Charging coupler
11695233 ยท 2023-07-04
Assignee
Inventors
Cpc classification
H01R13/5205
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01R13/5202
ELECTRICITY
H01R43/005
ELECTRICITY
B60L53/16
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02T10/7072
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
H01R13/40
ELECTRICITY
B60L53/16
PERFORMING OPERATIONS; TRANSPORTING
H01R13/52
ELECTRICITY
Abstract
A charging coupler has a grip, an electrical connector and a cable holder. The grip has a front opening and a rear opening on two ends thereof The grip has a first half-tube and a second half-tube connected with each other along a longitudinal direction thereof. The first half-tube has a first latch portion and a groove extending along edges thereof to connect the second half-tube. The second half-tube has a second latch portion and a rib extending along edges thereof to connect the first half-tube. The rib is substantially matched with the groove, and a sealant is filled in a gap between the rib and the groove. The first latch portion is latched with the second latch portion to tighten connection of the first half-tube and the second half-tube. The electrical connector is arranged on the front opening, and the cable holder is arranged on the rear opening.
Claims
1. A charging coupler for charging electric vehicles, comprising: a grip in a tubular shape, the grip comprising: a front opening disposed on one end of the grip, a rear opening disposed on the other end of the grip, and a first half-tube and a second half-tube connected with each other along a longitudinal direction of the grip, an electrical connector, arranged on the front opening of the grip, and a cable holder, arranged on the rear opening of the grip, wherein a groove is disposed on the first half-tube, the groove is extended along an edge of the first half-tube and connected with the second half-tube, a first latch portion is arranged in the first half-tube, a rib is arranged in the second half-tube, the rib is extended along an edge of the second half-tube and connected with the first half-tube, a second latch portion is arranged in the second half-tube, the groove is filled with a sealant, the rib is inserted into the groove and substantially matched with the groove, the sealant is filled in a gap between the rib and the groove, and the first latch portion is latched with the second latch portion to tighten connection of the first half-tube and the second half-tube; wherein a positioning base is disposed on and protrudes from an inner surface of the second half-tube, and a controller electrically connected to the electrical connector is arranged on the positioning base; wherein a pressing block corresponding to the controller is disposed on and protrudes from an inner surface of the first half-tube, and the controller is pressed by the pressing block to be fixed on the positioning base.
2. The charging coupler according to claim 1, further comprising: a rubber block and a switch, the rubber block clamped between the first half-tube and the second half-tube, the switch embedded in the rubber block and penetrating the rubber block to be exposed partly inside the grip and further partly exposed outside the grip, and the switch is electrically connected with the controller.
3. The charging coupler according to claim 2, wherein a hook is arranged on the grip, and a middle segment of the hook is pivotally connected on an outer surface of the grip; a claw is disposed at one end of the hook and arranged on a side of the electrical connector, and the other end of the hook presses the switch when the hook is pivotally rotated to make the claw move away from the electrical connector.
4. The charging coupler according to claim 1, wherein a tapered ring and a flange are arranged on an outer surface of the electrical connector, and an inner tapered surface corresponding to the tapered ring is arranged on an inner surface of the grip; a rubber ring is disposed between the flange and an inner edge of the front opening, and the inner tapered surface is attached on and abuts against the tapered ring to push the flange toward the front opening.
5. The charging coupler according to claim 4, wherein a pin is disposed on and protrudes from the inner surface of the grip, the pin is inserted into the electrical connector along a lateral direction of the electrical connector, and a gap is disposed between the pin and the electrical connector in a longitudinal direction of the electrical connector.
6. The charging coupler according to claim 4, wherein one half of the inner tapered surface is located on an inner surface of the first half-tube, the other half of the inner tapered surface is located on an inner surface of the second half-tube.
7. The charging coupler according to claim 1, wherein the rib is in contact with an outer side of an inner surface of the groove.
8. The charging coupler according to claim 7, wherein the gap is disposed between the rib and an inner side of the inner surface of the groove.
9. The charging coupler according to claim 1, wherein an inner edge of the rear opening of the grip is engaged with an outer surface of the cable holder.
