WO2020215519A1 - 一种屏幕展收组件以及终端 - Google Patents

一种屏幕展收组件以及终端 Download PDF

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Publication number
WO2020215519A1
WO2020215519A1 PCT/CN2019/098663 CN2019098663W WO2020215519A1 WO 2020215519 A1 WO2020215519 A1 WO 2020215519A1 CN 2019098663 W CN2019098663 W CN 2019098663W WO 2020215519 A1 WO2020215519 A1 WO 2020215519A1
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WO
WIPO (PCT)
Prior art keywords
display screen
screen
antenna group
terminal
expansion
Prior art date
Application number
PCT/CN2019/098663
Other languages
English (en)
French (fr)
Inventor
李鹏
崔旭旺
Original Assignee
北京小米移动软件有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 北京小米移动软件有限公司 filed Critical 北京小米移动软件有限公司
Priority to KR1020197028491A priority Critical patent/KR102195811B1/ko
Priority to JP2019554679A priority patent/JP7065112B2/ja
Priority to RU2019141626A priority patent/RU2737612C9/ru
Publication of WO2020215519A1 publication Critical patent/WO2020215519A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1615Constructional details or arrangements for portable computers with several enclosures having relative motions, each enclosure supporting at least one I/O or computing function
    • G06F1/1624Constructional details or arrangements for portable computers with several enclosures having relative motions, each enclosure supporting at least one I/O or computing function with sliding enclosures, e.g. sliding keyboard or display
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1652Details related to the display arrangement, including those related to the mounting of the display in the housing the display being flexible, e.g. mimicking a sheet of paper, or rollable
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/24Supports; Mounting means by structural association with other equipment or articles with receiving set
    • H01Q1/241Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
    • H01Q1/242Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use
    • H01Q1/243Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use with built-in antennas
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/08Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station
    • H04B7/0802Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station using antenna selection
    • H04B7/0805Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station using antenna selection with single receiver and antenna switching
    • H04B7/0814Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station using antenna selection with single receiver and antenna switching based on current reception conditions, e.g. switching to different antenna when signal level is below threshold
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0206Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
    • H04M1/0208Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings characterized by the relative motions of the body parts
    • H04M1/0214Foldable telephones, i.e. with body parts pivoting to an open position around an axis parallel to the plane they define in closed position
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • H04M1/0268Details of the structure or mounting of specific components for a display module assembly including a flexible display panel
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus

Definitions

  • the present disclosure relates to the technical field of terminals, and in particular to a screen display and retracting component and a terminal.
  • the data transmission rate is closely related to the ability of the terminal's antenna to receive signals.
  • terminal developers usually consider the shape and size of the antenna used in the terminal based on factors such as the shape and characteristics of the terminal, the layout of internal parts, and the position that the user may hold when using the terminal, and look for it in the terminal. Set the antenna in a suitable fixed position, so that the set antenna can provide better antenna performance.
  • the embodiments of the present disclosure provide a screen expansion and contraction component and a terminal.
  • the technical solution is as follows:
  • a screen expansion and contraction component the screen expansion and contraction component is provided in a terminal, and the screen expansion and contraction component includes:
  • Screen display device first display screen and first antenna group
  • the first display screen is a flexible screen
  • the screen expansion and contraction device is used to store or expand the first display screen by changing the structure form
  • the first antenna group is arranged in the screen expansion and contraction device.
  • the screen expansion and contraction device includes a supporting component; the supporting component corresponds to a contracted state and a supporting state;
  • the first antenna group is arranged in the support assembly.
  • the support assembly includes at least one set of support rods; the first end of the at least one set of support rods is connected to the first display screen; the at least one set of support rods is connected to the first display screen
  • the moving direction of the connected first end is the same as the direction in which the first display screen is accommodated or expanded;
  • the first antenna group is arranged inside or on the surface of the at least one set of support rods.
  • the first antenna group includes at least one of a main antenna, a diversity antenna, a satellite positioning antenna, a wireless fidelity Wi-Fi antenna, and a Bluetooth antenna.
  • a terminal including: the screen expansion and contraction component according to any one of the above-mentioned first aspects.
  • the terminal further includes: a radio frequency chip and a second antenna group;
  • the radio frequency chip is electrically connected to the first antenna group in the screen expansion device of the screen expansion and contraction assembly; and the radio frequency chip is electrically connected to the second antenna group;
  • the radio frequency chip is configured to switch from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group when the screen spreading and retracting device expands the first display screen through a structural change.
  • the antenna group transmits and receives wireless data.
  • the radio frequency chip is configured to determine that the screen expansion and contraction device expands the first display screen through a structural change when a first specified condition is established;
  • the first specified condition includes at least one of the following conditions:
  • a third signal generated when the first designated switch is turned on is received, and the first designated switch is a switch that is triggered to turn on when the first display screen is expanded.
  • the radio frequency chip is used to expand the first display screen by changing the structure of the screen expansion and contraction device, and the signal quality of the wireless signal received through the second antenna group When the quality is lower than the first quality threshold, switch from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group.
  • the radio frequency chip is also used to switch from transmitting and receiving wireless data through the first antenna group to when the screen spreading and retracting device receives the first display screen through a change in the structure form
  • the wireless data is sent and received through the second antenna group.
  • the radio frequency chip is configured to determine that the screen expansion and contraction device receives the first display screen through a structural change when a second specified condition is established;
  • the second specified condition includes at least one of the following conditions:
  • a sixth signal generated when a second designated switch is turned off is received, and the second designated switch is a switch that triggers turning off when the first display screen is stored.
  • the radio frequency chip is used to store the first display screen in the screen expansion and contraction device through a structural change, and the signal quality of the wireless signal received through the first antenna group When it is lower than the second quality threshold, switch from transmitting and receiving wireless data through the first antenna group to transmitting and receiving wireless data through the second antenna group.
  • the types of antennas included in the first antenna group and the second antenna group are the same.
  • the screen expansion and contraction component set in the terminal includes: a screen expansion and contraction device, a first display screen, and a first antenna group; the first display screen is a flexible screen; the screen expansion and contraction device is used to store or expand the A display screen; the first antenna group is set in the screen display device.
  • the present disclosure uses the first antenna group provided in the screen expansion and contraction device.
  • the terminal When the terminal expands the first display screen from the screen expansion and contraction device through the screen expansion and contraction device, the terminal can use the first antenna in the screen expansion and contraction device
  • the group transmits data, so as to avoid the deterioration of the wireless environment for the terminal to send and receive wireless data when the appearance of the terminal changes, resulting in the deterioration of the performance of the terminal to send and receive data, and to improve the performance of the terminal to send and receive data.
  • Fig. 1 is a schematic structural diagram of a terminal provided by the present disclosure according to an exemplary embodiment
  • FIG. 2 is a schematic structural diagram of a screen expansion and contraction component provided by an embodiment of the present disclosure
  • FIG. 3 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • FIG. 4 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • FIG. 5 is a schematic structural diagram of a screen expansion and contraction device in a retracted state according to an embodiment of the present disclosure
  • FIG. 6 is a schematic structural diagram of a screen expansion and contraction device in an unfolding or storage process related to an embodiment of the present disclosure
  • FIG. 7 is a schematic structural diagram of a screen expansion and contraction device in a supported state according to an embodiment of the present disclosure
  • FIG. 8 is a schematic structural diagram of a screen expansion and contraction device provided in a terminal according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of a support assembly connected to a first display screen according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic diagram of a side structure of a terminal of FIG. 5 according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic diagram of a side structure of a terminal of FIG. 5 according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • FIG. 13 is a diagram of a display interface on the front of a terminal according to an embodiment of the present disclosure.
  • FIG. 14 is a diagram of a display interface on the front of a terminal according to an embodiment of the present disclosure.
  • the solution provided by the present disclosure can be used in the scenario of data transmission within the terminal in daily life. To facilitate understanding, the following first briefly introduces some terms and application scenarios involved in the embodiments of the present disclosure.
  • LDS Laser Direct Structuring
  • Flexible Printed Circuit A flexible printed circuit board made of polyimide or polyester film.
  • Flexible screen refers to a flexible OLED (Organic Light-Emitting Diode, organic light-emitting diode) screen.
  • OLED Organic Light-Emitting Diode, organic light-emitting diode
  • Fig. 1 is a schematic structural diagram of a terminal provided by the present disclosure according to an exemplary embodiment.
  • the terminal 100 includes a first antenna group 101.
  • the first antenna group 101 may include a main antenna, a diversity antenna, a global positioning system (Global Positioning System, GPS) receiving antenna, a wireless fidelity (Wireless Fidelity, WiFi) receiving antenna, and so on.
  • the antennas included in the first antenna group 101 may be antennas formed by the foregoing LDS technology or FPC technology.
  • the first antenna group 101 may transmit data.
  • the terminal when the user needs to use the GPS positioning in the terminal, the terminal can use the GPS receiving antenna in the first antenna group 101 to transmit geographic location data; when the user uses the terminal for voice calls, the terminal can use the main antenna or the diversity antenna for transmission Voice data, etc.
  • the above-mentioned terminal may be a smart phone, a tablet computer, an e-book reader, a smart glasses, a smart watch, an MP3 player (Moving Picture Experts Group Audio Layer III, dynamic image expert compression standard audio layer 3), MP4 (Moving Picture Experts Group Audio Layer III) Picture Experts Group Audio Layer IV, moving image experts compress the standard audio layer 4) Players, notebook computers, laptop portable computers and desktop computers, etc.
  • MP3 player Moving Picture Experts Group Audio Layer III, dynamic image expert compression standard audio layer 3
  • MP4 Moving Picture Experts Group Audio Layer III
  • Picture Experts Group Audio Layer IV moving image experts compress the standard audio layer 4
  • the shape of the terminal is generally fixed, and the shape of the terminal has a great influence on the wireless environment around the terminal. Therefore, the shape of the terminal needs to be considered in the antenna design.
  • the antenna is usually set in the housing of the terminal.
  • the present disclosure proposes a new terminal solution with a flexible screen.
  • the terminal has a screen expansion and contraction device, and the screen expansion and contraction device can adopt structural forms. Change to accommodate or unfold the flexible display screen.
  • the appearance of the terminal may change, and the wireless environment around the terminal may change accordingly, which may deteriorate the performance of the terminal's antenna to send and receive data, such as , Affect the signal strength and stability of the antenna receiving and sending data.
  • the present disclosure provides a screen expansion and contraction component, which can be set in a terminal.
  • FIG. 2 shows a schematic structural diagram of a screen expansion and contraction component provided by an embodiment of the present disclosure.
  • the terminal 200 includes a screen expansion and contraction component 201, which includes a screen expansion and contraction device 202, a first display screen 203, and a first antenna group 204;
  • the first display screen 203 is a flexible screen
  • the screen expansion and contraction device 202 is used to store or expand the first display screen 203 by changing the structure form;
  • the first antenna group 204 is arranged in the screen spreading and retracting device.
