Intravascular blood pump having multilayer coreless coils
US-2024399136-A1 · Dec 5, 2024 · US
US9853512B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9853512-B2 |
| Application number | US-201414332879-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 16, 2014 |
| Priority date | Jul 31, 2013 |
| Publication date | Dec 26, 2017 |
| Grant date | Dec 26, 2017 |
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Described is an electrical machine, including: a rotor having a magnetic flux source mounted thereto; a stator winding arrangement having a first set of electrical connections to provide a first output channel, and a second set of electrical connections to provide a second output channel, the first and second channels being electrically out of phase, wherein the stator winding arrangement is constructed from a plurality of winding portions which are connected in electrical series.
Opening claim text (preview).
The invention claimed is: 1. An electrical system comprising: an electrical machine, having: a rotor having a magnetic flux source mounted thereto; and a stator winding arrangement having a first set of electrical connections to provide a first output channel, and a second set of electrical connections to provide a second output channel, the first and second channels being electrically out of phase, wherein the stator winding arrangement is constructed from a plurality of winding portions comprising a plurality of alternately connected long and short windings connected in electrical series, wherein adjacent long and short windings have different phases, each output channel is connected to a load or network, the output channels being polyphase and the short windings providing the phase difference between the two output channels in that each phase of the first channel is taken from one end of a short winding, and each phase of the second channel is taken from the respective other end of the short winding, and the stator includes slots, and turns of each long winding of a phase are located in the same slot as turns of the one short winding of the same phase. 2. An electrical system as claimed in claim 1 wherein the first and second output channels are approximately 30 degrees out of phase. 3. An electrical system as claimed in claim 1 , further comprising a third channel which is taken from the midpoint of the short winding for each phase. 4. An electrical system as claimed in claim 1 , wherein the long and short windings are arranged around the stator such that the mid-point of the windings are located at the mid-point of a stator pole. 5. An electrical system as claimed in claim 1 , wherein all of the stator slots of a stator pole include turns of both the long and short windings. 6. An electrical system as claimed in claim 1 wherein the magnetic flux source is a permanent magnet. 7. An electrical system as claimed in claim 1 wherein the stator winding arrangement is three phase. 8. An electrical system as claimed in claim 1 having three or more output channels. 9. An electrical system as claimed in claim 1 , wherein each channel is connected to the load or network via a DC converter. 10. An aircraft, marine vessel or wind turbine having the electrical system of claim 1 . 11. An electrical system comprising: an electrical machine, having: a rotor having a magnetic flux source mounted thereto; a stator winding arrangement having a first set of electrical connections to provide a first output channel, and a second set of electrical connections to provide a second output channel, the first and second channels being electrically out of phase; and a third channel, wherein the stator winding arrangement is constructed from a plurality of winding portions comprising a plurality of alternately connected long and short windings connected in electrical series, each output channel is connected to a load or network, the output channels being polyphase and the short windings providing the phase difference between the two output channels in that each phase of the first channel is taken from one end of a short winding, and each phase of the second channel is taken from the respective other end of the short winding, the stator includes slots, and turns of each long winding of a phase are located in the same slot as turns of the one short winding of the same phase, and the third channel is taken from the midpoint of the short winding for each phase.
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