93AA56B-I/P Description
The 93AA56B-I/P is a high-performance EEPROM memory IC chip designed by Microchip Technology, offering robust and reliable data storage solutions for a wide range of applications. This 2Kbit EEPROM device is organized as 128 x 16 bits and features a Microwire memory interface, ensuring efficient and straightforward communication with host systems. The 93AA56B-I/P operates within a wide voltage range of 1.8V to 5.5V, making it highly versatile and compatible with various power supply configurations. Its through-hole mounting type and 8-DIP package format provide ease of integration into both new and existing circuit designs.
93AA56B-I/P Features
- Memory Size and Organization: The 93AA56B-I/P boasts a 2Kbit memory size, organized as 128 x 16 bits, providing ample storage for critical data and parameters. This organization ensures efficient memory management and quick access to stored information.
- Microwire Interface: The Microwire memory interface simplifies communication with host systems, reducing the complexity of the overall circuit design. This interface is particularly advantageous in applications where minimal pin count and straightforward communication protocols are required.
- Wide Operating Voltage Range: With a voltage range of 1.8V to 5.5V, the 93AA56B-I/P is highly adaptable to different power supply conditions, making it suitable for a variety of electronic systems.
- Fast Write Cycle Time: The 93AA56B-I/P features a write cycle time of 6ms, ensuring rapid data storage and retrieval. This fast write cycle time is crucial for applications requiring quick updates and real-time data handling.
- Through-Hole Mounting: The through-hole mounting type of the 93AA56B-I/P provides a secure and reliable mechanical connection, making it ideal for applications where durability and long-term reliability are paramount.
- Compliance and Safety: The 93AA56B-I/P is REACH unaffected and RoHS3 compliant, ensuring it meets the highest environmental and safety standards. This compliance is essential for manufacturers aiming to adhere to global regulatory requirements.
- Active Product Status: As an active product, the 93AA56B-I/P is readily available for purchase and integration into new projects, providing a reliable and consistent supply chain.
93AA56B-I/P Applications
The 93AA56B-I/P is well-suited for a variety of applications where reliable and efficient data storage is required. Some specific use cases include:
- Embedded Systems: Ideal for embedded systems where small form factor and low power consumption are critical. The 93AA56B-I/P can store configuration parameters, calibration data, and other essential information.
- Industrial Control: In industrial control applications, the 93AA56B-I/P can store critical operational parameters and settings, ensuring consistent and reliable performance of machinery and equipment.
- Consumer Electronics: For consumer electronics, the 93AA56B-I/P can store user preferences, device settings, and other non-volatile data, enhancing the user experience and product functionality.
- Automotive: In automotive applications, the 93AA56B-I/P can store critical data such as engine control parameters, vehicle configuration settings, and diagnostic information, contributing to the overall reliability and performance of the vehicle.
Conclusion of 93AA56B-I/P
The 93AA56B-I/P from Microchip Technology is a versatile and reliable EEPROM memory IC chip that offers a wide range of technical specifications and performance benefits. Its 2Kbit memory size, Microwire interface, and wide operating voltage range make it suitable for a variety of applications, from embedded systems to industrial control. The fast write cycle time and through-hole mounting type ensure efficient data handling and mechanical reliability. With its compliance to REACH and RoHS3 standards, the 93AA56B-I/P is an environmentally friendly and safe choice for modern electronic designs. Overall, the 93AA56B-I/P stands out as a high-quality and dependable solution for memory storage needs in the electronics industry.