
Microchip Technology
MIC5211-3.3/5.0BM6-TR
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MIC5211-3.3/5.0BM6-TR Description
MIC5211-3.3/5.0BM6-TR Description
The MIC5211-3.3/5.0BM6-TR is a dual-output linear regulator designed by Microchip Technology, offering fixed output voltages of 3.3V and 5V. This device is part of the Power Management Integrated Circuit (PMIC) category and is housed in a compact SOT23-6 package, making it suitable for surface-mount applications. With a maximum input voltage of 16V, it can deliver up to 80mA per regulator, ensuring robust performance in various electronic systems. The regulator features a low dropout voltage of 0.5V at 50mA, enhancing efficiency in low-voltage applications. It also includes essential protection features such as over-current, over-temperature, and reverse polarity protection, ensuring reliable operation under diverse conditions. The device is REACH unaffected and has a moisture sensitivity level (MSL) of 1, making it suitable for a wide range of manufacturing environments. The MIC5211-3.3/5.0BM6-TR is available in tape and reel packaging, facilitating efficient production processes.
MIC5211-3.3/5.0BM6-TR Features
- Dual Fixed Output Voltages: Provides stable 3.3V and 5V outputs, catering to common power requirements in modern electronics.
- High Efficiency: Achieves a low dropout voltage of 0.5V at 50mA, ensuring high efficiency even in low-voltage applications.
- Robust Protection Features: Includes over-current, over-temperature, and reverse polarity protection to safeguard the device and connected components.
- Low Quiescent Current: Features a quiescent current of only 450 µA, minimizing power consumption in standby mode.
- Enable Control: Offers enable functionality, allowing users to control the regulator's operation dynamically.
- Compact Design: Housed in a SOT23-6 package, making it ideal for space-constrained applications.
- Surface Mount Compatibility: Suitable for surface-mount technology, facilitating automated assembly processes.
- REACH Compliance: Unaffected by REACH regulations, ensuring compliance with environmental standards.
- Moisture Sensitivity Level 1: Suitable for unlimited exposure to moisture, enhancing reliability in various manufacturing conditions.
MIC5211-3.3/5.0BM6-TR Applications
The MIC5211-3.3/5.0BM6-TR is well-suited for a variety of applications requiring reliable and efficient power management solutions. Its dual fixed output voltages make it ideal for systems that need to power multiple components with different voltage requirements. The low dropout voltage and high efficiency are particularly beneficial in battery-powered devices and low-voltage systems, where minimizing power loss is crucial. The compact SOT23-6 package and surface-mount compatibility make it suitable for space-constrained applications, such as smartphones, tablets, and other portable electronics. The robust protection features ensure reliable operation in harsh environments, making it a reliable choice for industrial and automotive applications. Additionally, its low quiescent current and enable control functionality make it suitable for applications requiring low power consumption and dynamic power management.
Conclusion of MIC5211-3.3/5.0BM6-TR
The MIC5211-3.3/5.0BM6-TR from Microchip Technology stands out as a versatile and efficient dual-output linear regulator. Its combination of fixed 3.3V and 5V outputs, low dropout voltage, and robust protection features make it an excellent choice for a wide range of applications. The compact SOT23-6 package and surface-mount compatibility ensure it fits seamlessly into modern electronic designs. With its low quiescent current and enable control, it offers advanced power management capabilities, making it ideal for both portable and industrial applications. The MIC5211-3.3/5.0BM6-TR's REACH compliance and moisture sensitivity level 1 further enhance its reliability and suitability for diverse manufacturing environments. Overall, this device offers a reliable and efficient power management solution, providing significant advantages over similar models in the market.



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