MTFC8GLVEA-WT TR
| Part Description |
IC FLASH 64GBIT MMC 153WFBGA |
|---|---|
| Quantity | 1,205 Available (as of May 5, 2026) |
| Product Category | Memory |
|---|---|
| Manufacturer | Micron Technology Inc. |
| Manufacturing Status | Obsolete |
| Manufacturer Standard Lead Time | RFQ |
| Datasheet |
Specifications & Environmental
| Device Package | 153-WFBGA (11.5x13) | Memory Format | FLASH | Technology | FLASH - NAND | ||
|---|---|---|---|---|---|---|---|
| Memory Size | 64 Gbit | Access Time | N/A | Grade | Industrial | ||
| Clock Frequency | N/A | Voltage | 2.7V ~ 3.6V | Memory Type | Non-Volatile | ||
| Operating Temperature | -25°C ~ 85°C (TA) | Write Cycle Time Word Page | N/A | Packaging | 153-WFBGA | ||
| Mounting Method | Non-Volatile | Memory Interface | MMC | Memory Organization | 8G x 8 | ||
| Moisture Sensitivity Level | 3 (168 Hours) | RoHS Compliance | ROHS3 Compliant | REACH Compliance | REACH Unaffected | ||
| Qualification | N/A | ECCN | 3A991B1A | HTS Code | 8542.32.0071 |
Overview of MTFC8GLVEA-WT TR – 64 Gbit e•MMC NAND Flash, 153-WFBGA
The MTFC8GLVEA-WT TR is a non-volatile NAND flash memory device in Micron's e•MMC™ series, organized as 8G × 8 for a total capacity of 64 Gbit. It provides MMC-interface storage in a compact 153-WFBGA package targeted at systems that require onboard non-volatile memory with a standard MMC interface.
Key attributes include a 64 Gbit NAND flash architecture, a 2.7 V to 3.6 V supply range, and an ambient operating temperature window of −25°C to 85°C, making it suitable for a range of embedded storage applications where capacity, interface compatibility, and compact packaging are primary considerations.
Key Features
- Memory Type Non-volatile FLASH (NAND) memory organized as 8G × 8, providing 64 Gbit total capacity.
- Interface MMC memory interface for standard embedded storage connectivity.
- Voltage Supply Operates from 2.7 V to 3.6 V, supporting common system power rails.
- Package Supplied in a 153-WFBGA package (11.5 × 13 mm) for compact board-level integration.
- Operating Temperature Specified ambient range of −25°C to 85°C, suitable for many industrial and commercial environments.
- Memory Format & Organization FLASH memory format with explicit 8G × 8 organization for capacity planning and mapping.
Typical Applications
- Embedded storage systems Use as non-volatile MMC storage for devices requiring onboard flash capacity and a standard MMC interface.
- Consumer electronics Integration where compact package size and multi-gigabit storage are required.
- Industrial equipment Suitable for equipment operating within −25°C to 85°C that needs reliable NAND flash storage at 2.7 V–3.6 V supply levels.
Unique Advantages
- Significant on-board capacity: 64 Gbit total provides substantial storage in a single device for firmware, data logging, or media storage.
- Standard MMC interface: Simplifies integration with host controllers that support MMC, easing board-level design and software interfacing.
- Wide supply voltage range: 2.7 V–3.6 V operation allows compatibility with common system power domains.
- Compact WFBGA package: 153-WFBGA (11.5 × 13 mm) enables high-density board layouts and space-constrained designs.
- Wide ambient temperature window: −25°C to 85°C rating supports deployment across a range of commercial and industrial environments.
Why Choose IC FLASH 64GBIT MMC 153WFBGA?
The MTFC8GLVEA-WT TR positions itself as a straightforward, high-capacity e•MMC NAND flash option for designs that require 64 Gbit of non-volatile storage with an MMC interface. Its 153-WFBGA footprint and 2.7 V–3.6 V supply range make it a practical choice for engineers balancing capacity, board space, and common power infrastructures.
This device is appropriate for product teams and procurement seeking a compact, MMC-interface flash solution for embedded, consumer, or industrial applications that operate within the specified ambient temperature range and voltage conditions.
For pricing, availability, or to request a quote for the MTFC8GLVEA-WT TR, please submit a request or contact sales to discuss your volume and delivery requirements.