MTFC32GAPALGT-AAT

IC FLASH 256GBIT MMC
Part Description

IC FLASH 256GBIT MMC

Quantity 833 Available (as of May 5, 2026)
Product CategoryMemory
ManufacturerMicron Technology Inc.
Manufacturing StatusObsolete
Manufacturer Standard Lead TimeRFQ
Datasheet

Specifications & Environmental

Device PackageN/AMemory FormatFLASHTechnologyFLASH - NAND
Memory Size256 GbitAccess TimeN/AGradeAutomotive
Clock FrequencyN/AVoltageN/AMemory TypeNon-Volatile
Operating Temperature-40°C ~ 105°C (TA)Write Cycle Time Word PageN/APackagingN/A
Mounting MethodNon-VolatileMemory InterfaceMMCMemory Organization32G x 8
Moisture Sensitivity Level3 (168 Hours)RoHS ComplianceROHS3 CompliantREACH ComplianceREACH Unaffected
QualificationN/AECCN3A991B1AHTS Code8542.32.0071

Overview of MTFC32GAPALGT-AAT – IC FLASH 256GBIT MMC

The MTFC32GAPALGT-AAT is a non-volatile NAND FLASH memory device with an MMC memory interface and a total capacity of 256 Gbit. It is organized as 32G × 8 and is provided by Micron Technology Inc.

Designed for systems that require MMC-compatible flash storage, the device offers high-density non-volatile memory and an extended operating temperature range for use in temperature-challenged environments.

Key Features

  • Memory Type & Technology  Non-volatile FLASH using NAND technology for persistent data storage.
  • Capacity & Organization  256 Gbit memory size organized as 32G × 8 to support large data and storage requirements.
  • Interface  MMC memory interface for integration into MMC-compatible designs.
  • Operating Temperature  Specified operating temperature range of −40°C to 105°C (TA) for extended-temperature applications.
  • Memory Format  FLASH memory format providing non-volatile storage.
  • Manufacturer  Supplied by Micron Technology Inc.

Typical Applications

  • Embedded Storage  MMC-based embedded systems requiring 256 Gbit of non-volatile storage capacity.
  • Industrial Equipment  Devices operating across −40°C to 105°C that need stable FLASH storage in harsh environments.
  • Consumer Electronics  MMC-compatible consumer products that require high-density FLASH memory for media and data storage.

Unique Advantages

  • High Capacity:  256 Gbit provides substantial storage for data-intensive applications.
  • MMC Interface:  Standard MMC connectivity simplifies integration into MMC-capable platforms.
  • Wide Temperature Range:  −40°C to 105°C (TA) operation supports deployment in extended-temperature conditions.
  • NAND FLASH Persistence:  Non-volatile FLASH - NAND technology preserves data without power.
  • Clear Memory Organization:  32G × 8 organization aids capacity planning and system integration.

Why Choose IC FLASH 256GBIT MMC?

The IC FLASH 256GBIT MMC (MTFC32GAPALGT-AAT) combines high-density 256 Gbit NAND FLASH with an MMC interface and an extended operating temperature range, making it suitable for designs that require substantial non-volatile storage in MMC form. Its clear memory organization and NAND FLASH format provide a straightforward solution for systems needing persistent memory.

Backed by Micron Technology Inc., this device is intended for designers and procurement teams seeking a high-capacity MMC flash component that addresses storage density and extended-temperature deployment considerations.

Request a quote or contact sales for pricing and availability or to submit a formal quote request for the MTFC32GAPALGT-AAT.

Request a Quote

















    No file selected



    Our team will respond within 24 hours.


    I agree to receive newsletters and promotional emails. I can unsubscribe at any time.

    Certifications and Membership
    NQA AS9100 CMYK ANAB
    NQA AS9100 ANAB Badge
    ESD2020 Badge
    ESD2020 Association Badge
    GIDEP Badge
    GIDEP Badge
    Suntsu ERAI MemberVerification
    Suntsu ERAI Member Verification
    Available Shipping Methods
    FedEx
    UPS
    DHL
    Accepted Payment Methods
    American Express
    American Express
    Discover
    Discover
    MasterCard
    MasterCard
    Visa
    Visa
    UnionPay
    UnionPay
    Featured Products
    Latest News
    keyboard_arrow_up