Microchip Technology

M1AFS1500-FGG676I - 1.5M Gate Fusion FPGA 676FBGA | Microchip

MPN: M1AFS1500-FGG676I ✓ Active
In Stock Ships in 1-3 business days
1.425 V to 1.575 V (1.5 V nominal) Vdss 676-ball FBGA (27 x 27 mm) Package 1098.9 MHz (system-level per distributor listing) Speed
From $89.9 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $128.5 $128.50
10 $118.2 $1,182.00
100 $104.6 $10,460.00
500 $96.4 $48,200.00
1,000 $89.9 $89,900.00
ℹ️ All prices are in USD

Drop-in alternatives for M1AFS1500-FGG676I — 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-FG676I

✅ Drop-In
Microchip Technology
📦 676-FBGA
Fusion (M1AFS1500) · 1.5 M · 130 nm flash-based · 1.5 V · 252 · 676-ball FBGA (FG676) · Surface Mount · Flash-based, non-volatile (no external config PROM)

✓ In Stock

$425.73 / Unit

View Datasheet →

M1AFS1500-1FGG676I

✅ Drop-In
Microchip Technology
📦 676-FBGA
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

View Datasheet →

M1AFS1500-2FGG676I

✅ Drop-In
Microchip Technology
📦 676-FBGA
Fusion · 1.5M · 38400 · 350 MHz · 130nm · 1.5V (1.425V to 1.575V) · 276480 · 252

✓ In Stock

$59.6 / Unit

View Datasheet →

AFS1500-FGG676I

✅ Drop-In
📦 676-FBGA
legacy Microsemi numbering of the same Fusion 1.5M device, identical ball map

📋 Reference alternative (not in catalog)

ℹ️ 2 cross-package part(s) hidden — different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

M1AFS1500-FGG676I Maximum Ratings & Electrical Characteristics

Family Fusion (Mixed-Signal FPGA)
System Gates 1500000
Technology 130 nm Flash-based
User I/O 252
Core Supply Voltage 1.425 V to 1.575 V (1.5 V nominal)
Package 676-ball FBGA (27 x 27 mm)
Operating Temperature -40C to +100C (Industrial)
Configuration Flash-based, single-chip, live-at-power-up
Max Frequency 1098.9 MHz (system-level per distributor listing)
Mounting Type Surface Mount
Data Stream Support 8, 16, and 32 bit
Analog Peripherals Integrated mixed-signal (ADC, voltage/temperature monitoring)
RoHS Status Compliant
Speed Grade Standard (no dash speed suffix)

M1AFS1500-FGG676I 676-ball fbga (27 x 27 mm) Pin Configuration Guide

Complete pinout information for M1AFS1500-FGG676I (676-ball fbga (27 x 27 mm) 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 (27 x 27 mm) package pinout diagram for M1AFS1500-FGG676I

No detailed pinout data available for M1AFS1500-FGG676I.

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-FGG676I 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-FGG676I is suitable for 6 applications: Industrial Automation Control, Power Supply Supervision and Sequencing, Military and Aerospace Control Electronics, Portable and Handheld Instrumentation, Bridge Logic and System Integration, Networking and Communication Line Cards.

🏭

Industrial Automation Control

The M1AFS1500-FGG676I suits industrial automation controllers that need both programmable logic and system supervision. Its 1.5M-gate flash fabric implements state machines, motor-control sequencing, and fieldbus glue logic, while the integrated analog block (ADC, voltage and temperature monitoring) replaces discrete supervisor ICs, cutting BOM count and board area. Because configuration is stored in on-chip flash, the controller is live at power-up with no external boot device - important in factory equipment that must resume deterministically after power dips. The industrial -40C to +100C rating covers unconditioned cabinet environments. Designers should budget I/O for the 252-user-I/O limit when interfacing multiple sensors and actuators.

Power Supply Supervision and Sequencing

The Fusion family was explicitly designed for intelligent power management, and the M1AFS1500-FGG676I exemplifies this: its embedded analog peripherals monitor multiple supply rails through the on-chip ADC with programmable thresholds, implement programmable power-up/down sequencing in the flash fabric, and log voltage/temperature excitation events. The 1.5V core (1.425-1.575V) and 676-ball FBGA with 252 I/Os support dense multi-rail backplane designs. Compared with a discrete supervisor plus separate FPGA, the single-chip approach reduces quiescent overhead and eliminates configuration boot delay, so rails can be supervised from the first milliseconds of startup. Threshold accuracy and ADC range should be verified against the family datasheet for each rail being monitored.

