Optical Sensors - Distance Measuring

Image Part Number Description / PDF Quantity Rfq
GP2Y0A710K0F

GP2Y0A710K0F

Socle Technology Corporation

SENSOR OPTICAL 100-550CM ANALOG

458

28058

28058

Parallax, Inc.

SF30/C LASER RANGEFNDR 100M FR

6

SEN0329

SEN0329

DFRobot

TF03 (TOF) LASER RANGE SENSOR(18

1

LTF12UC2LDQ

LTF12UC2LDQ

Banner Engineering

SEN LASER 50MM-1200MM NPN/PNP

24

GP2Y0A21YK0F

GP2Y0A21YK0F

Socle Technology Corporation

SENSOR OPTICAL 10-80CM ANALOG

1070

1031

1031

Adafruit

SENSOR OPTICAL 20-150CM ANALOG

0

PD45VP6C50

PD45VP6C50

Banner Engineering

PICODOT: CONVERGENTFOCAL POI

12

B5L-A2S-U01-010

B5L-A2S-U01-010

Omron Electronics Components

EMBEDDED 3D SENSOR MODULE WITH H

4

B5W-LB2101-1

B5W-LB2101-1

Omron Electronics Components

SENSOR OPTICAL 10-55MM ANALOG

64

DL100 PRO EIP

DL100 PRO EIP

SICK

SEN DISTANCE MF1/MF2 0.15-300M

2

Q4XFPLAF310-Q8

Q4XFPLAF310-Q8

Banner Engineering

PHOTO SEN LASER 310MM PNP

7

SEN0238

SEN0238

DFRobot

DE-LIDAR LASER RANGEFINDER 10M

2

SEN0245

SEN0245

DFRobot

GRAVITY VL53L0X TOF LASER RANGE

19

Q4XFKLAF610-Q8

Q4XFKLAF610-Q8

Banner Engineering

PHOTO SEN 610MM NPN/PNP-IO LINK

13

Q4XTILAF300-Q8

Q4XTILAF300-Q8

Banner Engineering

PHOTO SEN LASER 300MM 4-20MA

5

K50UX2ARA

K50UX2ARA

Banner Engineering

K50 ULTRASONIC SENSOR MODBUS SLA

2

GP2Y0E03

GP2Y0E03

Socle Technology Corporation

SENSOR OPTICAL 4-50CM I2C/ANALOG

2017

LE250IQ

LE250IQ

Banner Engineering

SEN LASER 100-400MM NPN/PNP

20

114992561

114992561

Seeed

RPLIDAR A1M8-R6 360 DEGREE LASER

25

DT35-B15251

DT35-B15251

SICK

SENSOR OPTICAL 5-1200CM ANALOG

27

Optical Sensors - Distance Measuring

1. Overview

Optical distance measuring sensors are devices that use light-based principles to detect the distance between the sensor and a target object. These sensors operate on optical phenomena such as reflection, triangulation, time-of-flight (TOF), or structured light. They play a critical role in modern automation, robotics, automotive systems, and consumer electronics by enabling non-contact, high-precision distance measurements. Their ability to provide real-time data with minimal interference makes them indispensable in applications ranging from industrial quality control to autonomous navigation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Laser TriangulationHigh accuracy (micron-level), short-to-medium range (up to 1m), fast responseRobot arm positioning, 3D printing calibration
Time-of-Flight (TOF)Long-range (up to 10m), moderate accuracy, operates in harsh lightingDrone obstacle avoidance, warehouse automation
Structured LightHigh-resolution 3D profiling, sensitive to ambient lightBiometric scanning, augmented reality (AR)
Photoelectric ProximityShort-range (mm-level), binary detection, low costSmartphone proximity sensing, conveyor belt object detection

3. Structure and Components

A typical optical distance sensor comprises:

  • Light Source: Laser diode (650-940nm wavelength) or LED for emitting optical signals
  • Optical Receiver: CMOS/CCD sensor or photodiode array for detecting reflected light
  • Signal Processor: ASIC or DSP for time/distance calculation and noise filtering
  • Optical Lens: Focuses light onto the receiver and defines the field of view
  • Interface Circuit: Analog/digital output (I2C, UART, PWM) for system integration

4. Key Technical Specifications

ParameterDescriptionImportance
Measurement RangeOperational distance limits (e.g., 50mm-5m)Determines application suitability
AccuracyDeviation from true value ( 0.1% of range)Quality control in precision manufacturing
ResolutionSmallest detectable distance change (1 m-1mm)Surface profiling and vibration analysis
Sampling RateData acquisition speed (1kHz-1MHz)Real-time motion control performance
Ambient Light RejectionAbility to filter environmental interferenceOutdoor/industrial reliability

5. Application Fields

Major industries utilizing optical distance sensors include:

  • Industrial Automation: Assembly line gap inspection, robotic welding guidance
  • Consumer Electronics: Smartphone face unlock, tablet gesture control
  • Automotive: Parking assistance, adaptive cruise control (ACC)
  • Medical: Non-contact patient positioning in radiation therapy
  • Smart Home: Vacuum robot cliff detection, automatic curtain control

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
STMicroelectronicsVL53L5CXTOF sensor, 4cm-4m range, 64x64 zone array
KeyenceIL-300Laser triangulation, 0.02% repeatability, analog output
Texas InstrumentsOPT3101AM-TOF, 10cm-8m range, 50Hz update rate
CognexDSMax3D vision system, 120fps, 0.02mm resolution
LMI TechnologiesGocator 2300Smart sensor, 2000 profiles/sec, IP67 rating

7. Selection Guidelines

Key considerations for sensor selection:

  • Match measurement range to application requirements (e.g., TOF for >2m distances)
  • Environmental factors: temperature, dust, and ambient light conditions
  • Integration constraints: form factor and interface compatibility (I2C vs. Ethernet)
  • Cost vs. performance trade-offs for mass production scenarios

Example: For a warehouse AGV navigation system, prioritize TOF sensors with >5m range, IP65 rating, and CAN bus interface.

8. Industry Trends

Emerging developments include:

  • Micromachining technologies enabling sub-mm sensor modules for wearable devices
  • AISensor fusion with IMUs and thermal sensors for enhanced reliability
  • AI-powered edge processing for real-time object classification
  • VCSEL light sources improving TOF accuracy in sunlight conditions

Market forecasts predict 12.3% CAGR in industrial optical sensors through 2027, driven by smart factory and autonomous vehicle adoption.

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