Motion Sensors - Optical

Image Part Number Description / PDF Quantity Rfq
EKMC1608111

EKMC1608111

Panasonic

SENSOR PIR 170UA DIGITAL WHITE

45

EKMB1106111

EKMB1106111

Panasonic

SENSOR MOTION PIR LONG DIST 1UA

3650

EKMC4606111K

EKMC4606111K

Panasonic

SENSOR MOTION PIR LONG DIST WHT

0

EKMC2609113K

EKMC2609113K

Panasonic

SENSOR PIR 170UA ANALOG PEARL

50

AMN41122

AMN41122

Panasonic

SENSOR MOTION DIG STD WHT PCB

460

EKMB1203111

EKMB1203111

Panasonic

SENSOR MOTION PIR 12M RANGE WHT

531

EKMC7608113K

EKMC7608113K

Panasonic

SENSOR PIR 170UA DIGITAL PEARL

0

EKMB1391113K

EKMB1391113K

Panasonic

SENSOR MOTION PIR SLIGHT MOTION

50

EKMC2691111K

EKMC2691111K

Panasonic

SENSOR MOTION PIR SLIGHT MOTION

27

AMN14112

AMN14112

Panasonic

SENSOR MOTION DIG 10M 5V WHT PCB

4150

EKMC7607112K

EKMC7607112K

Panasonic

LOW PROFILE LENS, 170UA, LOW SEN

63

EKMC1606112

EKMC1606112

Panasonic

SENSOR MOTION PIR LONG DIST BLK

221

EKMC2600100K

EKMC2600100K

Panasonic

SENSOR MOTION PIR NO LENS 170UA

51

EKMB1308113K

EKMB1308113K

Panasonic

SENSOR PIR 6UA DIGITAL PEARL

50

EKMB1101113

EKMB1101113

Panasonic

SENSOR MOTION PIR DIGITAL WHITE

0

EKMB1303113K

EKMB1303113K

Panasonic

SENSOR PIR LONG DIS TYPE 6UA

166

EKMC7604112K

EKMC7604112K

Panasonic

SENSOR MOTION PIR WALL MNT

45

EKMB1291113

EKMB1291113

Panasonic

SENSOR MOTION PIR SLIGHT MOTION

49

EKMC7606113K

EKMC7606113K

Panasonic

SENSOR MOTION PIR LONG DIST PL W

200

EKMC7609112K

EKMC7609112K

Panasonic

SENSOR PIR 170UA DIGITAL BLACK

0

Motion Sensors - Optical

1. Overview

Optical motion sensors detect movement through changes in light patterns, utilizing principles of optics and photonics. These sensors convert mechanical motion into electronic signals by measuring variations in light intensity, wavelength, or time-of-flight. Their importance spans across consumer electronics, industrial automation, healthcare, and automotive sectors, enabling contactless detection with high precision and reliability.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Photoelectric SensorsUse light beams and receivers to detect object presence/absenceAssembly line automation, security systems
Laser Doppler Velocimeters (LDV)Measure velocity using Doppler frequency shiftsFluid dynamics research, precision machining
CMOS Image SensorsCapture 2D/3D motion data through pixel arraysSmartphone cameras, AR/VR headsets
Optical EncodersConvert mechanical motion to digital signals via coded disksRobotics, CNC machines
Fiber Optic SensorsUse light propagation changes in optical fibersAerospace structural monitoring, seismic detection

3. Structure and Components

Typical optical motion sensors consist of:

  • Light Source: LEDs, lasers, or VCSELs emitting specific wavelengths (650-950nm range)
  • Optical Elements: Lenses, diffraction gratings, or fiber guides for beam shaping
  • Detector Array: PIN photodiodes, avalanche photodiodes, or CMOS image sensors
  • Signal Processor: ASICs for time-of-flight calculations or pattern recognition
  • Interface Circuitry: Analog-to-digital converters and communication protocols (I2C, SPI)

4. Key Technical Specifications

ParameterDescriptionImportance
ResolutionMinimum detectable displacement ( m to nm range)Determines measurement precision
Response TimeSignal processing speed ( s to ms)Critical for real-time applications
Wavelength RangeOperational spectrum (visible: 400-700nm, IR: 700-1600nm)Affects material interaction and accuracy
Signal-to-Noise RatioMeasurement stability (50-120dB typical)Impacts reliability in dynamic environments
Field of ViewDetection angle range (15 -180 )Defines spatial coverage area

5. Application Fields

Major industries include:

  • Consumer Electronics: Smartphone gesture control, gaming consoles
  • Industrial Automation: Robotic arm positioning, conveyor belt monitoring
  • Healthcare: Motion analysis systems, prosthetic limb control
  • Automotive: ADAS collision avoidance, driver monitoring systems
  • Scientific Research: Particle tracking, vibration analysis

Typical devices: Optical mice use 2D CMOS sensors (20-50 ips tracking speed), LiDAR systems employ 905nm pulsed lasers for 3D mapping.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Specifications
TI (Texas Instruments)OPT310116-bit depth sensing, 100ksps sampling rate
STMicroelectronicsVL53L5CXMulti-zone LiDAR, 60 FoV, 10m range
KeyenceLKG5000 Series0.01 m resolution, 50kHz sampling
OmronB5W-LB SeriesInfrared proximity detection, 10ms response
ams AGTMF8801940nm proximity sensor, 5% distance accuracy

7. Selection Guidelines

Key considerations:

  • Detection Range vs. Resolution Trade-off
  • Environmental factors (ambient light, temperature)
  • Power consumption requirements (especially for IoT devices)
  • Optical crosstalk prevention in multi-sensor systems
  • Mounting constraints (through-hole vs. surface-mount packages)

For outdoor applications, select sensors with IR filtering and temperature compensation. In medical devices, prioritize biocompatible packaging and EMI resistance.

8. Industry Trends

Emerging developments include:

  • Miniaturization through MEMS integration (sub-1mm sensors)
  • AI-enhanced motion prediction algorithms
  • Multi-spectral sensing combining visible/NIR/SWIR ranges
  • Wireless sensor networks with embedded edge computing
  • Quantum dot-based single-photon avalanche diodes (SPADs)

Market growth driven by AR/VR demand (CAGR 18.7% 2023-2030) and industrial IoT adoption.

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