Optics - Lenses

Image Part Number Description / PDF Quantity Rfq
0812135100

0812135100

Dialight

LENS WHITE PANEL MOUNT THREADED

0

1353275

1353275

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LENS WHITE PANEL MOUNT THREADED

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1351476

1351476

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LENS YELLOW PANEL MOUNT THREADED

0

0950935003

0950935003

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LENS WHITE PANEL MOUNT THREADED

0

CL2FROSTLENS

CL2FROSTLENS

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LENS FROSTED CL2 DLD LABEL

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0261135303

0261135303

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LENS WHITE PANEL MOUNT THREADED

0

0310535300

0310535300

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LENS WHITE PRESS FIT

0

2100114200

2100114200

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LENS BLUE PANEL MOUNT THREADED

0

0261137203

0261137203

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LENS CLEAR PANEL MOUNT THREADED

0

0850111200

0850111200

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LENS RED PANEL MOUNT THREADED

0

2150232403

2150232403

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LENS GREEN PANEL MOUNT THREADED

0

RPDL100FRSTLNS

RPDL100FRSTLNS

Dialight

LENS FROSTED CL2 JLG LABEL

0

0701132300

0701132300

Dialight

LENS GREEN PANEL MOUNT THREADED

0

0411332300

0411332300

Dialight

CAP PMI TORPEDO TRANSP 1" GREEN

0

0190537300

0190537300

Dialight

LENS CLEAR PANEL MOUNT THREADED

0

0800534303

0800534303

Dialight

LENS BLUE PANEL MOUNT THREADED

0

0701192200

0701192200

Dialight

LENS GREEN PANEL MOUNT THREADED

0

0530996

0530996

Dialight

CAP MINI PANEL INDICATOR

0

1231213203

1231213203

Dialight

LENS AMBER PANEL MOUNT THREADED

0

CL2CLEARLENS

CL2CLEARLENS

Dialight

CLEAR CL2 LENS JLG LABEL

0

Optics - Lenses

1. Overview

Optical lenses are critical components in optoelectronic systems, designed to focus, collimate, or shape light waves through refraction. These precision-engineered components enable control over light propagation in wavelength ranges spanning UV to IR spectra. Modern applications span imaging, telecommunications, industrial sensing, and scientific instrumentation, with recent advancements enabling miniaturization and multi-spectral capabilities.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Spherical LensesSimple curvature surfaces, cost-effective mass productionBasic imaging systems, consumer electronics
Aspherical LensesNon-spherical surfaces correcting spherical aberrationHigh-end cameras, VR headsets
Cylindrical LensesOne curved surface for line generation or astigmatism correctionLaser beam shaping, barcode scanners
Diffractive LensesMicro-structured surfaces enabling thin profile designsAR/MR headsets, LiDAR systems
Gradient-Index (GRIN) LensesRefractive index variation within material volumeEndoscopic imaging, fiber coupling

3. Structure and Composition

Typical lens assemblies consist of: - Optical substrate (glass/crystal/polymers) with precision-surfaced curvatures - Anti-reflective coatings (single/multi-layer dielectrics) - Mechanical housing for alignment stability - Optional spectral filters or diffractive elements Advanced designs integrate liquid crystal layers for tunable focus or MEMS-based adaptive shaping.

4. Key Technical Specifications

ParameterDescriptionImportance
Effective Focal Length (EFL)Distance between principal plane and focal pointDetermines field of view and magnification
Clear ApertureUsable light-transmitting diameterDefines throughput and resolution potential
Wavefront ErrorDeviation from ideal wave propagation ( RMS)Metric for optical quality and aberration control
Transmission RangeSpectral bandwidth with >80% throughputMatches light source characteristics
Thermal Stabilitydn/dT coefficient and CTE valuesEnsures performance under temperature variation

5. Application Fields

Key industries include: - Semiconductor manufacturing (DUV lithography optics) - Medical imaging (endoscopic GRIN lenses) - Autonomous vehicles (LiDAR beam steering systems) - Telecommunications (fiber optic collimators) - Scientific research (extreme UV focusing mirrors)

6. Leading Manufacturers and Products

ManufacturerProduct LineTechnical Highlights
Edmund Optics59-871 C Series Fixed Focal Length Lens25mm focal length, C-mount, 0.03 wavefront accuracy
ThorlabsAC254-050-AAchromatic doublet, 50mm EFL, AR coating 400-700nm
CanonHybrid Aspherical LensUsed in EOS R5 camera, 0.01 surface precision
Suess Precision OpticsCustom Diffractive OpticsEfficiency >95% at 1550nm wavelength

7. Selection Guidelines

Key considerations: - Match spectral transmission to light source (e.g., UV fused silica for 200-350nm) - Balance EFL with sensor size for desired FOV - Environmental factors: operating temperature (-40 C to +85 C typical) - Mounting compatibility (CCS-B, M12, or custom interfaces) - Cost vs. performance trade-offs (e.g., aspheric vs. spherical)

8. Industry Trends

Current developments focus on: - Metasurface-based flat optics for AR applications - Multi-material hybrid lenses combining glass and polymers - AI-optimized lens designs reducing Zemax simulation cycles - Wafer-level manufacturing enabling CMOS camera lens arrays - SWIR imaging lenses leveraging indium gallium arsenide (InGaAs) materials

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