  • the first antenna group 204 may be an antenna set according to the shape and structure of the terminal 200 in the expanded screen form, wherein the expanded screen form is that the terminal 200 expands the first antenna group by changing the structure of the screen expander 202.
  • the expanded screen form is that the terminal 200 expands the first antenna group by changing the structure of the screen expander 202.
  • the first antenna group 204 can have better antenna performance when the screen expansion and contraction device 202 expands the first display screen 203 through the change of the structure.
  • the screen expansion and contraction device 202 further includes a supporting component; the supporting component corresponds to a contracted state and a supporting state; the first antenna group is arranged in the supporting component.
  • the support assembly includes at least one set of support rods; the first end of the at least one set of support rods is connected with the first display screen; the movement direction of the first end of the at least one set of support rods connected with the first display screen, The same as the storage or expansion direction of the first display screen;
  • the first antenna group is arranged inside or on the surface of at least one group of support rods.
  • the first antenna group includes at least one of a main antenna, a diversity antenna, a satellite positioning antenna, a wireless fidelity Wi-Fi antenna, and a Bluetooth antenna.
  • the present disclosure uses the first antenna group provided in the screen expansion and contraction device.
  • the terminal expands the first display screen from the screen expansion and contraction device through the screen expansion and contraction device
  • the terminal can use the screen expansion and contraction device
  • the first antenna group in the antenna group transmits data, so as to avoid the deterioration of the wireless environment for the terminal to send and receive wireless data when the appearance of the terminal changes, resulting in the deterioration of the performance of the terminal to send and receive data, and to improve the performance of the terminal to send and receive data.
  • the terminal to which the above-mentioned screen expansion and contraction component is applied may further include a radio frequency chip and a second antenna group.
  • FIG. 3 shows a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • the terminal 300 includes a screen expansion and contraction component 301, a radio frequency chip 302, and a second antenna group 303.
  • the radio frequency chip 302 is electrically connected to the first antenna group in the screen spreading device of the screen spreading and retracting assembly 301; and the radio frequency chip 302 is electrically connected to the second antenna group;
  • the radio frequency chip 302 is used to switch from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group when the screen spreading and retracting device expands the first display screen through a structural change.
  • the radio frequency chip 302 is configured to determine that the screen expansion and contraction device expands the first display screen by changing the structure and form when the first specified condition is established;
  • the first specified condition includes at least one of the following conditions:
  • the third signal generated when the first designated switch is turned on is received, and the first designated switch is a switch that is triggered to turn on when the first display screen is expanded.
  • the radio frequency chip 302 is used to expand the first display screen of the screen expansion and contraction device through a structural change, and the signal quality of the wireless signal received through the second antenna group 303 is lower than the first quality threshold, It switches from transmitting and receiving wireless data through the second antenna group 303 to transmitting and receiving wireless data through the first antenna group.
  • the radio frequency chip 302 is also used to switch from transmitting and receiving wireless data through the first antenna group to using the second antenna group 303 when the screen spreading and retracting device receives the first display screen through a structural change Wireless data transmission and reception.
  • the radio frequency chip 302 is configured to determine that the screen expansion and contraction device accommodates the first display screen through a structural change when the second specified condition is established;
  • the second specified condition includes at least one of the following conditions:
  • the designated key is a key used to control storage or expansion of the first display screen
  • the sixth signal generated when the second designated switch is turned off is received, and the second designated switch is a switch that triggers turning off when the first display screen is stored.
  • the radio frequency chip 302 is used for receiving the first display screen through the structural change of the screen extension device, and the signal quality of the wireless signal received through the first antenna group is lower than the second quality threshold.
  • the wireless data transmission and reception are performed through the first antenna group, and the wireless data transmission and reception is performed through the second antenna group 303.
  • the types of antennas included in the first antenna group and the second antenna group 303 are the same.
  • the present disclosure uses the first antenna group provided in the screen expansion and contraction device.
  • the terminal expands the first display screen from the screen expansion and contraction device through the screen expansion and contraction device
  • the terminal can use the screen expansion and contraction device
  • the first antenna group in the antenna group transmits data, so as to avoid the deterioration of the wireless environment for the terminal to send and receive wireless data when the appearance of the terminal changes, resulting in the deterioration of the performance of the terminal to send and receive data, and to improve the performance of the terminal to send and receive data.
  • FIG. 4 shows a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • the terminal 400 includes a screen expansion and contraction device 401, a first display screen 402, and a first antenna group 403; among them, the first display screen 402 is a flexible screen; the screen expansion and contraction device 401 is used to pass through The first display screen 402 is accommodated or unfolded by changing the structural form; the first antenna group 403 is arranged in the screen expansion device.
  • the first display screen 402 is arranged on the back of the terminal, and the screen expansion device 401 is arranged inside the terminal.
  • the first display screen 402 can be connected to the screen expansion device 401.
  • the screen expansion device 401 When the structural form of the device is changed, it is expanded from the screen expansion and contraction device 401, or is stored in the screen expansion and contraction device 401.
  • the terminal When the first display screen 402 is unfolded from the screen extension device 401, the terminal can use the first display screen 402 to display content.
  • the terminal can also display content accordingly. The first display screen goes out.
  • the first display screen 402 when the first display screen 402 is stored in the screen expansion and contraction device 401, a part of the first display screen 402 may be stored in the screen expansion and contraction device 401, and the other part is displayed on the terminal 400 as shown in FIG. The back.
  • the first display screen 402 is unfolded from the screen expansion and contraction device 401 or stored in the screen expansion and contraction device 401, and the user can control the terminal 400 to control the first display screen 402 from the screen expansion and contraction device 401. Expand or store into the screen expansion and contraction device 401 from the expanded state.
  • the setting positions of the first display screen and the second display screen can also be switched, that is, the first display screen is set on the front of the terminal, and the second display screen is set on the back of the terminal.
  • the screen expanding and retracting device 401 may include a supporting component 404; the supporting component 404 corresponds to a contracted state and a supporting state; optionally, the screen expanding and retracting device 401 may also include a storage component 405, wherein the storage component 405 It can be used to store the first display screen 402. Further, the above-mentioned change in the structure of the screen expansion and contraction device 401 to control the expansion or storage of the first display screen 402 may be the change of the support component 404 included in the screen expansion and contraction device 401 between the contracted state and the supported state.
  • the first display screen 402 is unfolded from the storage assembly 405; during the process of the support assembly 404 being changed from the supported state to the contracted state 405, the first display screen 402 Stored in the storage assembly. That is, the screen expansion and contraction device 401 receives or unfolds the first display screen 402 by changing its structural form, and may adopt the form of the supporting component 404 to receive or unfold the first display screen 402.
  • the storage component 405 may be a storage cavity with a certain space, and the first display screen 402 of the terminal may be stored in the storage cavity. That is, the first display screen 402, the storage component 405, and the support component 404 are connected to each other and used in cooperation, so that the first display screen 402 is unfolded from the storage component or stored in the storage component 405.
  • FIG. 5 shows a schematic structural diagram of a screen expansion and contraction device in a retracted state according to an embodiment of the present disclosure.
  • it contains a first display screen 501, a screen expansion and contraction device 502, a storage component 503, a support component 504, the storage component 503 can be used to store the second display screen, and the support component 504 can be used to store the second display screen.
  • the display screen is unfolded from the storage assembly or stored in the storage assembly.
  • FIG. 6 shows a schematic structural diagram of a screen expansion and contraction device in the process of unfolding or storing according to an embodiment of the present disclosure. As shown in FIG.
  • FIG. 6 shows a schematic structural diagram of a screen expansion and contraction device in a supported state according to an embodiment of the present disclosure. As shown in FIG. 7, it contains a first display screen 701, a screen expansion and contraction device 702, a storage component 703, and a support component 704.
  • the first antenna group 403 may be provided in the supporting component 404. That is, the supporting component 404 can be used as a container for the first antenna group 403, and the first antenna group 403 is arranged in the supporting component 404.
  • the generation scheme of the first antenna group 403 may be formed according to LDS technology or FPC technology.
  • the terminal 400 also includes a processor, and the first antenna group in the screen spreading and retracting device can transmit the received signal to the processor, and the processor further processes the received signal to execute the corresponding operating.
  • the terminal 400 also includes a processor, and the first antenna group in the screen spreading and retracting device can transmit the received signal to the processor, and the processor further processes the received signal to execute the corresponding operating.
  • the terminal 400 also includes a processor, and the first antenna group in the screen spreading and retracting device can transmit the received signal to the processor, and the processor further processes the received signal to execute the corresponding operating.
  • the terminal can send or receive communication signals by using the first antenna group.
  • the terminal needs to transmit communication data through the main antenna
  • the first antenna group 403 may be an antenna group set in advance according to the shape (that is, the shape and structure) of the terminal after the first display screen is expanded, that is, the developer of the terminal sets the first antenna group.
  • the goal is to achieve higher antenna performance with the first antenna group when the first display screen is unfolded.
  • the first antenna group 403 may also include at least one of a main antenna, a diversity antenna, a satellite positioning antenna, a wireless fidelity Wi-Fi antenna, and a Bluetooth antenna. That is, the first antenna group included in the screen extension device may include multiple antennas, and the functions of each antenna may be different.
  • the first antenna group including the main antenna, the diversity antenna, the satellite positioning antenna, the wireless fidelity Wi-Fi antenna, and the Bluetooth antenna please refer to FIG. 8, which shows a terminal involved in an embodiment of the present disclosure Schematic diagram of the structure of the screen display and retracting device set in the.
  • the screen extension device 801 includes a support component 802, and the support component 802 includes a main antenna, a diversity antenna, a satellite positioning antenna, a wireless fidelity Wi-Fi antenna, and a Bluetooth antenna.
  • the terminal 800 needs to transmit the data type corresponding to one of the antennas, it can use the corresponding antenna to transmit the data.
  • the specific number of the number of antennas included can be set by the developer in advance in the screen display device.
  • it can include 2 main antennas, 1 Diversity antennas; or, in the first antenna group, each of the above-mentioned antennas includes one antenna.
  • the embodiment of the present disclosure does not limit the specific number of antennas included in the first antenna group.
  • the supporting component contained therein may include at least one set of support rods, and the first end of the at least one set of support rods and the first display screen Connected; wherein the movement direction of the first end of the at least one set of support rods connected to the first display screen is the same as the direction in which the first display screen is accommodated or expanded.
  • the at least one set of support rods provided in the embodiments of the present disclosure only takes a set of support rods (first support rod and second support rod) composed of two support rods as an example.
  • the first end of the at least one set of support rods may be directly connected or indirectly connected to the first display screen.
  • FIG. 1 please refer to FIG.
  • the terminal 900 includes a first frame 901, at least one set of support rods 902, a first display screen 903, at least one set of support rods 902 are connected to the first frame, and the first display screen is connected to the first frame.
  • the frames are connected, and when at least one set of support rods 902 change from a supported state to a contracted state, the at least one set of support rods 902 can drive the first frame 901 to indirectly store the first display screen in the storage assembly.
