WO2016070732A1 - 分体式电视 - Google Patents

分体式电视 Download PDF

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Publication number
WO2016070732A1
WO2016070732A1 PCT/CN2015/092889 CN2015092889W WO2016070732A1 WO 2016070732 A1 WO2016070732 A1 WO 2016070732A1 CN 2015092889 W CN2015092889 W CN 2015092889W WO 2016070732 A1 WO2016070732 A1 WO 2016070732A1
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WO
WIPO (PCT)
Prior art keywords
display
television
main control
audio
data
Prior art date
Application number
PCT/CN2015/092889
Other languages
English (en)
French (fr)
Inventor
钟培峰
叶迈克
陈旭昀
朱际平
Original Assignee
晶晨半导体(上海)有限公司
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Publication date
Application filed by 晶晨半导体(上海)有限公司 filed Critical 晶晨半导体(上海)有限公司
Priority to US15/321,038 priority Critical patent/US10154299B2/en
Publication of WO2016070732A1 publication Critical patent/WO2016070732A1/zh

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Definitions

  • the present invention relates to the field of televisions, and more particularly to a split type television.
  • the TV sets on the market are all one-piece machines, that is, the screens for display and the main modules for control are integrated, designed, produced and sold as a whole, but the service life of the TV sets is relatively high. Long (at least 4 to 5 years, or even more than 10 years), and the above-mentioned main module is updated faster with the advancement of technology, and the device on the screen is updated at a slower speed, which results in various components of the TV as an all-in-one machine.
  • the mismatch between the upgrades makes the user only purchase the whole machine when upgrading, which greatly increases the user's upgrade cost and hinders the process of updating the TV core module.
  • the present application provides a split type television, including:
  • a main control module connected to the signal transmission device of the split TV to receive the first data sent by the signal transmission device, and process the first data to be converted into the second data;
  • At least one connector is
  • a display connected to the main control module by the at least one connector, receiving the second data, and playing the audio and video signals included in the second data;
  • the main control module and the display are separated from each other, and the display is provided with a power adapter, and the power adapter drives the main control module to work through the connector.
  • the audio and video signals include audio data and/or video data
  • the display includes:
  • the display in the split TV described above further includes:
  • a display device is coupled to the bridge chip to receive and play the video data.
  • the display in the split TV described above further includes:
  • An audio device coupled to the bridge chip to receive and play the audio data.
  • the display in the split TV described above further includes:
  • a plurality of peripheral devices are connected to the bridge chip for adjusting operating parameters of the audio device and the display device, and receiving a remote control signal sent by a remote controller matched with the split TV.
  • the plurality of peripheral devices in the split TV described above include:
  • a physical button connected to the bridge chip for adjusting operating parameters of the audio device and the display device;
  • a remote control signal receiving device connected to the bridge chip for receiving the remote control signal to control playback of the audio data and/or the video data.
  • the main control module in the split TV described above includes:
  • At least one subunit and each of the subunits is respectively connected to the signal transmitting device to which it is adapted;
  • each of the subunits being connected to the display through the core unit;
  • any one of the subunits receives the first data from a signal transmitting device adapted thereto, and converts the first data into a core unit having a standard format to be processed, the core unit The second data is generated after the processed data having the standard format is processed.
  • the subunit in the split TV described above includes:
  • a wireless television signal processing subunit configured to receive and process a wireless television signal transmitted by means of wireless broadcasting, and convert the format of the wireless television signal into the standard format
  • a closed circuit television signal processing subunit configured to receive and process a closed circuit television signal transmitted by means of wired transmission, and convert the format of the closed circuit television signal into the standard format
  • An Internet television signal processing sub-unit for receiving and processing an Internet television signal transmitted over the Internet and converting the format of the Internet television signal into the standard format.
  • the main control module in the split TV described above further includes:
  • the core unit can adjust and send audio and video data stored in the local storage device to the screen end module to perform a playback operation.
  • the subunit in the split TV described above further includes:
  • An audio and video input device configured to receive audio and video data sent by an external audio and video output device, and the audio and video data
  • the subunit in the split TV described above further includes:
  • a wireless communication device configured to receive and transmit network audio and video data to the core unit for processing, and the core unit sends the processed network audio and video data to the screen end module for playing operation.
  • Each of the subunits and/or the core unit are independently integrated into a single structure. For separate upgrades and/or replacement operations.
  • the technical solution in the present application is to separately set the main control module of the television and the display, and the display is mainly used for audio and video data playback, and the main control module is mainly used for receiving and processing television audio and video data, due to the main
  • the control module and the display are independently arranged on the physical structure, so that the user can separately perform operations such as repair, maintenance, upgrade, and replacement, respectively; at the same time, since the display (ie, the screen end) is provided with the power adapter of the main control module As long as the main control module is connected to the display, the main control module can be powered up normally, and the main control module of the discrete setting is shared with the display to avoid the cost increase caused by the display device and the main control module respectively setting the power supply device.
  • the user can conveniently implement the maintenance and upgrade operation of the television by replacing or upgrading the main control module or part of the sub-function unit; in addition, the split TV described in the present application also Individual units can be upgraded according to their individual needs, and thus Reduce the cost of upgrading the TV.
  • FIG. 1 is a schematic structural diagram of a split type television in Embodiment 1 of the present application.
  • FIG. 2 is a schematic structural diagram of an audio-video system according to Embodiment 2 of the present application.
  • FIG. 3 is a schematic structural diagram of audio and video signal conversion in a sound and video system according to Embodiment 2 of the present application;
  • FIG. 4 is a schematic structural diagram of hardware devices in an audio-video system according to Embodiment 2 of the present application.
  • FIG. 5 is a schematic structural diagram of a bridge chip in an audio-video interface conversion apparatus according to Embodiment 3 of the present application.
  • the split TV provided in the embodiment of the present invention can integrate the core components in the TV structure into a single independent main control module based on the existing TV structure, and the independent main control module can also be used by the television.
  • the core module that is indispensable in the machine is composed of at least one independently set sub-unit with independent function, and the screen-end component for audio and video playback is integrated into another independent display; since the components in the display are upgraded slowly.
  • the components in the core module are upgraded faster, so that when the TV is upgraded, only the core components that need to be upgraded can be upgraded separately, and the components such as the screens that do not need to be upgraded are retained, thereby effectively It reduces the upgrade cost of the TV set; and when the user newly purchases the TV set, it can also form a special function by matching the required sub-units with independent functions with the above-mentioned core modules according to their own individual needs.
  • the main control module in turn, enables the TV set it purchases to meet its individual needs.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • FIG. 1 is a schematic structural diagram of a split type television in an embodiment of the present application; as shown in FIG. 1, the split type television in this embodiment includes:
  • the main control module is mainly assembled by the core components of the television.
  • it may include input devices related to the content of the television broadcast (such as HDMI/CvBS, etc.), and the main information for storing network video data, application data and game data. Control chip, etc.; the main control module is connected with the signal transmission device of the split TV through the connection port on the display to receive the original data (ie, the first data) sent by the signal transmission device, and process the original data to generate and The display matches the playback data (ie the second data).
  • the main control module can be composed of a core unit, such as a main control chip, and at least one subunit, which are indispensable in a television set, and each subunit can independently implement at least one format data (such as a wireless television).
  • a core unit such as a main control chip
  • each subunit can independently implement at least one format data (such as a wireless television).
  • any of the above subunits can be separately constructed together with the core unit as a main control module capable of running normally, and a television signal can be received and played through the display; of course, two subunits or more can be Mixing subunits to achieve both or Receive and play a variety of TV signals.
  • the foregoing subunit may include a wireless television signal processing subunit, a closed circuit television signal processing subunit, and an internet television signal processing subunit;
  • the wireless television signal processing subunit is mainly used for receiving and transmitting the wireless television signal, and the The format of the wireless television signal is converted into a standard format for subsequent operation processing of the core unit, and the wireless television signal processing subunit may include television signal receiving and processing, such as by wireless broadcasting, correspondingly It is necessary to integrate the receiving antenna of the wireless signal, audio and video conversion and other components, and can independently realize the operation of receiving, parsing and converting the wireless television signal data; the closed circuit television signal processing subunit is used for receiving and processing the method by wire transmission.
