The MIC5016BN is an 8-pin integrated circuit with the following pin configuration:
The MIC5016BN is a voltage regulator IC that regulates the output voltage based on the input voltage. It utilizes a pass transistor to control the voltage drop across it, maintaining a stable output voltage. The enable pin (EN) can be used to turn the regulator on or off, providing power-saving functionality.
The MIC5016BN is commonly used in various applications where a stable and regulated power supply is required. Some of the typical application fields include:
(Note: This is not an exhaustive list of alternative models. Please refer to the manufacturer's datasheets for a complete list of alternatives.)
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What is the maximum input voltage for MIC5016BN?
- The maximum input voltage for MIC5016BN is 16V.
What is the typical output current capability of MIC5016BN?
- The typical output current capability of MIC5016BN is 150mA.
Can MIC5016BN operate with a wide input voltage range?
- Yes, MIC5016BN can operate with an input voltage range from 2.7V to 16V.
Is MIC5016BN suitable for battery-powered applications?
- Yes, MIC5016BN is suitable for battery-powered applications due to its low quiescent current.
What is the operating temperature range of MIC5016BN?
- The operating temperature range of MIC5016BN is -40°C to 125°C.
Does MIC5016BN have built-in thermal shutdown protection?
- Yes, MIC5016BN has built-in thermal shutdown protection to prevent overheating.
Can MIC5016BN be used in automotive electronics applications?
- Yes, MIC5016BN is suitable for automotive electronics applications due to its wide input voltage range and robust design.
What type of package does MIC5016BN come in?
- MIC5016BN is available in a small 8-pin SOIC package for easy integration into compact designs.
Is there a minimum input voltage requirement for MIC5016BN?
- Yes, the minimum input voltage requirement for MIC5016BN is 2.7V.
Can MIC5016BN be used in low-power sensor applications?
- Yes, MIC5016BN is well-suited for low-power sensor applications due to its low quiescent current and efficient power management capabilities.