  • the at least one set of support rods 902 when the at least one set of support rods 902 change from the contracted state to the support state, the at least one set of support rods 902 can indirectly expand the first display screen from the storage assembly by driving the first frame 901. In the embodiment of the present disclosure, it can be ensured that the first end of the at least one set of support rods and the first display screen are stored or expanded in the same direction. It is not limited.
  • the first antenna group may be arranged inside at least one set of support rods, or the first antenna group may also be arranged on the surface of at least one set of support rods.
  • the terminal when the terminal activates the first antenna group included in the screen expansion and contraction component, it may be determined according to whether the first display screen is expanded or not. For example, when the first display screen is unfolded, the terminal enables the first antenna group to send and receive data. When the first display screen is closed, the terminal can also stop using the first antenna group to send and receive data, and instead use the terminal The other antennas of the device can send and receive data, or interrupt the sending and receiving of data.
  • the supporting assembly when the supporting assembly is in a supporting state, at least one group of supporting rods is supported on the periphery of the first display screen, so that when the first display screen is unfolded, the first antenna group is also located on the periphery of the first display screen.
  • the first antenna group is also located on the periphery of the first display screen.
  • the first support rod is at the upper end of the first display screen and is in the same parallel position with the upper frame of the terminal
  • the second The support rod is at the lower end of the first display screen and is in the same parallel position with the lower end frame of the terminal, which not only enables the first antenna group to be located on the periphery of the first display screen at the same time, but also when the first display screen is unfolded, the at least one The group support rod plays a role of protecting the first display screen.
  • the at least one set of support rods when the support assembly is in a contracted state, is at a specified angle to the direction in which the first display screen is accommodated or expanded, and the at least one set of support rods are located inside the terminal.
  • the angle A when the support assembly is in the retracted state, the angle A is the angle between the first support rod and the first display screen when it is expanded or stored, and the angle B is the second support rod and the first display screen.
  • the angle can be related to the material of the support rod selected by the developer when designing the terminal, the connection method of the support rod, the placement position of the support rod, etc.
  • the implementation of the present disclosure The example does not limit the specific value of the angle.
  • the at least one set of support rods when the at least one set of support rods are in a contracted state, the at least one set of support rods may be further designed inside the terminal.
  • FIG. 10 shows a schematic diagram of a side structure of a terminal of FIG. 5 according to an embodiment of the present disclosure.
  • the terminal 1000 includes at least one set of support rods 1001 and a first display screen 1002.
  • the at least one set of support rods 1001 is a case where the first display screen is located outside.
  • the support bar can protect the second display screen to a certain extent, thereby improving the durability of the flexible screen.
  • the terminal 1100 when the support assembly is in a contracted state, the at least one set of support rods are located inside the first display screen.
  • FIG. 11 shows a schematic diagram of a side structure of a terminal of FIG. 5 according to an embodiment of the present disclosure.
  • the terminal 1100 includes at least one set of support rods 1101 and a first display screen 1102. , Where the at least one set of support rods 1101 is a case in which it is located inside the first display screen. This can ensure that when the first display screen of the terminal is in the storage state, the support bar will not block the first display screen, so that the first display screen can also display content in the storage state, which increases the multi-faceted usability of the terminal.
  • the display area of the first display screen 1102 includes a visible area after storage and a hidden area after storage.
  • the aforementioned visible area after storage can be directly observed by the user.
  • the terminal can use the visible area after storage in the first display screen 1102 for display.
  • the terminal uses the visible area after storage in the first display screen 1102
  • the hidden area after storage in the first display screen 1102 may be in an off state.
  • the screen expansion and contraction device 502 may further include a servo component connected to the second end of at least one set of support rods.
  • the servo assembly can be used to push the second end of the at least one set of support rods to expand the first end of the at least one set of support rods toward the first display screen when the support assembly changes from a contracted state to a support state. Move in direction.
  • the servo assembly can also be used to push at least one set of support rods when the support assembly changes from the support state to the contraction state. The second end of the at least one set of support rods moves toward the storage direction of the first display screen.
  • the servo assembly may be an electric drive machine, which drives the second ends of at least one set of support rods to move simultaneously in their respective fixed tracks by electric power, so that the first ends of the at least one set of support rods face the first display The expansion direction of the screen moves.
  • the first track 506 is a track on which the second end of the first support rod moves
  • the second track 507 is a track on which the second end of the second support rod moves.
  • the electric driving machine drives the second ends of at least one set of support rods to move simultaneously in their respective tracks, so that the first ends of the at least one set of support rods move toward the unfolding direction of the first display screen, thereby driving the second end of the first display screen.
  • a display screen unfolds from the containment device. That is, the second ends of the at least one set of support rods are driven from the first track point to the second track point, so that the second display screen is expanded.
  • the first track point may coincide with the second end of the at least one set of support rods in the contracted state
  • the second track point may coincide with the first end of the at least one set of support rods in the contracted state.
  • the servo assembly can also be driven by a magnetic force.
  • the second ends of at least one set of support rods are driven to move simultaneously in their respective fixed tracks by magnetic force, so that the first ends of at least one set of support rods face the first
  • the expansion direction of a display screen moves. That is, similarly, the second ends of at least one set of support rods are driven from the first track point to the second track point, so that the first display screen is unfolded.
  • what kind of power is used by the servo assembly to move the second ends of at least one set of support rods in their respective fixed tracks, and then the second display screen is moved from the screen through the first ends of the at least one set of support rods. It is deployed in the containing device, which is not limited in the embodiment of the present disclosure.
  • the terminal uses the servo assembly to push the second ends of at least one set of support rods to move simultaneously in their respective fixed tracks, so that the first ends of the at least one set of support rods move toward the storage direction of the first display screen, which can be The direction opposite to the unfolding direction of the first display screen, that is, the second end of the at least one set of support rods is driven from the second track point to the first track point again, so that the first display screen changes from the unfolded state to the retracted state status.
  • the shapes of the first track and the second track may also be arcs, straight lines, and the like.
  • the servo component may be controlled by a processor in the terminal, that is, the terminal shown in FIG. 5 may further include a processor, which is electrically connected to the servo component.
  • the processor can be used to send a control signal to the servo component when the control instruction in the terminal is acquired.
  • the control signal is used to instruct the servo assembly to push the second end of at least one set of support rods.
  • the control instruction may be used to indicate that the first display screen needs to be expanded from or contained in the screen expansion and contraction device.
  • the use of the first antenna group and the first display screen in the screen expansion and contraction component may be determined based on the expansion signal of the first display screen.
  • the terminal of the first display screen of the first display screen changes from the above-mentioned FIG. 5 to the supporting state shown in FIG. 7, when the first display screen is unfolded, the terminal can pass through The processor further sends an activation signal to the first antenna group, so that the terminal activates the first antenna group, and transmits and receives data through the first antenna group.
  • the terminal may also be directly expanded through the first display screen to directly trigger the terminal to use the first antenna group.
  • the fixed switch can be used to activate or deactivate the first antenna group, and the fixed switch can be used to directly connect the first antenna group when the first display screen is unfolded. Turned on, that is, when the first display screen is triggered to expand, the fixed switch is triggered at the same time, so that the terminal activates the first antenna group.
  • the present disclosure uses the first antenna group provided in the screen expansion and contraction device.
  • the terminal expands the first display screen from the screen expansion and contraction device through the screen expansion and contraction device
  • the terminal can use the screen expansion and contraction device
  • the first antenna group in the antenna group transmits data, so as to avoid the deterioration of the wireless environment for the terminal to send and receive wireless data when the appearance of the terminal changes, resulting in the deterioration of the performance of the terminal to send and receive data, and to improve the performance of the terminal to send and receive data.
  • the terminal shown in FIG. 4 may further include a second display screen, a second antenna group, and a radio frequency chip.
  • FIG. 12 shows a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • the terminal 1200 includes a screen extension device 1201, a first display screen 1202, a first antenna group 1203, a second display screen 1204, a second antenna group 1205, and a radio frequency chip 1206;
  • the screen expansion and contraction device 1201, the first display screen 1202, and the first antenna group 1203 can refer to the setting manner shown in FIG. 4 above, which will not be repeated here.
  • the second display screen 1204 can be set on the front of the terminal 1200, and the second antenna group 1205 can be a set of antennas built in the terminal 1200.
  • the terminal can be designed with its own main antenna, diversity antenna, satellite positioning antenna, and wireless For fidelity Wi-Fi antennas and Bluetooth antennas, the terminal can also use the second antenna group to send and receive data.
  • the second antenna group may be an antenna group set in advance according to the shape and structure of the terminal after being stored on the first display screen. That is, when the developer of the terminal sets the second antenna group, the target When the first display screen is housed, the second antenna group can achieve higher antenna performance.
  • the antennas included in the first antenna group and the second antenna group are of the same type. That is, the first antenna group provided by the screen spreading and retracting device in the embodiment of the present disclosure needs to be able to meet the type corresponding to the wireless data that the second antenna group can receive, so that the terminal can switch between the first antenna group and the second antenna group. At this time, the wireless communication data sent and received by one set of antennas can also be replaced by another set of antennas.
  • the radio frequency chip is electrically connected to the first antenna group in the screen spreading device of the screen spreading and retracting component; and the radio frequency chip is electrically connected to the second antenna group; the radio frequency chip can be used in the screen spreading and retracting device through the structure When the first display screen is expanded by changing the form, the wireless data transmission and reception through the second antenna group is switched to the wireless data transmission and reception through the first antenna group.
  • the radio frequency chip can switch the control terminal from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group when the first display screen is expanded by the screen expansion and retracting device.
  • the developer can set specified conditions for the radio frequency chip.
  • the terminal can switch from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group.
  • the above-mentioned radio frequency chip is used to determine that the screen expansion and contraction device expands the first display screen by changing the structure and form when the first specified condition is satisfied.
  • the first specified condition may include at least one of the following conditions: a first signal sent by a processor in the terminal is received, the first signal is a signal generated when the processor determines that the first display screen is expanded; a specified key is received The second signal generated when triggered, the designated button is used to control the storage or expansion of the first display screen; the third signal generated when the first designated switch is turned on, the first designated switch is when the first display screen is expanded Trigger the open switch. That is, the first specified condition may be set by the developer, and when the radio frequency chip receives a specific signal, it is determined that the specified condition is established. Wherein, the specific signal may be at least one of the aforementioned first signal, second signal, and third signal.
  • the processor in the terminal may correspondingly generate the first signal, and combine the first signal It is sent to the radio frequency chip.
  • the radio frequency chip receives the first signal, it is determined that the first specified condition is satisfied, and it is determined that the screen spreading and retracting device expands the first display screen.
  • the radio frequency chip can interact with the first antenna group by itself. Is electrically connected to enable the first antenna group so that the terminal can send and receive data through the first antenna group.
  • the radio frequency chip may further temporarily disable the second antenna group through its electrical connection with the second antenna group, thereby completing control of the terminal Switch from sending and receiving data from the second antenna group to sending and receiving data from the first antenna group.
