LEVER-TYPE CONNECTOR
20180351295 ยท 2018-12-06
Inventors
Cpc classification
H01R13/4538
ELECTRICITY
H01R13/4223
ELECTRICITY
International classification
H01R13/629
ELECTRICITY
Abstract
A lever (11) swings from a fitting start position to a fitting completion position on a housing (10) and has a cam groove (68). In the swinging process, a cam follower (21) of a counterpart housing (14) and cam (55) of a moving plate (13) advance a fitting operation between the housings (10) and (14) to move the moving plate (13) from a moving start position to a moving completion position. A detachment regulating portion (69) locks the cam (55) at the fitting start position to regulate detachment of the moving plate (13) from the hood (26). The lever (11) is swung from the fitting start position in an opposite direction of the fitting completion position, and has a detachment allowing position separating the cam (55) from the detachment regulating portion (69) to allow the moving plate (13) to detach from the hood (26).
Claims
1. A lever-type connector comprising: a housing (10) having a hood (26) into which a mating housing (14) can be fit, at least one tab (31) of a male terminal fitting (30) projecting into the hood (26); a moving plate (13) movable between a moving start position and a moving completion position in the hood (26), having at least one insertion hole (49) into which the tab (31) is inserted so that the tab (31) projects forward from the insertion hole (49) when the moving plate (13) moves from the moving start position to the moving completion position, and having at least one cam (55) to be coupled to a mating cam element (21) provided at the mating housing (14); and a lever (11) supported to be displaced from a fitting start position to a fitting completion position with respect to the housing (10), in a process in which the lever (11) moves from the fitting start position to the fitting completion position, the mating cam element (21) and the cam (55) in a coupling state advance a fitting operation between the housings (10, 14), the lever (11) having an engageable cam element (68) moving the moving plate (13) toward the moving completion position, and having, on an inlet port side of the engageable cam element (68), at least one detachment regulating portion (69) locking the cam element (55) at the fitting start position to control detachment of the moving plate (13) from the hood (26), wherein the lever (11) is displaced from the fitting start position in an opposite direction of the fitting completion position side, and has a detachment allowing position at which the cam element (55) is separated from the detachment regulating portion (69) to allow the moving plate (13) to detach from the hood (26).
2. The lever-type connector of claim 1, wherein at least one stopper receiving portion (76) is disposed in or at the housing (10), at least one stopper (74) locked on the stopper receiving portion (76) at the fitting start position and controlling displacement of the lever (11) to the detachment allowing position is disposed on at least one cam plate (61) of the lever (11), and the cam plate (61) is elastically deformed to cancel locking between the stopper receiving portion (76) and the stopper (74).
3. The lever-type connector of claim 2, wherein in at least one of a cam plate (61) of the lever (31) and the housing (10), at least one guide groove (73) substantially straightly extending and opening on an outer surface side is formed to guide a jig (J) to elastically displace the cam plate (61).
4. The lever-type connector of claim 1, wherein at least one flexible lance (28) retaining and locking the male terminal fitting (30) is disposed at the housing (10).
5. The lever-type connector of claim 4, further comprising a front retainer (12) having at least one bending controlling portion (46) controlling a bending operation of the lance (28) is to be arranged in the hood (26) so that at least part of the front retainer (12) is sandwiched between a plate surface of the moving plate (13) and a back surface of the hood (26).
6. The lever-type connector of claim 1, wherein at least one arc-like groove (71) curved along a swinging direction of the lever (11) is formed in the lever (11), and an interference portion (39) is disposed in the housing (10) and is brought into contact with a back end of the arc-like groove (71) at the detachment allowing position to control a further swinging operation of the lever (11).
7. The lever-type connector of claim 6, wherein the back end of the arc-like groove (71) serves as a hitting surface (59) on the interference portion (39) of the housing (10) that is struck when the lever (11) reaches the detachment allowing position.
