POWER CONNECTOR WITH TERMINAL
20190229461 ยท 2019-07-25
Assignee
Inventors
Cpc classification
H01R13/53
ELECTRICITY
H01R13/114
ELECTRICITY
International classification
H01R13/53
ELECTRICITY
Abstract
The present disclosure provides a conductive terminal and an electrical connector assembly. A power electrical connector is provided for transmitting electrical signals from a pair of cables, such as high current capable cables, to an associated member. The high power electrical connector includes an insulative housing and a pair of contact terminals with an additional insulative member that provides a barrier against electrical shock. In such cases a user is prevented for inadvertently touching the power terminals during use.
Claims
1. A connector comprising: a housing formed from an insulative material, the housing includes a mating section and a mounting section, the mating section includes an opening configured for receiving a portion of a mating connector, the housing further includes a silo formed in the opening, a cavity is formed in the silo and communicates with the mounting section; a terminal, the terminal having a base portion, a contact portion extending from a first area of the base portion and a securing portion extending from a second area of the base portion, spring fingers are formed around a periphery of the contact portion defining an interior space, a peg formed from an insulating material is disposed in the interior space; and wherein a receiving slot is defined between the silo and the peg.
2. The connector according to claim 1, wherein the peg includes a blocking end that extends beyond the spring fingers in a mating direction.
3. The connector according to claim 2 wherein the silo includes an end adjacent the mating section of the housing and the blocking end of the peg is positioned between the end of the silo and the spring fingers.
4. The connector according to claim 2, wherein the blocking end of the peg extends beyond the mating section of the housing.
5. The connector according to claim 2, wherein a first distance defined between the silo and the blocking end of the peg is less than a second distance defined by a finger test probe.
6. The connector according to claim 5, wherein the finger test probe conforms to standard UL1950.
7. The connector according to claim 1, wherein the connection slot is defined around an exterior profile of the peg and the spring fingers.
8. The connector according to claim 1, wherein the peg is secured to the terminal by a pin.
9. The connector according to claim 1, wherein the periphery of the contact portion is rectangular.
10. A connector system comprising: a first connector, the first connector having a first housing formed from an insulative material, the first housing includes a first mating section and a first mounting section, the first mating section includes an opening, the first housing further includes a silo formed in the opening, a cavity is formed in the silo and communicates with the first mounting section, the first connector further having a first terminal, the first terminal fitted in the cavity, the first terminal having a base portion, a contact portion having a periphery, the contact section extending from a first end of the base portion and a securing portion extending from a second end of the base portion, spring fingers are formed around the periphery of the contact portion defining an internal space, a peg formed from an insulating material is disposed in the internal space and a slot is defined between the silo and the peg; a second connector, the second connector having a second housing formed from an insulative material, the second housing includes a second mating section and a second mounting second, the second mating section configured to be inserted into the first mating section of the first connector along a mating direction, a retention portion is formed in the second mounting section, the second connector further having a second terminal, the second terminal includes a second base portion and a second contact portion extending from the second base portion along the mating direction, the second base portion of the second terminal is secured in the retention portion of the second housing, the second contact portion of the second terminal having a second periphery with a second internal space, the contact portion further includes an insulative cap attached to an end of the contact portion of the second terminal; and wherein the contact section of the second terminal is disposed in the slot of the first connector with the spring fingers of the first terminal engaging the contact section of the second terminal and the peg of the first terminal is disposed in the internal space of the second terminal when the first connector and the second connector are mated together.
11. The connector system according to claim 10, wherein the silo of the first connector is interleaved between the second housing and the second terminal of the second connector.
12. The connector system according to claim 10, wherein the second contact portion of the second connector is interleaved between the peg and spring fingers of the fist terminal of the first connector.
13. The connector system according to claim 10, wherein the first and second peripheries are rectangular.
14. The connector system according to claim 10, wherein the first and second peripheries are circular.
15. The connector system according to claim 10, wherein the peg of the first terminal of the first connector includes a blocking end that extends beyond the spring fingers of the first terminal of the first connector in a mating direction.
16. The connector system according to claim 15, wherein the blocking end of the peg extends beyond the mating section of the housing.
17. The connector system according to claim 15, wherein a first distance defined between the silo and the blocking end of the peg is less than a second distance defined by a finger test probe.
18. The connector system according to claim 17, wherein the finger test probe conforms to standard UL1950.
19. The connector system according to claim 10, wherein a third distance defined between the second housing and insulative cap of the second connector is less than a second distance defined by a finger test probe.
