MAX6368PKA23+T Overview
As far as the mounting terminals of this voltage supervisor are concerned, it has 8 in total. Packaging is in the form of a Strip. In this IC power you will find 1 functions for you to refer to. Depending on the power managment ic you are looking at, you can find a total of 2 channels. In this IC management you will find SOT-23-8 functions for you to refer to. There are many benefits that this IC power shares with other Battery Backup Circuit products as well. In order to ensure a good reflow performance, the package peak reflow temperature must be set at 260. A supply voltage of 2.8V is used to conduct the PMIC chip. A supply voltage of 1 is used to conduct the PMIC chip. Surface Mount is the one that mounts power management. There is a subcategory called Power Management Circuits for this power management. In total, the power management has 8 pins in it. This power management system has 8 pins. A voltage (Vsup) that doesn't fall below 0V as the minimum supply voltage (Vsup) should be applied to this IC power in order to ensure its proper operation. The supply voltage (Vsup) should not exceed 5.5V volts in this IC power. The recommended mounting type for IC management is Surface Mount. The supervisors should be set to the following temperature: -40°C~85°C TA. While this power management is operating, it will output Open Drain or Open Collector as the output voltage. In order to maintain a stable supply current for the power management, 15μA is the recommended value. Supervisors are also additional features, such as [0] for example, which are worth mentioning. It requires 2.5/5V watts of power to operate this voltage supervisor.
MAX6368PKA23+T Features
Battery Backup Circuit type
Minimum supply voltage of 0V
15μA operating supply current
MAX6368PKA23+T Applications
There are a lot of Maxim Integrated
MAX6368PKA23+T Voltage Supervisors applications.
- External alarm
- Display equipment
- DC stabilized power supply module
- Insulation fault location system
- Magnetic resonance imaging
- Stable power system
- Sensitive sensors
- Efficient information transmission
- Functional modules
- Consumer electronics