  • the closed-circuit television signal processing sub-unit may include, for example, receiving and processing television signals by wire, corresponding It must be integrated with closed-circuit television signals Receiving equipment, audio and video conversion and other components, and independently capable of receiving, transmitting, parsing and converting CCTV signal data;
  • Internet TV signal processing sub-unit is used to receive and process Internet TV signals transmitted over the Internet (eg Network audio and video data, game data, application data, etc., and converting the format of the Internet television signal into the above-mentioned standard format
  • the Internet television signal processing sub-unit may include, for example, receiving and processing television signals via the Internet, correspondingly It needs to integrate the receiving device of the Internet TV signal, audio and video conversion and other components, and can independently realize the operation of receiving, transmitting, parsing and converting the Internet TV signal data.
  • any of the above subunits is mainly adapted to receive and analyze television signals separately when transmitting television signals by different methods. Converting, and then converting the original TV data into the data to be processed in the same standard format, so as to facilitate the subsequent processing of the core unit; at the same time, each sub-unit can also have the components of the data signal interaction according to the actual needs, so as to achieve Interactive operation of formatted television signals (such as Internet TV signals, etc.).
  • the above-mentioned core module may further comprise a plurality of auxiliary sub-units that can be independently operated or can be separately upgraded, which can be separately completed, as long as they can be separately replaced or upgraded separately.
  • the core module is further connected to an external device for providing a television signal to receive the original television signal, and the television signal is processed and sent to the display for playing.
  • the above-mentioned display can also integrate a power adapter for driving the operation of the main control module, and can supply power to the main control module through the connector, thereby realizing that the separately set main control module and the display share the same power supply.
  • the purpose is to avoid the cost increase caused by separately setting the hardware devices related to the power adapter on the main control module and the display; of course, based on the purpose of sharing the same power supply, the power supply for providing power to the display can also be integrated in the main control module.
  • the power adapter can also achieve the purpose of reducing the cost and facilitating the placement, and at the same time further thinning the display, facilitating the placement and operation of the television purchased by the user.
  • the above core unit (including the main control chip, etc.) can be used for processing different television signal data, as well as authentication, control and power supply operations of each subunit device; as a core component of the television, it can also be upgraded separately.
  • the replacement operation that is, the above main control module is assembled by each individual unit module, and can be replaced as a whole Or upgrade operation, but also each unit can be upgraded or replaced as a separate component, so that users can assemble different TV units according to their own needs, by assembling different sub-units and core units to form their individuality.
  • the core module of the requirement; in the subsequent use process, the sub-units can be replaced, upgraded or added according to the changes of their requirements, so as to meet the different needs of different phases of the user in real time.
  • the above core module necessarily includes a core unit and at least one subunit, and as long as the core unit and a subunit are included, the core module can implement receiving, parsing, and converting a television signal in a matching format with the subunit. Operations, etc., and by adding any one or more sub-units and/or auxiliary sub-units, the core modules also have corresponding functions that are adapted to their added units.
  • the above core module may further be provided with an audio and video input device for receiving audio and video data transmitted by an external audio and video output device, and an internet access device for providing an internet communication signal (such as providing a wireless communication signal)
  • an audio and video input device for receiving audio and video data transmitted by an external audio and video output device
  • an internet access device for providing an internet communication signal (such as providing a wireless communication signal)
  • the Wi-Fi device and/or the Ethernet device providing the wired communication signal, etc., etc. enable the split-type television in the present embodiment to be integrated into the currently rapidly developing IoT of the smart home interconnection.
  • the above-mentioned split type television further includes a display
  • the display can be communicably connected to the core module through a connection line of a peripheral device (such as a preset integrated bus or the like) or wireless communication
  • a peripheral device such as a preset integrated bus or the like
  • the connection between the display and the main control module can be performed through the integrated bus to implement functions such as receiving and transmitting audio and video data, and the display can also feed back or send corresponding control commands to the core module, so as to facilitate user segmentation.
  • the stereo TV performs playback or human-computer interaction; at the same time, the display is separately set independently of the above-mentioned core modules, so that each of them can perform upgrade and/or replacement operations separately, and the same display is also It can be connected to one or more core modules at the same time, and the same core module can also be connected to one or more displays at the same time, thereby enabling multi-screen display or multi-screen interaction.
  • the above display may include one or more of a bridge chip, a display device (such as a liquid crystal screen), an audio device (such as an audio), and peripheral devices (such as physical buttons and remote control signal receiving devices).
  • the main control module can only integrate the processing unit for processing each functional module, and the peripheral devices of each functional module can be integrated in the display or independent settings, as long as the bridge chip and the above-mentioned master control
  • the module is connected, capable of receiving and processing the audio and video data processed by the main control chip, to send the audio data to the audio device for playing, and simultaneously sending the video data to the display device for playing, and making the playing progress of the display device and the audio device Synchronization;
  • the above-mentioned receiving/transmitting device is mainly used for a control command sent by a remote control adapted by a split TV, and sends the control command to the main control chip, so that the main control chip controls the display device according to the control command and/or The operation of the video device.
  • the bridge chip can forward the touch command sent by the display device to the core unit of the main control module to implement the interaction between the user and the television.
  • the user can adjust the attributes of the display device itself, such as the contrast, image quality and the like of the image display, by using the physical button.
  • the above-mentioned main control module further includes a local storage device, which can be used for storing audio and video data downloaded by the user and parameter information played by the television; and the display can also include audio/video input devices (such as a microphone, a camera, etc.) ), the user can record the corresponding user audio/video data through the audio/video input device and store it in the local area as described above.
  • the storage device and/or the remote server are stored or shared, and the split TV can also retrieve user audio/video data stored by the user or other users for playback.
  • the main chip of the television set by separating the main chip of the television set from the screen end module (such as the display) (that is, the main chip is disposed in the main control module), the size of the screen end can be reduced while the display is not replaced.
  • the upgrade of the television can be completed, thereby greatly reducing the upgrade cost of the user.
  • the following is a detailed description of the flow of a user from the optional split TV to the upgrade/replace operation of the split TV:
  • the user when purchasing a TV, the user can select the corresponding display according to his own needs (such as size, image quality, audio and video effects, etc.).
  • the user selects the core unit that is adapted to the display according to the selected display, and the subunits and auxiliary subunit devices that are required to assemble the selected core unit and the subunit and the auxiliary subunit into a main control module, for example, for example,
  • a main control module for example, for example, The user only needs a home digital TV, and then a core unit and a closed circuit television signal processing subunit can be selected, and the core unit and the closed circuit television signal processing subunit are assembled to form a main control module, thus making the user
  • only the sub-unit hardware of the corresponding function can be selected according to the specific needs, thereby reducing the purchase cost of the user.
  • the above main control module is inserted into a preset slot on the display to be connected to form a television set having the function required by the user, and the television set can be connected to its adapted external device, and then powered on. Can realize the playback of TV signals.
  • the user if the user has new requirements, he can only purchase the main control module that meets his new requirements, and replace the newly purchased main control module with the above. On the display, it can meet the needs based on the purchased split TV display; of course, the user can also remove the subunits in the main control module of the purchased split TV according to the requirements, and if it is replaced, When upgrading or repairing, you can also upgrade, repair or replace a subunit separately, which can greatly reduce the upgrade and maintenance costs of subsequent TVs.
  • the display and the main control module are separately set, thereby effectively reducing the difficulty of the upgrade operation of the television, and each functional module in the main control module is separately integrated into a whole, thereby enabling the main control.
  • Modules and / or any of the functional modules can be replaced or upgraded separately, that is, the different functional modules of the entire TV structure can be independently upgraded or replaced, so as to effectively upgrade the components in the TV structure.
  • Matching problems, reducing the cost of TV upgrade and maintenance, and the split TV described in this application can also realize the sharing of power, to facilitate the thinning of the display size and the placement and operation of the TV, and according to different users Personalized requirements are targeted and assembled to effectively meet the individual needs of different users.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the audio and video system includes a control module. 10 (corresponding to the main control module in the first embodiment) and a display panel 11, and the display (corresponding to the display in the first embodiment) 11 is also embedded with a bridge interface 12 and a bridge Chip (not shown).
