US20190072098A1 - Ceiling Fan - Google Patents

Ceiling Fan Download PDF

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Publication number
US20190072098A1
US20190072098A1 US16/101,618 US201816101618A US2019072098A1 US 20190072098 A1 US20190072098 A1 US 20190072098A1 US 201816101618 A US201816101618 A US 201816101618A US 2019072098 A1 US2019072098 A1 US 2019072098A1
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United States
Prior art keywords
transition member
intermediate transition
coupling portions
ceiling fan
motor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US16/101,618
Inventor
Alex Horng
Kun-Ta Yang
Bo-Wei CHIOU
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sunonwealth Electric Machine Industry Co Ltd
Original Assignee
Sunonwealth Electric Machine Industry Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sunonwealth Electric Machine Industry Co Ltd filed Critical Sunonwealth Electric Machine Industry Co Ltd
Assigned to SUNONWEALTH ELECTRIC MACHINE INDUSTRY CO., LTD. reassignment SUNONWEALTH ELECTRIC MACHINE INDUSTRY CO., LTD. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: CHIOU, BO-WEI, HORNG, ALEX, YANG, KUN-TA
Publication of US20190072098A1 publication Critical patent/US20190072098A1/en
Abandoned legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D25/00Pumping installations or systems
    • F04D25/02Units comprising pumps and their driving means
    • F04D25/08Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
    • F04D25/088Ceiling fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/04Shafts or bearings, or assemblies thereof
    • F04D29/043Shafts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/26Rotors specially for elastic fluids
    • F04D29/32Rotors specially for elastic fluids for axial flow pumps
    • F04D29/325Rotors specially for elastic fluids for axial flow pumps for axial flow fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/26Rotors specially for elastic fluids
    • F04D29/32Rotors specially for elastic fluids for axial flow pumps
    • F04D29/34Blade mountings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/58Cooling; Heating; Diminishing heat transfer
    • F04D29/5806Cooling the drive system

Definitions

  • the present invention generally relates to a ceiling fan and, more particularly, to a ceiling fan with an improved cooling efficiency and a reduced axial height.
  • FIG. 1 shows a conventional ceiling fan 9 including a stator 91 , a rotor 92 , an assembly member 93 and a plurality of blades 94 .
  • the assembly member 93 includes a pivotal member 931 fit around a shaft 911 of the stator 91 , as well as a positioning member 932 mounted on a hub 921 of the rotor 92 .
  • the positioning member 932 is provided with a plurality of blades 94 which is driven to rotate by the hub 921 rotating relatively to the shaft 911 , thereby causing the flow of air through the blades 94 .
  • the assembly of the ceiling fan 9 is time-consuming as it requires the positioning member 932 to be mounted on the hub 921 and then the blades 94 to be mounted to the positioning member 932 .
  • the assembly quality of the ceiling fan 9 is not stable.
  • each of the hub 921 , the positioning member 932 and the blade 94 has a certain thickness, the height of the ceiling fan 9 is increased. As a result, the user standing under the ceiling fan 9 would feel oppressed.
  • a ceiling fan including a motor, an intermediate transition member and a plurality of blades.
  • the motor includes a stator, a rotor, and a shaft coupled with the stator.
  • An outer face of the motor includes a plurality of heat dissipating holes.
  • the intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body.
  • the body includes a central hole at a center thereof
  • the shaft extends through the central hole.
  • the plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft.
  • An outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a top of the motor.
  • the body of the intermediate transition member is coupled with the top of the motor.
  • the plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • a ceiling fan including a motor, an intermediate transition member and a plurality of blades.
  • the motor includes a stator, a rotor, and a shaft coupled with the stator.
  • An outer face of the motor includes a plurality of heat dissipating holes.
  • the intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body.
  • the body includes a central hole at a center thereof
  • the shaft extends through the central hole.
  • the plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft.
  • An outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a bottom of the motor.
  • the body of the intermediate transition member is coupled with the bottom of the motor.
  • the plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • a ceiling fan including a motor, an intermediate transition member and a plurality of blades.
  • the motor includes a stator, a rotor, and a shaft coupled with the stator.
  • An outer face of the motor includes a plurality of heat dissipating holes.
  • a peripheral wall of the motor includes an annular protruding portion extending radially.
  • the intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body.
  • the body includes a central hole at a center thereof The plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft.
  • a diameter of the central hole of the intermediate transition member is slightly larger than or equal to an outer diameter of the peripheral wall of the motor.
  • the body of the intermediate transition member is coupled with the annular protruding portion of the motor.
  • the plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • the ceiling fan according to the invention includes an intermediate transition member having a body and a plurality of first coupling portions along with the arrangement of the plurality of heat dissipating holes, in which the plurality of first coupling portions is integrally formed with the body and extends away from the shaft while the second coupling portions of the plurality of blades respectively connect to the plurality of first coupling portions of the intermediate transition member.
  • the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • the connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the top of the motor.
  • the axial height of the ceiling fan can be reduced.
  • the plurality of first coupling portions of the intermediate transition member extends radially beyond the outer diameter of the top of the motor.
  • the axial height of the ceiling fan can be reduced.
  • the connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the bottom of the motor.
