Patent classifications
H01R43/26
Connectors for use in high pressure coax core ejection and fiber optic cable injection
A connector includes a first connector body having a through hole configured to receive a conduit, a first washer disposed in the first connector body, the first washer being configured to permit the conduit to be pushed in a first direction through the through hole while resisting movement of the conduit in a second direction opposite to the first direction, a second connector body configured to be coupled to the first connector body, the second connector body having a through hole configured to receive a tubular member, and a second washer disposed in the second connector body, the second washer being configured to permit the tubular member to be pushed in the second direction through the through hole of the second connector body and into the second connector body while resisting movement of the tubular member in the first direction.
Connectors for use in high pressure coax core ejection and fiber optic cable injection
A connector includes a first connector body having a through hole configured to receive a conduit, a first washer disposed in the first connector body, the first washer being configured to permit the conduit to be pushed in a first direction through the through hole while resisting movement of the conduit in a second direction opposite to the first direction, a second connector body configured to be coupled to the first connector body, the second connector body having a through hole configured to receive a tubular member, and a second washer disposed in the second connector body, the second washer being configured to permit the tubular member to be pushed in the second direction through the through hole of the second connector body and into the second connector body while resisting movement of the tubular member in the first direction.
Electronic plug having a locking assembly for securing to an electronic port
Example implementations relate to an electronic plug having a locking assembly for securing within an electronic port having a receptacle. The locking assembly includes a cantilever beam, a deformable arm, and an axle rotatably coupled to a connector of the electronic plug. The cantilever beam extends from the axle, where a free end of the cantilever beam includes a locking tab aligned to a recess of the connector. The deformable arm extends from the axle, where an open end of the deformable arm is rested on the connector. In a biased state of the deformable arm, the locking tab is positioned below the recess to allow movement of the connector in and out of the receptacle. In a relaxed state of the deformable arm, the locking tab protrudes above the recess to allow movement of the connector into the receptacle and prevent movement of the connector out of the receptacle.
Robot hand and robot system
The robot hand holds a wire harness having a long harness main body and a connector connected to an end of the harness main body. The robot hand includes a fixed holding portion which holds the harness main body a vicinity of the end thereof, a pressing portion movable relative to the fixed holding portion in a longitudinal direction of the harness main body held by the fixed holding portion, and a driving unit which moves the pressing portion in a direction away from the fixed holding portion such that the pressing portion presses the connector outwardly in the longitudinal direction of the harness main body.
Robot apparatus for producing electronic apparatus
A robot apparatus includes a clamp mechanism; a transport mechanism; and a control unit. The clamp mechanism includes a first finger that has a first support surface and a housing portion and a second finger. The first support surface supports an aligned wire group that includes a plurality of wires, the housing portion includes a guide wall that is connected to the first support surface and regulates an amount of movement of the band member in a width direction. The second finger has a second support surface facing the first support surface and a facing portion being connected to the second support surface and facing the housing portion. The transport mechanism is capable of moving the clamp mechanism. The control unit controls a grip force of the clamp mechanism and a direction of movement of the clamp mechanism by the transport mechanism.
Robot apparatus for producing electronic apparatus
A robot apparatus includes a clamp mechanism; a transport mechanism; and a control unit. The clamp mechanism includes a first finger that has a first support surface and a housing portion and a second finger. The first support surface supports an aligned wire group that includes a plurality of wires, the housing portion includes a guide wall that is connected to the first support surface and regulates an amount of movement of the band member in a width direction. The second finger has a second support surface facing the first support surface and a facing portion being connected to the second support surface and facing the housing portion. The transport mechanism is capable of moving the clamp mechanism. The control unit controls a grip force of the clamp mechanism and a direction of movement of the clamp mechanism by the transport mechanism.
Connector assembly with strain relief device in two parts
Connector assembly comprising a housing and a strain-relief device attached to the housing for clamping a cable in a fixed position at the rear opening of the housing. The strain-relief device comprises first and second portions, both made of a single part and being detachable from the housing. The first portion has a first arcuate surface engaging the outer sheath of the cable, and the first portion also comprising first retaining means engaging the housing for retaining the first portion on the housing. The second portion has a second arcuate surface also engaging the outer sheath, and the second portion also comprising second retaining means engaging the housing for retaining the second portion on the housing. Strain-relief device designed to be mounted on a connector. Method for mounting the strain-relief device with a connector assembly.
Connector assembly with strain relief device in two parts
Connector assembly comprising a housing and a strain-relief device attached to the housing for clamping a cable in a fixed position at the rear opening of the housing. The strain-relief device comprises first and second portions, both made of a single part and being detachable from the housing. The first portion has a first arcuate surface engaging the outer sheath of the cable, and the first portion also comprising first retaining means engaging the housing for retaining the first portion on the housing. The second portion has a second arcuate surface also engaging the outer sheath, and the second portion also comprising second retaining means engaging the housing for retaining the second portion on the housing. Strain-relief device designed to be mounted on a connector. Method for mounting the strain-relief device with a connector assembly.
Connector assembly for electrical appliance and system and method including same
A connector assembly includes an electrical plug connectable to an electrical outlet, an inner collar, and an outer collar disposed radially outward from the inner collar. The inner collar includes a plurality of jaws disposed circumferentially about the electrical plug. Each jaw of the plurality of jaws includes threads defined along an outer surface of each jaw. The outer collar includes at least one thread defined along an inner surface of the outer collar. Rotation of the outer collar relative to the inner collar causes the at least one outer collar thread to rotatably engage the inner collar threads and the plurality of jaws to deflect inward such that the plurality of jaws engages and compresses the electrical outlet when the electrical outlet is connected to the electrical plug.
Connector assembly for electrical appliance and system and method including same
A connector assembly includes an electrical plug connectable to an electrical outlet, an inner collar, and an outer collar disposed radially outward from the inner collar. The inner collar includes a plurality of jaws disposed circumferentially about the electrical plug. Each jaw of the plurality of jaws includes threads defined along an outer surface of each jaw. The outer collar includes at least one thread defined along an inner surface of the outer collar. Rotation of the outer collar relative to the inner collar causes the at least one outer collar thread to rotatably engage the inner collar threads and the plurality of jaws to deflect inward such that the plurality of jaws engages and compresses the electrical outlet when the electrical outlet is connected to the electrical plug.