MAX6866UK16D1L+T Overview
There are 5 terminals on this power management that allow it to be mounted. Packaged in the form of a Tape & Reel (TR), power management is easy to use. In this IC power you will find 1 functions for you to refer to. On this supervisor, there is a series of 1 channels that can be found. There are SC-74A, SOT-753 functions included in this PMIC so that you can refer to them. Compared to other Simple Reset/Power-On Reset products, this PMIC has a lot of benefits to offer. The package peak reflow temperature is specified to be 260. IC management conducts in a 2.5V-voltage supply. Power ics operate at 1 supply voltages. Surface Mount mounts power management on the wall. As a subcategory, this PMIC chip can be categorized as Power Management Circuits. The total number of pins on this power management is 5. 5 pins are present on the power management system. It is recommended that Vsup should not be less than 1.1V for this IC power. It is recommended that the maximum supply voltage (Vsup) in this IC power be no more than 5.5V volts. Surface Mount is the recommended mounting type. It is recommended that the supervisor be set to this temperature: -40°C~85°C TA. When this power management system is in operation, it produces an output voltage of Open Drain or Open Collector. It is estimated that the voltage supervisor's supply current is 7μA. If you want to search for similar IC managements of this manufacturer, you can always refer to MAX6866, which is the base power ics number.
MAX6866UK16D1L+T Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 1.1V
7μA operating supply current
MAX6866UK16D1L+T Applications
There are a lot of Maxim Integrated MAX6866UK16D1L+T Voltage Supervisors applications.
- Power distribution systems of infant care room
- Microprocessor system
- Solar power charger
- Low voltage/high power - AI, GPU
- Fire equipment power monitoring system
- Automotive permanent magnet synchronous motors
- Medical-specific insulation monitor
- Leakage current detection
- Stable power system
- FPGA design