Dual Electric Motor Assembly Systems and Methods
US-2024336121-A1 · Oct 10, 2024 · US
US2026001588A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2026001588-A1 |
| Application number | US-202418756507-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 27, 2024 |
| Priority date | Jun 27, 2024 |
| Publication date | Jan 1, 2026 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A robotics corner module includes a steering drive unit, a traction drive unit, and an intermediate assembly. The steering drive unit includes an output shaft configured to be rotationally driven about an output shaft axis. The traction drive unit includes a wheel configured to be rotationally driven about a wheel hub axis. The intermediate assembly extends between the steering drive unit and the traction drive unit and includes a support structure and a cooling system. The support structure is operably coupled to the output shaft and the traction drive unit, such that rotation of the output shaft about the output shaft axis drives rotation of the intermediate assembly and the traction drive unit about the output shaft axis. The cooling system includes a radiator mounted to the support structure and a fan mounted to the support structure and configured to deliver air to the radiator.
Opening claim text (preview).
What is claimed is: 1 . A robotics corner module, comprising: a steering drive unit that includes an output shaft configured to be rotationally driven about an output shaft axis; a traction drive unit that includes a wheel configured to be rotationally driven about a wheel hub axis; and an intermediate assembly that extends between the steering drive unit and the traction drive unit, comprising: a support structure that is operably coupled to the output shaft and the traction drive unit, such that rotation of the output shaft about the output shaft axis drives rotation of the intermediate assembly and the traction drive unit about the output shaft axis; and a cooling system that includes a radiator mounted to the support structure and a fan mounted to the support structure and configured to deliver air to the radiator. 2 . The robotics corner module of claim 1 , wherein the traction drive unit includes an electric motor for driving rotation of the wheel about the wheel hub axis and a traction drive unit housing that includes a main body having an inner surface that defines a motor housing region that houses the electric motor and an outer surface opposite the inner surface. 3 . The robotics corner module of claim 2 , wherein the intermediate assembly includes a conduit that extends outward from the radiator and, with respect to the wheel hub axis, radially between the wheel and the outer surface of the main body along a portion of the outer surface of the main body that is axially aligned with the electric motor. 4 . The robotics corner module of claim 1 , wherein the support structure includes a duct having an inlet and an outlet within which a portion of the radiator is disposed, wherein the fan is configured to deliver air through the duct to the radiator. 5 . The robotics corner module of claim 4 , wherein the duct is a first duct, the fan is a first fan, the support structure includes a second duct that extends from an inlet of the second duct to the outlet of the first duct that serves as a shared outlet for the first and second ducts, and the cooling system includes a second fan that is configured to deliver air to the radiator through the second duct. 6 . The robotics corner module of claim 5 , wherein the support structure includes a manifold that includes the first duct and the second duct, and wherein a wiring passage through which wires extend from the traction drive unit to the steering drive unit is defined by the manifold between the first and second ducts. 7 . The robotics corner module of claim 6 , wherein the support structure comprises: a connecting shaft that is engaged with the output shaft of the steering drive unit; a support arm that is engaged with the connecting shaft and mounted to a traction drive unit housing of the traction drive unit; and a cooling system housing coupled to the support arm that includes a fan housing that houses the first and second fans of the cooling system, the manifold, and a radiator housing that cooperates with the manifold to support the radiator. 8 . The robotics corner module of claim 7 , wherein the fan housing, manifold, support arm, and connecting shaft cooperate to define the wiring passage. 9 . The robotics corner module of claim 8 , wherein the fan housing defines an opening that corresponds with an access opening defined by the traction drive unit housing, such that an electronics compartment defined by the traction drive unit housing is in fluid communication with the wiring passage via the opening of the fan housing and the corresponding access opening of the traction drive unit housing. 10 . The robotics corner module of claim 7 , wherein the fan housing is mounted to the support arm, the manifold is mounted to the support arm, and the radiator housing is mounted to the fan housing. 11 . A robotics corner module, comprising: a steering drive unit that includes an output shaft configured to be rotationally driven about an output shaft axis; a traction drive unit, comprising: a wheel; an electric motor operable to drive rotation of the wheel about a wheel hub axis; and a traction drive unit housing that includes a main body having an inner surface that defines a motor housing region that houses the electric motor and an outer surface opposite the inner surface; and an intermediate assembly that extends between the steering drive unit and the traction drive unit, comprising: a support structure that is operably coupled to the output shaft and the traction drive unit, such that rotation of the output shaft about the output shaft axis drives rotation of the support structure and the traction drive unit about the output shaft axis; and a cooling system that includes a radiator mounted to the support structure and a conduit that extends outward from the radiator and, with respect to the wheel hub axis, radially between the wheel and the outer surface of the main body along a portion of the outer surface of the main body that is axially aligned with the electric motor. 12 . The robotics corner module 11 , wherein the outer surface of the main body defines a groove that is recessed in the radially inboard direction, with respect to the wheel hub axis, and the conduit extends along the outer surface of the main body within the groove and terminates at a terminal end of the conduit within the groove. 13 . The robotics corner module of claim 11 , wherein the cooling system further comprises: a fan mounted to the support structure and configured to deliver air to the radiator. 14 . The robotics corner module of claim 13 , wherein the support structure includes a duct having an inlet and an outlet within which a portion of the radiator is disposed, wherein the fan is configured to deliver air through the duct to the radiator. 15 . The robotics corner module of claim 14 , wherein the duct is a first duct, the fan is a first fan, the support structure includes a second duct that extends from an inlet of the second duct to the outlet of the first duct that serves as a shared outlet for the first and second ducts, and the cooling system includes a second fan that is configured to deliver air to the radiator through the second duct. 16 . The robotics corner module of claim 15 , wherein the support structure includes a manifold that includes the first duct and the second duct, and wherein a wiring passage through which wires extend from the traction drive unit to the steering drive unit is defined by the manifold between the first and second ducts. 17 . The robotics corner module of claim 16 , wherein the support structure comprises: a connecting shaft that is engaged with the output shaft of the steering drive unit; a support arm that is engaged with the connecting shaft and mounted to the traction drive unit housing; and a cooling system housing coupled to the support arm that includes a fan housing that houses the first and second fans of the cooling system, the manifold, and a radiator housing that cooperates with the manifold to support the radiator. 18 . The robotics corner module of claim 17 , wherein the fan housing, manifold, support arm, and connecting shaft cooperate to define the wiring passage. 19 . The robotics corner module of claim 18 , wherein the fan housing defines an opening that corresponds with an access opening defined by the traction drive unit housing, such that an electronics compartment defined by the traction drive unit housing is in fluid communication with the wiring passage via the corresponding openings
with air cooling · CPC title
Arrangement or mounting of radiators, radiator shutters, or radiator blinds · CPC title
the motor being electric · CPC title
Electric motor acting on road wheel carriers · CPC title
Single wheels · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.