H01R39/12

Grounding rope for a shaft grounding apparatus of a dynamo-electric machine
10734871 · 2020-08-04 · ·

A grounding rope assembly for electrically grounding a rotatable conductive shaft of a dynamo-electric machine. The assembly includes a grounding rope member including a plurality of conductive wires extending along the length of the grounding rope member and one or more discrete fixation points intermediate the first and second ends of the grounding rope member. Two or more of the plurality of conductive wires are affixed together at each of the discrete fixation points.

ADAPTOR AND CONNECTOR ASSEMBLY
20200235519 · 2020-07-23 ·

An adaptor includes a male adaptor support; an adaptor plate arranged on the male adaptor support; a conductive ring arranged on the adaptor plate; and an adaptor joint, the adaptor joint and the adaptor plate separately arranged at two ends of the male adaptor support, the conductive ring electrically connected with the adaptor joint.

ADAPTOR AND CONNECTOR ASSEMBLY
20200235519 · 2020-07-23 ·

An adaptor includes a male adaptor support; an adaptor plate arranged on the male adaptor support; a conductive ring arranged on the adaptor plate; and an adaptor joint, the adaptor joint and the adaptor plate separately arranged at two ends of the male adaptor support, the conductive ring electrically connected with the adaptor joint.

Retractable work cable

Apparatus and methods are disclosed of a welding-type system includes a welding-type power supply configured to provide welding-type power. A reel located within a housing of the welding-type power supply. A welding-type cable, the reel configured to wind the welding-type cable to reduce a length of the welding-type cable extending from the housing, and to unwind to increase a length of the welding-type cable extending from the housing at least partially wound around the reel when stored. The welding-type cable includes a first end secured to the reel and electrically connected to the welding-type power supply and a second end configured to provide the welding-type power to at least one welding-type tool.

Adaptor and connector assembly
10707610 · 2020-07-07 ·

An adaptor includes a male adaptor support; an adaptor plate arranged on the male adaptor support; a conductive ring arranged on the adaptor plate; and an adaptor joint, the adaptor joint and the adaptor plate separately arranged at two ends of the male adaptor support, the conductive ring electrically connected with the adaptor joint.

Adaptor and connector assembly
10707610 · 2020-07-07 ·

An adaptor includes a male adaptor support; an adaptor plate arranged on the male adaptor support; a conductive ring arranged on the adaptor plate; and an adaptor joint, the adaptor joint and the adaptor plate separately arranged at two ends of the male adaptor support, the conductive ring electrically connected with the adaptor joint.

System for grounding bearings of rotary electric machines, and corresponding electric machine

The present invention relates to a system for grounding bearings of rotary electric machines (200), especially rotary electric machines (200) controlled by frequency converters, the system comprising an outer ring (1), a contact ring (2), a support ring (3), elements (4) for fastening the rings, optional closure elements (5), elements (6) for fastening the assembly, elements (7) for adjusting the brush, a brush (8) made of a conductive material and a compressive fastening element (9), wherein the outer ring (1) is provided with at least two, preferably four to six housing holes (8A) for housing one or more grounding brushes (8). The present invention further relates to an electric machine provided with a system according to the invention.

System for grounding bearings of rotary electric machines, and corresponding electric machine

The present invention relates to a system for grounding bearings of rotary electric machines (200), especially rotary electric machines (200) controlled by frequency converters, the system comprising an outer ring (1), a contact ring (2), a support ring (3), elements (4) for fastening the rings, optional closure elements (5), elements (6) for fastening the assembly, elements (7) for adjusting the brush, a brush (8) made of a conductive material and a compressive fastening element (9), wherein the outer ring (1) is provided with at least two, preferably four to six housing holes (8A) for housing one or more grounding brushes (8). The present invention further relates to an electric machine provided with a system according to the invention.

Slip ring assembly for surgical instrument

A surgical instrument includes a body assembly, a shaft assembly extending distally from the body assembly along a shaft axis, and an end effector at a distal end of the shaft assembly. The shaft assembly includes an outer tube configured to rotate relative to the body assembly about the shaft axis. The surgical instrument further includes a slip ring assembly configured to enable electrical communication between the shaft assembly and the body assembly while permitting relative rotation therebetween. The slip ring assembly includes a first electrical contact supported by the outer tube, and a second electrical contact electrically coupled with the first electrical contact and positioned radially outward of the outer tube. The first electrical contact is configured to rotate with the outer tube about the shaft axis relative to the second electrical contact while the first and second electrical contacts remain electrically coupled.

Photovoltaic-wind hybrid turbine system

There is provided a hybrid turbine system comprising a plurality of flexible and thin film photovoltaic modules or panels attached to a plurality of blades of a vertical-axis wind turbine (VAWT) for energy generation. Electrical performance of rotating photovoltaic modules or panels is enhanced since rotating photovoltaic modules are self-cooled by rotation of the blades of the wind turbine. It is experimentally shown that voltage of the photovoltaic modules decreases when the photovoltaic modules' temperature increases, and this decrease was modelled by four parameters namely ideality factor, reverse saturation current, short-circuit current, and material band gap. The present invention evidences that the proposed rotating photovoltaic modules increases the output voltage of the photovoltaic modules. Rotation of the photovoltaic modules as a part of the plurality of blades cools down and lowers the operating temperature of the photovoltaic modules and improves overall performance of the hybrid turbine system.