The invention relates to a channel selection device used in a digital/analog broadcasting receiver and a digital/analog broadcasting receiver equipped with the same.
There has conventionally been available such a channel selection device used in digital/analog broadcasting receivers that permits the user to use input device to select a desired channel and decide whether this channel is of digital or analog broadcasting by referencing a digital/analog channel table listing the channels capable of viewing digital/analog broadcasts based on a digitally input channel number or using the channel UP/DOWN keys, thus causing a tuner thereof to receive a broadcasting signal of the desired channel (see, for example, Japanese Unexamined Patent Publication No. 11-164214).
Although, TV broadcasts are typically put on an air in analog origination, recently such digital broadcasts are originated and prevailing rapidly that are represented by a BS (Broadcasting Satellite) digital broadcast capable of improved high-picture-quality and multi-channel broadcasting and a CS (Communications Satellite) digital broadcast. The digital broadcasts in the North America, for example, are standardized by the ATSC (Advanced Television Systems Committee) to be originated through a physical channel different from analog broadcasting. In these broadcasts, many digital broadcasts are originated from the same or the same system of a broadcasting station as that for the conventional analog broadcasts, in which case to improve ease-to-use of the users accustomed to the conventional analog broadcasting channels, such a virtual channel that is assigned the same channel number as that for the conventional analog broadcasting is used in operation to enable channel selection and display.
Also, in digital broadcasting, each channel is assigned a carrier wave of a predetermined frequency band different from that of analog broadcasting. This channel is referred to as a main channel, which each contains one or a plurality of sub-channels for originating contents. The configuration of the sub-channels changes with a broadcasting time band, one of which is exemplified in
In
In digital broadcasting, the information (hereinafter referred to as channel information) of such fluctuating channel configuration as described above is originated together with a video signal etc. In the digital broadcasting receiver, therefore, the digital broadcasting signal can be received at a tuner and then decoded at a digital decoder to thereby analyze a VCT (Virtual Channel Table) contained in the resultant decoded signal, thus obtaining the channel information of the relevant broadcast.
There is such a prior art digital/analog broadcasting receiver's channel selection device that decodes and analyzes a broadcasting signal to obtain a VCT (Virtual Channel Table) containing virtual channel information based on PSIP (Program System Information Protocol) and hold a channel map storing this table, so that when the user changes or select a channel, based on this channel map, an EPG (Electric Program Guide) functioning as an interface is used to display a channel selection display to thereby operate the key (e.g., UP key/DOWN key) at the body's operation panel or remote-control panel, thus enabling him to change or select the channel. Although this configuration eliminates the troublesome necessity of inputting a channel number, if there is no sub-channel adjacent in a keyed-in direction in the same main channel, this main channel is changed.
For example, between 11:00 PM and 12:00 PM in
This invention is made to solve the above-mentioned problems and it is an object of the invention to provide such a channel selection device used in digital/analog broadcasting receivers that has a hierarchical construction comprising the main channel and sub-channels, that can accommodate a digital broadcast having a frequently fluctuating channel configuration, that is equipped with a key for changing only the sub-channel, and also that can prevents a delay of time for changing the channel, thus improving the ease-of-use of the users.
In accordance with an aspect of the present invention, a digital broadcasting signal contains one or a plurality of sub-channels for originating contents for each main channel with the sub-channels being assigned a virtual channel containing the same channel number as the analog broadcasting channel number, thus permitting a user accustomed to analog broadcasts to select his desired channels without feeling a sense of incompatibility. The user operates the UP/DOWN keys on the input device to thereby give an instruction for selecting an upward/downward adjacent sub-channel. When having received the instruction from the UP/DOWN keys, the control unit changes the sub-channel in the upward/downward direction this instructed, on the basis of the channel information stored in the memory.