10. The charging coupler according to claim 9, further comprising: a cable electrically connected to the electrical connector and penetrating through the cable holder and extending from inside of the grip to outside of the grip.
11. The charging coupler according to claim 10, comprising a plurality of cables, wherein the electrical connector comprises a sleeve and a terminal holder inserted in the sleeve; a plurality of positioning notches corresponding to the cables are disposed on an outer surface of the terminal holder; a plurality of terminals are respectively disposed on the cables, and each of the terminals is arranged correspondingly in each of the positioning notches.
12. The charging coupler according to claim 11, wherein at least one arm latch is arranged on the terminal holder to latch the sleeve.
13. The charging coupler according to claim 11, wherein a pin is disposed on and protrudes from an inner surface of the grip, and the pin penetrates through the sleeve to be inserted to the terminal holder along a lateral direction of the electrical connector.
14. The charging coupler according to claim 1, wherein the first latch portion is disposed adjacent to the groove, and the second latch portion is disposed adjacent to the rib.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) This disclosure can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings.
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DETAILED DESCRIPTION
(9) With reference to
(10) According to this embodiment shown in
(11) The rib 121 is loosely and substantially matched with the groove 111. The sealant 130 is filled in a gap 103 (shown later in
(12) With reference to
(13) With reference to
(14) With reference to
(15) supplying power or interrupting power) of the electrical connector 200 may be controlled by the controller 400. A pressing block 113 corresponding to the controller 400 and protruding from an inner surface of the first half-tube 110 is provided. The controller 400 is pressed by the pressing block 113 to be fixed on the positioning base 123. The aforementioned structure may facilitate the process of pre-assembling the components into the second half-tube 120. Furthermore, the first half-tube 110 without pre-assembled components can also facilitate the automatic potting and assembling process.
(16) According to this embodiment shown in
(17) With reference to
(18) The claw 610 is disposed on a side of the electrical connector 200. The electrical connector 200 may be hooked and latched by the claw 610 when the electrical connector 200 is coupled to a charging receptacle on an electrical car (not shown in Figures). The hook 600 may be pivotally rotated to make the claw 610 move away from the electrical connector 200 and the other end of the hook 600 may press the switch 420. Therefore, the controller 400 may control the power supply behaviors (i.e., supplying power or interrupting power) of the electrical connector 200 by determining a connection status of the electrical connector 200 according to the status of the switch 420.
(19) With reference to
(20) With reference to
(21) With reference to
(22) According to this embodiment shown in
(23) Furthermore, multiple through holes 2131/2132 are disposed on a lateral surface of the sleeve 210 corresponding to the aforementioned respective pins 151/152. Multiple positioning holes 2321/2322 are disposed on a lateral surface of the terminal holder 230. Each through hole 2131/2132 is aligned to each corresponding positioning hole 2321/2322 respectively. One pin 151 passes through the corresponding through hole 2131 and is inserted into the corresponding positioning hole 2321. Another pin 152 passes through the corresponding through hole 2132 and is inserted into the corresponding positioning hole 2322 in a similar way.
(24) In conclusion, the grip 100 of the charging coupler according to this disclosure is assembled by buckling without screws, and therefore the cost of materials and assembling time comparing to the related rivet or screw assembling are decreased. The groove 111 of the grip 100 is filled with sealant 130, and the sealant 130 is squeezed by the rib 121 inserted into the groove 111 to seal the grip 100. Thus, the waterproof performance of the grip 100 is enhanced. A resultant force is generated toward the front opening 101 through the inner tapered surface 140 and the tapered ring 212 attaching to and abutting against each other during the assembling process. The rubber ring 220 can be pressed by the resultant force to seal the grip 100 for waterproof even only the lateral force can be applied to the electrical connector 200 in the assembling process. In addition, by the aforementioned structures, this disclosure is more suitable for an automatic assembling process and the cost of assembling is decreased.
(25) Although this disclosure has been described with reference to the foregoing embodiment, it will be understood that the disclosure is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of this disclosure. Thus, all such variations and equivalent modifications are also embraced within the scope of this disclosure as defined in the appended claims.