  • the axial height of the ceiling fan can be reduced.
  • the plurality of first coupling portions of the intermediate transition member extends radially beyond the outer diameter of the bottom of the motor.
  • the axial height of the ceiling fan can be reduced.
  • each of the plurality of heat dissipating holes is located circumferentially between two adjacent ones of the plurality of first coupling portions in a regular distance to an adjacent one of the plurality of heat dissipating holes.
  • the intermediate transition member further includes a plurality of first fasteners, the body of the intermediate transition member includes a plurality of first positioning holes, and the plurality of first fasteners respectively extends through the plurality of first positioning holes to fix the body of the intermediate transition member to the motor.
  • the intermediate transition member can be securely fixed to the motor.
  • each of the plurality of blades includes a second coupling portion coupled with a respective one of the plurality of first coupling portions of the intermediate transition member.
  • the intermediate transition member further includes a plurality of second fasteners, each of the plurality of first coupling portions includes a plurality of second positioning holes, and each of the plurality of second fasteners extends through a respective one of the plurality of second positioning holes to fix the second coupling portion of the each of the plurality of blades to a respective one of the plurality of first coupling portions of the intermediate transition member.
  • the blades can be securely fixed to the intermediate transition member.
  • each of the second coupling portions of the plurality of blades is in a form of a channel, and each of the plurality of first coupling portions of the intermediate transition member extends through a respective one of the channels of the plurality of blades.
  • each of the channels of the plurality of blades includes two ends intercommunicating with each other.
  • the cooling effect can be improved.
  • a quantity of the plurality of first coupling portions of the intermediate transition member corresponds to a quantity of the plurality of blades.
  • each of the first coupling portions can be coupled with a respective blade.
  • each of the plurality of first coupling portions extends outward of the body in a radial direction.
  • the intermediate transition member can be coupled with the second coupling portions of the blades.
  • each of the plurality of first coupling portions extends outward of the body in a tangential direction.
  • the intermediate transition member can be coupled with the second coupling portions of the blades.
  • FIG. 1 is a cross sectional view of a conventional ceiling fan.
  • FIG. 2 is an exploded, perspective view of a ceiling fan of a first embodiment according to the invention.
  • FIG. 3 is a top view of the ceiling fan of the first embodiment according to the invention.
  • FIG. 4 is a cross sectional view of the ceiling fan (including a plurality of blades) of the first embodiment according to the invention.
  • FIG. 5 is a cross sectional view of a ceiling fan (including a plurality of blades) of a second embodiment according to the invention.
  • FIG. 6 is an exploded, perspective view of a ceiling fan of a third embodiment according to the invention.
  • FIG. 7 is a top view of the ceiling fan of the third embodiment according to the invention.
  • FIG. 8 is a cross sectional view of the ceiling fan (including a plurality of blade and a safety element) of the third embodiment according to the invention.
  • FIG. 9 is another implementation of an intermediate transition member according to the invention.
  • FIGS. 2, 3 and 4 show a ceiling fan according to a first embodiment of the invention.
  • the ceiling fan includes a motor 1 , an intermediate transition member 2 coupled with the motor 1 , and a plurality of blades 3 coupled with the intermediate transition member 2 .
  • the motor 1 includes a stator 11 and a rotor 12 .
  • the stator 11 is coupled with a shaft 13 .
  • the shaft 13 is hollow.
  • the stator 11 is used to drive the rotor 12 to rotate.
  • the motor 1 includes an outer face (including a top 1 a , a bottom 1 d and a peripheral wall 1 b ).
  • the top 1 a , the bottom 1 d and the peripheral wall 1 b may include a plurality of heat dissipating holes 14 .
  • the heat dissipating holes 14 extend through the top 1 a , the bottom 1 d and the peripheral wall 1 b , permitting the heat in the motor 1 to be dissipated through the heat dissipating holes 14 .
  • the plurality of heat dissipating holes 14 is formed on the top 1 a of the motor 1 .
  • the intermediate transition member 2 is coupled with the top 1 a of the motor 1 .
  • the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22 .
  • An outer diameter D 2 of the body 22 is smaller than an outer diameter D 1 of the top 1 a , such that the plurality of heat dissipating holes 14 of the motor 1 is uncovered.
  • the body 22 includes a central hole 21 at a center thereof The shaft 13 extends through the central hole 21 .
  • the body 22 further includes a plurality of first positioning holes 221 .
  • the plurality of first coupling portions 23 extends radially away from the shaft 13 in a manner where each of the plurality of heat dissipating holes 14 is located circumferentially between two adjacent first coupling portions 23 in a regular distance to an adjacent heat dissipating hole 14 .
  • Each of the plurality of first coupling portions 23 includes a plurality of second positioning holes 231 .
  • Each of the plurality of first coupling portions 23 may extend outward of the body 22 in a radial direction, or may extend outward of the body 22 in a tangential direction inclined from the radial direction ( FIG. 9 ).
  • the intermediate transition member 2 further includes a plurality of first fasteners 24 and a plurality of second fasteners 25 .
  • the plurality of first fasteners 24 respectively extends through the plurality of first positioning holes 221 to fix the body 22 to the top 1 a of the motor 1 .
