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43results about How to "Increase the number of coils" patented technology

Air processor and alternating current plastic-sealed motor and stator thereof

The invention discloses a stator of a motor, which comprises a winding and a stator iron core with a groove, wherein the winding comprises a plurality of sub-windings distributed along the periphery of the stator; the sub-windings comprise a first phase windings and a second phase windings; the first phase windings comprise even numbers of windings; each of the windings is wound in a groove of a yoke portion of the stator iron core; the second phase windings comprise at least a groove-crossing coil; and the groove-crossing coil is wound inside the groove of the stator iron core by crossing the groove. The stator of the invention comprises the first phase windings wound on the yoke portion of the stator iron core and the second phase windings located inside the groove of the stator iron core by crossing the groove; the first phase windings are distributed on the outer circumference of the stator iron core; the outer circumference space that can be occupied is wound with large amount of vanished wires and the groove on which the second phase windings are located won't be blocked; the number of coils of the groove-crossing coil inside the groove to which the second phase windings are located are added; and the two phase windings are not interfered with each other, thus the rate of filling the groove with windings is improved and further the efficiency of the motor is improved. The invention also comprises an alternating current plastic-sealed motor and an air processor that are provided with the stator.
Owner:ZHUHAI KAIBANG MOTOR MFR +4

Drive mechanism for rotatably coupling a system part or a machine part

The invention relates to a drive mechanism (1) for rotatably coupling a first system part or machine part, preferably an assembly (A), to a base, pedestal or frame or to another system part or machine part, for example for rotary positioning during the processing of large workpieces or during the moving of loads, which drive mechanism comprises two ring-shaped connecting elements (3, 4) each having at least one planar connecting surface (5, 6) and fastening means (7, 8) that are arranged distributed in a crown shape therein and effect connection to different system parts or machine parts or the like, said two connecting elements (3, 4) being arranged concentrically with each other and radially one inside the other with a gap-shaped interspace (9) in which are disposed one or more rows of rolling elements (14, 15, 16), each row whereof rolls between two respective raceways (17, 18) on the two connecting elements (3, 4), thus enabling same to rotate relative to each other, at least one connecting surface (5, 6) and at least one raceway (17, 18) being formed by machining or shaping a common base body. The invention is characterized in that at least one fully circumferentially extending row of magnets (40) is arranged inside the gap (9) on one connecting element (3, 4) and at least one fully circumferentially extending row of coils (38) is arranged directly opposite said magnets on the other connecting element (4, 3). According to the invention, at least one fully circumferentially extending row of magnets is arranged inside the gap on one connecting element and at least one fully circumferentially extending row of coils is arranged directly opposite said magnets on the other connecting element.
Owner:IMO HOLDING GMBH

Winding device

A winding arrangement (8) comprising a plurality of winding segments (3a, 3b, 3c...3n) arranged axially spaced apart from each other and electrically connected in series with each other, the winding segments each having conductors (2) , the conductors are wound from the inner ends (5a, 5b, 5c, 5n) of the respective winding segments (3a, 3b, 3c, . ends (6a, 6b, 6c...6n), and here the winding segments (3a, 3b, 3c...3n) are radially enlarged, wherein at least one winding segment (3a, 3b, 3c...3n) ) on its outer ends (6a, 6b, 6c...6n) electrically with the inner ends (5a, 5b, 5c...5n) of the axially subsequent winding segments (3a, 3b, 3c...3n) connect. In order to be able to manufacture such a winding arrangement inexpensively and to arrange the winding segments of the winding arrangement at a relatively small distance from one another, it is proposed here to design at least one axially subsequent winding segment ( 3a , 3b , 3c . . . 3n ) There are stepped regions (10a, 10b, 10c...10n) in which the inner ends (5a, 5b, 5c...5n) of the subsequent winding segments are arranged radially on the at least one winding At the height of the outer ends (6a, 6b, 6c...6n) of the segments (3a, 3b, 3c...3n), the at least one winding segment is electrically connected to the subsequent winding segment.
Owner:SIEMENS AG
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