M2GL025T-FGG484

IC FPGA 267 I/O 484FBGA
Part Description

IGLOO2 Field Programmable Gate Array (FPGA) IC 267 1130496 27696 484-BGA

Quantity 918 Available (as of May 5, 2026)
Product CategoryField Programmable Gate Array (FPGA)
ManufacturerMicrochip Technology
Manufacturing StatusActive
Manufacturer Standard Lead Time10 Weeks
Datasheet

Specifications & Environmental

Device Package484-FPBGA (23x23)GradeCommercialOperating Temperature0°C – 85°C
Package / Case484-BGANumber of I/O267Voltage1.14 V - 2.625 V
Mounting MethodSurface MountRoHS ComplianceROHS3 CompliantREACH ComplianceREACH Unaffected
Moisture Sensitivity Level3 (168 Hours)Number of LABs/CLBs27696Number of Logic Elements/Cells27696
Number of GatesN/AECCN3A991DHTS Code8542.39.0001
QualificationN/ATotal RAM Bits1130496

Overview of M2GL025T-FGG484 – IGLOO2 FPGA (27,696 logic elements, 484-BGA)

The M2GL025T-FGG484 is an IGLOO2 field programmable gate array (FPGA) IC from Microchip Technology. It delivers a mid-range balance of logic capacity, embedded memory, and I/O count in a compact 484-ball BGA surface-mount package for commercial applications.

Designed for commercial-grade embedded designs, the device supports a wide supply voltage range and RoHS compliance, making it suitable for applications that require substantial on-chip logic and memory with extensive I/O connectivity.

Key Features

  • Core & Logic 27,696 logic elements provide programmable fabric for implementing custom digital logic and control functions.
  • Embedded Memory Approximately 1.13 Mbits of on-chip RAM to support buffering, state storage, and local data processing.
  • I/O & Package Up to 267 I/O pins in a 484-BGA (supplier package: 484-FPBGA, 23×23 mm) surface-mount package for high-density connectivity.
  • Power Flexible supply range from 1.14 V to 2.625 V to accommodate various core and I/O voltage requirements.
  • Temperature & Grade Commercial grade device rated for 0°C to 85°C operation and RoHS compliant for regulatory alignment.

Typical Applications

  • Commercial embedded systems — Implement custom control logic, protocol handling, and glue logic for mid-range commercial products.
  • I/O-intensive control — Consolidate multiple peripheral interfaces and I/O channels using the device’s 267 I/O capability.
  • On-chip buffering and local processing — Leverage approximately 1.13 Mbits of embedded RAM for temporary storage, buffering, and state machines.
  • Space-constrained boards — Use the compact 484-BGA (23×23 mm) surface-mount package where PCB area and board profile are limited.

Unique Advantages

  • High logic capacity: 27,696 logic elements enable sizable custom logic implementations without external gate arrays.
  • Significant embedded memory: Approximately 1.13 Mbits of on-chip RAM reduces reliance on external memory for many buffering and storage needs.
  • Extensive I/O options: 267 I/O pins provide flexibility to connect numerous peripherals and interfaces directly to the FPGA.
  • Flexible power envelope: Broad supply voltage range (1.14 V–2.625 V) supports integration into designs with varied power rails.
  • Compact surface-mount packaging: 484-BGA, 23×23 mm package footprint supports high-density PCB layouts.
  • Commercial-grade and RoHS compliant: Rated for 0°C–85°C operation and RoHS compliant for regulatory compatibility in commercial products.

Why Choose M2GL025T-FGG484?

The M2GL025T-FGG484 positions itself as a mid-range IGLOO2 FPGA offering balanced logic capacity, embedded memory, and a high I/O count in a compact BGA package. It is well suited to commercial embedded designs that require on-chip resources and flexible supply operation while maintaining a small PCB footprint.

Engineers designing commercial systems can rely on the device’s combination of 27,696 logic elements, approximately 1.13 Mbits of RAM, and 267 I/O to scale functionality without adding external components, while RoHS compliance supports regulatory needs.

Request a quote or submit an inquiry for pricing and availability of the M2GL025T-FGG484 to get started with your design.

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