This invention relates to a connector, in particular, to a connector for use in high-rate serial transmission for video stream.
As typical ones of high-rate serial transmission techniques for video signals, TMDS, LVDS and GVIF are known. TMDS stands for Transition Minimized Differential Signaling, which is a standard as to a video data transmission between a general computer and its monitor or display. In TMDS standard, data transmission is carried out through two signal lines, negative and positive lines, and a ground line. LVDS stands for Low Voltage Differential Signaling, which is one of high-rate serial transmission systems and is mainly used as an input interface for a liquid crystal panel installed in a notebook computer. In LVDS system, data are transmitted in the form of low amplitude differential signals. GVIF stands for Gigabit Video Interface, which is one of high-rate serial transmission systems and is often used as an input interface for a display mounted on a vehicle. In GVIF system, differential signals are transmitted through only one pair of signal lines.
In a field of high-rate serial transmission for video signal, the specific number of channels is selected depending on whether a display is used in a low resolution mode or high resolution mode. Specifically, the number of channels is small for a low resolution display, while the number of channels is large for high resolution display. Because the number of channels corresponds to the number of signals or signal pins of a connector in a serial transmission system, the difference in the number of channels makes an existence of two different types of connectors: connector for low resolution transmission and connector for high resolution transmission.
Note that a connector for low resolution transmission cannot be used in high resolution transmission because the number of channels, namely, the number of signal pins is short for high resolution transmission. On the other hand, a connector for high resolution transmission can in theory be used in low resolution transmission, but there is a problem that the size of a connector for high resolution transmission is bigger than one of a connector for low resolution transmission.
In addition, two types of connectors are not compatible with each other. Therefore, if a user plans to connect a low resolution display with an instrument producing high resolution signals, the connection is required to further comprise a dongle connector or to use a special connector cable having different types of connectors on its opposite ends. Similar problem is of course occurred in the connection between a high resolution display and an instrument producing low resolution signals. Hereinafter, an instrument or apparatus that can produce high resolution signals is referred to as a high resolution instrument, while an instrument or apparatus that can produce low resolution signals is also referred to as a low resolution instrument.
As apparent from the above description, there is a need for a connector compatible between low resolution transmission and high resolution transmission.
This invention therefore provides a connector having a plurality of signal pins which can be connected with a mating connector having the same number of contact pins corresponding to and connected to the signal pins of the connector, and which can also reliably be connected with another mating connector having contact pins corresponding to and connected to ones selected from the signal pins of the connector.
Typically, this invention provides a connector having signal pins corresponding to high resolution transmission, which can be connected to a mating connector having contact pins corresponding to the high resolution transmission and which also can be connected with another mating connector for low resolution transmission.
According to one aspect of the present invention, a connector comprising: a plurality of contacts; an insulator supporting the plurality of contacts; a shell surrounding the contacts and the insulator and defining a connector interface; and a partition mechanism arranged to partition the connector interface into a plurality of interface portions, one of the interface portions having a shape different from another one of the interface portions. Thus, a mating connector for the connector is allowed to be connected with one or more the interface portions, depending on a shape of a connector interface of the mating connector.
The partition mechanism may be formed integrally with the insulator, or alternatively, it may be formed integrally with the shell.
According to an embodiment, the partition mechanism may comprise a separate partitioning piece not integrally with said insulator and said shell. The partitioning piece may have a lug and the shell has a slit where the lug is fittable to be fixed to the shell.
According to another embodiment, the partitioning piece can be made of the same material as one of said insulator and said shell.
Further, the partition mechanism may consist of a plurality of partitioning pieces.
In a connector according to another embodiment, the insulator, the shell and the partition mechanism are designed and arranged so as to be suitable for use in a serial transmission system.
In a connector according to a different embodiment, the contacts, the insulator, the shell and the partition mechanism are designed and arranged so as to be suitable for use in a TMDS, LVDS or GVIF system.
In a connector according to a further different embodiment, the contacts, the insulator, the shell and the partition mechanism are designed and arranged for a case where a mating connector for the connector is connected to a graphic display device.
