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Hierarchical frequency response non-contact slip ring probe

A non-contact, frequency response technology, applied in resonant antennas, waveguide devices, transmission systems, etc., can solve the problem of lack of capture area for signal-to-noise ratio

Active Publication Date: 2022-03-01
MOOG INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Small near-field voltage and current probes may exhibit reasonable frequency and impulse responses, but often lack sufficient capture area for acceptable signal-to-noise ratios

Method used

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  • Hierarchical frequency response non-contact slip ring probe
  • Hierarchical frequency response non-contact slip ring probe
  • Hierarchical frequency response non-contact slip ring probe

Examples

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Embodiment Construction

[0038]At the outset, it should be clearly understood that like reference numerals are intended to identify like structural elements, parts or surfaces throughout the several drawings, as such elements, parts or surfaces may be construed by this detailed description as a complete written description of which they are a part. further describe or explain. Unless otherwise indicated, the drawings are intended to be read in conjunction with the specification (eg, cross-hatching, arrangement of parts, scale, extent, etc.) and are considered a part of the entire written description of the invention. As used in the following description, the terms "horizontal", "vertical", "left", "right", "upper" and "lower" and their adjective and adverb derivatives (eg, "horizontal", "rightward ", "upward", etc.), refer only to the orientation of structures shown when a particular drawing is facing the reader. Similarly, the terms "inwardly" and "outwardly" generally refer to the orientation of a ...

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PUM

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Abstract

A probe for receiving transmission of an electrical signal from a transmitter across an interface of a slip ring includes a signal capture region including a signal receiving strip arranged spaced apart from the transmitter of the slip ring for receiving at least one segment of the signal transmitted across the interface of the slip ring. The segmented signal receiving strip is configured to receive a frequency signal content range of a signal and has a first signal receiving segment having a first frequency response, a second signal receiving segment electrically coupled to the first signal receiving segment and having a second frequency response less than the first frequency response, and a third signal coupled to the first signal receiving section and having a third frequency response less than the first frequency response.

Description

technical field [0001] The present invention relates to a slip ring probe, and more particularly, to a slip ring with a segmented graded frequency response probe. Background technique [0002] Devices for conducting electrical signals between two members that are rotatable relative to each other are well known in the art. Such devices, commonly referred to as rotary joints or rotary electrical interfaces, include slip rings and torsion capsules, among others. Slip rings are typically used when unlimited rotation between components is required, and torsion bladders are typically used when only limited rotation between components is required. [0003] Slip rings allow the transfer of power and signals, including data, from a stationary structure to a rotating structure or otherwise between two structures rotating relative to each other. Slip rings can be used in any electromechanical system that requires rotation while transmitting power or signals. Slip rings also improve ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01P1/06H01Q5/321H01Q9/28H04B5/48
CPCH01P1/068H01Q9/285H01P1/061H01Q5/321H04B5/20H01P1/062H04B5/72
Inventor P·E·小皮尔森
Owner MOOG INC