Microchip Technology

M1AFS1500-2FG676I - 1.5M-Gate Fusion FPGA, FBGA-676 | Microchip

MPN: M1AFS1500-2FG676I ✓ Active
In Stock Ships in 1-3 business days
1.5 V Vdss 676-ball FBGA (FG676) Package 2 Speed On-chip flash (non-volatile, instant-on) Memory
From $405 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $502.92 $502.92
10 $478 $4,780.00
100 $452 $45,200.00
500 $428 $214,000.00
1,000 $405 $405,000.00
ℹ️ All prices are in USD

Drop-in alternatives for M1AFS1500-2FG676I — 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:

AFS1500-2FG676I

✅ Drop-In
📦 FBGA-676 (FG676)
identical die, speed grade 2, same package; non-M compliance coding and LCSC-stocked (C2616250, $502.92 as of 2026-09-02)

📋 Reference alternative (not in catalog)

M1AFS1500-1FGG676I

✅ Drop-In
Microchip Technology
📦 FBGA-676 (FGG676)
Fusion (Mixed-Signal FPGA) · 1.5 M gates · 276480 bits · 252 · 1.5 V · 130 nm flash-based · Flash (non-volatile, instant-on) · -1

✓ In Stock

Contact for price

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M1AFS1500-2FGG484I

✅ Drop-In
Microchip Technology
📦 FBGA-484 (FGG484)
Fusion (M1 series) · 1500000 gates · 38400 · ARM Cortex-M1 · 223 · 276480 bits · 1.5 V · 130 nm flash-based CMOS

✓ In Stock

$201.11 / Unit

View Datasheet →

M1AFS1500-1FGG484

✅ Drop-In
Microchip Technology
📦 FBGA-484 (FGG484)
Fusion Mixed-Signal FPGA (M1 series) · 1,500,000 · 38,400 · 223 · 276,480 bits · ARM Cortex-M1 · 1.5 V · 130 nm flash-based

✓ In Stock

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M1AFS1500-2FG676I Maximum Ratings & Electrical Characteristics

Family Fusion (Mixed-Signal Flash FPGA)
System Gates 1.5 M
Process Technology 130 nm CMOS
Core Supply Voltage 1.5 V
Speed Grade 2
Package 676-ball FBGA (FG676)
Mounting Type Surface Mount
Configuration Memory On-chip flash (non-volatile, instant-on)
Operating Temperature Range Industrial (I suffix) -40C to +100C
Embedded Analog Features On-chip ADC, clock conditioning circuit (CCC), power-on reset
External Configuration Device Not required
RoHS Status RoHS Non-Compliant (contains lead)
Lead Free Status Contains Lead
Packaging Method Tray

M1AFS1500-2FG676I 676-ball fbga (fg676) Pin Configuration Guide

Complete pinout information for M1AFS1500-2FG676I (676-ball fbga (fg676) 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.

676-ball fbga (fg676) package pinout diagram for M1AFS1500-2FG676I

No detailed pinout data available for M1AFS1500-2FG676I.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for M1AFS1500-2FG676I 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

M1AFS1500-2FG676I is suitable for 6 applications: Industrial Power-Supply Supervision, Smart Energy and Utility Metering, Motor Control Interface Logic, Aerospace and Defense Subsystems, Medical Instrumentation Control, Secure Industrial Networking Nodes.

Industrial Power-Supply Supervision

The M1AFS1500-2FG676I is well suited to power-supply supervision because the Fusion family uniquely integrates analog monitoring with digital logic on one die: the on-chip ADC samples multiple voltage and temperature channels, while power-on-reset and clock-conditioning circuitry provide deterministic startup. With 1.5M gates of instant-on flash fabric, the device implements sequencing, voltage-margining, and fault-logging state machines live within microseconds of power application - no external configuration flash boot delay exists. In a typical telecom rectifier or backplane power shelf, the FPGA reads ADC channels at the 1.5V-referenced analog front end, asserts enable signals to DC-DC converters, and shuts down rails on out-of-range conditions. Compared to an MCU-plus-supervisor cluster, the single-chip approach reduces BOM count and eliminates firmware timing races during brownout.

