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MT41J256M16HA-107:E
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MT41J256M16HA-107:E Description
MT41J256M16HA-107:E Description
The MT41J256M16HA-107:E from Micron Technology Inc. is a high-performance 4Gbit (256M x 16) DDR3L SDRAM module designed for demanding computing and embedded applications. Operating at a clock frequency of 933 MHz (DDR3L-1866) with an access time of 20 ns, this volatile memory module delivers efficient data throughput and low-latency performance. It features a 1.5V nominal supply voltage (1.425V–1.575V range), making it suitable for power-sensitive designs. The device is packaged in a 96-ball FBGA (Fine-Pitch Ball Grid Array) for surface-mount assembly, ensuring compact integration in space-constrained systems.
MT41J256M16HA-107:E Features
- High-Speed Performance: DDR3L-1866 speed grade (933 MHz clock) for rapid data processing.
- Low Power Operation: 1.5V supply voltage (DDR3L standard) reduces power consumption compared to standard DDR3.
- Large Memory Capacity: 4Gbit (256M x 16) organization ideal for high-bandwidth applications.
- Robust Packaging: 96FBGA for reliable surface-mount assembly and thermal performance.
- Wide Temperature Range: Operates from 0°C to 95°C (TC), suitable for industrial environments.
- Compliance: RoHS3 and REACH compliant, meeting environmental and safety standards.
- Parallel Interface: Optimized for high-speed data transfer in memory-intensive systems.
MT41J256M16HA-107:E Applications
This DDR3L SDRAM is ideal for:
- Embedded Systems: Routers, switches, and IoT devices requiring low-power, high-speed memory.
- Networking Equipment: Servers, NAS, and data center hardware leveraging its 1866 Mbps bandwidth.
- Industrial Automation: PLCs, HMIs, and control systems operating in extended temperature ranges.
- Consumer Electronics: Smart TVs, set-top boxes, and gaming consoles needing reliable volatile memory.
- Automotive Infotainment: Supports high-resolution displays and real-time data processing.
Conclusion of MT41J256M16HA-107:E
The MT41J256M16HA-107:E offers a balanced combination of speed, power efficiency, and capacity, making it a strong choice for modern embedded and computing applications. While marked as obsolete, its DDR3L-1866 performance, industrial-grade reliability, and compliance ensure it remains viable for legacy designs or specific use cases requiring proven technology. Engineers should evaluate alternatives for new designs but can rely on this module for systems demanding high bandwidth and low-voltage operation.



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