US2018045909A1PendingUtilityA1

Optical Apparatus

Assignee: STARLIGHT XPRESS LTDPriority: Jul 25, 2014Filed: Oct 6, 2017Published: Feb 15, 2018
Est. expiryJul 25, 2034(~8 yrs left)· nominal 20-yr term from priority
G02B 7/023G02B 7/006G02B 7/005G02B 7/021G02B 27/30
30
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Claims

Abstract

An optical apparatus for manipulating light in an optical system that includes means for mechanically coupling the apparatus to an optical input device with the optical system such thus received light passes from the optical input device onwards toward an optical processor and means for moving at least one optical component between an aligned position and a non-aligned position.

Claims

exact text as granted — not AI-modified
1 . (canceled) 
     
     
         2 . The optical apparatus according to  claim 25 , wherein said means for mechanically coupling the apparatus is configured for maintaining, when said apparatus is coupled by said means for mechanically coupling the apparatus to said optical input device, a predefined distance between a surface of said optical input device and an image plane of said optical processor. 
     
     
         3 . The optical apparatus according to  claim 2 , wherein said predefined distance is not more than 30 mm, preferably not more than 20 mm and more preferably not more than 18 mm. 
     
     
         4 . The optical apparatus according to  claim 2 , wherein said predefined distance comprises at least one of 9.2 mm, 12.29 mm, 12.52 mm and 17.526 mm. 
     
     
         5 . The optical apparatus according to  claim 25 , wherein said apparatus further comprises: a first surface for abutting said flange surface of said optical input device; and a second surface for abutting said optical processing portion; wherein said first and second surfaces are arranged at separation defined to set said predefined distance between a flange surface of said optical device, and an image plane of said optical processing portion, when said apparatus is coupled by said means for mechanically coupling the apparatus within said optical system. 
     
     
         6 . The optical apparatus according to  claim 25 , wherein said means for mechanically coupling the apparatus is configured to couple the apparatus to said optical input device within said optical system using an optical mount configured for mounting standardized interchangeable lenses. 
     
     
         7 . The optical apparatus according to  claim 6 , wherein said optical mount comprises a C-mount, a CS-mount, a D-mount or a Q-mount. 
     
     
         8 . The optical apparatus according to  claim 25 , wherein said means for mechanically coupling the apparatus is further configured for mechanically coupling the apparatus to said optical processing portion. 
     
     
         9 . The optical apparatus according to  claim 25 , wherein said means for mechanically coupling the apparatus is integrated with said optical processing portion of said optical system. 
     
     
         10 . The optical apparatus according to  claim 25 , further comprising a carrier for holding said at least one optical component, wherein the means for moving is arranged for moving the carrier such that the at least one optical component is moved between said aligned position and said non-aligned position. 
     
     
         11 . The optical apparatus according to  claim 25 , wherein the means for moving comprises a means for providing a motive force to drive movement of said carrier whereby to move said at least one optical component held in the carrier between said aligned position and said non-aligned position. 
     
     
         12 . The optical apparatus according to  claim 25 , wherein the carrier is rotatably coupled to the apparatus and the means for moving is configured for rotating said carrier about an axis of rotation whereby to move said at least one optical component held in the carrier between said aligned position and said non-aligned position. 
     
     
         13 . The optical apparatus according to  claim 12 , wherein the means for moving comprises a means for providing a motive force to drive rotation of said carrier. 
     
     
         14 . The optical apparatus according to  claim 13  wherein the means for providing a motive force is arranged to apply the motive force at a drive location on the carrier that is closer to an outer perimeter of said carrier than to the axis of rotation. 
     
     
         15 . The optical apparatus according to  claim 14  wherein the drive location is at a distance from the outer perimeter that is no greater than 25% of the distance between the outer perimeter and the axis of rotation. 
     
     
         16 . The optical apparatus according to  claim 14  wherein the drive location is at a distance from the outer perimeter that is no greater than 10% of the distance between the outer perimeter and the axis of rotation. 
     
     
         17 . The optical apparatus according to any of  claim 11  wherein the means for providing a motive force is arranged to apply the motive force at a drive location on the carrier that is diametrically opposed from a location of said means of mechanically coupling the apparatus. 
     
     
         18 . The optical apparatus according to any of  claim 11  wherein the means for providing a motive force comprises a motor arranged to provide said motive force. 
     
     
         19 . The optical apparatus according to  claim 25 , wherein said apparatus further comprises: a transfer lens arrangement, comprising a first lens and a second lens, wherein the transfer lens arrangement is configured for location between said input device and said optical processor when the apparatus is coupled to said input device and said optical processor. 
     
     
         20 . The optical apparatus according to  claim 19 , wherein when said at least one optical component is in the aligned position, said at least one optical component is located between said first lens and said second lens of said transfer lens arrangement. 
     
     
         21 . (canceled) 
     
     
         22 . The optical apparatus according to  claim 25  wherein the means for controlling comprises at least one of a microcontroller/microprocessor and an input/output port for communicating with a peripheral device. 
     
     
         23 . The optical apparatus according to  claim 22 , wherein the means for controlling comprises the input/output port for communicating with a peripheral device and wherein the input/output port is adapted to provide electric power to the apparatus. 
     
     
         24 . The optical apparatus according to  claim 23  wherein means for controlling comprises the input/output port for communicating with a peripheral device and wherein the input/output port is adapted to provide electric power to a microcontroller/microprocessor and/or means for providing a motive force for moving said optical component between said aligned and non-aligned positions. 
     
