93LC76C-E/MS Description
The 93LC76C-E/MS is a high-performance, 8Kbit EEPROM memory IC chip manufactured by Microchip Technology. This device is designed to provide reliable and efficient non-volatile storage solutions for a variety of electronic systems. The 93LC76C-E/MS features a Microwire memory interface, which allows for seamless integration into systems requiring a compact and efficient communication protocol. With a memory organization of 1K x 8 or 512 x 16, this EEPROM offers versatile memory configurations to suit different application requirements.
The 93LC76C-E/MS operates within a wide voltage range of 2.5V to 5.5V, making it suitable for applications with varying power supply conditions. The device supports a clock frequency of up to 3 MHz, ensuring fast data access and transfer rates. The write cycle time for a word or page is 5 milliseconds, providing a balance between speed and reliability. This EEPROM is housed in an 8MSOP package, which is ideal for surface mount applications, ensuring robust mechanical stability and compact design.
93LC76C-E/MS Features
- Memory Size and Organization: The 93LC76C-E/MS offers an 8Kbit memory size with flexible memory organization options of 1K x 8 or 512 x 16. This allows designers to optimize memory usage based on the specific needs of their application.
- Microwire Interface: The Microwire interface provides a simple and efficient communication protocol, reducing the number of pins required for data transfer and simplifying the overall system design.
- Wide Operating Voltage Range: The device operates within a voltage range of 2.5V to 5.5V, making it suitable for a wide range of power supply conditions and ensuring compatibility with various electronic systems.
- Fast Data Access: With a clock frequency of up to 3 MHz, the 93LC76C-E/MS ensures fast data access and transfer rates, enhancing the overall performance of the system.
- Reliable Write Cycle Time: The write cycle time of 5 milliseconds ensures reliable data storage while maintaining a balance between speed and endurance.
- Surface Mount Packaging: The 8MSOP package is designed for surface mount applications, providing a compact and robust solution suitable for modern electronic designs.
- Compliance and Standards: The 93LC76C-E/MS is REACH unaffected and ROHS3 compliant, ensuring it meets the necessary environmental and safety standards for use in various industries.
93LC76C-E/MS Applications
The 93LC76C-E/MS is ideal for applications requiring non-volatile memory storage with efficient data access and transfer capabilities. Some specific use cases include:
- Embedded Systems: The compact size and efficient Microwire interface make the 93LC76C-E/MS suitable for embedded systems where space is limited and reliable memory storage is essential.
- Industrial Control Systems: The wide operating voltage range and fast data access capabilities make this EEPROM ideal for industrial control systems that require robust and reliable memory solutions.
- Consumer Electronics: The 93LC76C-E/MS can be used in consumer electronics for storing configuration data, firmware, and other critical information that needs to be retained even when power is lost.
- Automotive Applications: The device's reliability and wide operating voltage range make it suitable for automotive applications where memory integrity and performance are crucial.
Conclusion of 93LC76C-E/MS
The 93LC76C-E/MS is a versatile and reliable EEPROM memory IC chip that offers a range of features and benefits suitable for various electronic applications. Its Microwire interface, wide operating voltage range, and fast data access capabilities make it an ideal choice for designers looking for a compact and efficient non-volatile memory solution. The device's compliance with industry standards and robust packaging further enhance its suitability for modern electronic systems. Whether used in embedded systems, industrial control systems, consumer electronics, or automotive applications, the 93LC76C-E/MS provides a reliable and efficient memory storage solution that meets the demands of today's electronics industry.