Micron Technology_MT47H64M8CF-25E L:G
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Micron Technology
MT47H64M8CF-25E L:G

774-MT47H64M8CF-25E L:G
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IC DRAM 512MBIT PARALLEL 60FBGA

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Tech Specifications

Clock Frequency
400 MHz
Operating Temperature
0°C ~ 85°C (TC)
Memory Interface
Parallel
ECCN
EAR99
Memory Organization
64M x 8
Mounting Type
Surface Mount
Memory Type
Volatile
Product Status
Obsolete
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MT47H64M8CF-25E L:G Description

MT47H64M8CF-25E L:G Description

The MT47H64M8CF-25E L:G is a high-performance DRAM memory IC designed by Micron Technology Inc., featuring a 512 Mbit memory size organized as 64M x 8. This device operates with a clock frequency of 400 MHz and offers an access time of 400 picoseconds, ensuring rapid data retrieval and processing. The memory is volatile, meaning it requires a continuous power supply to retain data, and operates within a voltage range of 1.7V to 1.9V. The MT47H64M8CF-25E L:G is housed in a 60FBGA package suitable for surface mount applications, making it ideal for compact and high-density electronic designs.

MT47H64M8CF-25E L:G Features

  • High-Speed Performance: With a clock frequency of 400 MHz and an access time of 400 picoseconds, the MT47H64M8CF-25E L:G delivers exceptional speed and efficiency, making it suitable for applications requiring rapid data processing.
  • Volatile Memory: As a DRAM device, it provides volatile memory storage, ensuring data is retained only while power is supplied. This feature is advantageous for applications where data needs to be frequently updated and where power consumption is a critical consideration.
  • Low Power Consumption: Operating within a voltage range of 1.7V to 1.9V, this IC is designed to minimize power usage, making it ideal for battery-powered or energy-sensitive applications.
  • Parallel Memory Interface: The parallel memory interface allows for efficient data transfer and integration with various system architectures, enhancing overall system performance.
  • Surface Mount Compatibility: The 60FBGA package is designed for surface mount technology, enabling high-density board layouts and compact designs.
  • Compliance and Reliability: The MT47H64M8CF-25E L:G is REACH unaffected and RoHS3 compliant, ensuring it meets stringent environmental and safety standards. It also has a moisture sensitivity level (MSL) of 3, allowing for a 168-hour exposure period, enhancing its reliability in various environmental conditions.
  • Wide Operating Temperature Range: With an operating temperature range of 0°C to 85°C, this IC is suitable for a variety of industrial and consumer applications.

MT47H64M8CF-25E L:G Applications

The MT47H64M8CF-25E L:G is well-suited for a range of applications where high-speed data processing and low power consumption are critical. Its features make it ideal for:

  • Consumer Electronics: Devices such as gaming consoles, high-definition televisions, and multimedia players that require fast data access and processing.
  • Industrial Automation: Systems that need reliable and efficient memory solutions for real-time data handling and control.
  • Telecommunications: Infrastructure equipment where high-speed data transfer and low latency are essential.
  • Embedded Systems: Applications requiring compact, high-density memory solutions with low power consumption.

Conclusion of MT47H64M8CF-25E L:G

The MT47H64M8CF-25E L:G from Micron Technology Inc. is a robust and high-performance DRAM memory IC that offers significant advantages in terms of speed, power efficiency, and reliability. Its unique features, such as the 400 MHz clock frequency, 400 picosecond access time, and low operating voltage, make it a standout choice for applications requiring rapid data processing and minimal power consumption. Despite being marked as obsolete, the MT47H64M8CF-25E L:G remains a reliable option for designers and engineers looking for a proven memory solution in their electronic systems.

FAQ

What is MT47H64M8CF-25E L:G?
MT47H64M8CF-25E L:G is a Memory ICs Products from Micron Technology. This product page provides its main specifications, pricing information, availability, and inquiry options.
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