MAX6729AKAYHD3+T Overview
There are 8 terminals connected to this power management, which makes it easy to mount. 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. There are 3 channels on this power managment ic that can be found in a series. In this PMIC, you can find SOT-23-8 functions for your reference. It is a IC power that shares many benefits with other products from the Multi-Voltage Supervisor line. Specifies a reflow peak temperature of 260 for the package during reflow. During operation, the power ic is supplied with a voltage of 3. The mount is attached to Surface Mount. The power management belongs to the Power Management Circuits subcategory. Taking into account all of the pins, this power management has a total of 8. 8 pins are on the supervisor. I should note that the minimum supply voltage (Vsup) for this IC management should be at least 800mV, which is the minimum supply voltage that should be applied. This IC power should be powered by no more than 5.5V volts of supply voltage (Vsup). 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. Power management has an output of Push-Pull, Totem Pole during operation. The supervisor's supply current is specified to 15μA. A similar IC managements number of the manufacturer can always be found by using MAX6729A, the base power ics number. In order to operate this power management, it requires 1/5V volts of power.
MAX6729AKAYHD3+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 800mV
15μA operating supply current
MAX6729AKAYHD3+T Applications
There are a lot of Maxim Integrated MAX6729AKAYHD3+T Voltage Supervisors applications.
- Set top box
- Dash board
- Military electronics
- Battery-powered equipment
- Digitally controlled LDO regulators circuit
- Power distribution systems of CCU
- Insulation fault location system
- Stable power system
- Power distribution systems of operating room
- Embedded computing