This patent application claims priority of a Chinese Patent Application No. 202111190071.9, filed on Oct. 13, 2021 and titled “ELECTRICAL CONNECTOR”, the entire content of which is incorporated herein by reference.
The present disclosure relates to an electrical connector, which belongs to a technical field of connectors.
An existing electrical connector usually includes an insulating body and a plurality of conductive terminals. In order to restrict the position of the conductive terminals, the insulating body usually defines a plurality of limiting slots. Since the conductive terminals need to be elastically deformed when they are mated with a mating connector, if the size control of the limiting slots is not accurate enough, it is easy to cause scratches between the insulating body and the conductive terminals, thereby affecting the reliability of the electrical connector.
An object of the present disclosure is to provide an electrical connector with higher reliability.
In order to achieve the above object, the present disclosure adopts the following technical solution: an electrical connector, including: an insulating body, the insulating body including a mating surface and a mating slot extending through the mating surface along a first direction; and a plurality of conductive terminals, each conductive terminal including an elastic mating portion protruding into the mating slot and an end portion extending from the elastic mating portion; wherein the insulating body includes a plurality of limiting blocks to restrict the conductive terminals and a terminal limiting slot located between two adjacent limiting blocks; at least one limiting block includes a limiting protrusion protruding into the terminal limiting slot along a second direction perpendicular to the first direction; the at least one limiting protrusion is adapted to restrict a side surface of the end portion of a corresponding conductive terminal; wherein the insulating body further includes a relief slot adjacent to the mating surface, the relief slot and the terminal limiting slot are in communication with each other in the first direction; and when the corresponding conductive terminal needs to be deformed, the end portion of the corresponding conductive terminal is capable of moving unimpeded in the relief slot.
In order to achieve the above object, the present disclosure adopts the following technical solution: an electrical connector, including: an insulating body, the insulating body including a mating surface and a mating slot extending through the mating surface along a first direction; a first terminal module, the first terminal module including a plurality of first conductive terminals and a first fixing block to fix the first conductive terminals, each first conductive terminal including a first elastic mating portion protruding into the mating slot and a first end portion extending from the first elastic mating portion; a second terminal module, the second terminal module including a plurality of second conductive terminals and a second fixing block to fix the second conductive terminals, each second conductive terminal including a second elastic mating portion protruding into the mating slot; a third terminal module, the third terminal module including a plurality of third conductive terminals and a third fixing block to fix the third conductive terminals, each third conductive terminal including a third elastic mating portion protruding into the mating slot; and a fourth terminal module, the fourth terminal module including a plurality of fourth conductive terminals and a fourth fixing block to fix the fourth conductive terminals, each fourth conductive terminal including a fourth elastic mating portion protruding into the mating slot; wherein the first elastic mating portions of the first conductive terminals and the second elastic mating portions of the second conductive terminals are aligned in a vertical direction; wherein the third elastic mating portions of the third conductive terminals and the fourth elastic mating portions of the fourth conductive terminals are aligned in the vertical direction; wherein compared with the first elastic mating portions and the second elastic mating portions, the third elastic mating portions and the fourth elastic mating portions are disposed further away from the mating surface in the first direction; wherein the insulating body includes a first limiting block, a second limiting block, and a first terminal limiting slot located between the first limiting block and the second limiting block, the first limiting block includes a first protrusion, the second limiting block includes a second protrusion, the first protrusion protrudes toward the second protrusion in a second direction perpendicular to the first direction and the vertical direction, and the second protrusion protrudes toward the first protrusion in the second direction; wherein the first conductive terminals include a first signal terminal having the first end portion, the first end portion of the first signal terminal includes a first end surface, and the first end portion of the first signal terminal is restricted between the first protrusion and the second protrusion; wherein the insulating body further includes a first relief slot adjacent to the mating surface, the first relief slot and the first terminal limiting slot are in communication with each other in the first direction; and when the first signal terminal needs to be deformed, the first end portion of the first signal terminal is capable of moving unimpeded in the first relief slot.
Compared with the prior art, the present disclosure is capable of limiting the position of the conductive terminal by providing at least one limiting protrusion. In addition, by providing the relief slot, the end portion of the conductive terminal can move unimpeded in the relief slot, thereby reducing the probability of the conductive terminal being blocked when it needs to move, and improving the reliability of electrical connector. At the same time, the relief slot can also provide a positive impact on maintaining the signal integrity when the conductive terminals are transmitting signals.
