WO2020259298A1 - 终端设备 - Google Patents
终端设备 Download PDFInfo
- Publication number
- WO2020259298A1 WO2020259298A1 PCT/CN2020/095541 CN2020095541W WO2020259298A1 WO 2020259298 A1 WO2020259298 A1 WO 2020259298A1 CN 2020095541 W CN2020095541 W CN 2020095541W WO 2020259298 A1 WO2020259298 A1 WO 2020259298A1
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- WO
- WIPO (PCT)
- Prior art keywords
- antenna
- receiving hole
- terminal device
- circuit board
- flexible circuit
- Prior art date
- Legal status (The legal status 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 status listed.)
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
- G06F1/1613—Constructional details or arrangements for portable computers
- G06F1/1633—Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
- G06F1/1684—Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/22—Supports; Mounting means by structural association with other equipment or articles
- H01Q1/24—Supports; Mounting means by structural association with other equipment or articles with receiving set
- H01Q1/241—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
- H01Q1/242—Supports; 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
- H01Q1/243—Supports; 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
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3827—Portable transceivers
- H04B1/3833—Hand-held transceivers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/0202—Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
- H04M1/026—Details of the structure or mounting of specific components
Definitions
- the present disclosure relates to the field of communication technology, and in particular to a terminal device.
- the antenna of the terminal device is usually an independent antenna module. Therefore, a certain volume of independent space is usually required to be provided on the terminal device for placing the above-mentioned antenna module, resulting in a larger size of the terminal device.
- the embodiments of the present disclosure provide a terminal device to solve the problem of large size of the terminal device.
- the embodiment of the present disclosure provides a terminal device, including: a display screen, an optical device module, and an antenna; the display screen is provided with a receiving hole for the optical device module to take in light; the antenna is arranged in the receiving In the hole, and at least a part of the optical device module is arranged in the receiving hole, and the antenna is a light-transmitting antenna.
- the antenna is arranged in the receiving hole and at least a part of the optical device module is located in the receiving hole, there is no need to separately provide a certain volume of independent space on the terminal device for placing the antenna, thereby reducing The volume of the terminal equipment.
- FIG. 1 is a schematic structural diagram of a terminal device provided by an embodiment of the present disclosure
- Figure 2 is a schematic structural diagram of another terminal device provided by an embodiment of the present disclosure.
- Figure 3 is a schematic structural diagram of another terminal device provided by an embodiment of the present disclosure.
- Fig. 4 is a schematic structural diagram of another terminal device provided by an embodiment of the present disclosure.
- the present disclosure provides a terminal device, including: a display screen 10, an optical device module 20, and an antenna 30; the display screen 10 is provided with a receiving hole 40 for the optical device module 20 to receive light;
- the antenna 30 is arranged in the receiving hole 40, and at least a part of the optical device module 20 is arranged in the receiving hole 40, and the antenna 30 is a light-transmitting antenna.
- the antenna 30 is a light-transmitting antenna, which is used to allow external light to enter the optical device module 20 through the antenna 30, that is, the antenna 30 has a low blocking rate for the light from entering the optical device module 20.
- the antenna 30 may include a radiator 31 and a feed source 32. Both the radiator 31 and the feed source 32 are arranged in the receiving hole 40.
- the radiator 31 is arranged at the first end of the receiving hole 40, and the feed source 32 is arranged in the receiving hole 40. The other end of the hole 40.
- the radiator 31 may be arranged in the receiving hole 40, and the feed source 32 may be arranged outside the receiving hole 40, and may be arranged in close contact with the receiving hole 40.
- the display screen 10 may include a stacked display layer, a touch layer, and a light-transmitting cover plate
- the radiator 31 may be arranged in the receiving hole 40, and one side of the radiator 31 may be fixedly arranged on the light-transmitting cover plate ( For example, fixed on the transparent cover by adhesive tape).
- the radiator 31 can also be fixed on the inner wall of the receiving hole 40 by adhesive tape.
- the shape of the receiving hole 40 is not limited herein, for example, the receiving hole 40 may be a circular hole or a rectangular hole.
- the optical device module 20 may be a fingerprint display module, and the fingerprint display module may include a lens, a filter, and a fingerprint sensor stacked in sequence.
- the display screen 10 may include a display layer 11 and a touch layer 12 which are arranged in a stack.
- the optical device module 20 and the antenna 30 are located in the receiving hole 40, there is no need to separately provide a certain volume of independent space on the terminal device for placing the antenna 30, thereby reducing The volume of the terminal device.
