MAX6855UK18D4+T Overview
As far as the mounting terminals of this voltage supervisor are concerned, it has 5 in total. Power management is packaged in a Tape & Reel (TR) way. The purpose of this IC management is to provide you with a reference of 1 functions. There are 1 channels on this power managment ic that can be found in a series. There are SC-74A, SOT-753 functions included in this PMIC so that you can refer to them. There are a number of benefits that this PMIC has in common with other Simple Reset/Power-On Reset manage ics. Packages are specified to have an average peak reflow temperature of 260. When 2.5V is applied to the power ic, it conducts. Power management conducts at a voltage of 1. Surface Mount mounts power management on the wall. Power Management Circuits is a subcategory of this PMIC chip. In total, IC powers are 5 pins on the board. The pins of the power management system count 5. It is recommended that the minimum supply voltage (Vsup) for this IC management should not be less than 1.1V volts. There should be no more than 5.5V volts of supply voltage (Vsup) in this power management. Power management' mounting is recommended to be done with the Surface Mount type of mounting. It is recommended to set the supervisor's temperature 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. The supply current of the power management is 7μA. It is always advisable to use MAX6855, the base supervisor number, when searching for similar PMICs from the manufacturer.
MAX6855UK18D4+T Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 1.1V
7μA operating supply current
MAX6855UK18D4+T Applications
There are a lot of Maxim Integrated MAX6855UK18D4+T Voltage Supervisors applications.
- Personal computers
- Transformer load monitoring equipment
- Embedded computing
- Power distribution systems of CCU
- Dash board
- Cloud computing
- Detection of phase imbalance
- Stable power system
- DVR
- Electronics installed in the vehicle