In the connector according to this invention, the partition mechanism may be designed and arranged so that a mating connector can be smoothly and securely guided to the connector in a connection process.
The shell may be designed so that one of the interface portions is arranged in the same plane as another one of the interface portions.
The connector according to this invention may further comprise at least one contact portion on an inner surface of the shell for establishing secure contact between the shell of the connector and the shell of the mating connector, when the mating connector is inserted into the connector.
According to an aspect of this invention, a receptacle connector is provided which comprises a plurality of contacts, an insulator supporting the plurality of contacts, and a shell surrounding the contacts and the insulator. The shell defines a plurality of interface portions to be connected with at least one mating connector. One of the interface portions has a shape different from another one of the interface portions.
According to another aspect of this invention, a plug connector is provided which has a connector interface comprising at least two interface portions. One of the interface portions has a shape different from another one of the interface portions.
Before explanation of embodiments of the present invention, description is made about a general configuration and problems in the prior art, for the easily understanding of the embodiments.
Referring to
Note here that, according to the prior art, the connector 22 cannot be directly connected to the connector 30 because of the different sizes of the connectors 20, 30. That is to say, the port-replicator 23 or the docking station 26 is the necessity of the connection between the peripheral device 21 and the notebook computer 29 in the prior art. This makes a user inconvenient in a certain case.
With reference to
Consider here that a user wants to connect the high resolution instrument 34 to the low resolution display 41, or to connect the low resolution instrument 44 to the high resolution display 31 in accordance with the prior art. In
However, the above-mentioned problems are solved by the present invention. Now, explanation will be in detail made about embodiments of the present invention with reference to
With reference to
The connector 1 comprises an insulator 2, a plurality of contacts 3 supported by the insulator, and a shell 4 covering the insulator 2 and the contacts 3. The shell 4 defines a connector interface or interface hole on one end thereof in an insertion direction, namely an X-direction in FIG. 7.
Specifically, the shell 4 comprises two partitioning portions 4A which serve as partition means or mechanism. The partitioning portions 4A are formed integrally with the shell 4, by denting the top and bottom surface of the shell 4 toward inside of the shell 4. In another point of view, the partitioning portions 4A are upper and lower dented projections facing each other in a Y direction perpendicular to the insertion direction X, and serve to partition the connector interface into two interface portions, in cooperation with each other, resulting in that one of the interface portions has a shape different from the other one of the interface portions. In the embodiment shown in the figure, the interface hole is not completely but generally or functionally separated by the upper and lower dented projections which project to but short of each other. However, those upper and lower dented projections can be formed to project to contact with each other to thereby completely divide the interface hole into two interface portions.
The partitioning portions 4A also serve to securely guide a mating connector into the shell 4 when the larger plug connector 11 is inserted as the mating connector into the connector 1. If the mating connector is the smaller plug connector 12, the partitioning portion serves to avoid damage due to a local force generated by connecting the smaller plug connector to the connector 1. In addition, both interface portions have edge surfaces arranged in the same plane, as clearly seen from FIG. 7.
The shell 4 further comprises six contact portions 4B, three of which are formed on the bottom surface within the shell 4, the other being formed on the top surface within the shell 4. The contact portions 4B serve to a ground contact and make a secure ground connection between the shell 4 and another shell of the plug connector, for example, a shell 11B shown in
In the above-mentioned structure according to the first embodiment or the modification thereof, the partition means or mechanism (4A, 2A, 4C, 5) does not completely divide the connector interface but only substantially partition the connector interface because the larger plug connector 11 has an integral connector interface as shown in FIG. 8. On the other hand, a receptacle connector according to a second embodiment has a structure that partition means or mechanism completely divides the connector interface.
With reference to
Specifically, referring to
In the modification of the receptacle connector, the partitioning piece 6 may further comprise an engaged portion 6C as shown in FIG. 14. The engaged portion 6C has an L-like shape and projects from the end opposite to the lug or tab 6B. The engaged portion 6C serves to be engaged with the top surface of the shell 4 when the partitioning piece 6 is inserted and fitted into the shell 4.
