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Articulating sensor bracket

Active Publication Date: 2020-10-08
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present invention has the advantage of allowing rotation around two separate pivot points while also protecting wires from pinching. Additionally, the bracket can accommodate different sizes of sensors on either side.

Problems solved by technology

Brackets having high precision mounting holes to properly place a sensor, camera or light are costly to manufacture and may result in many singular brackets to meet the various setups required in typical automation and manufacturing environments.
Furthermore, many of the known brackets do not allow for small adjustments typically required due to variation from machining and manufacturing processes used to create the bracket.

Method used

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  • Articulating sensor bracket
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Examples

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Embodiment Construction

[0017]Referring now to the drawings, and more particularly to FIG. 1, there is shown an articulating sensor bracket assembly 10 for a sensor 20 used in automation and manufacturing environments. The articulating sensor bracket assembly 10 generally includes a cylindrical member 30, an L-shaped bracket 50, a pivoting point 64 and a pivoting locking member 66.

[0018]The cylindrical member 30 generally includes a body 31 with an outer surface 31A. The outer surface 31A is shown as having a cylindrical shape although it may include any shape, e.g. angular or conical. The outer surface 31A may be a smooth or rough and may have a cross section consistent or varying along its' length. The body 31 further includes a longitudinal axis 32 that aligns from a first end 34 to a second end 36 of the body 31. The second end 36 of the body 31 forms an at least partial sphere 38 made up any portion of a sphere but is generally shaped and sized to function as a ball joint with a knuckle joint. A typic...

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Abstract

An articulating sensor bracket having a generally cylindrical member with a first end and a second end. The cylindrical member having a longitudinally extending through bore defining a longitudinal axis. The first end defines a ball arrangement and the second end defines a mounting surface. The mounting surface is generally parallel to the longitudinal axis. A bracket has a first leg and a second leg with the first leg disposed generally perpendicular to the second leg. The first leg includes a mounting hole and an arcuate slot extending partially around the mounting hole. The second leg includes a sensor mounting hole. A first fastener is disposed within the mounting hole and is coupled with the mounting surface. A second fastener is disposed within the arcuate slot and is coupled with the mounting surface.

Description

BACKGROUND OF THE INVENTION1. Field of the Invention[0001]The present invention relates to a bracket, and, more particularly, to a bracket for positioning a sensor.2. Description of the Related Art[0002]Brackets used to mount devices such as sensors, cameras and lights for the automation and manufacturing environments are known to be provided in permanently installed, non-adjustable positions where the mounting angle, installation position and installation distance are fixed. In some situations, the bracket may be disassembled and then reconfigured to have an alternate mounting angle, installation position or installation distance. In many occasions a device must be precisely fixed, such as when using a proximity switch, a high speed imaging camera or a laser measurement system. Brackets having high precision mounting holes to properly place a sensor, camera or light are costly to manufacture and may result in many singular brackets to meet the various setups required in typical aut...

Claims

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Application Information

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IPC IPC(8): F16M13/02F16M13/00
CPCF16M13/022F16M13/005F16M11/2078F16M11/10
Inventor NIGHSWANDER, ANTHONY R.SANDERS, ROGER W.SPROW, CHAD A.
Owner SWIVEL LINK