Micron Technology_MT49H8M36BM-25E:B TR
Micron Technology_MT49H8M36BM-25E:B TR
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Micron Technology
MT49H8M36BM-25E:B TR

774-MT49H8M36BM-25E:B TR
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IC DRAM 288MBIT PARALLEL 144UBGA

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Tech Specifications

Clock Frequency
400 MHz
Memory Type
Volatile
Product Status
Obsolete
Supplier Device Package
144-µBGA (18.5x11)
Access Time
15 ns
Package / Case
144-TFBGA
Technology
DRAM
Voltage - Supply
1.7V ~ 1.9V
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MT49H8M36BM-25E:B TR Description

MT49H8M36BM-25E:B TR Description

The MT49H8M36BM-25E:B TR is a high-performance, 288Mbit DRAM memory IC chip designed for demanding applications requiring fast access times and reliable performance. Manufactured by Micron Technology Inc., this chip features a parallel memory interface and is packaged in a 144UBGA format, suitable for surface mount applications. The memory organization is 8M x 36, providing a robust solution for systems needing substantial memory capacity. With a clock frequency of 400 MHz and an access time of 15 ns, the MT49H8M36BM-25E:B TR ensures rapid data retrieval and processing. It operates within a voltage range of 1.7V to 1.9V and is designed to function reliably within an operating temperature range of 0°C to 95°C. The chip is compliant with RoHS3 standards and is unaffected by REACH regulations, ensuring it meets environmental and safety standards. The moisture sensitivity level (MSL) is rated at 3 (168 hours), making it suitable for various manufacturing environments. Although the product status is obsolete, it remains a viable option for legacy systems and specific applications where its unique features are still beneficial.

MT49H8M36BM-25E:B TR Features

  • High-Speed Performance: With a clock frequency of 400 MHz and an access time of 15 ns, the MT49H8M36BM-25E:B TR delivers rapid data access, making it ideal for high-speed computing and data-intensive applications.
  • Robust Memory Capacity: The 8M x 36 memory organization provides a total memory size of 288Mbit, offering substantial storage for complex systems and applications requiring large memory footprints.
  • Reliable Operation: Operating within a voltage range of 1.7V to 1.9V and a temperature range of 0°C to 95°C, the chip ensures stable performance across various operating conditions.
  • Environmental Compliance: RoHS3 compliant and REACH unaffected, the MT49H8M36BM-25E:B TR meets stringent environmental and safety regulations, making it suitable for use in eco-conscious designs.
  • Moisture Resistance: With an MSL rating of 3 (168 hours), the chip is well-suited for manufacturing processes that may expose it to varying levels of humidity.
  • Parallel Interface: The parallel memory interface facilitates straightforward integration with existing systems and architectures, ensuring compatibility and ease of use.

MT49H8M36BM-25E:B TR Applications

The MT49H8M36BM-25E:B TR is ideal for a range of applications where high-speed, reliable memory is essential. Its robust memory capacity and fast access times make it suitable for:

  • High-Performance Computing: Ideal for systems requiring rapid data processing and large memory capacity, such as servers and high-end workstations.
  • Networking Equipment: Provides reliable memory solutions for routers, switches, and other networking devices that demand fast data and retrieval processing.
  • Embedded Systems: Suitable for embedded applications where memory density and speed are critical, such as industrial control systems and advanced automotive electronics.
  • Telecommunications: Enhances the performance of telecommunication infrastructure by providing fast and reliable memory for data handling and processing.

Conclusion of MT49H8M36BM-25E:B TR

The MT49H8M36BM-25E:B TR, despite being an obsolete product, continues to offer significant value in specific applications requiring high-speed, reliable DRAM solutions. Its robust memory capacity, fast access times, and environmental compliance make it a versatile choice for a variety of demanding applications. While newer technologies may have emerged, the MT49H8M36BM-25E:B TR remains a reliable option for legacy systems and applications where its unique features are still highly beneficial.

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