- the antenna 30 is arranged in the receiving hole 40, when the display screen 10 of the terminal device is placed on the metal desktop (that is, the backplane of the terminal device is in contact with the metal desktop, and the display screen 10 of the terminal device is away from the metal desktop), Or when the user holds the terminal device, the blocking of the signal transmission of the antenna 30 can be reduced, thereby improving the transmission performance of the antenna 30, thereby enhancing the user experience.
- the display screen 10 includes a stacked display layer 11 and a touch layer 12, the display layer 11 is provided with the receiving hole 40, and the antenna 30 is fixedly connected to the touch layer 12, Alternatively, the antenna 30 is fixedly connected to the inner wall of the receiving hole 40.
- the display layer 11 may include a first surface and a second surface disposed opposite to each other, the first surface is connected to the touch layer 12, and the receiving hole 40 penetrates the first surface and the second surface.
- an avoidance area may be provided in the position corresponding to the receiving hole 40 in the touch layer 12, and an indium tin oxide film is not provided in the avoidance area.
- the display screen 10 may also include an adhesive layer, and the display layer 11 and the touch layer 12 are fixedly connected by the adhesive layer.
- the adhesive layer may have a preset thickness (the specific value of the thickness is not specifically limited here). ).
- the accommodating hole 40 may include a first accommodating hole section and a second accommodating hole section that are connected to each other, the adhesive layer is provided with a first accommodating hole section, the display layer 11 is provided with a second accommodating hole section, and the antenna 30 may It is arranged in the first receiving hole section or the second receiving hole section.
- one part of the antenna 30 may be arranged in the first receiving hole section, and the other part may be arranged in the second receiving hole section.
- the antenna 30 and the touch layer 12 can be fixedly connected by glue or a connector, and the antenna 30 and the inner wall of the receiving hole 40 can also be fixedly connected by glue or a connector.
- the receiving hole 40 is provided on the display layer 11, and the receiving hole 40 can penetrate the first surface and the second surface of the display layer 11, the volume of the terminal device is reduced, and the processing difficulty is also reduced. .
- the accommodating hole 40 includes a first accommodating hole and a second accommodating hole that are communicated with each other
- the display screen includes a display layer 11, a touch layer 12, and a light-transmitting cover plate arranged in a stacked manner.
- the layer 12 is provided with the first receiving hole
- the display layer 11 is provided with the second receiving hole
- the antenna 30 is disposed in the first receiving hole.
- the first receiving hole may penetrate through the touch layer 12 or not through the touch layer 12 (ie, the first receiving hole is a blind hole at this time).
- the depth of the first receiving hole on the touch layer 12 is not specifically limited herein. For example, if the thickness of the touch layer 12 is 0.5 mm, the depth of the first receiving hole may be 0.2 or 0.3 mm.
- the material of the touch layer 12 can be conductive glass, and the conductive glass can be specifically coated with a layer of indium tin oxide (indium tin oxide) based on soda-lime-based or silicon-boron-based substrate glass by sputtering, evaporation, and other methods.
- Indium Tin Oxide (ITO) film is processed and manufactured.
- the radiator 31 of the antenna 30 can also be made of indium tin oxide material, so that the light transmission performance of the antenna 30 is better.
- the area where the first receiving hole is provided in the touch layer 12 is not provided with an indium tin oxide film.
- the shape of the first accommodating hole and the second accommodating hole can be the same, and the aperture of the first accommodating hole and the second accommodating hole can also be the same.
- the radiator 31 of the antenna 30 may be arranged in the first receiving hole, and the position of the feed 32 of the antenna 30 may not be limited here.
- the feed source 32 can be arranged in the first accommodating hole or in the second accommodating hole.
- the volume of the terminal device can be further reduced.
- the first receiving hole penetrates the touch layer 12, and the antenna 30 is fixedly connected to the transparent cover plate, or the antenna 30 is fixedly connected to the inner wall of the first receiving hole.
- the antenna 30 and the light-transmitting cover plate and the antenna 30 and the inner wall of the first receiving hole may be fixedly connected by an adhesive or a connecting member, respectively.
- the adhesive may be glue.
- the antenna 30 since the first receiving hole penetrates the touch layer 12, the antenna 30 is fixedly connected to the light-transmitting cover, or the antenna 30 is fixedly connected to the inner wall of the first receiving hole, thereby further reducing the terminal device volume.
- the antenna 30 when the antenna 30 is fixedly connected to the transparent cover plate, the shielding of the signal of the antenna 30 by other components is reduced, so that the radiation performance of the antenna 30 is better.