Exemplary embodiments will be described in detail here, examples of which are shown in drawings. When referring to the drawings below, unless otherwise indicated, same numerals in different drawings represent the same or similar elements. The examples described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of devices and methods consistent with some aspects of the application as detailed in the appended claims.
The terminology used in this application is only for the purpose of describing particular embodiments, and is not intended to limit this application. The singular forms “a”, “said”, and “the” used in this application and the appended claims are also intended to include plural forms unless the context clearly indicates other meanings.
It should be understood that the terms “first”, “second” and similar words used in the specification and claims of this application do not represent any order, quantity or importance, but are only used to distinguish different components. Similarly, “an” or “a” and other similar words do not mean a quantity limit, but mean that there is at least one; “multiple” or “a plurality of” means two or more than two. Unless otherwise noted, “front”, “rear”, “lower” and/or “upper” and similar words are for ease of description only and are not limited to one location or one spatial orientation. Similar words such as “include” or “comprise” mean that elements or objects appear before “include” or “comprise” cover elements or objects listed after “include” or “comprise” and their equivalents, and do not exclude other elements or objects. The term “a plurality of” mentioned in the present disclosure includes two or more.
Hereinafter, some embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. In the case of no conflict, the following embodiments and features in the embodiments can be combined with each other.
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The first terminal module 21 includes a plurality of first conductive terminals 211, a first fixing block 212 for fixing the first conductive terminals 211, and a first ground connection piece 213. In the illustrated embodiment of the present disclosure, the plurality of first conductive terminals 211 are insert-molded in the first fixing block 212, so that the first terminal module 21 is formed as a whole, thereby facilitating assembly. As shown in
Each first conductive terminal 211 includes a first elastic mating portion 2111 protruding into the mating slot 101, a first end portion 2112 extending from the first elastic mating portion 2111, and a first mounting portion 2113 for being mounted to the circuit board. The first elastic mating portion 2111 has an arc-shaped configuration in order to contact a corresponding terminal of the mating connector. The first end portion 2112 includes a first end surface 2112a.
In the illustrated embodiment of the present disclosure, the plurality of limiting blocks include a first limiting block 121, a second limiting block 122 and a third limiting block 123. The first limiting block 121, the second limiting block 122 and the third limiting block 123 are all disposed on the top of the bottom wall 12. The terminal limiting slots include a first terminal limiting slot 124 located between the first limiting block 121 and the second limiting block 122, and a second terminal limiting slot 125 located between the second limiting block 122 and the third limiting block 123. The relief slot includes a first relief slot 126 located between the first limiting block 121 and the second limiting block 122, and a second relief slot 127 located between the second limiting block 122 and the third limiting block 123. The first relief slots 126 and corresponding first terminal limiting slots 124 are in communication with each other in the first direction D1-D1. The second relief slots 127 and corresponding second terminal limiting slots 125 are in communication with each other in the first direction D1-D1. The relief slots (for example, the first relief slot 126 and the second relief slot 127) have a function of adjusting impedance of the electrical connector 100. If the relief slot is not provided, the impedance of the electrical connector 100 is low. After the relief slot is set, the impedance of the electrical connector 100 is relatively high, which can improve the insertion loss resonance at the same time.
The limiting protrusions include a first protrusion 1211 provided on the first limiting block 121, a second protrusion 1221 and a fourth protrusion 1222 provided on the second limiting block 122, and a third protrusion 1231 provided on the third limiting block 123. The first protrusion 1211 protrudes toward the second protrusion 1221 in a second direction D2-D2 perpendicular to the first direction D1-D1. The second protrusion 1221 protrudes toward the first protrusion 1211 in the second direction D2-D2. The third protrusion 1231 protrudes toward the fourth protrusion 1222 in the second direction D2-D2. The fourth protrusion 1222 protrudes toward the third protrusion 1231 in the second direction D2-D2. In other words, the first protrusion 1211 and the second protrusion 1221 protrude toward each other in the second direction D2-D2. The third protrusion 1231 and the fourth protrusion 1222 protrude toward each other in the second direction D2-D2. The first end portion 2112 of the first signal terminal S1 is restricted between the first protrusion 1211 and the second protrusion 1221 so as to prevent the first end portion 2112 of the first signal terminal S1 from being deviated from side to side. In other words, opposite lateral sides of the first end portion 2112 of the first signal terminal S1 are restricted by the first protrusion 1211 and the second protrusion 1221, respectively. A gap between the first protrusion 1211 and the first end portion 2112 of the first signal terminal S1 along the second direction D2-D2 is X1, where 0.04 mm≤X1≤0.1 mm. A gap between the second protrusion 1221 and the first end portion 2112 of the first signal terminal S1 along the second direction D2-D2 is X2, where 0.04 mm≤X2≤0.1 mm. This arrangement is beneficial to improve the alignment of the first signal terminal S1. In an embodiment of the present disclosure, X1=0.05 mm, and X2=0.05 mm. The first end portion 2112 of the second signal terminal S2 is restricted between the third protrusion 1231 and the fourth protrusion 1222 so as to prevent the first end portion 2112 of the second signal terminal S2 from being deviated from side to side. In other words, opposite lateral sides of the first end portion 2112 of the second signal terminal S2 are restricted by the third protrusion 1231 and the fourth protrusion 1222, respectively. A gap between the third protrusion 1231 and the first end portion 2112 of the second signal terminal S2 along the second direction D2-D2 is X3, where 0.04 mm. A gap between the fourth protrusion 1222 and the first end portion 2112 of the second signal terminal S2 along the second direction D2-D2 is X4, where 0.04 mm≤X4≤0.1 mm. This arrangement is beneficial to improve the alignment of the second signal terminal S2. In an embodiment of the present disclosure, X3=0.05 mm, and X4=0.05 mm.
