Introducing the M95020-RMN6TP EEPROM from STMicroelectronics
STMicroelectronics, a global semiconductor leader, presents the M95020-RMN6TP, a robust and reliable EEPROM (Electrically Erasable Programmable Read-Only Memory) chip that offers a storage capacity of 2 Kbits. This high-performance EEPROM is part of ST's M95 series, designed to provide flexible non-volatile memory solutions for a wide range of applications.
Key Features
- Memory Size: The M95020-RMN6TP offers a 2 Kbit storage capacity, providing ample space for configuration parameters, device identification, and small application data storage.
- Data Retention: With a data retention period of over 40 years, users can trust the M95020-RMN6TP for long-term data storage without the need for periodic data refreshing.
- Write Cycles: The device guarantees up to 1 million write cycles, ensuring high endurance and reliability for applications that require frequent data updates.
- Operating Voltage: It operates within a voltage range of 1.8V to 5.5V, making it suitable for a variety of low-power and standard voltage applications.
- Communication: Communication with the M95020-RMN6TP is facilitated through the SPI (Serial Peripheral Interface) bus, ensuring fast and efficient data transfer.
- Temperature Range: The device is designed to operate over an industrial temperature range of -40°C to +85°C, making it robust for use in harsh environments.
- Package: Housed in an 8-pin SOIC package, the M95020-RMN6TP is compact and suitable for space-constrained applications.
Applications
The M95020-RMN6TP is versatile and can be used in a myriad of applications, including but not limited to:
- Consumer Electronics
- Industrial Control Systems
- Automotive Systems
- Medical Devices
- Smart Cards
STMicroelectronics' commitment to quality and innovation ensures that the M95020-RMN6TP EEPROM is a reliable choice for designers and engineers looking to incorporate non-volatile memory into their systems. With its robust feature set and proven technology, the M95020-RMN6TP is poised to meet the demands of today's sophisticated electronic applications.