  • the radio frequency chip when the terminal does not perform data transmission and reception before enabling the first antenna group, the radio frequency chip only needs to enable the first antenna group, and there is no need to switch between different antenna groups.
  • a posture sensor may be provided inside the terminal, and the posture sensor may determine whether to expand the first display screen through the posture of the terminal. For example, when the first display screen of the terminal faces away from the center of the earth, the terminal determines that the first display screen needs to be expanded. When the first display screen is unfolded, a first signal can be generated by the processor and sent to the radio frequency chip. When the radio frequency chip receives the first signal, it is determined that the first specified condition is satisfied, and it is determined that the screen extension device is the first signal. A display screen is unfolded, thereby enabling the first antenna group to send and receive wireless data.
  • the terminal when the terminal is provided with a button for controlling the storage or unfolding of the first display screen of the screen expansion device, the terminal generates a corresponding second signal in response to the designated button being triggered.
  • the second signal is a signal generated when the processor determines that the first display screen is triggered by a designated key to expand.
  • the designated key is a physical key or a virtual key used to control storage or expansion of the first display screen.
  • FIG. 13 shows a display interface diagram on the front of a terminal according to an embodiment of the present disclosure. As shown in FIG. 13, the terminal 1300 includes a second display screen 1301 and a first button 1302.
  • the processor of the terminal may further generate a signal generated when the first button is triggered according to the first display screen expansion instruction (that is, the signal is the control signal sent by the aforementioned processor to the servo component) , The processor of the terminal sends the generated signal corresponding to when the first button is triggered to the servo component, so that the servo component obtains the control signal, thereby further driving at least one set of the screen extension device
  • the support rod moves similarly to the track shown in FIG.
  • the processor may also send the generated second signal to the radio frequency chip, so that the radio frequency chip obtains the second signal, thereby controlling the terminal to use the first antenna group to send and receive wireless data.
  • the first button 1302 shown in FIG. 13 may also be swiped left and right, thereby triggering the expansion or storage of the first display screen.
  • FIG. 14 shows a display interface diagram on the front of a terminal involved in an embodiment of the present disclosure.
  • the terminal 1400 includes a first display screen 1401 and a first button 1402. Assuming that swiping the first button 1402 to the left corresponds to the expansion of the first display screen, and swiping it to the right corresponds to the storage of the first display screen.
  • the terminal can generate a similar response
  • the control signal is sent to the servo component, so that the servo component obtains the control signal, and further drives at least one set of support rods in the screen extension device to control the first display screen to expand .
  • the processor will also send the second signal generated when it is moved to the left to the radio frequency chip.
  • the second display screen 1301 in FIG. 13 may also display a virtual button 1303.
  • the terminal may respond to the opening button being triggered to generate a control An instruction to expand the display screen.
  • the terminal can generate an instruction to control the storage of the first display screen in response to the close button being triggered.
  • the processor of the terminal may send a control signal for controlling the servo assembly to push the second end of the at least one set of support rods to the servo assembly according to the received control instruction, thereby controlling the second end of the at least one set of support rods to drive, so that The first display screen is expanded or contained.
  • the processor may also send the generated second signal to the radio frequency chip, so that the radio frequency chip obtains the second signal, thereby controlling the terminal to use the first antenna group to send and receive wireless data.
  • the terminal may also be provided with a first designated switch, where the first designated switch is a switch that is triggered to turn on when the first display screen is expanded.
  • the first designated switch is automatically triggered, thereby triggering the processor to start the step of generating the third signal, so that the processor generates the third signal, and sends the third signal to the radio frequency chip, so that the radio frequency
  • the chip obtains the third signal, thereby controlling the terminal to use the first antenna group to send and receive wireless data.
  • the radio frequency chip is also used to expand the first display screen by changing the structure of the screen extension device, and the signal quality of the wireless signal received through the second antenna group is lower than the first quality threshold.
  • the wireless data is transmitted and received through the second antenna group, and the wireless data is transmitted and received through the first antenna group.
  • the radio frequency chip can also obtain the signal quality of the wireless signal received by the second antenna group, and compare the signal quality of the wireless signal received by the second antenna group with the first quality threshold, and When the signal quality of the wireless signal received by the terminal through the second antenna group is lower than the first quality threshold, it switches from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group. That is, when the terminal uses the screen extension component provided by the embodiment of the present disclosure, it can directly determine whether the signal quality of the wireless signal received by the second antenna group is higher than the first quality threshold, thereby determining whether it is necessary to switch antennas to receive wireless data. .
  • the radio frequency chip may not determine whether the first specified condition is established, and thus directly complete the antenna switching to the terminal.
  • the first quality threshold may be the corresponding quality threshold when a certain application is activated in the terminal.
  • the signal quality threshold of the application one is P
  • the radio frequency chip The signal quality threshold of the currently running application program 1 can be used as the first quality threshold to determine whether the signal quality of the wireless signal received by the second antenna group is lower than P.
  • the control terminal switches from transmitting and receiving wireless data through the second antenna group to transmitting and receiving wireless data through the first antenna group.
  • radio frequency chip determining whether the first specified condition is established and whether the signal quality of the large wireless signal received by the second antenna group is lower than the first quality threshold can also be used in combination. This disclosure does not limit this.
  • the radio frequency chip can also be used to switch from transmitting and receiving wireless data through the first antenna group to performing wireless data through the second antenna group when the screen extension device receives the first display screen through a structural change.
  • the radio frequency chip can switch the control terminal from transmitting and receiving wireless data through the first antenna group to transmitting and receiving wireless data through the second antenna group when the screen spreading and retracting device accommodates the first display screen.
  • the developer can set a second specified condition for the radio frequency chip.
  • the terminal can be switched from transmitting and receiving wireless data through the second antenna group to wireless data using the first antenna group. Send and receive. That is, the radio frequency chip is used to determine that the screen spreading and retracting device receives the first display screen through the change of the structural form when the second specified condition is established;
  • the second specified condition includes at least one of the following conditions: a fourth signal sent by the processor in the terminal is received, and the second signal is a signal generated when the processor determines that the first display screen is stored; The fifth signal generated when triggered, the designated button is used to control the storage or expansion of the first display screen; the sixth signal generated when the second designated switch is turned off, the second designated switch is triggered when the first display screen is stored Closed switch.
  • the processor in the terminal may correspondingly generate a fourth signal, and combine the fourth signal It is sent to the radio frequency chip.
  • the radio frequency chip receives the fourth signal, it is determined that the first specified condition is satisfied, and it is determined that the screen extension device is to receive the first display screen.
  • the radio frequency chip can communicate with the first antenna group by itself. Is electrically connected to enable the first antenna group so that the terminal can send and receive data through the first antenna group.
  • the radio frequency chip may further temporarily disable the second antenna group through its electrical connection with the second antenna group, thereby completing control of the terminal Switch from sending and receiving data from the second antenna group to sending and receiving data from the first antenna group.
  • the radio frequency chip when the terminal does not perform data transmission and reception before enabling the first antenna group, the radio frequency chip only needs to enable the first antenna group, and there is no need to switch between different antenna groups.
  • the signal source for triggering the fourth signal and the signal source for triggering the first signal may be the same signal source.
  • the terminal determines that the first display screen needs to be stored.
  • the processor can generate The fourth signal is sent to the radio frequency chip.
  • the radio frequency chip receives the fourth signal, it is determined that the second specified condition is satisfied, and it is determined that the screen spreading and retracting device accommodates the first display screen, thereby enabling the second antenna group to perform Wireless data transmission and reception.
  • the terminal when the terminal is provided with a button for controlling the screen expansion device to receive or receive the first display screen, the terminal generates a corresponding fifth signal in response to the designated button being triggered.
  • the fifth signal is a signal generated when the processor determines that the first display screen is stored by triggering by a designated key.
  • the designated key is a physical key or a virtual key used to control storage or storage of the first display screen.
  • the first button can be restored to its original position, so as to send the first display screen storage instruction to the processor of the terminal, and when the first button is restored, the processor can also send the generated fifth signal Give the radio frequency chip so that the radio frequency chip obtains the fifth signal, thereby controlling the terminal to use the first antenna group to send and receive wireless data.
  • the triggering of the off button in the virtual button 1303 please refer to the triggering of the on button, which will not be repeated here.
  • the second signal and the fifth signal can be the same trigger source.
  • a second designated switch may also be provided in the terminal, where the second designated switch is a switch that triggers turning off when the first display screen is stored.
  • the second designated switch is automatically triggered, thereby triggering the processor to start the step of generating the sixth signal, so that the processor generates the sixth signal, and sends the sixth signal to the radio frequency chip, so that the radio frequency The chip obtains the sixth signal, thereby controlling the terminal to use the second antenna group to send and receive wireless data.
  • the second designated switch and the above-mentioned first designated switch may be the same switch.
  • the radio frequency chip is used to store the first display screen through the structural change of the screen extension device, and the signal quality of the wireless signal received through the first antenna group is lower than the second quality threshold. Perform wireless data transmission and reception, and switch to wireless data transmission and reception through the second antenna group.
  • the second quality threshold may also be a signal quality threshold of a certain application.
  • the execution steps of the radio frequency chip to determine the second quality threshold can also refer to the execution steps of the first quality threshold mentioned above, which will not be repeated here.
  • the present disclosure uses the first antenna group provided in the screen expansion and contraction device.
  • the terminal expands the first display screen from the screen expansion and contraction device through the screen expansion and contraction device
  • the terminal can use the screen expansion and contraction device
  • the first antenna group in the antenna group transmits data, so as to avoid the deterioration of the wireless environment for the terminal to send and receive wireless data when the appearance of the terminal changes, resulting in the deterioration of the performance of the terminal to send and receive data, and to improve the performance of the terminal to send and receive data.

