US2014198519A1PendingUtilityA1

Light projector and sensor

Assignee: OMRON TATEISI ELECTRONICS COPriority: Oct 20, 2008Filed: Mar 17, 2014Published: Jul 17, 2014
Est. expiryOct 20, 2028(~2.2 yrs left)· nominal 20-yr term from priority
F21K 9/61G02B 3/04G02B 3/00G02B 6/4206G02B 6/04G02B 6/4204G02B 7/02G01J 1/02F21K 9/52
55
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Claims

Abstract

A light projector has a light emitting device having a light emitting surface, an optical fiber having an incident end-face to which light emitted from the light emitting surface enters, and a lens arranged between the light emitting surface of the light emitting device and the incident end-face of the optical fiber. The light emitting device, the optical fiber and the lens are arranged on one optical axis. The optical fiber includes a core region as a region including a single core of uniform refractive index or a region collectively encompassing a plurality of cores having uniform refractive index. The lens converts diffused light emitted from the light emitting surface to diffused light that widens more moderately.

Claims

exact text as granted — not AI-modified
1 . A light projector, comprising:
 a light emitting device having a light emitting surface;   an optical fiber having an incident end-face to which light emitted from said light emitting surface enters; and   a lens arranged between said light emitting surface of said light emitting device and said incident end-face of said optical fiber; wherein
 said light emitting device, said optical fiber and said lens are arranged on one optical axis; 
 said optical fiber includes a core region as a region including a single core of uniform refractive index or a region collectively encompassing a plurality of cores having uniform refractive index; 
 said lens converts diffused light emitted from said light emitting surface to diffused light that widens more moderately; and 
 where a light beam emitted from a point on said optical axis of said light emitting surface, passed through said lens and reaching said incident end-face of said optical fiber with an angle with respect to said optical axis being equal to an aperture angle of said optical fiber is defined as an aperture angle beam, and 
 where a light beam emitted from a point on said optical axis of said light emitting surface, passed through said lens and reaching an outer edge portion of said core region on said incident end-face of said optical fiber is defined as an outer edge beam,
 said light emitting surface, said lens and said optical fiber, and refractive power of said lens are arranged to satisfy:
 a first condition in which said aperture angle beam reaches inside said core region on said incident end-face of said optical fiber, or 
 a second condition in which an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is smaller than said aperture angle, and an angle formed by said outer edge beam being emitted from said light emitting surface and said optical axis is larger than said aperture angle. 
 
 
   
     
     
         2 . The light projector according to  claim 1 , wherein when said first condition is satisfied, an angle formed by said aperture angle beam being emitted from said light emitting surface and said optical axis is in a range from 1.1 times said aperture angle to 85°. 
     
     
         3 . The light projector according to  claim 2 , wherein when said first condition is satisfied, an angle formed by said aperture angle beam being emitted from said light emitting surface and said optical axis is in a range from 1.2 times said aperture angle to 85°. 
     
     
         4 . The light projector according to  claim 1 , wherein when said second condition is satisfied, an angle formed by said outer edge beam being emitted from said light emitting surface and said optical axis is in a range from 1.1 times said aperture angle to 85°. 
     
     
         5 . The light projector according to  claim 4 , wherein when said second condition is satisfied, an angle formed by said outer edge beam being emitted from said light emitting surface and said optical axis is in a range from 1.2 times said aperture angle to 85°. 
     
     
         6 . The light projector according to  claim 1 , wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.3 times said aperture angle to said aperture angle. 
     
     
         7 . The light projector according to  claim 6 , wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.5 times said aperture angle to said aperture angle. 
     
     
         8 . The light projector according to of  claim 1 , wherein said lens includes a single convex surface facing said incident end-face of said optical fiber as a surface providing said refractive power. 
     
     
         9 . The light projector according to  claim 1 , further comprising a first reflection member, including a reflection surface arranged between said light emitting surface and said incident end-face of said optical fiber to surround said lens for reflecting light emitted from said lens. 
     
     
         10 . The light projector according to  claim 1 , further comprising a second reflection member including a reflection surface provided around said light emitting device for reflecting light emitted from said light emitting device. 
     
     
         11 . The light projector according to  claim 1 , wherein said light emitting device is a light emitting diode chip. 
     
     
         12 . The light projector according to  claim 1 , wherein said core region at said incident end-face has a circular shape. 
     
     
         13 . The light projector according to  claim 1 , further comprising a holding member including an abutting surface abutting a peripheral edge of said incident end-face of said optical fiber, holding, by the abutment to the peripheral edge of said incident end-face, position of said incident end-face on said optical axis. 
     
     
         14 . A sensor, provided with the light projector according to  claim 1 . 
     
     
         15 . The light projector according to  claim 4  wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.3 times said aperture angle to said aperture angle. 
     
     
         16 . The light projector according to  claim 5  wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.3 times said aperture angle to said aperture angle. 
     
     
         17 . The light projector according to  claim 15 , wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.5 times said aperture angle to said aperture angle. 
     
     
         18 . The light projector according to  claim 16 , wherein when said second condition is satisfied, an angle formed by said outer edge beam reaching said outer edge portion and said optical axis is in a range from 0.5 times said aperture angle to said aperture angle. 
     
     
         19 . The light projector according to  claim 2 , wherein said lens includes a single convex surface facing said incident end-face of said optical fiber as a surface providing said refractive power. 
     
     
         20 . The light projector according to  claim 3 , wherein said lens includes a single convex surface facing said incident end-face of said optical fiber as a surface providing said refractive power.

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