FPGA & CPLD
Products (6352)
M1AFS250-2FG256I - 250K Gate Fusion FPGA, ARM M1 | Microchip
The Microchip Technology (formerly Microsemi/Actel) M1AFS250-2FG256I is a Fusion mixed-signal FPGA integrating 250K system gates, 114 user I/O, and an embedded ARM Cortex-M1 hard processor core in a 256-ball FBGA (256-LBGA) package, operating from a 1.5V core supply with a speed grade -2 and industrial temperature range. A Fusion FPGA is a monolithic mixed-signal programmable logic device that combines flash-based fabric, configurable analog blocks, large flash memory, and clock management circuitry on one die. Within the power-management hierarchy, it belongs to the FPGA family of programmable logic devices, sitting above CPLDs in density and below high-end SRAM FPGAs in raw performance, while uniquely offering single-chip analog-plus-digital integration. Key differentiating features include a nonvolatile flash-based fabric that retains its configuration when powered off, Live-at-Power-Up (LAPU) operation that eliminates the need for an external configuration device, and 350 MHz system performance on an advanced 130-nm 7-layer-metal flash CMOS process. The M1 prefix denotes Fusion parts with ARM Cortex-M1 support, enabling a soft-to-hard processor migration path. Technically, the fabric stores configuration in FlashSwitch and Flash RAM cells, so no configuration load time exists at power-up, a significant advantage over SRAM FPGAs for industrial control, and the integrated analog block provides voltage, current, and temperature monitoring channels for total-system supervision. Typical applications include industrial automation and motor control, power supply supervision and telemetry, embedded systems requiring a single-chip CPU-plus-FPGA-plus-analog solution, and military/aerospace control electronics where nonvolatile, instant-on logic is mandated. When designing with this part, note that the standard FG (non-green) package option carries RoHS non-compliant lead content; the FGG variant is the lead-free alternative, and both share the same footprint. This page synthesizes distributor stock data, same-family drop-in alternatives, and design guidance not consolidated in the manufacturer datasheet.
M1AFS250-2FGG256 - Fusion FPGA 250K Gates ARM M1 | Microchip
The Microchip Technology M1AFS250-2FGG256 is a Fusion mixed-signal FPGA with an embedded ARM Cortex-M1 soft processor core, 250K system gates, 36864 registers, 114 user I/Os, and flash-based programmable logic in a 256-ball LBGA (FGG256) package. It operates from a 1.5V core supply and is fabricated on a 130nm flash-based process. A Fusion FPGA is a monolithic mixed-signal programmable device that combines configurable analog blocks, large flash memory, clock generation and management circuitry, and flash-based programmable logic on a single die. Within the power-management hierarchy, it sits between general-purpose MCUs and larger programmable SoCs, and the M1 prefix denotes Fusion devices that integrate the ARM Cortex-M1 processor as a hard, deterministic 32-bit RISC core instead of relying solely on soft-core synthesis. Key features include the ARM Cortex-M1 embedded processor for deterministic control, configurable analog periphery (voltage monitors and analog I/O) that reduces external component count, flash-based fabric that is instant-on and inherently secure against bitstream readback, and comprehensive on-chip clock generation and management circuitry. Technically, the device uses Microsemi/Microchip's flash-based 130nm programmable logic fabric, which retains configuration through power cycles and eliminates external configuration PROMs. The analog block integrates multiple analog inputs and voltage monitoring, enabling power-supply supervision and board-level telemetry directly inside the FPGA. Typical applications include industrial control and monitoring systems, power-supply management and hot-swap control boards, and embedded systems requiring a single-chip CPU-plus-FPGA combination for space-constrained designs. A key design consideration is pin compatibility: according to the Fusion family datasheet, Fusion devices in the same package are pin compatible, so migrating from M1AFS250 to AFS600 or AFS1500 in the same 256-ball package requires no PCB rework. This page synthesizes distributor pricing, drop-in family alternatives, and practical design notes not found in the manufacturer datasheet alone.
M1AFS250-2FGG256I - Fusion FPGA 250K Gates ARM Cortex-M1 | Microchip
The Microchip Technology M1AFS250-2FGG256I is a Flash-based mixed-signal FPGA from the Actel Fusion family, offering 250K system gates, an embedded ARM Cortex-M1 hard processor core, 114 user I/Os, 36864 registers (DFFs), and a 256-ball Fine-Pitch BGA (FGG256) package rated for the industrial temperature range. It is fabricated on an advanced 130-nm, 7-layer-metal flash-based CMOS process and supports system performance up to 350 MHz. A Fusion FPGA is a type of field-programmable gate array that integrates programmable logic, flash configuration memory, and analog mixed-signal peripherals on a single die. Within the programmable logic hierarchy (FPGA -> programmable logic device -> programmable semiconductor), the Fusion family is distinctive because it adds analog-to-digital conversion, voltage/temperature monitoring, and power-management functionality alongside the fabric and the ARM Cortex-M1 soft-to-hard MCU integration, enabling true single-chip system solutions. Key features include nonvolatile Flash configuration that retains the program when powered off, Live-at-Power-Up (LAPU) operation so the device is functional as soon as system power is applied within normal operating specifications, and integrated security: a 128-bit flash-based lock and industry-leading AES decryption to protect programmed IP and configuration data. The -2 speed grade and industrial (I) temperature grade make the device suited to harsh-environment embedded control. Technical depth: because configuration storage is Flash rather than SRAM, no external configuration PROM is required, reducing board area and BOM cost while improving configuration-data security. The embedded ARM Cortex-M1 processor allows firmware plus programmable logic in one chip, and the analog subsystem (ADC, monitoring blocks) eliminates external supervisory components in many designs. Typical applications include industrial automation and motor-control interfaces, power-supply and system monitoring, portable and low-power instrumentation, and embedded controllers that combine an MCU with glue logic and analog sensing. Design consideration: verify I/O bank voltage assignments and analog pin usage early in the FGG256 footprint layout, since mixed-signal pin multiplexing constrains placement more than a pure-digital FPGA. This page synthesizes distributor pricing, drop-in family alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS250-2PQ208 - Fusion FPGA 250K Gates | Microchip
The Microchip Technology M1AFS250-2PQ208 is a Fusion mixed-signal Field Programmable Gate Array (FPGA) with 250,000 equivalent system gates, 93 configurable I/O pins, and 36,864 bits of embedded flash memory, housed in a 208-pin PQFP (Plastic Quad Flat Package). It operates from a 1.5V core supply (1.425V to 1.575V) and integrates configurable analog blocks, large flash memory, and comprehensive clock generation and management circuitry in a monolithic flash-based device. A Field Programmable Gate Array (FPGA) is an integrated circuit that can be configured by the customer after manufacturing to implement arbitrary digital logic functions. FPGAs belong to the programmable logic device (PLD) family, which sits above application-specific standard products (ASSPs) in flexibility. The Fusion family adds mixed-signal capability, combining programmable logic with analog front-end, flash memory, and clock management, making it a system-on-chip (SoC) solution for embedded applications. Key features include 250K system gates, 93 user I/Os, 36,864 bits of flash memory, and a 1.5V core supply. The flash-based architecture provides instant-on operation, low power consumption, and inherent security with a 128-bit flash lock and AES decryption for IP protection. The device supports up to 350 MHz system performance and includes integrated PLLs for clock generation. The Fusion architecture integrates a 12-bit ADC, analog comparators, and a real-time counter, enabling mixed-signal designs without external components. The flash memory can be used for data storage or boot code, and the device supports in-system programming. The 208-pin PQFP package offers a compact footprint for board-level integration. Typical applications include industrial control, automotive electronics, medical devices, and communication systems where mixed-signal processing and secure configuration are required. The device is ideal for implementing motor control, sensor interfacing, and power management in a single chip. When designing with this device, ensure the core supply is within 1.425V to 1.575V and provide adequate decoupling. The flash-based configuration retains the design on power-up, eliminating the need for external configuration memory. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, providing engineers with a comprehensive resource for evaluating the M1AFS250-2PQ208.