  • the above-mentioned main control module (equivalent to the main control module in the first embodiment) 10 can be arranged independently of the display 11 in a modular piece, and the main control module 10 can have various form factors. And can be connected to the bridge interface 12 described above through one or more connectors 13 to transmit audio and video data to the bridge chip and control the above-mentioned display 11 for playback.
  • the above-mentioned main control module 10 may include main control modules (not shown) of the television set, related hardware devices 102 and input devices 101, etc., such as the main control module 10 Including video inputs and video processing hardware, that is, as shown in FIG. 3, when the main control module 10 transmits video data to the bridge interface 12 through the connector 13, the network
  • the bridge interface 12 transmits the received video data having the B type format to the bridge chip to convert the video data of the B type format into a C type format displayable to the display 11, and convert The subsequent video data is displayed and played through the display 11.
  • the main control module 10 may include a central processing unit (CPU), a graphic processing unit (GPU), a television tuner (television), and a main control module 10. And/or power adapter for the control block and/or the display panel, high definition multimedia input interface (high-definition-multimedia-interface (ie HDMI) inputs) and core modules of TVs such as Wi-Fi modules and/or Ethernet devices.
  • HDMI high definition multimedia input interface
  • the video processing hardware 102 includes a television signal tuner 1022, which is mainly used for a television signal A received by the main control module 10. Processing is performed, that is, it is tuned to video data having a B type format, and the processed television signal is output to the bridge interface 12 described above through one or more connectors 13.
  • the main control module 10 can be connected to the display 11 in various ways.
  • the main control module 10 can be directly mounted on the display panel or one or more lines. Cables realize a short distance connection between the main control module 10 and the display 11, or realize a communication between the main control module 10 and the display 11 via a via a wireless connection. Data interaction.
  • the bridge chip disposed on the display 11 can adjust the parameters of the display 11 independently, so that the same display 11 can match the main control module 10 of different main control modes, thereby facilitating subsequent upgrade operations. It also reduces upgrade costs.
  • the core module of SOC-based smart TV will be upgraded every six months, but TV display technology (TV panel technology) is slow, and then It is impossible to achieve synchronous upgrade with the above-mentioned core modules, and since the current TVs are all integrated machines, they cannot be separated. Upgrade the core module.
  • An upgrade of a core module such as a video function, a hardware facility, etc., that is, a new or upgraded master module 10 can be used with the old display 11 to construct a television set with the latest television technology, thereby allowing the user to spend a lower cost.
  • a core module such as a video function, a hardware facility, etc.
  • the above-mentioned main control module 10 can be regarded as a dongle or a plug adapter, that is, the main control module can utilize a plug-and-play connector (plug- An n-play connector or a wire is plugged into the display 11 described above.
  • a plug-in type television Plug-Card TV
  • the plug-in type television may include a display (TV panel) and a plug card (plug card)
  • the plug-in card is plugged into the above display, and the normal TV function can be realized by power-on; when the plug-in type TV is upgraded, only the main control module can be upgraded or replaced.
  • the main control module with new functions can complete the upgrade operation of the entire split TV, and the display 11 is only used as a monitor, and does not need to be upgraded or replaced, so that the user can purchase the low upgrade cost.
  • the display 11 is only used as a monitor, and does not need to be upgraded or replaced, so that the user can purchase the low upgrade cost.
  • the display is a bulk upper body structure of the television, that is, the display is provided with a slot, and the plug-in card is smaller than the display volume, and the integration process has various cores.
  • the device is integrated as a master module as a whole, and has a plug matched in the above slot, and the plug card is inserted into the slot through the plug, that is, It is convenient and simple to complete the assembly of the entire TV; correspondingly, the main control module can set the power supply of the shared display according to the requirements. Based on the same concept, the power adapter can also be set in the display and can be set according to requirements. The shared power required by the master module.
  • the above-mentioned split type television can realize the individual assembly and the independent upgrade of each integrated unit, and mainly adopts the display as the main body of the television structure, and can realize the display only through the socket.
  • the connection with the main control module that is, the user can easily complete the replacement and upgrade of the main control module by plugging and unplugging, which reduces the difficulty of upgrading the user while reducing the upgrade and maintenance costs.
  • the above-mentioned main control module 10 can also be regarded as a control box, and the control box has an output port such as HDMI or other specific format, so that the main control The module 10 can utilize the output port to connect with an input port on the display 11 that matches the format of the output port, that is, the main control module 10 can utilize an HDMI output port through an HDMI cable (cable) and an HDMI input port on the display 11. Connection (of course, the communication and/or electrical connection between the main control module 10 and the display 11 can also be realized by other types of cables, and the corresponding specification of the cable should be matched on the main control module 10 and the display 11 respectively.
  • a BOX controlled TV ie, a split TV in the first embodiment
  • the split TV is set to be independent of a plurality of module structures, such as a control box (control box) And the display (TV panel), And the display is connected to the control box through a customized cable, and each module can be independently upgraded separately, which facilitates subsystems such as audio for the television. (sub-systems) to upgrade or replace (replaced) operations.
  • the hardware device 102 included in the main control module 10 of the split TV has a power adapter 1021, and the power adapter 1021 outputs an electrical signal D.
  • the power adapter 1021 can also be disposed in a screen device such as a display according to specific requirements, as long as it can achieve the purpose of sharing the same power source) to power the display through a connector as described above. That is, the main control module and the display share the same power supply, so that the main control module and the display do not need to separately set the power line, thereby reducing the production cost of the television, and also omitting the space occupied by the television, and the structure is simple and beautiful.
  • the above-mentioned split type television can also be based on the first embodiment, while implementing the individual assembly and the independent upgrade of each integrated unit, the control box is mainly used as the main body of the television structure, and the control box passes the line.
  • the cable directly drives the display to work, which can reduce the size of the display while reducing the upgrade and maintenance costs, so that the split TV has strong thin and light performance.
  • the display used is basically the same, only based on the layout of the PCB board, and the corresponding pins of the connection port can be adaptively adapted accordingly.
  • the changes can be used to achieve mutual interoperability.
  • the main control module of the main control module and the control box the same main chip can be used to support video coding and other multimedia functions. (support video decoder and multimedia functions).
  • the present application further provides an audio and video interface conversion device, which can be used in the above-mentioned television systems such as a split TV, a split TV, and a split TV, that is, the
  • the audio and video interface conversion device can be applied to the display in the first embodiment and the display in the second embodiment; however, since different types of televisions have different connection modes between the main control module and the display, the actual application is
  • the audio and video interface conversion device can be adaptively adjusted according to actual conditions, but the main principles and structures are applicable to each other.
  • the audio and video interface conversion device in this embodiment may be a bridge IC.
  • a high-performance single-chip may be set as the bridge chip, as long as it can convert HDMI format data into LVDS. And / or V-by-One format data;
  • the bridge chip can have an embedded 32-bit RISC processor for system control, and integrates an embedded HDMI receiver and LVDS/V -by-One converter, that is, the bridge chip supports HDMI 2.0 input, and converts the input data into LVDS/V-by-One format data for output; the above embedded HDMI reception
  • the device fully supports HDMI 2.0 specification and can receive audio and video signals through the input port of the above display.
  • the HDMI2.0 interface of the above bridge chip can be extended, so that the bridge chip can support more than 4Kx2Kx8bit 4:4:4 60Hz or the like.
  • the above bridge chip is more compatible with the native resolution of the screen (such as 4Kx2Kx10bit 4:4:4 60Hz resolution) to achieve the best image quality.
  • the bridge chip further includes a video processing unit and an audio processing unit, and the video processing unit is capable of not only performing image correction and enhancements on the video data.
  • the processed data can also be converted to LVDS/V-by-One format for output.
  • the above bridge chip further integrates an LVDS transmitter and a V-by-One transmitter, and the LVDS transmitter can transmit data below 1080P@60fps and supports single link and double link.
  • the bridge chip in this embodiment is also integrated with many advanced peripherals, such as an IR remote receiver, a 2-channel ADC device, a 12C device, and a UART. Devices, SPI devices, and PWM interfaces.
