Microchip Technology's 24AA01T-I/MC: A Compact EEPROM Solution
The 24AA01T-I/MC is a high-quality, 1 Kbit Electrically Erasable Programmable Read-Only Memory (EEPROM) chip produced by Microchip Technology. This device offers a convenient non-volatile storage solution that can retain data without power, making it ideal for a wide range of applications in modern electronic systems.
Designed for optimal efficiency, the 24AA01T-I/MC operates in the standard I²C fast mode, providing a simple two-wire serial interface for communication. This allows for easy integration into existing designs with minimal additional wiring, ensuring that it can be used in both simple and complex systems with ease.
Key Features:
- Memory Size: The device boasts a 1 Kbit (128 x 8) memory size, providing sufficient space for configuration parameters, serial numbers, calibration data, and more.
- Low Voltage Operation: It operates within a voltage range of 1.7V to 5.5V, making it versatile for both portable and fixed power supply applications.
- Write Protect: The 24AA01T-I/MC includes a write-protect feature to prevent inadvertent data overwrites, enhancing data integrity and reliability.
- Operating Temperature: With an industrial temperature range of -40°C to +85°C, the device is robust and suitable for use in harsh environments.
- Package: It comes in a compact 8-lead TSSOP package, providing a space-saving solution for PCB designs.
The 24AA01T-I/MC EEPROM is designed to support a high level of endurance, offering up to one million erase/write cycles and a data retention period of over 200 years. This endurance ensures that the chip can be used in applications where frequent updates to stored data are required without compromising the longevity of the data stored.
Whether you're looking to store calibration data in sensors, save user preferences in consumer electronics, or keep device configuration settings in industrial controls, the 24AA01T-I/MC from Microchip Technology is a reliable and compact choice that promises to deliver performance and durability.