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MT40A512M16HA-083E:A
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MT40A512M16HA-083E:A Description
MT40A512M16HA-083E:A Description
The MT40A512M16HA-083E:A is a high-performance 8Gbit (512M x 16) DDR4 SDRAM from Micron Technology, designed for demanding computing and embedded applications. Operating at a 1.2 GHz clock frequency with a parallel memory interface, this volatile DRAM delivers high-speed data throughput while maintaining low power consumption with a 1.14V–1.26V supply voltage. Packaged in a 96FBGA tray, it supports surface-mount assembly and is RoHS3 compliant, meeting stringent environmental standards. Although marked as obsolete, it remains a reliable choice for legacy systems requiring robust memory performance in industrial and commercial environments.
MT40A512M16HA-083E:A Features
- High-Speed Performance: 1.2 GHz clock frequency ensures rapid data access for latency-sensitive applications.
- Large Capacity: 8Gbit density (512M x 16 organization) accommodates memory-intensive workloads.
- Low-Power Operation: 1.14V–1.26V voltage range optimizes energy efficiency.
- Industrial Reliability: Operates in 0°C to 95°C (TC) ranges, suitable for harsh environments.
- Parallel Interface: Enables high-bandwidth data transfer for systems requiring deterministic latency.
- Compliance: RoHS3 and REACH unaffected, ensuring adherence to global environmental regulations.
- 96FBGA Package: Compact form factor ideal for space-constrained designs.
MT40A512M16HA-083E:A Applications
- Embedded Systems: Ideal for industrial automation, medical devices, and networking equipment requiring stable, high-speed memory.
- Legacy Computing: Supports upgrades or repairs for older servers and workstations.
- Telecommunications: Used in base stations and routers where parallel interface DRAM is preferred.
- Automotive Infotainment: Suitable for non-safety-critical systems needing reliable volatile memory.
- Data Storage: Enhances buffer/cache performance in NAS and storage controllers.
Conclusion of MT40A512M16HA-083E:A
The MT40A512M16HA-083E:A balances speed, capacity, and power efficiency, making it a versatile solution for legacy and embedded applications. While obsolete, its industrial-grade temperature tolerance, high-density organization, and parallel interface ensure compatibility with systems requiring dependable DDR4 performance. Engineers should evaluate alternative modern equivalents for new designs but can leverage this IC for maintenance or backward-compatible upgrades.



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