Optomechanical

Image Part Number Description / PDF Quantity Rfq
G061661000

G061661000

Excelitas Technologies

ADAPTER 1 TO 0.8 OR 25 MM

30

G061236000

G061236000

Excelitas Technologies

SET OF HEXNUTS M2.3, 20 PCS.

2

G061234000

G061234000

Excelitas Technologies

CUTABLE ROD HOLDER V

5

G065065000

G065065000

Excelitas Technologies

PRISM TABLE 25

2

G061112000

G061112000

Excelitas Technologies

CORNER CONNECTOR 40 WITH THREADS

5

G061090000

G061090000

Excelitas Technologies

SCREWDRIVER

13

G067032000

G067032000

Excelitas Technologies

FLE.X-PLATE XY AL

8

G061025000

G061025000

Excelitas Technologies

CENTERING MOUNTING PLATE 25

3

G061061000

G061061000

Excelitas Technologies

Z-FINE ADJUSTMENT M WITH MICROME

5

G061159000

G061159000

Excelitas Technologies

COMPRESSION SPRING, 60X8X0.7

20

G061637000

G061637000

Excelitas Technologies

REDUCING RING 35/30

6

G061084000

G061084000

Excelitas Technologies

BEAM-DEFLECTOR CUBE

10

G061081000

G061081000

Excelitas Technologies

CUBE 30

32

G061032000

G061032000

Excelitas Technologies

MOUNTING PLATE 30E, LATCHABLE

12

G061210000

G061210000

Excelitas Technologies

ROD 150 MM

1

G061031000

G061031000

Excelitas Technologies

MOUNTING PLATE 25 E, LATCHABLE

13

G065115000

G065115000

Excelitas Technologies

Z-TRANSLATION STAGE WITH FINE-AD

4

G061064000

G061064000

Excelitas Technologies

ROTARY SUPPORT 20 WITH FINE-ADJU

1

G061209000

G061209000

Excelitas Technologies

ROD 75 MM

54

G050309000

G050309000

Excelitas Technologies

REDUCING RING 25/16

47

Optomechanical

1. Overview

Optoelectronics optomechanical systems integrate optical and mechanical engineering principles to design, develop, and operate devices that manipulate light-matter interactions. These systems enable precise control of optical components (e.g., lenses, mirrors, detectors) through mechanical structures, ensuring stability, alignment, and functionality in advanced applications. They play a critical role in fields such as laser technology, precision measurement, and optical communication.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Optical MountsAdjustable mechanical supports for optical componentsLaser beam alignment, interferometers
Optical TablesVibration-isolated platforms for optical experimentsPhotonics labs, semiconductor manufacturing
Laser Mechanical AssembliesStructures for laser cavity alignment and coolingIndustrial laser cutting, medical lasers
Photodetector ModulesIntegrated sensors with optical and mechanical packagingLiDAR, optical communication receivers
Fiber Optic MechanicsAlignment systems for fiber optic connectorsTelecom networks, fiber lasers

3. Structure and Components

A typical optomechanical system consists of:

  • Mechanical Framework: Aluminum or steel bases for structural stability
  • Adjustment Mechanisms: Micrometers, piezo actuators for precision alignment
  • Optical Mounts: Kinematic mounts for lenses, mirrors, and detectors
  • Thermal Management: Heat sinks or cooling channels for laser systems
  • Integration Interfaces: Standardized connectors (e.g., SMA, FC) for optical fibers

4. Key Technical Specifications

ParameterDescriptionImportance
Adjustment ResolutionMinimum angular/linear displacement ( rad/ m)Determines alignment precision
Load CapacityMaximum weight supported (kg)Affects system stability
Material CompatibilityThermal expansion coefficients ( in ppm/ C)Ensures environmental stability
Vibration IsolationResonant frequency (Hz) and damping ratioReduces noise in sensitive measurements
Optical ThroughputTransmission efficiency (%) across wavelength rangeImpacts system performance in photonics

5. Application Fields

Major industries and equipment include:

  • Industrial: Laser cutting machines, 3D printers
  • Scientific: Spectrometers, atomic force microscopes
  • Medical: Endoscopic imaging systems, OCT scanners
  • Telecom: DWDM optical transceivers, fiber amplifiers
  • Defense: Targeting systems, infrared cameras

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
ThorlabsKinesis K100LMS Stage0.1 m resolution, 100 mm travel
NewportXR7000 Optical Table0.5 Hz resonant frequency, 1000 kg load
LumentumHigh-Power Laser Module10 kW output, active cooling
Hamamatsu PhotonicsC12798-01 Photodetector160 dB dynamic range, 0.1 ns response
3MFiber Optic Alignment Tool 0.01 dB insertion loss

7. Selection Guidelines

Key considerations include:

  • Environmental conditions (temperature, vibration)
  • Optical wavelength compatibility (UV to IR)
  • Required degrees of freedom for alignment
  • Integration with existing optical systems
  • Cost vs. precision trade-offs

8. Industry Trends

Emerging developments include:

  • Microelectromechanical systems (MEMS) for miniaturized optics
  • AI-driven optomechanical alignment algorithms
  • Advanced composites for ultra-low thermal expansion
  • Integrated photonics packaging for 5G networks
  • Green manufacturing techniques for optomechanical components
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