  • the above bridge chip also integrates an on-chip oscillator and a 64KB SRAM to effectively simplify the system and reduce the system cost and BOM cost.
  • the bridge chip used since the bridge chip used has high performance and high cost performance, and has the function of converting the received HDMI data into LVDS/V-by-One format data, it can be applied to a high definition television (HD), Full HD TV (FHD) and Ultra High Definition Television (UHD) devices.
  • HDMI high definition television
  • FHD Full HD TV
  • UHD Ultra High Definition Television
  • FIG. 5 is a schematic structural diagram of a bridge chip in a three-in-video interface conversion device according to an embodiment of the present invention; as shown in FIG. 5, the bridge chip includes a core and fabric 20, and an audio/video input unit. 21.
  • the above core module (corresponding to the core device in the first embodiment) 20 may include a plurality of sub-systems such as an embedded 32-bit RISC processor, etc., and includes a video processing unit and independent use.
  • a video processing unit such as 64KB SRAM
  • ICCM integrated circuit card
  • DCCM digital converter
  • the core module 20 also supports fast calculation of MAC operations and extended arithmetic package.
  • the above video processing unit has an image generator, an on-screen menu (OSD), a DNLP, a white balance, a gamma, a hue saturation adjustment, and a brightness.
  • OSD on-screen menu
  • DNLP white balance
  • gamma a hue saturation adjustment
  • a brightness a functional module such as Bright contrast
  • the image generator described above is capable of generating grayscale light such as red, green, blue, white, black, and various standards.
  • the audio and video input unit 21 has an embedded HDMI 2.0Rx interface for receiving a television signal in an HDMI format, and the audio and video input unit 21 supports a resolution of 1080P@60Hz, 1080P@120Hz. , 1080P@50Hz, 1080P@100Hz, 1366*768@50Hz, 1366*768@60Hz or 4K*2K@60Hz, etc.
  • the above video output module 22 has an LVDS port and a V-by-One port, and The LVDS port can be 1 or 2 channels and supports a resolution of 1080P@60Hz.
  • the audio output module 23 can have a 2-channel 12S port
  • the storage interface 24 has an SPR NOR and a flash controller, and can support 1, 2 or 4 bits of flash through the SPI interface.
  • the system interface 25 has PLLs, internal OSC and PMU, and the output/output port 26 has a remote infrared receiving sub-port (IR remote), two embedded SA RADC sub-ports, and two 12C sub-ports.
  • IR remote remote infrared receiving sub-port
  • two embedded SA RADC sub-ports two embedded SA RADC sub-ports
  • 12C sub-ports two UART subports, SPI subports, four PWM subports, and a common set of I/O interfaces. Among them, one of the above four PWM sub-ports is used for LED output, and the remaining three PWM sub-ports are used for video output.
  • the above bridge chip also integrates peripheral devices such as a general-purpose counter, a timer, an internal oscillator, and an input port of a 24 MHz crystal oscillator, and the bridge chip also has two software-controlled internal power management. Modules, etc.
  • the audio and video interface conversion device in this embodiment can be configured with pins of 13*13 specifications for port connection, and each pin function can be adaptively configured according to existing standards according to actual requirements, and can be configured. Some of the pins are set to have pins for a variety of applications so that they can be adapted to televisions of different assembly styles.
  • the display and the main control module are separately set, and each functional module in the main control module is separately integrated into one whole, thereby enabling the main control module and/or any functional module to be realized.
  • Separate replacement or upgrade operation which makes the whole
