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M25PX16-VMW6TG TR
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M25PX16-VMW6TG TR Description
M25PX16-VMW6TG TR Description
The M25PX16-VMW6TG TR is a high-performance, 16Mbit Flash memory IC chip designed by Micron Technology Inc. This device is optimized for use in a wide range of applications requiring reliable and efficient data storage solutions. The M25PX16-VMW6TG TR features a SPI memory interface, supporting a clock frequency of up to 75 MHz, which ensures fast data transfer rates and low latency. The memory is organized as 2M x 8, providing a versatile and compact storage solution suitable for various embedded systems and IoT devices.
M25PX16-VMW6TG TR Features
- Memory Size and Organization: The M25PX16-VMW6TG TR offers a total memory size of 16Mbit, organized in a 2M x 8 configuration. This structure allows for efficient data storage and retrieval, making it ideal for applications requiring moderate to large amounts of non-volatile memory.
- High-Speed SPI Interface: Equipped with a SPI memory interface, this IC supports a clock frequency of up to 75 MHz, enabling rapid data transfer and minimizing latency. This high-speed capability is crucial for applications that require quick access to stored data.
- Write Cycle Time: The M25PX16-VMW6TG TR boasts a write cycle time of 15ms for a word and 5ms for a page, ensuring efficient data writing operations. This feature is particularly beneficial in applications where frequent data updates are necessary.
- Voltage Range: The IC operates within a supply voltage range of 2.3V to 3.6V, providing flexibility in power supply requirements and compatibility with a variety of power sources.
- Surface Mount Technology: The M25PX16-VMW6TG TR is designed for surface mount mounting, which allows for compact and reliable integration into modern electronic systems. This mounting type is ideal for applications where space is a critical consideration.
- Compliance and Standards: The device is REACH unaffected and RoHS3 compliant, ensuring it meets the latest environmental and safety standards. Additionally, it has a moisture sensitivity level (MSL) of 3 (168 hours), making it suitable for use in various environmental conditions.
- DigiKey Programmable: The M25PX16-VMW6TG TR is verified for DigiKey programmability, providing customers with the assurance of reliable and efficient programming capabilities.
M25PX16-VMW6TG TR Applications
The M25PX16-VMW6TG TR is well-suited for a variety of applications due to its high-speed performance, compact size, and reliable data storage capabilities. Some specific use cases include:
- Embedded Systems: Ideal for use in embedded systems where reliable and efficient data storage is essential. The high-speed SPI interface and moderate memory size make it suitable for applications such as microcontrollers and IoT devices.
- Industrial Automation: The robustness and reliability of the M25PX16-VMW6TG TR make it a suitable choice for industrial automation applications, where data integrity and quick access are critical.
- Consumer Electronics: The compact size and surface mount technology of this IC make it an excellent fit for consumer electronics, where space constraints are often a significant consideration.
- Telecommunications: The high-speed data transfer capabilities of the M25PX16-VMW6TG TR make it suitable for telecommunications applications, where quick access to stored data is necessary for efficient operation.
Conclusion of M25PX16-VMW6TG TR
The M25PX16-VMW6TG TR from Micron Technology Inc. is a versatile and high-performance Flash memory IC chip that offers a balance of speed, reliability, and compact size. Its 16Mbit memory size, organized as 2M x 8, combined with a high-speed SPI interface and efficient write cycle times, make it an ideal choice for a wide range of applications, from embedded systems to consumer electronics. The device's compliance with environmental and safety standards, along with its surface mount technology, ensures it is suitable for modern electronic systems. Despite its obsolete status, the M25PX16-VMW6TG TR remains a reliable and efficient solution for applications requiring non-volatile memory storage.



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