The present invention relates to a display, and more particularly to a display with a docking function.
When using a display, a user often utilizes a docking station to expand the interfaces for various signals, so as to simultaneously connect multiple displays and many other devices. However, since the display and the docking station are two different devices that need their own spaces, using these two devices at the same time wastes a lot of space. In addition, when the docking station is only connected to one display, the internal hub for video distribution cannot be turned off because the hub is set on the video transmission path, resulting in unnecessary power consumption.
An embodiment of the present invention provides a docking display, which comprises a first video output port, a second video output port, a multi stream transport (MST) port, a display panel, a control circuit and a hub. The MST port is configured to input at least one video stream. The MST controller comprises a first input port coupled to the MST port for receiving the at least one video stream, a first output port for outputting the at least one video stream, a second input port, and a second output port coupled to the first video output port. The display panel is configured to display images. The control circuit comprises a first input port coupled to the first output port of the MST controller for receiving the at least one video stream, a first output port for outputting a first video stream of the at least one video stream to the display panel, so that the display panel displays the images according to the first video stream, and a second output port for outputting video streams of the at least one video stream other than the first video stream when the at least one video stream comprises a plurality of video streams. The hub comprises an input port coupled to the second output port of the control circuit, a first output port coupled to the second input port of the MST controller, and a second output port coupled to the second video output port. When the at least one video stream comprises the plurality of video streams, the hub outputs a second video stream of the plurality of video streams from the first output port of the hub or the second output port of the hub.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
In an embodiment of the present invention, the docking display 10 may further comprises a universal serial bus (USB) hub 110 and a signal mixer 90, and the MST controller 30 may further comprise a data input port I33. An input port I92 of the signal mixer 90 is coupled to the output port O63 of the MST hub 60 to receive the video stream output from the output port O63. The USB hub 110 comprises a data input port I11 for connecting to a USB device (such as a mouse or keyboard with a USB interface) to receive a data string St (such as digital signals generated by the mouse or keyboard) from the connected USB device. The USB hub 110 can transmit the data string St received by the data input port I11 to a data input port I91 of the signal mixer 90 and the data input port I33 of the MST controller 30. The data input port I91 and the data input port I33 can both be USB ports. The signal mixer 90 is coupled to the MST hub 60, the USB hub 110 and the video output port 100, and is used to mix the video stream V2 and the data string St and output the mixed signal of the video stream V2 and data string St via the video stream output port 100. Similarly, the MST controller 30 can mix the video stream V2 and the data string St, and output the mixed signal of the video stream V2 and the data string St via the video output port 80.
In one embodiment of the present invention, the docking display 10 may not additionally comprise the USB hub 110, and the data input port 191 of the signal mixer 90 may be directly used as the data input port of the docking display 10 to replace the data input port I11 of the USB hub 110. In other words, the data input port I91 of the signal mixer 90 directly receives the data stream St from the external USB device without going through the USB hub 110. In another embodiment of the present invention, the data input port I11 of the USB hub 110 is replaced by the data input port I33 of the MST controller 30, and the data input port I33 directly receives the data string St from the external USB device instead of through the USB hub 110.
As mentioned above, the at least one video stream Vin can be one or more video streams of the video streams V1 to V4. When the at least one video stream Vin comprises a plurality of video streams, video streams of the at least one video stream Vin other than the first video stream V1 are sent to the MST hub 60 by the control circuit 40 through the output port O42. When the MST hub 60 receives any video stream from the control circuit 40, the MST hub 60 distributes the received video stream to one of the video output ports 70, 80 and 100.
In one embodiment of the present invention, when the at least one video stream Vin includes only the video stream V1, since the MST hub 60 will not receive any video stream, the MST hub 60 would be in a sleep mode at this time, thereby saving the overall power consumption of the docking display 10.
In one embodiment of the present invention, the docking display 10 further comprises a video input port 120 for receiving the external video stream V5, and outputting the external video stream V5 to the input port I42 of the control circuit 40. The control circuit 40 outputs one of the video stream V1 and the external video stream V5 to the display panel 50 according to the settings of the docking display 10, so as to drive the display panel 50 to display images according to the received video stream V1 or V5.
Each input port and output port of the MST controller 30, the control circuit 40 and the MST hub 60, the video output ports 70, 80 and 100, and the video input port 120 could be selected from a group consisting of a universal serial bus (USB) port, a DisplayPort, a Thunderbolt port, a multi-function display port (Multi-Function DisplayPort; MFDP), and other ports that support the multi stream transport (MST) function. In one embodiment of the present invention, the video output port 70 and the output port O62 of the MST hub 60 can be a USB port, a DP port, a Thunderbolt (TBT) port, a multi-function display port (MFDP), a high definition multimedia interface (HDMI) port, or a video graphics array (VGA) port, and the MST hub 60 may have a video format conversion function. When the video format received by the input port I61 is different from the video format corresponding to the video output port 70, the MST hub 60 would convert the video, which is expected to be output to the video output port 70, into a video format compatible to the video output port 70, and then output the converted video through the video output port 70.
According to the above-mentioned embodiments, the docking display of the present invention not only has the function of displaying images, but also has the function of docking, so the user can connect to other devices having multi stream transport (MST) function. Therefore, the utilization of space could be more efficient. In addition, when the docking display of the present invention only receives a single video stream, the hub of the docking display can be in a sleep mode, thereby saving the overall power consumption of the docking display.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
111114966 | Apr 2022 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
6558049 | Shin | May 2003 | B1 |
9164930 | Zeng | Oct 2015 | B2 |
20040268408 | Lee | Dec 2004 | A1 |
20120127367 | Glen | May 2012 | A1 |
20160085713 | Glik | Mar 2016 | A1 |
20190042503 | Montero | Feb 2019 | A1 |
20200302894 | Khen | Sep 2020 | A1 |
Number | Date | Country |
---|---|---|
110955627 | Apr 2020 | CN |
113608583 | Nov 2021 | CN |
Number | Date | Country | |
---|---|---|---|
20230341898 A1 | Oct 2023 | US |