  • Each of the different functional modules of the TV structure can be independently upgraded or replaced to effectively structure the problem of component mismatch in the TV structure, reduce the cost of TV upgrade and maintenance, and the split type described in this application TV users can easily and cost-effectively upgrade the entire TV set by replacing or upgrading the main control module, allowing users to enjoy the most advanced TV technology at the lowest cost.

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Abstract

本发明提供的分体式电视,涉及电视机领域,通过将电视的主控模块与显示器分别独立设置,且该显示器主要用于音视频数据播放及播放控制,而主控模块则主要用于电视音视频数据的接收及处理,由于主控模块与显示器在物理结构上相互独立设置,进而使得用户可分别对其进行独立的进行诸如维修、维护、升级及更换等操作;同时,由于显示器(即屏端)设置有主控模块的电源适配器,只要主控制模块与显示器连接便能给主控模块正常上电,进而实现了分立设置的主控模块与显示器共享同一电源,以避免因显示器和主控模块分别设置电源设备而造成的成本上升,还便于用户购买电视的放置及操作。

Description

分体式电视 技术领域
本发明涉及电视机领域,尤其涉及一种分体式电视。
背景技术
在近代社会的发展过程中,电视机作为人们获取音像资讯的重要媒介,其一直随着科技的进步得到不断的发展,尤其是随着互联网技术的日新月异,作为智能家居的核心设备,智能电视越来越受到人们的关注。
目前,市场上的电视机均为一体机,即用于显示的屏端和用于控制的主模块等各种设备均集成作为一个整体进行设计、生产及销售,但由于电视机的使用寿命较长(至少为4~5年,甚至10多年),而上述的主模块则随着科技的进步更新速度较快,屏端的设备则更新速度较慢,这就造成作为一体机的电视机各个部件之间升级的不匹配,使得用户在进行升级时只能购买整机,进而大大增大了用户的升级成本,阻碍了电视机核心模块的更新换代的进程。
另外,由于随着科技的进步,电视机上能够集成及实现的功能越来越多,进而呈现多元化的发展趋势,许多厂家生产的电视上均集成许多功能模块,以尽可能的满足不同用户的需求;但随着社会的多元化发展,用户需求的个性化越来越强,进而致使厂家生产的电视机根本不可能满足不同用户的不同需求,同时也会使得用户购买的电视相 对于其自身而言附带了许多无用的功能,进而造成资源的浪费。
发明内容
鉴于上述技术问题,本申请提供一种分体式电视,包括:
主控制模块,与所述分体式电视的信号传送设备连接,以接收所述信号传送设备发送的第一数据,并对该第一数据进行处理后转换为第二数据;
至少一个连接器;以及
显示器,通过所述至少一个连接器与所述主控制模块连接,接收所述第二数据,并将所述第二数据中所包含的音视频信号予以播放;
其中,所述主控制模块与所述显示器相互分离设置,且所述显示器中设置有电源适配器,该电源适配器通过所述连接器驱动所述主控模块工作。
作为优选的实施例,上述的分体式电视中,所述音视频信号包括音频数据和/或视频数据,所述显示器包括:
桥接芯片,接收所述第二数据,并对所述第二数据进行处理后输出用于播放的所述音频数据和/或所述视频数据。
作为优选的实施例,上述的分体式电视中所述显示器还包括:
显示设备,与所述桥接芯片连接,以接收并播放所述视频数据。
作为优选的实施例,上述的分体式电视中所述显示器还包括:
音频设备,与所述桥接芯片连接,以接收并播放所述音频数据。
作为优选的实施例,上述的分体式电视中所述显示器还包括:
多个外围设备,均与所述桥接芯片连接,用于调整所述音频设备和所述显示设备的运行参数,以及接收与所述分离式电视匹配的遥控器所发出的遥控信号。
作为优选的实施例,上述的分体式电视中所述多个外围设备包括:
物理按键,与所述桥接芯片连接,以用于调整所述音频设备和所述显示设备的运行参数;
遥控信号接收设备,与所述桥接芯片连接,用于接收所述遥控信号,以控制所述音频数据和/或所述视频数据的播放。
作为优选的实施例,上述的分体式电视中所述主控模块包括:
至少一个子单元,且每个所述子单元均分别与其适配的所述信号传送设备连接;
核心单元,每个所述子单元均通过该核心单元与所述显示器连接;
其中,任一所述子单元均从与其适配的信号传送设备接收所述第一数据,并将该第一数据转换为具有标准格式的待处理数据至所述核心单元,该核心单元对所述具有标准格式的待处理数据进行处理后生成所述第二数据。
作为优选的实施例,上述的分体式电视中所述子单元包括:
无线电视信号处理子单元,用于接收并处理通过无线广播的方式发送的无线电视信号,并将该无线电视信号的格式转换为所述标准格式;
闭路电视信号处理子单元,用于接收并处理通过有线传送的方式发送的闭路电视信号,并将该闭路电视信号的格式转换为所述标准格式;
互联网电视信号处理子单元,用于接收并处理通过互联网传送的互联网电视信号,并将该互联网电视信号的格式转换为所述标准格式。
作为优选的实施例,上述的分体式电视中所述主控模块还包括:
本地存储设备,与所述核心单元连接;
其中,所述核心单元可调取并发送所述本地存储设备中存储的音视频数据至所述屏端模块,以进行播放操作。
作为优选的实施例,上述的分体式电视中所述子单元还包括:
音视频输入设备,用于接收外部音视频输出设备发送的音视频数据,并该音视频数据
存储至所述本地存储设备中。
作为优选的实施例,上述的分体式电视中所述子单元还包括:
无线通信设备,用于接收并发送网络音视频数据至所述核心单元进行处理,且该核心单元将处理后所述网络音视频数据发送至所述屏端模块进行播放操作。
作为优选的实施例,上述的分体式电视中:
每个所述子单元和/或所述核心单元均独立集成为单一的结构, 以用于单独的进行升级和/或更换操作。
作为优选的实施例,上述的分体式电视中:
所述显示器与所述主控模块之间通过预设集成总线进行数据的交互。
上述技术方案具有如下优点或有益效果:
本申请中的技术方案是通过将电视的主控模块与显示器分别独立设置,且该显示器主要用于音视频数据播放,而主控模块则主要用于电视音视频数据的接收及处理,由于主控模块与显示器在物理结构上相互独立设置,进而使得用户可分别对其独立的进行诸如维修、维护、升级及更换等操作;同时,由于显示器(即屏端)设置有主控模块的电源适配器,只要主控制模块与显示器连接便能给主控模块正常上电,进而实现了分立设置的主控模块与显示器共享同一电源,以避免因显示器和主控模块分别设置电源设备而造成的成本上升,还便于用户购买电视的放置及操作,且用户通过更换或升级主控模块或者部分子功能单元就能方便的实现对电视机的维护及升级操作;另外,本申请中记载的分体式电视还可根据其个性化的需求进行各个独立单元的升级,进而有效的降低电视机的升级成本。
附图说明
参考所附附图,以更加充分的描述本发明的实施例。然而,所附 附图仅用于说明和阐述,并不构成对本发明范围的限制。
图1为本申请实施例一中分体式电视的结构示意图;
图2为本申请实施例二中音视频系统的结构示意图;
图3为本申请实施例二中音视频系统中音视频信号转换的结构示意图;
图4为本申请实施例二中音视频系统中硬件设备的结构示意图;
图5为本申请实施例三中音视频接口转换装置中桥接芯片的结构示意图。
具体实施方式
本发明实施例中提供的分体式电视,可基于现有电视机结构的基础上,通过将电视机结构中的核心构件集成为单一的独立主控模块,且该独立的主控模块也可由电视机中不可或缺的核心模块与至少一个独立设置的具有独立功能的子单元构成,而用于音视频播放的屏端构件则集成为另一独立的显示器;由于显示器中的构件升级速度较慢,而核心模块中的构件升级速度则较快,这样在对电视机进行升级时,可仅对当前需要升级的核心构件进行单独的升级,而保留不需要升级的诸如屏端的构件等,进而有效的降低了电视机的升级成本;且在用户新购置电视机时,还可以根据自身的个性化需求,通过将所需的具有独立功能的子单元与上述的核心模块进行匹配组装形成具有特殊功能的主控模块,进而使得其所购置的电视机能够满足其个性化的需求。
下面结合附图和具体实施例对本发明的分体式电视进行详细说明。
实施例一:
图1为本申请实施例中分体式电视的结构示意图;如图1所示,本实施例中的分体式电视包括:
主控模块,主要由电视机的核心构件组装而成,例如可包括和电视播放内容相关的输入设备(如HDMI/CvBS等),保存网络视频数据、应用数据及游戏数据等相关的信息的主控芯片等;该主控模块通过显示器上设置连接端口与分体式电视的信号传送设备连接,以接收信号传送设备发送的原始数据(即第一数据),并对该原始数据进行处理后生成与显示器匹配的播放数据(即第二数据)。
优选的,该主控模块可由作为电视机中不可或缺的诸如主控芯片等构成的核心单元与至少一个子单元构成,且每个子单元均可独立的实现至少一种格式数据(如无线电视数据、闭路电视数据及互联网信号等)的处理功能,而当上述的分体式电视中组装有任一子单元时,每个子单元则分别与其适配的信号传送设备连接,以接收相应格式的原始数据,并对该原始数据进行转换等处理操作后,使其转换为具有标准格式的待处理数据,以便于后续核心单元对其进行处理操作,进而转换生成为播放数据。