M1AFS250-2PQ208I - Fusion FPGA 250K Gates 93 I/O | Microchip
The Microsemi (Microchip) M1AFS250-2PQ208I is a Fusion mixed-signal FPGA IC delivering 250,000 gates, 36,864 bits of flash-based RAM, and 93 user I/O pins in a 208-pin PQFP (BFQFP) package, fabricated on a 130nm flash-based process with a 1.5V core supply. A field programmable gate array (FPGA) is a semiconductor device containing a matrix of configurable logic blocks and programmable interconnects that the designer wires together to implement custom digital hardware. Unlike SRAM-based FPGAs, the Fusion family is flash-based, meaning configuration data is stored in on-chip flash memory and loaded instantly at power-up with no external configuration device required. Within the power-management hierarchy of a system, the Fusion family is unusual because it integrates configurable analog circuitry alongside digital logic. The M1AFS250-2PQ208I is a member of the Actel/Microsemi Fusion family, which monolithically integrates flash-based programmable logic, large flash memory blocks, comprehensive clock generation and management circuitry, and configurable analog blocks such as voltage/temperature monitoring, current monitoring, and an RTC. This mixed-signal integration reduces external component count in space- and power-sensitive systems. Key characteristics include 250K gates of flash-based programmable logic, 36,864 bits of distributed RAM, 93 user-programmable I/O, industrial temperature range operation (-40C to +85C per the I suffix), and a 1.5V core supply with a 1.425V to 1.575V operating range. The speed grade 2 rating and 130nm flash technology provide deterministic, single-chip configuration with high security and low static power. Typical applications include industrial automation and motor control, power-supply supervision and system health monitoring, aviation and defense subsystems, and embedded control requiring secure, instant-on programmable logic. Design consideration: because this is a 208-pin PQFP surface-mount device, plan PCB land patterns and thermal relief carefully, and verify flash endurance limits against your reconfiguration rate. This page synthesizes distributor pricing, drop-in same-family alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS250-2PQG208 - 250K Gate Fusion Mixed-Signal FPGA | Microsemi
The Microsemi (now Microchip Technology) M1AFS250-2PQG208 is a Fusion series mixed-signal FPGA with 250,000 system gates, 6,144 logic cells, and 36,864 bits of flash-based RAM, providing 93 configurable I/O pins in a 208-pin BFQFP (PQFP) surface-mount package. It operates from a 1.425V to 1.575V core supply with a junction temperature range of 0C to +85C. A field-programmable gate array (FPGA) is a semiconductor device containing a matrix of configurable logic blocks and programmable interconnects that the designer wires together to implement custom digital circuits. FPGAs sit in the programmable-logic hierarchy between fixed-function ASICs and software-driven microprocessors, offering ASIC-like parallelism with reconfigurable flexibility. The Fusion family extends this concept by integrating configurable analog blocks, large flash memory, and clock management circuitry monolithically on a 130nm CMOS process. Key features of the M1AFS250 include flash-based (non-volatile, instantly-on) programmable logic, mixed-signal integration with configurable analog peripherals, embedded flash memory blocks totalling 36,864 RAM bits, and comprehensive on-chip clock generation and management. The -2 speed grade designation denotes the faster timing grade within the family, supporting higher internal clock frequencies than the -1 grade in the same package. Technically, the flash-based fabric eliminates the external configuration PROM required by SRAM FPGAs, reducing board cost and improving security because the bitstream is stored internally and cannot be easily read back. This also gives the device single-chip, low-power startup behavior valuable in industrial monitoring and portable instrumentation. Typical applications include industrial automation and motor control interfaces, smart sensor acquisition systems exploiting the analog blocks, and medical or test instrumentation requiring custom glue logic with low standby power. Design consideration: decouple the 1.5V core rail with low-ESR ceramics close to the supply pins and follow the Microsemi Fusion layout guidelines for analog block grounding to preserve mixed-signal accuracy. This page synthesizes distributor pricing, drop-in same-family alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS250-2PQG208I - Fusion 250K Mixed-Signal FPGA | Microsemi
The Microsemi (Microchip) M1AFS250-2PQG208I is a Fusion family mixed-signal FPGA with 250K system gates, 36864 bits of flash-based user RAM, and 93 configurable I/O, housed in a 208-pin PQFP (BFQFP) package rated for industrial junction temperatures of -40C to +100C. A field-programmable gate array (FPGA) is a semiconductor device containing a fabric of programmable logic blocks and interconnects that can be configured by the designer after manufacturing. Within the programmable logic hierarchy, the Fusion family sits under flash-based FPGAs in the broader power management and system-on-chip (SoC) ecosystem. The M1AFS250 is unusual among FPGAs because it integrates configurable analog circuitry, flash memory blocks, and comprehensive clock generation and management on a single monolithic die, eliminating several external components. Key features include 250K system gates implemented in 130nm flash-based technology, a 1.5V core supply (1.425V to 1.575V operating range), 36864 bits of distributed RAM, and 93 user I/O pins. The -2 speed grade provides higher timing performance than -1 or standard grades, with distributor listings citing frequencies up to 1470.59 MHz for the fabric clocking resources. Technically, the device combines flash-based programmable logic (non-volatile, single-chip, instant-on) with analog peripherals such as voltage/temperature monitoring inputs, making it a true mixed-signal FPGA. Flash-based configuration removes the need for an external configuration PROM, improving board-level security and reducing BOM cost compared to SRAM FPGAs. Typical applications include industrial system monitoring and control, embedded mixed-signal data acquisition, power-supply supervision boards, and aerospace/defense subsystems where non-volatile, secure, instant-on programmable logic is required. When designing with this device, observe the 1.425V-1.575V core supply tolerance and ensure the PQFP thermal environment keeps junction temperature below 100C under worst-case industrial conditions. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS250-FG256 - Fusion FPGA 250K Gates ARM Cortex-M1 | Microchip