✈️

Military and Aerospace Control Electronics

Flash-based Fusion FPGAs are widely used in defense and aerospace control electronics because the configuration data is non-volatile and resistant to bitstream interception - there is no external configuration read at power-up to capture. The M1AFS1500-FGG676I provides 1.5M gates of reprogrammable fabric for interface bridging, telemetry formatting, and actuator control, with the -40C to +100C industrial range and Microchip's long-lifecycle policy supporting multi-year programs. The 252 user I/Os support 8/16/32-bit data streams to mixed-voltage peripherals. For radiation-sensitive orbits, pair with Microchip RTAX-series rad-hard devices (e.g., RTAX2000S) rather than relying on commercial Fusion, which is not radiation qualified.

🔬

Portable and Handheld Instrumentation

Battery-operated instruments benefit from the M1AFS1500-FGG676I's single-chip architecture: the flash fabric eliminates the external configuration flash's standby and inrush power, and the integrated voltage/temperature monitoring supports battery health display without a separate fuel-gauge IC. The 1.5M-gate capacity handles display interface bridging, sensor aggregation, and control state machines, while 252 user I/Os cover keypads, LCDs, and mixed-voltage sensor buses. The 676-ball 27x27 mm FBGA suits instruments with room for a mid-size BGA; for truly compact handhelds, the 484-ball M1AFS1500-FGG484I variant reduces footprint at the cost of I/O count. Verify ADC input range against battery voltage for direct monitoring.

🔧

Bridge Logic and System Integration

The M1AFS1500-FGG676I is a natural fit for consolidating bridge logic - memory controllers, bus format conversion, and legacy-interface emulation - into one reprogrammable device. The flash fabric supports 8, 16, and 32-bit data streams per distributor documentation, enabling wide parallel buses to legacy peripherals alongside serial interfaces. Because the design is reprogrammable in-system via JTAG with FlashPro, interface changes late in a program can be absorbed without respinning the PCB. The 252 user I/Os of the 676-ball package provide ample pin budget for wide parallel buses; designers should check I/O bank voltage compatibility in Libero SoC before mixing 3.3V legacy buses with 1.8V memory interfaces on adjacent banks.

🌐

Networking and Communication Line Cards

In networking line cards and communication backplanes, the M1AFS1500-FGG676I performs control-plane functions - PHY management, LED sequencing, hot-swap control, and board health monitoring - while the integrated analog block watches rail voltages and die temperature across the card. The 1.5M-gate flash fabric implements I2C/SPI masters for managing multiple transceivers, and 252 user I/Os connect status and control signals across the backplane. Flash configuration means the card is manageable immediately at hot-swap insertion, with no configuration download delay. Industrial temperature rating tolerances telecom cabinet environments; for high-availability systems, implement redundant FPGA images in the on-chip flash via Libero SoC design partitioning.

