Motor and valve drive device
US-11156306-B2 · Oct 26, 2021 · US
US12345348B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12345348-B2 |
| Application number | US-202318469218-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 18, 2023 |
| Priority date | Apr 21, 2021 |
| Publication date | Jul 1, 2025 |
| Grant date | Jul 1, 2025 |
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In a valve device, a rotor includes a drive disk and a lever fixed to the drive disk. The lever couples between the drive disk and a shaft. In the valve device, a first torsion spring is placed between a housing and the shaft, and a second torsion spring is placed between the shaft and the lever. A drive device includes an electric motor configured to drive the shaft in a rotational drive range, which is between an initial rotational position and a maximum rotational position, in a first rotational direction toward the initial rotational position and a second rotational direction opposite to the first rotational direction. The first torsion spring urges the shaft relative to the housing in the second rotational direction in the state where the shaft is placed in the initial rotational position upon the rotation of the shaft in the first rotational direction.
Opening claim text (preview).
What is claimed is: 1. A valve device comprising: a housing that forms a fluid passage at an inside of the housing, wherein the fluid passage is configured to conduct a fluid through the fluid passage; a stationary disk that is shaped in a plate form and is fixed at the inside of the housing, wherein the stationary disk has at least one flow passage hole which is configured to conduct the fluid through the at least one flow passage hole; a drive device that is configured to output a rotational force; a shaft that is configured to be rotated about a central axis, which is predetermined, by the rotational force; and a rotor that is configured to increase or decrease an opening degree of the at least one flow passage hole in response to rotation of the shaft, wherein: the rotor includes: a drive disk that is shaped in a plate form and is configured to slide relative to the stationary disk in a state where the drive disk is opposed to the stationary disk; and a lever that is fixed to the drive disk and couples between the drive disk and the shaft to enable integral rotation of the drive disk and the shaft in a state where the drive disk is displaceable in an axial direction of the shaft; a first torsion spring is placed between the housing and the shaft and is configured to urge the shaft relative to the housing in a circumferential direction around the central axis of the shaft; a second torsion spring is placed between the shaft and the lever and is configured to urge the lever relative to the shaft in the circumferential direction; the drive device includes an electric motor that is configured to drive the shaft in a rotational drive range, which is between an initial rotational position and a maximum rotational position, in a first rotational direction toward the initial rotational position and a second rotational direction opposite to the first rotational direction; and in a state where the shaft is in the initial rotational position after the shaft is driven by the electric motor in the first rotational direction, the first torsion spring urges the shaft relative to the housing in the second rotational direction. 2. The valve device according to claim 1 , comprising a motor controller unit that is configured to control the electric motor while keeping track of a position of the shaft with reference to an origin position of the shaft, wherein: the initial rotational position is a position of the shaft at which rotation of the shaft is limited by contact of the shaft with a stopper of the housing; and the motor controller unit is configured to execute an initializing process that updates the origin position of the shaft in a contact state where the shaft contacts the stopper upon rotation of the shaft to the initial rotational position. 3. The valve device according to claim 2 , wherein: the electric motor is a stepping motor; and the motor controller unit is configured to determine whether the shaft is in the contact state, in which the shaft contacts the stopper, based on a counter-electromotive force generated in a coil of the electric motor. 4. The valve device according to claim 1 , wherein the shaft includes: a shaft core that is made of metal and includes the central axis while the shaft core extends in the axial direction; and a holder that is made of resin and is coupled to the shaft core, wherein the holder is configured to receive an urging force of the first torsion spring and an urging force of the second torsion spring. 5. The valve device according to claim 1 , wherein the shaft extends through the stationary disk and the drive disk and is rotatably supported by the housing.
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