Even if no sub-channel is present in the instructed direction in the same main channel, this main channel is not changed but, instead, such a sub-channel is selected that is most distant from the pre-operation sub-channel. That is, when the user operated the UP key to find no sub-channel in the upward direction, a sub-channel having the largest sub-channel number is selected. When the user operated the DOWN key to find no sub-channel in the downward direction, on the other hand, a sub-channel having the smallest sub-channel number is selected. Thus, when the user operated the operation key repeatedly, the main channel can be searched in circulation to change the sub-channel to thereby prevent the channel changing time from being delayed, because the main channel is not changed if the user operated the operation key in such a direction where no sub-channel is present.
In accordance with another feature of the invention, a digital broadcasting signal contains one or a plurality of sub-channels for originating contents for each main channel with the sub-channels being assigned a virtual channel having the same number as an analog broadcasting channel number, thus permitting a user accustomed to analog broadcasts to select his desired channels without feeling a sense of incompatibility. The user operates the operation keys on the input device to thereby give an instruction for selecting an upward/downward adjacent sub-channel. When having received the instruction from the operation key, the control unit changes the sub-channel in a predetermined direction based on the channel information stored in the memory. If there is no sub-channel in the same main channel present in the predetermined direction, that same main channel is searched in circulation or in reciprocation to thereby select a sub-channel. The sub-channels are actually searched for in circulation by selecting such a sub-channel that has a sub-channel number most distant from the pre-operation sub-channel and in reciprocation by using the operation keys to select such a sub-channel that is adjacent in a direction opposite to the predetermined direction.
In accordance with a further feature of the invention, the cursor given in a list of the channel information displayed on the display device is interlocked with an instruction sent from the operation key operated by the user, thus enabling selecting a sub-channel at the cursor.
In accordance with a further feature of the invention, it is possible to select a channel using the channel UP/DOWN keys in the ATSC/NTSC receiver.
The following will describe a digital/analog broadcasting receiver related to one embodiment of the invention with reference to the drawings.
The receiver 1 comprises a tuner 2 for receiving a digital/analog broadcasting signal which is present in a frequency band corresponding to a desired channel, a digital decoder 3 and an analog decoder 4 for decoding the digital/analog broadcasting signal received at the tuner 2, a switch 5 for switching the broadcasting signals decoded by the digital decoder 3 and the analog decoder 4, an OSD circuit 6 for providing predetermined On-Screen Display (hereinafter abbreviated as OSD) at a display 12, a memory 7 for storing the originated frequencies of each digital broadcasting main channel and the channel configuration information, and a control unit 8 consisting of a CPU for controlling these sections of the receiver.
The tuner 2 is supplied with a digital/analog broadcasting signal received through the antenna 10 to then select a channel according to an instruction the user input to the control unit 8 from the input device 11 to thereby receive a digital/analog broadcasting signal of a frequency band corresponding to an input channel and modulate it into an intermediate frequency (IF) signal and then output it to the digital decoder 3 and the analog decoder 4. The digital decoder 3 and the analog decoder 4 decode the broadcasting signal received by the tuner 2. In the digital broadcasting channel configuration, each main channel is assigned each frequency band so that the sub-channels of the same main channel are used to originate broadcasting signals of the same frequency. However, the physical channels are different even in digital broadcasting using a virtual channel headed by the same number as that of analog broadcasting, so that the broadcasting signal is originated in a carrier wave of a different frequency band. If a user-selected channel through which the broadcasting signal is originated by the carrier wave of the different frequency band is of digital broadcasting (if the sub-channels are not of number “0”), the broadcasting signal is decoded by the digital decoder 3. If the user-selected channel is of analog broadcasting (if the sub-channels are of number “0”), the signal is decoded by the analog decoder 4.
The switch 5 receives an instruction from the control unit 8 to then output to the OSD circuit 6 a broadcasting signal decoded by either the digital decoder 3 or the analog decoder 4. The OSD circuit 6 in turn receives an instruction from the control unit 8 to then output the broadcasting signal to the display 12 and also output an OSD display signal for displaying a predetermined list of the receivable channel information. The memory 7 stores the information of each channel's frequency band and the channel configuration information as well as the information of OSD display at the time of shipment of the receiver.