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Abstract

本公开是关于一种屏幕展收组件,属于终端技术领域。该屏幕展收组件设置在终端中,所述屏幕展收组件包括:屏幕展收装置、第一显示屏幕以及第一天线组;第一显示屏幕为柔性屏幕;屏幕展收装置用于通过结构形态的改变来收纳或者展开第一显示屏幕;第一天线组设置在屏幕展收装置中。本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数据的性能变差的问题,提高了终端的收发数据的性能。

Description

一种屏幕展收组件以及终端
本申请基于申请号为201910340379.3、申请日为2019年4月25日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本公开涉及终端技术领域,特别涉及一种屏幕展收组件以及终端。
背景技术
随着科学技术的发展,人们在日常生活中使用的终端的频率越来越多,终端在传输数据时,数据传输的速率与终端天线接收信号的能力有着密切的关系。
相关技术中,终端的开发人员通常根据终端的外形特征、内部的零部件布局以及用户使用终端时可能握持的位置等因素,综合考虑终端中采用的天线的形状和尺寸,并在终端中找出合适的固定位置来设置天线,使得设置的天线能够提供较好的天线性能。
发明内容
本公开实施例提供了一种屏幕展收组件以及终端。所述技术方案如下:
根据本公开实施例的第一方面,提供了一种屏幕展收组件,所述屏幕展收组件设置在终端中,所述屏幕展收组件包括:
屏幕展收装置、第一显示屏幕和第一天线组;
所述第一显示屏幕为柔性屏幕;
所述屏幕展收装置用于通过结构形态的改变来收纳或者展开所述第一显示屏幕;
所述第一天线组设置在所述屏幕展收装置中。
可选的,所述屏幕展收装置包含支撑组件;所述支撑组件对应有收缩状态和支撑状态;
所述第一天线组设置在所述支撑组件中。
可选的,所述支撑组件包含至少一组支撑杆;所述至少一组支撑杆的第一端与所述第一显示屏幕相连接;所述至少一组支撑杆与所述第一显示屏幕相连接的第一端的活动方向,与所述第一显示屏幕收纳或者展开的方向相同;
所述第一天线组设置在所述至少一组支撑杆的内部或者所述至少一组支撑杆的表面。
可选的,所述第一天线组包含主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线中的至少一种天线。
根据本公开实施例的第二方面,提供了一种终端,所述终端包括:如上述第一方面任一所述的屏幕展收组件。
可选的,所述终端还包括:射频芯片和第二天线组;
所述射频芯片与所述屏幕展收组件的屏幕展收装置中的第一天线组电性相连;且所述射频芯片与所述第二天线组电性相连;
所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕时,从通过所述第二天线组进行无线数据的收发,切换为通过所述第一天线组进行无线数据的收发。
可选的,所述射频芯片,用于在第一指定条件成立时,确定所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕;
其中,所述第一指定条件包括以下条件中的至少一种:
接收到所述终端中的处理器发送的第一信号,所述第一信号是所述处理器确定所述第一显示屏幕展开时生成的信号;
接收到指定按键被触发时生成的第二信号,所述指定按键是用于控制收纳或者展开所述第一显示屏幕的按键;
接收到第一指定开关开启时生成的第三信号,所述第一指定开关是所述第一显示屏幕展开时触发开启的开关。
可选的,所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕,且所述通过所述第二天线组接收到的无线信号的信号质量低于第一质量阈值时,从通过所述第二天线组进行无线数据的收发,切换为通过所述第一天线组进行无线数据的收发。
可选的,所述射频芯片,还用于在所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕时,从通过所述第一天线组进行无线数据的收发,切换为通过所述第二天线组进行无线数据的收发。
可选的,所述射频芯片,用于在第二指定条件成立时,确定所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕;
其中,所述第二指定条件包括以下条件中的至少一种:
接收到所述终端中的处理器发送的第四信号,所述第二信号是所述处理器确定所述第一显示屏幕收纳时生成的信号;
接收到指定按键被触发时生成的第五信号,所述指定按键是用于控制收纳或者展开所述第一显示屏幕的按键;
接收到第二指定开关关闭时生成的第六信号,所述第二指定开关是所述第一显示屏幕收纳时触发关闭的开关。
可选的,所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕,且所述通过所述第一天线组接收到的无线信号的信号质量低于第二质量阈值时,从通过所述第一天线组进行无线数据的收发,切换为通过所述第二天线组进行无线数据的收发。
可选的,所述第一天线组与所述第二天线组包含的天线的类型相同。
本公开实施例提供的技术方案至少包括以下有益效果:
设置在终端中的屏幕展收组件包括:屏幕展收装置、第一显示屏幕以及第一天线组;第一显示屏幕为柔性屏幕;屏幕展收装置用于通过结构形态的改变来收纳或者展开第一显示屏幕;第一天线组设置在屏幕展收装置中。本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可 以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数据的性能变差的问题,提高了终端的收发数据的性能。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本公开的实施例,并与说明书一起用于解释本公开的原理。
图1是本公开根据一示例性实施例提供的一种终端的结构示意图;
图2是本公开实施例提供的一种屏幕展收组件的结构示意图;
图3是本公开实施例提供的一种终端的结构示意图;
图4是本公开实施例提供的一种终端的结构示意图;
图5是本公开实施例涉及的一种屏幕展收装置处于收缩状态的结构示意图;
图6是本公开实施例涉及的一种屏幕展收装置处于展开或者收纳过程中的结构示意图;
图7是本公开实施例涉及的一种屏幕展收装置处于支撑状态的结构示意图;
图8是本公开实施例涉及的一种终端中设置屏幕展收装置的结构示意图;
图9是本公开实施例提供的一种支撑组件与第一显示屏幕连接的结构示意图;
图10是本公开实施例涉及图5的一种终端的侧面结构示意图;
图11是本公开实施例涉及图5的一种终端的侧面结构示意图;
图12是本公开实施例提供的一种终端的结构示意图;
图13是本公开实施例涉及的一种终端正面的显示界面图;
图14是本公开实施例涉及的一种终端正面的显示界面图。
具体实施例
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
本公开提供的方案可以用于日常生活中终端内部数据传输的场景中,为了便于理解,下面首先对本公开实施例涉及的一些名词以及应用场景进行简单介绍。
激光直接成型技术(Laser Direct Structuring,LDS)天线:利用LDS技术,按照导电图形的轨迹在终端的器件上生成的金属天线。
柔性电路板(Flexible Printed Circuit,FPC):以聚酰亚胺或聚酯薄膜为基材制成的一种的可挠性印刷电路板。
柔性屏幕:指的是柔性OLED(Organic Light-Emitting Diode,有机发光二极管)屏幕。
图1是本公开根据一示例性实施例提供的一种终端的结构示意图。如图1所示,在终端100中,包含了第一天线组101。可选的,该第一天线组101可以包含终端的主集天线、分集天线、全球定位系统(Global Positioning System,GPS)接收天线以及无线保真(Wireless Fidelity,WiFi)接收天线等等。可选的,第一天线组101中包含的天线可以通过上述LDS技术或者FPC技术形成的天线。
可选的,当终端需要进行数据传输时,可以通过第一天线组101传输数据。例如,当用户需要采用终端中的GPS定位时,终端可以采用第一天线组101中的GPS接收天线传输地理位置数据;当用户采用终端进行语音通话时,终端可以采用主集天线或者分集天线传输语音数据等。
可选的,上述终端可以是智能手机、平板电脑、电子书阅读器、智能眼镜、智能手表、MP3播放器(Moving Picture Experts Group Audio  Layer III,动态影像专家压缩标准音频层面3)、MP4(Moving Picture Experts Group Audio Layer IV,动态影像专家压缩标准音频层面4)播放器、笔记本电脑、膝上型便携计算机和台式计算机等等。
相关技术中,终端的形状一般都是固定的,且终端的外形对于终端周围的无线环境有很大的影响,因此,天线设计时需要考虑终端的形状。一般的,天线通常设置在终端的壳体中。而为了增加终端的显示时的屏幕尺寸,同时保证便携性,本公开提出一种新的具有柔性屏幕的终端方案,该方案中,终端具有屏幕展收装置,该屏幕展收装置可以通过结构形态的改变来收纳或展开柔性显示屏幕。
然而,当屏幕展收装置的结构形态的发生改变时,可能会导致终端的外形产生变化,相应的会导致终端周围的无线环境发生变化,从而可能使得终端的天线收发数据的性能变差,比如,影响天线收发数据的信号强度和稳定性。
本公开提供了一种屏幕展收组件,该屏幕展收组件可以设置在终端中,请参考图2,其示出了本公开实施例提供的一种屏幕展收组件的结构示意图。如图2所示,在终端200中包含了屏幕展收组件201,该屏幕展收组件201包括:屏幕展收装置202、第一显示屏幕203和第一天线组204;
第一显示屏幕203为柔性屏幕;
屏幕展收装置202用于通过结构形态的改变来收纳或者展开第一显示屏幕203;
第一天线组204设置在屏幕展收装置中。
其中,上述第一天线组204可以是按照该终端200在屏幕展开形态下的形状结构设置的天线,其中,上述屏幕展开形态是该终端200在屏幕展收装置202通过结构形态的改变来展开第一显示屏幕203后的形状结构。
也就是说,第一天线组204在屏幕展收装置202通过结构形态的改变来展开第一显示屏幕203的情况下,能够具有较好的天线性能。
可选的,屏幕展收装置202还包含支撑组件;支撑组件对应有收缩状态和支撑状态;第一天线组设置在支撑组件中。
可选的,支撑组件包含至少一组支撑杆;至少一组支撑杆的第一端与第一显示屏幕相连接;至少一组支撑杆与第一显示屏幕相连接的第一端的活动方向,与第一显示屏幕收纳或者展开的方向相同;
第一天线组设置在至少一组支撑杆的内部或者至少一组支撑杆的表面。
可选的,第一天线组包含主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线中的至少一种天线。
综上所述,本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数据的性能变差的问题,提高了终端的收发数据的性能。
在一种可能实现的方式中,上述屏幕展收组件应用的终端中还可以包括射频芯片和第二天线组。请参考图3,其示出了本公开实施例提供的一种终端的结构示意图。如图3所示,在终端300中,包含了屏幕展收组件301,射频芯片302以及第二天线组303。
