Abstract:
A connector mounting rack configured to assemble a plurality of connectors includes a panel, a frame and one or more first partitions. The panel has a plurality of openings formed in an array, each adjacent two of the openings separated by a portion of the panel. The frame is arranged at a back side of the panel. The frame has one or more first walls arranged corresponding to the portion of the panel between the openings along a first direction to define a slot between each adjacent two of the first walls. The slot communicates with the opening. Each of the one or more first walls has an assembling part. Each of the one or more first partitions has a first engaging part and removably connected to one of the one or more first walls by engaging the first engaging part with the assembling part.
Abstract:
A rotatable frame is provided for accommodating a connector. The rotatable frame can be used with a plate and includes a frame body, two positioning portions, and two pivots. The frame body has a first sidewall, a second sidewall, a top plate, and a bottom plate, wherein the first sidewall, the second sidewall, the top plate, and the bottom plate are connected to enclose an accommodation space for accommodating the connector and to form a connector inserting opening. The two positioning portions are respectively formed on the top plate and the bottom plate at one side that is near the connector inserting port. The two positioning portions respectively have a blocking surface, wherein the blocking surface obliquely extends away from the connector inserting opening. The two pivots respectively protrude from the outer side of the first sidewall and the outer side of the second sidewall coaxially.
Abstract:
An electrical connector includes a main body, a first cover, and a second cover. The main body includes a first connection portion, a wire inlet portion, and an accommodating space between the first connection portion and the wire inlet portion. The first cover is pivotally connected to the first connection portion to be rotatable relative to the main body between a first position and a second position. When the first cover is at the first position, the accommodating space is opened for installation. When the first cover is at the second position, the first cover at least partially closes the accommodating space for protection. The second cover is connected to the first cover and separably encloses a wire inlet hole with the wire inlet portion. The second cover is movable relative to the wire inlet portion to adjust the size of the wire inlet hole.
Abstract:
An electrical plug is provided. The electrical plug includes a body and a retention device. The body includes a first casing and a second casing. The second casing is pivotally connected to one side of the first casing and can rotate to make one of its ends away from one end of the first casing. The first casing and the second casing form a body inner space together. At least a portion of the retention device can rotate along the same direction as the second casing rotates.
Abstract:
An electrical plug is provided. The electrical plug includes a body and a retention device. The body includes a first casing and a second casing. The second casing is pivotally connected to one side of the first casing and can rotate to make one of its ends away from one end of the first casing. The first casing and the second casing form a body inner space together. At least a portion of the retention device can rotate along the same direction as the second casing rotates.
Abstract:
An electrical connector includes a plurality of channels and at least one module. The channels transmit a plurality of electrical signals, wherein each channel generates at least one crosstalk coupling with the other channels; the at least one crosstalk coupling varies with frequency. The crosstalk couplings between the channels are added as a crosstalk coupling sum. Each modulation module is connected with the channels, and the at least one modulation module adjusts the at least one crosstalk coupling to decrease the crosstalk coupling sum according to the relation between the at least one crosstalk coupling and the other crosstalk couplings.
Abstract:
A data cabling jack device for configuring a plurality of cables on an assembly frame is provided. The data cabling jack device includes a housing and an engaging structure. The housing has an accommodation space, wherein the housing includes a jack side and a cable side opposite to the jack side. The engaging structure is disposed on the housing and has an engaging switch and an engaging portion, wherein the engaging switch is switched between a release position and an engaging position. The release position and the engaging position are respectively disposed nearby the cable side and the jack side. The engaging portion engages the assembly frame when the engaging switch is switched from the release position to the engaging position to drive the engaging portion to protrude out of the assembly frame.
Abstract:
An adapting seat includes a first frame with a first pair of notches respectively defined in opposed inner walls of the first frame The second frame is able to be matingly inserted into the first frame and has a second pair of notches respectively defined in outer walls of the second frame and a third pair of notches respectively defined in outer walls of the second frame. The axis between the second pair of notches is orthogonal to the axis between the first pair of notches and the axis between the second pair of notches is orthogonal to the axis between the third pair of notches, such that the second pair of notches and the third pair of notches of the second frame enable the adapting seat to be mounted on a hole orientated in either the horizontal or vertical direction relative to the ground.
Abstract:
A connector mounting rack configured to assemble a plurality of connectors includes a panel, a frame and one or more first partitions. The panel has a plurality of openings formed in an array, each adjacent two of the openings separated by a portion of the panel. The frame is arranged at a back side of the panel. The frame has one or more first walls arranged corresponding to the portion of the panel between the openings along a first direction to define a slot between each adjacent two of the first walls. The slot communicates with the opening. Each of the one or more first walls has an assembling part. Each of the one or more first partitions has a first engaging part and removably connected to one of the one or more first walls by engaging the first engaging part with the assembling part.
Abstract:
A signal communication socket for connecting a signal line includes a socket housing defining a signal line channel therein and a slot thereon to communicate with the signal line channel, the slot having at least a first wall surface, and an elastic member detachably inserted into the slot, the elastic member abutting against the first wall surface through elastic extension when no external force is applied, thereby being positioned at the socket housing, wherein one side of the elastic member toward the signal line channel defines a part of a periphery of the signal line channel.