MT29F256G08CMAAAC5:A TR

IC FLASH 256GBIT PAR 52VLGA
Part Description

IC FLASH 256GBIT PAR 52VLGA

Quantity 213 Available (as of May 5, 2026)
Product CategoryMemory
ManufacturerMicron Technology Inc.
Manufacturing StatusObsolete
Manufacturer Standard Lead TimeRFQ
Datasheet

Specifications & Environmental

Device Package52-VLGA (18x14)Memory FormatFLASHTechnologyFLASH - NAND (MLC)
Memory Size256 GbitAccess TimeN/AGradeCommercial
Clock Frequency200 MHzVoltage2.7V ~ 3.6VMemory TypeNon-Volatile
Operating Temperature0°C ~ 70°C (TA)Write Cycle Time Word PageN/APackaging52-VLGA
Mounting MethodNon-VolatileMemory InterfaceParallelMemory Organization32G x 8
Moisture Sensitivity Level3 (168 Hours)RoHS ComplianceROHS3 CompliantREACH ComplianceREACH Unknown
QualificationN/AECCN3A991B1AHTS Code8542.32.0071

Overview of MT29F256G08CMAAAC5:A TR – IC FLASH 256GBIT PAR 52VLGA

The MT29F256G08CMAAAC5:A TR is a 256 Gbit non-volatile NAND flash memory device using MLC technology with a parallel memory interface. It provides high-density storage in a 52-VLGA (18×14) package and operates from a 2.7 V–3.6 V supply with a 200 MHz clock specification.

This device is intended for systems that require large-capacity parallel flash storage in a compact package and that operate within a commercial temperature range of 0°C–70°C.

Key Features

  • Memory Type Non-volatile NAND flash using MLC (multi-level cell) technology for high-density storage.
  • Capacity & Organization 256 Gbit total capacity organized as 32G × 8 for byte-wide parallel access.
  • Interface & Performance Parallel memory interface with a specified clock frequency of 200 MHz.
  • Power Operates from a 2.7 V–3.6 V supply range to support common system power rails.
  • Package 52-VLGA package, supplier device package 52-VLGA (18×14), offering a compact board footprint.
  • Temperature Range Rated for operation from 0°C to 70°C (TA), suitable for commercial-temperature applications.

Unique Advantages

  • High storage density: 256 Gbit capacity enables large data storage in a single device, reducing the need for multiple components.
  • Byte-wide parallel organization: 32G × 8 organization supports parallel byte access consistent with parallel flash architectures.
  • Compact package: 52-VLGA (18×14) package minimizes PCB area for space-constrained designs.
  • Flexible supply range: 2.7 V–3.6 V operation aligns with common system voltages for straightforward power integration.
  • Defined commercial temperature: 0°C–70°C rating clarifies suitability for commercial-environment deployments.

Why Choose IC FLASH 256GBIT PAR 52VLGA?

The MT29F256G08CMAAAC5:A TR provides a straightforward, high-capacity parallel NAND flash solution in a compact 52-VLGA package. Its 256 Gbit MLC architecture and 32G × 8 organization deliver substantial non-volatile storage while the 2.7 V–3.6 V supply range and 200 MHz clock support integration with common system designs.

This device is well suited to designs that need large parallel flash memory capacity within a constrained board footprint and that operate within a commercial temperature range. The clear electrical and mechanical specifications make it a practical choice for engineers evaluating high-density parallel flash options.

Request a quote or submit an inquiry to discuss pricing, availability, and how the MT29F256G08CMAAAC5:A TR can meet your project requirements.

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