This application claims the benefit of People's Republic of China application Serial No. 201811033138.6, filed Sep. 5, 2018, the subject matter of which is incorporated herein by reference.
The invention relates in general to an insulation bobbin, and a stator unit structure and a server motor structure using the same, and more particularly to an insulation bobbin with universal notches, and a stator unit structure and a server motor structure using the same.
The motor, capable of converting electric energy into mechanic energy, has been widely used in various products, such as lathes, transmission devices, and robots. Normally, the motor includes a stator structure and a rotor structure. The stator structure is winded with a coil. When an electric current passes through a coil, a magnetic field will be generated around the rotor structure. Then, the magnetic field drives the rotor structure to rotate and convert electric energy into mechanic energy. To be adapted to the application in various products, the structure of the motor can be adjusted. However, if the structure of the motor needs to be customized and a universal structure cannot be used, the manufacturing process will become more complicated and the manufacturing cost will increase.
According to the embodiments of the present invention, the insulation bobbin for the motor are adjustable, and a universal notch structure compactible with different types of pins is provided.
According to one embodiment of the present invention, an insulation bobbin is provided. The insulation bobbin includes a winding portion, an outer stopper, and an inner stopper. The winding portion has an outer side and an inner side. The outer stopper is connected with the outer side of the winding portion. The outer stopper has a top surface. The outer stopper includes two notches extended downward from the top surface. Each notch has a cross-section substantially being a combination of a circle and a rectangle. The inner stopper is connected with the inner side of the winding portion.
According to another embodiment of the present invention, a stator unit structure is provided. The stator unit structure includes a metal core and two insulation bobbins. The two insulation bobbins are respectively disposed at the two ends of the metal core. Each insulation bobbin includes a winding portion, an outer stopper, and an inner stopper. The winding portion has an outer side and an inner side. The outer stopper is connected with the outer side of the winding portion. The outer stopper has a top surface. The outer stopper includes two notches extended downward from the top surface. Each notch has a cross-section substantially being a combination of a circle and a rectangle. The inner stopper is connected with the inner side of the winding portion.
According to an alternate embodiment of the present invention, a server motor structure is provided. The server motor structure includes the stator unit structure disclosed in any embodiment.
The insulation bobbin of the present invention provides a universal notch structure compactible with different types of pins. Even when the universal notch structure is used in cooperation with different types of cylindrical pins or rectangular pins, there is no need to change the whole design of the insulation bobbin. Therefore, the insulation bobbin compactible with different types of pins can be manufactured using single type of mold. For the stator unit structure and the server motor structure using the same, the manufacturing process also can be simplified and the manufacturing cost can be reduced.
The above and other aspects of the invention will become better understood with regard to the following detailed description of the preferred but non-limiting embodiment(s). The following description is made with reference to the accompanying drawings.
The present invention is disclosed below with reference to accompanying drawings. It should be understood that the accompanying drawings and related descriptions are for exemplary and explanatory purposes only, not for limiting the scope of protection of the present invention. For example, the elements illustrated in the accompanying drawings may not be based on actual proportion of the product. Moreover, as it can be expected that the elements, conditions and features disclosed in an embodiment can also be advantageously adapted in another embodiment, but no further exemplification is disclosed.
Referring to
The insulation bobbin 10 includes a winding portion 12, an outer stopper 14, and an inner stopper 16. The winding portion 12 has an outer side 18 and an inner side 20. The outer stopper 14 is connected with the outer side 18 of the winding portion 12. The outer stopper 14 has a top surface 22. Two notches 24 of the outer stopper 14 are extended downward from the top surface 22, and respectively have a cross-section A substantially being a combination of a circle and a rectangle. Here, the expression “substantially” means that despite the notches 24 may include other parts, such as the chamfer 26 or the lead receiving slot 28, the user still can easily identify the notches 24 and exclude these other parts. Each notch 24 has a cross-section
A substantially being a combination of a circle and a rectangle. The inner stopper 16 is connected with the inner side 20 of the winding portion 12.
In some embodiments, as indicated in
In some embodiments, to facilitate the insertion of pins, the junction between each notch 24 and the top surface 22 can have a chamfer 26 formed along the cross-section A. The pattern of the chamfer 26 is not subjected to specific restrictions. For example, the chamfer 26 can correspond to only a part of the cross-section A, such as the rectangle 30 of the cross-section A, or can correspond to the entire cross-section A, including the rectangle 30 and the circle 31.
In some embodiments, to facilitate the connection of coil, each notch 24 can further include a lead receiving slot 28 extended downward from the top surface 22 and interconnected with the part of the notch 24 corresponding to the circle 31 of the cross-section A. The lead receiving slot 28 of each notch 24 has a depth t3. To provide a better guiding effect at the terminal end of the coil, the depth t3 can be greater than the depth t1 of the rectangle 30 or the depth t2 of the circle 31 of the cross-section A of each notch 24. To provide a better guiding effect at the terminal end of the coil, each slot 28 can have a bevel 29 extended towards the outer bottom of the lead receiving slot 28, that is, towards the winding portion 12.
In some embodiments, the winding portion 12 includes a winding platform 32, a first extension portion 34, and a second extension portion 36. As indicated in
In some embodiments, as indicated in
The insulation bobbin 10 can be formed of plastics, particularly voltage withstanding and insulating plastics. In some embodiments, the said plastics complies with the requirements listed in Table 1, and can be realized by such as DR 48 (PBT) plastics. Given that the insulation bobbin 10 is formed of plastics, the aperture size of each notch 24 can be less than that of a corresponding pin. The flexibility of plastics allows slight deformation, and is able to receive and tightly fix the pin. Specifically, the circle 31 of the cross-section A of each notch 24 has a diameter d. Before the pins are inserted into the two notches 24, the diameter d is less than a diameter of the cylindrical pins to be inserted to the two notches 24. Alternately or additionally, the rectangle 30 of the cross-section A of each notch 24 has a length I and a width w. Before the pins are inserted to the two notches 24, the length I and the width w are respectively less than a length and a width of the rectangular pins to be inserted to the two notches 24. In some embodiments, the insulation bobbin 10 can be integrally formed in one piece.
Referring to
In some embodiments, the stator unit structure 50 may further include two pins 62, a coil 64, and two flexible insulation films 66. The two pins 62 are respectively inserted into the two notches 24 of one of the two insulation bobbins 10. For example, the two pins 62 are inserted into the two notches 24 of the insulation bobbin 10 disposed at the first end 54 of the metal core 52. Each of the two pins 62 used in the stator unit structure 50 has a circular cross-section. Here, the pin 62 having a circular cross-section is referred as a cylindrical pin, and is normally used for coupling the circuit board.
Such arrangement can be used in a 1 kW server motor but is not limited thereto. The coil 64 is winded on the two insulation bobbins 10 along the first extension portion 34, the winding platform 32 and the second extension portion 36. The coil 64 is electrically connected with two pins 62. The two flexible insulation films 66 respectively cover the first indented portion 58 and the second indented portion 60 for separating the coil 64 from the metal core 52. Besides, through the first indented portion 58 and the second indented portion 60, which cover the metal core 52, the flexible insulation films 66 can further electrically isolate the coil 64 of two adjacent stator unit structures 50.
Referring to
It can be understood that the insulation bobbin 10 of the above embodiments provides a universal notch 24 compactible with different types of pins. As indicated in
Referring to
While the invention has been described by way of example and in terms of the preferred embodiment(s), it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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201811033138.6 | Sep 2018 | CN | national |