Optical Sensors - Photoelectric, Industrial

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Q12RB6RCR

Q12RB6RCR

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WORLD-BEAM Q12 SERIES: CHEMICALL

2

Q146E

Q146E

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PHOTO SEN EMITTER 1.8M

130

D12SP6FVHQ

D12SP6FVHQ

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D12SP6FVHQ PNP HIGHER POWER VISI

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QS18VN6AF100

QS18VN6AF100

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PHOTO SEN 20-100MM NPN

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MIAD9FQ

MIAD9FQ

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SEN PHOTO VARIED RANGE NAMUR

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K50APTRGCQ

K50APTRGCQ

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K50 SERIES EZ-LIGHT: 2-COLOR TOU

5

T30SP6LPQ

T30SP6LPQ

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PHOTO SEN 6M COMP PNP

7

QS30FF200Q-25339

QS30FF200Q-25339

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PHOTO SEN FIXED 200MM BIPOLAR

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QS18VN6AF300

QS18VN6AF300

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SEN BACK SUPP 30-300MM NPN

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Q406EQ

Q406EQ

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PHOTO SEN EMITTER FIXED 60M

2

Q25SP6FF100Q

Q25SP6FF100Q

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PHOTO SEN EMITTER FIXED 100MM

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QS18EK6XLPCQ7

QS18EK6XLPCQ7

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QS18 EXPERT SERIES CLEAR OBJECT

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QS18VP6AF250Q5

QS18VP6AF250Q5

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PHOTO SEN ADJUST 250MM PNP

11

Q456EQ5

Q456EQ5

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PHOTO SEN EMITTER 60M

12

QS30R

QS30R

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PHOTO SEN RECEIVER 60M BIPOLAR

3

R55CG1

R55CG1

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R55 COLOR MARK: CONVERGENT W/ BL

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Q20NRQ5

Q20NRQ5

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WORLD-BEAM Q20 SERIES: RECEIVER

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T8RP6D100Q

T8RP6D100Q

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T8 SERIES: DIFFUSERANGE: 100

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Q453EFQ

Q453EFQ

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Q453EFQ

2

S18-2VPFF75-Q8

S18-2VPFF75-Q8

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S18-2 SERIES: FIXED FIELDRAN

2

Optical Sensors - Photoelectric, Industrial

1. Overview

Industrial photoelectric sensors are optoelectronic devices that detect the presence or absence of objects by emitting and receiving light beams. These sensors convert optical signals into electrical signals through photodetection mechanisms, enabling non-contact measurement and control in industrial environments. Their importance lies in enabling automation, improving production efficiency, and ensuring process reliability across various sectors including manufacturing, logistics, and quality control.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Through-Beam SensorsSeparate emitter and receiver units for high detection accuracyConveyor belt object counting
Reflective SensorsSingle unit with reflector for compact installationsPackaging integrity verification
Diffuse SensorsObject-reflective detection without separate reflectorColor contrast detection in sorting systems
Fiber Optic SensorsFlexible light transmission for confined spacesSemiconductor manufacturing equipment
Slot SensorsU-shaped design for precise positional detectionPrinted circuit board alignment systems

3. Structure and Components

Typical construction includes: 1) Light source (LED/Laser diode) emitting specific wavelengths (660nm-950nm) 2) Photodetector (photodiode/CCD array) for signal reception 3) Signal processing circuitry with amplification and threshold detection 4) Protective housing with optical window (IP65-IP69K ratings) 5) Electrical interface (2-wire/3-wire configurations) Advanced models integrate temperature compensation and digital communication protocols (IO-Link).

4. Key Technical Specifications

ParameterSignificance
Detection RangeDetermines maximum operational distance (20mm-50m)
Response TimeMeasures detection speed (10 s-2ms)
AccuracyDefines position detection precision ( 0.02mm)
Environmental ResistanceSpecifies operating conditions (-40 C to +70 C, dust/water protection)
Output TypeIdentifies electrical interface (NPN/PNP, analog/digital)

5. Application Fields

Key industries include: - Automotive Manufacturing: Robotic welding verification - Logistics: Parcel dimension measurement systems - Food Processing: Fill-level detection in transparent containers - Electronics Assembly: Component presence verification - Medical Devices: Lab automation sample tracking Example: In automotive production lines, photoelectric sensors detect door panel alignment with 0.1mm precision at 2m/s conveyor speeds.

6. Leading Manufacturers and Products

ManufacturerCountryRepresentative Product
SiemensGermanyOBT1-16GM300-S91L
OmronJapanE3Z-T61
KeyenceJapanLKG50A-W15T
Pepperl+FuchsGermanyR2000-6
BalluffUSABOS 18M

7. Selection Recommendations

Key considerations: 1. Detection requirements: Distance, object size, and speed 2. Environmental factors: Ambient light, temperature, and contamination 3. Installation constraints: Space limitations and mounting options 4. Output requirements: Digital/analog signal compatibility 5. Cost-benefit analysis: Balancing precision with operational budgets Example: Choose fiber optic sensors for high-temperature furnace applications exceeding 100 C.

8. Industry Trend Analysis

Current development trends include: - Miniaturization through MEMS technology (sensor size reduction by 40% since 2015) - Integration of AI algorithms for adaptive threshold adjustment - Wireless communication capabilities (Bluetooth/Wi-Fi 6 adoption) - Increased sensitivity in visible light spectrum (enhanced color detection) - Growth in safety-rated sensors (SIL2/PLc compliance) Market projections indicate 8.2% CAGR through 2027 driven by Industry 4.0 adoption.

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