Abstract:
A tool (10) having a frame (16), handles (22) pivotably mounted to the frame, a drive system (18) connected to the frame, and a user actuated trigger (26) pivotably connected to a first one (22L) of the handles. The drive system (18) has a longitudinally movably actuator (32). The improvement comprises a linkage (64) between an end (54) of the trigger (26) and the actuator (32) of the drive system.
Abstract:
Pack (1) provided with an antenna extension (16) for electronic cards (2), the antenna extension module being made of plastic materials and fixedly joined to an external shielding (8, 9) of this electronic card by a device comprising two arms (20, 21) irreversibly held on at least one of the shielding shells (8, 9) of the pack. The two shielding shells are then irreversibly joined together by means of projecting blades (31) and notches (32) of the borders (33, 34) of these shells, force-fitted to each other. This pack is preferably designed to receive a PCMCIA type card.
Abstract:
A pin and socket electrical connector (10) comprising an insulating housing (12), at least one contact (16), and a printed circuit board (PCB) section (14). The insulating housing (12) has contact holding channels (24, 26) formed therethrough. The contact is mounted to the insulating housing. The contact is held in one of the contact holding channels in the housing with a terminal section (47) of the contact (16) extending from a portion (22) of the housing (12). The PCB section (14) is connected to the housing (12). The PCB section interfaces between a conductor terminated to the connector and the contact (16) in the housing (12).
Abstract:
The invention describes a control unit of a valve mechanism with an electromagnetic coil (1) where the electromagnetic coil (1) is connected to the coil (1) via an electrically conducting spring-mounted connecting ridge (10).
Abstract:
A connector comprises a housing of insulating material and a metal plate attached to a surface of the housing. This surface is provided with a plurality of pegs of insulating material and the metal plate is provided with a plurality of fixation hols co-operating with the pegs to attach the metal plate to the housing. The passage of each fixation hole of the plate is smaller than the cross-section of the corresponding peg of the housing. The plate is further provided with an entrance hole for each fixation hole. This entrance hole debouches into the fixation hole ad has a passage larger than the cross-section of the corresponding peg. The connector is manufactured in that the metal plate is placed on said surface with the entrance holes receiving the pegs with play, whereafter the metal plate is moved along the surface such that the pegs are forces into the fixation holes.
Abstract:
A receptacle connector (1) for a mobile telephone or the like comprises a housing (3) of insulating material, a shielding (4), and a plurality of contact terminals (5). Channels (13) extend parallel to the lateral sides (11) between the front and backsides (9, 10) and the contact terminals are made as strip like elements mounted in these channels. At least some of the contact terminals each are provided with two retention parts (14, 15) having a width greater than the width of the channels providing a retention force mainly parallel to the upper and lower sides. The contact terminals (5) each are provided with a butt-mount contact end (16) and a tail end (17), wherein the retention part at the tail end has a width greater than the width at the butt-mount contact end. A plug connector (34) for interconnecting a mobile device to a stationary device, comprises a housing (36) of insulating material, a shielding (44), a plurality of contact terminals (39) mounted in the housing, at least one latch element (55) to latch the plug connector in a receptacle connector (1) of the mobile device, and a button (60) to operate the latch element. The housing of the plug connector is provided with at least one locating peg (51) to be received in a chamber (51') of the receptacle connector.
Abstract:
A connector structure providing a female connector (10) fixed to a substrate (B) and a male connector (20) provided on a hard disc drive (D) to be mounted on the substrate (B), wherein grooves (12) that open continuously on the upper surface (11b) and the side surface (11c) thereof are provided formed substantially perpendicular to said substrate (B) on the female connector (10), and at the same time, female contacts (13) are provided inside these grooves (12), male contacts (22) that engage the female contacts (13) are provided so as to protrude sideways from the hard disc drive (D), the hard disc drive (D) is brought into contact to the substrate from above, and by this process, the male contacts (22) are inserted into the grooves (12) and engages with the female contacts (13).