This application claims the priority benefit of Taiwan application serial no. 102101542, filed on Jan. 15, 2013. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The present invention is directed to a transmission station and more particularly, to a transmission station capable of simultaneously outputting power and transmitting signals.
2. Description of Related Art
With increasingly development of technology nowadays, the Internet has become an indispensable tool for modern people. In order to be compliable with different specifications or many types of network connection, various types of network device, such as a wireless access point (wireless AP), and a femtocell AP have developed accordingly. However, when a user uses multiple network devices at the same time, each of the different network devices has to be connected with its power supply through a power line and then connected with its network hub through a network line. Thus, the user has to separately buy a power supply, a power line and a network line for each of the network devices so that the cost for the user spending on the network devices is increased. Moreover, for the user, too many power supplies are too space-consuming, and it is inconvenient to organize lots of network lines and power lines. Therefore, it is necessary to provide a more convenient integration method for the user to save troubles when using multiple network devices at the same time.
The present invention is directed to a transmission station integrating a power supply with a network hub.
The present invention is directed to a transmission station adapted to provide power to one or more network devices and transmit signals to the network devices. The transmission station includes a housing, a network hub and a power supply. The housing surrounds a containing space and has a supporting surface, and the network device is disposes on the supporting surface. The network hub is disposed in the housing and transceives a plurality of transmission signals. The network hub includes a plurality of signal-transmitting ports to transceives the transmission signals to each of the network devices, respectively. The power supply is disposed in the housing, produces a plurality of output power and a operating power and provides the operating power to the network hub. The power supply includes a plurality of power-outputting ports to provide the output power to each of the network devices, respectively.
In an embodiment of the present invention, the power supply further produces an expanded output power and the network hub further transceive an expanded transmission signal, such that the transmission station provides the expanded output power and transmits the expanded transmission signal to another transmission station.
In an embodiment of the present invention, the housing further includes a fastening structure, and the transmission station is adapted to be fastened with another transmission station through the fastening structure.
In an embodiment of the present invention, the transmission station further includes a circuit board and an expansion connector. The circuit board is disposed in the containing space, and the network hub and power supply are disposed on the circuit board. The expansion connector is disposed on a first side of the housing and coupled with the circuit board. The expansion connector receives the expanded output power provided by the power supply and the expanded transmission signal provided by the network hub.
In an embodiment of the present invention, the housing includes a plurality of connection openings located on a second side of the housing. The signal-transmitting ports and the power-outputting ports are exposed from the connection openings. Therein, the second side is different form the first side.
In an embodiment of the present invention, the network hub includes a plurality of network lines and each of the network lines passes through the corresponding connection opening to connect with the corresponding signal-transmitting port and the corresponding network device. The power supply includes a plurality of power lines, and each of the power lines passes through the corresponding connection opening to connect with the corresponding power-outputting port and the corresponding network device.
In an embodiment of the present invention, one end of each of the power lines is connected with the corresponding power-outputting port, and, and the other end of each of the power lines is connected with a power adaptor or a universal serial bus (USB) connector plug.
In an embodiment of the present invention, the housing includes a plurality of containing slots disposed at the second side of the housing, and each of the network lines and each of the power lines are retracted in the corresponding containing slot.
In an embodiment of the present invention, the housing a plurality of side covers pivoted to the housing and covering the corresponding containing slots. Each of the connection openings is disposed on the corresponding side cover.
In an embodiment of the present invention, the housing further includes a supporting portion contacting the supporting surface and at least one of the network devices leans against the supporting portion.
To sum up, the power supply of the transmission station of the present invention provides the operating power to the network hub and provides the output power to each of the network devices. Meanwhile, the power supply and the network hub are integrated in the transmission station, such that a user may use the transmission station to provide power and transceive signals to a plurality of network devices. Moreover, by integrating the power supply and the network hub integrated in the transmission station, an advantage of space saving may be achieved.
