MAX691MJE Overview
As you can see, this power management is mounted through 16 terminals. Packaging is in the form of a Tube. For your reference, this IC power includes a list of 1 functions. There are 1 channels available on this supervisor, and each channel has a different function. The purpose of this IC power is to provide you with a reference of 16-CDIP (0.300, 7.62mm) functions. 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 245. Manage ics operate at 5V supply voltages. When a supply voltage of 1 is applied to the power ic, it conducts. Power management is included in the Through Hole mount. It is possible to subcategorize this power ic as a Power Management Circuits chip. There are a total of 16 pins on power management. There are 16 pins on the supervisor. It is recommended that Vsup should not be less than 4.75V for this IC power. The maximum supply voltage (Vsup) in this PMIC should not exceed 5.5V volts. The recommended mounting type for IC management is Through Hole. The temperature of the supervisors should be set to this range: -55°C~125°C TA. The output voltage of this power managment ic during operation is Push-Pull, Push-Pull. A similar IC managements number of the manufacturer can always be found by using MAX691, the base power ics number. In order to operate this power management, it requires 5V volts of power. At the most, voltage supervisor can work with a supply temperature of 10mA.
MAX691MJE Features
Battery Backup Circuit type
Minimum supply voltage of 4.75V
MAX691MJE Applications
There are a lot of Maxim Integrated MAX691MJE Voltage Supervisors applications.
- Dash board
- Consumer electronics
- Low voltage/high power - AI, GPU
- Electronics installed in the vehicle
- Telecommunications equipment
- Urban rail transit weak current power monitoring
- Linux and server computing
- Embedded computing
- Leakage current detection
- Power distribution systems of CCU