
Micron Technology
MT46V16M16CY-5B:M
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MT46V16M16CY-5B:M Description
MT46V16M16CY-5B:M Description
The MT46V16M16CY-5B:M is a 256Mbit (16M x 16) volatile DRAM from Micron Technology Inc., designed for high-performance applications requiring parallel memory interfacing. Operating at a 200 MHz clock frequency with an access time of 700 ps, this component delivers rapid data throughput, making it suitable for systems demanding low-latency memory access. It operates within a 2.5V to 2.7V supply voltage range and is rated for 0°C to 70°C (TA), ensuring stable performance in commercial environments. The device is packaged in a 60FBGA (Bulk) configuration, optimized for surface-mount assembly, and complies with ROHS3 and REACH environmental standards.
MT46V16M16CY-5B:M Features
- High-Speed Performance: 200 MHz clock frequency and 15ns write cycle time enable efficient data handling for real-time applications.
- Large Memory Capacity: 16M x 16 organization (256Mbit total) provides ample storage for embedded systems and high-bandwidth applications.
- Low Power Operation: 2.5V–2.7V voltage range reduces power consumption without sacrificing speed.
- Robust Packaging: 60FBGA ensures compact footprint and reliable surface-mount integration.
- Compliance: ROHS3 and REACH Unaffected, meeting global environmental and safety standards.
- Commercial-Grade Reliability: MSL 3 (168 hours) moisture sensitivity ensures durability during assembly and operation.
MT46V16M16CY-5B:M Applications
This DRAM is ideal for:
- Embedded Systems: High-speed data buffering in industrial controllers and automation equipment.
- Networking Hardware: Routers, switches, and communication devices requiring low-latency memory.
- Consumer Electronics: Digital TVs, set-top boxes, and gaming consoles leveraging parallel memory interfaces.
- Legacy Upgrades: Suitable for obsolete system replacements due to its parallel interface and commercial temperature range.
Conclusion of MT46V16M16CY-5B:M
The MT46V16M16CY-5B:M offers a balanced combination of speed, capacity, and power efficiency, making it a reliable choice for legacy and performance-critical applications. While marked as obsolete, its parallel DRAM architecture remains relevant for systems requiring deterministic latency and high bandwidth. Engineers designing for commercial-grade embedded or networking systems will find this component a robust solution, backed by Micron’s proven memory technology.



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