8. The lever-type connector of claim 1, wherein one end of the detachment regulating portion (69) is connected to a side surface of the cam engageable element (68) on an inlet port side of the engageable cam element (68), and a passing port (70) allowing the cam element (55) to pass is formed between a side surface of the cam engageable element (68) and the other end of the detachment regulating portion (69) to open substantially in the forward and backward directions.
9. A lever-type connector assembly comprising the lever-type connector of claim 1 and a mating connector having a mating housing (14) at least partly insertable into the hood (26) of the housing (10).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION
[0036] An embodiment of the invention will be described below with reference to
[0037] The counterpart housing 14 is made e.g. of a synthetic resin and, as shown in
[0038] A counterpart front retainer 17 is disposed to at least partly cover the front surface of the counterpart housing 14, as shown in
[0039] Counterpart windows 19 are formed in the counterpart retainer 17 and communicate with the counterpart cavities 15. Furthermore, a push prevention receiving portion 20 is formed by opening or recessing (see
[0040] Cam followers 21 project from side surfaces of the counterpart housing 14 at substantially center positions in the vertical direction. The cam followers 21 have substantially flat-columnar shapes the horizontal directions. Canceling portions 22 project from lower parts of the side surfaces of the counterpart housing 14. Each canceling portion 22 has a plate-like shape extending in the forward and backward directions and is arranged substantially parallel with the cam followers 22.
[0041] A lock 23 projects from the rear part of the upper surface of the counterpart housing 14 and at a substantially central portion in the horizontal directions. As shown in
[0042] The housing 10 is made e.g. of a synthetic resin, as shown in
[0043] Each male terminal fitting 30 is shaped integrally or unitarily by bending, folding and/or embossing to a conductive metal plate. As shown in
[0044] As shown in
[0045] Forwardly open moving guide grooves 34 extend in the forward and backward directions at a vertically intermediate portions on both side walls of the hood 26, as shown in
[0046] Support shafts 38 project at a vertically intermediate portion on the outer surfaces of both side walls of the hood 26 and close to the housing main body 25. As shown in
[0047] As shown in
[0048] The front retainer 12 is made e.g. of a synthetic resin and has a substantially rectangular-plate-like front wall 42 extending along the vertical directions. Two resilient locking portions 43 project back from upper and lower positions on both side surfaces of the front wall 42, and at least one substantially square-columnar push prevention portion 44 projects forward from center portion of the front wall 42, as shown in
[0049] As shown in
[0050] The moving plate 13 is made e.g. of a synthetic resin and is moveable forward and backward in the hood between a moving start position shown in
[0051] As shown in
[0052] The outer surface of the peripheral wall 48 has a shape substantially matched with the inner surface of the hood 26. When the moving plate 13 moves, the outer surface of the peripheral wall 48 and the inner surface of the hood 26 slide on each other so that the plate main body 47 displaces in the hood 26 without tilting.
[0053] As shown in
[0054] Forwardly open entry grooves 57 are formed in the lower parts of both side panels of the peripheral wall 48 and extend in the forward and backward directions. As shown in
[0055] The lever 11 is made e.g. of a synthetic resin, and, as shown in
[0056] Each of the cam plates 61 has an extended region 63 separated from the operation portion 60 and formed with a bearing hole 64. The support shaft 38 is fit in the bearing hole 64 so that lever 11 is supported on the housing 10 such that the lever 11 can be displaced (pivoted) about the support shaft 38, with respect to the housing 10, between the fitting start position and the fitting completion position and/or can be displaced between the fitting start position and the detachment allowing position. As shown in
[0057] Swinging regulating cutouts 66 are formed at the outer peripheral edges of the extended regions 63 of the cam plates 61. Each swinging regulating portion 66 is cantilevered forward at the fitting start position. As shown in
[0058] Curve cam grooves are formed in the inner surfaces of the extended regions 63 of the cam plates 61. The cam grooves 68 are bottomed grooves closed by the outer surfaces of the cam plates 61 and have inlet ports opening forward in the outer peripheral edge of the cam plates 61 at the fitting start position. As shown in
[0059] As shown in
[0060] As shown in
[0061] An operational advantage of the lever-type connector according to the first embodiment will be described below.