  • the plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D 1 of the top 1 a of the motor 1 to reduce the height of the ceiling fan.
  • each of the plurality of blades 3 includes a second coupling portion 31 coupled with a respective first coupling portion 23 of the intermediate transition member 2 .
  • the second coupling portion 31 is preferably in the form of a channel 31 a having two ends intercommunicating with each other to improve the cooling efficiency.
  • Each of the plurality of first coupling portions 23 extends into the channel 31 a.
  • each of the plurality of second fasteners 25 extends through a respective second positioning hole 231 , fixing the second coupling portions 31 of the plurality of blades 3 to the plurality of first coupling portions 23 of the intermediate transition member 2 .
  • the quantity of the plurality of first coupling portions 23 of the intermediate transition member 2 corresponds to the quantity of the plurality of blades 3 . Since the plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D 1 of the top 1 a of the motor 1 , the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D 1 of the top 1 a of the motor 1 , thus reducing the height of the ceiling fan.
  • the shaft 13 may be fixed to a predetermined location of the ceiling (not shown) while connecting the ceiling fan to a power.
  • the rotor 12 is driven to rotate.
  • the rotor 12 drives the plurality of blades 3 to rotate.
  • the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22 .
  • the outer diameter D 2 of the body 22 of the intermediate transition member 2 is smaller than the outer diameter D 1 of the top 1 a of the motor 1 , such that the heat inside the motor 1 can be discharged via the plurality of heat dissipating holes 14 .
  • the intermediate transition member 2 since the intermediate transition member 2 is integrally formed, the plurality of first coupling portions 23 of the intermediate transition member 2 extends away from the shaft 13 while the second coupling portions 31 of the plurality of blades 3 connect to the plurality of first coupling portions 23 of the intermediate transition member 2 .
  • the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • FIG. 5 shows a ceiling fan according to a second embodiment of the invention.
  • the second embodiment of the invention is substantially the same as the first embodiment except for that the plurality of heat dissipating holes 14 is arranged on the bottom 1 d of the motor 1 and that the intermediate transition member 2 is coupled with the bottom 1 d of the motor 1 .
  • the plurality of first fasteners 24 of the intermediate transition member 2 respectively extends through the plurality of first positioning holes 221 to fix the body 22 to the bottom 1 d of the motor 1 .
  • the second coupling portions 31 of the plurality of blades 3 couple with the first coupling portions 23 of the intermediate transition member 2 , respectively.
  • the outer diameter D 2 of the body 22 of the intermediate transition member 2 is smaller than an outer diameter D 1 ′ of the bottom 1 d of the motor 1 while the plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D 1 ′ of the bottom 1 d of the motor 1 .
  • the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D 1 ′ of the bottom 1 d of the motor 1 , thus reducing the height of the ceiling fan.
  • the intermediate transition member 2 is mounted to the bottom 1 d of the motor 1 . Furthermore, in addition to easy detachment, the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22 , and the outer diameter D 2 of the body 22 of the intermediate transition member 2 is smaller than the outer diameter D 1 ′ of the bottom 1 d of the motor 1 .
  • the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • FIGS. 6, 7 and 8 show a ceiling fan according to a third embodiment of the invention.
  • the third embodiment of the invention is substantially the same as the first embodiment except for that the peripheral wall 1 b of the motor 1 includes an annular protruding portion 1 c extending radially.
  • a diameter D 3 of the central hole 21 of the intermediate transition member 2 is slightly larger than or equal to an outer diameter D 4 of the peripheral wall 1 b of the motor 1 .
  • the plurality of first fasteners 24 of the intermediate transition member 2 respectively extends through the plurality of first positioning holes 221 , fixing the body 22 to the annular protruding portion 1 c of the motor 1 .
  • the second coupling portions 31 of the plurality of blades 3 are coupled with the plurality of first coupling portions 23 of the intermediate transition member 2 , respectively.
  • the intermediate transition member 2 since the intermediate transition member 2 is coupled with the annular protruding portion 1 c of the motor 1 , the plurality of first coupling portions 23 extends beyond the outer diameter D 4 of the peripheral wall 1 b of the motor 1 .
  • the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D 4 of the peripheral wall 1 b of the motor 1 .
  • the diameter D 3 of the central hole 21 of the intermediate transition member 2 is slightly larger than or equal to the outer diameter D 4 of the peripheral wall 1 b of the motor 1 . Moreover, since the intermediate transition member 2 is coupled with the annular protruding portion 1 c of the motor 1 , the heat inside the motor 1 can be discharged via the plurality of heat dissipating holes 14 .
  • the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22 , the plurality of first coupling portions 23 of the intermediate transition member 2 extends away from the shaft 13 while the second coupling portions 31 of the plurality of blades 3 respectively connect to the plurality of first coupling portions 23 of the intermediate transition member 2 .
  • the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • the ceiling fan according to the invention may further couple with a safety element 4 as shown in FIG. 8 .
  • the safety element 4 is in the form of a rope extending through the shaft 13 .
  • the safety element 4 includes an end fixed to the ceiling (not shown), as well as another end coupled with a connecting plate 15 under the stator 11 to prevent the ceiling fan from falling.
