System and method for efficient engine operation
US-2024225397-A9 · Jul 11, 2024 · US
US9532688B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9532688-B1 |
| Application number | US-201514874394-A |
| Country | US |
| Kind code | B1 |
| Filing date | Oct 3, 2015 |
| Priority date | Oct 7, 2014 |
| Publication date | Jan 3, 2017 |
| Grant date | Jan 3, 2017 |
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A spherical or ovoid design for a robotic vacuum in which the housing of the vacuum also serves as the means by which the device moves. Steering of the device is controlled by adjusting the center of gravity within the housing. Perforations in the housing allow debris to be vacuumed into the device.
Opening claim text (preview).
We claim: 1. A robotic vacuum comprising: a perforated spherical or ovoid housing or casing; a means for turning said housing about an axis parallel to the plane of a work surface; a means for turning said housing in a left or right direction; and a means for vacuuming debris from a work surface within said housing. 2. The robotic vacuum of claim 1 wherein said means for turning said housing about an axis parallel to the plane of a work surface comprises: providing a plate horizontally through the center of said housing; providing bearings to attach said plate to said housing; and providing one or more driving motors to turn said bearings; such that the running of said one or more driving motors causes said housing to turn. 3. The robotic vacuum of claim 1 wherein said means for turning said housing in a left or right direction comprises: providing a rod parallel to the plane of the work surface; providing a belt about said rod; providing a weight assembly on said belt; providing a servomotor or stepper motor to push or pull said belt; whereby the center of gravity of said housing is changed by adjusting the position of said weight by pushing or pulling said belt with said servomotor or stepper motor, which causes said housing to turn in a left or right direction. 4. The weight assembly of claim 3 further comprising any of: a dustbin, one or more batteries, and a vacuum motor. 5. The robotic vacuum of claim 3 further comprising providing tubes connecting said housing perforations to a dustbin within said housing. 6. The robotic vacuum of claim 1 wherein said means for turning said housing in a left or right direction comprises: providing a pendulum comprising a weight assembly; providing a high torque servomotor to adjust the positioning of said pendulum; and providing a control system to direct the operation of said high torque servomotor; whereby the center of gravity of said housing is changed by adjusting the positioning of said pendulum with said high torque servomotor, which causes said housing to turn in a left or right direction. 7. The means for turning said housing in a left or right direction of claim 6 further comprising providing a gyroscope sensor to more precisely calculate the necessary positioning of said pendulum. 8. The weight assembly of claim 6 further comprising any of: a dustbin, one or more batteries, and a vacuum motor. 9. A spherical or ovoid housing for a robotic vacuum with perforations or openings for allowing debris from a work area to enter said housing, a means for turning said housing about an axle provided parallel to the plane of a work surface, a means for turning said housing in a left or right direction, and a means for vacuuming debris from a work area within said housing. 10. The housing for a robotic vacuum of claim 9 wherein said means for turning said housing about an axle provided parallel to the plane of a work surface comprises: providing bearings to attach said axle to said housing; and providing one or more driving motors to turn said bearings; such that the running of said one or more driving motors causes said housing to turn. 11. The housing for a robotic vacuum of claim 9 wherein said means for turning said housing in a left or right direction comprises shifting the center of gravity of said housing by moving a weight assembly provided within said housing with a servomotor in a direction and degree calculated by a gyroscope sensor to achieve the desired turning degree and direction of said housing.
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