[0062] In an assembling operation, the front retainer 12 is held at a temporary locking position. In this state, the male terminal fittings 30 are inserted into the cavities 27 of the housing main body 25 from behind (see
[0063] The front retainer 12 is pressed into the hood 26 on the back side. Locking between the elastic locking portion 43 and the temporary locking portion 41 is canceled by a pressing force given to the front retainer 12. Thus, the front retainer 12 is displaced to the full locking position, and each bending regulating portion 46 enters into the bending space of the corresponding lance 28 to set the male terminal fitting 30 in a double retaining or locked state. The front retainer 12 is locked at the full locking position so that the full locking portion 40 is fit elastically or resiliently on the inside of the elastic locking portion 43.
[0064] The moving plate 13 is inserted into the hood 26. Before the moving plate 13 is inserted, the lever 11 is held or locked at the fitting start position. Displacement of the lever 11 toward the fitting completion position is regulated such that the locking projection 67 of the swing regulating portion 66 is fit elastically or resiliently on the canceling guide groove 35 of the hood 26 and locked on the edge of the canceling guide groove 35 (see
[0065] Meanwhile, in the process in which the moving plate 13 is inserted into the hood 26, the cam 55 slides on the front surface of the detachment regulating portion 69 to elastically open the cam plate 61 outward. When the moving plate 13 is inserted into the hood 26, the cam plate 61 elastically or resiliently returns, and, accordingly, the cam 55 is inserted into the inlet port of the corresponding cam groove 68 and is arranged such that the cam 55 can be locked on the rear surface of the detachment regulating portion 69 (see
[0066] The guide portion 53 is fit on and inserted into the corresponding moving guide groove 34, and the ridge receiving portion 36 is fit on and inserted between the ridge 54 and the outer surface of the peripheral wall 48. Thus, the moving plate 13 is guided to move in the forward and backward directions (see
[0067] In the above state, the counterpart housing 14 is fit lightly or shallowly in the hood 26. At this time, when the housings 10 and 14 that face each other are tilted, the distal end of the push prevention portion 44 contacts the wall surface facing the counterpart housing 14, and the fitting operation between the housings 10 and 14 is controlled so that the counterpart housing 14 does not push the male terminal fittings 30. On the other hand, when the housings 10 and 14 are fit normally, the push prevention portion 44 is positioned to the counterpart front retainer 17 and the push prevention receiving portion 20 of the counterpart housing 14 is inserted therein so that the fitting operation between the housings 10 and 14 is performed appropriately.
[0068] When the counterpart housing 14 is fit shallowly in the hood 26, the cam follower 21 enters the coupling space 56 in the cam 55 and then hits and is stopped by the back end of the introduction groove 52 (see
[0069] The operation portion 60 then is held, and the lever 11 is pivoted toward the fitting completion position (see
[0070] The lock 23 of the counterpart housing 14 is fit into the fitting concavity 33 when the cam follower 21 and the cam 55 in the coupling state reach the back end of the cam groove 68. Additionally, the lever lock 62 of the operation portion 60 is locked elastically or resiliently on the projection 24 of the lock 23 to control the swinging operation of the lever 11. In this manner, the lever 11 is kept at the fitting completion position in the swinging regulating state.
[0071] The interference portion 39 is close to one end of the arc-like groove 71 when the lever 11 reaches the fitting completion position, and the plate main body 47 of the moving plate 13 approaches the front wall 42 of the front retainer 12 so that the front wall 42 is sandwiched or located between the plate main body 47 and the back surface of the hood 26 (see
[0072] On the other hand, the male terminal metal piece 30 may have to be removed from the cavity 27 after the locking between the lever lock 62 and the lock 23 is canceled In this case, the lever 11 is displaced toward the fitting start position while the operation portion 60 is held or operated. Displacement of the lever 11 toward the fitting start position moves the cam 55 on the inlet port side of the cam groove 68 to move the moving plate 13 toward the moving start position.
