SC70, 1.8V, Nano-power Comparators with Voltage Reference




  • Ultra-Low Supply Current: 390 nA Comparator with Reference

  • Internal 1.248V ± 1.4% Reference

  • Fast Response Time: 13 μs Propagation Delay, with 100 mV Overdrive

  • Internal Hysteresis for Clean Switching

  • Offset Voltage: ± 2.0 mV Maximum

  • Offset Voltage Temperature Drift: 0.3 μV/°C

  • Input Bias Current: 6 pA Typical

  • Input Common-Mode Range Extends 200 mV

  • Push-Pull Output with ±25 mA Drive Capability

  • Open-Drain Output Version Available: TP2025

  • No Phase Reversal for Overdriven Inputs

  • Low Supply Voltage: 1.8V to 5.5V

  • Green, Space-Saving SC70/SOT23 Package


  • Battery Monitoring / Management

  • Alarm and Monitoring Circuits

  • Threshold Detectors/Discriminators

  • Sensing at Ground or Supply Line

  • Oscillators and RC Timers

  • Mobile Communications and Notebooks

  • Ultra-Low-Power Systems


The TP2021 has a push-pull output stage with loads up to 25mA. The TP2025 has an open-drain output stage that makes it suitable for mixed-voltage system design. Both feature an on-chip 1.248V ±1.4% reference and draw an ultra-low supply current of only 440nA (max). 

The TP202x incorporate 3PEAK’s proprietary and patented design techniques to achieve the best world-class performance among all nano-power comparators. Both have 13μs fast response time under 1.8V to 5.5V supply. The internal input hysteresis eliminates output switching due to internal input noise voltage, reducing current draw. They have input common-mode range 200mV beyond the supply rails, and operate down to +1.8V. 

The integrated 1.248V voltage reference offers low 120ppm/°C drift, is stable with up to 10nF capacitive load, and can provide up to 25mA of output current. These features make the TP202x ideal for all 2-Cell Battery Monitoring/Management. The TP202x is available in the tiny SC70/SOT23 package for space-conservative designs. Both versions are specified for the temperature range of –40°C to +85°C. 


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【Technical Document】教你运用迟滞比较器电路 比较器 2018-08-31 3PEAK


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