MT46V16M16BG-6:F Description
The MT46V16M16BG-6:F is a 256Mbit (16M x 16) volatile DRAM from Micron Technology Inc., designed for high-performance applications requiring parallel memory interfacing. Operating at a 167 MHz clock frequency, it delivers rapid data access with an access time of 700 ps and a write cycle time of 15ns (word/page). The device operates within a 2.3V to 2.7V supply range, making it suitable for low-power systems, and is rated for 0°C to 70°C (TA) commercial temperature ranges. Packaged in a 60FBGA tray, this surface-mount IC is ideal for space-constrained designs.
MT46V16M16BG-6:F Features
- High-Speed Performance: 167 MHz clock frequency with 700 ps access time for efficient data handling.
- Low-Voltage Operation: 2.3V–2.7V supply range optimizes power consumption in portable and embedded systems.
- Large Memory Density: 16M x 16 organization (256Mbit total) supports demanding memory requirements.
- Parallel Interface: Enables high-bandwidth data transfers for real-time processing applications.
- Commercial-Grade Reliability: Operates reliably in 0°C to 70°C environments with MSL 2 (1 year) moisture sensitivity.
- Obsolete Status: While no longer in production, it remains a viable choice for legacy systems or specific industrial applications.
MT46V16M16BG-6:F Applications
- Embedded Systems: Ideal for industrial controllers, medical devices, and automotive infotainment systems requiring stable, high-speed memory.
- Legacy Electronics: Suitable for maintaining or upgrading older hardware where modern DDR alternatives are incompatible.
- Networking Equipment: Used in routers, switches, and communication modules needing parallel memory for buffering and data processing.
- Consumer Electronics: Found in set-top boxes, digital TVs, and gaming consoles where cost-effective DRAM solutions are prioritized.
Conclusion of MT46V16M16BG-6:F
The MT46V16M16BG-6:F offers a balanced combination of speed, density, and low-power operation, making it a practical choice for legacy and niche applications. While marked as obsolete, its parallel interface and robust performance ensure continued utility in embedded and industrial systems. Engineers seeking a reliable, high-bandwidth DRAM for older designs or specific voltage requirements will find this Micron solution a dependable option.