优选的,任一上述的子单元均能单独的与核心单元一起构建为能够正常运行的主控模块,并通过显示器实现一种电视信号的接收与播放;当然,也可将两个子单元或多个子单元混搭,以同时实现两种或 多种电视信号的接收与播放。
优选的,上述的子单元可包括无线电视信号处理子单元、闭路电视信号处理子单元和互联网电视信号处理子单元;无线电视信号处理子单元主要用于接收并发送的无线电视信号,并将该无线电视信号的格式转换为标准格式,以用于核心单元的对其进行后续的操作处理,该无线电视信号处理子单元中可包括诸如通过无线广播的方式进行电视信号接收与处理,相应的其要集成有无线信号的接收天线、音视频转换等构件,并能够独立的实现无线电视信号数据的接收、解析及转换等操作;闭路电视信号处理子单元则用于接收并处理通过有线传送的方式发送的闭路电视信号(如数字电视信号等),并将该闭路电视信号的格式转换为上述的标准格式,该闭路电视信号处理子单元可包括诸如通过有线方式进行电视信号接收与处理,相应的其要集成有闭路电视信号的接收设备、音视频转换等构件,并能够独立的实现闭路电视信号数据的接收/发送、解析及转换等操作;互联网电视信号处理子单元则用于接收并处理通过互联网传送的互联网电视信号(如网络音视频数据、游戏数据、应用数据等),并将该互联网电视信号的格式转换为上述的标准格式,该互联网电视信号处理子单元可包括诸如通过互联网方式进行的电视信号接收与处理,相应的其要集成有互联网电视信号的接收设备、音视频转换等构件,并能够独立的实现互联网电视信号数据的接收/发送、解析及转换等操作。
需要注意的是,上述的任一子单元主要是适配于通过不同方式进行电视信号进行传送时,其能够单独的完成电视信号的接收、解析及 转换,进而将原始的电视数据转换为具有同一标准格式的待处理数据,以便于核心单元的后续处理;同时,各个子单元也可根据具体的实际需求具有数据信号交互的构件,以实现与其适配格式电视信号(如互连网电视信号等)的交互操作。另外,上述的核心模块还可包括能够单独完成某一项功能的构件组成的独立运行的或者能够单独升级的若干辅助子单元,只要能够分别的对其进行单独更换或升级操作即可。
优选的,上述的核心模块还与用于提供电视信号的外部设备连接,以接收原始的电视信号,并对该电视信号进行处理后发送至显示器进行播放。
优选的,上述的显示器中还可集成有用于驱动主控模块工作的电源适配器,并通过连接器便能向主控模块提供电能,进而实现了分别独立设置的主控模块与显示器共用同一电源的目的,以避免因在主控模块和显示器上分别设置电源适配器相关的硬件设备而导致的成本上升;当然,基于共享同一电源的目的,也可在主控模块中集成用于向显示器提供电能的电源适配器,同样能够达到降低成本便于置放的目的,并能同时进一步的减薄显示器,便于用户购置的电视机的放置及操作。
同时,上述的核心单元(包含有主控芯片等)可用于不同电视信号数据的处理,以及各个子单元设备的认证、控制及供电等操作;作为电视机的核心构件,也能够单独的实现升级及更换操作;即上述主控模块由各个独立的单元模块组装而成,能够作为一个整体进行更换 或升级操作,同时也能各个单元作为一个单独的构件进行升级或更换,这样就使得用户在购买电视时能够根据其自身需求,通过将不同的子单元与核心单元进行组装,以形成满足其个性需求的核心模块;而在后续的使用过程中,可随时根据其需求的变化通过更换、升级或增加相应的子单元,进而实时满足用户的不同阶段的不同需求。
需要注意的是,上述的核心模块必然包括核心单元和至少一个子单元,且只要包括核心单元和一个子单元,该核心模块就能够实现与该子单元匹配格式的电视信号的接收、解析及转换操作等,且还能通过增加任意一个或多个子单元和/或辅助子单元,使得核心模块也相应的具有与其增加的单元适应的功能。
优选的,上述的核心模块还可设置有诸如用于接收外部音视频输出设备发送的音视频数据的音视频输入设备,以及用于提供互联网通讯信号的互联网接入设备(如提供无线通讯信号的Wi-Fi设备和/或提供有线通讯信号的以太网设备等)等,使得本实施例中分离式电视融合至当前迅猛发展的智能家居互联互通的物联网中。另外,上述的分体式电视还包括显示器,且该显示器可通过外设的连接线(如预设的集成总线等)或以无线通讯的方式与上述的核心模块通讯连接,在本实施例中是可通过集成的总线进行显示器与主控模块之间的连接,以实现接收并发送的音视频数据等功能,且该显示器还能反馈或发送相应的控制命令至该核心模块,以便于用户对分体式电视进行播放或人机交互操作;同时,该显示器独立于上述的核心模块单独设置,以使得其各自能够单独的完成升级和/或更换操作,而同一个显示器还 能同时与一个或多个核心模块连接,同一个核心模块也可同时与一个或多个显示器连接,进而能够实现多屏显示或多屏互动的功能。
优选的,上述的显示器可包括桥接芯片、显示设备(如液晶屏)、音频设备(如音响)和外围设备(如物理按键及遥控信号接收设备等设备)等诸多设备中的一个或多个均集成在显示器上,即主控模块可仅集成有用于处理各个功能模块的处理单元,而各个功能模块的外设器件则可集成在显示器或独立设置均可,只要使得桥接芯片与上述的主控模块连接,能够接收并处理经主控芯片处理后的音视频数据,以将音频数据发送至音频设备进行播放,同时将视频数据发送至显示设备进行播放,并使显示设备与音频设备的播放进度同步;上述收/发设备则主要用于分体式电视适配的遥控器发送的控制命令,并将该控制命令发送至主控芯片,以使得该主控芯片根据控制命令控制显示设备和/或视频设备的运行。
优选的,当上述的显示设备为触控屏时,桥接芯片还能将显示设备发送的触控命令转发至主控模块的核心单元,以实现用户与电视机的交互操作。
优选的,用户通过上述该物理按键可以调节显示设备自身的属性如图像显示的对比度、画质等参数。
优选的,上述的主控模块中还包括本地存储设备,可用于存储用户下载的音视频数据及电视机播放的参数信息等;同时,显示器还可包括音/视频录入设备(如麦克风、摄像头等),用户可通过该音/视频录入设备录制相应的用户音/视频数据,并将其存储在上述的本地 存储设备和/或远端的服务器中进行存储或共享,同时该分体式电视机还能够调取存储的或其他用户共享的用户音/视频数据进行播放。
在本实施例中,通过将电视机的主芯片与屏端模块(如显示器)分离(即将该主芯片设置在主控模块中),可在降低屏端尺寸的同时,实现在不更换显示器的前提下,通过升级主控模块中的全部或部分构件,以完成对电视机的升级,进而可大大降低用户的升级成本。下面就以一用户从选购分体式电视至对该分体式电视进行升级/更换操作的流程进行详细说明:
首先,用户在购买电视时,可根据自身的需求(如尺寸、画质、音像效果等)选择相应的显示器。
其次,用户再根据选择的显示器挑选与该显示器适配的核心单元,以及其所需求的子单元和辅助子单元设备,以将选择的核心单元和子单元以及辅助子单元组装成为主控模块,例如该用户仅对家用数字电视有需求,则可选择一核心单元和闭路电视信号处理子单元即可,并将该核心单元和闭路电视信号处理子单元组装后构成一个主控模块,这样就使得用户在购买的时候能够根据具体的需求只选择相应功能的子单元硬件,进而降低了用户的购机成本。
之后,将上述主控模块插于显示器上预设的插槽进行连接,以形成一个具有用户所需求功能的电视机,并可将该电视机与其适配的外部设备进行连接后,上电即可实现电视信号的播放。
最后,用户在后续的使用过程中,若有新的需求则可仅购买满足其新的需求的主控模块即可,并将该新购置的主控模块更换至上述的 显示器上,就能够在基于已购置的分体式电视显示器的基础上满足其需求;当然,用户也可根据需求拆除上述已购置的分体式电视的主控模块中的子单元,而若进行更换、升级或维修时,也可单独的对一个子单元进行升级、维修或更换操作,进而可大大降低后续电视的升级及维护成本。
同时,由于将主控模块中的各个功能模块单独的进行集成,这样还能进一步的提高生产厂商的分工协作的程度,以通过单独批量生产的模式降低产品的生产成本,进而推动整个行业的快速发展;当然,基于相同的理念,也可针对显示器进行类似结构的设置。
综上,本实施例中,通过将显示器与主控模块分别独立设置,以有效降低了电视机升级操作的难度,同时主控模块中各个功能模块又单独的集成为一个整体,进而使得主控模块和/或任一功能模块均能实现单独的更换或升级操作,即使得整个电视机结构的各个不同的功能模块均能独立的实现升级或更换操作,以有效结构电视机结构中部件升级不匹配的问题,降低电视机升级及维护的成本,且本申请中记载的分体式电视还能实现电源的共享,以利于显示器尺寸的减薄及电视机的放置及操作,并可根据不同用户的个性化需求进行针对性的配置组装,进而有效满足不同用户的个性化需求。
实施例二:
本申请还提供了一种音视频系统,可基于上述实施例一的基础上,参见图2可知,该音视频系统包括主控模块(control block) 10(相当于上述实施例一中的主控模块)和显示器(display panel)11,且该显示器(相当于实施例一中的显示器)11还嵌入设置有网桥接口(bridge interface)12及桥接芯片(图中未标示)。上述的主控模块(等同于实施例一中的主控模块)10可以模块化(modular piece)的方式独立于显示器11设置,且该主控模块10可具有多种组合方式(various form factors),并能通过一个或多个连接器(connector)13与上述的网桥接口12连接,以将音视频数据发送至桥接芯片并控制上述的显示器11进行播放。
