Drive assembly with a rotating housing attached to an output interface
US-2016377162-A1 · Dec 29, 2016 · US
US11229325B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11229325-B2 |
| Application number | US-201716343422-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 20, 2017 |
| Priority date | Oct 20, 2016 |
| Publication date | Jan 25, 2022 |
| Grant date | Jan 25, 2022 |
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A motor is generally described. The motor may include an armature and a coil. The coil and armature operatively receive power from a power source. The power induces magnetic fields in the coil and armature to drive the armature. When power is removed, the coils reverse polarity to inductively decelerate the armature.
Opening claim text (preview).
What is claimed is: 1. A blender system comprising: a blender base comprising a motor and a housing that houses the motor, wherein the motor comprises: an armature; and at least two coils selectively coupled to a power supply, wherein the at least two coils generate a magnetic field having a first polarity when power is supplied to the at least two coils, and generate a second field having a second polarity when the power is disconnected from the at least two coils; and a switching circuit comprising: a first relay that operatively connects a power source to the at least two coils in an open state and, when in a closed state, disconnects the power source from and connects a braking resistor to the at least two coils when in the closed state; and a second relay that operatively couples a first node of the armature to a second portion of the at least two coils when the second relay is open state and connects a second node of the armature to the second portion of the at least two coils in when the second relay is closed such that the polarity of the armature is reversed with reference to the at least two coils. 2. The blender system of claim 1 , wherein the switching circuit delays closing the second relay after closing the first relay. 3. The blender system of claim 1 , wherein the second relay operatively couples the first portion of the at least two coils to the second node of the armature when the second relay is open. 4. The blender system of claim 3 , wherein the second relay operatively couples the first portion of the at least two coils to the first node of the armature when the second relay is closed. 5. The blender system of claim 1 , wherein the at least two coils drive the armature when power is supplied to the at least two coils and brakes the armature when power is removed from the at least two coils. 6. The blender system of claim 1 , wherein the at least two coils comprise a run coil and a stop coil. 7. The blender system of claim 6 , wherein the motor does not include any other coils for running or stopping the armature. 8. A blender system comprising: a housing operatively housing a motor, wherein the motor comprises: an armature coupled to a drive shaft; a coil that is selectively coupled to a power supply, wherein the coil generates a magnetic field having a first polarity that induces rotation of the armature when power is supplied to the coil, and generates a second field to decelerate the rotation of the armature when power is not supplied to the coil; a container operatively attachable to the housing, wherein the housing further comprises a first near-field communication component coupled to the motor, and the container comprises a second near-field communication component, wherein the first near-field communication component communicates with the second near-field communication component when the container is operatively attached to the housing. 9. The blender system of claim 8 , further comprising a switch that operatively allows for operation of the motor based at least in part on whether the container is interlocked with the housing. 10. The blender system of claim 8 , further comprising a lid operatively attached to the container. 11. A blender system comprising: a blender base comprising a motor and a housing that houses the motor, wherein the motor comprises: an armature; and at least two coils selectively coupled to a power supply, wherein the at least two coils generate a magnetic field having a first polarity when power is supplied to the at least two coils, and generate a second field having a second polarity when the power is disconnected from the at least two coils; a container operatively attachable to the housing, wherein the housing further comprises a first near-field communication component coupled to the motor, and the container comprises a second near-field communication component, wherein the first near-field communication component communicates with the second near-field communication component when the container is operatively attached to the housing; a switching circuit comprising: a first relay that operatively connects a power source to the at least two coils in an open state and, when in a closed state, disconnects the power source from and connects a braking resistor to the at least two coils when in the closed state; and a second relay that operatively couples a first node of the armature to a second portion of the at least two coils when the second relay is open state and connects a second node of the armature to the second portion of the at least two coils in when the second relay is closed such that the polarity of the armature is reversed with reference to the at least two coils. 12. The blender system of claim 11 further comprising an interface disposed on the housing and operatively controlling the motor. 13. The blender system of claim 12 , wherein the interface comprises at least one of a switch, knob, or touch sensitive input device. 14. The blender system of claim 12 , further comprising a braking resistor operatively coupled to the at least two coils when the interface removes power from the motor and decoupled when the interface allows power to be supplied to the at least two coils. 15. The blender system of claim 11 , wherein the motor does not include brake pads.
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