Optical tap
US-9696495-B2 · Jul 4, 2017 · US
US2020249399A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020249399-A1 |
| Application number | US-202016791793-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 14, 2020 |
| Priority date | Jan 31, 2019 |
| Publication date | Aug 6, 2020 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A variable wavelength filter includes: an input optical fiber; a diffraction grating that disperses input light from the input optical fiber; a variable mirror that has a reflective surface, wherein an angle of the reflective surface is adjustable, the variable mirror reflects the input light dispersed by the diffraction grating, the input light reflected by the variable mirror passes through a normal optical path, the input light that passes through the normal optical path has a wavelength band defined based on the angle of the reflective surface, and the defined wavelength band has a center wavelength corresponding to the angle of the reflective surface; an output optical fiber that outputs a portion of the input light that has passed through the normal optical path; and an optical detector disposed on a propagation path of the input light from the input optical fiber to the output optical fiber.
Opening claim text (preview).
1 .- 6 . (canceled) 7 . A variable wavelength filter, comprising: an input optical fiber; a diffraction grating that disperses input light from the input optical fiber; a variable mirror that has a reflective surface, wherein an angle of the reflective surface is adjustable, the variable mirror reflects the input light dispersed by the diffraction grating, the input light reflected by the variable mirror passes through a normal optical path, the input light that passes through the normal optical path has a wavelength band defined based on the angle of the reflective surface, and the defined wavelength band has a center wavelength corresponding to the angle of the reflective surface; an output optical fiber that outputs a portion of the input light that has passed through the normal optical path; and an optical detector disposed on a propagation path of the input light from the input optical fiber to the output optical fiber, wherein the optical detector detects a light intensity of a portion of the input light. 8 . The variable wavelength filter according to claim 7 , wherein the optical detector receives and detects light of a wavelength band separated from the center wavelength, and the wavelength band separated from the center wavelength is different from the defined wavelength band. 9 . The variable wavelength filter according to claim 8 , further comprising: a separation filter disposed at a focal position where the light of the defined wavelength band on the normal optical path is condensed, wherein the separation filter guides the light of the wavelength band separated from the center wavelength to the optical detector. 10 . The variable wavelength filter according to claim 8 , further comprising: a reflective mirror on the normal optical path, wherein the reflective mirror has an aperture that allows the light of the defined wavelength band to pass through, the reflective mirror reflects the light of the wavelength band separated from the center wavelength, and the light of the wavelength band separated from the center wavelength propagates outward in a radial direction of the aperture toward the optical detector. 11 . The variable wavelength filter according to claim 8 , further comprising a wavelength selection reflector disposed on the normal optical path, wherein the wavelength selection reflector selectively reflects a portion of the light of the defined wavelength band reflected by the variable mirror and that passed through the normal optical path toward the output optical fiber, and the optical detector receives the light of the wavelength band separated from the center wavelength that: is not reflected by the wavelength selection reflector; and propagates on a downstream side in a progression direction of the input light to the wavelength selection reflector. 12 . The variable wavelength filter according to claim 11 , wherein reflectivity in a center region of the wavelength selection reflector is higher than reflectivity in a surrounding region of the wavelength selection reflector around the center region, the surrounding region has a reflective surface that is permeable to the input light, and the wavelength selection reflector reflects a wavelength component of the light of the defined wavelength band at a higher reflectivity the closer the wavelength component is to the center wavelength.
couplers being tunable or adjustable · CPC title
the optical element being reflective, e.g. mirror · CPC title
1x1 switch, e.g. on/off switch · CPC title
configurable, e.g. tunable or reconfigurable (switching G02B6/35) · CPC title
Diffractive element operating in transmission · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.