🧩

Smart Energy and Utility Metering

Utility metering demands long service life, secure configuration, and analog acquisition - all Fusion strengths. The flash-based M1AFS1500-2FG676I retains its bitstream for the product lifetime without battery-backed configuration, and its on-chip ADC digitizes current-transformer and voltage-divider inputs for energy calculation in the 1.5M-gate fabric. The industrial temperature grade covers outdoor meter enclosures, and the 676-ball FBGA provides enough I/O for tariff display, communication (RS-485, PLC modem interface), and tamper-detection switches. Because configuration data is stored on-chip, the metering algorithm is not exposed on an external boot bus, hardening the device against code extraction. Instant-on behavior also ensures the meter is functional the moment line power appears, meeting regulatory wakeup requirements for tariff switching and load-control relays.

🏭

Motor Control Interface Logic

In industrial drives and motion systems, the M1AFS1500-2FG676I bridges a host controller to gate drivers and feedback sensors. The 130nm flash fabric implements PWM generation, dead-time insertion, quadrature-encoder decoding, and safety interlocks, while the integrated ADC channel supports bus-voltage and heatsink-temperature monitoring without a separate supervisor IC. Speed grade 2 timing supports PWM carrier frequencies typical of industrial inverters, and the industrial temperature rating tolerates drive-cabinet environments. The instant-on flash configuration ensures safety interlocks are enforced from the first microseconds of power-up, an important consideration under functional-safety review. Using the 676-ball FBGA, designers can dedicate generous I/O banks to incremental encoders, absolute SSI feedback, and multiple PWM output phases in a single package on a single PCB footprint.

✈️

Aerospace and Defense Subsystems

Microsemi programmable logic is widely deployed in defense and aerospace platforms, and the flash-based Fusion architecture addresses two key concerns: configuration upset resilience and instant-on operation. Because the M1AFS1500-2FG676I stores configuration in non-volatile on-chip flash, it does not lose function or present an unconfigured bus state after disturbance events the way SRAM FPGAs can, and there is no external bitstream load to intercept. The 1.5M-gate capacity suits interface bridging, telemetry formatting, and bus-protocol conversion (MIL-STD-1553-adjacent glue logic, UART/SPI arbitration) around a mission processor. Designers must verify the specific program-level qualification requirements, as this leaded commercial-grade variant is typically used in ground-based and lab systems rather than flight hardware, where RTAX-series antifuse devices are preferred.

💊

Medical Instrumentation Control

Diagnostic and laboratory instruments benefit from the M1AFS1500-2FG676I's combination of analog monitoring and digital glue logic on a single instant-on die. The integrated ADC reads front-end supply rails and detector temperatures, while the flash fabric implements sensor-interface sequencing, actuator control, and communication interfaces to the main compute platform. Non-volatile on-chip configuration simplifies compliance documentation because there is no removable or reprogrammable boot device whose contents could vary between units. The industrial temperature range comfortably covers clinical environments, and the fine-pitch FBGA supports the compact, low-profile PCB form factors typical of benchtop analyzers and handheld diagnostic bases. Instant-on behavior means the instrument's interlocks and rail monitors are active before any higher-voltage subsystem is energized, supporting patient-safety design reviews.

🌐

Secure Industrial Networking Nodes

Field-deployed network and edge nodes require logic that is available immediately at power-up and resistant to configuration tampering. The M1AFS1500-2FG676I delivers both: on-chip flash configuration means the switch fabric, backhaul interface logic, or sensor-aggregation state machine is operational within microseconds, and the bitstream never appears on an external bus where it could be cloned. With 1.5M gates, the fabric implements multiple UART/SPI/I2C bridges, packet framing, watchdog supervision, and environmental monitoring via the on-chip ADC. The 676-ball FBGA supplies the I/O count needed for multi-port designs, and the industrial temperature grade supports unconditioned cabinets and roadside enclosures. The leaded package finish should be checked against the end-market RoHS profile, with FGG variants substituted where full compliance is mandatory.