  • the ceiling fan according to the invention includes an intermediate transition member includes a body and a plurality of first coupling portions along with the arrangement of the plurality of heat dissipating holes, in which the plurality of first coupling portions is integrally formed with the body and extends away from the shaft while the second coupling portions of the plurality of blades respectively connect to the plurality of first coupling portions of the intermediate transition member.
  • the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

A ceiling fan including a motor, an intermediate transition member and a plurality of blades is disclosed. The motor includes a stator, a rotor, and a shaft coupled with the stator. An outer face of the motor includes a plurality of heat dissipating holes. The intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body. The body includes a central hole at a center thereof The shaft extends through the central hole. The plurality of first coupling portions extends radially away from the shaft. The plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.

Description

    CROSS REFERENCE TO RELATED APPLICATION
  • The application claims the benefit of Taiwan application serial No. 106130666, filed on Sep. 7, 2017, and the entire contents of which are incorporated herein by reference.
  • BACKGROUND OF THE INVENTION 1. Field of the Invention
  • The present invention generally relates to a ceiling fan and, more particularly, to a ceiling fan with an improved cooling efficiency and a reduced axial height.
  • 2. Description of the Related Art
  • A ceiling fan is fixed to the ceiling without occupation of the user's space while providing an excellent air-flowing effect, as is widely used by people. FIG. 1 shows a conventional ceiling fan 9 including a stator 91, a rotor 92, an assembly member 93 and a plurality of blades 94. The assembly member 93 includes a pivotal member 931 fit around a shaft 911 of the stator 91, as well as a positioning member 932 mounted on a hub 921 of the rotor 92. The positioning member 932 is provided with a plurality of blades 94 which is driven to rotate by the hub 921 rotating relatively to the shaft 911, thereby causing the flow of air through the blades 94.
  • However, the assembly of the ceiling fan 9 is time-consuming as it requires the positioning member 932 to be mounted on the hub 921 and then the blades 94 to be mounted to the positioning member 932. In addition, the assembly quality of the ceiling fan 9 is not stable. Furthermore, since each of the hub 921, the positioning member 932 and the blade 94 has a certain thickness, the height of the ceiling fan 9 is increased. As a result, the user standing under the ceiling fan 9 would feel oppressed.
  • In light of this problem, it is necessary to improve the conventional ceiling fan.
  • SUMMARY OF THE INVENTION
  • It is therefore the objective of this invention to provide a ceiling fan which can not only improve the cooling efficiency and reduce the height of the ceiling fan, but also can improve the convenience and efficiency in assembly, thus reducing the cost.
  • In an aspect, a ceiling fan including a motor, an intermediate transition member and a plurality of blades is disclosed. The motor includes a stator, a rotor, and a shaft coupled with the stator. An outer face of the motor includes a plurality of heat dissipating holes. The intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body. The body includes a central hole at a center thereof The shaft extends through the central hole. The plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft. An outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a top of the motor. The body of the intermediate transition member is coupled with the top of the motor. The plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • In another aspect, a ceiling fan including a motor, an intermediate transition member and a plurality of blades is disclosed. The motor includes a stator, a rotor, and a shaft coupled with the stator. An outer face of the motor includes a plurality of heat dissipating holes. The intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body. The body includes a central hole at a center thereof The shaft extends through the central hole. The plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft. An outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a bottom of the motor. The body of the intermediate transition member is coupled with the bottom of the motor. The plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • In a further aspect, a ceiling fan including a motor, an intermediate transition member and a plurality of blades is disclosed. The motor includes a stator, a rotor, and a shaft coupled with the stator. An outer face of the motor includes a plurality of heat dissipating holes. A peripheral wall of the motor includes an annular protruding portion extending radially. The intermediate transition member is coupled with the motor and includes a body and a plurality of first coupling portions integrally formed with the body. The body includes a central hole at a center thereof The plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft. A diameter of the central hole of the intermediate transition member is slightly larger than or equal to an outer diameter of the peripheral wall of the motor. The body of the intermediate transition member is coupled with the annular protruding portion of the motor. The plurality of blades is coupled with the plurality of first coupling portions of the intermediate transition member.
  • Based on this, the ceiling fan according to the invention includes an intermediate transition member having a body and a plurality of first coupling portions along with the arrangement of the plurality of heat dissipating holes, in which the plurality of first coupling portions is integrally formed with the body and extends away from the shaft while the second coupling portions of the plurality of blades respectively connect to the plurality of first coupling portions of the intermediate transition member. In this arrangement, the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • In an example, the connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the top of the motor. Thus, the axial height of the ceiling fan can be reduced.
  • In the example, the plurality of first coupling portions of the intermediate transition member extends radially beyond the outer diameter of the top of the motor. Thus, the axial height of the ceiling fan can be reduced.
  • In another example, the connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the bottom of the motor. Thus, the axial height of the ceiling fan can be reduced.
  • In the other example, the plurality of first coupling portions of the intermediate transition member extends radially beyond the outer diameter of the bottom of the motor. Thus, the axial height of the ceiling fan can be reduced.
  • In the example, each of the plurality of heat dissipating holes is located circumferentially between two adjacent ones of the plurality of first coupling portions in a regular distance to an adjacent one of the plurality of heat dissipating holes. Thus, uniform heat dissipation effect can be attained.
