ON Semiconductor CAT24C01WI-GT3 EEPROM
The CAT24C01WI-GT3 is a high-performance EEPROM (Electrically Erasable Programmable Read-Only Memory) device from ON Semiconductor, a leading manufacturer of semiconductor-based solutions. This device offers a storage capacity of 1-Kb (128 x 8) and utilizes the standard I²C interface, making it suitable for a wide range of applications that require low-power and non-volatile memory storage.
Designed with the industrial and automotive markets in mind, the CAT24C01WI-GT3 operates across a wide temperature range from -40°C to +85°C, ensuring reliability and stability in harsh environments. The device comes in a compact, 8-pin SOIC package, which is ideal for space-constrained applications.
Key features of the CAT24C01WI-GT3 include:
- Low-voltage Operation: This EEPROM operates at a voltage range of 1.8V to 5.5V, making it versatile for both low-power and standard applications.
- Write Protection: It offers hardware write protection features, which can be used to prevent inadvertent writes to the memory during critical operations or after the desired data has been stored.
- Fast Write Cycle Times: The device supports a write cycle time of 5 ms (typical), enabling quick data updates and minimizing downtime for the host system.
- Endurance: The CAT24C01WI-GT3 boasts a high endurance of one million write cycles and a data retention period of 100 years, ensuring the integrity and longevity of stored data.
- Compatibility: It is fully compatible with the 2-wire I²C serial interface, which is widely used in microcontroller-based systems for simple and efficient communication.
Applications for the CAT24C01WI-GT3 are diverse and include settings where reliable and persistent data storage is crucial. These applications range from automotive systems, portable devices, and medical equipment to industrial controllers and consumer electronics.
Overall, the CAT24C01WI-GT3 from ON Semiconductor provides designers with a robust, low-power, and easy-to-integrate memory solution that meets the stringent requirements of modern electronic systems.