ROHM Semiconductor
BR24G04NUX-3TTR
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BR24G04NUX-3TTR Description
BR24G04NUX-3TTR Description
The BR24G04NUX-3TTR from ROHM Semiconductor is a 4Kbit (512 x 8) serial EEPROM with an I2C interface, designed for high-performance, low-power applications. Operating within a wide voltage range of 1.6V to 5.5V, this device is ideal for battery-powered and portable electronics. It features a 400 kHz clock frequency, ensuring efficient data transfer, and a 5ms write cycle time for word or page operations. Packaged in a compact VSON008X2030 surface-mount form factor, it is RoHS3 compliant and REACH unaffected, meeting stringent environmental standards.
BR24G04NUX-3TTR Features
- Memory Size & Organization: 4Kbit (512 x 8) EEPROM for flexible data storage.
- Interface: I2C-compatible with 400 kHz high-speed operation.
- Voltage Range: 1.6V–5.5V supports diverse power environments.
- Low Power Consumption: Optimized for energy-sensitive applications.
- Fast Write Cycle: 5ms word/page write time for efficient updates.
- Robust Packaging: VSON008X2030 ensures space efficiency and reliability.
- Environmental Compliance: RoHS3, REACH unaffected, and MSL 1 (Unlimited) for easy handling.
BR24G04NUX-3TTR Applications
This EEPROM excels in scenarios requiring non-volatile memory with low power and high reliability, such as:
- Consumer Electronics: Smartphones, wearables, and IoT devices for configuration storage.
- Industrial Systems: Sensor calibration, parameter retention in harsh environments.
- Automotive: Infotainment, telematics, and ECU data logging.
- Medical Devices: Portable diagnostics and patient monitoring equipment.
- PC Peripherals: Keyboards, mice, and printers for firmware/configuration storage.
Conclusion of BR24G04NUX-3TTR
The BR24G04NUX-3TTR stands out for its broad voltage compatibility, compact footprint, and I2C efficiency, making it a superior choice for modern embedded systems. Its fast write cycles, low power, and industrial-grade reliability cater to demanding applications across consumer, automotive, and medical sectors. For engineers seeking a scalable, compliant, and high-performance EEPROM, this device delivers an optimal balance of features and cost-effectiveness.



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