优选的,上述的主控模块10可包括电视机的主控模块(controls)(图中未标示)、相关的硬件设备(hardware)102和输入设备(inputs)101等,如该主控模块10包括视频输入端口(video inputs)和视频处理硬件(video processing hardware),即参见图3所示,当主控模块10通过连接器13发送视频数据(video data)至网桥接口12时,该网桥接口12将接收到的具有B类型格式的视频数据传送至桥接芯片,以将该B类型格式的视频数据转换(converts)为可显示(displayable)于显示器11的C类型格式后,并将转换后的视频数据通过显示器11进行显示播放。具体的,该主控模块10可包括中央处理器(central processing unit,简称CPU)、图形处理器(graphical processing unit,简称GPU)、电视调谐器(television(即TV)tuner)、主控模块10和/或显示器11的电源适配器(power adapter for the control block and/or the display panel)、高清晰度多媒体输入接口 (high-definition-multimedia-interface(即HDMI)inputs)以及Wi-Fi模块和/或以太网设备等电视机的核心模块等。
优选的,基于图1-3的基础上,参见图4可知,上述的视频处理硬件102包含电视信号调谐器1022,其主要用于对主控模块10所接收到的电视信号(television signal)A进行处理,即将其调谐为具有B类型格式的视频数据,并将处理后的电视信号(processed television signal)通过一个或多个连接器13输出至上述的网桥接口12。
优选的,上述的主控模块10可通过多种方式与显示器11连接,例如:该主控模块10可直接的安装在显示器11上(directly mounted onto the display panel),或者采用一个或多个线缆(cables)实现该主控模块10与显示器11之间的短距离连接(connected a short distance away),或者通过无线连接的方式(via a wireless connection)实现主控模块10与显示器11之间的数据交互。
优选的,上述的显示器11上设置的桥接芯片(bridge chip)能够独立的调整显示器11的参数,以使得同一个显示器11能够匹配不同主控方式的主控模块10,进而便于后续升级操作的同时,还能降低升级成本。
目前,由于社会的发展及科技的进步,在消费电子市场上,基于SOC的智能电视的核心模块每6个月就要进行一次升级,但电视的显示技术(TV panel technology)则进步缓慢,进而无法与上述的核心模块实现同步升级,而由于当前的电视均是一体机,故无法单独的 对核心模块进行升级。为了使得消费者能够以最低的成本享受最新技术所带来的电视,申请人发明了上述的音视频系统,使得用户仅需通过购置或升级具有新功能的主控模块10即能实现对旧电视的诸如视频功能、硬件设施等核心模块的升级,即新的或升级后的主控模块10可与旧的显示器11一起构建一个具有最新电视技术的电视机,进而使得用户花费较低的成本即能享用最新的电视技术。
作为一个具体实例的体现,上述的主控模块10可视为一个软件狗(dongle)或插塞适配器(plug adapter),即该主控模块可通过利用一个即插即用的连接器(plug-n-play connector)或电线(wire)插接于(be plugged into)上述的显示器11中。例如,基于该实例而构建的插卡式电视(Plug-Card TV)(即实施例一中的分体式电视),该插卡式电视可包括显示器(TV panel)和插接卡(plug card),该插接卡插接于上述的显示器中,上电便能实现正常的电视功能;而在对该插卡式电视进行升级时,则可仅通过对主控模块进行升级(upgrade)或更换具有新功能的主控模块,就能完成整个分体式电视的升级操作,而显示器11仅作为显示屏(monitor),并不需要进行升级或更换,以使得用户在花费很低的升级成本就能享用到最先进的电视技术,还能有效的促进电视技术的快速发展。
其中,上述的插卡式电视中,显示器是作为电视机的体积上主体结构,即该显示器上开设有插槽,而插接卡则相对显示器体积上较小,同时集成工艺将各种核心的设备集成为作为一个整体的主控模块,并具有于上述插槽匹配的插头,将插接卡通过插头插接在插槽中,即能 方便简单的完成整个电视机的组装;相应的,此时该主控模块可根据需求设置共享显示器所配置的电源,基于相同的理念,也可将电源适配器设置在显示器中,并能够根据需求设置主控模块所需共享的电源。
同时,上述的分体式电视可基于实施例一的基础上,在实现个性组装及各个集成单元的独立升级的同时,主要是将显示器作为电视机结构上的主体,且仅通过插口即能实现显示器与主控模块的连接,即用户通过插拔的方式便能够轻易的完成主控模块的更换及升级等操作,在降低升级及维护成本的同时,降低了用户升级的难度。
另外,作为另一个具体实例的体现,上述的主控模块10还可视为一个控制盒(control box),且该控制盒具有诸如HDMI或其他特定格式的输出端口(output),以使得主控模块10能够利用该输出端口与显示器11上与该输出端口格式匹配的输入端口(input)连接,即主控模块10可利用HDMI输出端口通过HDMI线缆(cable)与显示器11上的HDMI输入端口连接(当然,也可通过基于其他类型的线缆实现主控模块10与显示器11之间的通信和/或电连接,相应的在主控模块10和显示器11上均要匹配线缆的规格设定相应的连接端口,即只要能够完成主控模块10与显示器11之间的通信和/或电连接即可,采用什么规格或类型的线缆不会对本申请的技术方案的实现产生影响)。例如,基于该实例而构建的分体式电视(BOX controlled TV)(即实施例一中的分体式电视),该分体式电视被设置为相互独立的若干个模块结构,如控制盒(control BOX)和显示器(TV panel), 且该显示器通过客制化的线缆(customized cable)与控制盒连接,且每个模块均能独立的进行升级操作(upgraded separately),这样就方便了对电视的诸如音频(audio)等子系统(sub-systems)进行升级或更换(replaced)操作。
其中,基于图1-3的基础上,参见图4可知,上述的分体式电视的主控模块10所包括的硬件设备102还具有电源适配器(power adapter)1021,该电源适配器1021输出电信号D(该电源适配器1021也可根据具体的需求设置在屏端设备如显示器中,只要其能实现共享同一电源的目的即可),以通过上述的一个连接器(connector)驱动(powering)显示器工作,即主控模块与显示器共享同一电源,使得主控模块和显示器不用再分别设置电源线,以降低电视的生产成本,同时也省去电视机所占有的空间,且结构简单美观。
同时,上述的分体式电视也可基于实施例一的基础上,在实现个性组装及各个集成单元的独立升级的同时,主要是将控制盒作为电视机结构上的主体,且该控制盒通过线缆直接驱动显示器工作,进而能在降低升级及维护成本的同时,有效的缩小了显示器的尺寸,以使得该分体式电视具有很强的轻薄性能。
需要注意的是,上述的插卡式电视和分体式电视中,其所使用的显示器基本相同,仅是基于PCB板布局的不同,可通过适应性的将连接端口的针脚(package pins)进行相应的改动,就能实现相互之间的互通互用。而作为主控模块的主控模块和控制盒之间,则可采用相同的主芯片(main chip)用于支持视频编译码及其他多媒体功能 (support video decoder and multimedia functions)。
实施例三
基于上述实施例一和/或实施例二的基础上,本申请还提供了一种音视频接口转换装置,可用于上述的分体式电视、分体式电视及分体式电视等电视系统中,即该音视频接口转换装置可应用于实施例一中的显示器及实施例二中的显示器中;但由于不同类型的电视其主控模块与显示器之间的连接方式会有所不同,故在实际的应用中,该音视频接口转换装置可依据实际情况进行适应性的调整,但其主要的原理及结构均相互的适用。
本实施例中的音视频接口转换装置可为桥接芯片(bridge IC),例如可设置具有高性能的单片机(high-performance single-chip)作为该桥接芯片,只要其能将HDMI格式数据转换为LVDS和/或V-by-One格式的数据即可;例如,该桥接芯片可具有用于系统控制的嵌入式32bit的RISC处理器,并集成有嵌入式的HDMI接收器(receiver)和LVDS/V-by-One转换器(transmitter),即该桥接芯片支持HDMI 2.0的输入,并将输入的数据转换(conversion)为LVDS/V-by-One格式的数据进行输出;上述的嵌入式的HDMI接收器完全支持HDMI 2.0参数要求(specification),并可通过上述显示器的输入端口接收音频和视频信号。
优选的,上述桥接芯片中HDMI2.0接口均可进行扩展,以使得上述桥接芯片能够支持超过诸如4Kx2Kx8bit 4:4:4 60Hz等以上的分辨 率;这样,上述的桥接芯片便与屏端的native分辨率更加匹配(比如4Kx2Kx10bit 4:4:4 60Hz等分辨率),以达到最佳图像质量。优选的,上述的桥接芯片还包括视频处理单元(video processing unit)和音频处理单元(audio processing unit),且该视频处理单元不仅能够对视频数据进行图像校正及增强(perform advanced image correction and enhancements),还能将处理后的数据转换为LVDS/V-by-One格式进行输出。
