Patent classifications
H01R13/6275
STRAP CONNECTOR AND ASSEMBLY THEREOF WITH ENHANCED MATING RETENTION FORCE
A strap connector includes an insulating body, a number of conductive terminals, a movable component, an elastic member and a pull strap. The insulating body includes a main body portion having a first end wall and a second end wall. The movable component includes a first locking protrusion protruding beyond the first end wall. The pull strap is connected with the movable component. The pull strap is configured to drive the movable component to move in a moving direction. The strap connector includes a second locking protrusion protruding beyond the second end wall. The first locking protrusion and the second locking protrusion are adapted to lock with locking holes of a mating connector, thereby improving the mating retention force when mating with the mating connector. The present disclosure also discloses a strap connector assembly having the strap connector.
Connector and Connector Assembly
A connector and a connector assembly are disclosed. The connector has a housing adapted to be inserted into a mating housing of a mating connector; an elastic latch provided on an outer wall of the housing and having a locking part for locking the mating housing and an unlocking part for unlocking the locking part; and a connection position safety mounted on the outer wall of the housing and adapted to be moved between a safety position to prevent the elastic latch from being unlocked and a pre locking position to allow the elastic latch to be unlocked. When the locking part is locked to the mating housing and the connection position safety is in the pre locking position, the unlocking part is hidden inside the connection position safety, so that human finger cannot contact the unlocking part. Therefore, the present invention can effectively prevent the elastic latch from being accidentally unlocked and improve the use safety of the connector.
Connector assembly
The described connector assemblies are useful in wire-to-board systems. Some assemblies include a free-end connector that is attached to a twin-ax cable, and a fixed-end connector that is attached to a board. Embodiments include a free-end terminal set including a first signal terminal, a second signal terminal and a ground plate. The ground plate has a horseshoe shape and provides a ground terminal on opposing sides of the first and second signal terminals. Additionally, embodiments include a locking system between the free-end connector and fixed-end connector, and lead designs for the fixed-end connector utilizing a similar horseshoe shape as that used for the ground plate of the free-end connector.
PLUG CONNECTION WITH BACKLASH-FREE PRELOAD
Plug-in connection, comprising a plug-in connector (1) which can be plugged together with a mating plug-in connector, M also known as a pin housing (2), it being possible to at least indirectly lock the plug-in connector (1) with the mating plug-in connector (2), characterised in that a bushing housing (3) is provided which at least partially surrounds the plug-in connector (1) and provides the locking with the mating plug-in connector or pin housing (2), and in that the plug-in connector (1), the mating plug-in connector or the pin housing (2) and the bushing housing (3) are operatively interconnected by means of a lever mechanism and can be braced together.
POWER TRANSFER SYSTEM
A power transfer system includes a port panel assembly including a port panel, a locating pocket formed in the port panel, locking ports arranged in the locating pocket, and terminal assemblies attached to a rear side of the locating pocket and having conductive terminals, and a power transfer assembly having a transfer housing with access ports and terminal retainers, latches housed in the transfer housing to engage the locking ports, a spring arranged between the latches and pressing the latches to protrude outwardly from the transfer housing through the access ports, and connection members arranged in the terminal retainer and adapted be connected to an electric device. When the power transfer assembly is inserted into the port panel assembly, tip portions of the latches are inserted into the locking ports to be secured to the port panel assembly, and the connection members contact the conductive terminals of the port panel.
TERMINAL BLOCK
A terminal block includes an insulative seat, a flexible arm latch and a slider. The insulative seat has a slot and a sliding trough. A longitudinal direction of the sliding trough is parallel to a depth direction of the slot. The flexible arm latch is disposed on the insulative seat. A longitudinal direction of the flexible arm latch is parallel to the depth direction of the slot. The flexible arm latch has a first interfering portion and a hook. The slider is disposed in the sliding trough and longitudinally movable along the sliding trough. The slider has a second interfering portion. Either the first interfering portion or the second interfering portion is a slope. The first and second interfering portions abut against each other to push the slope to deflect the flexible arm latch to make the hook retract when the slider is traveling toward the slot.
Electrical connector assembly
An electrical connector assembly includes a receptacle housing having a retaining device with a coupling hook portion and a plug housing configured to be mated and locked with the receptacle housing. The plug housing has a lever movable from a first position in which the plug housing and the receptacle housing are unlocked to a second position in which the plug housing is locked with the receptacle housing. The lever is rotatably mounted about a shaft arranged in and passing through the plug housing. The coupling hook portion is configured to engage with the shaft and, in the second position, the shaft is in abutment with the coupling hook portion to positively lock the plug housing and the receptacle housing together.
LOW INSERTION FORCE CONTACT TERMINAL
A low insertion force contact terminal which has a conductor mating portion, a securing portion and a substrate mating portion. The conductor mating portion is configured to terminate a conductor therein. The securing portion is configured to secure the terminal in a terminal receiving cavity of a housing. The substrate mating portion extends from the securing portion. The substrate mating portion has at least two sections which have curved portions thereon. The at least two sections move independently, which allows the curved portions to exert a normal force on walls of through holes of a substrate to which the contact terminal is mated which is sufficient to provide a stable electrical connection while allowing for a low insertion force.
ELECTRICAL CONNECTOR HAVING AN INSULATIVE HOUSING AND A BOTTOM SUBSTRATE
An electrical connector includes: an insulative housing having a top wall and a pair of side walls; and a substrate secured to the insulative housing to constitute a bottom wall of the insulative housing, the substrate having plural front conductive pads at an upper face thereof and plural rear conductive pads at a lower face thereof in electrical connection with the plural front conductive pads.
Vibration-Proof Electrical High-Current Flat Socket Contact Device
An electrical flat socket contact device includes a contact chamber, a plurality of electrical contact springs arranged in the contact chamber, and a mechanical retaining spring arranged in the contact chamber separately from the electrical contact springs. A tab contact is insertable into the contact chamber. The electrical contact springs electrically contact the tab contact and the mechanical retaining spring mechanically retains the tab contact.