Photoelectric sensor with adjustable spot size and fixed focus position and adjustment method
A photoelectric sensor and spot size technology, applied in the field of photoelectric sensing, can solve problems such as efficiency discounts and limitations, and achieve the effect of expanding the capability boundary
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0043] Embodiment 1: as figure 1 and figure 2 As shown, a photoelectric sensor light source part with adjustable spot size and fixed focus position proposed by the present invention includes a light source 1 and a condenser lens 4, and a flat panel adjustment compensation module 2 is fixedly installed between the light source 1 and the condenser lens 4. It also includes a plate thickness adjustment shaft 5 that can be rotated relative to the light source 1 and the condenser lens 4. The rotational axis of the plate thickness adjustment shaft 5 is parallel to the straight line where the light source 1 and the condenser lens 4 are located, and the plate thickness adjustment shaft 5 is fixedly connected with Flat panel adjustment module 3. The light generated by the light source 1 passes through the panel adjustment module 3 and the panel adjustment compensation module 2 in turn and then enters the condenser lens 4, and the end face of the panel adjustment module 3 and the panel...
Embodiment 2
[0048] Embodiment 2, an image distance adjustment method of an adjustable photoelectric sensor: as image 3 As shown, by introducing a transparent medium into the optical path to change the position of the light source 1 relative to the focusing lens, a transparent medium is provided between the light source 1 and the lens.
[0049] Assuming the thickness and refractive index of the parallel light-transmitting plate to be n, the offset of the equivalent light source can be obtained: a beam of light from light source 1, with an incident angle of a, is emitted from light source 1, and enters a parallel plane with a refractive index of n from the air. The light-transmitting plate, the refraction angle is i, then there is
[0050] sina=nsini
[0051]
[0052] After propagating for a certain distance in the parallel light-transmitting plate, and emitting into the air, there is
[0053] S=L / sini
[0054] =L·sina / n
[0055] Among them, S is the propagation distance in the parall...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


