Stator winding method and stator core winding
US-2020212747-A1 · Jul 2, 2020 · US
US11967873B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11967873-B2 |
| Application number | US-202318312885-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 5, 2023 |
| Priority date | Sep 23, 2019 |
| Publication date | Apr 23, 2024 |
| Grant date | Apr 23, 2024 |
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A fractional slot electric motor includes a stator core having a first side, a second side, and stator slots extending between the first and second sides. The fractional slot electric motor also includes a coil having a plurality of coil elements, where each coil element extends through at least one of the stator slots. Each coil element is coupled to at least one other coil element along the first side of the stator core. A first subset of the coil elements includes coil elements coupled to each other along the second side of the stator core. A second subset of the coil elements includes loop coil elements, where each loop coil element extends from one of the stator slots to another of the stator slots along the second side of the stator core without being connected to other coil elements along the second side of the stator core.
Opening claim text (preview).
What is claimed is: 1. A fractional slot electric motor comprising: a stator core comprising a first side, a second side, and stator slots extending between the first and second sides; and a coil comprising a plurality of coil elements, each coil element extending through at least one of the stator slots; wherein: each coil element is connected to at least one other coil element along the first side of the stator core; a first subset of the coil elements includes coil elements connected to each other along the second side of the stator core without being connected to a lead assembly along the second side of the stator core; and a second subset of the coil elements includes loop coil elements, each loop coil element extending from one of the stator slots to another of the stator slots along the second side of the stator core without being connected to other coil elements along the second side of the stator core. 2. The fractional slot electric motor of claim 1 , wherein a third subset of the coil elements includes coil elements connected to the lead assembly along the second side of the stator core. 3. The fractional slot electric motor of claim 1 , wherein each loop coil element comprises a pair of loop extensions and an end loop interconnecting the loop extensions. 4. The fractional slot electric motor of claim 3 , wherein the loop extensions of each loop coil element are connected to two others of the coil elements along the first side of the stator core. 5. The fractional slot electric motor of claim 3 , wherein each stator slot is configured to receive multiple coil elements having different radial offsets. 6. The fractional slot electric motor of claim 5 , wherein at least one of the end loops of at least one of the loop coil elements has ends with a common radial offset. 7. The fractional slot electric motor of claim 5 , wherein at least one of the end loops of at least one of the loop coil elements has ends that are radially offset with respect to one another. 8. The fractional slot electric motor of claim 3 , wherein an end of each coil element in the second subset of coil elements is positioned above the end loop of one of the loop coil elements. 9. The fractional slot electric motor of claim 1 , further comprising: the lead assembly, the lead assembly comprising three-phase busbars and positioned along the second side of the stator core. 10. The fractional slot electric motor of claim 1 , wherein each coil element has a rectangular cross-section. 11. A vehicle comprising: a power supply; and a fractional slot electric motor configured to operate using electrical power from the power supply, the fractional slot electric motor comprising: a stator core comprising a first side, a second side, and stator slots extending between the first and second sides; and a coil comprising a plurality of coil elements, each coil element extending through at least one of the stator slots; wherein: each coil element is connected to at least one other coil element along the first side of the stator core; a first subset of the coil elements includes coil elements connected to each other along the second side of the stator core without being connected to a lead assembly along the second side of the stator core; and a second subset of the coil elements includes loop coil elements, each loop coil element extending from one of the stator slots to another of the stator slots along the second side of the stator core without being connected to other coil elements along the second side of the stator core. 12. The vehicle of claim 11 , wherein a third subset of the coil elements includes coil elements connected to the lead assembly along the second side of the stator core. 13. The vehicle of claim 11 , wherein each loop coil element comprises a pair of loop extensions and an end loop interconnecting the loop extensions. 14. The vehicle of claim 13 , wherein the loop extensions of each loop coil element are connected to two others of the coil elements along the first side of the stator core. 15. The vehicle of claim 13 , wherein each stator slot is configured to receive multiple coil elements having different radial offsets. 16. The vehicle of claim 15 , wherein at least one of the end loops of at least one of the loop coil elements has ends with a common radial offset. 17. The vehicle of claim 15 , wherein at least one of the end loops of at least one of the loop coil elements has ends that are radially offset with respect to one another. 18. The vehicle of claim 13 , wherein an end of each coil element in the second subset of coil elements is positioned above the end loop of one of the loop coil elements. 19. The vehicle of claim 11 , wherein the fractional slot electric motor further comprises the lead assembly, the lead assembly comprising three-phase busbars and positioned along the second side of the stator core. 20. A method comprising: obtaining a stator core comprising a first side, a second side, and stator slots extending between the first and second sides; and forming a coil comprising a plurality of coil elements, each coil element extending through at least one of the stator slots; wherein forming the coil comprises: connecting each coil element to at least one other coil element along the first side of the stator core; and connecting a first subset of the coil elements to each other along the second side of the stator core without connecting the first subset of the coil elements to a lead assembly along the second side of the stator core; and wherein a second subset of the coil elements includes loop coil elements, each loop coil element extending from one of the stator slots to another of the stator slots along the second side of the stator core without being connected to other coil elements along the second side of the stator core.
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