  • In the example, the intermediate transition member further includes a plurality of first fasteners, the body of the intermediate transition member includes a plurality of first positioning holes, and the plurality of first fasteners respectively extends through the plurality of first positioning holes to fix the body of the intermediate transition member to the motor. Thus, the intermediate transition member can be securely fixed to the motor.
  • In the example, each of the plurality of blades includes a second coupling portion coupled with a respective one of the plurality of first coupling portions of the intermediate transition member.
  • In the example, the intermediate transition member further includes a plurality of second fasteners, each of the plurality of first coupling portions includes a plurality of second positioning holes, and each of the plurality of second fasteners extends through a respective one of the plurality of second positioning holes to fix the second coupling portion of the each of the plurality of blades to a respective one of the plurality of first coupling portions of the intermediate transition member. Thus, the blades can be securely fixed to the intermediate transition member.
  • In the example, each of the second coupling portions of the plurality of blades is in a form of a channel, and each of the plurality of first coupling portions of the intermediate transition member extends through a respective one of the channels of the plurality of blades. Thus, convenient assembly can be provided.
  • In the example, each of the channels of the plurality of blades includes two ends intercommunicating with each other. Thus, the cooling effect can be improved.
  • In the example, a quantity of the plurality of first coupling portions of the intermediate transition member corresponds to a quantity of the plurality of blades. Thus, each of the first coupling portions can be coupled with a respective blade.
  • In the example, each of the plurality of first coupling portions extends outward of the body in a radial direction. Thus, the intermediate transition member can be coupled with the second coupling portions of the blades.
  • In the example, each of the plurality of first coupling portions extends outward of the body in a tangential direction. Thus, the intermediate transition member can be coupled with the second coupling portions of the blades.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • The present invention will become more fully understood from the detailed description given hereinafter and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
  • FIG. 1 is a cross sectional view of a conventional ceiling fan.
  • FIG. 2 is an exploded, perspective view of a ceiling fan of a first embodiment according to the invention.
  • FIG. 3 is a top view of the ceiling fan of the first embodiment according to the invention.
  • FIG. 4 is a cross sectional view of the ceiling fan (including a plurality of blades) of the first embodiment according to the invention.
  • FIG. 5 is a cross sectional view of a ceiling fan (including a plurality of blades) of a second embodiment according to the invention.
  • FIG. 6 is an exploded, perspective view of a ceiling fan of a third embodiment according to the invention.
  • FIG. 7 is a top view of the ceiling fan of the third embodiment according to the invention.
  • FIG. 8 is a cross sectional view of the ceiling fan (including a plurality of blade and a safety element) of the third embodiment according to the invention.
  • FIG. 9 is another implementation of an intermediate transition member according to the invention.
  • In the various figures of the drawings, the same numerals designate the same or similar parts. Furthermore, when the terms “first”, “second”, “inner”, “top”, “bottom”, “axial”, “radial”, “height” and similar terms are used hereinafter, it should be understood that these terms have reference only to the structure shown in the drawings as it would appear to a person viewing the drawings, and are utilized only to facilitate describing the invention.
  • DETAILED DESCRIPTION OF THE INVENTION
  • FIGS. 2, 3 and 4 show a ceiling fan according to a first embodiment of the invention. The ceiling fan includes a motor 1, an intermediate transition member 2 coupled with the motor 1, and a plurality of blades 3 coupled with the intermediate transition member 2.
  • Referring to FIGS. 3, 4 and 5, the motor 1 includes a stator 11 and a rotor 12. The stator 11 is coupled with a shaft 13. The shaft 13 is hollow. The stator 11 is used to drive the rotor 12 to rotate. The motor 1 includes an outer face (including a top 1 a, a bottom 1 d and a peripheral wall 1 b). The top 1 a, the bottom 1 d and the peripheral wall 1 b may include a plurality of heat dissipating holes 14. The heat dissipating holes 14 extend through the top 1 a, the bottom 1 d and the peripheral wall 1 b, permitting the heat in the motor 1 to be dissipated through the heat dissipating holes 14. In this embodiment, the plurality of heat dissipating holes 14 is formed on the top 1 a of the motor 1.
  • Referring to FIGS. 2 and 3, the intermediate transition member 2 is coupled with the top 1 a of the motor 1. The intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22. An outer diameter D2 of the body 22 is smaller than an outer diameter D1 of the top 1 a, such that the plurality of heat dissipating holes 14 of the motor 1 is uncovered. The body 22 includes a central hole 21 at a center thereof The shaft 13 extends through the central hole 21. The body 22 further includes a plurality of first positioning holes 221. The plurality of first coupling portions 23 extends radially away from the shaft 13 in a manner where each of the plurality of heat dissipating holes 14 is located circumferentially between two adjacent first coupling portions 23 in a regular distance to an adjacent heat dissipating hole 14. Each of the plurality of first coupling portions 23 includes a plurality of second positioning holes 231. Each of the plurality of first coupling portions 23 may extend outward of the body 22 in a radial direction, or may extend outward of the body 22 in a tangential direction inclined from the radial direction (FIG. 9).
