




Business field

Medical diagnosis
Medical diagnostic OCT equipment is a high-resolution imaging technology based on near-infrared light, mainly used for non-invasive and radiation-free biopsy of living tissues. It generates cross-sectional images with micron-level resolution by detecting light reflection signals and is widely used in fields such as ophthalmology and dermatology. It can observe the microstructure of tissues in real time and assist in the early diagnosis of diseases.

Industrial inspection
Industrial inspection OCT equipment is specifically designed for non-destructive testing of the internal microstructure of materials or devices. By emitting low-coherence beams and analyzing the reflected signals, real-time cross-sectional or three-dimensional images of the sample can be generated with a resolution of the micrometer level. This is suitable for internal defect detection, layer thickness measurement and quality control of transparent/semi-transparent materials or precision components.

OCT accessories
Our company has developed a variety of OCT accessories, including electric delay lines/interferometer reference electric test arms, electric/manual optical fiber polarization controllers, etc. Through innovative research and development, we meet the efficiency requirements of enterprises. These accessories feature high precision, anti-interference, high repeatability, and rapid response, making them suitable for continuous detection in industrial sites and harsh environments.
Hot-selling products
Fully automatic ophthalmic OCT
- Design of fully automatic mechanical arm control
- A scanning rate of 400,000 times per second
- Intelligent image-assisted analysis system
Fully automatic dermatological OCT
- Feasible “optical biopsy”
- Suitable for a variety of skin conditions
- Provide more information on vascular networks
Handheld OCT system
- Non-destructive testing of industrial materials
- Real-time monitoring of laser welding
- Display 3D EnFace in real time
Reference arm
- The delay time is continuously adjustable
- Real-time control, fast speed
- Precision mechanical structure and closed-loop control technology
Optical fiber polarization controller
- Choose the adjustment method freely
- High precision and fast response
- Applicable to a variety of application scenarios
Scanning head
- Choose the adjustment method freely
- High precision and fast response
- Applicable to a variety of application scenarios
The principle of OCT technology
OCT utilizes the principle of low-coherence interference of light. It works by splitting the light emitted by a broadband light source into two beams, with one beam shining on the object under test (sample light). After the light enters the object under test, it undergoes backscattering (backward scattering). Another beam serves as the reference light, which is reflected back after reaching the fixed reference mirror. The two beams of light reconverge at the beam splitter to generate an interference signal. Only when the optical path difference between the two arms is within the coherent length of the light source will an effective interference signal be formed. By measuring the variation of the interference signal with the optical path difference, the information of different depths inside the sample can be obtained, and then the two-dimensional or three-dimensional structural image of the sample can be reconstructed.

Learn more
-Swept-frequency OCT system configuration table
-Spectral domain OCT system configuration table
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