MAX6761TAWED3+T Overview
As far as the mounting terminals of this voltage supervisor are concerned, it has 8 in total. Packaged in the form of a Tape & Reel (TR), power management is easy to use. For your reference, this IC power includes a list of 1 functions. This power managment ic consists of 2 channels, each of which can be used independently. In this PMIC, you can find 8-WDFN Exposed Pad functions for your reference. There are many benefits that this IC power shares with other Multi-Voltage Supervisor products as well. IC management is specified that the package peak reflow temperature should be 260. IC management conducts at a voltage of 1.4V. There is a voltage supply of 2 for the PMIC chip, and the chip conducts at that voltage. Surface Mount is the one that mounts power management. In this case, this PMIC chip can be sub-categorized as a Power Management Circuits chip. In total, IC powers are 8 pins on the board. 8 pins are present on the power management system. In order for this PMIC to work correctly, the minimum supply voltage (Vsup) should be greater than 1V. There should be no more than 6V volts of supply voltage (Vsup) in this power management. Mounting type Surface Mount is recommended. The temperature of the supervisors should be set to this range: -40°C~125°C. While this power management is operating, it will output Push-Pull, Totem Pole as the output voltage. There is a 13μA supply current present in the power management. It is always advisable to use MAX6761, the base supervisor number, when searching for similar PMICs from the manufacturer.
MAX6761TAWED3+T Features
Multi-Voltage Supervisor type
Minimum supply voltage of 1V
13μA operating supply current
MAX6761TAWED3+T Applications
There are a lot of Maxim Integrated MAX6761TAWED3+T Voltage Supervisors applications.
- Microcontroller system
- Precision measurement
- Data storage applications
- Electrical fire monitoring system
- Multi-voltage system
- Transformer load monitoring equipment
- Magnetic resonance imaging
- Consumer electronics
- Power distribution systems of ICU
- Embedded computing