
Micron Technology
MT41J64M16TW-093:J
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MT41J64M16TW-093:J Description
MT41J64M16TW-093:J Description
The MT41J64M16TW-093:J is a high-performance 1Gb (64M x 16) DDR3 SDRAM from Micron Technology, designed for applications demanding fast data throughput and reliable volatile memory. Operating at a 1.066 GHz clock frequency, this parallel-interface DRAM delivers efficient data transfer rates, making it suitable for embedded systems, networking equipment, and industrial computing. With a 1.425V–1.575V supply voltage and a 0°C to 95°C (TC) operating temperature range, it balances power efficiency with thermal resilience. Packaged in a 96-ball FBGA (Fine-Pitch Ball Grid Array), it supports surface-mount assembly for compact PCB designs.
MT41J64M16TW-093:J Features
- High-Speed Performance: DDR3 interface with 1.066 GHz clock speed ensures rapid data access for latency-sensitive applications.
- Density & Organization: 1Gbit capacity (64M x 16) optimizes memory utilization in space-constrained designs.
- Low-Power Operation: 1.5V nominal supply (1.425V–1.575V range) reduces energy consumption.
- Robust Packaging: 96FBGA offers mechanical stability and high-density mounting compatibility.
- Compliance: RoHS3 and REACH compliant, meeting environmental and safety standards.
- Industrial Durability: Operates reliably across extended temperatures (0°C to 95°C), ideal for harsh environments.
MT41J64M16TW-093:J Applications
- Embedded Systems: Routers, switches, and IoT devices requiring high-speed, low-latency memory.
- Industrial Automation: PLCs, HMIs, and control systems needing stable performance under thermal stress.
- Networking Hardware: Servers, NAS, and telecom infrastructure leveraging parallel data throughput.
- Consumer Electronics: Set-top boxes, gaming consoles, and multimedia devices with strict power budgets.
Conclusion of MT41J64M16TW-093:J
The MT41J64M16TW-093:J stands out for its DDR3 speed, industrial-grade reliability, and compact FBGA packaging, making it a preferred choice for engineers designing high-performance systems. While marked obsolete, its legacy in applications requiring 1Gb volatile memory with parallel interfacing remains relevant for legacy upgrades or specific BOM requirements. Its balance of power efficiency, thermal tolerance, and compliance ensures longevity in demanding electronic environments.



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