Linear - Comparators

Image Part Number Description / PDF Quantity Rfq
TS334IYDT

TS334IYDT

STMicroelectronics

IC COMPARATOR R-R QUAD 14-SOIC

5966

LM393ADT

LM393ADT

STMicroelectronics

IC COMP DUAL VOLT LP 8SOIC

71642

LM319N

LM319N

STMicroelectronics

DUAL COMPARATOR

2674

LM293DT

LM293DT

STMicroelectronics

IC COMPARATOR LP DUAL 8-SOIC

20977

LMV331ICT

LMV331ICT

STMicroelectronics

IC COMPARATOR GP LOW VOLT SC70-5

66829

TSM109ID

TSM109ID

STMicroelectronics

IC COMPARATOR/VREF DUAL 8-SOIC

0

LM2903HYDT

LM2903HYDT

STMicroelectronics

IC COMPARATOR DUAL LP 8-SOIC

1294

TS331IYLT

TS331IYLT

STMicroelectronics

IC COMPARATOR SINGLE SOT23-5

0

LM2903Q2T

LM2903Q2T

STMicroelectronics

IC COMPARATOR DIFF DFN8

1640

TS881ICT

TS881ICT

STMicroelectronics

IC COMPARATOR R-R 1.1V SC70-5

14

TS334IPT

TS334IPT

STMicroelectronics

IC COMPARATOR R-R QUAD 14-TSSOP

2121

TS3021HIYLT

TS3021HIYLT

STMicroelectronics

RAIL-TO-RAIL 1.8 V HIGH-SPEED CO

4442

LM293QT

LM293QT

STMicroelectronics

IC COMPARATOR DUAL 8-UFSON 2X2

19900

LM239QT

LM239QT

STMicroelectronics

IC COMPARATOR DIFF QUAD QFN16

3499

TS332IYDT

TS332IYDT

STMicroelectronics

IC COMPARATOR R-R DUAL 8-SOIC

0

TS864AIDT

TS864AIDT

STMicroelectronics

IC COMP BICMOS R-R MCRPWR 14SOIC

0

TS862IN

TS862IN

STMicroelectronics

IC COMPARATOR R-R MCRPWR 8-DIP

0

LM311N

LM311N

STMicroelectronics

IC VOLTAGE COMPARATOR 8-DIP

0

TS339ID

TS339ID

STMicroelectronics

IC COMPARATOR QUAD 14-SOIC

0

LM293N

LM293N

STMicroelectronics

IC COMPARATOR LP DUAL 8-DIP

0

Linear - Comparators

1. Overview

Linear comparators are analog integrated circuits designed to compare two voltage signals and output a digital signal indicating which voltage is higher. They serve as fundamental components in electronic systems, enabling decision-making processes in applications ranging from voltage level detection to waveform shaping. Their importance spans industries such as industrial automation, consumer electronics, automotive systems, and medical devices, where precise signal comparison is critical.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
General-Purpose ComparatorsBasic voltage comparison with moderate speed and accuracySimple threshold detection in appliances
Precision ComparatorsLow offset voltage and high accuracyInstrumentation and measurement equipment
High-Speed ComparatorsSub-nanosecond response timesRF signal processing and oscilloscopes
Low-Power ComparatorsUltra-low quiescent currentBattery-powered IoT devices
Window ComparatorsDetect if input voltage falls within a defined rangePower supply monitoring systems

3. Structure and Composition

A linear comparator typically consists of:

  • Differential Amplifier Stage: Amplifies the voltage difference between inputs
  • Reference Voltage Circuit: Provides stable threshold voltages
  • Output Stage: Generates rail-to-rail digital output (e.g., CMOS, TTL-compatible)
  • Protection Circuits: ESD protection and overvoltage tolerance

Common package types include SOIC, SOT-23, and TSSOP. Advanced designs integrate hysteresis circuits or voltage references.

4. Key Technical Specifications

ParameterDescriptionImportance
Input Offset VoltageMaximum voltage difference required to switch outputDetermines comparison accuracy
Propagation DelayTime between input change and output responseCritical for high-speed applications
Supply Voltage RangeOperating voltage range (e.g., 2.7V-36V)Dictates system power design
Power ConsumptionQuiescent current under active/idle conditionsBattery life optimization
HysteresisVoltage margin to prevent oscillation near thresholdsImproves noise immunity

5. Application Areas

  • Industrial: PLC input modules, motor control systems
  • Consumer: Smartphone battery level indicators
  • Automotive: Battery management in EVs, sensor signal conditioning
  • Medical: ECG signal analysis equipment
  • Telecommunications: Optical receiver signal detection

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)LM393Dual comparator, 2.0V-36V supply, 1.3 A quiescent current
STMicroelectronicsTLV32011.8V supply, 40ns propagation delay
Analog DevicesAD8561Single-supply, 7ns response time
ON SemiconductorNCS2250Zero-drift architecture, 10 V offset

7. Selection Guidelines

  1. Speed Requirements: Match propagation delay to system clock rates
  2. Accuracy Needs: Select offset voltage <1mV for precision sensing
  3. Power Constraints: Choose nano-power variants for portable devices
  4. Environmental Factors: Consider temperature-rated parts (-40 C to +125 C)
  5. Integration Level: Opt for devices with built-in references/hysteresis

8. Industry Trends

  • Miniaturization: WLCSP packages enabling wearable device integration
  • Energy Efficiency: Sub-1 A quiescent current devices for always-on systems
  • Higher Integration: Comparators with ADC interfaces and digital calibration
  • Broadband Operation: GHz-range comparators for 5G infrastructure
  • Smart Sensing: Embedded AI for adaptive threshold control
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