MAX16034LLB26+T Overview
There are 10 terminals on this power management that allow it to be mounted. Packaging is in the form of a Tape & Reel (TR). To assist you, this IC power includes 1 functions. There are 1 channels available on this supervisor, and each channel has a different function. Please find attached 10-WFDFN functions for your reference in this IC power. As with other Battery Backup Circuit products, this IC management also offers a wide range of benefits. Specifies a reflow peak temperature of 260 for the package during reflow. A supply voltage of 1 is used to conduct the PMIC chip. Power management is included in the Surface Mount mount. There is a subcategory called Power Management Circuits for this power management. A total of 10 pins are located on this power management. Power managment ic pin count is 10. It is recommended that the minimum supply voltage (Vsup) for this IC management should not be less than 0V volts. During this IC power, the maximum supply voltage (Vsup) should not exceed 5.5V volts. The recommended mounting type is Surface Mount. The temperature of the supervisors should be set to this range: -40°C~85°C. As this power managment ic operates, it is able to produce an output voltage of Push-Pull, Totem Pole. There is a 22μA supply current present in the power management. For similar manage ics search of the manufacturer, you can always refer to MAX16034, the base PMIC number. A power supply of 2.5/5V watts is required for the operation of this power management.
MAX16034LLB26+T Features
Battery Backup Circuit type
Minimum supply voltage of 0V
22μA operating supply current
MAX16034LLB26+T Applications
There are a lot of Maxim Integrated MAX16034LLB26+T Voltage Supervisors applications.
- Detection of phase imbalance
- Leakage protection
- Efficient information transmission
- Stable power system
- Electrical fire monitoring system
- Fire equipment power monitoring system
- Important electronics for automotive safety
- Automotive power systems
- Analog circuit
- Detection of phase loss