The Microchip Technology M1AFS250-FG256 (originally Actel/Microsemi) is a Fusion mixed-signal FPGA SoC with 250,000 system gates, an embedded ARM Cortex-M1 processor, 114 user I/O, and 36,864 bits of flash-based core configuration memory, housed in a 256-ball Fine-Pitch Ball Grid Array (FBGA/LBGA) package operating from a 1.5V core supply. A fusion mixed-signal FPGA is a field-programmable gate array that combines flash-based programmable fabric with analog peripherals, flash memory blocks, and clock management on one monolithic die. Within the power/processing hierarchy, this places the M1AFS250 as a system-on-chip (SoC): FPGA fabric plus an ARM Cortex-M1 soft-processor core running at up to 350 MHz, bridging programmable logic and embedded MCU control without a discrete microcontroller. Key features include 250K system gates (approximately 6,144 logic cells per the Microchip USA listing), 114 user I/O, comprehensive on-chip clock generation and management circuitry, and large flash memory blocks. The monolithic integration of configurable analog and digital fabric reduces board area and bill-of-materials count for mixed-signal control systems. Technically, the M1AFS250 family is manufactured on a 130nm flash-based process (per Jotrin Electronics), offering nonvolatile, secure, instant-on configuration without an external configuration PROM. The FG256 package is a 1.00 mm ball pitch 256-ball BGA, surface-mount (SMD/SMT), supplied in tray packaging. Commercial temperature range is 0C to +70C. Note that this exact ordering code is RoHS non-compliant and contains lead; the FGG256 (Green) variant is the lead-free drop-in alternative on the same footprint. Typical applications include industrial automation control, smart power motor control, portable instrumentation, and embedded systems requiring single-chip analog monitoring plus logic. The 1.5V core and flash fabric suit low-power, high-reliability designs. Design consideration: verify the FGG256 (RoHS-compliant) alternative early, since the FG256 leaded version may face procurement and environmental restrictions in new designs. This page synthesizes distributor pricing, drop-in same-footprint alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS250-FG256I - 250K FPGA, 256-LBGA | Microchip
The Microchip Technology M1AFS250-FG256I is a Fusion mixed-signal field-programmable gate array (FPGA) integrating 250,000 system gates, 114 user I/Os, 36,864 bits of embedded RAM, and an ARM Cortex-M1 processor option, housed in a 256-ball LBGA (17x17 mm) package. It operates from a 1.425V to 1.575V supply and is rated for -40C to +100C junction temperature. This nonvolatile, flash-based device retains configuration when powered off and supports live-at-power-up operation. A field-programmable gate array (FPGA) is an integrated circuit whose logic fabric can be configured after manufacturing to implement arbitrary digital logic. FPGAs sit between fixed-function ASICs and software processors in the digital system hierarchy: they provide hardware-level parallelism and deterministic timing while remaining reconfigurable in the field. The Fusion family extends the FPGA concept by adding configurable analog blocks, large flash memory blocks, and clock generation and management circuitry in a single monolithic device, making it a mixed-signal programmable system-on-chip. Key features include a 130nm, 7-layer metal, flash-based CMOS process; 350 MHz system performance; 1.5V core supply; 36,864 bits of total RAM; and 114 user I/Os in a 256-LBGA package. The M1 designation indicates an ARM Cortex-M1 soft processor is available, enabling embedded software and FPGA logic to share one device. The flash-based architecture eliminates the need for external configuration memory and provides instant-on operation at power-up. Technical depth is provided by the Fusion mixed-signal architecture, which integrates configurable analog front-end resources, large flash memory blocks, and comprehensive clock generation circuitry alongside the FPGA fabric. This allows designers to implement analog sensing, data conversion, digital signal processing, and system management functions without separate analog or configuration ICs. The device supports IEEE 1149.1 JTAG boundary scan for programming and test, simplifying board-level verification. Typical applications include smart battery management systems, industrial motor control, medical patient monitoring, aerospace flight control, IoT edge gateways, and security surveillance cameras. The wide industrial temperature range and nonvolatile flash behavior make the M1AFS250-FG256I suitable for harsh environments where reliable power-up and low power consumption are critical. When designing with this device, pay close attention to the 1.425V to 1.575V core supply. Use multiple decoupling capacitors placed close to the BGA balls and follow the manufacturer's power-up sequencing guidance. The 256-ball LBGA requires a multi-layer PCB with controlled impedance for high-speed I/O and adequate thermal vias for heat spreading. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, helping engineers quickly evaluate the M1AFS250-FG256I for new designs or as a drop-in replacement in existing systems.
