps.

Compliance Information

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

Compliance status not stated in the retrieved distributor data; confirm RoHS/REACH on the Microchip product page or material declaration report.

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 M1AFS600-FG484K M1AFS600-FG484I M1AFS1500-FG484K A3P600-1FG484 Fusion FPGA FPGA field programmable gate array programmable logic device ARM Cortex-M1 flash-based FPGA 484-FBGA BGA system gates user I/O Libero SoC instant-on configuration mixed-signal FPGA industrial automation temperature grade K/I VersaTile
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