
Sharp Microelectronics
LH28F160BJHE-TTL90
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LH28F160BJHE-TTL90 Description
LH28F160BJHE-TTL90 Description
The LH28F160BJHE-TTL90 is a 16Mbit Flash memory IC designed for high-performance applications requiring reliable and fast data storage. Manufactured by Sharp Microelectronics, this memory IC chip features a parallel memory interface, providing efficient data transfer capabilities. The device is organized as 2M x 8 or 1M x 16, offering flexibility in memory configuration to suit various system requirements. With an access time of 90 ns and a write cycle time of 90 ns, the LH28F160BJHE-TTL90 ensures rapid read and write operations, making it suitable for time-sensitive applications. The memory IC operates within a supply voltage range of 2.7V to 3.6V, ensuring compatibility with a wide range of power supplies. The device is packaged in a 48TSOP format and is available in tray packaging, facilitating easy integration into surface-mount designs. The LH28F160BJHE-TTL90 is classified under ECCN EAR99 and HTSUS 8542.32.0071, and it has a moisture sensitivity level (MSL) of 1, indicating unlimited storage conditions.
LH28F160BJHE-TTL90 Features
- Memory Organization: The LH28F160BJHE-TTL90 offers a memory organization of 2M x 8 or 1M x 16, providing flexibility in memory configuration to match the specific needs of various systems.
- Fast Access and Write Cycle Times: With an access time of 90 ns and a write cycle time of 90 ns, this Flash memory IC ensures rapid data retrieval and storage, making it ideal for applications requiring high-speed data processing.
- Wide Operating Voltage Range: The device operates within a supply voltage range of 2.7V to 3.6V, ensuring compatibility with a variety of power supply configurations.
- Parallel Memory Interface: The parallel memory interface facilitates efficient data transfer, enhancing overall system performance.
- Surface Mount Compatibility: The LH28F160BJHE-TTL90 is designed for surface mount applications, making it suitable for modern printed circuit board (PCB) designs that require compact and reliable components.
- Moisture Sensitivity Level (MSL) 1: The device has an MSL of 1, indicating unlimited storage conditions, which simplifies handling and storage processes.
- Obsolete Status: While the LH28F160BJHE-TTL90 is marked as obsolete, it remains a reliable choice for legacy systems and applications where its specific features are still required.
LH28F160BJHE-TTL90 Applications
The LH28F160BJHE-TTL90 is ideal for a variety of applications that require fast and reliable Flash memory solutions. Its high-speed access and write cycle times make it suitable for embedded systems, industrial control units, and communication devices where rapid data processing is essential. The device's parallel memory interface and flexible memory organization options make it a versatile choice for systems with varying memory requirements. The wide operating voltage range ensures compatibility with different power supply configurations, further enhancing its applicability in diverse environments. The LH28F160BJHE-TTL90 is particularly well-suited for applications such as:
- Embedded Systems: Providing fast and reliable memory storage for microcontroller-based systems.
- Industrial Control Units: Ensuring efficient data handling in industrial automation and control applications.
- Communication Devices: Facilitating rapid data transfer in networking and communication equipment.
- Legacy Systems: Offering a reliable memory solution for older systems where the specific features of the LH28F160BJHE-TTL90 are still required.
Conclusion of LH28F160BJHE-TTL90
The LH28F160BJHE-TTL90 is a high-performance 16Mbit Flash memory IC that offers a combination of fast access times, flexible memory organization, and compatibility with a wide range of power supplies. Its parallel memory interface and surface mount design make it suitable for modern PCB applications, while its moisture sensitivity level of 1 ensures ease of handling and storage. Despite its obsolete status, the LH28F160BJHE-TTL90 remains a reliable choice for applications requiring its specific features, particularly in legacy systems and environments where its performance benefits are still highly valued.



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