MAX6865UK31D1L+T Overview
As far as the mounting terminals of this voltage supervisor are concerned, it has 5 in total. There is a Tape & Reel (TR)-packaging method applied to IC management. In this PMIC, you can find 1 functions for your reference. This power managment ic consists of 1 channels, each of which can be used independently. In this IC management you will find SC-74A, SOT-753 functions for you to refer to. There are a lot of similarities between this IC power and other Simple Reset/Power-On Reset products. The package peak reflow temperature is specified to be 260. IC management conducts in a 2.5V-voltage supply. When a supply voltage of 1 is applied to the power ic, it conducts. Using Surface Mount, IC management is mounted. In this case, this PMIC chip can be sub-categorized as a Power Management Circuits chip. The total number of pins on this power management is 5. 5 pins make up the power management. I should note that the minimum supply voltage (Vsup) for this IC management should be at least 1.1V, 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. In this case, Surface Mount is the recommended mounting type. This power management is the recommended temperature range for the supervisors: -40°C~85°C TA. During normal operation, this power managment ic can generate Push-Pull, Totem Pole of output voltage. In order to maintain a stable supply current for the power management, 7μA is the recommended value. For similar manage ics search of the manufacturer, you can always refer to MAX6865, the base PMIC number.
MAX6865UK31D1L+T Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 1.1V
7μA operating supply current
MAX6865UK31D1L+T Applications
There are a lot of Maxim Integrated MAX6865UK31D1L+T Voltage Supervisors applications.
- Leakage current detection
- Smart meter
- Military electronics
- Magnetic resonance imaging
- Precision measurement
- Battery cars
- Digitally controlled LDO regulators circuit
- Efficient information transmission
- Consumer electronics
- DSP