MAX6387LT28D2+T Overview
A total of 6 terminals are used to mount this power management. Packaged in the form of a Tape & Reel (TR), power management is easy to use. In this PMIC, you can find 1 functions for your reference. On this supervisor, there is a series of 1 channels that can be found. IC management is packaged as a 6-WFDFN package. There are a lot of similarities between this IC power and other Multi-Voltage Supervisor products. There is a specification for the peak reflow temperature of the package to be 260. When a supply voltage of 1.8V is applied to the power ic, it conducts. When 2 is applied to the power ic, it conducts. Power management is included in the Surface Mount mount. The power management system can be categorized as a Power Management Circuits chip. It has a total of 6 pins that are attached to IC management. Power managment ic pin count is 6. There should be a minimum voltage supply (Vsup) of 1V for this PMIC. During this IC power, the maximum supply voltage (Vsup) should not exceed 5.5V volts. Power management' mounting is recommended to be done with the Surface Mount type of mounting. The temperature of the supervisors should be set to this range: -40°C~125°C TA. The output voltage of this power managment ic during operation is Push-Pull, Totem Pole. The supply current of the power management is 7μA. It is always advisable to use MAX6387, the base supervisor number, when searching for similar PMICs from the manufacturer.
MAX6387LT28D2+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 1V
7μA operating supply current
MAX6387LT28D2+T Applications
There are a lot of Maxim Integrated MAX6387LT28D2+T Voltage Supervisors applications.
- Urban rail transit weak current power monitoring
- Fire equipment power monitoring system
- Efficient information transmission
- Power distribution systems of infant care room
- Digitally controlled LDO regulators circuit
- Utility meter
- DC stabilized power supply module
- Electronics installed in the vehicle
- WiFi router
- Power communication system