其中,射频芯片302与屏幕展收组件301的屏幕展收装置中的第一天线组电性相连;且射频芯片302与第二天线组电性相连;
射频芯片302,用于在屏幕展收装置通过结构形态的改变来展开第一显示屏幕时,从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。
可选的,射频芯片302,用于在第一指定条件成立时,确定屏幕展收装置通过结构形态的改变来展开第一显示屏幕;
其中,第一指定条件包括以下条件中的至少一种:
接收到终端中的处理器发送的第一信号,第一信号是处理器确定第一显示屏幕展开时生成的信号;
接收到指定按键被触发时生成的第二信号,指定按键是用于控制收纳或者展开第一显示屏幕的按键;
接收到第一指定开关开启时生成的第三信号,第一指定开关是第一显示屏幕展开时触发开启的开关。
可选的,射频芯片302,用于在屏幕展收装置通过结构形态的改变来展开第一显示屏幕,且通过第二天线组303接收到的无线信号的信号质量低于第一质量阈值时,从通过第二天线组303进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。
可选的,射频芯片302,还用于在屏幕展收装置通过结构形态的改变来收纳第一显示屏幕时,从通过第一天线组进行无线数据的收发,切换为通过第二天线组303进行无线数据的收发。
可选的,射频芯片302,用于在第二指定条件成立时,确定屏幕展收装置通过结构形态的改变来收纳第一显示屏幕;
其中,第二指定条件包括以下条件中的至少一种:
接收到终端中的处理器发送的第四信号,第二信号是处理器确定第一显示屏幕收纳时生成的信号;
接收到指定按键被触发时生成的第五信号,指定按键是用于控制收纳或者展开第一显示屏幕的按键;
接收到第二指定开关关闭时生成的第六信号,第二指定开关是第一显示屏幕收纳时触发关闭的开关。
可选的,射频芯片302,用于在屏幕展收装置通过结构形态的改变来收纳第一显示屏幕,且通过第一天线组接收到的无线信号的信号质量低于第二质量阈值时,从通过第一天线组进行无线数据的收发,切换为通过第二天线组303进行无线数据的收发。
可选的,第一天线组与第二天线组303包含的天线的类型相同。
综上所述,本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数 据的性能变差的问题,提高了终端的收发数据的性能。
请参考图4,其示出了本公开实施例提供的一种终端的结构示意图。如图4所示,在终端400中,包含了屏幕展收装置401、第一显示屏幕402和第一天线组403;其中,第一显示屏幕402为柔性屏幕;屏幕展收装置401用于通过结构形态的改变来收纳或者展开第一显示屏幕402;第一天线组403设置在屏幕展收装置中。
如图4所示,第一显示屏幕402设置在该终端的背面,该屏幕展收装置401设置在该终端内部,第一显示屏幕402可与屏幕展收装置401相连,当屏幕展收装置401的结构形态改变时,从屏幕展收装置401中展开,或者,收纳于屏幕展收装置401中。当第一显示屏幕402从该屏幕展收装置401中展开时,终端可以采用第一显示屏幕402显示内容,当第一显示屏幕收纳于屏幕展收装置401中时,该终端相应的也可以将第一显示屏幕熄灭。可选的,在实际应用中,第一显示屏幕402在收纳于屏幕展收装置401内时,可以是一部分收纳于该屏幕展收装置401内,另一部分如图4所示,展示在终端400的背面。可选的,第一显示屏幕402从该屏幕展收装置401中展开或者收纳于屏幕展收装置401中,可以由用户通过控制终端400,进而控制第一显示屏幕402从屏幕展收装置401中展开,或者从展开状态收纳至屏幕展收装置401中。需要说明的是,第一显示屏幕和第二显示屏幕的设置位置也可以调换,即,第一显示屏幕设置在该终端的正面,第二显示屏幕的设置在该终端的背面。
可选的,该屏幕展收装置401可以包含支撑组件404;支撑组件404对应有收缩状态和支撑状态;可选的,该屏幕展收装置401还可以包含收纳组件405,其中,该收纳组件405可以用于收纳第一显示屏幕402。进一步的,上述通过屏幕展收装置401的结构形态改变,从而控制第一显示屏幕402展开或者收纳,可以是在屏幕展收装置401包含的支撑组件404在收缩状态与支撑状态之间的变化。例如,在支撑组件404由收缩状态变化为支撑状态的过程中,第一显示屏幕402从收纳组件405中 展开;在支撑组件404由支撑状态变化为收缩状态405的过程中,第一显示屏幕402收纳至收纳组件中。即,屏幕展收装置401通过其结构形态的改变来收纳或者展开第一显示屏幕402,可以是通过该支撑组件404的形态,从而来收纳或者展开所述第一显示屏幕402的。可选的,该收纳组件405可以是具有一定空间的收纳腔,该终端的第一显示屏幕402可以收纳于该收纳腔中。即,第一显示屏幕402,收纳组件405以及支撑组件404,三者通过相互连接,配合使用,从而使得第一显示屏幕402从收纳组件中展开或者收纳至该收纳组件405中。
请参考图5,其示出了本公开实施例涉及的一种屏幕展收装置处于收缩状态的结构示意图。如图5所示,其中包含了第一显示屏幕501,屏幕展收装置502,收纳组件503,支撑组件504,收纳组件503可以用于收纳第二显示屏幕,支撑组件504可以用于将第二显示屏幕从收纳组件中展开或者收纳至该收纳组件中。请参考图6,其示出了本公开实施例涉及的一种屏幕展收装置处于展开或者收纳过程中的结构示意图。如图6所示,其中包含了第二显示屏幕601,屏幕展收装置602,收纳组件602a,支撑组件602b。请参考图7,其示出了本公开实施例涉及的一种屏幕展收装置处于支撑状态的结构示意图。如图7所示,其中包含了第一显示屏幕701,屏幕展收装置702,收纳组件703,支撑组件704。
当支撑组件由图5所示的状态变化为图7所示的状态时,即,支撑组件由收缩状态变化为支撑状态,第二显示屏幕从收纳组件中展开;当支撑组件由图7所示的状态变化为图5所示的状态时,即,支撑组件由支撑状态变化为收缩状态,第二显示屏幕收纳至该收纳组件中。
可选的,第一天线组403可以设置在支撑组件404中。即,该支撑组件404可以作为第一天线组403的容器,将第一天线组403布置在支撑组件404中。可选的,该第一天线组403的生成方案可以是按照LDS技术或者FPC技术等形成的。可选的,终端400中还包括处理器,屏幕展收装置中的第一天线组可以将接收到的信号传输给处理器,由处理器进一步将该接收到的信号进行处理,从而执行相应的操作。例如,当该第一天线组中包含终端中的主集天线时,终端可通过使用该第一天线组 发送或者接收通信信号,当终端需要通过主集天线发送通信数据时,终端可以采用第一天线组中的主集天线进行发送,相应的,当终端需要通过主集天线接收通信数据时,终端可以采用第一天线组中的主集天线进行接收。
在一种可能的实现方式中,第一天线组403可以是预先按照终端在第一显示屏幕展开后的形态(即形状结构)设置的天线组,也就是说,终端的开发人员在设置第一天线组时,目标是在第一显示屏幕展开的情况下,该第一天线组能够达到较高的天线性能。
在一种可能实现的方式中,第一天线组403还可以包含主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线中的至少一种天线。即,屏幕展收装置中包含的第一天线组可以包含有多个天线,且各个天线的功能可以不同。以第一天线组包含主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线的全部为例,请参考图8,其示出了本公开实施例涉及的一种终端中设置屏幕展收装置的结构示意图。在终端800中,屏幕展收装置801包含有支撑组件802,该支撑组件802中包含有主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线。当终端800需要传输其中一种天线对应的数据类型时,便可以采用其中相应的天线传输数据。可选的,在第一天线组中,包含的天线数量的具体个数可以由开发人员预先在屏幕展收装置中设置,例如,在第一天线组中,可以包含2个主集天线、1个分集天线;或者,该第一天线组中,对上述的各个天线各包含1个本公开实施例对第一天线组包含的天线的具体个数并不加以限定。
可选的,如图5或者图6或者图7所示的屏幕展收装置,其中包含的支撑组件可以包括至少一组支撑杆,该至少一组支撑杆的第一端与该第一显示屏幕相连接;其中,至少一组支撑杆与第一显示屏幕相连接的第一端的活动方向,与第一显示屏幕收纳或者展开的方向相同。需要说明的是,本公开实施例提供的至少一组支撑杆,仅以2个支撑杆组成的一组支撑杆(第一支撑杆和第二支撑杆)为例。进一步的,该至少一组支撑杆的第一端可以与第一显示屏幕直接相连或者间接相连。例如,请 参考图9,其示出了本公开实施例提供的一种支撑组件与第一显示屏幕连接的结构示意图。如图9所示,在终端900中,包含了第一边框901,至少一组支撑杆902,第一显示屏幕903,至少一组支撑杆902与第一边框相连,第一显示屏幕与第一边框相连,当至少一组支撑杆902从支撑状态变为收缩状态时,至少一组支撑杆902可以通过带动第一边框901从而间接使得第一显示屏幕收纳至收纳组件中。或者,当至少一组支撑杆902从收缩状态变为支撑状态时,至少一组支撑杆902可以通过带动第一边框901从而间接使得第一显示屏幕从收纳组件中展开。本公开实施例中,能够保证至少一组支撑杆的第一端与第一显示屏幕收纳或者展开的方向相同的情况下,对至少一组支撑杆第一端与第一显示屏幕具体的连接方式并不加以限定。
可选的,第一天线组可以设置在至少一组支撑杆的内部,或者,该第一天线组也可以设置在至少一组支撑杆的表面。可选的,终端在启用该屏幕展收组件中包含的第一天线组时,可以是根据该第一显示屏幕的展开与否确定。例如,当第一显示屏幕展开时,终端启用该第一天线组收发数据,当第一显示屏幕关闭时,终端也可以相应的停止使用该第一天线组进行收发数据,并改为通过终端内的其他天线进行收发数据,或者中断收发数据。
可选的,当支撑组件处于支撑状态时,至少一组支撑杆支撑在第一显示屏幕的外围,从而使得第一显示屏幕展开时,第一天线组也位于第一显示屏幕的外围。例如,如上述图7所示,当图7所示的至少一组支撑杆处于支撑状态时,第一支撑杆在第一显示屏幕的上端,并与终端的上端边框处于同一平行位置,第二支撑杆在第一显示屏幕的下端,并与终端的下端边框处于同一平行位置,不仅可使得第一天线组同时位于第一显示屏幕的外围,还可以在第一显示屏幕展开时,该至少一组支撑杆起到对第一显示屏幕的保护作用。
可选的,当支撑组件处于收缩状态时,该至少一组支撑杆与第一显示屏幕收纳或者展开的方向呈指定角度,且该至少一组支撑杆处于终端内部。例如,如上述图5所示,支撑组件处于收缩状态时,角度A是第 一支撑杆与第一显示屏幕展开或者收纳时的方向呈的角度,角度B是第二支撑杆与第一显示屏幕展开或者收纳时的方向呈的角度,可选的,该角度可以是开发人员在设计该终端时,选择的支撑杆的材料、支撑杆的连接方式、支撑杆的放置位置等有关,本公开实施例对该角度的具体值并不加以限定。可选的,为了终端的美观性以及适用性,当该至少一组支撑杆处于收缩状态时,可以进一步的将该至少一组支撑杆设计在该终端的内部。
在一种可能实现的方式中,当支撑组件处于收缩状态时,该至少一组支撑杆处于第二显示屏幕的外侧。请参考图10,其示出了本公开实施例涉及图5的一种终端的侧面结构示意图,如图10所示,在终端1000中,包含了至少一组支撑杆1001,第一显示屏幕1002,其中,该至少一组支撑杆1001便是位于第一显示屏幕的外侧的一种情况。这样可以保证终端的第一显示屏幕处于收纳状态下时,支撑杆可以对第二显示屏幕进行一定程度的保护,从而提高了柔性屏幕的耐用性。