[0073] After the lever 11 returns to the fitting start position, a jig J is inserted into the guide groove 73 of the lever 11 (see
[0074] The lever 11 is pivoted in a direction opposite to the direction from the fitting start position to the fitting completion position and is brought to the detachment allowing position. When the lever 11 reaches the detachment allowing position, the interference portion 39 contacts the hitting surface 59 of the arc-like groove 71 to control further swinging of the lever 11 away the fitting start position (see
[0075] The moving plate 13 can be removed forward from the hood 26 when the lever 11 is at the detachment allowing position, and subsequently, the front retainer 12 can be removed forward from the hood 26. Thereafter, a terminal removing jig (not shown) is engaged with the lance 28 facing the back surface of the hood 26, and the lance 28 is deformed by the terminal removing jig substantially in the locking canceling direction (e.g. down in the drawing). In this state, the wire 29 connected to the male terminal metal piece 30 is drawn backward to remove the male terminal fitting 30 from the cavity 27.
[0076] In this manner, when the lever 11 is at the detachment allowing position, the cam 55 is separated from the detachment regulating portion 69 to set a state in which the moving plate 13 can be detached from the hood 26. For this reason, even though the lever 11 is removed from the housing 10, the moving plate 13 can be detached from the hood 26 to make it possible to perform the removing operation of the male terminal fittings 30. Thus, the cumbersome removing operation of the lever 11 need not be performed, so that a workload can be reduced.
[0077] A jig insertion hole into which a terminal removing jig is inserted is not formed easily in the front retainer 12. Thus, the removing operation of the male terminal fitting 30 is performed advantageously while the lever 11 is attached to the housing 10.
[0078] The locking between the stopper receiving portion 75 and the stopper 74 is maintained to prevent the lever 11 from being displaced unexpectedly from the fitting start position to the detachment allowing position. When the locking between the stopper receiving portion 75 and the stopper 74 is to be canceled, the cam plate 61 need only be deformed by the jig J. For this reason, the canceling operation can be performed easily. Furthermore, the guide groove 73 extends straight and opens on the outer surface of the cam plate 61 to guide the jig J when displacing the cam plate 61. The jig J is applied only along the guide groove 73 so that the cam plate 61 easily can be deformed elastically.
[0079] Furthermore, the arc-like groove 71 is formed in the lever 11 and curves substantially along the swinging directions of the lever 11. Additionally, the interference portion 39 of the housing 10 is brought into contact with the hitting surface 59 at the back end of the arc-like groove 71 at the detachment allowing position. In this state, the lever 11 stops at the detachment allowing position, and the detaching operation of the moving plate 13 can be started smoothly and rapidly.
[0080] The invention is not limited to the embodiment described with reference to the drawings. For example, the following embodiments are included in the scope of the invention.
[0081] At least one of a cam follower and a cam in a coupling state may only slide on the groove surface of a cam groove to exert a cam action.
[0082] A guide groove may be formed in a housing or may be formed both a cam plate and the housing.
[0083] A cam groove may have a bottomless shape penetrating a cam plate in a direction of plate thickness.
[0084] A lever may have a single-plate shape configured by only one cam plate.
[0085] A detachment regulating portion, a guide groove, a stopper, and/or a stopper receiving portion may be singly disposed.
REFERENCE SIGNS
[0086] 10 . . . housing [0087] 11 . . . lever [0088] 12 . . . front retainer [0089] 13 . . . moving plate [0090] 14 . . . mating housing [0091] 21 . . . cam follower [0092] 26 . . . hood [0093] 28 . . . lance [0094] 30 . . . male terminal fitting [0095] 31 . . . tab [0096] 39 . . . interference portion [0097] 46 . . . bending controlling portion [0098] 49 . . . insertion hole [0099] 55 . . . cam [0100] 59 . . . hitting surface [0101] 61 . . . cam plate [0102] 68 . . . cam groove [0103] 69 . . . detachment regulating portion [0104] 70 . . . passing port [0105] 71 . . . arc-like groove [0106] 73 . . . guide groove [0107] 74 . . . stopper [0108] 76 . . . stopper receiving portion [0109] J . . . jig