Configurable Switch Components - Lens

Image Part Number Description / PDF Quantity Rfq
61-9671.7

61-9671.7

EAO

CONFIG SWITCH LENS CLEAR SQUARE

57

704.601.0

704.601.0

EAO

LENS D29 BLACK ALUMINIUM

70

61-9781.9

61-9781.9

EAO

CONFIG SWITCH LENS WHITE RECT

0

61-9331.3

61-9331.3

EAO

CONFIG SWITCH LENS ORANGE RECT

12

61-9671.1

61-9671.1

EAO

CONFIG SWITCH LENS SMOKE SQUARE

2

84-7111.300

84-7111.300

EAO

CONFIG SWITCH LENS ORANGE ROUND

24

61-9781.0

61-9781.0

EAO

CONFIG SWITCH LENS BLACK RECT

19

84-7111.500

84-7111.500

EAO

CONFIG SWITCH LENS GREEN ROUND

227

11-932.5

11-932.5

EAO

LENS GREEN D8,4 PLASTIC TRANSPAR

40

61-9643.603

61-9643.603

EAO

CONFIG SWITCH LENS BLUE ROUND

34

61-9681.5

61-9681.5

EAO

CONFIG SWITCH LENS GREEN RECT

66

704.703.2

704.703.2

EAO

LENS CAP SQUARE RED 30X30 PLASTI

20

61-9321.2

61-9321.2

EAO

CONFIG SWITCH LENS RED SQUARE

29

61-9681.7

61-9681.7

EAO

CONFIG SWITCH LENS CLEAR RECT

27

61-9841.5A

61-9841.5A

EAO

CONFIG SWITCH LENS GREEN ROUND

12

704.602.7

704.602.7

EAO

LENS CLEAR D29 KU TRANSPARENT

53

704.702.4

704.702.4

EAO

LENS YELLOW 30X30 PLASTIC TRANSP

23

84-7211.200

84-7211.200

EAO

CONFIG SWITCH LENS RED ROUND

20

84-7111.701

84-7111.701

EAO

CONFIG SWITCH LENS CLEAR ROUND

25

84-7111.601

84-7111.601

EAO

CONFIG SWITCH LENS BLUE ROUND

18

Configurable Switch Components - Lens

1. Overview

Configurable Switch Components - Lens refers to a category of modular electro-optical switching devices that integrate adjustable optical lens systems with customizable switching mechanisms. These components enable precise control of electrical circuits through optical signal modulation, combining mechanical actuation with light-based sensing technologies. Their importance in modern systems lies in enabling adaptive automation, high-precision detection, and non-contact operation across industrial, medical, and consumer electronics applications.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Adjustable Focus Lens SwitchesVariable focal length control with position feedbackMachine vision systems, robotic alignment
Multi-Spectrum Optical SwitchesDual-band IR/visible light operationSecurity sensors, optical communication
Programmable Matrix SwitchesSoftware-defined optical path routingTelecom networks, lab-on-chip devices
Environmental Resilient UnitsIP69K rated for harsh conditionsOutdoor automation, industrial IoT

3. Structural and Technical Composition

Typical construction includes: - Lens Assembly: Graded-index (GRIN) or aspheric lenses with anti-reflective coating - Actuation Mechanism: Piezoelectric, electromagnetic, or MEMS-based micro-actuators - Signal Interface: Standardized PCB mounting with configurable pinouts - Housing: Aluminum alloy or polycarbonate enclosures with thermal compensation - Control Circuitry: Integrated microcontrollers for parameter configuration

4. Key Technical Specifications

ParameterTypical RangeImportance
Wavelength Range400-1600nmDetermines optical compatibility
Switching Speed0.1-50msImpacts real-time performance
Resolution1-10 mCritical for precision applications
Operating Temperature-40 C to +125 CDefines environmental suitability
MTBF100,000 - 1,000,000 hoursMeasures long-term reliability

5. Application Fields

  • Industrial Automation: Conveyor sorting systems, CNC machine tools
  • Medical Equipment: Non-contact surgical instrument controllers
  • Telecommunications: Optical cross-connect systems
  • Consumer Electronics: Smart home sensors, AR/VR headsets

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TE ConnectivityLensSwitch 7000IP67 rating, 0.5ms response time
Omron CorporationZW-F3 SeriesDual-beam stabilization, 50m detection range
HoneywellFS-Lens ProAI-driven adaptive focusing
Hamamatsu PhotonicsC12880MAMultispectral imaging integration

7. Selection Recommendations

Key considerations: - Environmental factors (temperature, vibration, contamination) - Optical requirements (wavelength sensitivity, light intensity) - Integration constraints (form factor, mounting options) - Control interface compatibility (analog/digital protocols) - Cost vs. performance trade-offs (Example: Semiconductor manufacturing requires Class 10 resolution)

8. Industry Trends Analysis

Emerging developments include: - Integration with edge AI for self-optimizing systems - Miniaturization through MOEMS (Micro-Opto-Electro-Mechanical Systems) - Adoption of plastic photonics for cost reduction - Increased use in autonomous vehicle LiDAR systems - Development of self-cleaning lens coatings using nanotechnology

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