NCP303LSN42T1 Overview
Power management is mounted through 5 terminals. In terms of packaging, power management follows the Tape & Reel (TR) model. The purpose of this IC management is to provide you with a reference of 1 functions. Depending on the power managment ic you are looking at, you can find a total of 1 channels. To assist you, this PMIC includes SOT-23-5 Thin, TSOT-23-5 functions. It is a IC power that shares many benefits with other products from the Simple Reset/Power-On Reset line. Packages are specified to have an average peak reflow temperature of 240. Manage ics operate at 1.5V supply voltages. When a supply voltage of 1 is applied to the power ic, it conducts. Surface Mount mounts IC management. In this case, this PMIC chip can be sub-categorized as a Power Management Circuits chip. There are a total of 5 pins on power management. There are 5 pins on the supervisor. In order for this PMIC to work correctly, the minimum supply voltage (Vsup) should be greater than 800mV. It is recommended that the maximum supply voltage (Vsup) in this IC power be no more than 10V volts. The mounting type of the supervisors is Surface MountThe supervisors should be set to the following temperature: -40°C~125°C TA. During normal operation, this power managment ic can generate Open Drain or Open Collector of output voltage. As far as the supply current of the power management is concerned, it is 500nA. You can always use NCP303, the base supervisor number, to search for similar PMICs of the manufacturer.
NCP303LSN42T1 Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 800mV
500nA operating supply current
NCP303LSN42T1 Applications
There are a lot of ON Semiconductor NCP303LSN42T1 Voltage Supervisors applications.
- Transformer load monitoring equipment
- Power distribution systems of operating room
- Military electronics
- Stable power system
- Important electronics for automotive safety
- Medical-specific insulation monitor
- Satellite navigation
- FPGA design
- Digitally controlled LDO regulators circuit
- Smartphones