Optical Sensors - Reflective - Logic Output

Image Part Number Description / PDF Quantity Rfq
AEDR-8100-1P1

AEDR-8100-1P1

Broadcom

SENSOR OPT REFLECTIVE 2MM 8SMD

0

AEDR-8300-1W1

AEDR-8300-1W1

Broadcom

SENSOR OPT REFLECTIVE 2MM 6SMD

0

AEDR-8300-1P1

AEDR-8300-1P1

Broadcom

SENSOR OPT REFLECTIVE 2MM 6SMD

0

ML100-55/103/115

ML100-55/103/115

Pepperl+Fuchs

RETROREFLECTIVE SEN W/PLR FIL 5M

3

RL31-54/73C/136

RL31-54/73C/136

Pepperl+Fuchs

RETROREFLECTIVE SEN W/PLR FIL 12

6

NJL5902R-1-TE1

NJL5902R-1-TE1

New Japan Radio (NJR)

COBP PHOTO REFLECTOR

0

AEDR-8500-100

AEDR-8500-100

Broadcom

SENSOR OPT REFLECTIVE 1MM 8SMD

0

MLV12-54-G/76B/124/128

MLV12-54-G/76B/124/128

Pepperl+Fuchs

RETROREFLECTIVE SEN 4.2M

4

NJL5902R-2-TE1

NJL5902R-2-TE1

New Japan Radio (NJR)

COBP PHOTO REFLECTOR

1896

OPB9001AC

OPB9001AC

TT Electronics / Optek Technology

REF OPTICAL SENSOR MODULE 4.5-30

89

NJL5901AR-1-TE1

NJL5901AR-1-TE1

New Japan Radio (NJR)

COBP PHOTO REFLECTOR

0

EY3A-112

EY3A-112

Omron Electronics Components

SENSOR OPT REFLECTV 125MM MODULE

0

AEDR-8502-102

AEDR-8502-102

Broadcom

SENSOR OPT REFLECTIVE 1MM 8SMD

400

NJL5820R-TE4

NJL5820R-TE4

New Japan Radio (NJR)

ROTARY DETECTION SENSOR WITH OPT

0

NJL5902R-TE1

NJL5902R-TE1

New Japan Radio (NJR)

COBP PHOTO REFLECTOR

0

OBS4000-18GM60-E5

OBS4000-18GM60-E5

Pepperl+Fuchs

RETROREFLECTIVE SEN W/PLR FIL 4M

10

NJL5909RL-4-TE1

NJL5909RL-4-TE1

New Japan Radio (NJR)

COBP PHOTO REFLECTOR WITH LENS

0

E32-L12FS 2M

E32-L12FS 2M

Omron Automation & Safety Services

SENSOR OPT REFLECTIVE 8MM-20MM

0

ITR1204SR10A/TR

ITR1204SR10A/TR

Everlight Electronics

IR/PT ITR DECIVE

1132

OPB9001B

OPB9001B

TT Electronics / Optek Technology

REF OPTICAL SENSOR MODULE 4.5-24

100

Optical Sensors - Reflective - Logic Output

1. Overview

Reflective optical sensors with logic output are proximity detection devices combining infrared (IR) emitters and photodetectors. They operate by measuring reflected light intensity from target objects, converting optical signals into digital logic outputs (HIGH/LOW). These sensors are critical in automation, consumer electronics, and industrial systems for non-contact detection of objects, position verification, and motion control.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Slot-Type SensorsIntegrated emitter/detector in U-shaped housingEncoder disk detection, paper presence in printers
Surface-Mount SensorsMiniature SMD packages for PCB integrationSmartphone proximity detection, robotics
Long-Range SensorsLens-optimized for 10-50cm detection distanceConveyor belt object tracking, safety barriers
High-Speed SensorsResponse time <10 sEncoder pulse counting, high-frequency motion control

3. Structure and Components

Typical construction includes:

  • IR LED Emitter: 850-950nm wavelength source
  • Photodetector: PIN photodiode or phototransistor
  • Optical System: Integrated lens/filter for ambient light rejection
  • Signal Processor: Built-in comparator for threshold-based logic output
  • Housing: Thermoplastic resin with IP64 protection rating

4. Key Technical Specifications

ParameterTypical RangeImportance
Detection Distance2mm - 150mmDetermines application suitability
Response Time1 s - 1msAffects high-speed operation
Supply Voltage2.7V - 30VDictates system power design
Output TypeCMOS/TTL, NPN/PNPCompatibility with control circuits
Ambient Light Immunity10,000 - 100,000 luxPrevents false triggering

5. Application Fields

  • Industrial: Conveyor systems, robotic arms, safety interlocks
  • Consumer: Smartphones, printers, gaming consoles
  • Automotive: Rain sensors, seat occupancy detection
  • Healthcare: Medical analyzers, infusion pump monitoring

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
OmronEE-SX6711m detection, IP67 rating
VishayTCRT5000L5V operation, 2.5mm SMD
STMicroVL53L0XTime-of-flight measurement, I2C interface
EverlightITR8307High-speed phototransistor output

7. Selection Recommendations

Key considerations:

  • Determine required detection range with safety margin
  • Assess environmental conditions (temperature, ambient light)
  • Match output type with controller voltage levels
  • Consider mechanical packaging for installation constraints
  • Evaluate power consumption for battery-operated devices

Industry Trends

Emerging developments include:

  • Integration of AI algorithms for adaptive thresholding
  • Miniaturization through MEMS fabrication techniques
  • Wireless sensor network compatibility (IoT integration)
  • Multi-spectral sensing for improved material discrimination
  • Energy harvesting designs for self-powered operation
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