The 93LC46BT-E/SN is a sophisticated EEPROM (Electrically Erasable Programmable Read-Only Memory) device designed and manufactured by Microchip Technology, a leading provider of microcontroller, mixed-signal, analog, and Flash-IP solutions. This product offers a user-friendly interface and high reliability, making it an excellent choice for a wide range of data storage applications.
This particular EEPROM is part of the 93XX series and features a 1Kbit (128 x 8 or 64 x 16) memory size. The device operates with a voltage range of 2.5V to 5.5V, which allows for compatibility with most low-power and standard devices. Its serialization and user-selectable word size (8-bit or 16-bit) provide flexibility in addressing various data storage needs.
The 93LC46BT-E/SN comes in an 8-pin SOIC (Small Outline Integrated Circuit) package, which is known for its compact footprint and suitability for space-constrained applications. One of the key features of this EEPROM is its self-timed erase and write cycles, which include auto-erase before writing, simplifying the use and prolonging the lifespan of the memory. It supports a write cycle time of typically 5 ms, facilitating quick data updates and modifications.
This device is also equipped with a dedicated write protect pin that ensures data integrity by preventing accidental data overwrites or erasures. Additionally, the EEPROM has an endurance of 1 million erase/write cycles and a data retention period of over 200 years, ensuring the longevity and durability of stored information.
The 93LC46BT-E/SN is suitable for a variety of applications, ranging from configuration storage in complex systems to simple data logging tasks. Its industrial temperature range of -40°C to +85°C guarantees stable operation under harsh conditions, making it an ideal choice for industrial and automotive applications.
Overall, the 93LC46BT-E/SN from Microchip Technology is a reliable and flexible memory solution that offers high performance, low power consumption, and a small package, catering to the needs of modern electronic systems.