What is the M1AFS1500-2FG676I?
The M1AFS1500-2FG676I is a flash-based mixed-signal FPGA from the Microsemi (now Microchip Technology) Fusion family, offering approximately 1.5 million system gates on a 130nm CMOS process with a 1.5V core supply. It is packaged in a 676-ball FBGA (FG676), carries speed grade 2 and an industrial temperature rating, and integrates analog peripherals such as an on-chip ADC and clock conditioning circuits alongside the digital fabric. The device is instant-on because configuration resides in non-volatile on-chip flash, per distributor listings on Octopart and Jotrin.
Is M1AFS1500-2FG676I RoHS compliant?
No - according to DigChip datasheet summary data, the M1AFS1500-2FG676I is RoHS non-compliant and its lead-free status is listed as contains lead. The M1 prefix on Microsemi/Microchip Fusion parts historically denotes a leaded package finish. For RoHS-compliant new designs, engineers should select the green variant with the FGG package designation, such as M1AFS1500-1FGG484K or other FGG-suffixed parts from the same Fusion family, which use lead-free ball metallurgy while retaining the same silicon.
What package does M1AFS1500-2FG676I use?
The M1AFS1500-2FG676I uses a 676-ball Fine-Pitch Ball Grid Array (FBGA-676). The FG676 designation in the part number identifies this package directly: F for FBGA, G for green-adjacent ball-pitch coding conventions vary, but 676 indicates the ball count. Distributor listings from Jotrin and Kynix confirm the device is supplied in tray packaging as a 676-pin FBGA. Because it is a fine-pitch BGA, assembly requires reflow soldering and X-ray or acoustic inspection for joint quality verification.
Does the M1AFS1500-2FG676I require an external configuration device?
No. As a flash-based Fusion FPGA, the M1AFS1500-2FG676I stores its bitstream in non-volatile on-chip flash memory, so no external configuration PROM or SPI flash is required. This is a primary advantage over SRAM-based FPGAs: the device is live within microseconds of power-up (instant-on), which simplifies the bill of materials, reduces board area, and improves configuration security because the bitstream never traverses an external bus where it could be intercepted.
What is the difference between M1AFS1500-2FG676I and M1AFS1500-1FGG676I?
The two parts share the same die, same 676-ball FBGA footprint, and same 1.5M-gate capacity, but differ in two suffix parameters. The 2FG676I carries speed grade 2 and a leaded (RoHS non-compliant) finish, while the 1FGG676I carries the slower speed grade 1 with a green, RoHS-compliant G finish. For designs with timing slack, the RoHS-compliant grade-1 part is the preferred new-design choice; the grade-2 part suits legacy builds needing maximum fabric speed.
What are the key specifications of M1AFS1500-2FG676I that engineers should know?
Key specifications: approximately 1.5 million system gates on a 130nm CMOS process; 1.5V core supply; speed grade 2; 676-ball FBGA package in tray form; industrial (I) temperature rating; on-chip flash configuration requiring no external boot device; and integrated mixed-signal peripherals including an ADC and clock conditioning circuitry. According to Jotrin Electronics and Kynix listings, the part is cataloged as FPGA Fusion Family, 1.5M gates, 130nm technology, 1.5V, 676-pin FBGA. It is RoHS non-compliant (contains lead).
Where can I buy M1AFS1500-2FG676I online?
The M1AFS1500-2FG676I is available through authorized and independent distributors including DigiKey (listing M1AFS1500-2FG676I-ND), Micro-Semiconductor.com (which reported 154 pieces in stock), LCSC (which stocks the related AFS1500-2FG676I from $502.92), and broker channels such as Chipdigger, Acme-Chip, Jotrin, Kynix, and Veswin. Octopart aggregates pricing from 2 distributors for this part. Availability fluctuates because this is a specialized industrial FPGA; verify stock and lead time at order time.
What is the price of M1AFS1500-2FG676I?
Pricing for the M1AFS1500-2FG676I is in the mid-hundreds of US dollars per unit. As a reference point, LCSC lists the close sibling AFS1500-2FG676I at $502.92 (as of 2026-09-02), and Octopart reports bulk discount tiers from 2 distributors for the M1 variant. Actual pricing depends on quantity, distributor stock position, and contract status - high-volume industrial buyers typically obtain 10-20 percent discounts at 100+ piece quantities. Request quotes from DigiKey, LCSC, or Micro-Semiconductor.com for current firm pricing.
