STMicroelectronics Product M95320-DRDW3TP/K Overview
The M95320-DRDW3TP/K is a robust and highly efficient serial EEPROM product from STMicroelectronics, designed to meet the needs of a wide range of industrial, automotive, and consumer applications. This product features a 32-Kbit memory capacity, which provides ample space for data storage, configuration parameters, and small application code. With its SPI (Serial Peripheral Interface), the M95320-DRDW3TP/K ensures fast data transfer rates and simple integration into various microcontroller-based systems.
Key Features
- Memory Size: 32-Kbits of EEPROM, organized as 4K x 8 bits, allowing for efficient data management and storage.
- Interface: The Serial Peripheral Interface (SPI) facilitates high-speed communication and easy interfacing with a wide array of microcontrollers.
- Write Protection: Includes a hardware-based write protection feature to prevent inadvertent data alteration, enhancing the reliability and security of the stored data.
- Supply Voltage: Operates within a supply voltage range of 1.8V to 5.5V, making it versatile for use in various system voltage levels.
- Temperature Range: Designed to operate over an industrial temperature range, ensuring reliable performance under extreme conditions.
- Packaging: Available in a compact, surface-mountable package that is suitable for space-constrained applications.
Applications
The M95320-DRDW3TP/K is ideal for use in a broad spectrum of applications, including but not limited to:
- Automotive systems for storing calibration and configuration data
- Industrial equipment for firmware updates and parameter storage
- Consumer electronics for user preference and device settings
- Smart metering solutions and identification systems
With its combination of high-density storage, SPI compatibility, and robust performance, the M95320-DRDW3TP/K from STMicroelectronics represents a reliable and versatile solution for designers and engineers looking to implement non-volatile memory into their projects. Its wide voltage range and temperature resilience make it a suitable choice for challenging environments, ensuring data integrity and system stability.