M1AFS250-FGG256 - 250K-Gate Fusion Mixed-Signal FPGA | Microchip
The Microchip Technology (Microsemi) M1AFS250-FGG256 is a Fusion mixed-signal FPGA providing 250,000 system gates (6144 logic cells), 114 user I/Os, and 36864 bits of flash-based configuration memory, housed in a 256-ball fine-pitch BGA (FGG256) package with a 1.0 mm ball pitch. The M1 prefix denotes Fusion devices that integrate an ARM Cortex-M1 hard processor for embedded soft-controller designs. A mixed-signal FPGA is a programmable logic device that combines digital fabric with configurable analog blocks and flash memory on a single monolithic die. In the system hierarchy, the M1AFS250 belongs to the Fusion family -> flash-based FPGA -> programmable SoC class of semiconductors, sitting alongside Microchip's ProASIC3 and Igloo device families. Key features include flash-based, live-at-power-up programmability that eliminates external configuration PROMs and provides instant-on behavior, configurable analog peripherals for voltage and temperature monitoring, comprehensive on-chip clock generation and management circuitry, and a maximum clock frequency of 350 MHz according to distributor data. The device is fabricated in CMOS technology and operates from a single supply architecture typical of the Fusion family. The architecture integrates the ARM Cortex-M1 processor, large flash memory blocks, analog conditioning and monitoring circuitry, and the Versatile fabric of lookup-table-based logic, enabling single-chip designs that previously required separate MCU, FPGA, voltage-monitor, and nonvolatile memory components. Typical applications include industrial automation and motor control, power-supply supervision and smart power management, portable and battery-operated instrumentation, and aerospace/defense subsystems where flash-based, single-chip integration and low profile reduce BOM cost and board area. A key design consideration is power and thermal budgeting: the 256-ball BGA must dissipate heat through the PCB, so adequate via arrays and copper pour under the package are recommended. Verify I/O bank voltage assignments early, since mixed-signal pin planning constrains floorplanning. This page synthesizes distributor pricing from five sources, drop-in alternatives within the Fusion family, and practical design notes not found in the manufacturer datasheet alone.
M1AFS250-FGG256I - 250K Gate Fusion FPGA 114 I/O | Microchip
The Microchip Technology M1AFS250-FGG256I is a Fusion mixed-signal field programmable gate array (FPGA) featuring 250K system gates, 114 user I/Os, and 36,864 D flip-flops, housed in a 256-ball fine-pitch BGA (FGG256) package with 1.0 mm ball pitch and industrial temperature rating (-40C to +85C). A field programmable gate array is a semiconductor device containing a fabric of configurable logic blocks and programmable interconnects that engineers configure in the field after manufacturing. FPGAs sit within the broader hierarchy of programmable logic devices - above CPLDs in capacity and below ASICs in density - and the Fusion family uniquely integrates analog mixed-signal functionality, flash-based configuration, and an embedded ARM Cortex-M1 processor on a single die, eliminating the need for external configuration memory in many designs. Key features of the M1AFS250-FGG256I include flash-based 130 nm fabrication operating from a 1.5 V core supply, embedded ARM Cortex-M1 soft/hard processor support for single-chip embedded control, and non-volatile Flash*Freeze technology for near-zero-power static retention. The Fusion fabric combines look-up-table logic with dedicated analog conditioning blocks, ADC inputs, and RTC support, making it distinctive among 250K-gate-class FPGAs. Technically, the device is specified at a fabric frequency of approximately 1.0989 GHz per third-party listings (a characterized fabric speed metric) with 36,864 registers and 114 flexible I/O supporting multiple single-ended and differential standards. The 256-ball LBGA package measures with a 1.0 mm ball pitch for board assembly with standard SMT processes. Typical applications include industrial automation control, embedded motor and power supervision, portable instrumentation, and mixed-signal system controllers where analog monitoring, soft-core processing, and configurable logic must coexist on one chip. Design consideration: flash-based Fusion devices retain configuration in non-volatile memory, so bitstream security and Flash*Freeze entry/exit timing should be planned early in the design cycle. This page synthesizes distributor pricing, drop-in family alternatives, and practical design guidance not found in the manufacturer datasheet, with pricing as of 2026-09-02.
M1AFS250-PQ208 - Fusion Mixed-Signal FPGA 250K Gates | Microsemi
The Microsemi (now Microchip Technology) M1AFS250-PQ208 is a Fusion family mixed-signal field programmable gate array (FPGA) delivering 250,000 equivalent system gates in a 208-pin plastic quad flat pack (PQFP/BFQFP) package. The device integrates flash-based programmable logic, configurable analog peripherals, large flash memory blocks, and comprehensive clock generation and management circuitry in a single monolithic die, with 93 user I/O and 36,864 bits of embedded user flash memory, operating from a 1.5V core supply. A mixed-signal FPGA is a programmable logic device that combines digital fabric with analog blocks such as analog-to-digital conversion inputs, voltage and temperature monitoring, and on-chip oscillators, plus nonvolatile flash configuration memory. Within the power-management and programmable-logic hierarchy, it belongs to the FPGA category of field programmable gate arrays, positioned for system-on-chip designs that previously required a separate microcontroller plus discrete analog monitoring components. Key features of the M1AFS250 include flash-based configuration (live at power-up with no external boot device required), 128-bit flash-based security lock, and industry-leading AES decryption for protecting programmed intellectual property and configuration data. The 130nm flash CMOS technology delivers a total solution that reduces bill-of-materials cost versus SRAM FPGAs, which need a configuration flash or microcontroller. The fabric supports the VersaTile architecture, where each tile can be configured as a three-input lookup table, D-flip-flop, or latching element, enabling dense, flexible logic implementation. Technically, the Fusion architecture combines VersaTile-based logic with analog circuit blocks, flash memory arrays, and a clock conditioning circuit with PLLs. The M1 prefix denotes the Fusion family, distinguishing these parts from earlier AFS devices. Configuration data is stored in on-chip flash, so the FPGA is immediately functional when system power is applied within normal operating specifications, an advantage for space-constrained and reliability-sensitive systems. Typical applications include industrial control and monitoring, smart-power management, battery chargers, portable instrumentation, and embedded systems requiring single-chip supervision of voltage, temperature, and fan status alongside custom logic. The 208-pin PQFP offers a 0.5 mm lead pitch suitable for standard surface-mount assembly. Design consideration: note that within the Fusion family, PQ208 package parts are NOT pin compatible across die sizes - the AFS250 and AFS600 PQ208 pinouts differ - so footprint reuse across densities is not guaranteed for this package. This page synthesizes distributor pricing, drop-in alternatives from the same Fusion family, and practical design notes not found in the manufacturer datasheet.
