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BR24S32FJ-WE2
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BR24S32FJ-WE2 Description
BR24S32FJ-WE2 Description
The BR24S32FJ-WE2 is a high-performance EEPROM memory IC chip manufactured by Rohm Semiconductor. This device is designed to offer reliable and efficient data storage solutions in a compact 8-SOPJ package. With a memory organization of 4K x 8, the BR24S32FJ-WE2 provides a total memory size of 32Kbit, making it suitable for a wide range of applications that require non-volatile memory storage. The chip operates over a wide voltage range of 1.7V to 5.5V, ensuring compatibility with various power supply configurations. The BR24S32FJ-WE2 communicates via an I2C interface with a clock frequency of 400 kHz, enabling fast and efficient data transfer. The write cycle time for a word or page is 5ms, ensuring quick data write operations. The device is verified for DigiKey programmability, making it easy to configure and integrate into different systems. The BR24S32FJ-WE2 is RoHS3 compliant and REACH unaffected, adhering to stringent environmental and regulatory standards. It is available in a surface mount package, specifically in tape and reel (TR) format, with a moisture sensitivity level (MSL) of 1 (unlimited), ensuring robustness and ease of handling during manufacturing processes.
BR24S32FJ-WE2 Features
- Wide Operating Voltage Range: The BR24S32FJ-WE2 operates within a voltage range of 1.7V to 5.5V, providing flexibility and compatibility with various power supply systems.
- Fast Data Transfer: With an I2C interface and a clock frequency of 400 kHz, the BR24S32FJ-WE2 ensures efficient and rapid data communication.
- Quick Write Cycle Time: The device features a write cycle time of 5ms for a word or page, enabling swift data write operations and enhancing overall system performance.
- DigiKey Programmability: Verified for DigiKey programmability, the BR24S32FJ-WE2 simplifies the configuration and integration process, reducing development time and effort.
- Environmental Compliance: The BR24S32FJ-WE2 is RoHS3 compliant and REACH unaffected, ensuring it meets the highest environmental and regulatory standards.
- Robust Packaging: Available in a surface mount package with a moisture sensitivity level (MSL) of 1 (unlimited), the BR24S32FJ-WE2 is designed for durability and ease of handling during manufacturing.
- Non-Volatile Memory: The 32Kbit EEPROM memory ensures data retention even when power is lost, making it ideal for applications requiring reliable data storage.
BR24S32FJ-WE2 Applications
The BR24S32FJ-WE2 is ideal for a variety of applications that require non-volatile memory storage and efficient data transfer. Some specific use cases include:
- Consumer Electronics: Ideal for storing configuration data and user settings in devices such as smartphones, tablets, and smart home appliances.
- Industrial Control Systems: Suitable for storing critical system parameters and calibration data in industrial automation and control systems.
- Medical Devices: Provides reliable data storage for medical equipment, ensuring the integrity and availability of patient data and device settings.
- Automotive Applications: Can be used in automotive systems for storing diagnostic data, vehicle configuration, and other critical information.
- IoT Devices: Enhances the functionality of IoT devices by providing non-volatile storage for firmware and configuration data, ensuring reliable operation even in low-power environments.
Conclusion of BR24S32FJ-WE2
The BR24S32FJ-WE2 from Rohm Semiconductor is a versatile and reliable EEPROM memory IC chip that offers a range of technical specifications and performance benefits. Its wide operating voltage range, fast data transfer capabilities, and quick write cycle time make it an excellent choice for applications requiring efficient data storage and retrieval. The device's environmental compliance and robust packaging further enhance its suitability for various industrial and consumer applications. With its DigiKey programmability and non-volatile memory, the BR24S32FJ-WE2 stands out as a reliable and efficient solution for modern electronic systems.



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