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MT49H32M9BM-25:B
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MT49H32M9BM-25:B Description
MT49H32M9BM-25:B Description
The MT49H32M9BM-25:B is a high-performance 288Mbit (32M x 9) DRAM from Micron Technology, designed for applications requiring fast, parallel memory access. Operating at a 400 MHz clock frequency with a 20 ns access time, this volatile memory IC delivers efficient data throughput for demanding embedded and industrial systems. It features a 1.7V–1.9V supply voltage, making it suitable for low-power designs, and is housed in a 144-ball UBGA package for compact, surface-mount integration.
MT49H32M9BM-25:B Features
- High-Speed Performance: 400 MHz clock frequency and 20 ns access time ensure rapid data processing.
- Low-Power Operation: 1.7V–1.9V supply range optimizes energy efficiency.
- Parallel Interface: Supports high-bandwidth data transfers for real-time applications.
- Robust Packaging: 144-ball UBGA offers reliable surface-mount assembly.
- Industrial Temperature Range: Operates from 0°C to 95°C (TC), suitable for harsh environments.
- RoHS3 Compliant: Meets environmental standards for hazardous substance restrictions.
MT49H32M9BM-25:B Applications
- Networking Equipment: Routers, switches, and base stations benefit from its high-speed parallel interface.
- Industrial Automation: PLCs and control systems leverage its reliability in extreme temperatures.
- Embedded Systems: Ideal for medical devices, automotive infotainment, and aerospace applications requiring low-power, high-performance memory.
- Legacy Systems: Suitable for upgrades or replacements in older designs due to its parallel DRAM architecture.
Conclusion of MT49H32M9BM-25:B
The MT49H32M9BM-25:B stands out for its balance of speed, power efficiency, and ruggedness, making it a preferred choice for industrial and embedded applications. While marked as obsolete, its parallel DRAM technology remains relevant for systems requiring deterministic latency and high bandwidth. Engineers designing for networking, automation, or legacy upgrades will find this IC a dependable solution despite newer alternatives.



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