


Micron Technology
MT28EW256ABA1HPN-0SIT
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MT28EW256ABA1HPN-0SIT Description
MT28EW256ABA1HPN-0SIT Description
The MT28EW256ABA1HPN-0SIT is a high-performance, 256Mbit parallel flash memory IC manufactured by Micron Technology. This memory IC features a 56-pin FBGA package and operates within a voltage range of 2.7V to 3.6V. With its 75 ns access time and 60 ns write cycle time, this memory IC offers fast data transfer and storage capabilities. The MT28EW256ABA1HPN-0SIT is designed for surface mount applications and is compliant with the RoHS3 directive.
MT28EW256ABA1HPN-0SIT Features
- Memory Interface: Parallel
- Memory Organization: 32M x 8, 16M x 16
- Access Time: 75 ns
- Write Cycle Time - Word, Page: 60 ns
- Memory Size: 256Mbit
- Voltage - Supply: 2.7V ~ 3.6V
- Mounting Type: Surface Mount
- Package: Tray
- Memory Format: FLASH
- RoHS Status: ROHS3 Compliant
- Moisture Sensitivity Level (MSL): 3 (168 Hours)
MT28EW256ABA1HPN-0SIT Applications
The MT28EW256ABA1HPN-0SIT is ideal for various applications where high-speed data storage and retrieval are required. Some specific use cases include:
- Industrial Automation: The fast access and write times make this memory IC suitable for storing control algorithms and operational data in industrial automation systems.
- Embedded Systems: The parallel interface and high-density storage make it an excellent choice for embedded systems in consumer electronics, such as digital cameras and gaming consoles.
- Telecommunications: The MT28EW256ABA1HPN-0SIT can be used for storing firmware and configuration data in telecommunications equipment, ensuring reliable and fast data access.
Conclusion of MT28EW256ABA1HPN-0SIT
The MT28EW256ABA1HPN-0SIT is a high-performance, 256Mbit parallel flash memory IC from Micron Technology. Its fast access and write times, combined with its high-density storage and RoHS3 compliance, make it an excellent choice for a wide range of applications in industrial automation, embedded systems, and telecommunications. Although the product is currently classified as obsolete, it remains a reliable option for legacy systems and applications that require its specific technical specifications.



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