The NCP1117LPDTADJRKG from ON Semiconductor is a high-performance, low-dropout linear voltage regulator that is designed to deliver a continuous output current of up to 1A. This component is an ideal solution for a wide range of applications where voltage regulation is critical, including consumer electronics, computer peripherals, and industrial equipment.
Key Features:
- Output Voltage: This adjustable model allows for a variable output voltage, providing design flexibility to cater to specific circuit requirements.
- High Current Output: Capable of delivering up to 1A of output current, making it suitable for powering a variety of devices.
- Low Dropout Voltage: The low dropout performance ensures efficient operation, even with a very small voltage difference between the input and output.
- Thermal Protection: Integrated thermal shutdown feature protects the device from damage due to overheating.
- Current Limiting: Built-in current limit functionality helps prevent damage to the regulator and the load in the event of a fault or excessive power demand.
- Stable Operation: Designed for stability with low equivalent series resistance (ESR) output capacitors.
Applications:
- Consumer Electronics
- Computer Peripherals
- Industrial Equipment
- Portable Devices
- Power Management Solutions
Product Specifications:
The NCP1117LPDTADJRKG operates over a wide input voltage range and is available in a TO-252 (DPAK) package, which is known for its compact footprint and excellent power dissipation characteristics. The device's adjustable output voltage range, combined with a precision output voltage tolerance, ensures that the power supplied to sensitive electronic components is clean and stable.
As a product from ON Semiconductor, a leader in power and signal management, the NCP1117LPDTADJRKG is manufactured to the highest quality standards, ensuring reliability and performance for critical applications. Whether for design engineers or end-users, this voltage regulator stands out for its efficiency, durability, and versatility.