The first limiting block 121 includes a first side surface 121a exposed in the first relief slot 126. The second limiting block 122 includes a second side surface 122a exposed in the first relief slot 126. The third limiting block 123 includes a third side surface 123a exposed in the second relief slot 127. The second limiting block 122 further includes a fourth side surface 122b exposed in the second relief slot 127.
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The insulating body 1 includes a first connecting wall 128 connecting the first limiting block 121 and the second limiting block 122, and a second connecting wall 129 connecting the second limiting block 122 and the third limiting block 123. The first connecting wall 128 includes a first surface 128a. The first relief slot 126 is located between the first surface 128a and the first end surface 2112a of the first signal terminal S1 in the first direction D1-D1. The second connecting wall 129 includes a second surface 129a. The second relief slot 127 is located between the second surface 129a and the first end surface 2112a of the second signal terminal S2 in the first direction D1-D1.
The first limiting block 121 includes a first inclined guide surface 121c. The second limiting block 122 includes a second inclined guide surface 122c. The first inclined guide surface 121c and the second inclined guide surface 122c jointly form a first bell mouth for guiding the first end portion 2112 of the first signal terminal S1. The third limiting block 123 includes a third inclined guide surface 123c. The second limiting block 122 further includes a fourth inclined guide surface 122d. The third inclined guide surface 123c and the fourth inclined guide surface 122d jointly form a second bell mouth for guiding the first end portion 2112 of the second signal terminal S2. By providing the first bell mouth and the second bell mouth, the first terminal module 21 can be easily assembled into the insulating body 1.
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Each second conductive terminal 221 includes a second elastic mating portion 2211 protruding into the mating slot 101, a second end portion 2212 extending from the second elastic mating portion 2211, and a second mounting portion 2213 for being mounted to the circuit board. The second elastic mating portion 2211 has an arc-shaped configuration to contact a corresponding terminal of the mating connector. The second end portion 2212 includes a second end surface 2212a.
In the illustrated embodiment of the present disclosure, the plurality of limiting blocks include a fourth limiting block 111, a fifth limiting block 112 and a sixth limiting block 113. The fourth limiting block 111, the fifth limiting block 112 and the sixth limiting block 113 are all disposed at the bottom of the top wall 11. The terminal limiting slots include a third terminal limiting slot 114 located between the fourth limiting block 111 and the fifth limiting block 112, and a fourth terminal limiting slot 115 located between the fifth limiting block 112 and the sixth limiting block 113. The relief slots include a third relief slot 116 located between the fourth limiting block 111 and the fifth limiting block 112, and a fourth relief slot 117 located between the fifth limiting block 112 and the sixth limiting block 113. The third relief slots 116 and the corresponding third terminal limiting slots 114 are in communication with each other in the first direction D1-D1. The fourth relief slots 117 and the corresponding fourth terminal limiting slots 115 are in communication with each other in the first direction D1-D1.