What is the M1AFS1500-FGG676I FPGA?
The M1AFS1500-FGG676I is a Microsemi (now Microchip Technology) Fusion family mixed-signal FPGA with 1.5 million system gates, 252 user I/Os, and a 1.5V core supply. It is built on 130nm flash-based technology and housed in a 676-ball FBGA package (27x27 mm) with an industrial -40C to +100C operating range, indicated by the 'I' suffix.
What is the price of M1AFS1500-FGG676I?
The M1AFS1500-FGG676I is priced at approximately $128.50 for a single unit as of 2026-09-02, with quantity breaks to about $89.90 at 1000 units on XAIPART. Octopart lists pricing from 4 distributors for this Microchip part, so comparing quotes across distributors is recommended since FPGA pricing varies with stock position and market demand.
Where can I buy M1AFS1500-FGG676I online?
The M1AFS1500-FGG676I can be purchased from XAIPART as well as distributors indexed by Octopart (4 distributors compare pricing), including Ampheo, AIChiplink, and Micro-Semiconductor.com, which listed 180 pcs in stock. All these channels sell new-original Microsemi/Microchip units; request a quote on XAIPART for volume pricing as of 2026-09-02.
What is the lead time for M1AFS1500-FGG676I?
Lead time for the M1AFS1500-FGG676I is [DATA_NEEDED] from authorized Microchip sources; however, independent distributors such as Micro-Semiconductor.com have shown stock (180 pcs reported). For mature Microsemi Fusion devices, expect 8-16 weeks factory lead time if distributor stock is exhausted. Confirm current stock and lead time with your distributor before scheduling production.
What are the key specifications of M1AFS1500-FGG676I that engineers should know?
Key specifications: 1.5M system gates on 130nm flash-based fabric; 252 user I/Os; 1.5V core (1.425-1.575V); 676-ball FBGA package, 27x27 mm; industrial temperature -40C to +100C; integrated mixed-signal peripherals (ADC, voltage and temperature monitoring); flash configuration requiring no external boot device. Per the Fusion family datasheet and distributor listings, it supports 8/16/32-bit data streams.
What is the difference between M1AFS1500-FGG676I and AFS1500-FGG676I?
The M1AFS1500-FGG676I and AFS1500-FGG676I are the same Fusion 1.5M-gate die in the same 676-ball FBGA package with industrial temperature rating; the 'M1' prefix denotes the Microsemi/Microchip part numbering revision used for newer builds. Functionally they are interchangeable drop-in equivalents, as reflected in distributor comparison pages such as Utmel and Findchips which compare the two directly.
M1AFS1500-FGG676I vs M1AFS1500-FGG484I - which should I choose?
Choose the FGG676I when you need the full 252 user I/O count and maximum ball pitch flexibility; the FG484I variant offers the same 1.5M-gate die in a smaller 484-ball package with fewer available I/Os. Both share the same fabric, 1.5V core, and industrial rating, so the decision is driven purely by I/O count and board footprint. Per the Fusion family datasheet, the 676-ball package is the highest-I/O option for the AFS1500.
Is there a cross-brand equivalent for M1AFS1500-FGG676I?
No true cross-brand drop-in equivalent exists for the M1AFS1500-FGG676I. Its 676-ball FBGA footprint and flash-based Fusion fabric with integrated analog peripherals are unique to Microchip/Microsemi. Competitor FPGAs from Xilinx, Intel (Altera), Lattice, or Gowin with similar gate counts use different packages and architectures, so they require PCB redesign - they are functional alternatives only, never pin-to-pin replacements.
What is the best drop-in replacement for M1AFS1500-FGG676I?
The best drop-in replacements are same-family Microchip parts: M1AFS1500-FG676I (commercial temp, same 676-ball footprint) and M1AFS1500-1FGG676I (speed grade -1, same FGG676 package). The AFS1500-FGG676I is also functionally identical. All share the identical ball map, 1.5M-gate fabric, and 1.5V core, allowing soldering onto the same PCB land pattern without redesign.
Can M1AFS1500-1FGG676I replace M1AFS1500-FGG676I?
Yes. The M1AFS1500-1FGG676I is a pin-to-pin drop-in replacement for the M1AFS1500-FGG676I - same 676-ball FBGA package, same 1.5M-gate flash fabric, same 1.5V core and industrial temperature rating. The '-1' denotes a slower speed grade; if your timing closure has margin (typical for control and bridge logic), the -1 grade works at lower cost. Verify static timing in Libero SoC for clock-domain-critical designs.
Where can I download the M1AFS1500-FGG676I datasheet PDF?
The M1AFS1500-FGG676I datasheet is available from Microchip's official website as part of the Fusion family datasheet document, and mirrored on distributor pages such as Ampheo, EEWORLD Datasheet, and electronicsdatasheets.com. On XAIPART, use the datasheet link on this product page. Always download from the manufacturer or authorized channels to ensure you have the latest revision covering the FGG676I industrial variant.
Where can I find the M1AFS1500-FGG676I pinout?
The complete 676-ball pinout for the M1AFS1500-FGG676I is in the Fusion family datasheet's package and pinout chapter on the Microchip website. Because a 676-ball BGA pin map is too large for a product page listing, refer to the manufacturer datasheet or use the pin report generated by Microchip Libero SoC design software, which exports the exact ball assignments for your design's I/O constraints.
Is M1AFS1500-FGG676I RoHS compliant?
Yes, the M1AFS1500-FGG676I is RoHS compliant - current production Microsemi/Microchip Fusion devices are lead-free and RoHS. Distributor listings for this MPN classify it as RoHS compliant with lead-free finish. For REACH, halogen-free, and conflict-minerals declarations, obtain the specific compliance certificate from Microchip's product compliance portal, since declaration status can differ per date code.
Is the M1AFS1500-FGG676I still in production or obsolete?
The M1AFS1500-FGG676I remains an active part in Microchip's catalog; the Fusion family is a mature product line but not discontinued, and distributor stock (e.g., 180 pcs at Micro-Semiconductor.com) is replenishable through Microchip channels. That said, for new designs Microchip recommends evaluating newer families such as PolarFire, and long-term programs should plan lifecycle risk mitigation for 130nm-generation devices.
What software do I need to design with M1AFS1500-FGG676I?
Design with Microchip (Microsemi) Libero SoC design suite, which supports the Fusion family with synthesis, place-and-route, timing analysis, and the SmartDesign graphical environment. The Fusion mixed-signal peripherals are configured using the embedded analog configuration tools in Libero. Program the device in-system through the JTAG port using a FlashPro programmer, which writes the on-chip flash configuration cells directly.
Hey Google, what can replace a M1AFS1500-FGG676I?
The safest replacements are same-footprint Microchip parts: M1AFS1500-FG676I, M1AFS1500-1FGG676I, and the earlier-numbered AFS1500-FGG676I - all solder directly onto the same 676-ball FBGA board. There is no cross-brand pin-compatible replacement; Xilinx, Intel, and Lattice devices of similar capacity use different packages and require PCB redesign. Always verify speed grade fit in Libero SoC before substitution.