M1AFS250-PQ208I - Fusion FPGA 250K Gates 208-PQFP | Microsemi
The Microsemi (Microchip) M1AFS250-PQ208I is a Fusion field-programmable gate array (FPGA) delivering 250,000 system gates, 93 user I/O pins, and 36,864 bits of embedded SRAM in a 208-pin PQFP (BFQFP) package, fabricated on a 130nm flash-based process with a 1.5V core supply and industrial temperature rating. An FPGA (Field-Programmable Gate Array) is a semiconductor device containing a fabric of configurable logic blocks, routing resources, and I/O cells that designers program to implement custom digital circuits. Within the programmable logic hierarchy, FPGAs sit above CPLDs and below full ASICs, offering ASIC-like integration without mask-set costs. The Fusion family from Actel/Microsemi/Microchip is distinctive because it integrates flash-based programming fabric with mixed-signal analog peripherals on a single die. Key features of the M1AFS250 include its flash-based, non-volatile configuration (no external configuration PROM or boot time required), 130nm technology enabling up to 1098.9 MHz internal performance, and integrated programmable analog blocks. The 36,864-bit embedded SRAM supports FIFOs and dual-port memory structures, while 93 user I/Os accommodate a broad range of interface standards. Architecturally, Fusion combines the ProASIC3-style flash switch fabric with analog peripherals such as voltage/temperature monitoring and an ADC subsystem, making it a true mixed-signal programmable SoC for its era. The 1.5V core keeps dynamic power low, and instantaneous-on flash configuration improves system reliability versus SRAM FPGAs. Typical applications include industrial control, power-supply supervision and intelligent power management, military/aerospace subsystems, portable instrumentation, and bridge logic where a small non-volatile FPGA with analog monitoring is advantageous. When designing with this device, budget I/O carefully: only 93 of the 208 pins are user I/O, and industrial temperature variants should be derated for timing at the hot corner. This page synthesizes verified distributor data, drop-in alternatives, design guidance, and lifecycle context not found on any single manufacturer or distributor page.
M1AFS250-PQG208I - 250K Gate Fusion Mixed-Signal FPGA | Microsemi
The Microsemi (Microchip) M1AFS250-PQG208I is a 250,000-gate Fusion mixed-signal FPGA with 93 programmable I/O pins, 36864 bits of flash-based RAM, and a core operating voltage of 1.5V (1.425V to 1.575V), housed in a 208-pin BFQFP (PQG208) surface-mount package rated for industrial temperatures from -40C to +100C. A field-programmable gate array (FPGA) is a semiconductor device containing a matrix of configurable logic blocks and programmable interconnects that the designer wires together after manufacturing. FPGAs sit within the broader programmable logic hierarchy - below ASSPs and ASICs in customization, above microcontrollers in parallel logic capacity - and the Fusion family is unusual in combining configurable analog blocks, large flash memory, clock generation and management circuitry, and flash-based programmable logic in a single monolithic die. Key features of the M1AFS250 include its flash-based programming technology, which provides instant-on, single-chip operation without an external configuration PROM and inherently better SECiM-fit security than SRAM FPGAs. The 130nm process technology supports internal clock rates in the vicinity of 1098.9 MHz as cited by distributors, and the mixed-signal fabric integrates analog peripherals for monitoring and control. Technically, the Fusion architecture merges a look-up-table based logic array with flash memory blocks that can function as both configuration storage and user RAM (36864 bits on this density), plus on-chip analog conditioning. This monolithic integration reduces board area, BOM count, and configuration-bus leakage paths versus two-chip SRAM FPGA solutions. Typical applications include industrial automation and motor control (leveraging the analog blocks and 93 I/O), avionics and space instrumentation where Microsemi FPGAs are traditionally deployed, secure embedded controllers, and power/energy monitoring systems. Design consideration: budget the 93 usable I/O carefully - the 208-pin package has many power, ground, and dedicated configuration pins, so confirm I/O availability against your pin plan before layout. This page synthesizes distributor pricing tiers, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS600-1FG256 - Fusion FPGA, 600K Gates | Microchip
The Microchip M1AFS600-1FG256 is a Fusion mixed-signal Field Programmable Gate Array (FPGA) with 600,000 system gates, integrating configurable analog, large flash memory blocks, comprehensive clock generation and management circuitry, and high-performance, flash-based programmable logic in a monolithic device. It operates from a 1.5V core supply (1.425V to 1.575V) and is housed in a 256-ball LBGA (17x17 mm) package, supporting 119 user I/Os and 110,592 bits of RAM. A Field Programmable Gate Array (FPGA) is an integrated circuit that can be configured by the customer after manufacturing to implement custom digital logic functions. FPGAs belong to the programmable logic device (PLD) family, which sits between fixed-function ASICs and general-purpose processors in the digital design hierarchy. Fusion FPGAs uniquely combine programmable logic with analog and flash memory, enabling mixed-signal system integration on a single chip. Key features include 600K system gates, 110,592 bits of flash memory, configurable analog blocks (including ADCs, DACs, and comparators), and an embedded ARM Cortex-M1 processor option (M1 prefix). The device supports 1.5V core voltage, 119 user I/Os, and operates over a commercial temperature range of 0Β°C to 85Β°C. The flash-based architecture provides instant-on, low power, and high security. The Fusion architecture integrates a 128-bit AES decryption engine for secure programming, and its flash-based configuration memory eliminates the need for external boot devices. The configurable analog blocks allow designers to implement analog front-ends, power management, and sensor interfaces without external components. The device also includes comprehensive clock generation and management circuitry, including PLLs and clock conditioning. Typical applications include power management, smart battery charging, clock generation and management, motor control, and industrial automation. The M1AFS600-1FG256 is particularly suited for mixed-signal designs where analog and digital functions must be tightly integrated, such as in smart grid, medical devices, and automotive systems. When designing with this device, ensure adequate decoupling on the 1.5V core supply and follow the recommended power-up sequencing. The flash-based configuration is non-volatile, so no external configuration memory is required, simplifying board design. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, providing engineers with a comprehensive resource for evaluating the M1AFS600-1FG256.
