Performance testing device for multi-channel tunable laser

US10145731B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10145731-B2
Application numberUS-201515748005-A
CountryUS
Kind codeB2
Filing dateDec 15, 2015
Priority dateJul 28, 2015
Publication dateDec 4, 2018
Grant dateDec 4, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A performance testing device for a multi-channel tunable laser, comprising a collimating and coupling lens, a first beam splitter, a power testing unit, a side-mode suppression ratio testing unit, a wavelength testing unit and a control and drive unit, the power testing unit being positioned in a reflection path of the first beam splitter, the wavelength testing unit being positioned in a transmission path of the first beam splitter, the side-mode suppression ratio testing unit being positioned in a reflection path of the second beam splitter, the control and drive unit being in a control connection with the power testing unit, the side-mode suppression ratio testing unit and the wavelength testing unit. The performance testing device has a simple structure, a low cost, and is convenient to use.

First claim

Opening claim text (preview).

The invention claimed is: 1. A performance testing device for a multi-channel tunable laser, comprising: a collimating and coupling lens, a first beam splitter, a power testing unit, a side-mode suppression ratio testing unit, and a control and drive unit, the control and drive unit being in control connection with the power testing unit and the side-mode suppression ratio testing unit; the power testing unit comprising a second beam splitter positioned in a reflection path of the first beam splitter, and a first photodetector positioned in a transmission path of the second beam splitter; the side-mode suppression ratio testing unit comprising a third beam splitter, a fourth beam splitter, a first etalon, a second etalon, a third etalon, a second photodetector, a third photodetector, and a fourth photodetector, the third beam splitter being positioned in a reflection path of the second beam splitter, along a reflection path of the third beam splitter being provided the first etalon and the second photodetector in this order, along a transmission path of the third beam splitter being provided the fourth beam splitter, along a reflection path of the fourth beam splitter being provided the second etalon and the third photodetector in this order, along a transmission path of the fourth beam splitter being provided the third etalon and the fourth photodetector in this order, the first etalon, the second etalon and the third etalon having a free spectral range three times as large as a channel spacing of the tunable laser under test, and the closest distance between transmission peaks of any two of the etalons being equal to the channel spacing of the tunable laser under test. 2. The performance testing device for a multi-channel tunable laser of claim 1 , wherein: the first photodetector of the power testing unit is calibrated by establishing a correspondence relationship between the input optical power of the performance testing device for a multi-channel tunable laser and the sampled photocurrent of the first photodetector. 3. The performance testing device for a multi-channel tunable laser of claim 1 , further comprising a wavelength testing unit provided in a transmission path of the first beam splitter in connection with the control and drive unit, the wavelength testing unit comprising a fifth beam splitter, a sixth beam splitter, a tunable optical filter, a fourth etalon, a fifth photodetector, a sixth photodetector, and a seventh photodetector, along a transmission path of the fifth beam splitter being provided the tunable optical filter and the fifth photodetector in this order, along a reflection path of the fifth beam splitter being provided the sixth beam splitter, the seventh photodetector being provided in a transmission path of the sixth beam splitter, and along a reflection path of the sixth beam splitter being provided the fourth etalon and the sixth photodetector in this order. 4. The performance testing device for a multi-channel tunable laser of claim 3 , wherein the tunable optical filter has a wavelength tunable range equal to or greater than that of the tunable laser under test, and a 3 dB bandwidth of the filter band of the tunable optical filter is smaller than a spacing between two channels of the tunable laser under test. 5. The performance testing device for a multi-channel tunable laser of claim 4 , wherein the tunable optical filter adopts a tunable filter including a combination of a grating and a mechanical adjustable plane mirror, or a liquid crystal tunable filter, or a temperature adjustable thermo-optical tunable filter. 6. The performance testing device for a multi-channel tunable laser of claim 3 , wherein the first etalon, the second etalon, the third etalon and the fourth etalon comprise an air-gap etalon having both end faces plated with a partial reflective film. 7. The performance testing device for a multi-channel tunable laser of claim 3 , wherein the first beam splitter, the second beam splitter, the third beam splitter, the fourth beam splitter, the fifth beam splitter, and the sixth beam splitter comprise a thin-film beam splitter or a glued cubic prism beam splitter. 8. The performance testing device for a multi-channel tunable laser of claim 1 , wherein the third beam splitter and the fourth beam splitter of the side-mode suppression ratio testing unit fare provided as a splitter combination to distribute the incident optical power of the unit. 9. The performance testing device for a multi-channel tunable laser of claim 8 , wherein the third beam splitter has a reflection-to-transmission ratio of 1:2, and the fourth beam splitter has a reflection-to-transmission ratio of 1:1. 10. The performance testing device for a multi-channel tunable laser of claim 1 , further comprising a computer to set the output of the multi-channel tunable laser and record the output characteristics measured for the current channel of the laser.

Assignees

Inventors

Classifications

  • Spectral arrangements using lasers, e.g. tunable · CPC title

  • G01J1/4257Primary

    applied to monitoring the characteristics of a beam, e.g. laser beam, headlamp beam (monitoring arrangements for lasers in general H01S3/0014) · CPC title

  • Absorption spectrometry; Double beam spectrometry; Flicker spectrometry; Reflection spectrometry (beam switching arrangements G01J3/08) · CPC title

  • for testing lamps or other light sources · CPC title

  • Indexed discrete filters or choppers · CPC title

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What does patent US10145731B2 cover?
A performance testing device for a multi-channel tunable laser, comprising a collimating and coupling lens, a first beam splitter, a power testing unit, a side-mode suppression ratio testing unit, a wavelength testing unit and a control and drive unit, the power testing unit being positioned in a reflection path of the first beam splitter, the wavelength testing unit being positioned in a trans…
Who is the assignee on this patent?
Accelink Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification G01J1/4257. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Dec 04 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).