- the terminal device further includes that the antenna 30 includes a radiator 31, a feeding structure 50, and a feed source 32.
- the radiator 31 and the feeding structure 50 are spaced apart from each other, and the feeding structure 50 It is electrically connected to the feed source 32, and the radiator 31 and the feed source 32 are coupled and fed through the feeding structure 50.
- the radiator 31 and the feeding structure 50 are not directly connected, that is, the radiator 31 and the feeding structure 50 are spaced apart.
- the distance between the radiator 31 and the feeding structure 50 is not specifically limited here.
- the type, number, and installation method of the radiator 31 are not specifically limited here.
- one end of the feed source 32 is electrically connected to the feed structure 50, and the other end of the feed source 32 may be grounded.
- the feed source 32 can also be referred to as a signal generator.
- the location of the feeding structure 50 is not specifically limited here.
- the feeding structure 50 may be arranged in the receiving hole 40, of course, the feeding structure 50 may not be arranged in the receiving hole 40.
- the radiator 31 and the feed source 32 are coupled and fed through the feeding structure 50, so that the radiator 31 and the feed source 32 do not need to be directly connected, thereby making the energy transfer more convenient.
- the terminal device further includes a flexible circuit board 60, and the feeding structure 50 is electrically connected to the feed source 32 through the flexible circuit board 60.
- the location of the flexible circuit board 60 is not specifically limited here.
- the flexible circuit board 60 can be disposed on the outer wall or the bottom wall of the base of the optical device module 20.
- the flexible circuit board 60 is disposed on the optical device. On the outer wall of the base of the device module 20.
- the flexible circuit board 60 can be a circuit board in the optical device module 20, that is, the antenna 30 and the optical device module 20 can share the above-mentioned flexible circuit board 60.
- the flexible circuit board 60 can also be a circuit board in the antenna 30, that is, the antenna 30 can include a radiator 31, a feeding structure 50, a flexible circuit board 60 and a feed source 32.
- the feeding structure 50 is electrically connected to the feeding source 32 through the flexible circuit board 60, so that the signal transmission between the feeding structure 50 and the feeding source 32 is more stable.
- the flexible circuit board 60 is attached to the outer wall of the optical device module 20.
- the feeding structure 50 can be arranged on the flexible circuit board 60.
- the flexible circuit board 60 is attached to the outer wall of the optical device module 20, so that the sliding phenomenon of the flexible circuit board 60 along the receiving hole 40 can be reduced.
- the flexible circuit board 60 is attached to the inner wall of the receiving hole 40.
- the flexible circuit board 60 is arranged in contact with the inner wall of the receiving hole 40, which can reduce the friction between the flexible circuit board 60 and the optical device module 20, thereby prolonging the service life of the flexible circuit board 60.
- the flexible circuit board 60 is attached to the outer wall of the optical device module 20 and the inner wall of the receiving hole 40 respectively.
- the flexible circuit board 60 is attached to the outer wall of the optical device module 20 and the inner wall of the receiving hole 40, which can also reduce the occurrence of sliding of the flexible circuit board 60 along the receiving hole 40.
- the flexible circuit board 60 can also fill the gap between the outer wall of the optical device module 20 and the inner wall of the receiving hole 40, so that the fixing effect of the optical device module 20 in the receiving hole 40 can be better.
- the terminal device includes multiple antennas 30, and the multiple antennas 30 are arranged in an array.
- the terminal device includes multiple antennas 30, and the multiple antennas 30 are arranged in an array, so that the radiation performance of the multiple antennas 30 is better.
- the antenna 30 is a millimeter wave antenna.
- the frequency of the millimeter wave antenna is not limited here.
- the frequency of the millimeter wave antenna can be greater than or equal to 60 GHz, so that the millimeter wave antenna can be used for face recognition, gesture recognition and other functions.
- the antenna 30 is a millimeter wave antenna, which can improve the transmission quality of the antenna 30.
- the millimeter wave antenna can use the bottom of the display screen 10 (ie, the display screen 11) as its reflector, so that the millimeter wave antenna can obtain a higher gain, and thus is better compatible with the surrounding environment.
- the antenna 30 is a dipole antenna or a patch antenna.
- the antenna 30 is a dipole antenna or a patch antenna. Due to the different types of the antenna 30, the terminal equipment is more diverse.