在另一种可能实现的方式中,当支撑组件处于收缩状态时,该至少一组支撑杆处于第一显示屏幕的内侧。请参考图11,其示出了本公开实施例涉及图5的一种终端的侧面结构示意图,如图11所示,在终端1100中,包含了至少一组支撑杆1101,第一显示屏幕1102,其中,该至少一组支撑杆1101便是位于第一显示屏幕的内侧的一种情况。这样可以保证终端的第一显示屏幕处于收纳状态下时,支撑杆不会遮挡住第一显示屏幕,使得第一显示屏幕可以在收纳状态下也可以显示内容,增加了终端的多面使用性能。
比如,第一显示屏幕1102的显示区域包括收纳后可视区域和收纳后隐藏区域,当第一显示屏幕1102收纳至屏幕展收装置中时,上述收纳后可视区域可以被用户直接观察到。用户在使用第一显示屏幕1102处于收纳状态下使用终端时,终端可以使用第一显示屏幕1102中的收纳后可视区域进行显示,当终端使用第一显示屏幕1102中的收纳后可视区域进行显示时,该第一显示屏幕1102中的收纳后隐藏区域可以处于熄灭状态。
可选的,上述图5所示的终端中,屏幕展收装置502还可以包括伺 服组件,该伺服组件与至少一组支撑杆的第二端相连。该伺服组件,可以用于在支撑组件由收缩状态变化为支撑状态的过程中,通过推动至少一组支撑杆的第二端,使得至少一组支撑杆的第一端向第一显示屏幕的展开方向移动。相应的,当第一显示屏幕需要从展开状态收纳至屏幕展收装置中时,该伺服组件,也可以用于在支撑组件由支撑状态变化为收缩状态的过程中,通过推动至少一组支撑杆的第二端,使得至少一组支撑杆的第一端向第一显示屏幕的收纳方向移动。
可选的,该伺服组件可以是一个电动驱动机,通过电力驱动至少一组支撑杆的第二端在各自固定的轨道中同时运动,从而使得至少一组支撑杆的第一端向第一显示屏幕的展开方向移动。如图5所示,其中第一轨道506是第一支撑杆的第二端运动的轨道,第二轨道507是第二支撑杆的第二端运动的轨道。可选的,电动驱动机通过驱动至少一组支撑杆的第二端在各自的轨道中同时运动,从而使得至少一组支撑杆的第一端向第一显示屏幕的展开方向移动,进而带动第一显示屏幕从收容装置中展开。即,将至少一组支撑杆的第二端从第一轨道点驱动至第二轨道点,从而使得第二显示屏幕展开。其中,第一轨道点可以与收缩状态的至少一组支撑杆的第二端重合,第二轨道点可以与收缩状态的至少一组支撑杆的第一端重合。
可选的,该伺服组件也可以是一种磁动力推动,通过磁力驱动至少一组支撑杆的第二端在各自固定的轨道中同时运动,从而使得至少一组支撑杆的第一端向第一显示屏幕的展开方向移动。即,类似的,将至少一组支撑杆的第二端从第一轨道点驱动至第二轨道点,从而使得第一显示屏幕展开。需要说明的是,该伺服组件具体采用何种动力将至少一组支撑杆的第二端在各自固定的轨道中运动,进而通过至少一组支撑杆的第一端使得该第二显示屏幕从屏幕收容装置中展开,本公开实施例对此并不加以限定。
类似的,终端通过伺服组件,推动至少一组支撑杆的第二端在各自固定的轨道中同时运动,从而使得至少一组支撑杆的第一端向第一显示屏幕的收纳方向移动,可以是上述第一显示屏幕的展开方向的反方向, 即,将至少一组支撑杆的第二端从上述第二轨道点再次驱动至第一轨道点,从而使得第一显示屏幕从展开状态变化为收缩状态。可选的,上述第一轨道和第二轨道的形状也可以为弧形、直线形等形态。
可选的,该伺服组件可以通过终端中的处理器控制,即,图5所示的终端中还可以包含处理器,该处理器与伺服组件电性相连。相应的,该处理器可以用于在获取到终端中的控制指令时,向该伺服组件发送控制信号。其中,该控制信号用于指示伺服组件推动至少一组支撑杆的第二端。该控制指令可以用于指示第一显示屏幕需要从屏幕展收装置中展开或者收容至屏幕展收装置中。
可选的,该终端中使用屏幕展收组件时,对于屏幕展收组件中的第一天线组以及第一显示屏幕的使用可以是基于该第一显示屏幕的展开信号确定的。
在一种可能实现的方式中,该第一显示屏幕的第一显示屏幕的,当终端从上述图5变换至图7所示的支撑状态时,当第一显示屏幕展开时,该终端可以通过处理器进一步向第一天线组发送启动信号,从而使得终端启动第一天线组,通过第一天线组收发数据。
在一种可能实现的方式中,终端也可以直接通过第一显示屏幕展开,直接触发终端使用第一天线组。例如,当终端中设置有固定开关,该固定开关可以用于启用或者停用第一天线组,并且,该固定开关可以用于在第一显示屏幕展开时,该固定开关直接将第一天线组接通,也就是说,触发第一显示屏幕展开时,同时触发该固定开关,从而使得终端启用第一天线组。
综上所述,本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数据的性能变差的问题,提高了终端的收发数据的性能。
在一种可能实现的方式中,上述图4所示的终端中还可以包含第二 显示屏幕,第二天线组以及射频芯片。请参考图12,其示出了本公开实施例提供的一种终端的结构示意图。如图12所示,在终端1200中,包含了屏幕展收装置1201、第一显示屏幕1202,第一天线组1203,第二显示屏幕1204,第二天线组1205以及射频芯片1206;
其中,屏幕展收装置1201、第一显示屏幕1202,第一天线组1203,可以参照上述图4所示的设置方式,此处不再赘述。第二显示屏幕1204可以设置在终端1200的正面,第二天线组1205可以是终端1200中自带的天线集合,例如,终端中可以设计有自己的主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线等,终端也可以利用该第二天线组进行数据收发。
在一种可能的实现方式中,第二天线组可以是预先按照终端在第一显示屏幕收纳后的形状结构设置的天线组,也就是说,终端的开发人员在设置第二天线组时,目标是在第一显示屏幕收纳的情况下,该第二天线组能够达到较高的天线性能。
可选的,第一天线组与第二天线组包含的天线的类型相同。即本公开实施例通过屏幕展收装置提供的第一天线组需要能够满足第二天线组所能接收到无线数据对应的类型,从而能够在终端第一天线组与第二天线组之间进行切换时,一组天线收发的无线通信数据也能够用另一组天线来代替。
可选的,射频芯片与屏幕展收组件的屏幕展收装置中的第一天线组电性相连;且射频芯片与第二天线组电性相连;射频芯片可以用于在屏幕展收装置通过结构形态的改变来展开第一显示屏幕时,从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。也就是说,该射频芯片可以在屏幕展收装置展开第一显示屏幕时,控制终端从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。
可选的,开发人员可以为射频芯片设置指定条件,当指定条件成立时,便可以将终端从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。在一种可能实现的方式中,上述射频 芯片,用于在第一指定条件成立时,确定屏幕展收装置通过结构形态的改变来展开第一显示屏幕。
其中,第一指定条件可以包括以下条件中的至少一种:接收到终端中的处理器发送的第一信号,第一信号是处理器确定第一显示屏幕展开时生成的信号;接收到指定按键被触发时生成的第二信号,指定按键是用于控制收纳或者展开第一显示屏幕的按键;接收到第一指定开关开启时生成的第三信号,第一指定开关是第一显示屏幕展开时触发开启的开关。即,该第一指定条件可以是开发人员设置的,当射频芯片接收到特定信号时,判定该指定条件成立。其中,该特定信号可以是上述的第一信号、第二信号、第三信号中的至少一种。
可选的,对于上述第一信号是处理器确定第一显示屏幕展开时生成的信号时,当第一显示屏幕展开时,终端中的处理器可以对应生成第一信号,并将该第一信号发送给射频芯片,当射频芯片接收到该第一信号时,确定第一指定条件成立,确定屏幕展收装置是将第一显示屏幕展开的,此时,射频芯片可以通过自己与第一天线组的电性连接,启用第一天线组,使得终端通过第一天线组收发数据。可选的,当终端此时正在使用第二天线组收发数据时,该射频芯片也可以进一步通过自身与第二天线组的电性连接,将第二天线组进行暂时停用,从而完成控制终端从第二天线组收发数据切换为第一天线组收发数据。可选的,在一种可能实现的方式中,当终端启用第一天线组之前,并没有进行数据收发时,射频芯片启用第一天线组即可,不需要进行不同天线组的转换。
在一种可能实现的方式中,终端内部可以设置有姿势传感器,该姿势传感器可以通过终端的姿态来确定是否展开第一显示屏幕。例如,当终端的第一显示屏幕背向地心方向时,终端确定需要展开第一显示屏幕。当第一显示屏幕展开时,可以通过处理器生成第一信号,并发送给射频芯片,当射频芯片接收到该第一信号时,确定第一指定条件成立,确定出屏幕展收装置是将第一显示屏幕展开的,从而启用第一天线组进行无线数据的收发。
在一种可能实现的方式中,当终端设置有控制屏幕展收装置收纳或 者展开第一显示屏幕的按键时,终端响应于指定按键被触发,而对应生成相应的第二信号。该第二信号是处理器确定第一显示屏幕通过指定按键触发而展开时生成的信号。在一种可能实现的方式中,该指定按键是用于控制收纳或者展开第一显示屏幕的实体按键或者虚拟按键。例如,请参考图13,其示出了本公开实施例涉及的一种终端正面的显示界面图。如图13所示,在终端1300中,包含了第二显示屏幕1301,第一按键1302。假设将第一按键1302向下按是对应于第一显示屏幕展开,恢复原位是对应于第一显示屏幕收纳,用户可以通过按下该第一按键1302,从而向终端的处理器发送第一显示屏幕展开指令,终端的处理器可以进一步根据该第一显示屏幕展开指令生成对应该第一按键被触发时生成的信号,(即,该信号便是上述处理器向伺服组件发送的控制信号),终端的处理器将该生成的,对应于该第一按键被触发时生成的信号发送给伺服组件,从而使得该伺服组件获取到该控制信号,从而进一步驱动屏幕展收装置中的至少一组支撑杆,类似上述图5所示的轨道运动,从而使得该第一显示屏幕展开。相应的,在该第一按键被按下时,处理器还可以将生成的第二信号发送给射频芯片,使得射频芯片获得第二信号,从而控制终端使用第一天线组收发无线数据。
可选的,图13所示的第一按键1302也可以是以左右拨动的形式,从而触发第一显示屏幕展开或者收纳。请参考图14,其示出了本公开实施例涉及的一种终端正面的显示界面图。例如,如图14所示,在终端1400中,包含了第一显示屏幕1401,第一按键1402。假设将第一按键1402向左拨动是对应于第一显示屏幕展开,向右拨动是对应于第一显示屏幕收纳,当用户将该第一按键向左拨动时,终端可以生成类似响应于上述按下第一按键的控制信号,从而将该控制信号发送给伺服组件,使得该伺服组件获取到该控制信号,进一步驱动屏幕展收装置中的至少一组支撑杆控制第一显示屏幕展开。同样的,处理器也将向左拨动时,生成的第二信号发送给射频芯片。
可选的,上述图13中的第二显示屏幕1301中还可以显示有虚拟按键1303,当用户点击该虚拟按键1303中的开启按键时,终端可以响应 于该开启按键被触发,而生成控制第一显示屏幕展开的指令,当用户点击该虚拟按键1303中的关闭按键时,终端可以响应于该关闭按键被触发,而生成控制第一显示屏幕收纳的指令。进一步的,终端的处理器可以根据接收到的控制指令,向伺服组件发送控制伺服组件推动至少一组支撑杆的第二端的控制信号,从而控制该至少一组支撑杆的第二端驱动,使得第一显示屏幕展开或者收容。相应的,在该虚拟按键中的开启按键被触发时,处理器还可以将生成的第二信号发送给射频芯片,使得射频芯片获得第二信号,从而控制终端使用第一天线组收发无线数据。