In the above-mentioned structure according to the second embodiment or the modification thereof, the partition means or mechanism (2B, 6) completely and physically divides the connector interface into two interface portions. In the next embodiment, partition means or mechanism also divides the connector interface into a plurality of sections completely and physically. That is, the receptacle connector according to the next embodiment can handle the type of larger plug connector shown in FIG. 12.
With reference to
Specifically, the receptacle connector 1 of this embodiment comprises as partition means or mechanism a partitioning wall portion 4G which is formed integrally with the shell 4. As clearly understood from
In the connector of the third embodiment, the partitioning wall portion 4G may further have protrusions 4H as shown in FIG. 16. In the manufacturing process, the protrusions 4H are inserted into holes 41 formed in the upper wall of the shell 4, and then are mauled or deformed by hammer or something, so that the partitioning wall portion 4G is fixed within the shell 4.
Also, the partitioning wall portion 4G may further have a tab or lug 4J in place of the protrusions, as shown in FIG. 17. In the manufacturing process, the tab 4J is inserted into a slit 4K formed in the upper wall of the shell 4, and then is bent, so that the partitioning wall portion 4G is fixed within the shell 4.
Consider here that the above-mentioned connectors are applied to the configuration illustrated in FIG. 1. In that case, all connection mentioned with reference to
Next, consider that a user wants to connect the high resolution instrument 34 to the low resolution display 41, or to connect the low resolution instrument 44 to the high resolution display 31. As seen from
A general description of the present invention as well as preferred embodiments of the present invention has been set forth above. Those skilled in the art to which the present invention pertains will recognize and be able to practice additional variations in the connector which fall within the scope or teachings of this invention. For example, although the number of interface portions is two in the preferred embodiment of the present invention, the number of interface portions may be three or more. That is, the partition means or mechanism may be designed and arranged so as to partition the connector interface into a plurality of interface portions, one of the interface portions having a shape different from another one of the interface portions.
Now, description is made about the technical contribution of the present invention.
First, the present invention can resolve existing inconvenience of a notebook computer user when the user wants to connect a peripheral device to the notebook computer. In convention, there is an instrument or apparatus having a connector on which multiple functions including a standardized connector function are implemented. According to the present invention, a standardized mating connector is allowed to connect to only the standardized connector function of the multi-function connector, by using the connector space which is in essential arranged to provide the multiple functions. For example, in the above-mentioned case of
Second, the present invention can harmonize a PC market and another consumer market such as TV, VIDEO, DVC, DVD, or GAME market with the simplest way. In a consumer market such as TV, VIDEO, DVC, DVD, or GAME market, a low resolution display is mainly used. Therefore, a low resolution instrument and a low resolution display can adopt a connector having signal pins, the number of which is minimum one necessary to transmit low resolution signals. On the other hand, a PC market has to handle a high resolution display and requires adopting a connector having signal pins necessary to transmit high resolution transmission. Note that, according to the prior art, a dongle connector or a special cable is required as mentioned with
Number | Date | Country | Kind |
---|---|---|---|
2001-203992 | Jul 2001 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
4597631 | Flores | Jul 1986 | A |
5234353 | Scholz et al. | Aug 1993 | A |
5387134 | Bryce et al. | Feb 1995 | A |
5685739 | Davis et al. | Nov 1997 | A |
6024607 | Wahl | Feb 2000 | A |
6139367 | Yeh | Oct 2000 | A |
6190208 | Villain | Feb 2001 | B1 |
6193555 | Chang | Feb 2001 | B1 |
6231390 | Chang | May 2001 | B1 |
6364699 | Hwang et al. | Apr 2002 | B1 |
6558201 | Begley et al. | May 2003 | B1 |
6758685 | Huang et al. | Jul 2004 | B1 |
6758697 | Wu | Jul 2004 | B1 |
20020048992 | Wang et al. | Apr 2002 | A1 |
Number | Date | Country |
---|---|---|
0 701 303 | Mar 1996 | EP |
Number | Date | Country | |
---|---|---|---|
20030008566 A1 | Jan 2003 | US |