EP1516418A1

Brushless direct-current motor of radial core type having a structure of double rotors

Abstract

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Term

Term ended

Projected expiry passed 25 June 2023, 3.2 years ago.

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23 claims: 8 independent, 15 dependent

  1. 1
    Claims of equivalent WO 2004004098 A1 What is claimed is:1. A brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor comprising: a rotational shaft which is rotatably mounted in a housing of an apparatus;double rotors including an inner rotor and an outer rotor in which a central portion of the inner rotor and the outer rotor is combined with the rotational shaft via a bushing and is rotatably supported, a plurality of N-pole and S-pole magnets are disposed alternately in annular form on different concentric circumferences in each rotor, and opposing magnets with a predetermined distance between the inner and outer rotors are disposed to have opposite polarities;and an integrated stator fixed to the housing of the motor, in which a plurality of stator core assemblies are temporarily assembled to an annular core support plate enabling automatic positioning and then are integrally formed into a single body in annular form via an insert molding using thermosetting resin, and a mutually same air gap is formed between the inner and outer rotors, each of said stator core assemblies being wound by coil around a bobbin which includes a plurality of division type stator cores, wherein a magnetic circuit is formed via the magnets disposed in opposite polarities in the inner and outer rotors and the division type stator cores positioned between the inner rotor and the outer rotor.
  2. 12
    A brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor comprising :a rotational shaft which is rotatably mounted in a housing of an apparatus;double rotors including an inner rotor and an outer rotor in which a central portion of a yoke frame is combined with the rotational shaft via a bushing and is rotatably supported, a plurality of N-pole and S-pole magnets are disposed alternately in annular form on different concentric circumferences in each rotor, and opposing magnets with a predetermined distance between the inner and outer rotors are disposed to have opposite polarities;and an annular stator which is installed with an air gap between the inner and outer rotors.
  3. 16
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:molding a number of T-shaped division type stator core by using a magnetic material;winding coils around an insulation bobbin which can cover the outer circumference of the core;preparing a number of stator core assemblies where coils are wound by inserting a pair of T-shaped cores into the coils-wound bobbin in both directions of the bobbin and bonding the pair of cores by caulking;preparing an integrated stator by aligning and fixing the number of the coils-wound stator core assemblies on a printed circuit board (PCB) , wiring coils, and molding the stator core assemblies in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the double rotors in which the inner rotor and outer rotor are aligned in a radial type.
  4. 17
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:molding a number of T-shaped division type stator core by using a magnetic material;winding coils around a number of insulation bobbins which can cover the outer circumference of the core;preparing a number of stator core assemblies where coils are wound by inserting a T-shaped core into each of the coils-wound bobbins;preparing an integrated stator by aligning and fixing the number of the coils-wound stator core assemblies on a an annular core support plate, wiring coils, and molding the stator core assemblies in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the double rotors in which the inner rotor and outer rotor are aligned in a radial type.
  5. 18
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:molding a number of I-shaped division type stator core by using a magnetic material;molding upper and lower insulation bobbins which are divided up and down so as to cover the outer circumference of the core;preparing a number of division type stator core assemblies where coils are wound by wiring coils around the assembled bobbins at the state of assembling the upper and lower bobbins into the upper and lower portions of the I-shaped core;preparing an integrated stator by molding the coils-wound stator core assemblies in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the radial type double rotors.
  6. 19
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:integrally molding an insulation bobbin having first and second flanges at both sides thereof and surrounding a middle portion an I-shaped stator core around which coils are wound by an insert molding method using thermosetting resin;preparing a number of stator core assemblies by winding coils between the first and second flanges of the bobbin;wiring both ends of the coils taken out to the lower surface of a core support plate at the state of temporarily assembling the number of the stator core assemblies on a core support plate having a number of automatic positioning coupling protrusions formed on the inner and outer ends thereof;preparing an integrated stator by molding the coils-wound stator core assemblies other than the inner and outer sides of the division type stator core in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the double rotors in which an inner rotor and an outer rotor are aligned in radial type.
  7. 20
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:integrally molding a bobbin on the outer circumference of a stator core by an insert molding method using thermosetting resin, in such a manner that the stator core is inserted into a hollow portion of a vessel portion of a bobbin, and at least one connection pin is inserted into the corners of first and second flanges opposing to each other in the bobbin;preparing a number of stator core assemblies by winding coils between the first and second flanges of the bobbin;mutually wiring coils by phase by connecting one end of the coils to one end of the connection pin and connecting the other end of the connection pin taken out to the lower surface of the core support plate to a conductive line printed on the lower surface of the core support plate, at the state of temporarily assembling the number of the stator core assemblies on a core support plate having a number of automatic positioning coupling protrusions formed on the inner and outer ends thereof;preparing an integrated stator by molding the stator core assemblies other than the inner and outer sides of the division type stator core in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the double rotors in which an inner rotor and an outer rotor are aligned in radial type.
  8. 22
    A method of manufacturing a brushless direct-current (BLDC) motor having a radial core type double rotor structure, the BLDC motor manufacturing method comprising the steps of:integrally molding an insulation bobbin having first and second flanges at both sides thereof in which first and second coupling protrusions are provided on the lower end of the first and second flanges, and surrounding a middle portion an I-shaped stator core around which coils are wound by an insert molding method using thermosetting resin;preparing a number of stator core assemblies by winding coils between the first and second flanges of the bobbin;wiring both ends of each coil at the state of inserting and temporarily assembling the first and second coupling protrusions of the number of the stator core assemblies into a number of mutually opposing automatic positioning coupling holes formed concentrically on the inner and outer ends of an annular core support plate;preparing an integrated stator by molding the coils-wound stator core assemblies other than the inner and outer sides of the division type stator core in an annular form by an insert molding method using thermosetting resin;and assembling the integrated stator so as to be positioned between the double rotors in which an inner rotor and an outer rotor are aligned in radial type.