Abstract:
Connector receptacles that can be easily and reliably assembled to form ground shields. One example provides an inner shell having one or more alignment features and an outer shell having one or more corresponding alignment features. The one or more alignment features on the inner shell may mate with the one or more alignment features on the outer shell. When the one or more alignment features on the inner shell mate with the one or more alignment features on the outer shell, the outer shell may be mechanically secured to the inner shell, the outer shell and the inner shell may be electrically connected, and the outer shell may be aligned to the inner shell. The alignment features may be protrusions such as dimples, openings or holes, or other features.
Abstract:
A modular jack is composed of: a base connector installed on a printed circuit board, and a socket connector with a parallel crank mechanism at an extremity thereof, the parallel crank mechanism being slidably connected to the base connector and switching an upper housing between a raised state and a lowered state. When the upper housing is laid toward the front side of the socket connector, the socket connector can be housed inside the casing and both faces of the upper housing, the socket housing, and the base housing are made in a flat plate-like shape. This contributes to height reduction in the modular jack. The socket connector is configured such that, when the upper housing is pulled out from a side face of the casing and raised outside the casing, a plug can be electrically connected to the socket connector.
Abstract:
A USB socket is disposed on a casing for connecting to a USB plug. The USB socket includes a piercing structure, a substrate and a plurality of terminals. The piercing structure is formed on a surface of the casing, and a main board is disposed inside the casing. An internal wall of the piercing structure can buckle the USB plug when the USB plug inserts into the piercing structure. The substrate is disposed on the main board and located inside the piercing structure. An integrated circuit is disposed on the substrate. The plurality of terminals is disposed on the substrate and coupled to the integrated circuit. The USB plug is electrically connected to the substrate and the terminals when the USB plug inserts into the piercing structure.
Abstract:
A computer component mounting assembly includes a carrier to support a hard drive and a data connector. The carrier is configured to slidably receive the hard drive along a first axis. The data connector includes a first connector configured to mate to pins of the hard drive, a second connector configured to mate to a SATA data connector, and a flexible cable connecting the two. The first connector includes an alignment feature to engage a corresponding alignment feature on the hard drive. The first connector is coupled to the carrier and slidable in a plane perpendicular to the first axis, and the first connector is configured such that when carrier receives the hard drive and the alignment feature engages the corresponding alignment feature the first connector moves in the plane perpendicular to the first axis to provide alignment of the first connector to the pins of the hard drive.
Abstract:
A connector assembly including an assembly housing having a leading end, a back end, and an interior cavity extending therebetween. The interior cavity opens to the leading end. The connector assembly also includes a communication connector that is disposed in the interior cavity proximate to the leading end and movably held therein. The connector assembly also includes a board connector located a distance away from the communication connector. The connector assembly also includes a flexible cable assembly that has communication cables extending between and communicatively coupling the board connector and the communication connector. The communication connector is configured to engage a mating connector when the communication connector and the mating connector are mated along a mating axis. The communication connector and the cables are permitted to float relative to the assembly housing when the communication connector mates with the mating connector.
Abstract:
A card reader is disposed in a case body of an electronic device for connecting an electronic card. The card reader includes an electrical connection socket, at least one guiding member, at least one guiding rail and a cover. The electrical connection socket is disposed in the case body for inserting an electrical connector of the electronic card thereinto. The guiding member is disposed in the case body and provides a guiding slot extending along a guiding direction. The guiding direction is parallel to a direction in which the electrical connector is inserted into the electrical connection socket. The guiding rail includes a sliding portion sliding in the guiding slot and a lower support portion extending from the sliding portion for guiding the electronic card to pass through the insertion hole of the case body. The cover is pivoted to the guiding rail and for closing the insertion hole.
Abstract:
A connector includes a main body defining a mounting hole extending through bottom and top sides of the main body, and an indicating pin slidably received in the mounting hole of the main body. When the connector is manipulated to be coupled to an on-board connector, a base of the on-board connector moves the indicating pin upwards to make a top end of the indicating pin extend out of the main body to indicate that the connector is properly coupled to the motherboard.
Abstract:
A transmission port module adapted to an electronic device is disclosed. The electronic device includes a casing whereon a containing slot is formed. According to an embodiment, the transmission port module includes at least one transmission port and a housing covering the at least one transmission port. The housing is installed inside the containing slot in a detachable manner, such that the at least one transmission port is hidden inside the casing as being not in use by detachment and installation of the housing. According to another embodiment, the transmission port module includes at least one transmission port and a rotational holder. The rotational holder holds the at least one transmission port and drives the at least one transmission port to rotate relative to the casing, such that the at least one transmission port is hidden inside the casing as being not in use by rotation of the rotational holder.
Abstract:
An electronic device assembly structure comprises two electronic devices and at least one connection module. Each electronic device includes a body and at least one USB located on the body. The connection module connects to the two electronic devices and includes an electric connection unit and a fastening unit. The electric connection unit is electrically inserted into the USBs of the two electronic devices. The fastening unit fastens the bodies of the two electronic devices together in an integrated manner.
Abstract:
An electronic apparatus including a connector configured to electrically connect with a terminal of a second electronic device; a first detector configured to detect an electrical connection between the connector and the terminal; a second detector configured to detect physical contact between the connector and the terminal; and circuitry configured to control a lock structure based on outputs of the first and second detectors.