This non-provisional application claims priority under 35 U.S.C. § 119(a) on Patent Application No(s). 201710795226.9 filed in China, on Sep. 6, 2017, the entire contents of which are hereby incorporated by reference.
The invention is related to an electronic device and its docking station.
An electronic device needs a variety of communication functionalities. However, one kind of communication functionality requires a corresponding connection port and occupies a certain space of the electronic device. It seriously limits the communication functionality of a mobile electronic device. In addition, a volume or a weight of a conventional electronic device cannot be reduced because of the requirement of the communication functionalities.
One dock interface of the electronic device is a connection port hub. However, the connection between the connection port hub and the electronic device is usually easy to be broken. Hence, how to provide an expansion interface with high stability in connection is a problem to be solve.
This invention is to provide an electronic device and its docking station so as to provide an expansion interface with stable connection for the electronic device.
In one embodiment, an electronic device has a processor, a platform controller hub (PCH), a first communication PHY circuit, a second communication PHY circuit, a universal serial bus (USB) connection port, and a USB controller chip. The PCH is electrically coupled to the processor. The first communication PHY circuit is electrically coupled to the PCH and configured to convert a piece of first information into a segment of first format signal or convert the segment of first format signal into the piece of first information. The second communication PHY circuit is electrically coupled to the PCH and configured to convert a piece of second information into a segment of second format signal or convert the segment of second format signal into the piece of second information. The USB connection port is adapted for plugging into an external electronic device. The USB controller chip is respectively electrically coupled to the USB connection port, the PCH, the first communication PHY circuit and the second communication PHY circuit and configured to implement a conversion between the segment of first format signal and a segment of first USB signal and to implement a conversion between the segment of second format signal and a segment of second USB signal so as to implement a communication between the PCH and the USB connection port, a communication between the first communication PHY circuit and the USB connection port, and a communication between the second communication PHY circuit and the USB connection port.
In one embodiment, a docking station has a casing, a first buckle structure, a second buckle structure, a buckling button, a transmission mechanism, a first communication connection port, a second communication connection port, a first USB connection port, and a USB controller chip. The casing at least has a bottom plate, a first side wall and a cover. The transmission mechanism is in the casing and connected to the buckling button, the first buckle structure and the second buckle structure. The first USB connection port is adapted for plugging into an external electronic device. The USB controller chip is in the casing and respectively electrically coupled to the first USB connection port, the first communication connection port and the second communication connection port, and configured to implement a communication between the first USB connection port and the first communication connection port and a communication between the first USB connection port and the second communication connection port.
As above, the stability of the connection between the docking station and the electronic device is improved by the buckle structure. Further, the amount and the types of the connection ports are both increased by the USB controller chips in the docking station and in the electronic device.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only and thus are not limitative of the present invention and wherein:
In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically shown in order to simplify the drawing.
Please refer to
In a first embodiment of the present invention, taking a laptop as an example of the electronic device 1000, the PCH 1200 is electrically coupled to the processor 1100. The first communication PHY circuit 1300 is, for example, a display chip electrically coupled to the PCH 1200 and configured to convert the received information into a display signal such as a DisplayPort format signal, a digital visual interface (DVI) format signal, a video graphics array (VGA) format signal, a high definition multimedia interface (HDMI) format signal or a mobile high-definition link (MHL) format signal. The second communication
PHY circuit 1400 is electrically coupled to the PCH 1200 and configured to convert the received information into a communication packet signal such as a peripheral component interconnect express (PCIe) signal or a conventional network packet signal. The USB connection port 1500 is adapted for plugging into an external device 2000 so as to implement the communication between the external device 2000 and the electronic device 1000.
The USB controller chip 1600 is, for example, Thunderbolt chip, Thunderbolt 2 chip, or Thunderbolt 3 chip. The USB controller chip 1600 is respectively electrically coupled to the USB connection port 1500, the PCH 1200, the first communication PHY circuit 1300 and the second communication PHY circuit 1400, and is configured to implement the conversion between the display signal and the USB signal and the conversion between the communication packet signal and the USB signal. Hence, the USB controller chip 1600 is capable of implementing the communication between the PCH 1200 and the USB connection port 1500, the communication between the first communication PHY circuit 1300 and the USB connection port 1500, and the communication between the second communication PHY circuit 1400 and the USB connection port 1500.
