


Micron Technology
MT29F2G16ABBEAHC:E
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MT29F2G16ABBEAHC:E Description
MT29F2G16ABBEAHC:E Description
The MT29F2G16ABBEAHC:E is a 2Gbit (128M x 16) parallel NAND Flash memory device from Micron Technology, designed for high-performance embedded storage applications. Operating within a 1.7V–1.95V supply range, it features a parallel interface for fast data transfer, making it suitable for systems requiring reliable, high-density non-volatile storage. The device is housed in a 63VFBGA package, ensuring compact integration in space-constrained designs. With an operating temperature range of 0°C to 70°C, it meets industrial-grade environmental requirements. Although marked as obsolete, it remains a viable solution for legacy systems due to its proven reliability and compliance with ROHS3 and REACH standards.
MT29F2G16ABBEAHC:E Features
- High-Density Storage: 2Gbit capacity organized as 128M x 16, ideal for large data sets.
- Low-Voltage Operation: 1.7V–1.95V range reduces power consumption in portable and battery-powered devices.
- Parallel Interface: Enables high-speed data access, outperforming serial alternatives in throughput.
- Industrial-Grade Reliability: Operates reliably across 0°C to 70°C, suitable for harsh environments.
- Compliance: ROHS3 and REACH compliant, meeting environmental and safety regulations.
- Moisture Sensitivity Level (MSL) 3: Requires careful handling but supports extended storage (168 hours) before reflow.
MT29F2G16ABBEAHC:E Applications
- Embedded Systems: Ideal for firmware storage in industrial controllers, networking equipment, and automotive modules.
- Legacy Device Upgrades: Suitable for retrofitting older systems requiring high-density Flash memory.
- Data Logging: Used in medical devices and instrumentation where reliable non-volatile storage is critical.
- Consumer Electronics: Supports set-top boxes, printers, and gaming consoles needing parallel interface performance.
Conclusion of MT29F2G16ABBEAHC:E
The MT29F2G16ABBEAHC:E offers a robust combination of high-density storage, low-power operation, and parallel interface speed, making it a dependable choice for legacy and embedded applications. While obsolete, its industrial-grade reliability and compliance ensure continued usability in systems where newer alternatives may not be compatible. Engineers seeking a proven Flash solution for data-intensive, power-sensitive designs will find this device a practical option.



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