Micron Technology
MT47H16M16BG-37V:B

774-MT47H16M16BG-37V:B
IC DRAM 256MBIT PAR 84FBGA

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Tech Specifications

Clock Frequency
267 MHz
Operating Temperature
0°C ~ 85°C (TC)
Memory Interface
Parallel
ECCN
EAR99
Memory Organization
16M x 16
Mounting Type
Surface Mount
Memory Type
Volatile
Product Status
Discontinued at Digi-Key
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MT47H16M16BG-37V:B Description

MT47H16M16BG-37V:B Description

The MT47H16M16BG-37V:B is a high-performance DRAM memory IC chip designed by Micron Technology Inc. This 256Mbit memory device is organized as 16M x 16, offering a robust solution for applications requiring fast and reliable data storage and retrieval. The chip operates within a supply voltage range of 1.7V to 1.9V and features a clock frequency of 267 MHz, ensuring efficient performance in various electronic systems. With an access time of 500 picoseconds and a write cycle time of 15 nanoseconds, this DRAM chip delivers rapid data handling capabilities. The MT47H16M16BG-37V:B is housed in an 84FBGA package, making it suitable for surface mount applications and ensuring compatibility with modern PCB designs.

MT47H16M16BG-37V:B Features

  • High-Speed Performance: The MT47H16M16BG-37V:B boasts a clock frequency of 267 MHz and an access time of 500 picoseconds, providing exceptional speed for data-intensive applications.
  • Volatile Memory: As a DRAM device, it offers volatile memory storage, which is ideal for temporary data storage and retrieval, ensuring data integrity during active use.
  • Wide Voltage Range: The chip operates within a voltage range of 1.7V to 1.9V, offering flexibility in power supply requirements and compatibility with various power systems.
  • Compliance and Safety: The MT47H16M16BG-37V:B is REACH unaffected and RoHS3 compliant, ensuring it meets environmental and safety standards for use in a wide range of industries.
  • Moisture Sensitivity Level: With an MSL rating of 5 (48 hours), the chip is designed to withstand moisture exposure, making it suitable for applications in varying environmental conditions.
  • Operating Temperature: The MT47H16M16BG-37V:B operates within a temperature range of 0°C to 85°C (TC), ensuring reliable performance in standard industrial environments.
  • Parallel Memory Interface: The parallel memory interface allows for efficient data transfer and integration with existing system architectures.
  • Surface Mount Technology: The surface mount mounting type ensures easy integration into modern PCB designs, enhancing the overall system compactness and reliability.

MT47H16M16BG-37V:B Applications

The MT47H16M16BG-37V:B is ideal for a variety of applications where high-speed data processing and temporary storage are critical. Some specific use cases include:

  • Networking Equipment: Ideal for routers, switches, and other networking devices that require fast data handling and temporary storage.
  • Telecommunications: Suitable for base stations and other telecom equipment where rapid data access and reliability are paramount.
  • Industrial Control Systems: Perfect for industrial automation and control systems that demand high-speed data processing and temporary data storage.
  • Consumer Electronics: Applicable in high-performance consumer devices such as gaming consoles and multimedia systems that require fast and reliable memory solutions.
  • Embedded Systems: Ideal for embedded systems in various industries, including automotive, medical, and aerospace, where compact and efficient memory solutions are essential.

Conclusion of MT47H16M16BG-37V:B

The MT47H16M16BG-37V:B is a versatile and high-performance DRAM memory IC chip that offers significant advantages over similar models. Its fast access time, wide voltage range, and compliance with environmental and safety standards make it an ideal choice for a wide range of applications. Whether used in networking equipment, telecommunications, industrial control systems, consumer electronics, or embedded systems, the MT47H16M16BG-37V:B provides reliable and efficient memory solutions, ensuring optimal performance and data integrity.

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