Power transfer of multiple motors
US-2022190753-A1 · Jun 16, 2022 · US
US11958715B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11958715-B2 |
| Application number | US-202117175844-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 15, 2021 |
| Priority date | Feb 21, 2020 |
| Publication date | Apr 16, 2024 |
| Grant date | Apr 16, 2024 |
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A drive mechanism that drives a rotator to rotate includes a main motor, an assist motor, and processing circuitry. The main motor drives the rotator. The assist motor drives the rotator and assists a drive of the rotator by the main motor. The processing circuitry controls a speed of the main motor so that a rotational speed of the rotator is constant, and controls a motor voltage of the assist motor so that the motor voltage of the assist motor changes according to a change in a motor current of the main motor.
Opening claim text (preview).
The invention claimed is: 1. A drive mechanism configured to drive a rotator to rotate, the drive mechanism comprising: a main motor configured to drive the rotator; an assist motor configured to drive the rotator and assist a drive of the rotator by the main motor; and processing circuitry configured to: control a speed of the main motor so that a rotational speed of the rotator is constant; and control a motor voltage of the assist motor so that the motor voltage of the assist motor changes according to a change in a motor current of the main motor, wherein a reduction ratio in transmitting a drive from the assist motor to the rotator is a value such that an adjustment range of an assist amount of the assist motor assisting the drive of the rotator by the main motor is equal to or larger than a predetermined width. 2. The drive mechanism according to claim 1 , wherein the processing circuitry is configured to control the motor voltage of the assist motor so that the motor voltage of the assist motor increases as the motor current of the main motor increases. 3. The drive mechanism according to claim 1 , wherein the processing circuitry is configured to adjust the assist amount of the assist motor assisting the drive of the rotator by the main motor, according to a change in a load torque of the main motor. 4. The drive mechanism according to claim 1 , wherein an output of the main motor is larger than an output of the assist motor. 5. The drive mechanism according to claim 1 , further comprising: a first motor gear disposed on a motor shaft of the main motor; a first idler two-stage gear that includes a first small-diameter idler gear and a first large-diameter idler gear stacked one on another in a stepped manner, the first large-diameter idler gear meshing with the first motor gear; a second motor gear disposed on a shaft of the assist motor; a second idler two-stage gear that includes a second small-diameter idler gear and a second large-diameter idler gear stacked one on another in a stepped manner, the second large-diameter idler gear meshing with the second motor gear; and an output gear as the rotator meshing with the first small-diameter idler gear and the second small-diameter idler gear. 6. The drive mechanism according to claim 1 , further comprising: a first motor gear disposed on a motor shaft of the main motor; a first idler two-stage gear that includes a first small-diameter idler gear and a first large-diameter idler gear stacked one on another in a stepped manner, the first large-diameter idler gear meshing with the first motor gear; an idler two-stage pulley gear that includes a pulley gear and an idler gear stacked one on another in a stepped manner; a motor pulley gear disposed on a motor shaft of the assist motor; a timing belt wound around the motor pulley gear and the pulley gear; a second idler two-stage gear that includes a second small-diameter idler gear and a second large-diameter idler gear stacked one on another in a stepped manner, the second large-diameter idler gear meshing with the idler gear of the idler two-stage pulley gear; and an output gear as the rotator meshing with the first small-diameter idler gear and the second small-diameter idler gear. 7. The drive mechanism according to claim 1 , further comprising a plurality of drive transmission rotators configured to transmit drive from the main motor and the assist motor to the rotator, wherein a rotation axis of the rotator and rotation axes of the plurality of drive transmission rotators are arranged so that three rotation axes next to each other are not on a same straight line in a cross section that is orthogonal to the rotation axis of the rotator and the rotation axes of the plurality of drive transmission rotators. 8. A fixing device comprising: a fixing rotator configured to fix a toner image on a sheet; a pressure rotator; and the drive mechanism according to claim 1 including an output gear as the rotator to transmit drive to and rotate one of the fixing rotator and the pressure rotator. 9. A conveying device that conveys a sheet comprising: a conveying roller configured to convey a sheet; and the drive mechanism according to claim 1 including an output gear as the rotator to transmit drive to and rotate the conveying roller. 10. An image forming apparatus comprising the drive mechanism according to claim 1 .
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