IC COMPARATR 2 W/VOLT REF TSOT23
IC COMPARATOR 2 DIFF 8VSSOP
IC COMPARATOR 2 DIFF 8SOIC
IC COMPARATOR 2 W/VOLT REF 6DFN
IC COMPARATOR 4 GEN PUR 16SO
IC COMPARATOR 2 GEN PUR 8UMAX
IC COMPARATOR 1 GEN PUR 8MSOP
IC COMPARATOR 2 GEN PUR 14DIP
IC COMPARATOR 2 W/VOLT REF 8SO
IC COMPARATOR 1 W/LATCH 8MSOP
Images
Mfr.Part #
In Stock
Manufacturer
Description
Package
LT6700HVIS6-3#TRMPBF LT6700HVIS6-3#TRMPBF 51108 Analog Devices Inc. IC COMPARATR 2 W/VOLT REF TSOT23 SOT-23-6 Thin, TSOT-23-6
LM393ADGKR LM393ADGKR 36416 Texas Instruments IC COMPARATOR 2 DIFF 8VSSOP 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
LM393DR LM393DR 739 Texas Instruments IC COMPARATOR 2 DIFF 8SOIC 8-SOIC (0.154", 3.90mm Width)
LT6700IDCB-3#TRMPBF LT6700IDCB-3#TRMPBF 10737 Analog Devices Inc. IC COMPARATOR 2 W/VOLT REF 6DFN 6-WFDFN Exposed Pad
LT1721CS#PBF LT1721CS#PBF 44494 Analog Devices Inc. IC COMPARATOR 4 GEN PUR 16SO 16-SOIC (0.154", 3.90mm Width)
MAX942EUA+ MAX942EUA+ 57816 Analog Devices Inc./Maxim Integrated IC COMPARATOR 2 GEN PUR 8UMAX 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
LTC6752IMS8-2#PBF LTC6752IMS8-2#PBF 30588 Analog Devices Inc. IC COMPARATOR 1 GEN PUR 8MSOP 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
LT319AN#PBF LT319AN#PBF 24223 Analog Devices Inc. IC COMPARATOR 2 GEN PUR 14DIP 14-DIP (0.300", 7.62mm)
LTC1442CS8#PBF LTC1442CS8#PBF 27138 Analog Devices Inc. IC COMPARATOR 2 W/VOLT REF 8SO 8-SOIC (0.154", 3.90mm Width)
LT1671CMS8#PBF LT1671CMS8#PBF 5749 Analog Devices Inc. IC COMPARATOR 1 W/LATCH 8MSOP 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)

Comparators

1. What are Linear Comparators?

‌Basic Definition‌: A linear comparator is an electronic circuit that compares the magnitude relationship of two analog input signals and outputs a high/low level digital signal as the comparison result. When the input signal exceeds the preset threshold, the output is high level, otherwise the output is low level.

‌The Meaning of “Linear”: refers to the response stage before the input signal reaches the threshold, there is a linear relationship between the output and the input; but the overall function is still to trigger the state jump through the threshold, rather than continuously amplifying the signal.

 

2. What are the Key Characteristics of Linear Comparators?

‌Response Characteristics‌: The linear response to the input signal is limited to a specific range near the threshold, and it is essentially still a discontinuous switching device.

‌Difference from Hysteresis Comparator‌: Hysteresis comparators (such as Schmitt triggers) form a hysteresis loop through positive feedback to resist interference, while linear comparators do not have this feature, and the output may be falsely triggered due to noise.

‌Basis for Component Classification‌: Although it is called “linear”, its working mode involves state mutations and belongs to the category of nonlinear components; the “linear” in the name only describes the local characteristics before the threshold.

 

3. What are Linear Comparators Used for?

‌Signal Interface Conversion‌: used for threshold detection of analog signals in analog-to-digital converters (ADCs) to achieve the transition from analog to digital signals.

‌Protection and Monitoring Circuit‌: used for voltage monitoring, overvoltage/undervoltage protection systems, and real-time detection of power supply or signal anomalies.

‌Sensor Signal Processing‌: cooperate with sensors (such as photosensors and pressure sensors) to compare signals and trigger subsequent control logic.

 

4. Actual Product Examples for Linear Comparators

Some domestic analog chip manufacturers (such as Linearin) have launched high-performance comparator product lines, covering low power consumption, high precision, and other types, which are used in industrial control, the Internet of Things, and automotive electronics.

 

5. ‌Summary‌

Linear comparators are key threshold judgment devices in analog circuits. Their “linear” characteristics are reflected in the local linear response of the input before the threshold. They are suitable for scenarios that require precise level detection, but attention should be paid to anti-interference design to avoid false triggering.