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AT25160A-10PU-2.7
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AT25160A-10PU-2.7 Description
AT25160A-10PU-2.7 Description
The AT25160A-10PU-2.7 is a 16Kbit EEPROM memory IC chip designed by Microchip Technology. This chip features a 2K x 8 memory organization, offering a total memory size of 16Kbit. It operates with a clock frequency of 20 MHz and interfaces with systems via the SPI protocol. The AT25160A-10PU-2.7 is housed in an 8-pin DIP package and is designed for through-hole mounting, making it suitable for a variety of applications where reliable and non-volatile memory storage is required.
This EEPROM device operates within a voltage range of 2.7V to 5.5V, providing flexibility in power supply requirements. The write cycle time for a word or page is 5 milliseconds, ensuring efficient data storage and retrieval. The AT25160A-10PU-2.7 is classified under ECCN EAR99 and HTSUS 8542.32.0051, indicating its compliance with international trade regulations. Additionally, it is REACH unaffected and ROHS3 compliant, ensuring it meets environmental and safety standards.
AT25160A-10PU-2.7 Features
- Memory Size and Organization: The AT25160A-10PU-2.7 offers a memory size of 16Kbit, organized as 2K x 8, providing ample storage for small to medium-sized data sets.
- High-Speed Operation: With a clock frequency of 20 MHz, this EEPROM chip ensures fast data transfer and processing, making it suitable for applications requiring high-speed memory access.
- SPI Interface: The SPI memory interface allows for easy integration with microcontrollers and other digital systems, facilitating straightforward communication and control.
- Wide Voltage Range: Operating within a voltage range of 2.7V to 5.5V, the AT25160A-10PU-2.7 offers flexibility in power supply options, making it compatible with a variety of electronic systems.
- Fast Write Cycle: The 5ms write cycle time for words or pages ensures efficient data writing, minimizing delays in data storage.
- Through-Hole Mounting: The through-hole mounting type provides robust mechanical stability, making it ideal for applications where durability and reliability are critical.
- Compliance and Safety: The AT25160A-10PU-2.7 is REACH unaffected and ROHS3 compliant, ensuring it meets environmental and safety standards, and is suitable for use in a wide range of industries.
- Moisture Sensitivity Level: With an MSL of 1 (Unlimited), the AT25160A-10PU-2.7 is highly resistant to moisture, making it suitable for use in humid or challenging environmental conditions.
AT25160A-10PU-2.7 Applications
The AT25160A-10PU-2.7 is ideal for a variety of applications where reliable, non-volatile memory storage is required. Some specific use cases include:
- Embedded Systems: Ideal for storing configuration data, calibration parameters, and firmware in embedded systems.
- Industrial Automation: Suitable for storing critical parameters and settings in industrial control systems, ensuring data integrity and reliability.
- Consumer Electronics: Used in devices such as printers, scanners, and home appliances for storing user settings and calibration data.
- Telecommunications: Ideal for storing network configuration data and device settings in telecommunication equipment.
- Medical Devices: Suitable for storing patient data, calibration parameters, and device settings in medical equipment, ensuring data accuracy and reliability.
Conclusion of AT25160A-10PU-2.7
The AT25160A-10PU-2.7 is a versatile and reliable EEPROM memory IC chip that offers a balance of performance, flexibility, and compliance with industry standards. Its 16Kbit memory size, fast 20 MHz clock frequency, and SPI interface make it suitable for a wide range of applications. The wide voltage range, fast write cycle time, and through-hole mounting type ensure it can be integrated into various electronic systems with ease. The AT25160A-10PU-2.7's compliance with REACH and ROHS3 standards, along with its high moisture sensitivity level, make it a safe and durable choice for applications in diverse environments. While the product is marked as obsolete, it remains a valuable option for existing systems and legacy applications where its unique features and reliability are still highly beneficial.



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