A conductive terminal and an electrical connector are disclosed. The conductive terminal comprises a mating portion positioned at a front end, a tail portion for connecting a conductive wire and a fixed portion connected between the mating portion and the tail portion. Wherein the fixed portion comp
A conductive terminal and an electrical connector are disclosed. The conductive terminal comprises a mating portion positioned at a front end, a tail portion for connecting a conductive wire and a fixed portion connected between the mating portion and the tail portion. Wherein the fixed portion comprises a bottom wall, two side walls bent upwardly respectively from two sides of the bottom wall, a lock tang obliquely extending rearwardly and upwardly from the middle of the bottom wall and two stopping protrusions protruding inwardly from the two side walls, the two stopping protrusions abut against the lock tang so as to prevent the lock tang from being improperly deformed due to a force applied. The present invention can assure that the conductive terminal is firmly fixed in insulative body of the electrical connector.
대표청구항▼
1. A conductive terminal, which is integrally formed by stamping a metal material, the conductive terminal comprising: a mating portion,a tail portion positioned rearward of the mating portion; anda fixed portion connected between the mating portion and the tail portion, wherein the fixed portion co
1. A conductive terminal, which is integrally formed by stamping a metal material, the conductive terminal comprising: a mating portion,a tail portion positioned rearward of the mating portion; anda fixed portion connected between the mating portion and the tail portion, wherein the fixed portion comprises a bottom wall, first and second side walls, a lock tang and a stopping protrusion, the bottom wall having a middle and first and second sides, the first side wall extending upwardly from the first side of the bottom wall, the second side wall extending upwardly from the second side of the bottom wall, the lock tang extending rearwardly and upwardly from the middle of the bottom wall, the stopping protrusion protruding inwardly from the first side wall, the stopping protrusion being formed by tearing inwardly from the first side wall, the stopping protrusion configured to abut against the lock tang. 2. The conductive terminal according to claim 1, wherein a protruding rib protrudes upwardly from an upper surface of the lock tang. 3. The conductive terminal according to claim 1, wherein the lock tang is formed by tearing upwardly from the middle of the bottom wall. 4. The conductive terminal according to claim 3, wherein the bottom wall is firstly formed a straight extension portion extending rearwardly, and the lock tang is bent upwardly from a distal end of the straight extension portion. 5. The conductive terminal according to claim 1, wherein the first and second side walls are each provided with a plurality of protruding points protruding outwardly from outer side surfaces thereof. 6. The conductive terminal according to claim 5, wherein each of the first and second side walls has first and second protruding points protruding from the outer side surface thereof, the second protruding point being positioned at a different height level than the first protruding point. 7. The conductive terminal according to claim 1, wherein the stopping protrusion is a first stopping protrusion, and further comprising a second stopping protrusion protruding inwardly from the second side wall, the second stopping protrusion being formed by tearing inwardly from the second side wall, the second stopping protrusion configured to abut against the lock tang. 8. The conductive terminal according to claim 1, wherein the tail portion is a clamping portion with a U-shape for clamping a conducive wire. 9. The conductive terminal according to claim 3, wherein a top portion of the lock tang is lower than top portions of the first and second side walls. 10. The conductive terminal according to claim 1, wherein the mating portion is formed of first and second contact arms, the first contact arm extending forwardly from a front end of the first side wall, the second contact arm extending forwardly from a front end of the second side wall. 11. An electrical connector, comprising: an insulative body, the insulative body being provided with a receiving passage penetrating the insulative body along a front-rear direction, the insulative body being provided with a stopping portion on an inner wall of the receiving passage; anda conductive terminal mounted within the receiving passage of the insulative body, the conductive terminal having a mating portion, a tail portion and a fixed portion, the tail portion being positioned rearward of the mating portion, the fixed portion connected between the mating portion and the tail portion, wherein the fixed portion comprises a bottom wall, first and second side walls, a lock tang and a stopping protrusion, the bottom wall having a middle and first and second sides, the first side wall extending upwardly from the first side of the bottom wall, the second side wall extending upwardly from the second side of the bottom wall, the lock tang extending rearwardly and upwardly from the middle of the bottom wall, the stopping protrusion protruding inwardly from the first side wall, the stopping protrusion being formed by tearing inwardly from the first side wall, the stopping protrusion abutting against the stopping portion of the insulative body so as to prevent the conductive terminal from moving rearwardly out of the receiving passage. 12. The electrical connector according to claim 11, wherein the stopping portion protrudes downwardly from the inner wall of the receiving passage, a front wall of the stopping portion is formed with an oblique surface which is low at a front and high at a rear, a distal end of the lock tang is provided with a bottom-side chamfer which is matched with the oblique surface. 13. The electrical connector according to claim 11, wherein a protruding rib protrudes upwardly from an upper surface of the lock tang. 14. The electrical connector according to claim 11, wherein the lock tang is formed by tearing upwardly from the middle of the bottom wall. 15. The electrical connector according to claim 14, wherein a top portion of the lock tang is lower than top portions of the first and second side walls. 16. The electrical connector according to claim 14, wherein the bottom wall is firstly formed a straight extension portion extending rearwardly, and the lock tang is bent upwardly from a distal end of the straight extension portion. 17. The electrical connector according to claim 11, wherein the first and second side walls are each provided with a plurality of protruding points protruding outwardly from outer side surfaces thereof. 18. The electrical connector according to claim 17, wherein each of the first and second side walls has first and second protruding points protruding from the outer side surface thereof, the second protruding point being positioned at a different height level than the first protruding point. 19. The electrical connector according to claim 11, wherein the stopping protrusion is a first stopping protrusion, and further comprising a second stopping protrusion protruding inwardly from the second side wall, the second stopping protrusion being formed by tearing inwardly from the second side wall, the second stopping protrusion configured to abut against the lock tang. 20. The electrical connector according to claim 11, wherein the tail portion is a clamping portion with a U-shape for clamping a conducive wire. 21. The electrical connector according to claim 11, wherein the mating portion is formed of first and second contact arms, the first contact arm extending forwardly from a front end of the first side wall, the second contact arm extending forwardly from a front end of the second side wall.
Peterson Bruce A. (Schaumburg IL) Faje Richard A. (Westmont IL) Geoghegan Frank L. (Hinsdale IL) Rattin Paul A. (Western Springs IL) Weltz Joseph R. (Batavia IL), Electrical connector with improved terminal positioning means.
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