What is the best drop-in replacement for M1AFS1500-2FG676I?
The best drop-in replacement is the AFS1500-2FG676I (non-M prefix), which is the identical silicon, speed grade 2, and 676-ball FBGA package but with standard compliance coding - LCSC stocks it (C2616250). Within the same footprint family, M1AFS1500-1FGG676I is also pin-compatible but at speed grade 1. Because Fusion parts are programmed at the factory in some variants and bitstream-compatible across speed grades of the same die, these substitutions require no PCB change, only a timing-margin check in the design.
Can I use M1AFS1500-2FG676I in a RoHS-restricted product?
Only under an applicable exemption. The part is documented as RoHS non-compliant with a lead-containing package finish per DigChip data. RoHS restrictions apply to finished equipment placed on the EU market, so using this leaded variant is permitted only where an exemption covers the application (certain legacy, defense, and spare-part categories). For standard industrial or consumer equipment, substitute an RoHS-compliant FGG variant of the same die, which eliminates the compliance risk without redesign.
How do I download the M1AFS1500-2FG676I datasheet PDF?
The Fusion family datasheet is published by Microsemi (now Microchip Technology) on the Microchip website under the FPGA product directory, and mirrored by datasheet aggregators such as DigChip and Veswin, which offer free PDF downloads along with pinout, application, and cross-reference support. Search for Fusion FPGA Family datasheet on microchip.com, or use the Veswin and Jotrin product pages for the M1AFS1500-2FG676I, which link the family documentation directly and provide technical-engineer assistance.
Where can I find the M1AFS1500-2FG676I pinout?
The complete 676-ball ball-map for the FBGA-676 package is provided in the Fusion family datasheet package section published by Microsemi/Microchip, and Veswin offers engineer-assisted pinout information on request for this exact part number. Because the device is a fine-pitch BGA, the ballout is organized in a standard alphanumeric grid (rows A through the final row, columns 1 through 26). Always verify ball assignments against the datasheet revision matching your die version before routing the PCB.
Is M1AFS1500-2FG676I suitable for industrial power-supply supervision applications?
Yes - this is one of the Fusion family's primary target applications. The device integrates analog monitoring peripherals (on-chip ADC, power-on-reset, and clock conditioning) with 1.5M gates of flash-based fabric, letting it replace a discrete supervisory MCU plus analog circuitry in power-supply sequencing, voltage-margining, and smart-power distribution designs. Its instant-on flash configuration means supervision is active within microseconds of power application, and the industrial temperature rating supports harsh-environment deployment such as telecom rectifiers and utility metering.
What is the difference between Fusion FPGAs and SRAM-based FPGAs like the Xilinx Artix-7?
The fundamental difference is configuration storage and analog integration. The M1AFS1500-2FG676I stores its bitstream in on-chip flash, making it instant-on and single-chip, whereas SRAM-based FPGAs must load configuration from an external flash at every power-up, introducing boot delay and an interceptable bitstream bus. The Fusion family also integrates mixed-signal peripherals (ADC, clock conditioning, reset supervision) that Artix-7 lacks. Conversely, Artix-7 offers far higher logic density, DSP blocks, and multi-gigabit transceivers - so the choice depends on whether integration-security or raw fabric capability dominates.
What is the operating temperature range of M1AFS1500-2FG676I?
The I suffix on M1AFS1500-2FG676I denotes the industrial temperature grade, which for Microsemi Fusion FPGA devices spans -40C to +100C ambient. This makes the part suitable for industrial control, telecom outdoor equipment, and defense-adjacent subsystems, but not for extended or military temperature applications, which require the corresponding military-temperature orderable variants. Designers should also verify junction temperature margins at maximum fabric utilization because 676-ball FBGA thermal performance depends heavily on PCB copper area and airflow.