20. The connector system of claim 10, wherein the peg is secured to the first terminal of the first connector by a pin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005] The present invention is illustrated by way of example and not limited in the accompanying figures in which like reference numerals indicate similar elements and in which:
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DETAILED DESCRIPTION
[0024] The detailed description that follows describes exemplary embodiments and is not intended to be limited to the expressly disclosed combination(s). Therefore, unless otherwise noted, features disclosed herein may be combined together to form additional combinations that were not otherwise shown for purposes of brevity.
[0025] The appended figures illustrate an embodiment with features that can be included in a power connector. As can be appreciated, while a wire connected system is disclosed other systems that employ circuit boards and panel mounting options could also be provided.
[0026] As can be appreciated, the connector system includes a plug connector and receptacle connector. Each of the connectors include a housing formed from an insulative material including a cavity. A conductive terminal is disposed within each cavity and cooperatively engage each other in an electrical fashion.
[0027] As best shown in
[0028] As depicted in
[0029] As illustrated, the receptacle 60 includes a housing 62 formed from an insulative material having an opening 63 configured to receive a cooperating portion of a housing 30 of the plug 20. A pair of silos 69 are formed in the opening 63 and extend along the mating direction A. In the embodiment shown, the end portion 67 of each silo 69 is generally flush with the end 61 of the receptacle housing 62. In certain instances, the silo 69 may be recessed in the opening 63 or extend beyond the housing 62. The housing 62 includes a mounting section 65 opposite the opening 63 formed along the mating direction A. A cavity 64 is formed in the silo 69 and communicates with the mounting section 65.
[0030] As best shown in
[0031] Spring fingers 104 are formed in the contact portion 94 extending from the base portion 92 are formed along the periphery of the base portion 92 and defined an interior space 100. Each spring finger 104 includes a contact point 105 at a distil end of the spring finger 104. A securing portion 96 extends from a second area of the base portion 92 and includes a U shaped section. The U shaped section is configured to receive a conductor 86 of a cable assembly 85 and upon deformation of the U shaped section crimps the conductor 86 of the cable assembly 85 to the terminal 90. In the embodiment shown a crimp is employed to secure the conductor to the terminal, other connecting methods are considered such as a screws, bolts or welding. A retention tab 98 is formed from a side of the base portion 92 of the terminal 90.
[0032] The terminal 90 further includes an insulating blocking peg 110 that is captivated in the interior space 100 of the terminal 90. The blocking peg 110 extends in the mating direction A along the contact portion 94 of the terminal 90. The insulating peg 110 includes a base 112 formed at one end of the peg 110 that is adapted to engage the interior periphery sides of the female terminal and includes a projection 114 extending from the base 112 having a blocking end 119 disposed at the distal portion of the projection 114. A pair of holes 116 are formed through the base 112 that are aligned with similar holes 95 formed in the base portion 92 of the terminal 90 when the insulating peg 110 is inserted into the space 100 of the terminal 90. Upon insertion, the base 112 of the insulating peg 110 conforms to the interior periphery of the base portion 92 of the terminal 90. A pair of pins 118 are inserted into the opening 95 in the base portion 92 of the terminal 90 and protrude through the base 112 of the insulating per 110 securing the insulating peg 110 to the base portion 92.
[0033] As shown in
[0034] As illustrated, the plug 20 includes a housing 30 formed from an insulative material having a mating section 34 configured to mate with the opening 63 formed in the housing 62 of the receptacle 60. The housing 30 includes a mounting section 36 opposite the mating section 34 and a pair of cavities 32 formed in the mating section 34 and extending through the housing 30 along a mating direction A to the mounting section 36. Each terminal assembly 40 is inserted and retained in the mounting section 36 of the housing 30.
[0035] As best shown in
[0036] The terminal 50 is stamped and formed from electrically conductive sheet material of copper or similar copper based alloy. The terminal 50 further includes a base portion 51 configured to captivate a retention nut 42 and has a retention tab 56 extending from a side peripheral surface. A contact surface 52 conforms to the periphery and is exposed on the exterior of the terminal 50.
[0037] As shown in
[0038] As illustrated in
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[0040] In this embodiment, a receptacle 60 as previously described and shown in
[0041] The plug 20 also includes a touch safe aspect similar to the receptacle which is illustrated in
[0042] An alternative embodiment is shown in
[0043] Similarly as shown in
[0044] It can be appreciated that the current disclosure shows a square male and female terminal arrangement but other geometries can be used, such as circular and rectangular configurations.
[0045] The disclosure provided herein describes features in terms of preferred and exemplary embodiments thereof. Numerous other embodiments, modifications and variations within the scope and spirit of the appended claims will occur to persons of ordinary skill in the art from a review of this disclosure.