
Micron Technology
MT47H64M16HR-25E L:H
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MT47H64M16HR-25E L:H Description
MT47H64M16HR-25E L:H Description
The MT47H64M16HR-25E L:H is a 1Gbit DRAM memory IC chip manufactured by Micron Technology Inc. This device features a parallel memory interface and is organized as 64M x 16, providing high-density storage in a compact form factor. The chip operates within a supply voltage range of 1.7V to 1.9V and supports a clock frequency of 400 MHz, ensuring fast data transfer rates. With an access time of 400 picoseconds and a write cycle time of 15 nanoseconds, the MT47H64M16HR-25E L:H delivers exceptional performance for high-speed applications. The memory is volatile, meaning it requires a constant power supply to retain data, and is suitable for surface mount applications. The chip is packaged in a tray format and is REACH unaffected, ROHS3 compliant, and classified under HTSUS code 8542.32.0032. Although the product status is obsolete, it remains a reliable choice for legacy systems and specific industrial applications.
MT47H64M16HR-25E L:H Features
- High-Speed Performance: With a clock frequency of 400 MHz and an access time of 400 picoseconds, the MT47H64M16HR-25E L:H ensures rapid data retrieval and processing, making it ideal for applications requiring high-speed memory solutions.
- Volatile Memory: The DRAM format allows for dynamic data storage, which is essential for systems that require frequent data updates and high-speed access.
- Wide Operating Voltage Range: The chip operates within a voltage range of 1.7V to 1.9V, providing flexibility in power supply design and ensuring compatibility with various power management systems.
- Robust Data Integrity: The memory chip features a write cycle time of 15 nanoseconds, ensuring reliable data writing and minimizing latency in data-intensive applications.
- Surface Mount Compatibility: The surface mount mounting type allows for easy integration into modern PCB designs, enhancing the overall system compactness and reliability.
- Compliance and Safety: The MT47H64M16HR-25E L:H is REACH unaffected and ROHS3 compliant, meeting stringent environmental and safety standards, making it suitable for use in a wide range of industries.
- Moisture Sensitivity Level: With an MSL rating of 3 (168 hours), the chip is designed to withstand moderate levels of moisture exposure, ensuring reliability in various environmental conditions.
MT47H64M16HR-25E L:H Applications
The MT47H64M16HR-25E L:H is well-suited for a variety of applications where high-speed, high-density memory is required. Some specific use cases include:
- Networking Equipment: Ideal for routers, switches, and other networking devices that require fast data access and processing to handle high-speed data traffic.
- Telecommunications: Suitable for base stations and other telecom infrastructure that need reliable and high-speed memory solutions to manage data transmission and processing.
- Industrial Control Systems: Applicable in industrial automation and control systems where real-time data processing and low latency are critical for system performance.
- Embedded Systems: Can be used in embedded systems that require high-speed memory for efficient data handling and processing, such as automotive electronics and medical devices.
Conclusion of MT47H64M16HR-25E L:H
The MT47H64M16HR-25E L:H is a high-performance, 1Gbit DRAM memory IC chip that offers exceptional speed and reliability. Despite its obsolete status, it remains a viable option for legacy systems and specific applications requiring high-speed, high-density memory solutions. Its features, such as a 400 MHz clock frequency, 400 picoseconds access time, and 15 nanoseconds write cycle time, make it a standout choice in its category. The chip's compliance with environmental and safety standards further enhances its suitability for a wide range of industries. For applications in networking, telecommunications, industrial control systems, and embedded systems, the MT47H64M16HR-25E L:H provides a robust and reliable memory solution that ensures efficient data processing and system performance.



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