MAX6719AUTSDD3+T Overview
As you can see, this power management is mounted through 6 terminals. A Tape & Reel (TR) package is used to package the power management. Please find attached 1 functions for your reference in this IC power. On this supervisor, there is a series of 3 channels that can be found. There are SOT-23-6 functions included in this PMIC so that you can refer to them. As with other Multi-Voltage Supervisor products, this IC management also offers a wide range of benefits. Specifies a reflow peak temperature of 260 for the package during reflow. The supervisor is always powered by a 1V volt supply. A supply voltage of 3 is used to conduct the PMIC chip. Using Surface Mount, IC management is mounted. It is possible to subcategorize this power ic as a Power Management Circuits chip. 6 pins are present in total in this power management. 6 pins are present on the power management system. Normally, the supply voltage (Vsup) for this PMIC should not be lower than 800mV. During this IC power, the maximum supply voltage (Vsup) should not exceed 5.5V volts. The mounting type of the supervisors is Surface MountThe temperature of the supervisors should be set to this range: -40°C~125°C. When this power management system is in operation, it produces an output voltage of Open Drain or Open Collector. The supply current of the power management is 15μA. The other features include, for example, [0], which is just one example. A similar IC managements number of the manufacturer can always be found by using MAX6719A, the base power ics number. The power management must be powered by 1/5V volts to function properly.
MAX6719AUTSDD3+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 800mV
15μA operating supply current
MAX6719AUTSDD3+T Applications
There are a lot of Maxim Integrated MAX6719AUTSDD3+T Voltage Supervisors applications.
- Automotive permanent magnet synchronous motors
- Satellite navigation
- Detection of phase loss
- Household appliances
- Refrigeration
- Digitally controlled LDO regulators circuit
- Kitchen appliances
- Detection of phase sequence
- Sensitive sensors
- Efficient information transmission