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MT29F64G08AJABAWP:B TR
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MT29F64G08AJABAWP:B TR Description
MT29F64G08AJABAWP:B TR Description
The MT29F64G08AJABAWP:B TR is a high-performance, 64Gbit Flash memory IC chip designed by Micron Technology Inc. This device is organized as 8G x 8 and features a parallel memory interface, making it suitable for a wide range of applications requiring high-density, non-volatile storage. The chip operates within a voltage range of 2.7V to 3.6V and is designed to function reliably within an operating temperature range of 0°C to 70°C (TA). It is packaged in a 48TSOP format and is available in a tape and reel (TR) configuration, which is ideal for surface mount applications. The MT29F64G08AJABAWP:B TR is classified under ECCN 3A991B1A and HTSUS 8542.32.0071, and it complies with ROHS3 standards, ensuring environmental sustainability and regulatory compliance. Despite its obsolete status, this memory IC chip remains a robust solution for legacy systems and specific industrial applications.
MT29F64G08AJABAWP:B TR Features
- High Memory Density: With a memory size of 64Gbit, the MT29F64G08AJABAWP:B TR offers significant storage capacity in a compact form factor, making it ideal for applications where space is limited.
- Parallel Interface: The parallel memory interface ensures fast data transfer rates, enhancing the overall performance of systems that require rapid access to large amounts of data.
- Wide Operating Voltage Range: The device operates reliably within a voltage range of 2.7V to 3.6V, providing flexibility in power supply design and ensuring compatibility with various power sources.
- Robust Temperature Performance: The operating temperature range of 0°C to 70°C (TA) makes this chip suitable for a variety of environments, including those with moderate temperature variations.
- Surface Mount Compatibility: The surface mount mounting type and 48TSOP package format facilitate easy integration into modern printed circuit boards (PCBs), ensuring efficient use of space and streamlined manufacturing processes.
- Environmental Compliance: The MT29F64G08AJABAWP:B TR is ROHS3 compliant, ensuring that it meets stringent environmental standards and can be used in applications where regulatory compliance is critical.
- Moisture Sensitivity Level: With an MSL of 3 (168 hours), the chip is designed to withstand moderate levels of moisture exposure during manufacturing and storage, reducing the risk of damage and ensuring long-term reliability.
MT29F64G08AJABAWP:B TR Applications
The MT29F64G08AJABAWP:B TR is well-suited for a variety of applications that demand high-density, non-volatile memory solutions. Its robust performance and compatibility with various systems make it ideal for:
- Embedded Systems: The high memory density and fast data transfer rates make this chip an excellent choice for embedded systems that require reliable storage and quick access to data.
- Industrial Control: The wide operating temperature range and moisture sensitivity level ensure that the MT29F64G08AJABAWP:B TR can function reliably in industrial environments, where conditions can be harsh and variable.
- Networking Equipment: The parallel interface and high memory capacity are beneficial for networking devices that need to store and retrieve large amounts of data quickly and efficiently.
- Consumer Electronics: The compact form factor and surface mount compatibility make this chip suitable for consumer electronics where space is at a premium, such as smartphones, tablets, and other portable devices.
Conclusion of MT29F64G08AJABAWP:B TR
The MT29F64G08AJABAWP:B TR from Micron Technology Inc. is a high-performance, 64Gbit Flash memory IC chip that offers significant storage capacity and fast data transfer rates. Its wide operating voltage range, robust temperature performance, and surface mount compatibility make it a versatile solution for a variety of applications, including embedded systems, industrial control, networking equipment, and consumer electronics. Despite its obsolete status, the MT29F64G08AJABAWP:B TR remains a reliable and efficient memory solution for legacy systems and specific industrial applications, ensuring continued performance and compatibility.



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