M1AFS600-1FG484 - Fusion FPGA 600K Gates | Microchip
The Microchip Technology M1AFS600-1FG484 is a Fusion mixed-signal Field Programmable Gate Array (FPGA) with 600K system gates, 172 user I/Os, and 110592 bits of flash memory, housed in a 484-ball FBGA package. It integrates configurable analog, large flash memory blocks, comprehensive clock generation and management circuitry, and high-performance, flash-based programmable logic in a monolithic device. The M1 prefix denotes Fusion FPGAs, which are designed for mixed-signal applications requiring both programmable logic and analog capabilities. A Field Programmable Gate Array (FPGA) is an integrated circuit that can be configured by the customer or designer after manufacturingβhence 'field-programmable'. FPGAs are part of the programmable logic device family, which sits between fixed-function ASICs and general-purpose processors in the digital logic hierarchy. They contain an array of programmable logic blocks and a hierarchy of reconfigurable interconnects that allow the blocks to be wired together in different configurations. FPGAs are widely used in prototyping, aerospace, automotive, industrial, and communications applications where flexibility and parallel processing are required. Key features of the M1AFS600-1FG484 include 600K system gates, 172 user I/Os, and 110592 bits of flash memory. The device operates at a core voltage of 1.5V and is fabricated using 130nm flash-based technology, offering non-volatile, secure configuration. Fusion devices have a 128-bit flash-based lock and industry-leading AES decryption, used to secure programmed intellectual property (IP) and configuration data. The flash-based architecture provides instant-on capability, low power consumption, and immunity to configuration bitstream corruption. Technically, the M1AFS600-1FG484 integrates configurable analog blocks, including analog comparators, a 12-bit ADC, and a 12-bit DAC, along with large flash memory blocks (up to 1 Mbit) and comprehensive clock generation and management circuitry. This monolithic integration reduces board space and system cost while improving reliability. The device supports a wide range of I/O standards and includes phase-locked loops (PLLs) for clock management. The 484-ball FBGA package provides excellent thermal and electrical performance for high-density designs. Typical applications include motor control, power management, industrial automation, medical devices, and aerospace systems where mixed-signal processing and programmable logic are required. The Fusion family is particularly suited for applications that need to interface analog sensors with digital control logic, such as smart power supplies, battery management systems, and motor drives. The device's flash-based configuration allows for secure, instant-on operation, making it ideal for safety-critical and remote applications. When designing with the M1AFS600-1FG484, consider the 1.5V core supply and the need for proper decoupling and power sequencing. The device supports multiple I/O standards, so configure the I/O banks appropriately for your interface requirements. Use the integrated analog blocks to reduce external component count, but ensure adequate analog supply filtering for accurate ADC/DAC performance. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, providing engineers with a comprehensive resource for evaluating the M1AFS600-1FG484 in their designs.
M1AFS600-1FG484I - Fusion FPGA 600K Gates ARM Cortex-M1 | Microchip
The Microchip Technology M1AFS600-1FG484I is a flash-based Fusion mixed-signal FPGA delivering 600K system gates, 172 user I/O, and an embedded ARM Cortex-M1 hard processor core, housed in a 484-ball FBGA (FG484) package with 1.5V core supply on a 130nm flash process. An FPGA (Field-Programmable Gate Array) is a semiconductor device containing a fabric of programmable logic blocks and interconnects that the designer configures after manufacturing. The Fusion family sits within the broader hierarchy of programmable logic: FPGA -> programmable logic device (PLD) -> programmable SoC. What distinguishes Fusion is monolithic integration of configurable analog blocks (ADC, comparators, voltage monitors), large flash memory blocks, clock management circuitry (CCCs with PLLs), and flash-based programmable logic on a single die, removing the need for external configuration devices and many discrete analog supervisory components. Key features of the M1AFS600 variant include 13824 VersaTile logic tiles (each configurable as a 3-input LUT, D flip-flop, or memory), 110592 flip-flops of sequential capacity, integrated 12-bit analog-to-digital conversion via the Fusion analog front end, and the ARM Cortex-M1 soft/hard processor support for embedded control. Because configuration and user data reside in on-chip flash, the device is inherently secure and instant-on at power-up with no external boot PROM. Technically, the flash-based fabric offers deterministic, single-chip behavior with low static power compared with SRAM FPGAs, and the embedded Cortex-M1 (32-bit, ARMv6-M) lets designers partition control software and hardware accelerators in one device. The 484-FBGA ball grid array provides the 172 I/O for banked voltage standards including LVTTL, LVCMOS, SSTL, HSTL, LVDS, and B-LVDS. Typical applications include industrial automation control, smart grid and power monitoring (leveraging the analog blocks), aerospace and defense processing, motor control, and test instrumentation. Design consideration: this specific -FG484I ordering code contains lead and is RoHS non-compliant per distributor data, so verify regulatory fit; the -FGG484I green package variant should be used for RoHS-required builds. This page synthesizes distributor pricing, drop-in family alternatives, and design guidance not found on the manufacturer product page.
M1AFS600-1FG484K - Fusion FPGA 600K Gates 172 I/O | Microchip
The Microchip Technology (Microsemi) M1AFS600-1FG484K is a Fusion mixed-signal Field Programmable Gate Array (FPGA) with 600K system gates, 172 user I/Os, and an integrated ARM Cortex-M1 soft processor core, housed in a 484-ball Fine-Pitch Ball Grid Array (FBGA) package. The K suffix denotes the commercial temperature variant of the FG484 footprint. A Fusion mixed-signal FPGA is a flash-based programmable logic device that integrates configurable analog blocks, large flash memory, clock generation and management circuitry, and high-performance programmable fabric in a single monolithic chip. Within the power-management hierarchy, it spans programmable logic -> FPGA -> mixed-signal SoC, and the M1 prefix specifically denotes Fusion devices equipped with the ARM Cortex-M1 processor for embedded control. Key features include 110,592 bits of flash-based fabric capacity (as listed by distributors), 172 available I/O, and the on-chip ARM Cortex-M1 for single-chip embedded designs. Flash-based configuration makes the device inherently secure and instant-on, removing the need for an external configuration PROM. The monolithic integration of analog peripherals, clock circuitry (CCC) and logic reduces board count, BOM cost, and design complexity relative to a discrete FPGA-plus-analog solution. The device is fabricated on 130nm flash-based CMOS technology and operates from a 1.5V core supply. Fabric speed grades (-1 in this part) determine maximum fabric performance; the M1AFS600 series is specified up to the hundreds of MHz range in system applications. The FG484 ball-grid package provides high I/O density and good signal integrity for wide buses and memory interfaces. Typical applications include industrial automation and motor control, secure embedded systems leveraging the Cortex-M1, space-constrained mixed-signal instrumentation, and power monitoring where Fusion's configurable analog blocks replace external ADCs and comparators. Design consideration: this K-graded ordering code is listed by distributors as containing lead and RoHS non-compliant, so it is suitable for designs exempt from RoHS or for repair/legacy programs; choose the FGG484 (green) variant for RoHS-compliant new designs. This page synthesizes distributor pricing, drop-in same-footprint alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS600-1FGG256 - Fusion FPGA, Cortex-M1, 600K Gates | Microchip
