Large-Scale Space-Based Solar Power Station: Packaging, Deployment and Stabilization of Lightweight Structures
US-2016376037-A1 · Dec 29, 2016 · US
US11919664B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11919664-B2 |
| Application number | US-201716321372-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 24, 2017 |
| Priority date | Jul 29, 2016 |
| Publication date | Mar 5, 2024 |
| Grant date | Mar 5, 2024 |
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A reaction wheel apparatus including a reaction wheel provided in a polyhedral housing, in which respective faces constituting a polyhedron are constituted by frame parts corresponding to the respective faces constituting the polyhedron, and at least two of the frame parts are constituted by at least two rigid circuit board parts of a rigid flexible substrate.
Opening claim text (preview).
The invention claimed is: 1. A reaction wheel apparatus including a reaction wheel provided in a polyhedral housing, wherein respective faces constituting a polyhedron are constituted by frames corresponding to the respective faces constituting the polyhedron, and at least two rigid circuit boards of a rigid-flex substrate are used as at least two of the frames, respectively, and wherein a part of the reaction wheel is used as part of one of the frames and is connected to a face of the one frame, wherein the one frame is not any of the at least two of the frames. 2. The reaction wheel apparatus according to claim 1 , wherein the rigid-flex substrate includes a first rigid circuit board, the first rigid circuit board of the rigid-flex substrate has a first through opening penetrating in the thickness direction of the first rigid circuit board, the first through opening has a nut accommodation extending substantially parallel to a side edge of the first rigid circuit board and a screw accommodation that opens to the side edge of the first rigid circuit board and extends orthogonally to the nut accommodation, a nut is accommodated in the nut accommodation, at least one first frame neighboring the first rigid circuit board has a through hole at a position aligned with the screw accommodation of the first through opening of the first rigid circuit board and the nut accommodated in the nut accommodation, and the at least one first rigid circuit board and the at least first frame are connected by driving the screw inserted from the outside of the at least one first frame into the nut through the through hole and the screw accommodation. 3. The reaction wheel apparatus according to claim 1 , wherein a cutout is formed at a side edge of at least one rigid circuit board of the rigid-flex substrate, one of the frames connected to the side edge formed with the cutout is disposed so as to cover an opening edge of the cutout, in such a way as to form an opening between the one frame connected to the side edge formed with the cutout and the cutout, and a wiring from a component provided inside the housing is connected to a terminal provided on an outer surface of the at least one rigid circuit board, through the opening. 4. The reaction wheel apparatus according to claim 1 , wherein a stepped cutout is formed at least one side edge of the rigid-flex substrate where a flexible cable is connected, of at least one rigid circuit board of the rigid-flex substrate, and the flexible cable extends from a deeper region of the stepped cutout. 5. The reaction wheel apparatus according to claim 1 , wherein a connection assist member to which an external device can be connected is attached to at least one vertex region or side region of the polyhedron. 6. The reaction wheel apparatus according to claim 1 , wherein the reaction wheel includes a rotary body disposed so as to face the one frame, an electromagnet disposed between the one frame and the rotary body, and a spring attached to the one frame and urging the electromagnet toward the one frame, wherein at least a partial portion of the rotary body facing the electromagnet is formed of a ferromagnetic material, the electromagnet is urged by the spring in such a manner that the electromagnet and the rotary body are separated from each other when the electromagnet is not energized, and the electromagnet comes into contact with the rotary body against an urging force of the spring when the electromagnet is energized, thereby braking the rotary body. 7. The reaction wheel apparatus according to claim 6 , wherein a motor for rotating the rotary body is disposed between the rotary body and the one frame, and a wiring from the motor is drawn out between the spring and the one frame. 8. The reaction wheel apparatus according to claim 1 , wherein the polyhedron is a hexahedron. 9. The reaction wheel apparatus according to claim 3 , wherein the component provided inside the housing is an electromagnet of the reaction wheel.
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