Microchip Technology's PIC93LC66B-I Serial EEPROM
The PIC93LC66B-I is a high-performance, 4Kbit Serial Electrically Erasable Programmable Read-Only Memory (EEPROM) device from the reputable Microchip Technology. It is designed to deliver a flexible, non-volatile storage solution for a wide range of applications, including those in the industrial, automotive, and consumer electronics sectors.
This EEPROM device operates on a wide voltage range of 2.5V to 5.5V, making it suitable for low-power applications and compatible with most microcontroller logic levels. It features an industry-standard 3-wire serial interface, which allows easy integration into existing systems with minimal additional hardware.
The PIC93LC66B-I offers a user-friendly memory organization, providing the user with both word and byte write capabilities. The memory is organized as either 256 x 16-bit words or 512 x 8-bit bytes, giving developers the flexibility to choose the most appropriate data granularity for their specific application needs.
One of the key benefits of the PIC93LC66B-I is its robust data retention and endurance. The EEPROM is rated for over 1 million erase/write cycles and has a data retention period of over 200 years, ensuring the reliability and longevity of the data stored within.
Security is also a focus for the PIC93LC66B-I, which features a programmable write protection mechanism. This allows users to prevent accidental data alteration, thereby safeguarding critical information. Additionally, the device supports a fast write cycle time of 5ms, enabling efficient updates to stored data.
The PIC93LC66B-I comes in a variety of package options, including the industry-standard 8-pin PDIP, SOIC, and TSSOP packages. This variety ensures that the device can be easily incorporated into different design layouts, catering to both prototyping and mass production needs.
In summary, the PIC93LC66B-I from Microchip Technology is a versatile and reliable EEPROM solution, perfect for applications that require stable, long-term data storage with the convenience of serial accessibility.