Abstract:
A remotely controllable receptacle system is disclosed. The remotely controllable receptacle system includes a remote control device for emitting a first request signal and a searching signal, and a plurality of receptacle devices for emitting a first reply signal according to the first request signal. The remote control device determines whether the first reply signal is received and the receptacle device emitting the first reply signal is classified as the vicinity receptacle device and the receptacle device not emitting the first reply signal is classified as the missing receptacle device. The vicinity receptacle device is configured to emit a second request signal according to the searching signal and determine whether the missing receptacle device emits a second reply signal according to the second request signal before a mutual communication between the remote control device and the missing receptacle device via the vicinity receptacle device is established.
Abstract:
A wireless transmission assembly includes a power cord and a communication outlet. The power cord includes a plurality of plug pins, an AC wire set, a transceiver, and a signal wire. Two opposite ends of the AC wire set are respectively connected to the plug pins and a mating electronic device. Two opposite ends of the signal wire are respectively connected to the transceiver and the mating electronic device. The communication outlet includes a plurality of socket pins, a communicator, and a wireless module. The socket pins are detachably connected to the plug pins. The communicator is arranged adjacent to the socket pins and is configured to cooperate with the transceiver in a wireless signal connection for getting information about the mating electronic device. The wireless module is electrically connected to the communicator, and is configured to transmit the information from the communicator to the external electronic device.
Abstract:
A wall socket includes a main body and a socket panel. The main body includes a socket portion. The socket portion includes an AC output area and a DC output area. The DC output area is disposed with at least two DC output sockets. The AC output area is disposed with a two-hole socket and a three-hole socket. The socket panel is disposed on the body and has an opening to expose the socket portion. The AC output area and the DC output area are arranged horizontally side by side. The two-hole socket is disposed between the DC output sockets and the three-hole socket.
Abstract:
A power strip adapted for receiving an alternating-current power includes a plug, a main body, and a cord connected there between. The plug includes at least two conductive pins and an output device. The main body includes at least one socket and a converting circuit. The cord includes an electrically insulating cover, and an alternating-current transferring wire and a direct-current transferring wire, which are wrapped in the electrically insulating cover. The alternating-current transferring wire is electrically connected between the conductive pins and the socket. The direct-current transferring wire is electrically connected between the output device and the converting circuit. The plug is for transferring the alternating-current power to the main body through the alternating-current transferring wire. The converting circuit is for converting the alternating-current power to a direct-current power and transferring the direct-current power to the output device through the direct-current transferring wire.