在一种可能实现的方式中,终端中还可以设置有第一指定开关,其中,该第一指定开关是第一显示屏幕展开时触发开启的开关。例如,当第一显示屏幕展开时,第一指定开关自动触发,从而触发处理器开启生成第三信号的步骤,使得处理器生成第三信号,并将该第三信号发送给射频芯片,使得射频芯片获得第三信号,从而控制终端使用第一天线组收发无线数据。
可选的,射频芯片,还用于在屏幕展收装置通过结构形态的改变来展开第一显示屏幕,且通过第二天线组接收到的无线信号的信号质量低于第一质量阈值时,从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。
在一种可能实现的方式中,射频芯片还可以获取第二天线组接收到的无线信号的信号质量,并将第二天线组接收到的无线信号的信号质量与第一质量阈值进行比较,且当终端通过第二天线组接收到的无线信号的信号质量低于第一质量阈值时,从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。即,终端在使用本公开实施例提供的屏幕展收组件时,可以直接判断第二天线组接收到的无线信号的信号质量是否高于第一质量阈值,从而确定是否需要切换天线进行接收无线数据。可选的,这种情况下,射频芯片可以不判断第一指定条件是否成立,从而直接完成对终端的天线切换。
可选的,该第一质量阈值可以是终端中启用某一应用程序时,对应的质量阈值,例如,当终端中当前运行有应用程序一,该应用程序一的 信号质量阈值为P,射频芯片可以将当前运行的应用程序一的信号质量阈值作为第一质量阈值,判断第二天线组接收到的无线信号的信号质量是否低于P,当第二天线组接收到的无线信号的信号质量低于P时,控制终端从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。
需要说明的,射频芯片判定第一指定条件的成立,以及第二天线组接受大的无线信号的信号质量是否低于第一质量阈值的方案也可以结合使用。本公开对此并不加以限定。
相应的,射频芯片,还可以用于在屏幕展收装置通过结构形态的改变来收纳第一显示屏幕时,从通过第一天线组进行无线数据的收发,切换为通过第二天线组进行无线数据的收发。也就是说,该射频芯片可以在屏幕展收装置收纳第一显示屏幕时,控制终端从通过第一天线组进行无线数据的收发,切换为通过第二天线组进行无线数据的收发。
类似的,开发人员可以为射频芯片设置第二指定条件,当第二指定条件成立时,便可以将终端从通过第二天线组进行无线数据的收发,切换为通过第一天线组进行无线数据的收发。即,射频芯片,用于在第二指定条件成立时,确定屏幕展收装置通过结构形态的改变来收纳第一显示屏幕;
其中,第二指定条件包括以下条件中的至少一种:接收到终端中的处理器发送的第四信号,第二信号是处理器确定第一显示屏幕收纳时生成的信号;接收到指定按键被触发时生成的第五信号,指定按键是用于控制收纳或者展开第一显示屏幕的按键;接收到第二指定开关关闭时生成的第六信号,第二指定开关是第一显示屏幕收纳时触发关闭的开关。
可选的,对于上述第四信号是处理器确定第一显示屏幕收纳时生成的信号时,当第一显示屏幕收纳时,终端中的处理器可以对应生成第四信号,并将该第四信号发送给射频芯片,当射频芯片接收到该第四信号时,确定第一指定条件成立,确定屏幕展收装置是将第一显示屏幕收纳的,此时,射频芯片可以通过自己与第一天线组的电性连接,启用第一天线组,使得终端通过第一天线组收发数据。可选的,当终端此时正在 使用第二天线组收发数据时,该射频芯片也可以进一步通过自身与第二天线组的电性连接,将第二天线组进行暂时停用,从而完成控制终端从第二天线组收发数据切换为第一天线组收发数据。可选的,在一种可能实现的方式中,当终端启用第一天线组之前,并没有进行数据收发时,射频芯片启用第一天线组即可,不需要进行不同天线组的转换。可选的,触发第四信号与上述触发第一信号的信号来源可以是同一个信号来源。
例如,仍以上述终端内部设置的姿势传感器为例,当终端的第二显示屏幕背向地心方向时,终端确定需要收纳第一显示屏幕,当第一显示屏幕收纳时,可以通过处理器生成第四信号,并发送给射频芯片,当射频芯片接收到该第四信号时,确定第二指定条件成立,确定出屏幕展收装置是将第一显示屏幕收纳的,从而启用第二天线组进行无线数据的收发。
在一种可能实现的方式中,当终端设置有控制屏幕展收装置收纳或者收纳第一显示屏幕的按键时,终端响应于指定按键被触发,而对应生成相应的第五信号。该第五信号是处理器确定第一显示屏幕通过指定按键触发而收纳时生成的信号。在一种可能实现的方式中,该指定按键是用于控制收纳或者收纳第一显示屏幕的实体按键或者虚拟按键。例如,上述图13中,可以将第一按键恢复原位,从而向终端的处理器发送第一显示屏幕收纳指令,并且当第一按键被恢复时,处理器还可以将生成的第五信号发送给射频芯片,使得射频芯片获得第五信号,从而控制终端使用第一天线组收发无线数据。类似的,对应于虚拟按键1303中关闭按键的触发,可以参考上述开启按键的触发,此处不再赘述。也就是说,第二信号与第五信号可以是同一个触发来源。
在一种可能实现的方式中,终端中还可以设置有第二指定开关,其中,该第二指定开关是第一显示屏幕收纳时触发关闭的开关。例如,当第一显示屏幕收纳时,第二指定开关自动触发,从而触发处理器开启生成第六信号的步骤,使得处理器生成第六信号,并将该第六信号发送给射频芯片,使得射频芯片获得第六信号,从而控制终端使用第二天线组 收发无线数据。其中,第二指定开关与上述第一指定开关可以是同一个开关。
射频芯片,用于在屏幕展收装置通过结构形态的改变来收纳第一显示屏幕,且通过第一天线组接收到的无线信号的信号质量低于第二质量阈值时,从通过第一天线组进行无线数据的收发,切换为通过第二天线组进行无线数据的收发。其中,该第二质量阈值也可以是某一应用程序的信号质量阈值,此处射频芯片判断第二质量阈值的执行步骤也可以参考上述第一质量阈值的执行步骤,此处不再赘述。
综上所述,本公开通过使用该屏幕展收装置中设置的第一天线组,当终端通过屏幕展收装置将第一显示屏幕从屏幕展收装置中展开时,终端可以使用屏幕展收装置中的第一天线组传输数据,从而避免终端的外形发生变化时,终端收发无线数据的无线环境变差,导致终端的收发数据的性能变差的问题,提高了终端的收发数据的性能。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本公开的其它实施方案。本公开旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由权利要求指出。
应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本公开的范围仅由所附的权利要求来限制。

Claims (12)

  1. 一种屏幕展收组件,其特征在于,所述屏幕展收组件设置在终端中,所述屏幕展收组件包括:屏幕展收装置、第一显示屏幕和第一天线组;
    所述第一显示屏幕为柔性屏幕;
    所述屏幕展收装置用于通过结构形态的改变来收纳或者展开所述第一显示屏幕;
    所述第一天线组设置在所述屏幕展收装置中。
  2. 根据权利要求1所述的屏幕展收组件,其特征在于,所述屏幕展收装置包含支撑组件;所述支撑组件对应有收缩状态和支撑状态;
    所述第一天线组设置在所述支撑组件中。
  3. 根据权利要求2所述的屏幕展收组件,其特征在于,所述支撑组件包含至少一组支撑杆;所述至少一组支撑杆的第一端与所述第一显示屏幕相连接;所述至少一组支撑杆与所述第一显示屏幕相连接的第一端的活动方向,与所述第一显示屏幕收纳或者展开的方向相同;
    所述第一天线组设置在所述至少一组支撑杆的内部或者所述至少一组支撑杆的表面。
  4. 根据权利要求1至3任一所述的屏幕展收组件,其特征在于,所述第一天线组包含主集天线、分集天线、卫星定位天线、无线保真Wi-Fi天线以及蓝牙天线中的至少一种天线。
  5. 一种终端,其特征在于,所述终端包括:如权利要求1至4任一所述的屏幕展收组件。
  6. 根据权利要求5所述的终端,其特征在于,所述终端还包括:射 频芯片和第二天线组;
    所述射频芯片与所述屏幕展收组件的屏幕展收装置中的第一天线组电性相连;且所述射频芯片与所述第二天线组电性相连;
    所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕时,从通过所述第二天线组进行无线数据的收发,切换为通过所述第一天线组进行无线数据的收发。
  7. 根据权利要求6所述的终端,其特征在于,
    所述射频芯片,用于在第一指定条件成立时,确定所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕;
    其中,所述第一指定条件包括以下条件中的至少一种:
    接收到所述终端中的处理器发送的第一信号,所述第一信号是所述处理器确定所述第一显示屏幕展开时生成的信号;
    接收到指定按键被触发时生成的第二信号,所述指定按键是用于控制收纳或者展开所述第一显示屏幕的按键;
    接收到第一指定开关开启时生成的第三信号,所述第一指定开关是所述第一显示屏幕展开时触发开启的开关。
  8. 根据权利要求6所述的终端,其特征在于,
    所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来展开所述第一显示屏幕,且所述通过所述第二天线组接收到的无线信号的信号质量低于第一质量阈值时,从通过所述第二天线组进行无线数据的收发,切换为通过所述第一天线组进行无线数据的收发。
  9. 根据权利要求6所述的终端,其特征在于,
    所述射频芯片,还用于在所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕时,从通过所述第一天线组进行无线数据的收发,切换为通过所述第二天线组进行无线数据的收发。
  10. 根据权利要求9所述的终端,其特征在于,
    所述射频芯片,用于在第二指定条件成立时,确定所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕;
    其中,所述第二指定条件包括以下条件中的至少一种:
    接收到所述终端中的处理器发送的第四信号,所述第二信号是所述处理器确定所述第一显示屏幕收纳时生成的信号;
    接收到所述指定按键被触发时生成的第五信号,所述指定按键是用于控制收纳或者展开所述第一显示屏幕的按键;
    接收到第二指定开关关闭时生成的第六信号,所述第二指定开关是所述第一显示屏幕收纳时触发关闭的开关。
  11. 根据权利要求9所述的终端,其特征在于,
    所述射频芯片,用于在所述屏幕展收装置通过结构形态的改变来收纳所述第一显示屏幕,且所述通过所述第一天线组接收到的无线信号的信号质量低于第二质量阈值时,从通过所述第一天线组进行无线数据的收发,切换为通过所述第二天线组进行无线数据的收发。
  12. 根据权利要求6所述的终端,其特征在于,
    所述第一天线组与所述第二天线组包含的天线的类型相同。
PCT/CN2019/098663 2019-04-25 2019-07-31 一种屏幕展收组件以及终端 WO2020215519A1 (zh)

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