Microchip Technology

M7AFS600-FGG484 - 600K Gate Fusion FPGA, 484-BGA | Microchip

MPN: M7AFS600-FGG484 ✓ Active
In Stock Ships in 1-3 business days
1.5 V Vdss 484-ball FBGA (FGG484), 23 x 23 x 2.44 mm Package 1098.9 MHz (distributor-listed) Speed Flash (non-volatile, secure) Memory
From $232.9 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $273.99 $273.99
10 $261.29 $2,612.90
100 $247.99 $24,799.00
500 $239 $119,500.00
1,000 $232.9 $232,900.00
ℹ️ All prices are in USD

Drop-in alternatives for M7AFS600-FGG484 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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M7AFS600-FGG484I

✅ Drop-In
Microchip Technology
📦 484-ball FBGA (FGG484)
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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M7AFS600-2FGG484I

✅ Drop-In
Microchip Technology
📦 484-ball FBGA (FGG484)
Fusion (M7 military/extended screening) · 600K · 172 · 1.5 V · 484-BGA (FBGA) · 1 mm · -2 · 1470.59 MHz

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$243.75 / Unit

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M7AFS600-1FGG484I

✅ Drop-In
Microchip Technology
📦 484-ball FBGA (FGG484)
Fusion (M7AFS600) · 600000 · 172 · 110592 · ARM CoreMP7 · 1.5 V · 1.425 V to 1.575 V · 1282.05 MHz

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M7AFS600-1FG484

✅ Drop-In ⚠️ 参数待验证
Microchip Technology
📦 484-ball FBGA (FG484)
M7AFS600-1FG484 · Fusion FPGA · 600000 · 110592 · ARM CoreMP7 · 172 · 130 nm CMOS, 7-layer metal, Flash-based · 1.5 V

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$181.3 / Unit

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M1AFS600-FG484I

✅ Drop-In ⚠️ 参数待验证
Microchip Technology
📦 484-ball FBGA (FG484)
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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M1AFS1500-1FGG484I

✅ Drop-In ⚠️ 参数待验证
Microchip Technology
📦 484-ball FBGA (FGG484)
Microchip Technology (originally Microsemi Corporation) · Fusion Mixed-Signal FPGA · 1500000 gates · 38400 · ARM Cortex-M1 · 223 · 276480 bits · 1.5 V

✓ In Stock

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M7AFS600-FGG484 Maximum Ratings & Electrical Characteristics

Family Fusion (Mixed-Signal FPGA)
System Gates 600 K
Embedded Processor ARM CoreMP7 (hard core)
Technology 130 nm flash-based
Core Voltage 1.5 V
User I/O 172
Maximum Operating Frequency 1098.9 MHz (distributor-listed)
Configuration Memory Flash (non-volatile, secure)
Package 484-ball FBGA (FGG484), 23 x 23 x 2.44 mm
Ball Pitch 1 mm
Mounting Type Surface Mount
Packaging Tray
RoHS Status Compliant (Pb-free balls, FGG suffix)
Total RAM Bits 110592 (per DigiKey listing)

M7AFS600-FGG484 484-ball fbga (fgg484), 23 x 23 x 2.44 mm Pin Configuration Guide

Complete pinout information for M7AFS600-FGG484 (484-ball fbga (fgg484), 23 x 23 x 2.44 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.

484-ball fbga (fgg484), 23 x 23 x 2.44 mm package pinout diagram for M7AFS600-FGG484

No detailed pinout data available for M7AFS600-FGG484.

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-FGG484 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-FGG484 is suitable for 6 applications: Industrial Automation and Motor Control, Intelligent Power Management and Monitoring, Portable and Battery-Powered Instrumentation, Aerospace and Defense Secure Embedded Control, Embedded Networking and Communication Cards, Smart Medical and Lab Device Controllers.

🏭

Industrial Automation and Motor Control

The M7AFS600-FGG484 fits industrial automation because it fuses a 600K-gate deterministic flash fabric with an ARM CoreMP7 hard processor, letting one chip run the real-time control loop and the supervisory HMI/communication tasks simultaneously. Its 172 user I/O interface PWM bridges, encoders, and fieldbus PHYs directly, while the Fusion family's programmable analog blocks sample current and voltage feedback without external ADCs. Because the configuration is flash-based, the controller is live within microseconds of power-up - essential for safe sequencing of drives and actuators. In a typical topology, the fabric implements the PWM generators and protection interlocks at sub-microsecond latency while the CoreMP7 executes the fieldbus stack and diagnostics, eliminating a separate microcontroller and cutting BOM count and board area in 24V industrial systems.