  • Referring to FIGS. 3 and 4, the intermediate transition member 2 further includes a plurality of first fasteners 24 and a plurality of second fasteners 25. The plurality of first fasteners 24 respectively extends through the plurality of first positioning holes 221 to fix the body 22 to the top 1 a of the motor 1. The plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D1 of the top 1 a of the motor 1 to reduce the height of the ceiling fan.
  • Referring to FIGS. 3 and 4, each of the plurality of blades 3 includes a second coupling portion 31 coupled with a respective first coupling portion 23 of the intermediate transition member 2. The second coupling portion 31 is preferably in the form of a channel 31 a having two ends intercommunicating with each other to improve the cooling efficiency. Each of the plurality of first coupling portions 23 extends into the channel 31 a. Then, each of the plurality of second fasteners 25 extends through a respective second positioning hole 231, fixing the second coupling portions 31 of the plurality of blades 3 to the plurality of first coupling portions 23 of the intermediate transition member 2.
  • Referring to FIGS. 3 and 4, the quantity of the plurality of first coupling portions 23 of the intermediate transition member 2 corresponds to the quantity of the plurality of blades 3. Since the plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D1 of the top 1 a of the motor 1, the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D1 of the top 1 a of the motor 1, thus reducing the height of the ceiling fan.
  • Referring to FIGS. 3 and 4, based on the above structure, when the ceiling fan of the embodiment is in use, the shaft 13 may be fixed to a predetermined location of the ceiling (not shown) while connecting the ceiling fan to a power. After the stator 11 is electrified, the rotor 12 is driven to rotate. The rotor 12 drives the plurality of blades 3 to rotate. The intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22. The outer diameter D2 of the body 22 of the intermediate transition member 2 is smaller than the outer diameter D1 of the top 1 a of the motor 1, such that the heat inside the motor 1 can be discharged via the plurality of heat dissipating holes 14.
  • In addition, referring to FIGS. 3 and 4, since the intermediate transition member 2 is integrally formed, the plurality of first coupling portions 23 of the intermediate transition member 2 extends away from the shaft 13 while the second coupling portions 31 of the plurality of blades 3 connect to the plurality of first coupling portions 23 of the intermediate transition member 2. In this arrangement, the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • FIG. 5 shows a ceiling fan according to a second embodiment of the invention. The second embodiment of the invention is substantially the same as the first embodiment except for that the plurality of heat dissipating holes 14 is arranged on the bottom 1 d of the motor 1 and that the intermediate transition member 2 is coupled with the bottom 1 d of the motor 1. The plurality of first fasteners 24 of the intermediate transition member 2 respectively extends through the plurality of first positioning holes 221 to fix the body 22 to the bottom 1 d of the motor 1. Furthermore, the second coupling portions 31 of the plurality of blades 3 couple with the first coupling portions 23 of the intermediate transition member 2, respectively. The outer diameter D2 of the body 22 of the intermediate transition member 2 is smaller than an outer diameter D1′ of the bottom 1 d of the motor 1 while the plurality of first coupling portions 23 of the intermediate transition member 2 extends radially beyond the outer diameter D1′ of the bottom 1 d of the motor 1. Thus, the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D1′ of the bottom 1 d of the motor 1, thus reducing the height of the ceiling fan.
  • Referring to FIG. 5, based on the above structure, the intermediate transition member 2 is mounted to the bottom 1 d of the motor 1. Furthermore, in addition to easy detachment, the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22, and the outer diameter D2 of the body 22 of the intermediate transition member 2 is smaller than the outer diameter D1′ of the bottom 1 d of the motor 1. This permits the heat inside the motor 1 to be discharged via the plurality of heat dissipating holes 14. In this arrangement, the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • FIGS. 6, 7 and 8 show a ceiling fan according to a third embodiment of the invention. The third embodiment of the invention is substantially the same as the first embodiment except for that the peripheral wall 1 b of the motor 1 includes an annular protruding portion 1 c extending radially. A diameter D3 of the central hole 21 of the intermediate transition member 2 is slightly larger than or equal to an outer diameter D4 of the peripheral wall 1 b of the motor 1. The plurality of first fasteners 24 of the intermediate transition member 2 respectively extends through the plurality of first positioning holes 221, fixing the body 22 to the annular protruding portion 1 c of the motor 1. In addition, the second coupling portions 31 of the plurality of blades 3 are coupled with the plurality of first coupling portions 23 of the intermediate transition member 2, respectively.
  • Referring to FIGS. 6, 7 and 8, since the intermediate transition member 2 is coupled with the annular protruding portion 1 c of the motor 1, the plurality of first coupling portions 23 extends beyond the outer diameter D4 of the peripheral wall 1 b of the motor 1. Thus, the connecting portions between the plurality of blades 3 and the intermediate transition member 2 are located outside of the outer diameter D4 of the peripheral wall 1 b of the motor 1.