In addition, please refer to
The casing 3100 of the docking station 3000 has the universal serial bus (USB) controller chip 3900 therein. The USB controller chip 3900 is respectively electrically coupled to the first USB connection port 3800, the first communication connection port 3600 and the second communication connection port 3700. The USB controller chip 3900 is configured to implement the communication between the first USB connection port 3800 and the first communication connection port 3600 and the communication between the first USB connection port 3800 and the second communication connection port 3600. The first communication connection port 3600 is, for example, a display device connection port, and its structure is such as a DisplayPort connection port, a DVI connection port, a VGA connection port, a HDMI connection port or a MHL connection port. In one embodiment, the docking station 3000 may have many first communication connection ports and each of the first communication connection ports has different structure. The second communication connection port 3700 is, for example, a network connection port and its structure is such as an RJ-45 port, an IEEE-1394 port, an RS-232 port, an RS-485 port or other adequate communication port, and the scope should not be limited in the present invention.
In the following paragraphs, some examples are taken to illustrate how the USB controller chip 1600 and the USB controller chip 3900 act. Please refer to
In another embodiment, please refer to
As to the system architecture of the combination of the electronic device 1000 and the docking station 3000 together, Please refer to
In this condition, if the processor 1100 is to display an image on the screen of the electronic device, the processor 1100 sends the information of the image via the PCH 1200 to the first communication PHY circuit 1300, a GPU for example. The first communication PHY circuit 1300 converts the information to the DisplayPort format signal or HDMI format signal so as to let the screen show the correct image. If the user now operates the electronic device 1000 to send the image to the display device 4000, the PCH make the first communication PHY circuit 1300 to send the DisplayPort format signal to the USB controller chip 1600 of the electronic device 1000, and the USB controller chip 1600 converts the DisplayPort format signal to the USB signal and sends the USB signal via the USB connection port 1500 of the electronic device 1000 to the first USB connection port 3800 of the docking station 3000. The USB controller chip 3900 of the docking station 3000 converts the USB signal to the DisplayPort format signal and sends it to the first communication connection port 3600 so that the display device 4000 displays the image.
In one embodiment, the docking station 3000 further has a first signal conversion chip 3710 respectively electrically coupled to the USB controller chip 3900 and the second communication connection port 3700. The first signal conversion chip 3710 is, for example, a network interface controller (NIC) capable of converting the peripheral component interconnect express signal into the network packet. Similarly, when the processor 1100 of the electronic device 1000 needs to communicate with the internet 5000, the processor 1100 sends the information via the PCH1200 to the second communication PHY circuit 1400 so that the second communication PHY circuit 1400 sends the received information to the USB controller chip 1600 of the electronic device 1000 with PCIe signal. The USB controller chip 1600 converts the received PCIe signal to the USB signal and sends the USB signal to the USB connection port 1500. The USB signal is sent to the USB controller chip 3900 of the docking station 3000 via the first USB connection port 3800 of the docking station 3000. The USB controller chip 3900 converts the received USB signal to PCIe signal and sends the PCIe signal to the first signal conversion chip 3710. The, the first signal conversion chip 3710 converts the PCIe signal to network packet and sends the network packet to the internet 5000 via the second communication connection port 3700. One having ordinary skill in the art shall understand that the signal transmission and signal conversion can be reversed so that the signal may be sent from the internet 5000 to the processor 1100 of the electronic 1000.
In another embodiment, the docking station 3000 further has many second USB connection ports 3810˜3840, a second signal conversion chip 3850 and a MUX-DEMUX 3860. The second signal conversion chip 3850 is electrically coupled to the USB controller chip 3900 and configured to convert the PCIe signal to the USB signal again. The USB signal transmitted between the electronic device 1000 and the docking station 3000 is, for example, a signal meeting the USB Type-C format while the USB signal obtained by the second signal conversion chip 3850 is USB 1.0/2.0/3.0 format signal, in one embodiment.
The MUX-DEMUX 3860 is respectively electrically coupled to the second signal conversion chip 3850 and a plurality of second USB connection ports 3810˜3840. Specifically, the MUX-DEMUX 3860 allows one among the plurality of second USB connection ports 3810˜3840 to electrically couple to the second signal conversion chip 3850 with time divisional technique.
In the aforementioned embodiments, to ensure that the signal transmission between the processor 1100 of the electronic device 1000 and the connection ports of the docking station 3000 is correct, the USB controller chip 1600 and the USB controller chip 3900 may insert an indication flag into a specified field of one packet when a conventional signal is converted into USB signal. When the USB signal is to be converted to the conventional signal, the signal format may be determined based on the indication flag. In one embodiment, if a DisplayPort format signal is converted into USB signal, the packet of the USB signal has the indication flag x01. Hence, when the USB controller chip 3900 receives the USB signal packet, the USB controller 3900, based on the indication flag x01, converts this USB signal packet into the DisplayPort format signal or other adequate display signal and sends it to the first communication connection port 3700.
In another embodiment, please refer back to
As above, the stability of the connection between the docking station and the electronic device is improved by the buckle structure. Further, the amount and the types of the connection ports are both increased by the USB controller chips in the docking station and in the electronic device.
Number | Date | Country | Kind |
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201710795226.9 | Sep 2017 | CN | national |