The NCP170ASN180T2G is a high-performance, low dropout voltage regulator from ON Semiconductor, designed to deliver a fixed output voltage of 1.8V with an input voltage range from 2.1V to 5.5V. This voltage regulator is ideal for battery-powered applications due to its low power consumption and stable output, which is crucial for maintaining the longevity and reliability of portable devices.
Key Features
- Output Voltage: Precisely regulated 1.8V output, suitable for consistent power supply needs.
- High Accuracy: Maintains output voltage accuracy within ±1%, ensuring device performance stability.
- Low Dropout: Features a low dropout performance, which allows for a smaller difference between the input and output voltages, reducing power loss and improving efficiency.
- Current Capability: Capable of supplying up to 150 mA of continuous output current, making it suitable for a wide range of applications.
- Power Saving: The regulator includes a quiescent current of typically 0.5 µA in shutdown mode and 1 µA in no-load condition, which significantly enhances battery life in portable applications.
- Thermal Protection: Integrated thermal shutdown functionality protects the device from damage due to overheating.
- Package: Comes in an ultra-small 1.2 x 1.2 mm UDFN6 package, ideal for space-constrained applications.
Applications
The NCP170ASN180T2G is perfect for various applications that require a stable and efficient power supply. Its primary uses include:
- Portable and battery-powered devices
- Wireless communication systems
- Handheld consumer electronics
- IoT devices
- Microcontroller power supply
Quality and Reliability
ON Semiconductor is known for its commitment to quality and reliability, and the NCP170ASN180T2G is no exception. It is designed to meet the high standards of performance and durability that customers expect from ON Semiconductor products. This voltage regulator is a reliable solution for designers looking to optimize their power management systems with a compact, efficient, and consistent power source.