优选的,上述的桥接芯片还集成有LVDS发射器(transmitter)和V-by-One发射器,且上述的LVDS发射器可发送1080P@60fps以下分辨率的数据,并支持单链路和双链路的LVDS输出,而V-by-One发射器则支持2K/4K@60fps分辨率的数据输出。
优选的,本实施例中的桥接芯片还集成有许多先进的外围设备(many advanced peripherals),例如远程红外接收器(IR remote receiver)、双通道(2-channel)的ADC设备、12C设备、UART设备、SPI设备和PWM接口(interface)等。
另外,上述的桥接芯片还集成有片上振荡器(on-chip oscillator)和64KB SRAM,以对系统进行有效的简化及降低设备的材料成本(reduce system complexity and BOM cost)。
在本实施例中,由于采用的桥接芯片具有高性能和高性价比,且具有将接收到的HDMI数据转化为LVDS/V-by-One格式数据的功能,故能够应用于高清电视(HD)、全高清电视(FHD)及超高清电视(UHD)等设备中。
图5为本申请实施例三音视频接口转换装置中桥接芯片的结构示意图;如图5所示,该桥接芯片包括核心模块(core and fabric)20、音视频输入单元(audio/video input unit)21、视频输出模块(video output unit)22、音频输出模块(audio output unit)23、存储接口(memory interface)24、系统接口(system interface)25和输出/输出端口(input/output unit)26。
进一步的,上述的核心模块(相当于实施例一中的核心设备)20可包括若干个子系统(sub-system)如嵌入式32位的RISC处理器等,并同时包括有视频处理单元和独立用于存储之类及数据的存储单元(如64KB SRAM)及ICCM、DCCM等单元,且该核心模块20还支持MAC操作的快速计算及算法的拓展(extended arithmetic package)等。
优选的,上述的视频处理单元(video processing unit)具有图像产生器(pattern generator)、屏幕菜单(OSD)、DNLP、白平衡(white balance)、Gamma、色相饱和度调整(Hue saturation adjust)及亮度调整(Bright contrast)等功能模块,且上述的图像产生器能够产生诸如红、绿、蓝、白、黑及各种标准的灰度色光。
优选的,上述的音视频输入单元21则具有嵌入式的HDMI 2.0Rx接口,以用于接收HDMI格式的电视信号,且该音视频输入单元21支持的分辨率可为1080P@60Hz、1080P@120Hz、1080P@50Hz、1080P@100Hz、1366*768@50Hz、1366*768@60Hz或4K*2K@60Hz等;相应的,上述的视频输出模块22则具有LVDS端口和V-by-One端口,且LVDS端口可为1或2通道,并支持的分辨率可为1080P@60Hz、 1080P@50Hz、1080P@100Hz、1366*768@50Hz或1366*768@60Hz等,而V-by-One端口支持的分辨率则可为1080P@60Hz、1080P@120Hz、1080P@50Hz、1080P@100Hz、1366*768@50Hz、1366*768@60Hz或4K*2K@60Hz等。
优选的,上述的音频输出模块23则可具有2沟道的12S端口,而存储接口24则具有SPR NOR及闪存控制端口(Flash controller),并能通过SPI接口支持1、2或4位的闪存;系统接口25则具有PLLs、内置(internal)OSC及PMU等,输出/输出端口26则具有远程红外接收子端口(IR remote)、两个嵌入式的SA RADC子端口、两个12C子端口、三个UART子端口、SPI子端口、四个PWM子端口以及一组通用的I/O接口等。其中,上述的四个PWM子端口中,一个PWM子端口是用于LED输出,剩余的三个PWM子端口则用于视频输出。
进一步的,上述的桥接芯片还集成有通用的计数器、计时器、内部振荡器及24MHz的晶体振荡器的输入端口等外围设备,且该桥接芯片的还具有两个可通过软件控制的内部电源管理模块等。
优选的,本实施例中的音视频接口转换装置可配置13*13规格的针脚进行端口的连接,具体每个针脚功能均可基于实际的需求按照现有的标准进行适应性的配置,且可将部分针脚设置为具有多种用途规的针脚,以使得其适应不同组装方式的电视机中。
综上所述,本申请中通过将显示器与主控模块分别独立设置,且主控模块中各个功能模块又单独的集成为一个整体,进而使得主控模块和/或任一功能模块均能实现单独的更换或升级操作,即使得整个 电视机结构的各个不同的功能模块均能独立的实现升级或更换操作,以有效结构电视机结构中部件升级不匹配的问题,降低电视机升级及维护的成本,且本申请中记载的分体式电视用户仅通过更换或升级主控模块就能方便及时且低成本的完成对整个电视机的升级操作,进而使得用户花费最低的成本便能享用最先进的电视技术。
对于本领域的技术人员而言,阅读上述说明后,各种变化和修正无疑将显而易见。因此,所附的权利要求书应看作是涵盖本发明的真实意图和范围的全部变化和修正。在权利要求书范围内任何和所有等价的范围与内容,都应认为仍属本发明的意图和范围内。

Claims (13)

  1. 一种分体式电视,其特征在于,包括:
    主控制模块,与所述分体式电视的信号传送设备连接,以接收所述信号传送设备发送的第一数据,并对该第一数据进行处理后转换为第二数据;
    至少一个连接器;以及
    显示器,通过所述至少一个连接器与所述主控制模块连接,接收所述第二数据,并将所述第二数据中所包含的音视频信号予以播放;
    其中,所述主控制模块与所述显示器相互分离设置,且所述显示器中设置有电源适配器,该电源适配器通过所述连接器驱动所述主控模块工作。
  2. 如权利要求1所述的分体式电视,其特征在于,所述音视频信号包括音频数据和/或视频数据,所述显示器包括:
    桥接芯片,接收所述第二数据,并对所述第二数据进行处理后输出用于播放的所述音频数据和/或所述视频数据。
  3. 如权利要求2所述的分体式电视,其特征在于,所述显示器还包括:
    显示设备,与所述桥接芯片连接,以接收并播放所述视频数据。
  4. 如权利要求3所述的分体式电视,其特征在于,所述显示器还包括:
    音频设备,与所述桥接芯片连接,以接收并播放所述音频数据。
  5. 如权利要求4所述的分体式电视,其特征在于,所述显示器还包括:
    多个外围设备,均与所述桥接芯片连接,用于调整所述音频设备和所述显示设备的运行参数,以及接收与所述分离式电视匹配的遥控器所发出的遥控信号。
  6. 如权利要求5所述的分体式电视,其特征在于,所述多个外围设备包括:
    物理按键,与所述桥接芯片连接,以用于调整所述音频设备和所述显示设备的运行参数;
    遥控信号接收设备,与所述桥接芯片连接,用于接收所述遥控信号,以控制所述音频数据和/或所述视频数据的播放。
  7. 如权利要求1所述的分体式电视,其特征在于,所述主控模块包括:
    至少一个子单元,且每个所述子单元均分别与其适配的所述信号传送设备连接;
    核心单元,每个所述子单元均通过该核心单元与所述显示器连接;
    其中,任一所述子单元均从与其适配的信号传送设备接收所述第 一数据,并将该第一数据转换为具有标准格式的待处理数据至所述核心单元,该核心单元对所述具有标准格式的待处理数据进行处理后生成所述第二数据。
  8. 如权利要求7所述的分体式电视,其特征在于,所述子单元包括:
    无线电视信号处理子单元,用于接收并处理通过无线广播的方式发送的无线电视信号,并将该无线电视信号的格式转换为所述标准格式;
    闭路电视信号处理子单元,用于接收并处理通过有线传送的方式发送的闭路电视信号,并将该闭路电视信号的格式转换为所述标准格式;
    互联网电视信号处理子单元,用于接收并处理通过互联网传送的互联网电视信号,并将该互联网电视信号的格式转换为所述标准格式。
  9. 如权利要求7所述的分体式电视,其特征在于,所述主控模块还包括:
    本地存储设备,与所述核心单元连接;
    其中,所述核心单元可调取并发送所述本地存储设备中存储的音视频数据至所述屏端模块,以进行播放操作。
  10. 如权利要求9所述的分体式电视,其特征在于,所述子单元还包括:
    音视频输入设备,用于接收外部音视频输出设备发送的音视频数据,并将该音视频数据存储至所述本地存储设备中。
  11. 如权利要求7所述的分体式电视,其特征在于,所述子单元还包括:
    无线通信设备,用于接收并发送网络音视频数据至所述核心单元进行处理,且该核心单元将处理后所述网络音视频数据发送至所述屏端模块进行播放操作。
  12. 如权利要求7所述的分体式电视,其特征在于,每个所述子单元和/或所述核心单元均独立集成为单一的结构,以用于单独的进行升级和/或更换操作。
  13. 如权利要求1所述的分体式电视,其特征在于,所述显示器与所述主控模块之间通过预设集成总线进行数据的交互。
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