The MAX6349THUT+T has a SOT-23-3 package with the following pin configuration:
The MAX6349THUT+T is based on a precision bandgap reference circuit. It utilizes a combination of temperature-compensated components to generate a stable and accurate output voltage. The bandgap reference circuit compensates for temperature variations, ensuring a consistent output voltage over a wide temperature range.
The MAX6349THUT+T is commonly used in various applications that require a stable and accurate voltage reference. Some of the typical application fields include:
These alternative models offer different output voltage options while maintaining similar characteristics and package type.
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What is the input voltage range of MAX6349THUT+T?
- The input voltage range of MAX6349THUT+T is 2.5V to 11V.
What is the output voltage accuracy of MAX6349THUT+T?
- The output voltage accuracy of MAX6349THUT+T is ±1%.
Can MAX6349THUT+T be used in automotive applications?
- Yes, MAX6349THUT+T is suitable for automotive applications.
What is the maximum output current of MAX6349THUT+T?
- The maximum output current of MAX6349THUT+T is 50mA.
Is MAX6349THUT+T available in a small package?
- Yes, MAX6349THUT+T is available in a small SOT23 package.
Can MAX6349THUT+T operate in a wide temperature range?
- Yes, MAX6349THUT+T can operate in a wide temperature range from -40°C to +125°C.
Does MAX6349THUT+T have built-in overcurrent protection?
- Yes, MAX6349THUT+T has built-in overcurrent protection.
What is the typical quiescent current of MAX6349THUT+T?
- The typical quiescent current of MAX6349THUT+T is 20µA.
Can MAX6349THUT+T be used in battery-powered applications?
- Yes, MAX6349THUT+T is suitable for battery-powered applications.
Is MAX6349THUT+T RoHS compliant?
- Yes, MAX6349THUT+T is RoHS compliant.