US2018023926A1PendingUtilityA1

Adjusting assembly and method thereof

Assignee: ZEN TECH LIMITEDPriority: Jan 12, 2015Filed: Dec 3, 2015Published: Jan 25, 2018
Est. expiryJan 12, 2035(~8.5 yrs left)· nominal 20-yr term from priority
F41G 11/004
28
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Claims

Abstract

An adjustable assembly comprising a mounting plate, centre lever is pivotally connected to the mounting plate guided over the projected portion of centre lever and both are held rigid by the holding means. A base clamp pivotally connected to the centre lever and is guided through the projected portion of centre lever which is held rigid by the holding means, centre lever and base clamp are arranged to adjust in another required desired orthogonal axis by the adjusting means. The whole assemble structure is mounted to a parallel sighting devices such a laser unit or a camera or the like.

Claims

exact text as granted — not AI-modified
We claim: 
     
         1 . An adjustable assembly for fine adjustment of a parallel sighting device to desired orthogonally related axes, comprises of:
 a mounting plate provided with a plurality of mounting elements, characterized to include:
 a plurality of holes to fix an parallel sighting device; 
 a screw is pivotally mount to the centre lever by using a hole and nut; 
 a hole for housing a swiveling screw of the said centre lever, where the axis of the threads of the said swiveling screw are perpendicular to the axis of the rotation of the swiveling screw; 
 a slot with a screw for rigidly holding a projected portion of a centre lever and a stopper to refrain a partial tight and a partial loose of the screw to enable the housing to move in a desired orientation; 
   the centre lever provided with a plurality of mounting elements for attaching to the said mounting plate, characterized to include:
 at least two projected portions, wherein at least one projected portion guided through a base clamp; 
 a screw for pivotally mount with a hole of the said base clamp; 
 a hole for accommodating a swiveling screw of the said base clamp with their axis perpendicular to each other; 
   the base clamp provided with a plurality of mounting elements for attaching to the said centre lever, characterized to admit:
 a hole; 
 a slot with a screw for rigidly holding a projected portion of a centre lever; 
 and a stopper to refrain a partial tight and a partial loose of the screw to enable the housing to move in a desired orientation; 
   a swiveling screw along with a nut; and   the friction clamp holds the Parallel sighting device by using the adjustable assembly through a plurality of fasteners.   
     
     
         2 . The assembly according to  claim 1 , the parallel sighting device that is held to desire orthogonally related axes comprises of a barrel. 
     
     
         3 . The assembly according to  claim 1 , the parallel sighting device that held to achieve the desired orthogonally related axis are one or more of:
 a laser unit;   a camera; and   a similar sighting device.   
     
     
         4 . The assembly according to  claim 1 , characterized to adjust the device in azimuth and elevation angles by rotating the swiveling screws. 
     
     
         5 . The assembly according to  claim 1 , characterized to determine an increase or decrease in the distance between the swiveling screw and the nut from its initial distance. 
     
     
         6 . The assembly according to  claim 1 , characterized to ensue a clockwise or counterclockwise angular displacement of the axes with reference to the barrel. 
     
     
         7 . According to the assembly as claimed in  claim 1 , the distance between the screw and the nut determines an angle between the axis of the centre lever and the base clamp. 
     
     
         8 . The assembly according to  claim 1 , wherein the increase or decrease in the distance between the swiveling screw and the nut from its initial distance results in the clockwise or counterclockwise angular displacements respectively between the axes with reference to the barrel. 
     
     
         9 . The assembly according to  claim 1 , characterized to accommodate friction clamps with appropriate size and shape, depending on the barrel size that is mounted to the adjustable assembly. 
     
     
         10 . An assembly method for fine adjustment of a parallel sighting device to a desired orthogonally related axis, comprise steps of:
 providing a mounting plate with a plurality of mounting elements, characterized to include:
 a plurality of holes to fix an parallel sighting device; 
 a slot for rigidly holding a projected portion of a centre lever through a screw; 
 a hole for mounting the screw on to the said mounting plate of the centre lever by using a nut; 
 another hole for housing a swiveling screw of the said centre lever, where the axis of the threads of the said swiveling screw are perpendicular to the axis of the rotation of the swiveling screw; 
   attaching the said centre lever to the mounting plate with a plurality of mounting elements, characterized to include:
 at least two projected portions, wherein at least one projected portion guides a base clamp; 
 a screw for housing into a hole of the said base clamp; 
 a stopper to refrain a partial tight and a partial loose of the screw to enable the housing to move in a desired orientation; 
 another hole for accommodating a swiveling screw of the said base clamp with their axis perpendicular to each other; 
   attaching the said base clamp to the said centre lever with a plurality of mounting elements, characterized to admit:
 a hole; 
 a screw; 
 a swiveling screw along with a nut; and 
   holding the parallel sighting device that comprises of a barrel by using the said assembly method with the help of a plurality of friction clamps using a plurality of fasteners.   
     
     
         11 . The method according to  claim 10 , the parallel sighting device that held to the desired orthogonally related axis are one or more of:
 a laser unit;   a camera; and   a similar parallel sighting device.   
     
     
         12 . The method according to  claim 10 , adjust the device in azimuth and elevation angles by rotating the swiveling screws. 
     
     
         13 . The method according to  claim 10 , characterized to determine an increase or decrease in the distance between the swiveling screw and the nut from its initial distance resulting in a clockwise or a counterclockwise angular displacements respectively between the axes with reference to the barrel. 
     
     
         14 . The method according to the  claim 10 , characterized to determine a distance between the swiveling screw and the nut which further determines the angle between the axis of the centre lever and the base clamp. 
     
     
         15 . The method according to  claim 10 , characterized to determine an increase or decrease in the distance between the swiveling screw and the nut from its initial distance further resulting in a clockwise or a counterclockwise angular displacements respectively between the axes with reference to the barrel. 
     
     
         16 . The method according to  claim 10 , characterized to accommodate the friction clamp with appropriate size and shape depends on the barrel size that is mounted to the adjustable assembly.

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