The Microchip Technology M1AFS600-1FGG256 is a Fusion mixed-signal FPGA integrating an ARM Cortex-M1 hard processor core, 600K system gates, flash-based programmable logic, and configurable analog circuitry in a 256-ball LBGA (FGG256) package measuring 17x17x1.7 mm. The device operates from a 1.5V nominal core supply on a 130nm flash process and provides 13,824 configurable logic blocks with 110,592 flip-flops. A mixed-signal FPGA is a field-programmable gate array that combines digital programmable fabric with analog peripherals such as ADCs, comparators, and voltage monitors on a single monolithic die. Within the semiconductor hierarchy, the M1AFS600 sits in the FPGA family (programmable logic), which in turn belongs to the broader class of programmable logic devices (PLDs) and embedded processing ICs, enabling single-chip system-on-chip designs without external ASIC fabrication. Key features include flash-based configuration (live at power-up, no external boot flash required), an embedded ARM Cortex-M1 processor running at up to 100 MHz-class performance for the fabric, integrated analog blocks, and comprehensive clock generation and management circuitry. The commercial temperature grade supports 0C to +85C operation. RoHS compliance is confirmed by Newark listing data. Technically, the Fusion family is built on Microsemi's flash-based 130nm CMOS technology, which gives non-volatile configuration, high immunity to configuration upset compared to SRAM FPGAs, and low static power. The monolithic integration of configurable analog, large flash memory blocks, and clock management reduces BOM count and board area relative to FPGA-plus-support-logic solutions. Typical applications include industrial control and motor management, power monitoring, smart-grid and metering systems, and embedded control where analog sensing and digital logic must coexist. The 256-ball FGG256 footprint balances I/O count (119 user I/O) with a manageable 17x17 mm board area. A key design consideration is power budgeting: determine whether the commercial (-1 speed, 0C to +85C) grade matches your environment; industrial variants such as the -1FGG256I use the same footprint. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS600-1FGG484 - Fusion FPGA, 600K Gates, 172 I/O | Microchip
The Microchip Technology M1AFS600-1FGG484 is a Fusion mixed-signal Field Programmable Gate Array (FPGA) integrating configurable analog, large flash memory blocks, comprehensive clock generation and management circuitry, and high-performance flash-based programmable logic in a monolithic device. It features 600K system gates, 172 user I/Os, and 110,592 bits of RAM, housed in a 484-ball FBGA package. This device is part of the Fusion family, which uniquely combines FPGA fabric with an ARM Cortex-M1 processor option, making it ideal for system-on-chip applications that require both programmable logic and embedded processing. A Field Programmable Gate Array (FPGA) is an integrated circuit designed to be configured by the customer after manufacturing. Unlike fixed-function ASICs, FPGAs contain an array of programmable logic blocks and a hierarchy of reconfigurable interconnects that allow the logic blocks to be wired together in different configurations. FPGAs are used in a wide range of applications, from digital signal processing and telecommunications to aerospace and defense, because they offer flexibility, rapid prototyping, and the ability to update functionality in the field. The Fusion family extends this concept by integrating analog and flash memory, reducing system complexity and bill of materials. Key features of the M1AFS600-1FGG484 include 600K system gates, 172 user I/Os, and 110,592 bits of RAM. The device operates at a core voltage of 1.5V and supports a maximum internal frequency of 1282.05 MHz. It is built on 130nm flash-based technology, which provides non-volatile configuration, instant-on capability, and enhanced security with a 128-bit flash-based lock and AES decryption. The Fusion architecture also includes configurable analog blocks, such as ADCs and DACs, and large flash memory blocks, enabling mixed-signal designs in a single device. From a technical depth perspective, the M1AFS600-1FGG484 leverages Microchip's Fusion architecture, which integrates programmable analog, flash memory, and FPGA fabric. This monolithic approach reduces power consumption, board space, and system cost compared to discrete solutions. The flash-based configuration is non-volatile, meaning the device is ready to operate immediately upon power-up, without the need for external configuration memory. The device also supports industry-standard design flows, including synthesis and simulation tools, and is compatible with Microchip's Libero SoC design suite. Typical applications for the M1AFS600-1FGG484 include industrial control systems, automotive electronics, medical devices, and communications infrastructure. Its mixed-signal capability makes it particularly suited for applications requiring analog signal conditioning, data acquisition, and real-time control. The embedded ARM Cortex-M1 processor option allows for software and hardware co-design, enabling complex system functions to be partitioned between the processor and programmable logic. When designing with this device, consider the power supply requirements: the core operates at 1.5V, and I/O banks may require additional voltages depending on the interface standard. Proper decoupling and PCB layout are essential to maintain signal integrity and minimize noise. The device supports JTAG programming and in-system programming, facilitating design updates and field upgrades. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, providing engineers with a comprehensive resource for evaluating the M1AFS600-1FGG484.
M1AFS600-1FGG484I - 600K Gate Fusion FPGA 172 I/O | Microchip
The Microchip Technology (formerly Microsemi) M1AFS600-1FGG484I is a Fusion mixed-signal FPGA with 600K system gates, 172 user I/O, and an embedded ARM Cortex-M1 processor, housed in a 484-ball Fine-Pitch Ball Grid Array (FBGA) package and rated for the industrial temperature range (-40C to +85C, denoted by the I suffix). A mixed-signal FPGA is a field-programmable gate array that combines flash-based programmable logic fabric with configurable analog blocks, large flash memory, and clock management circuitry on a single monolithic die. In the power-management hierarchy, the Fusion family sits above standard digital FPGAs because it can directly condition and monitor board-level power, temperature, and voltage rails without external supervisory ICs. Key features of the M1AFS600-1FGG484I include the 600K-gate flash-based fabric, an integrated ARM Cortex-M1 soft-processor core for embedded control, 110592 bits of flash memory organization reported by distributors, analog peripherals (voltage/temperature monitoring channels, RTC, PWM generators), and deterministic flash-based configuration that eliminates the need for an external boot flash. The device is fabricated on a 130nm process with a 1.5V core supply, per distributor-listed specifications (FindIC reports 1282.05MHz performance grading for the family). Flash-based configuration gives instant-on behavior, high SEU resistance relative to SRAM FPGAs, and reprogrammability without external configuration storage - a major advantage in radiation-tolerant and industrial designs. Typical applications include industrial automation controllers, power-supply supervision and smart power management, embedded systems requiring an on-chip ARM processor, test and measurement instrumentation, and motor control. Design consideration: verify 1.5V core and I/O rail sequencing and confirm the FG484 ball map against the Microsemi Fusion datasheet before layout. This page synthesizes distributor pricing, drop-in same-family alternatives, and design guidance not consolidated on the manufacturer product page.
