MAX6389LT16D3+T Overview
Power management is mounted through 6 terminals. Packaged in a Tape & Reel (TR)-shape, IC management comes with a number of features. As a reference, this IC management includes 1 functions for your convenience. Depending on the power managment ic you are looking at, you can find a total of 1 channels. To assist you, this PMIC includes 6-WFDFN functions. There are a lot of similarities between this IC management and other Multi-Voltage Supervisor products. Specifies a reflow peak temperature of 260 for the package during reflow. In a 1.8V supply voltage, the power management conducts. There is a voltage supply of 2 for the PMIC chip, and the chip conducts at that voltage. The mount is attached to Surface Mount. There is a subcategory of this power ic known as Power Management Circuits. Power management has a total of 6 pins. The pins of the power management system count 6. It is recommended that Vsup should not be less than 1V for this IC power. The maximum supply voltage (Vsup) in this PMIC should not exceed 5.5V volts. A Surface Mount mounting type is recommended. It is recommended that the supervisor be set to this temperature: -40°C~125°C TA. While this power management is operating, it will output Open Drain or Open Collector as the output voltage. The power management's supply current is 7μA. Power management is also possible to add other features such as RESET THRESHOLD VOLTAGE IS 1.58V to name a few. You can always use MAX6389, the base supervisor number, to search for similar PMICs of the manufacturer.
MAX6389LT16D3+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 1V
7μA operating supply current
MAX6389LT16D3+T Applications
There are a lot of Maxim Integrated MAX6389LT16D3+T Voltage Supervisors applications.
- FPGA design
- Cloud computing
- Microprocessor system
- Data storage applications
- Detection of phase sequence
- Digitally controlled LDO regulators circuit
- Satellite navigation
- Automotive permanent magnet synchronous motors
- Sensitive sensors
- Power distribution systems of ICU