     
         25 . An optical apparatus for manipulating light in an optical system, which optical system comprises an optical input device for receiving light and an optical processing portion having an optical processor for processing the light received via the optical input device, the apparatus comprising:
 means for mechanically coupling the apparatus to said optical input device, within said optical system, such that light received via said optical input device passes from said optical input device, through said apparatus, onwards to said optical processor; and   means for moving, when said apparatus is coupled by said means for mechanically coupling the apparatus within said optical system, at least one optical component between:
 a) an aligned position in which said optical component is located between said optical input device and said optical processor, for manipulating light received via said optical input device and for passing light so manipulated to said optical processor; and 
 b) a non-aligned position in which said optical component is not located between said optical input device and said optical processor 
   means for controlling said means for moving whereby to control movement of said at least one optical component between said aligned position and said non-aligned position, wherein said means for controlling comprises at least one identifier for identifying when said at least one optical component is in said aligned position; and   a sensor arranged to detect said at least one identifier, wherein the detection of said at least one identifier by the sensor arranged to detect said at least one identifier signifies that said at least one optical component is in said first aligned position.   
     
     
         26 . The optical apparatus according to  claim 25 , wherein the apparatus is arranged to hold a plurality of optical components and said means for moving is configured to move each of said plurality of optical components between said aligned position and the, or another, respective non-aligned position; wherein said at least one identifier comprises a plurality of identifiers; and wherein each of said plurality of identifiers is arranged for identifying when a respective one of said plurality of optical components is in said aligned position. 
     
     
         27 . The optical apparatus according to  claim 25 , wherein each identifier comprises a code (e.g. a binary code) for indicating that a respective optical component is in said aligned positioned. 
     
     
         28 . The optical apparatus according to  claim 25 , wherein the at least one identifier comprises at least one magnet, wherein the polarity of the at least one magnet is arranged to represent a code (e.g. a binary code) for indicating that a respective optical component is in said aligned position. 
     
     
         29 . The optical apparatus according to any of  claim 25 , wherein the sensor arranged to detect the at least one identifier comprises a Hall Effect sensor. 
     
     
         30 . The optical apparatus according to any of  claim 25 , wherein the means for moving is configured for moving the at least one optical component between said aligned and the, or another, non-aligned position in dependence on detection of the at least one identifier by the sensor arranged to detect said at least one identifier. 
     
     
         31 . An optical arrangement for manipulating light in an optical system, wherein the optical system includes an optical input device for receiving light and an optical processing portion having an optical processor for processing the light received via the optical input device, the apparatus comprising:
 means for mechanically coupling the apparatus to said optical input device, within said optical system, such that light received via said optical input device passes from said optical input device, through said apparatus, onwards to said optical processor;   a transfer lens arrangement comprising a first lens and a second lens, wherein the transfer lens arrangement is configured for location between said optical input device and said optical processor, when the apparatus is coupled to said optical input device within said optical system, such that light received via said optical input device passes through the first lens and then passes through the second lens onwards to said optical processor; and   a carrier for holding at least one optical component in an aligned position in which said at least one optical component is located between said optical input device and said optical processor, and between said first lens and said second lens of said transfer lens arrangement, for manipulating light received via said optical input device and for passing light so manipulated to said optical processor.   
     
     
         32 . The optical arrangement for manipulating light according to  claim 31 , further comprising a means for moving, when said apparatus is coupled by said means for mechanically coupling the apparatus within said optical system, at least one optical component between:
 a) said aligned position; and   b) a non-aligned position, in which said optical component is not located between said optical input device and said optical processor.   
     
     
         33 . The optical arrangement according to  claim 32 , wherein the first lens of said transfer lens arrangement is configured for collimating light received from the optical input device. 
     
     
         34 . The optical arrangement according to  claim 31  wherein the second lens of said transfer lens arrangement is configured for focusing light from the first lens onto an image plane of said optical processing portion. 
     
     
         35 . The optical arrangement according to  claim 31 , wherein the first lens and the second lens of said transfer lens arrangement are arranged to have a focal point that coincides with the focal point of said optical input device, when the apparatus is coupled to said optical input device within the optical system. 
     
     
         36 . The optical arrangement according to  claim 31 , wherein the optical input device comprises an interchangeable camera lens. 
     
     
         37 . The optical arrangement according to  claim 31 , wherein the optical processing portion comprises part of an imaging device and said optical processing portion comprises an imaging sensor of said imaging device. 
     
     
         38 . The optical arrangement according to  claim 37  wherein the imaging device is a camera. 
     
     
         39 . A filter apparatus for filtering light in a camera system, which camera system including an interchangeable camera lens for receiving light and an imaging portion having an imaging sensor for processing the light received via the camera lens, the apparatus comprising:
 means for mechanically coupling the filter apparatus to said camera lens, within said camera system, such that light received via said camera lens passes from said camera lens, through said filter apparatus, onwards to said imaging sensor; and   means for moving, when said filter apparatus is coupled by said means for mechanically coupling the apparatus within said camera system, at least one filter between:
 a) an aligned position in which said filter is located between said camera lens and said imaging sensor, for manipulating light received via said camera lens and for passing light so manipulated to said imaging sensor; and 
 b) a non-aligned position in which said filter is not located between said camera lens and said imaging sensor.

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