Engineering reference data for M1AFS1500-2FG676I — comparison, design guidance, and compliance information.

Selection Guide

Choose the M1AFS1500-2FG676I when you need the fastest speed grade 2 performance of the 1.5M-gate Fusion die in the maximum-I/O 676-ball FBGA footprint and your program permits leaded (non-RoHS) components - typical of legacy industrial builds, defense ground systems, and exempt spares. Choose AFS1500-2FG676I when you need the same die today with distributor stock (LCSC) and different compliance coding. Choose M1AFS1500-1FGG676I for new RoHS-compliant designs where speed grade 1 timing closes; run your static timing analysis first, since the green variant trades fabric speed for compliance. Choose the FGG484 variants (M1AFS1500-2FGG484I, M1AFS1500-1FGG484) only when your board uses the smaller 484-ball footprint - they are not ball-to-ball compatible with FG676. All options share instant-on flash configuration and the integrated mixed-signal peripherals; the decision drivers are speed grade, package footprint, and lead-free compliance.

Comparison with Alternatives

Parameter This Product AFS1500-2FG676I M1AFS1500-1FGG676I M1AFS1500-2FGG484I M1AFS1500-1FGG484
Package FBGA-676 (FG676) FBGA-676 - same FBGA-676 (FGG) - same footprint FBGA-484 - smaller FBGA-484 - smaller
Brand Microchip Technology (Microsemi) Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 1.5 M 1.5 M 1.5 M 1.5 M 1.5 M
Speed Grade 2 (fastest) 2 1 (slower) 2 1 (slower)
Core Voltage 1.5 V 1.5 V 1.5 V 1.5 V 1.5 V
Process Technology 130 nm CMOS 130 nm 130 nm 130 nm 130 nm
Temperature Range Industrial (-40C to +100C) Industrial Industrial Industrial Commercial/Industrial per suffix
RoHS / Lead Status Non-compliant, contains lead [DATA_NEEDED] Green / RoHS compliant Green / RoHS compliant Green / RoHS compliant
Configuration On-chip flash, instant-on On-chip flash On-chip flash On-chip flash On-chip flash
Reference Price (qty 1) $502.92-class (family ref, as of 2026-09-02) $502.92 (LCSC) [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Fastest speed grade within the same 676-ball footprint (vs M1AFS1500-1FGG676I)
  • Maximum I/O count variant of the AFS1500 die (vs M1AFS1500-2FGG484I)
  • Mixed-signal integration vs pure digital FPGAs (vs AFS1500-2FG676I)

Design Notes

Compliance first: distributor data (DigChip) marks this M1-prefixed part as RoHS non-compliant and lead-containing. Do not design it into EU-market consumer/industrial equipment unless an exemption applies. For new designs, select the FGG green variant of the same die (e.g., M1AFS1500-1FGG676I), which is pin-compatible in the same 676-ball footprint and eliminates the compliance exposure while requiring only a speed-grade timing recheck in the place-and-route timing report.

Power the Fusion device in the sequence documented in the Fusion datasheet power-supply section: core (1.5V), then analog, then I/O banks. Although the flash fabric is instant-on from the user's perspective, sequencing prevents I/O latch-up during ramp. Because the on-chip ADC and CCC share the analog supply rail, filter that rail with a ferrite bead plus bulk capacitance separate from the digital core supply to keep ADC noise low. Estimated: at 1.5M gates, static core current is typically in the tens-of-milliamps range on 130nm flash process; verify against the datasheet power calculator (Estimate - confirm with Microchip power estimator).

The FBGA-676 is a fine-pitch ball grid array requiring careful fan-out and stackup. Use a minimum 6-layer stackup with dedicated ground planes adjacent to signal layers; escape ball pitches with via-in-pad or dog-bone fan-out and keep equivalent series inductance short on ADC analog input balls. Reflow profiles must follow the leaded-solder profile for this M1 (Pb-containing) part - do not run an SAC305 lead-free profile over leaded balls, as wetting and joint reliability will suffer. Post-reflow, use X-ray inspection to verify ball collapse under the die area.

Compliance Information

RoHS
Non Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
No
Halogen Free
Unknown
Conflict Minerals
Unknown

Per DigChip datasheet summary: Lead Free Status - Contains Lead; RoHS Status - RoHS Non-Compliant. The M1 prefix denotes leaded package finish. REACH, halogen-free, and conflict-minerals status not stated in provided data.

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

Related Searches

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Related Components & Terms

Microchip Technology Microsemi M1AFS1500-2FG676I AFS1500-2FG676I M1AFS1500-1FGG676I M1AFS1500-2FGG484I Fusion FPGA family Field-Programmable Gate Array flash-based FPGA mixed-signal FPGA FBGA-676 fine-pitch ball grid array 130 nm CMOS VersaTile on-chip ADC clock conditioning circuit instant-on configuration RoHS industrial temperature range speed grade 2 utility metering power-supply supervision aerospace and defense programmable logic
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