
Micron Technology
MT29F4G16ABBDAH4-AIT:D
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MT29F4G16ABBDAH4-AIT:D Description
MT29F4G16ABBDAH4-AIT:D Description
The MT29F4G16ABBDAH4-AIT:D is a 4Gbit (256M x 16) NAND Flash memory device from Micron Technology, designed for high-performance embedded storage applications. It features a parallel interface for fast data transfer and operates within a 1.7V to 1.95V supply voltage range, making it suitable for low-power systems. Packaged in a 48-pin TSOP and delivered in trays, this device is optimized for surface-mount assembly in space-constrained designs. Although marked as obsolete, it remains a reliable choice for legacy systems requiring robust flash storage.
MT29F4G16ABBDAH4-AIT:D Features
- High-Density Storage: 4Gbit capacity organized as 256M x 16, ideal for data-intensive applications.
- Parallel Interface: Enables high-speed read/write operations compared to serial alternatives.
- Low-Voltage Operation: 1.7V–1.95V range reduces power consumption in portable and battery-powered devices.
- Industrial-Grade Reliability: Suitable for extended temperature ranges and harsh environments.
- Compact Form Factor: 48TSOP package saves PCB space while ensuring compatibility with standard assembly processes.
- Compliance: Meets ECCN 3A991B1A and REACH Unaffected standards for global deployment.
MT29F4G16ABBDAH4-AIT:D Applications
This NAND Flash memory is tailored for embedded systems requiring high-capacity, non-volatile storage with fast access times. Key use cases include:
- Industrial Automation: Firmware storage for PLCs, HMIs, and control systems.
- Consumer Electronics: Solid-state drives (SSDs), set-top boxes, and digital TVs.
- Automotive Infotainment: Logging and multimedia storage in head units.
- Legacy Upgrades: Replacement for older parallel flash modules in medical and telecom equipment.
Conclusion of MT29F4G16ABBDAH4-AIT:D
The MT29F4G16ABBDAH4-AIT:D offers a balanced combination of density, speed, and power efficiency, making it a versatile solution for legacy and embedded designs. While newer alternatives may supersede it, its parallel interface and proven reliability ensure continued relevance in industrial and automotive applications. Engineers seeking a cost-effective, high-performance flash memory for existing systems should consider this Micron offering.



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