In order to make the aforementioned and other features and advantages of the present invention more comprehensible, several embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the present invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the present invention and, together with the description, serve to explain the principles of the present invention.
The power supply 130 is disposed in the housing 110 and configured to receive an input power P-IN and produce an operating power 132 and N output power 131-1, 131-2, . . . and 131-N. The operating power 132 is provided to the network hub 120, and the output power 131-1, 131-2, . . . , 131-N is provided to the N network devices 50-1, 50-2, . . . and 50-N through N power-outputting ports 133-1, 133-2, . . . and 133-N, respectively. In the present embodiment, N is an arbitrary positive integer and represents a number of the signal-transmitting ports and a number of the power-outputting ports of the network hub 120, and the present invention is not intent to limit the value of N.
As illustrated in
In the present embodiment, the power supply 130 and the network hub 120 are integrated in the transmission station 100. The transmission station 100 provides power and transceiver a plurality of transmission signals to the N network devices 50-1, 50-2, . . . and 50-N. As such, a user may connect a plurality of network devices merely through the transmission station 100. In addition, by integrating the power supply 130 and the network hub 120 in the transmission station 100, an advantage of space saving may be achieved. Accordingly, the transmission station 100 has convenience of usage.
Referring to
It is to be mentioned that in the present embodiment, the network devices 50-1, 50-2 and 50-3 are not only connected with the transmission station 100, but also separately disconnected from each other and individually used. Accordingly, the network devices 50-1, 50-2 and 50-3 have good usage flexibility.
Moreover, the network devices 50-1, 50-2 and 50-3 of the present embodiment may be the same type or different types of network devices, such as a wireless access point (AP), a femtocell access point and an ADSL router. The network device 50 disposed on the transmission station 100 of the present invention is not limited to the aforementioned types.
Additionally, the transmission station 100 depicted in
Referring to
Referring to
To be more specific, the network hub 120 includes a plurality of network lines 123 (which is illustrated as one in
Here, it is to be mentioned that in the present embodiment, each of the network devices 50 is wired connected with the corresponding signal-transmitting port 121 and the corresponding power-outputting ports 133, but the present invention is not limited thereto. For instance, each of the network devices 50 may further include a network connector and a power connector and be plugged into the corresponding signal-transmitting port 121 and the corresponding power-outputting port 133 by using the network connector and the power connector so as to achieve providing power and transceiving signals, likewise.
Referring to
In addition, the housing 110 further includes a supporting portion 114. The supporting portion 114 contacts the supporting surface 110a, and each of the network devices 50 leans against the supporting portion 114 so as to avoid the quality of the transmission signals being influenced due to the network device 50 wobbling when being placed on the supporting surface 110a. In the present embodiment, each of the network devices 50 may be fastened on the transmission station 100 by, for example, being locked so to improve the stable effect of each of the network devices 50 being fastened to the transmission station 100.
In light of the foregoing, the power supply of the transmission station of the present invention may provide the operating power to the network hub and provide the output power to each of the network devices. Meanwhile, the power supply and the network hub are integrated in the transmission station, such that the user may provide power and transceive signals to the plurality of network devices merely by using the transmission station. In addition, by integrating the power supply and the network hub in the transmission station, an advantage of space saving may be achieved. In addition, the transmission station includes the containing slots for retracting the network line and the power lines so as to solve the problem of line retraction inconvenience. Accordingly, the transmission station has good usage convenience.
Moreover, the transmission station of the present invention further has an expansion capability, and the expanded output power provided by the power supply and the expanded transmission signal provided by the network hub may be transmitted to another transmission station through the expansion connector. Thus, the transmission station of the present invention further has good usage flexibility.
Although the invention has been described with reference to the above embodiments, it will be apparent to one of the ordinary skill in the art that modifications to the described embodiment may be made without departing from the spirit of the invention. Accordingly, the scope of the invention will be defined by the attached claims not by the above detailed descriptions.
Number | Date | Country | Kind |
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102101542 | Jan 2013 | TW | national |