Intelligent Power Management and Monitoring

Power-management applications favor the M7AFS600-FGG484 because Fusion's mixed-signal architecture was purpose-built for system power supervision: programmable analog I/O monitors multiple rails, and the flash fabric enforces sequencing and fault interlocks in hardware with deterministic timing. The 1.5V core keeps device consumption moderate, while the non-volatile configuration means power-good and brown-out logic is active before software loads - a hard requirement in multi-rail server and base-station supplies. Designers typically wire the analog monitoring inputs through the on-chip analog mux into fabric comparators, with the ARM CoreMP7 logging events and driving PMBus-style communication. The 172 available I/O handle fan control, hot-swap signaling, and LED fault indication, and the 23 x 23 mm 484-ball FBGA consolidates what would otherwise need an MCU, a CPLD, and a supervisor IC.

📱

Portable and Battery-Powered Instrumentation

Handheld and portable instruments benefit from the M7AFS600-FGG484's single-chip integration: the ARM CoreMP7 runs the user interface and data logging, the 600K-gate fabric implements the acquisition engine and digital signal conditioning, and Fusion's low-cost 130nm flash process keeps the device price near $274 in single units per LCSC's 2026-09-02 listing. Instant-on flash configuration matters in battery instruments because measurements are available the moment power is applied, with no configuration time penalty typical of SRAM FPGAs. The 172 user I/O connect displays, touch controls, and sensor front ends, while the mixed-signal blocks digitize battery voltage and temperature for fuel-gauging. Designers should budget the 1.5V core rail plus I/O bank supplies and exploit fabric clock gating to keep average current low in sleep-dominant duty cycles.

✈️

Aerospace and Defense Secure Embedded Control

The M7AFS600-FGG484 suits defense and aerospace control electronics because flash-based configuration provides inherent resistance to configuration readback and bitstream cloning - a recognized security advantage over SRAM FPGAs - and because the fabric tolerates the single-event and total-dose environment better than deep-submicron SRAM alternatives of its era. The ARM CoreMP7 executes flight software while the 600K-gate fabric implements deterministic interfaces such as MIL-STD-1553-style protocols, discrete I/O, and safety interlocks across the 172 user I/O. Industrial-temperature variants (M7AFS600-FGG484I) extend the operating envelope beyond commercial ranges. Because the device powers up instantly from non-volatile memory, no external configuration flash is exposed on the flight board, simplifying TAM/SEU hardening and reducing component count in high-reliability single-string architectures.

🌐

Embedded Networking and Communication Cards

Line cards, industrial Ethernet nodes, and bridge controllers use the M7AFS600-FGG484 where glue logic, a processor, and moderate datapath logic must coexist on one die. The 600K-gate fabric implements MAC wrappers, FIFOs, and bus bridges at up to the 1098.9 MHz internal rating cited by distributors, while the ARM CoreMP7 runs protocol stacks and management firmware. Flash configuration gives instant link availability after power-on, and configuration security protects proprietary firmware in network equipment deployed in the field. The 484-ball FBGA with 1 mm pitch offers 172 I/O for PHY interfaces, MDIO buses, LED banks, and backplane signaling, enabling a compact 23 x 23 mm footprint for dense rack hardware. Designers should follow the datasheet's bank voltage rules when mixing 3.3V, 2.5V, and 1.8V I/O standards across banks.

💊

Smart Medical and Lab Device Controllers

Benchtop medical devices and lab instruments adopt the M7AFS600-FGG484 to consolidate control, acquisition, and safety logic: the flash fabric enforces hardware interlocks (door sensors, emergency stop, over-range cutoff) with deterministic response independent of software state, a compliance-friendly property for device risk analysis. The ARM CoreMP7 handles the touch UI, protocol interfaces, and data export, while Fusion's analog monitors supply rails and sensor bias integrity. Instant-on operation means the instrument is ready the moment mains power is applied, and the non-volatile, secure configuration protects calibration and firmware IP. With 172 user I/O in a 23 x 23 mm FBGA, one chip replaces the typical MCU-plus-CPLD pair, shortening the BOM. The industrial-grade M7AFS600-FGG484I variant is recommended for designs targeting wide environmental margins.

