STM804TM6E Overview
There are 8 terminals connected to this power management, which makes it easy to mount. This power ic is packaged in a way that looks like a Tube. The purpose of this IC management is to provide you with a reference of 1 functions. This power managment ic consists of 1 channels, each of which can be used independently. The purpose of this IC power is to provide you with a reference of 8-SOIC (0.154, 3.90mm Width) functions. There are a number of benefits that this PMIC has in common with other Simple Reset/Power-On Reset manage ics. Specifies a reflow peak temperature of 260 for the package during reflow. In a 3.6V supply voltage, the power management conducts. IC management conducts in a 1-voltage supply. Surface Mount mounts power management on the wall. A IC power such as this can be classified as a Power Management Circuits power management system. It has a total of 8 pins that are attached to IC management. Pin count of the power management is 8. In order for this PMIC to work correctly, the minimum supply voltage (Vsup) should be greater than 1V. Voltage (Vsup) shouldn't exceed 5.5V volts in this PMIC. Mounting type Surface Mount is recommended. The temperature of the supervisors should be set to this range: -40°C~85°C TA. There is an output voltage of Open Drain or Open Collector from this supervisor when it is operating. The power management's supply current is 60μA. A similar IC managements number of the manufacturer can always be found by using STM804, the base power ics number. The power management must be powered by 3.3/5V volts to function properly. At most, voltage supervisor can operate at a supply temperature of 60μA.
STM804TM6E Features
Simple Reset/Power-On Reset type
Minimum supply voltage of 1V
60μA operating supply current
STM804TM6E Applications
There are a lot of STMicroelectronics STM804TM6E Voltage Supervisors applications.
- Medical-specific isolation transformer
- Data storage applications
- Digitally controlled LDO regulators circuit
- Unattended substation automation
- Cloud computing
- Efficient information transmission
- Magnetic resonance imaging
- Set top box
- DC stabilized power supply module
- FPGA design