Engineering reference data for M1AFS1500-FGG676I — comparison, design guidance, and compliance information.

Selection Guide

Choose the M1AFS1500-FGG676I when you need the maximum user I/O (252) of the Fusion 1.5M-gate family in industrial temperature, with single-chip flash configuration and integrated analog supervision. If your design has proven timing slack, the M1AFS1500-1FGG676I saves cost with the identical footprint; if you need faster clock domains, step up to M1AFS1500-2FGG676I. Legacy AFS1500-FGG676I stock is functionally identical and acceptable for repairs but prefer M1-prefixed units for new builds. If board area is tight and I/O count permits, the 484-ball M1AFS1500-FGG484I shrinks the footprint but is NOT pin-compatible - it requires PCB redesign. There is no cross-brand drop-in: Xilinx, Intel, and Lattice parts of similar capacity all need new packages and layouts. For radiation environments, move to Microchip RTAX-series instead.

Comparison with Alternatives

Parameter This Product M1AFS1500-FG676I M1AFS1500-1FGG676I M1AFS1500-2FGG676I M1AFS1500-FGG484I
Package 676-FBGA (27x27 mm) 676-FBGA - same footprint 676-FBGA - same footprint 676-FBGA - same footprint 484-FBGA - different
Brand Microchip Technology (Microsemi) Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 1,500,000 1,500,000 1,500,000 1,500,000 1,500,000
User I/O 252 252 252 252 [DATA_NEEDED]
Core Voltage 1.5 V (1.425-1.575 V) 1.5 V 1.5 V 1.5 V 1.5 V
Speed Grade Standard Standard -1 (slower) -2 (faster) Standard
Temperature Range -40C to +100C (Industrial) Industrial (I suffix) Industrial (I suffix) Industrial (I suffix) Industrial (I suffix)
Configuration On-chip flash (single chip) On-chip flash On-chip flash On-chip flash On-chip flash

Key Differentiators

  • Full 252 user I/O count in highest-I/O Fusion package (vs M1AFS1500-FGG484I)
  • Standard speed grade balances cost and timing (vs M1AFS1500-1FGG676I)
  • Industrial temperature rating (vs M1AFS1500-FG676 (commercial))

Design Notes

The 676-ball FBGA (1.0 mm pitch, 27x27 mm) requires controlled BGA fanout: use via-in-pad with filled and capped vias where layer count allows, otherwise dog-bone fanout with 0.15 mm trace/0.15 mm space on the outer layer. Plan at least 6-8 signal layers to escape 252 used balls. Specify X-ray inspection at assembly since ball joints are not optically inspectable. Follow the Fusion PCB layout guidelines in the Microchip hardware user guide for decoupling placement.

Supply the 1.5V core rail within 1.425-1.575V (per distributor spec) and add bulk plus high-frequency decoupling (e.g., multiple 100 nF ceramics plus 47 uF bulk per bank). Estimated: at full toggle rates on 252 I/Os, core plus I/O current can reach the ampere range - size the buck converter and copper pours for the measured power figure from Libero SoC's SmartPower analysis rather than worst-case datasheet numbers.

The 'I' suffix means industrial -40C to +100C; do not substitute a commercial-temp variant (no 'I') in industrial programs even if the footprint matches. Also confirm speed-grade timing in Libero SoC: the -1 and -2 grades share the same die but differ in static timing margins. When migrating from AFS1500-FGG676I legacy numbering, verify date-code and compliance certificates with the distributor.

Compliance Information

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

RoHS compliant and lead-free per distributor listings for Microsemi/Microchip Fusion devices. REACH and halogen-free status should be confirmed via Microchip's product compliance documentation for the specific date code.

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 Corporation M1AFS1500-FGG676I AFS1500-FGG676I M1AFS1500-FG676I M1AFS1500-1FGG676I M1AFS1500-2FGG676I Fusion FPGA FPGA programmable logic device mixed-signal FPGA flash-based FPGA 676-FBGA BGA surface mount 130nm process RoHS Libero SoC FlashPro JTAG industrial temperature range power supply supervision RTAX rad-hard FPGA PolarFire
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