What is the M7AFS600-FGG484?
The M7AFS600-FGG484 is a Microchip Technology (Microsemi) Fusion mixed-signal FPGA with 600,000 system gates, an embedded ARM CoreMP7 hard processor, 172 user I/O, and a 1.5V core on a 130nm flash-based process. It comes in a 484-ball FBGA package (23 x 23 x 2.44 mm, 1 mm ball pitch). According to distributor listings from DigiKey and Newark, the device ships in trays and is RoHS compliant with Pb-free balls indicated by the FGG suffix.
What is the price of M7AFS600-FGG484?
The M7AFS600-FGG484 starts at approximately $273.99 for single-unit quantity, according to LCSC's in-stock listing as of 2026-09-02. Octopart aggregates pricing from 6 distributors for this part, and XAIPART lists quantity breaks at 10, 100, 500, and 1000 pieces with decreasing unit cost. Because this is a high-value FPGA, always request quotes from multiple distributors, as pricing varies with stock position and grade suffix.
Where to buy M7AFS600-FGG484 online?
The M7AFS600-FGG484 can be purchased online from DigiKey, Mouser (including Mouser Europe), Newark Electronics, LCSC, Hotenda, Jotrin, Suntsu, and Veswin, with live availability aggregated on Octopart. DigiKey lists the part as in stock and shipping same day. On XAIPART you can request a quote directly on this page, and the LCSC product page (C7221868) confirms in-stock status with pricing from $273.9969 as of 2026-09-02.
What is the difference between M7AFS600-FGG484 and M7AFS600-FG484?
The only difference is the ball metallurgy: FGG denotes Pb-free (lead-free) solder balls for RoHS assembly, while FG denotes standard balls for leaded processes. Both are the same 484-ball FBGA package with identical pinout, 600K gates, ARM CoreMP7, and 1.5V core. According to Microsemi/Microchip Fusion documentation, all devices in the same 484-ball package are pin compatible, so the choice depends purely on your board assembly's soldering process and RoHS requirements.
What is the best drop-in replacement for M7AFS600-FGG484?
The best drop-in replacement for M7AFS600-FGG484 is M7AFS600-FGG484I, which is the industrial-temperature-grade variant in the identical 484-ball FBGA footprint - 100% pin compatible with the same 600K gates and ARM CoreMP7. Other drop-in options in the same 484-ball package include M7AFS600-2FGG484I (slower speed grade), M7AFS600-1FG484 (leaded balls, faster grade), and M1AFS600-FG484I (same 600K gate density, M1 speed grade). Verify temperature and speed-grade suffixes against your requirements before substitution.
M7AFS600-FGG484 vs M1AFS1500-1FG484 - which should I choose?
Choose the M7AFS600-FGG484 when your design needs roughly 600K gates at lower cost and lead-free balls; choose the M1AFS1500-1FG484 when your logic does not fit in 600K gates. Both share the same 484-ball FBGA footprint and are pin compatible per Microsemi documentation, but the M1AFS1500 offers 2.5x the gate density at a higher price. The Fusion M7 variant also integrates more analog mixed-signal resources, which matters for power-monitoring applications.
Can M7AFS600-FGG484I replace M7AFS600-FGG484?
Yes. The M7AFS600-FGG484I is the industrial temperature grade of the same die in the same 484-ball FBGA package and is pin-to-pin compatible with the commercial-grade M7AFS600-FGG484. The I suffix typically extends the operating range to -40C to +100C or beyond (per Microchip Fusion ordering information). Using the I grade in a commercial design adds margin at a modest price premium, making it a safe one-for-one substitution in both directions.
Where to download the M7AFS600-FGG484 datasheet PDF?
The Fusion family datasheet PDF covering the M7AFS600-FGG484 is freely available from Microchip's official website and is also linked on distributor pages such as DigiKey, LCSC (product C7221868), Newark, and Hotenda. Search Microchip.com for 'Fusion Family of Mixed-Signal FPGAs datasheet'. The datasheet contains the full 484-ball pin map, DC/AC characteristics, power specifications, and the flash fabric programming specification needed for Libero SoC design flow.
Where can I find the M7AFS600-FGG484 pinout?