  • Referring to FIGS. 6, 7 and 8, based on the above structure, the diameter D3 of the central hole 21 of the intermediate transition member 2 is slightly larger than or equal to the outer diameter D4 of the peripheral wall 1 b of the motor 1. Moreover, since the intermediate transition member 2 is coupled with the annular protruding portion 1 c of the motor 1, the heat inside the motor 1 can be discharged via the plurality of heat dissipating holes 14. Furthermore, since the intermediate transition member 2 includes a body 22 and a plurality of first coupling portions 23 integrally formed with the body 22, the plurality of first coupling portions 23 of the intermediate transition member 2 extends away from the shaft 13 while the second coupling portions 31 of the plurality of blades 3 respectively connect to the plurality of first coupling portions 23 of the intermediate transition member 2. In this arrangement, the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • To ensure a safe use of the ceiling fan, the ceiling fan according to the invention may further couple with a safety element 4 as shown in FIG. 8. The safety element 4 is in the form of a rope extending through the shaft 13. The safety element 4 includes an end fixed to the ceiling (not shown), as well as another end coupled with a connecting plate 15 under the stator 11 to prevent the ceiling fan from falling.
  • In summary, the ceiling fan according to the invention includes an intermediate transition member includes a body and a plurality of first coupling portions along with the arrangement of the plurality of heat dissipating holes, in which the plurality of first coupling portions is integrally formed with the body and extends away from the shaft while the second coupling portions of the plurality of blades respectively connect to the plurality of first coupling portions of the intermediate transition member. In this arrangement, the coupling strength can be increased, the thickness of the ceiling fan can be reduced to lower the oppression of the user, and the convenience and efficiency in assembly of the ceiling fan can be improved. As a result, the cost is reduced and an excellent heat dissipation effect is attained.
  • Although the invention has been described in detail with reference to its presently preferable embodiments, it will be understood by one of ordinary skill in the art that various modifications can be made without departing from the spirit and the scope of the invention, as set forth in the appended claims

Claims (34)

What is claimed is:
1. A ceiling fan comprising:
a motor including a stator, a rotor, and a shaft coupled with the stator, wherein an outer face of the motor includes a plurality of heat dissipating holes;
an intermediate transition member coupled with the motor and including a body and a plurality of first coupling portions integrally formed with the body, wherein the body includes a central hole at a center thereof, wherein the shaft extends through the central hole, wherein the plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft, wherein an outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a top of the motor, and wherein the body of the intermediate transition member is coupled with the top of the motor; and
a plurality of blades coupled with the plurality of first coupling portions of the intermediate transition member.
2. The ceiling fan as claimed in claim 1, wherein connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the top of the motor.
3. The ceiling fan as claimed in claim 1, wherein the plurality of first coupling portions of the intermediate transition member extends beyond the outer diameter of the top of the motor in the radial plane perpendicular to the axis of the shaft.
4. The ceiling fan as claimed in claim 1, wherein each of the plurality of heat dissipating holes is located circumferentially between two adjacent ones of the plurality of first coupling portions in a regular distance to an adjacent one of the plurality of heat dissipating holes.
5. The ceiling fan as claimed in claim 1, wherein the intermediate transition member further includes a plurality of first fasteners, wherein the body of the intermediate transition member includes a plurality of first positioning holes, and wherein the plurality of first fasteners respectively extends through the plurality of first positioning holes to fix the body of the intermediate transition member to the motor.
6. The ceiling fan as claimed in claim 5, wherein each of the plurality of blades includes a second coupling portion coupled with a respective one of the plurality of first coupling portions of the intermediate transition member.
7. The ceiling fan as claimed in claim 6, wherein the intermediate transition member further includes a plurality of second fasteners, wherein each of the plurality of first coupling portions includes a plurality of second positioning holes, and wherein each of the plurality of second fasteners extends through a respective one of the plurality of second positioning holes to fix the second coupling portion of the each of the plurality of blades to a respective one of the plurality of first coupling portions of the intermediate transition member.
8. The ceiling fan as claimed in claim 7, wherein each of the second coupling portions of the plurality of blades is in a form of a channel, and wherein each of the plurality of first coupling portions of the intermediate transition member extends through a respective one of the channels of the plurality of blades.
9. The ceiling fan as claimed in claim 8, wherein each of the channels of the plurality of blades includes two ends intercommunicating with each other.
10. The ceiling fan as claimed in claim 1, wherein a quantity of the plurality of first coupling portions of the intermediate transition member corresponds to a quantity of the plurality of blades.
11. The ceiling fan as claimed in claim 1, wherein each of the plurality of first coupling portions extends outward of the body in a radial direction.
12. The ceiling fan as claimed in claim 1, wherein each of the plurality of first coupling portions extends outward of the body in a tangential direction.
13. A ceiling fan comprising:
a motor including a stator, a rotor, and a shaft coupled with the stator, wherein an outer face of the motor includes a plurality of heat dissipating holes;
an intermediate transition member coupled with the motor and including a body and a plurality of first coupling portions integrally formed with the body, wherein the body includes a central hole at a center thereof, wherein the shaft extends through the central hole, wherein the plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft, wherein an outer diameter of the body of the intermediate transition member is smaller than an outer diameter of a bottom of the motor, and wherein the body of the intermediate transition member is coupled with the bottom of the motor; and
a plurality of blades coupled with the plurality of first coupling portions of the intermediate transition member.
14. The ceiling fan as claimed in claim 13, wherein connecting portions between the plurality of blades and the intermediate transition member are located outside of the outer diameter of the bottom of the motor.
