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TLV3401IDBVR

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TLV3401IDBVR
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Texas Instruments

Single nano power high-voltage comparator with open-drain output 5-SOT-23 -40 to 125

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¥19.5629
市场总库存:
5,142
生命周期状态: Active
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(4)
TIPD144 Comparator with Hysteresis Reference Design | TI.com
TIPD144: This TI Verified Design implements a comparator with hysteresis. Comparators are used to differentiate between two different signal levels. For example, a comparator may differentiate between an over temperature and normal temperature condition. Noise or signal variation at the comparison threshold will cause multiple transitions. Hysteresis sets an upper and lower threshold to eliminate the multiple transitions caused by noise.
Hardware Pace Detection for ECG Reference Design
TIPD111: This Verified Design outlines a hardware pace detection solution for ECG using slope detection. The circuit is designed to work smoothly with the ADS1298 through the PACEOUT pins from the ADC directly feeding the input of the pace detection circuit. When a pace signal is detected, the output from the circuit is designed to latch a logic signal high to be read from a GPIO. See more TI Precision Designs
TIPD111 Hardware Pace Detection for ECG Reference Design | TI.com
TIPD111: This Verified Design outlines a hardware pace detection solution for ECG using slope detection. The circuit is designed to work smoothly with the ADS1298 through the PACEOUT pins from the ADC directly feeding the input of the pace detection circuit. When a pace signal is detected, the output from the circuit is designed to latch a logic signal high to be read from a GPIO. See more TI Precision Designs
Comparator with Hysteresis Reference Design
TIPD144: This TI Verified Design implements a comparator with hysteresis. Comparators are used to differentiate between two different signal levels. For example, a comparator may differentiate between an over temperature and normal temperature condition. Noise or signal variation at the comparison threshold will cause multiple transitions. Hysteresis sets an upper and lower threshold to eliminate the multiple transitions caused by noise.
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