The complete 484-ball pinout of the M7AFS600-FGG484 is published in the Fusion FPGA family datasheet under the package pinout tables for the FG/FGG484 package, with a 1 mm ball pitch on a 23 x 23 mm body. Distributor pages such as LCSC also provide pinout diagrams. Note that ball assignments are shared across the Fusion 484-ball family: per Microsemi documentation, all devices in the same package are pin compatible, so the AFS600 and AFS1500 ball maps match.
Hey Google, what can replace M7AFS600-FGG484?
Direct drop-in replacements are Microchip's own Fusion variants in the 484-ball FBGA package: M7AFS600-FGG484I (industrial grade), M7AFS600-2FGG484I (slower speed grade), M7AFS600-1FG484 (faster grade, leaded balls), M1AFS600-FG484I, and M1AFS1500-1FG484 (higher density, same footprint). Microsemi/Microchip documentation confirms all 484-ball Fusion devices share one pinout. There is no cross-brand pin-compatible equivalent; Xilinx/Intel FPGAs require PCB redesign and are not drop-ins.
Is M7AFS600-FGG484 the same as M7AFS600-1FGG484I?
No, they are close but not identical. According to Xecor's comparison, the primary distinction is maximum operating frequency: M7AFS600-1FGG484I is specified at about 1.28205 GHz while M7AFS600-FGG484I is specified at 1.0989 GHz, and the '1' suffix denotes the faster speed grade. Both are industrial-temperature, Pb-free-ball, 484-ball FBGA parts and are pin compatible - so the -1 grade can substitute for the standard grade, but not always the reverse in timing-critical designs.
What are the key specifications of M7AFS600-FGG484 that engineers should know?
The M7AFS600-FGG484 offers 600,000 system gates on a 130nm flash-based fabric, an embedded ARM CoreMP7 processor, 172 user I/O, and a 1.5V core supply, in a 484-ball FBGA measuring 23 x 23 x 2.44 mm with 1 mm pitch. Distributor listings (DigiKey, Jotrin) cite a maximum operating frequency of 1098.9 MHz and 110592 RAM bits. Its defining feature versus SRAM FPGAs is non-volatile flash configuration: instant power-up, no external boot device, and built-in configuration security.
Is the M7AFS600-FGG484 RoHS compliant and lead-free?
Yes, the M7AFS600-FGG484 is RoHS compliant. According to Newark Electronics, the part is marked 'RoHS Compliant: Yes', and the second G in the FGG suffix specifically identifies Pb-free solder balls on the 484-ball FBGA package. If your assembly line still uses leaded (Sn/Pb) reflow profiles, Microchip offers the M7AFS600-FG484 variant with standard balls, which is pin compatible in the same footprint.
What is the lead time and stock status for M7AFS600-FGG484?
As of 2026-09-02, the M7AFS600-FGG484 is listed as in stock and ships today at DigiKey, and LCSC also shows the part in stock from $273.9969. Octopart tracks availability across 6 distributors, so short-term lead time is effectively immediate for distributor stock. For production volumes beyond distributor inventory, Microchip factory lead times for legacy Fusion parts can extend to several months - plan orders accordingly and consider the industrial-grade FGG484I variant, which is often stocked more broadly.
When should I choose the M7AFS600-FGG484 over an SRAM FPGA?
Choose the M7AFS600-FGG484 when your system needs instant-on, single-chip operation with integrated analog mixed-signal functions and configuration security - typical for industrial control, power management, and defense hardware. The flash fabric boots in microseconds with no external configuration flash, resists readback cloning, and lowers BOM count. Choose an SRAM FPGA instead when you need cutting-edge DSP blocks, multi-gigabit transceivers, or very high logic density that the 600K-gate Fusion fabric cannot provide.
Is M7AFS600-FGG484 suitable for industrial motor control and power monitoring?
Yes. The Fusion family was explicitly designed for intelligent system control: it combines the 600K-gate flash fabric, ARM CoreMP7 processor, programmable analog front ends, and 172 user I/O in one chip, which suits smart motor control, power-supply supervision, and board-level health monitoring. The non-volatile configuration ensures the controller is active immediately at power-up - a requirement in industrial sequencing applications - and the flash technology tolerates the radiation and secure-boot concerns common in factory and infrastructure equipment.

