MAX6720AUTVDD3+T Overview
There are 6 terminals on this power management that allow it to be mounted. This power ic is packaged in a way that looks like a Tape & Reel (TR). As a reference, this IC management includes 1 functions for your convenience. It is possible to find on this power management a series of 3 channels. There are SOT-23-6 functions included in this PMIC so that you can refer to them. There are many benefits that this IC power shares with other Multi-Voltage Supervisor products as well. In order to ensure a good reflow performance, the package peak reflow temperature must be set at 260. IC management conducts in a 1V-voltage supply. When a supply voltage of 3 is applied to the power ic, it conducts. Surface Mount mounts IC management. As a subcategory, this PMIC chip can be categorized as Power Management Circuits. The total number of pins on this power management is 6. This power management has 6 pins. There should be a minimum voltage supply (Vsup) of 800mV for this PMIC. The supply voltage (Vsup) should not exceed 5.5V volts in this IC power. Surface Mount mounting is recommended. The temperature of the supervisors should be set to this range: -40°C~125°C. During normal operation, this power managment ic can generate Push-Pull, Totem Pole of output voltage. In order to maintain a stable supply current for the power management, 15μA is the recommended value. Among other features, IC power can be also taken advantage of [0], for instance. If you want to search for similar IC managements of this manufacturer, you can always refer to MAX6720A, which is the base power ics number. In order to operate this power management, it requires 1/5V volts of power.
MAX6720AUTVDD3+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 800mV
15μA operating supply current
MAX6720AUTVDD3+T Applications
There are a lot of Maxim Integrated MAX6720AUTVDD3+T Voltage Supervisors applications.
- Military communications
- Analog circuit
- Detection of phase loss
- Microcontroller system
- Stable power system
- Power communication system
- Microprocessor system
- Linux and server computing
- FPGA design
- Kitchen appliances