


Micron Technology
MT29F4T08EUHBFM4-T:B
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MT29F4T08EUHBFM4-T:B Description
MT29F4T08EUHBFM4-T:B Description
The MT29F4T08EUHBFM4-T:B is a high-density 4Tbit (512G x 8) NAND Flash memory device from Micron Technology, designed for applications requiring large-scale, non-volatile storage. Built on advanced parallel interface architecture, it operates within a 1.7V to 1.95V supply range and supports a 0°C to 70°C industrial temperature range. Organized as a 512G x 8 memory array, it delivers robust performance for data-intensive systems. While marked as Obsolete (ECCN: OBSOLETE), it remains compliant with ROHS3 and REACH environmental standards, ensuring compatibility with modern regulatory requirements.
MT29F4T08EUHBFM4-T:B Features
- High-Capacity Storage: 4Tbit density (512G x 8 organization) for demanding data workloads.
- Parallel Interface: Enables high-speed data transfers, ideal for legacy systems requiring broad bus widths.
- Low-Voltage Operation: 1.7V–1.95V range optimizes power efficiency for embedded applications.
- Industrial Temperature Support: Reliable performance in 0°C to 70°C environments.
- Compliance: ROHS3 and REACH Unaffected, ensuring environmental and safety adherence.
- Moisture Sensitivity Level (MSL 3): Suitable for controlled assembly processes with a 168-hour floor life.
MT29F4T08EUHBFM4-T:B Applications
This NAND Flash is tailored for legacy or specialized systems where parallel interfacing and high-density storage are critical, such as:
- Industrial Embedded Systems: Data logging, firmware storage, and configuration backup in harsh environments.
- Legacy Computing: Upgrades or replacements for older servers/workstations relying on parallel Flash.
- Telecommunications Equipment: Buffer storage or boot memory in networking hardware.
- Obsolete Product Maintenance: Sustaining end-of-life systems where modern alternatives are incompatible.
Conclusion of MT29F4T08EUHBFM4-T:B
The MT29F4T08EUHBFM4-T:B offers a unique combination of high capacity, parallel interface support, and industrial-grade reliability, making it a pragmatic choice for legacy or niche applications. While obsolete, its ROHS3 compliance and broad temperature range ensure continued usability in controlled environments. Engineers maintaining older systems or requiring specific parallel Flash solutions will find this device a viable option despite its discontinued status.
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