Abstract:
An antenna device. The antenna device includes a printed circuit board, a conductive shield, a first connection portion and a second connection portion. The printed circuit board has a feed point and a ground plane insulated from the feed point. The conductive shield surrounds the printed circuit board. The first connection portion is substantially perpendicular to the printed circuit board, electrically connecting the feed point and the conductive shield. The second connection portion is substantially perpendicular to the printed circuit board, electrically connecting the ground plane and the conductive shield.
Abstract:
Wireless network base stations capable of receiving video signals are provided. A wireless network base station includes a video signal receiver, a video decoding unit, a first Ethernet port, and a processor. The video signal receiver receives a video signal. The video decoding unit connected to the video signal receiver decodes the video signal. The first Ethernet port connected to a network receives first data packets therefrom and transmits second data packets thereto. The processor, connected to the video decoding unit and the first Ethernet port, converts the decoded video signal to video packets and controls reception and transmission of the video packets, the first data packets, and the second data packets. The processor transmits the video packets and the first data packets to a computer and receives the second data packets from the computer wirelessly.
Abstract:
A method of downloading data from a network using a network device. A network device coupled to a network is first provided. The network device uses a network protocol to download data from the network. Next, the network device downloads data corresponding to search parameters from the network according to the network protocol. The downloaded data can be stored on a storage device. The network can be the Internet or a wireless one.
Abstract:
Wireless network base stations capable of receiving video signals are provided. A wireless network base station includes a video signal receiver, a video decoding unit, a first Ethernet port, and a processor. The video signal receiver receives a video signal. The video decoding unit connected to the video signal receiver decodes the video signal. The first Ethernet port connected to a network receives first data packets therefrom and transmits second data packets thereto. The processor, connected to the video decoding unit and the first Ethernet port, converts the decoded video signal to video packets and controls reception and transmission of the video packets, the first data packets, and the second data packets. The processor transmits the video packets and the first data packets to a computer and receives the second data packets from the computer wirelessly.
Abstract:
A portable electrical device with a planar antenna for wireless transmitting data includes a host case for assembling a motherboard therein and a display module pivotally connected to the host case. The display module has a housing for containing a display panel and the planar antenna. The planar antenna is connected to the motherboard via a transmitting line for transmitting and receiving the signals to and from the planar antenna.
Abstract:
Earphones are provided. An earphone includes a first speaker, a second speaker, and an extendable winding structure. The first speaker can hang on one ear of a person. The second speaker is detachably fixed on the first speaker. The extendable winding structure is disposed in the first speaker and connected with the second speaker. The second speaker can be moved to the other ear of the person by extending the extendable winding structure.
Abstract:
An antenna device. The antenna device includes a printed circuit board, a conductive shield, a first connection portion and a second connection portion. The printed circuit board has a feed point and a ground plane insulated from the feed point. The conductive shield surrounds the printed circuit board. The first connection portion is substantially perpendicular to the printed circuit board, electrically connecting the feed point and the conductive shield. The second connection portion is substantially perpendicular to the printed circuit board, electrically connecting the ground plane and the conductive shield.
Abstract:
An antenna module includes a circuit board, a differential-type amplifier, and a dipole antenna. The dipole antenna can be formed with two electrodes disposed on the circuit board. With the structure of the antenna module, a transmitting antenna can be designed by coupling the two electrodes of the dipole antenna to output terminals of the differential-type amplifier so as to transmit signals. In design of a receiving antenna, the two electrodes of the dipole antenna can be coupled to input terminals of the differential-type amplifier so as to receive signals. Further, if the main function chip has built-in differential power amplifier or differential low noise amplifier, a circuit module for wireless signal transmitting and receiving can be formed by directly coupling the dipole antenna to the differential power amplifier or the differential low noise amplifier.
Abstract:
A structure for an Inverted-F antenna includes: a radiating portion forming a longitudinal side of the Inverted-F antenna, a support portion integrally formed with the radiating portion and perpendicularly connected to the radiating portion, a feed-in portion integrally forming a center extending portion of the Inverted-F antenna and a signal transmission line connected to the feed-in portion and the ground plane for signal transmission between the antenna and a connected communication host. The signal transmission line includes a core wire and a ground wire. The core wire is connected to the feed-in portion and the ground wire is connected to the ground plane. The antenna is capable of keeping a stable radio frequency characteristic with its simple and compact structure.