Optical Sensors - Ambient Light, IR, UV Sensors

Image Part Number Description / PDF Quantity Rfq
LH163T01

LH163T01

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LR1R210

LR1R210

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LZ9GH29A

LZ9GH29A

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH154208

LH154208

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH1652A3

LH1652A3

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH163M01

LH163M01

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH154914

LH154914

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LR1R220

LR1R220

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH16CDH1

LH16CDH1

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH1627H3

LH1627H3

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

IR3T47G

IR3T47G

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH165008

LH165008

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LR1R223

LR1R223

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH163UH3

LH163UH3

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LR36688U

LR36688U

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH169H4

LH169H4

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LR1R212

LR1R212

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH163RH2

LH163RH2

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LZ9FC18A

LZ9FC18A

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

LH169111

LH169111

Sharp Microelectronics

ELECTRONIC COMPONENT OPTO

0

Optical Sensors - Ambient Light, IR, UV Sensors

1. Overview

Optical sensors are devices that detect and measure light intensity, wavelength, or presence. Ambient light sensors (ALS), infrared (IR) sensors, and ultraviolet (UV) sensors are critical subcategories that enable machines to perceive and respond to optical environmental changes. These sensors play vital roles in consumer electronics, industrial automation, automotive systems, and environmental monitoring by enabling adaptive control, safety features, and data acquisition.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Ambient Light Sensor (ALS)Measures visible light intensity, automatic brightness adjustmentSmartphone displays, smart lighting systems
Infrared Sensor (IR)Passive/active detection of IR radiation, proximity sensingRemote controls, occupancy detection systems
UV SensorMeasures UV-A/UV-B/UV-C radiation intensitySunlight exposure monitors, sterilization equipment

3. Structure and Components

Typical optical sensors consist of:

  • Photosensitive element (photodiode, phototransistor, or CMOS sensor)
  • Optical filter (to isolate specific wavelength ranges)
  • Signal conditioning circuitry (amplifiers, ADCs)
  • Protective packaging (glass or polymer encapsulation)
Advanced devices integrate microcontrollers for onboard signal processing.

4. Key Technical Specifications

ParameterDescriptionImportance
Spectral Response RangeDetected wavelength range (e.g., 300-1100nm for ALS)Determines application compatibility
SensitivityCurrent/voltage output per unit irradiance (nA/W or V/W)Affects measurement accuracy
Dark CurrentResidual current without illuminationImpacts low-light performance
Field of View (FOV)Angular detection range (e.g., 60 for IR sensors)Defines spatial detection capability
Power ConsumptionOperating current/voltage requirementsCritical for battery-powered devices

5. Application Fields

Major application areas include:

  • Consumer Electronics: Display backlight control, gesture recognition
  • Industrial: Non-contact temperature measurement, process automation
  • Medical: Pulse oximetry, UV disinfection monitoring
  • Automotive: Rainlight detection, driver monitoring systems
  • Environmental: UV index monitoring, smart agriculture

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
ams OSRAMAS7618Integrated ALS, RGB, and IR sensor
Vishay SemiconductorVCNL4040Proximity + IR sensor with I2C interface
TAOS (Texas Instruments)BH1750Digital ambient light sensor
ROHM SemiconductorRPR-0521RSALS + proximity sensor for mobile devices

7. Selection Recommendations

Key selection factors:

  • Spectral matching to target light source
  • Required detection distance and angular coverage
  • Operating environment (temperature, humidity, EMI)
  • Interface requirements (analog/digital, I2C/SPI)
  • Power budget and packaging constraints
Case Study: Smartphone display optimization requires ALS with human eye response curve matching (18-22 lux accuracy) and compact 2x2mm LGA packaging.

Industry Trends

Emerging trends include:

  • Miniaturization (chip-scale packaging for wearables)
  • Multi-sensor integration (e.g., ALS + proximity + color in single package)
  • AI-enhanced signal processing for ambient light compensation
  • Increased UV-C sensitivity for germicidal applications
  • Energy harvesting capabilities for IoT deployments
The global optical sensor market is projected to reach $32.7B by 2027, driven by automotive LiDAR and smart building automation demands.

RFQ BOM Call Skype Email
Top