MAX6368HKA23-T Overview
As far as the mounting terminals of this voltage supervisor are concerned, it has 8 in total. Tape & Reel (TR)-packaging is used. Please refer to this PMIC for 1 functions. There are a total of 2 channels on this supervisor, and they are arranged in a series. IC management is packaged as a SOT-23-8 package. As with other Battery Backup Circuit products, this IC management also offers a wide range of benefits. IC management is specified that the package peak reflow temperature should be 245. During operation, the power ic is supplied with a voltage of 2.8V. IC management is possible to find a succession of 1 voltages that have been checked. Surface Mount mounts IC management. There is a subcategory called Power Management Circuits for this power management. A total of 8 pins are located on this power management. Power managment ic pin count is 8. Normally, the supply voltage (Vsup) for this PMIC should not be lower than 0V. The maximum supply voltage (Vsup) is not to exceed 5.5V volts in this IC management. Power management' mounting is recommended to be done with the Surface Mount type of mounting. This power management is the recommended temperature range for the supervisors: -40°C~85°C TA. While in operation, this supervisor has a voltage output of Open Drain or Open Collector. For this power management, there is an 15μA volt supply current. Supervisors are also additional features, such as [0] for example, which are worth mentioning. You can always use MAX6368, the base supervisor number, to search for similar PMICs of the manufacturer. This power management requires 2.5/5V power to work.
MAX6368HKA23-T Features
Battery Backup Circuit type
Minimum supply voltage of 0V
15μA operating supply current
MAX6368HKA23-T Applications
There are a lot of Maxim Integrated MAX6368HKA23-T Voltage Supervisors applications.
- Precision measurement
- Consumer electronics
- Microcontroller system
- Important electronics for automotive safety
- Leakage current detection
- Power distribution systems of CCU
- Linux and server computing
- Efficient information transmission
- Digitally controlled LDO regulators circuit
- Military electronics