Engineering reference data for M7AFS600-FGG484 — comparison, design guidance, and compliance information.

Selection Guide

Choose the M7AFS600-FGG484 when you need roughly 600K gates plus an embedded ARM CoreMP7 and flash-based instant-on, secure configuration in a RoHS 484-ball FBGA - the sweet spot for industrial control, power supervision, and secure embedded controllers at about $274 unit price (LCSC, as of 2026-09-02). Choose the M7AFS600-FGG484I or 1FGG484I for wide-temperature or faster timing needs at the identical footprint. Choose M7AFS600-1FG484 for legacy leaded assembly lines. If logic does not fit in 600K gates, the pin-compatible M1AFS1500-1FGG484I doubles-plus density without a PCB respin. If you need no ARM core or analog, the A3P600 ProASIC3 variants are lower cost. There is no cross-brand drop-in: switching to Xilinx or Intel requires a full board redesign.

Comparison with Alternatives

Parameter This Product M7AFS600-FGG484I M7AFS600-2FGG484I M7AFS600-1FGG484I M7AFS600-1FG484 M1AFS600-FG484I M1AFS1500-1FGG484I
Package 484-ball FBGA (FGG484), 23 x 23 x 2.44 mm 484-ball FBGA (FGG484) - same 484-ball FBGA (FGG484) - same 484-ball FBGA (FGG484) - same 484-ball FBGA (FG484) - same footprint, leaded balls 484-ball FBGA (FG484) - same footprint, leaded balls 484-ball FBGA (FGG484) - same
Brand Microchip Technology (Microsemi/Actel Fusion) Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 600 K 600 K 600 K 600 K 600 K 600 K 1500 K
Maximum Operating Frequency 1098.9 MHz (distributor-listed) 1098.9 MHz Lower than standard (-2 speed grade) 1282.05 GHz? No - 1282.05 MHz (1.28205 GHz per Xecor) [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
User I/O 172 172 172 172 172 172 [DATA_NEEDED]
Core Voltage 1.5 V 1.5 V 1.5 V 1.5 V 1.5 V 1.5 V 1.5 V
Ball Metallurgy Pb-free (FGG) Pb-free (FGG) Pb-free (FGG) Pb-free (FGG) Standard (FG, leaded) Standard (FG, leaded) Pb-free (FGG)
Temperature Grade Commercial (0C min per grade suffix conventions) Industrial (I suffix) Industrial, 0C min per Xecor Industrial (-40C min per Xecor) [DATA_NEEDED] Industrial (I suffix) Industrial (I suffix)

Key Differentiators

  • Non-volatile flash fabric with no external configuration device (vs SRAM FPGAs (e.g., Xilinx/Intel))
  • Integrated ARM CoreMP7 hard processor saves a separate MCU (vs A3P600-1FGG484I)
  • Lead-free (FGG) balls for RoHS assembly (vs M7AFS600-1FG484)
  • Extended temperature availability (vs M7AFS600-2FGG484I)
  • Trade-off: moderate logic density (vs M1AFS1500-1FGG484I)

Design Notes

The M7AFS600-FGG484 requires a 1.5V core rail plus separate I/O bank supplies; sequence supplies per the Fusion datasheet power-up specification and hold I/O pins tri-stated until rails stabilize. Estimated: a 600K-gate flash fabric switching at moderate toggle rates typically draws hundreds of milliamps on the core rail, so budget a regulator with at least 50% headroom over your Libero power-calculator result and add bulk (100 uF) plus per-pin 0.1 uF decoupling at all supply balls.

The 1 mm pitch 484-ball FBGA (23 x 23 mm body) is routable with via-in-pad dog-bone escape on 0.15 mm drilled vias; a 6-layer stack (two dedicated ground planes) keeps I/O return paths short and manages the die's thermal path through the ball array. Provide at least 4 x 4 via arrays under the corner GND balls and connect them to a solid plane. Follow Microchip's Fusion PCB layout application note for ball-out escape routing patterns before finalizing footprint generation in your CAD tool.

Do not mix FGG and FG suffixes blindly: FGG devices use Pb-free balls requiring lead-free reflow profiles, while FG parts with standard balls suit Sn/Pb assembly - using an FGG part on a leaded profile or vice versa risks ball joint defects. Also, speed-grade suffixes matter: a standard-grade part cannot guarantee timing closure for a design implemented on the faster -1 grade (1.28205 GHz vs 1.0989 MHz-class ratings per Xecor). Always re-run Libero timing analysis after any suffix substitution.

With 172 user I/O on a 1 mm-pitch BGA, group fast-switching outputs (parallel buses, clock fanout) onto banks adjacent to GND balls and keep stub lengths under trace-rise-time fractions. Use series termination (estimated 22-33 ohm based on typical 3.3V CMOS output impedance) on clocks leaving the device, and reference switching signals to the adjacent ground plane to limit simultaneous-switching noise on the mixed-signal analog inputs that Fusion shares with the fabric.

Compliance Information

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

Newark Electronics lists 'RoHS Compliant: Yes'; FGG suffix denotes Pb-free solder balls per Microchip Fusion ordering conventions. 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 Corporation Actel M7AFS600-FGG484 M7AFS600-FGG484I M1AFS1500-1FGG484I A3P600-1FGG484I Fusion FPGA family FPGA field-programmable gate array ARM CoreMP7 flash-based FPGA non-volatile configuration 130 nm process 484-ball FBGA BGA package family RoHS Pb-free solder balls Libero SoC design suite mixed-signal FPGA system gates industrial motor control power management aerospace and defense electronics PSRR-free instant-on power-up
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