Optical Sensors - Reflective - Analog Output

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CNB1304H

CNB1304H

Panasonic

SENSOR OPTO TRANS REFL THRU PCB

977

CNB10010WL

CNB10010WL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNB1301

CNB1301

Panasonic

SENSOR OPTO TRANS 2.5MM REFL PCB

0

CNB10010HL

CNB10010HL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNB10010RL

CNB10010RL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNB2301

CNB2301

Panasonic

SENSOR OPTO TRANS 1MM REFL AXIAL

0

CNB23010R0LF

CNB23010R0LF

Panasonic

SENSR OPTO TRANS 1MM REFL TH PCB

0

CNB10020RL

CNB10020RL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNB13020R

CNB13020R

Panasonic

SENSOR OPTO TRANS 1MM REFL AXIAL

0

CNB10112

CNB10112

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNZ2153

CNZ2153

Panasonic

SENSR OPTO TRANS 3MM REFL TH PCB

0

CNB13020R0LF

CNB13020R0LF

Panasonic

SENSOR OPTO TRANS 1MM REFL PCB

0

CNB23010R

CNB23010R

Panasonic

SENSOR OPTO TRANS 1MM REFL AXIAL

0

CNB13020S

CNB13020S

Panasonic

SENSOR OPTO TRANS 1MM REFL AXIAL

0

CNB10010LL

CNB10010LL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

CNB13020S0LF

CNB13020S0LF

Panasonic

SENSOR OPTO TRANS 1MM REFL PCB

0

CNB10010SL

CNB10010SL

Panasonic

SENSOR OPTO TRANS 1MM REFL SMD

0

Optical Sensors - Reflective - Analog Output

1. Overview

Reflective optical sensors with analog output are optoelectronic devices that detect the presence, distance, or reflectivity of objects by emitting light and measuring the intensity of reflected light. Unlike digital sensors, analog output sensors provide continuous voltage/current signals proportional to the detected light intensity, enabling precise measurement of position, color, or material properties. They play critical roles in automation, robotics, and precision measurement systems where real-time analog data is required.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Infrared Reflective SensorsUse IR LEDs (850-950nm), insensitive to ambient lightIndustrial object detection, paper jam sensors in printers
Visible Light SensorsUse green/red LEDs, sensitive to surface color variationsColor recognition in packaging, liquid level monitoring
High-Precision Analog Sensors0-5V/4-20mA outputs with 0.5% linearitySemiconductor wafer alignment, precision displacement measurement

3. Structure and Components

Typical components include: - Light Source: GaAlAs LED (5-50mA forward current) - Receiver: PIN photodiode with built-in amplifier - Optical System: Collimating lens ( 2 beam angle) - Signal Processor: Transimpedance amplifier with temperature compensation - Enclosure: IP67-rated housing with anti-reflective coating

4. Key Technical Specifications

ParameterImportance
Operating Distance0.1-500mm range affects application flexibility
ResolutionUp to 0.01mm for precision measurement
Output Linearity 0.2% FS ensures accurate signal representation
Response Time10 s-1ms for high-speed processes
Ambient Light Immunity10,000 lux tolerance prevents false triggering

5. Application Areas

  • Industrial Automation: Conveyor belt object detection, robotic arm positioning
  • Medical Devices: Blood glucose meter test strip recognition
  • Consumer Electronics: Smartphone proximity sensing with adaptive brightness
  • Automotive: Rain sensor for windshield wipers (water film thickness measurement)

6. Leading Manufacturers and Products

ManufacturerProductKey Features
OmronE3Z-LS610.1mm resolution, 0-10V output, IP69K rating
ON SemiconductorAPDS-9960RGB-IR sensing, 12-bit ADC, I2C interface
Texas InstrumentsOPT3101Time-of-Flight sensing, 16-bit resolution

7. Selection Guidelines

  1. Determine required detection range and resolution
  2. Match output type (voltage/current) with control system
  3. Consider environmental factors (temperature, vibration)
  4. Evaluate optical window material for chemical resistance
  5. Check compliance with industry standards (IEC 60947-5-2)

8. Industry Trends

Emerging trends include: - Integration of AI-based signal processing for adaptive thresholding - Development of UV/VIS multispectral sensors for material analysis - Miniaturization to enable embedded applications (sub-1mm packages) - Wireless-enabled sensors with IO-Link compatibility - Increased adoption of MEMS-based tunable optical filters

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