MCP100-450DI/TO Overview
There are 3 terminals on this power management that allow it to be mounted. There is a Bulk-packaging method applied to IC management. As a reference, this IC management includes 1 functions for your convenience. There are 1 channels on this power managment ic that can be found in a series. As a reference, this IC power includes TO-226-3, TO-92-3 (TO-226AA) functions for your convenience. There are a lot of similarities between this IC power and other Simple Reset/Power-On Reset products. During operation, the power ic is supplied with a voltage of 4.25V. A supply voltage of 1 is used to conduct the PMIC chip. Power management is included in the Surface Mount, Through Hole mount. This power ic can be sub-categorized as Power Management Circuits. A total of 3 pins are located on this power management. 3 pins are present on the power management system. I should note that the minimum supply voltage (Vsup) for this IC management should be at least 1V, which is the minimum supply voltage that should be applied. There should be no more than 5.5V volts of maximum supply voltage (Vsup) in this power management. Power management' mounting is recommended to be done with the Through Hole type of mounting. The temperature of the supervisors should be set to this range: -40°C~85°C TA. As this power managment ic operates, it is able to produce an output voltage of Push-Pull, Totem Pole. It is estimated that the voltage supervisor's supply current is 60μA. To find similar IC managements from the manufacturer, you can always search by MCP100. A maximum supply temperature of 60μA can be used.
MCP100-450DI/TO Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 1V
60μA operating supply current
MCP100-450DI/TO Applications
There are a lot of Microchip Technology MCP100-450DI/TO Voltage Supervisors applications.
- Microprocessor system
- Battery-powered equipment
- Set top box
- Computer applications
- Smart meter
- External alarm
- Detection of phase sequence
- Solar power charger
- Detection of phase loss
- Smartphones