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Room 511, No. 176 Gaoyue Road, Baoshan District, Shanghai
Shanghai Youyi Optoelectronics Technology Co., Ltd
Room 511, No. 176 Gaoyue Road, Baoshan District, Shanghai
SA Stage RT INT Integral Sphere Reflectivity System Measurement Bracket
SA Stage RT INT Integral Sphere Reflectivity System Measurement Bracket
SA Stage RT INT is an adjustable sample holder designed specifically for integrating sphere transmission and reflection measurements. It is compatible with specific integrating spheres and fiber optic collimating mirrors in marine photonics, and meets laboratory and industrial transmission/reflection measurement needs with high-precision adjustment, low stray light design, and durable materials.
core message
l Model: SA Stage RT INT
l Keywords: integrating sphere, reflectance measurement, adjustable measuring bracket, such as sea photoelectric sampling accessories
l Core positioning: Focusing on the analysis of the transmission and reflection performance of optical materials, high-precision measurement is achieved through precise adjustment and stable structure, combined with specialized equipment
Product features
l High precision measurement support: Z-axis adjustment stroke of about 368mm, positioning accuracy of 0.1mm, ensuring measurement accuracy
l Low stray light design: The integrating sphere fiber optic collimator is installed with an axis deviation of 8 °, effectively reducing stray light interference
l High quality material configuration: The integral ball liner is made of PTFE diffuse reflection Lambertian characteristic material, with a reflectivity of about 97%
l Durable structural design: The main body of the bracket is made of high-strength aluminum alloy, with a matte black surface treatment that combines aesthetics and durability
l Security protection function: The mobile platform can be locked to prevent accidental movement from affecting the measurement
Product Specifications
l Compatible with Haiguang IS-50-3P-Y 50mm integrating sphere and series fiber optic collimating mirrors (wavelength range 200-2500nm)
l Core application: Equipped with an integrating sphere for high-precision transmission/reflection measurement, suitable for laboratory and industrial testing processes
l Material and process: Aluminum alloy oxidation treatment, surface matte blackening, enhances durability and visual effect
Detailed specifications
Product parameters |
Specific values/configurations |
base dimensions |
180x160mm |
material |
Aluminum alloy oxidation |
Lens diameter |
6.3mm |
Effective aperture |
6mm |
Collimator lens wavelength range |
200~2500nm |
adjust height |
~350mm |
Integral sphere reflectance |
~97% |
Integral ball liner material |
PTFE (diffuse reflectance Lambert characteristic) |
Integral ball inner diameter |
50mm |
Integral ball interface |
SMA905, 2 of them |
Fiber optic collimator interface |
Off axis 8 ° |
Z-axis adjustment stroke |
About 368mm |
Z-axis positioning accuracy |
0.1mm |
application field
SA Stage RT INT Integral Sphere Reflectance Measurement BracketBuild a schematic diagram
Can be used in conjunction with the Haiguang IS-50-3P-Y integrating sphere and spectrometer, widely used for analyzing the transmission and reflection properties of various optical materials:
1. Testing of Silicon Materials and Semiconductors: Measuring the Reflectivity and Transmittance of Silicon Wafers, Monocrystalline Silicon, Polycrystalline Silicon, etc., Evaluating Surface Quality, Coating Uniformity, and Optical Loss
2. Analysis of Optical Characteristics of Metals and Coatings: Suitable for analyzing the reflection characteristics of metals such as aluminum, copper, and stainless steel, as well as evaluating the reflection performance and uniformity of electroplating and coating layers
3. Optical glass and transparent substrate testing: Measurement of transmittance and reflectance of optical glass, filters, lenses, etc., used for performance evaluation and quality control of optical components
4. Optical evaluation of plastics and film materials: testing the transmittance and diffuse reflectance properties of various plastics, polymer films, and packaging materials, analyzing optical transparency and surface scattering characteristics