The control unit 8 receives a user's input through the input device 11 to then control the sections through a data bus (Data-Bus) and cause the memory 7 to store the information of each channel's frequency band and the received channel information, thus referencing the information when required, for example, at the channel selection.
Also, the control unit 8 receives a user's instruction for channel changing to then cause the tuner 2 to receive a broadcasting signal containing channel configuration information and then analyzes a VCT (Virtual Channel Table) given as the channel information obtained by decoding this broadcasting signal at the digital decoder 3, thus obtaining a status signal contained therein. This status signal contains all the digital/analog sub-channel information of a virtual main channel. The control unit 8, therefore, can analyze that VCT to thereby obtain a virtual channel number consisting of the same number (main channel) as the previous channel number given to the same or the same system of broadcasting station originating the above-mentioned digital/analog broadcasting signal and a sub-channel number. That is, the control unit 8 can collectively obtain the digital/analog channel information originated from the same or the same system of broadcasting station. The control unit 8 stores thus obtained status signal in the memory 7, thus storing the channel information therein.
Further, the control unit 8 decides whether the broadcasting signal is present based on the status signal to provide predetermined OSD display or an output of a video program of a broadcast of a selected channel at the display 12. The display 12 may be a display of a TV receiver, a CRT, or a flat panel display such as an LCD (Liquid Crystal Display) or PDP (Plasma Display Panel). Although not shown, the receiver 1 is equipped with a D/A converter circuit for converting a digital signal into an analog one, so that the signal for the OSD display or image display is converted by this D/A converter circuit into an analog signal and then output to the display 12. Also, the D/A converter circuit may be built in the display 12. Note here that to display contents on the flat panel display, the signal bypasses the D/A converter signal and is output as digital signal as it is.
The input device 11 is used to input a user's instruction to the control unit 8. The input device 11 may come in the body button provided on the front panel of the receiver 1 or a remote controller 30 such as shown in
Also, in addition to the channel UP/DOWN keys 34, the remote controller 30 is equipped with a sub-channel UP/DOWN key 34s for changing upward and downward sub-channels in one main channel. This sub-channel key has a tumbler construction so that pressing thereof to one side may move the sub-channel upward and pressing thereof to the other side may move it downward. The following will describe how to change a sub-channel using the sub-channel key 34s with reference to
On this OSD display, if the UP side of the sub-channel key 34s is pressed, the same main channel “2” is searched for upward adjacent sub-channels to thereby select channel “2-1”. If the sub-channel key 34s is pressed, on the other hand, channel “2-4” assigned the largest sub-channel number in this main channel is selected because this main channel contains upward adjacent sub-channels. The arrows given to the right side in the channel information table indicate an order in which the channels to be switched are selected sequentially in the same main channel each time the sub-channel key 34s is operated. Note here that when the sub-channel key 34s is pressed also, the channel to be changed is just searched for in the opposite direction and is actually switched the same way. If the sub-channel key 34s is pressed on the DOWN side when a broadcast is being received through channel “2-4”, channel “2-1” is selected having the smallest sub-channel number in the main channel because this main channel contains no downward adjacent sub-channels.
The following will describe the operations of the control unit 8 of the receiver 1 when it has received an instruction for changing the channel by the sub-channel key 34s on the remote controller 30 by the user, with reference to
If the sub-channel key 34s is pressed on the DOWN side (DOWN at #2), it references the channel information stored in the memory 7 (#7), it searches the main channel for downward adjacent sub-channels (#8). If such an adjacent sub-channel is found (YES is answered at #8), this sub-channel is selected (#9). Otherwise (NO is answered at #8), a sub-channel having the smallest sub-channel number in the main channel is selected (#10). Thus, it is possible to select sub-channels by searching the main channel for these sub-channels in circulation each time the sub-channel key 34s is inputted by the user.
