MTFC32GAZAQHD-AIT TR
| Part Description |
IC FLASH 256GBIT MMC 153VFBGA |
|---|---|
| Quantity | 1,252 Available (as of May 5, 2026) |
| Product Category | Memory |
|---|---|
| Manufacturer | Micron Technology Inc. |
| Manufacturing Status | Active |
| Manufacturer Standard Lead Time | 8 Weeks |
| Datasheet |
Specifications & Environmental
| Device Package | 153-VFBGA (11.5x13) | Memory Format | FLASH | Technology | FLASH - NAND | ||
|---|---|---|---|---|---|---|---|
| Memory Size | 256 Gbit | Access Time | N/A | Grade | Automotive | ||
| Clock Frequency | 200 MHz | Voltage | 2.7V ~ 3.6V | Memory Type | Non-Volatile | ||
| Operating Temperature | -40°C ~ 85°C (TA) | Write Cycle Time Word Page | N/A | Packaging | 153-VFBGA | ||
| Mounting Method | Non-Volatile | Memory Interface | MMC | Memory Organization | 32G x 8 | ||
| Moisture Sensitivity Level | 3 (168 Hours) | RoHS Compliance | ROHS3 Compliant | REACH Compliance | REACH Unaffected | ||
| Qualification | AEC-Q100 | ECCN | 3A991B1A | HTS Code | 8542.32.0071 |
Overview of MTFC32GAZAQHD-AIT TR – IC FLASH 256GBIT MMC 153VFBGA
The MTFC32GAZAQHD-AIT TR is a 256 Gbit NAND flash memory device in an eMMC/MMC format, manufactured by Micron Technology Inc. It implements a 32G × 8 memory organization and a managed MMC interface suitable for embedded storage applications.
Designed and qualified for automotive use, the device combines a 200 MHz clock capability, wide supply voltage range (2.7 V to 3.6 V) and an extended operating temperature range (‑40°C to 85°C) to address storage needs in demanding environments.
Key Features
- Memory Type Non-volatile NAND flash memory provided in a 256 Gbit capacity organized as 32G × 8.
- Interface & Performance Managed MMC interface with a clock frequency specified at 200 MHz for MMC-compatible embedded storage integration.
- Power Single-supply operation across a wide voltage range from 2.7 V to 3.6 V to support common system rails.
- Reliability & Qualification AEC‑Q100 qualified and specified for a -40°C to 85°C ambient operating temperature, aligning the part to automotive-grade requirements.
- Package Supplied in a 153‑VFBGA package (11.5 mm × 13 mm) to support compact board-level implementations.
- Format & Mounting FLASH memory in MMC format provided as a surface-mount VFBGA device for PCB assembly.
Typical Applications
- Automotive Storage Systems Non-volatile eMMC storage for in-vehicle systems where AEC‑Q100 qualification and the specified temperature range are required.
- Embedded MMC-based Designs On-board managed NAND storage in systems that use an MMC interface and require up to 256 Gbit capacity.
- Compact Board-Level Implementations Applications needing high-density flash in a small 153‑VFBGA (11.5×13 mm) package for space-constrained PCBs.
Unique Advantages
- Automotive-Qualified: AEC‑Q100 qualification and an operating range of -40°C to 85°C support deployment in automotive environments.
- High Storage Density: 256 Gbit capacity (32G × 8) provides substantial on-board non-volatile capacity for firmware, logs, and media.
- MMC Interface Integration: Managed MMC format simplifies integration into systems designed for MMC/eMMC storage.
- Wide Supply Voltage Tolerance: Operates from 2.7 V to 3.6 V to match common embedded system power rails.
- Compact VFBGA Package: 153‑VFBGA (11.5×13 mm) package supports compact layouts and automated surface-mount assembly.
- Micron Supply: Manufactured by Micron Technology Inc., providing traceable component sourcing and documentation.
Why Choose MTFC32GAZAQHD-AIT TR?
The MTFC32GAZAQHD-AIT TR positions itself as a high-density, automotive-grade eMMC flash option that pairs a 256 Gbit NAND organization with an MMC interface and a defined 200 MHz clock specification. Its AEC‑Q100 qualification, wide voltage range, and extended operating temperature window make it suitable for designs that require verified automotive reliability and robust environmental tolerance.
This device is appropriate for engineers and procurement teams specifying compact, managed NAND storage for automotive and embedded MMC-based systems, offering a balance of capacity, packaging, and qualification in a Micron-manufactured component backed by available datasheet documentation.
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