CAT1021YI-25-GT3 Overview
It is mounted through 8 terminals on the power management. It is packaged with Tape & Reel (TR). Please refer to this PMIC for 1 functions. Power management consists of 1 channels, each of which can be used independently. For your reference, this PMIC includes a list of 8-TSSOP (0.173, 4.40mm Width) functions. There are many benefits that this IC power shares with other Simple Reset/Power-On Reset products as well. During operation, the power ic is supplied with a voltage of 3.3V. There is a voltage supply of 1 for the PMIC chip, and the chip conducts at that voltage. By Surface Mount, IC management has been mounted. In total, it has 8 pins on IC management. There are 8 pins on the power managment ic. IC management can only work with a supply voltage of -2V volts. The maximum supply voltage (Vsup) in this PMIC should not exceed 7V volts. A Surface Mount mounting type is recommended. This power management is the recommended temperature range for the supervisors: -40°C~85°C TA. When this power management system is in operation, it produces an output voltage of Open Drain or Open Collector. There is a 10μA supply current present in the power management. 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 CAT1021, which is the base power ics number. If you want to work with PMIC chip, you will need to supply PMIC chip with a temperature at least of 3mA.
CAT1021YI-25-GT3 Features
Simple Reset/Power-On Reset type
Minimum supply voltage of -2V
10μA operating supply current
CAT1021YI-25-GT3 Applications
There are a lot of ON Semiconductor CAT1021YI-25-GT3 Voltage Supervisors applications.
- Efficient information transmission
- Low voltage/high power - AI, GPU
- Unattended substation automation
- Microcontroller system
- Leakage protection
- Stable power system
- Automotive power systems
- Leakage current detection
- Important electronics for automotive protection
- Magnetic resonance imaging