15. The ceiling fan as claimed in claim 13, wherein the plurality of first coupling portions of the intermediate transition member extends beyond the outer diameter of the bottom of the motor in the radial plane perpendicular to the axis of the shaft.
16. The ceiling fan as claimed in claim 13, wherein each of the plurality of heat dissipating holes is located circumferentially between two adjacent ones of the plurality of first coupling portions in a regular distance to an adjacent one of the plurality of heat dissipating holes.
17. The ceiling fan as claimed in claim 13, wherein the intermediate transition member further includes a plurality of first fasteners, wherein the body of the intermediate transition member includes a plurality of first positioning holes, and wherein the plurality of first fasteners respectively extends through the plurality of first positioning holes to fix the body of the intermediate transition member to the motor.
18. The ceiling fan as claimed in claim 17, wherein each of the plurality of blades includes a second coupling portion coupled with a respective one of the plurality of first coupling portions of the intermediate transition member.
19. The ceiling fan as claimed in claim 18, wherein the intermediate transition member further includes a plurality of second fasteners, wherein each of the plurality of first coupling portions includes a plurality of second positioning holes, and wherein each of the plurality of second fasteners extends through a respective one of the plurality of second positioning holes to fix the second coupling portion of the each of the plurality of blades to a respective one of the plurality of first coupling portions of the intermediate transition member.
20. The ceiling fan as claimed in claim 19, wherein each of the second coupling portions of the plurality of blades is in a form of a channel, and wherein each of the plurality of first coupling portions of the intermediate transition member extends through a respective one of the channels of the plurality of blades.
21. The ceiling fan as claimed in claim 20, wherein each of the channels of the plurality of blades includes two ends intercommunicating with each other.
22. The ceiling fan as claimed in claim 13, wherein a quantity of the plurality of first coupling portions of the intermediate transition member corresponds to a quantity of the plurality of blades.
23. The ceiling fan as claimed in claim 13, wherein each of the plurality of first coupling portions extends outward of the body in a radial direction.
24. The ceiling fan as claimed in claim 13, wherein each of the plurality of first coupling portions extends outward of the body in a tangential direction.
25. A ceiling fan comprising:
a motor including a stator, a rotor, and a shaft coupled with the stator, wherein an outer face of the motor includes a plurality of heat dissipating holes, and wherein a peripheral wall of the motor includes an annular protruding portion extending radially;
an intermediate transition member coupled with the motor and including a body and a plurality of first coupling portions integrally formed with the body, wherein the body includes a central hole at a center thereof, wherein the plurality of first coupling portions extends away from the shaft in a radial plane perpendicular to an axis of the shaft, wherein a diameter of the central hole of the intermediate transition member is slightly larger than or equal to an outer diameter of the peripheral wall of the motor, and wherein the body of the intermediate transition member is coupled with the annular protruding portion of the motor; and
a plurality of blades coupled with the plurality of first coupling portions of the intermediate transition member.
26. The ceiling fan as claimed in claim 25, wherein each of the plurality of heat dissipating holes is located circumferentially between two adjacent ones of the plurality of first coupling portions in a regular distance to an adjacent one of the plurality of heat dissipating holes.
27. The ceiling fan as claimed in claim 25, wherein the intermediate transition member further includes a plurality of first fasteners, wherein the body of the intermediate transition member includes a plurality of first positioning holes, and wherein the plurality of first fasteners respectively extends through the plurality of first positioning holes to fix the body of the intermediate transition member to the motor.
28. The ceiling fan as claimed in claim 27, wherein each of the plurality of blades includes a second coupling portion coupled with a respective one of the plurality of first coupling portions of the intermediate transition member.
29. The ceiling fan as claimed in claim 28, wherein the intermediate transition member further includes a plurality of second fasteners, wherein each of the plurality of first coupling portions includes a plurality of second positioning holes, and wherein each of the plurality of second fasteners extends through a respective one of the plurality of second positioning holes to fix the second coupling portion of the each of the plurality of blades to a respective one of the plurality of first coupling portions of the intermediate transition member.
30. The ceiling fan as claimed in claim 29, wherein each of the second coupling portions of the plurality of blades is in a form of a channel, and wherein each of the plurality of first coupling portions of the intermediate transition member extends through a respective one of the channels of the plurality of blades.
31. The ceiling fan as claimed in claim 30, wherein each of the channels of the plurality of blades includes two ends intercommunicating with each other.
32. The ceiling fan as claimed in claim 25, wherein a quantity of the plurality of first coupling portions of the intermediate transition member corresponds to a quantity of the plurality of blades.
33. The ceiling fan as claimed in claim 25, wherein each of the plurality of first coupling portions extends outward of the body in a radial direction.
34. The ceiling fan as claimed in claim 25, wherein each of the plurality of first coupling portions extends outward of the body in a tangential direction.
US16/101,618 2017-09-07 2018-08-13 Ceiling Fan Abandoned US20190072098A1 (en)

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TW106130666A TWI684709B (en) 2017-09-07 2017-09-07 ceiling fan
TW106130666 2017-09-07

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EP3453886B1 (en) 2021-06-16
EP3453886A8 (en) 2019-05-08
EP3453886A1 (en) 2019-03-13
TWI684709B (en) 2020-02-11
TW201912945A (en) 2019-04-01

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