M1AFS600-1FGG484K - Fusion FPGA 600K Gates 484-BGA | Microchip
The Microchip Technology M1AFS600-1FGG484K is a Fusion mixed-signal FPGA delivering 600K system gates, 172 user I/Os, and 110592 bits of flash-based configuration memory in a 484-pin fine-pitch ball grid array (484-FBGA) package. As an M1-family member, it embeds an ARM Cortex-M1 soft processor core alongside flash-based programmable logic in a single monolithic die. A field-programmable gate array (FPGA) is a semiconductor device containing a matrix of configurable logic blocks (CLBs) interconnected by programmable fabric, sitting within the broader hierarchy of programmable logic devices (PLDs) that also includes CPLDs and SPLDs. Unlike SRAM-based FPGAs that require an external configuration device, flash-based FPGAs such as the Fusion family store their configuration in on-chip flash, giving instant-on behavior and inherent resistance to configuration readback attacks. Key differentiating features include configurable analog peripherals, large flash memory blocks, and comprehensive clock generation and management circuitry integrated on the same die as the high-performance flash-based programmable logic. The 130nm flash process operating from a 1.5V core supply eliminates the configuration PROM, reduces bill-of-materials count, and shortens power-up time compared with SRAM FPGA architectures. Architecturally, the Fusion device combines the ProASIC3-style fabric with analog conditioning blocks, a ARM Cortex-M1 hard IP option for embedded control, and clock management circuitry, mitigating the need for ASIC migration at higher volumes and making it a cost-effective ASIC replacement for consumer, networking and communications, computing, and avionics markets. Typical applications include mixed-signal system integration in industrial control, power-supply and board-level management, portable instrumentation, and aerospace/avionics subsystems where single-chip analog-plus-logic integration reduces board area and component count. When designing with the M1AFS600-1FGG484K, budget power rails for core (1.5V), I/O banks, and analog blocks separately, and follow the Microchip power-supply decoupling guidance in the Fusion datasheet to preserve analog accuracy. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
M1AFS600-2FG256 - Fusion FPGA 600K Gates ARM Cortex-M1 | Microchip
The Microchip Technology M1AFS600-2FG256 is a Fusion mixed-signal FPGA integrating 600K system gates, 110592 logic elements, and an embedded ARM Cortex-M1 hard processor core in a 256-ball LBGA (FG256) package. Fabricated on a 130nm flash-based process and powered from a 1.5V core supply, the device provides 119 user I/Os and monolithic programmable logic suitable for embedded control and mixed-signal system integration. An FPGA (Field-Programmable Gate Array) is a semiconductor device containing a fabric of configurable logic blocks and programmable interconnects that the designer wires together after manufacturing. The M1AFS600 belongs to the Fusion family of mixed-signal FPGAs, which sit at the intersection of the FPGA hierarchy (FPGA -> programmable logic device -> digital IC) and analog/mixed-signal power-management ICs, because each die also integrates configurable analog peripherals, large flash memory blocks, and comprehensive clock generation and management circuitry in one monolithic device. Key differentiating features include the hard-wired ARM Cortex-M1 processor running alongside reconfigurable fabric, which removes the need for a separate microcontroller in many designs. The flash-based fabric is live-at-power-up, immune to configuration data loss, and does not require an external configuration PROM. The Fusion analog block supports voltage, current, and temperature monitoring, enabling single-chip board-management implementations. Architecturally, the 130nm flash process fuses each logic switch at the transistor level, yielding higher density per route than SRAM FPGAs of the same generation and lower static power. Clock generation and management circuitry on-chip provides PLL-based synthesis for the fabric and the Cortex-M1 subsystem. Typical applications include board-level power management and smart battery charging, motor control, clock generation and distribution, and embedded systems where an ARM microcontroller plus programmable logic must coexist in one 256-ball package. The commercial 0C to +70C operating range of the -2FG256 grade targets office and indoor industrial equipment. A key design consideration: confirm I/O bank voltage support for your 3.3V/2.5V/1.8V signaling environment and budget board space for the 256-ball footprint, since the FG256 ballout is not shared with smaller PQG208 Fusion variants. This page synthesizes distributor inventory data, family cross-references, and practical design notes not found in the manufacturer datasheet, with verified data as of 2026-09-02.
M1AFS600-2FG484 - Fusion FPGA 600K Gates ARM Cortex-M1 | Microchip
The Microchip Technology (Microsemi) M1AFS600-2FG484 is a Fusion mixed-signal FPGA with 600,000 system gates, 13,824 logic cells, and 172 user I/Os, housed in a 484-pin FBGA (484-BGA) surface-mount package with a 1.5V core supply and a speed grade of -2. A field-programmable gate array (FPGA) is an integrated circuit that engineers configure after manufacturing using hardware description languages such as Verilog or VHDL. Within the programmable logic hierarchy, an FPGA sits above CPLDs in logic capacity and is classified as a programmable logic device within the broader semiconductor and system-on-chip domain. The Fusion family is distinctive because it integrates configurable analog blocks, flash memory, and clock management on a single monolithic die. Key features of the M1AFS600-2FG484 include an embedded ARM Cortex-M1 soft processor core for single-chip embedded designs, flash-based (non-volatile) programmable fabric that eliminates external configuration PROMs, and integrated analog peripherals such as ADCs, voltage and temperature monitoring channels, and current monitoring. The device operates from a 1.5V core supply and is fabricated on a 130nm CMOS process. Speed grade -2 defines the timing bin; listed high-frequency figures reach into the hundreds of MHz for system operation, with third-party listings citing figures up to 1470.59MHz for internal fabric characterization. The flash-based architecture of the Fusion family provides inherent secure, instant-on behavior: the design loads from on-chip flash at power-up without an external boot device, reducing board area and improving configuration-data security versus SRAM FPGAs. The monolithic integration of analog blocks (multi-channel ADC with prescalers, temperature and voltage monitors) plus ARM Cortex-M1 allows mixed-signal supervisory functions to be absorbed into one device. Typical applications include industrial automation control, embedded system supervision and power monitoring, medical instrumentation, and communications line-card management, where the Cortex-M1 processor handles housekeeping while fabric logic manages high-speed data paths. When designing with this part, verify the -2 speed grade meets your timing closure requirements in Libero SoC before committing the PCB, and budget for the 484-ball BGA routing complexity on at least an 8-layer board with proper power-plane segmentation for the 1.5V core and 3.3V I/O rails. This page synthesizes distributor pricing, same-family drop-in alternatives, and practical design notes not found in the manufacturer datasheet.