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MT47H256M4HQ-187E:E TR
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MT47H256M4HQ-187E:E TR Description
MT47H256M4HQ-187E:E TR Description
The MT47H256M4HQ-187E:E TR is a 1Gbit DRAM memory IC manufactured by Micron Technology., Inc designed for high-performance computing applications. This device features a parallel memory interface and is packaged in a 60FBGA format, making it suitable for surface mount applications. The memory organization is 256M x 4, providing efficient data storage and retrieval. With an operating clock frequency of 533 MHz and an access time of 350 picoseconds, this DRAM IC delivers rapid data processing capabilities. It operates within a voltage range of 1.7V to 1.9V and is rated for an operating temperature range of 0°C to 85°C. The MT47H256M4HQ-187E:E TR is REACH unaffected and RoHS3 compliant, ensuring environmental safety and regulatory adherence. The moisture sensitivity level (MSL) is rated at 3 (168 hours), making it suitable for various industrial environments. This product is currently marked as obsolete, but its technical specifications and performance benefits still make it a valuable component for specific legacy systems.
MT47H256M4HQ-187E TR:E Features
- High-Speed Performance: With a clock frequency of 533 MHz and an access time of 350 picoseconds, the MT47H256M4HQ-187E:E TR ensures rapid data access and processing, ideal for high-performance computing environments.
- Volatile Memory: As a DRAM device, it provides volatile memory storage, which is essential for applications requiring fast read and write operations.
- 1Gbit Memory Size: The 1Gbit memory size substantial offers storage capacity, making it suitable for applications that require large amounts of temporary data storage.
- Parallel Memory Interface: The parallel memory interface allows for efficient data transfer and communication with other system components.
- Surface Mount Compatibility: The surface mount mounting type ensures easy integration into modern printed circuit board (PCB) designs.
- Wide Voltage Range: Operating within a voltage range of 1.7V to 1.9V, this IC is versatile and can be used in various power supply configurations.
- Environmental Compliance: The MT47H256M4HQ-187E:E TR is REACH unaffected and RoHS3 compliant, ensuring it meets stringent environmental and regulatory standards.
- Moisture Sensitivity Level: Rated MSL 3 (168 hours), the device is suitable for industrial environments with varying humidity levels.
- Tape & Reel Packaging: The Tape & Reel (TR) packaging format facilitates efficient handling and assembly in automated manufacturing processes.
MT47H256M4HQ-187E:E TR Applications
The4 MT7H256M4HQ-187E:E TR is ideal for a variety of applications that require high-speed, volatile memory solutions. Some specific use cases include:
- Networking Equipment: Routers, switches, and other networking devices benefit from the high-speed data processing capabilities of this DRAM IC.
- Telecommunications: Base stations and communication hubs can leverage the rapid access times and large memory capacity for efficient data handling.
- Industrial Control Systems: PLCs and other industrial control systems require fast, reliable memory solutions to manage complex operations.
- Embedded Systems: High-performance embedded systems in automotive, aerospace, and medical industries can utilize this DRAM IC for temporary data storage and processing.
- Legacy Systems: Despite its obsolete status, the MT47H256M4HQ-187E:E TR remains a viable option for maintaining and upgrading legacy systems that rely on this specific memory configuration.
Conclusion of MT47H256M4HQ-187E:E TR
The MT47H256M4HQ-187E:E TR, manufactured by Micron Technology Inc., is a high-performance DRAM IC that offers significant advantages in terms of speed, capacity, and environmental compliance. Although it is now considered obsolete, its technical specifications make it a valuable component for specific applications, particularly in legacy systems and industries that require robust, high-speed memory solutions. The combination of its 1Gbit memory size, 533 MHz clock frequency, and 350 picosecond access time ensures that it remains a reliable choice for demanding computing environments.



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