The limiting protrusions include a fifth protrusion 1111 provided on the fourth limiting block 111, a sixth protrusion 1121 and an eighth protrusion 1122 provided on the fifth limiting block 112, and a seventh protrusion 1131 provided on the sixth limiting block 113. The fifth protrusion 1111 protrudes toward the sixth protrusion 1121 in a second direction D2-D2 perpendicular to the first direction D1-D1. The sixth protrusion 1121 protrudes toward the fifth protrusion 1111 in the second direction D2-D2. The seventh protrusion 1131 protrudes toward the eighth protrusion 1122 in the second direction D2-D2. The eighth protrusion 1122 protrudes toward the seventh protrusion 1131 in the second direction D2-D2. In other words, the fifth protrusion 1111 and the sixth protrusion 1121 protrude toward each other in the second direction D2-D2. The seventh protrusion 1131 and the eighth protrusion 1122 protrude toward each other in the second direction D2-D2. The second end portion 2212 of the third signal terminal S3 is restricted between the fifth protrusion 1111 and the sixth protrusion 1121 so as to prevent the second end portion 2212 of the third signal terminal S3 from being deviated from side to side. In other words, opposite lateral sides of the second end portion 2212 of the third signal terminal S3 are restricted by the fifth protrusion 1111 and the sixth protrusion 1121, respectively. A gap between the fifth protrusion 1111 and the second end portion 2212 of the third signal terminal S3 along the second direction D2-D2 is X5, where 0.04 mm≤X5≤0.1 mm. A gap between the sixth protrusion 1121 and the second end portion 2212 of the third signal terminal S3 along the second direction D2-D2 is X6, where 0.04 mm≤X6≤0.1 mm. This arrangement is beneficial to improve the alignment of the third signal terminal S3. In an embodiment of the present disclosure, X5=0.05 mm, and X6=0.05 mm. The second end portion 2212 of the fourth signal terminal S4 is restricted between the seventh protrusion 1131 and the eighth protrusion 1122 so as to prevent the second end portion 2212 of the fourth signal terminal S4 from being deviated from side to side. In other words, opposite lateral sides of the second end portion 2212 of the fourth signal terminal S4 are restricted by the seventh protrusion 1131 and the eighth protrusion 1122, respectively. A gap between the seventh protrusion 1131 and the second end portion 2212 of the fourth signal terminal S4 along the second direction D2-D2 is X7, where 0.04 mm≤X7≤0.1 mm. A gap between the eighth protrusion 1122 and the second end portion 2212 of the fourth signal terminal S4 along the second direction D2-D2 is X8, where 0.04 mm≤X8≤0.1 mm. This arrangement is beneficial to improve the alignment of the fourth signal terminal S4. In an embodiment of the present disclosure, X7=0.05 mm, and X8=0.05 mm.
The fourth limiting block 111 includes a fifth side surface 111a exposed in the third relief slot 116. The fifth limiting block 112 includes a sixth side surface 112a exposed in the third relief slot 116. The sixth limiting block 113 includes a seventh side surface 113a exposed in the fourth relief slot 117. The fifth limiting block 112 further includes an eighth side surface 112b exposed in the fourth relief slot 117.
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The insulating body 1 includes a third connecting wall 118 connecting the fourth limiting block 111 and the fifth limiting block 112, and a fourth connecting wall 119 connecting the fifth limiting block 112 and the sixth limiting block 113. The third connecting wall 118 includes a third surface 118a. The third relief slot 116 is located between the third surface 118a and the second end surface 2212a of the third signal terminal S3 in the first direction D1-D1. The fourth connecting wall 119 includes a fourth surface 119a. The fourth relief slot 117 is located between the fourth surface 119a and the second end surface 2212a of the fourth signal terminal S4 in the first direction D1-D1.
The fourth limiting block 111 includes a third inclined guide surface 111c. The fifth limiting block 112 includes a fourth inclined guide surface 112c. The third inclined guide surface 111c and the fourth inclined guide surface 112c jointly form a third bell mouth for guiding the second end portion 2212 of the third signal terminal S3. The sixth limiting block 113 includes a third inclined guide surface 113c. The fifth limiting block 112 further includes a fourth inclined guide surface 112d. The third inclined guide surface 113c and the fourth inclined guide surface 112d jointly form a fourth bell mouth for guiding the second end portion 2212 of the fourth signal terminal S4. By providing the third bell mouth and the fourth bell mouth, the second terminal module 22 can be easily assembled into the insulating body 1.
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The above embodiments are only used to illustrate the present disclosure and not to limit the technical solutions described in the present disclosure. The understanding of this specification should be based on those skilled in the art. Descriptions of directions, such as “front”, “back”, “left”, “right”, “top” and “bottom”, although they have been described in detail in the above-mentioned embodiments of the present disclosure, those skilled in the art should understand that modifications or equivalent substitutions can still be made to the application, and all technical solutions and improvements that do not depart from the spirit and scope of the application should be covered by the claims of the application.
Number | Date | Country | Kind |
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202111190071.9 | Oct 2021 | CN | national |