The invention is not limited the configuration of this embodiment but may have a variety of variants; for example, although this embodiment exemplified the sub-channel key 34s provided separately as a UP/DOWN operation-dedicated key, the channel UP/DOWN keys 34 may be provided with the function of the sub-channel key in a mode switch-over configuration.
Also, the sub-channel to be selected at #6/#10 in
Further, the channel information table shown in
Thus, the invention makes it possible to change only sub-channels in the same main channel to thereby avoid a delay in channel selection owing to changing of the main channel, thus enabling rapid channel selection. Also, each time the user operates any of the operation keys, the sub-channels can be searched for in circulation in a user-instructed direction for sequential selection, so that the user can operate the device intuitively, thus improving the operability. Further, when a user who has his favorite main channel wishes to change only sub-channels in this main channel, he can select any one of the sub-channels comfortably.
Number | Date | Country | Kind |
---|---|---|---|
2001-024504 | Jan 2001 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
5410326 | Goldstein | Apr 1995 | A |
5461427 | Duffield et al. | Oct 1995 | A |
5982411 | Eyer et al. | Nov 1999 | A |
6075575 | Schein et al. | Jun 2000 | A |
6084643 | Kishtaka et al. | Jul 2000 | A |
6084645 | Park et al. | Jul 2000 | A |
6104436 | Lee | Aug 2000 | A |
6215530 | Wasilewski | Apr 2001 | B1 |
6249320 | Schneidewend et al. | Jun 2001 | B1 |
6313886 | Sugiyama | Nov 2001 | B1 |
6387078 | Lasky | Apr 2002 | B1 |
6396523 | Segal et al. | May 2002 | B1 |
6483547 | Eyer | Nov 2002 | B1 |
6490001 | Shintani et al. | Dec 2002 | B1 |
6564378 | Satterfield et al. | May 2003 | B1 |
6590618 | Park et al. | Jul 2003 | B1 |
6598233 | Choi | Jul 2003 | B1 |
6621528 | Kessler et al. | Sep 2003 | B1 |
6661472 | Shintani et al. | Dec 2003 | B2 |
6714264 | Kempisty | Mar 2004 | B1 |
6731345 | Lee | May 2004 | B2 |
6766526 | Ellis | Jul 2004 | B1 |
6772433 | LaJoie et al. | Aug 2004 | B1 |
6775843 | McDermott | Aug 2004 | B1 |
6817027 | Curreri | Nov 2004 | B1 |
6825874 | Tripathy | Nov 2004 | B1 |
6836296 | Terakado et al. | Dec 2004 | B1 |
7050117 | Takagi et al. | May 2006 | B2 |
20010052124 | Kim et al. | Dec 2001 | A1 |
20020089603 | Onomatsu | Jul 2002 | A1 |
20020097164 | Takagi et al. | Jul 2002 | A1 |
20020101540 | Takagi et al. | Aug 2002 | A1 |
20020104085 | Takagi et al. | Aug 2002 | A1 |
20020104103 | Takagi et al. | Aug 2002 | A1 |
20020113895 | Takagi et al. | Aug 2002 | A1 |
20020171775 | Okabe | Nov 2002 | A1 |
20040133910 | Gordon et al. | Jul 2004 | A1 |
20040172661 | Yagawa et al. | Sep 2004 | A1 |
20050010947 | Ellis | Jan 2005 | A1 |
20050163148 | Kim et al. | Jul 2005 | A1 |
Number | Date | Country |
---|---|---|
55-02760 | Feb 1980 | JP |
04-227379 | Aug 1992 | JP |
11-164214 | Jun 1999 | JP |
11-275476 | Oct 1999 | JP |
2000-165766 | Jun 2000 | JP |
Number | Date | Country | |
---|---|---|---|
20020104102 A1 | Aug 2002 | US |