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- Engineering & Computer Science (AREA)
- Computer Hardware Design (AREA)
- Theoretical Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Human Computer Interaction (AREA)
- Physics & Mathematics (AREA)
- General Engineering & Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Telephone Set Structure (AREA)
- Support Of Aerials (AREA)
Abstract
本公开提供一种终端设备,包括:显示屏幕、光学器件模组和天线;所述显示屏幕上开设有供所述光学器件模组采光的容纳孔;所述天线设置于所述容纳孔内,以及所述光学器件模组的至少一部分设置于所述容纳孔内,所述天线为透光天线。
Description
相关申请的交叉引用
本申请主张在2019年6月28日在中国提交的中国专利申请No.201910575097.1的优先权,其全部内容通过引用包含于此。
本公开涉及通信技术领域,尤其涉及一种终端设备。
随着通信技术的发展,多天线通信应用于终端设备上成为主流以及未来趋势。在相关技术中,终端设备的天线通常为独立的天线模块,因此终端设备上通常需要单独设置一定体积的独立空间用于放置上述天线模块,从而导致终端设备的体积较大。
发明内容
本公开实施例提供一种终端设备,以解决终端设备的体积较大的问题。
为了解决上述技术问题,本公开是这样实现的:
本公开实施例提供了一种终端设备,包括:显示屏幕、光学器件模组和天线;所述显示屏幕上开设有供所述光学器件模组采光的容纳孔;所述天线设置于所述容纳孔内,以及所述光学器件模组的至少一部分设置于所述容纳孔内,所述天线为透光天线。
在本公开实施例中,由于天线设置于容纳孔内,以及光学器件模组的至少一部分位于容纳孔内,这样,在终端设备上无须单独设置一定体积的独立空间用于放置天线,从而减小了终端设备的体积。
为了更清楚地说明本公开实施例的技术方案,下面将对本公开实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅 是本公开的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本公开,实施例提供的一种终端设备的结构示意图;
图2是本公开实施例提供的另一种终端设备的结构示意图;
图3是本公开实施例提供的另一种终端设备的结构示意图;
图4是本公开实施例提供的另一种终端设备的结构示意图。
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
参见图1,本公开提供一种终端设备,包括:显示屏幕10、光学器件模组20和天线30;所述显示屏幕10上开设有供所述光学器件模组20采光的容纳孔40;所述天线30设置于所述容纳孔40内,以及所述光学器件模组20的至少一部分设置于所述容纳孔40内,所述天线30为透光天线。
其中,天线30为透光天线,用于使得外界的光线可以透过天线30进入光学器件模组20中,即天线30对光线射入光学器件模组20的阻挡率较低。另外,天线30可以包括辐射体31和馈源32,辐射体31和馈源32均设置于容纳孔40内,例如:辐射体31设置于容纳孔40的第一端,馈源32设置于容纳孔40的另一端。当然,也可以只有辐射体31设置于容纳孔40内,馈源32可以设置于容纳孔40外,且可以贴合容纳孔40设置。另外,显示屏幕10可以包括层叠设置的显示层、触控层和透光盖板,辐射体31可以设置在容纳孔40内,而辐射体31的一侧可以固定设置于透光盖板上(例如通过胶带固定于透光盖板上)。当然,辐射体31还可以通过胶带固定于容纳孔40的内壁上。
其中,容纳孔40的形状在此不做限定,例如:容纳孔40可以为圆形孔或者矩形孔等。
其中,光学器件模组20可以为指纹显示模组,且指纹显示模组可以包括 依次层叠设置的镜头、滤光片和指纹传感器。
其中,参见图2和图3,表示光学器件模组20的部分设置于显示屏幕10上的容纳孔40内。而显示屏幕10可以包括层叠设置的显示层11和触控层12。
在本公开实施例中,由于光学器件模组20的至少一部分与天线30均位于容纳孔40内,这样,在终端设备上无须单独设置一定体积的独立空间用于放置天线30,从而减小了终端设备的体积。另外,由于天线30设置于容纳孔40内,在终端设备的显示屏幕10朝上放置于金属桌面上(即终端设备的背板与金属桌面接触,终端设备的显示屏幕10背离金属桌面)时,或者用户手握终端设备时,可减少对天线30信号传输的阻挡,从而提升天线30的传输性能,进而提升用户的体验。
可选地,所述显示屏幕10包括层叠设置的显示层11和触控层12,所述显示层11上开设有所述容纳孔40,所述天线30与所述触控层12固定连接,或者,所述天线30与所述容纳孔40的内壁固定连接。
其中,显示层11可以包括相背设置的第一表面和第二表面,第一表面与触控层12连接,容纳孔40贯穿第一表面和第二表面。
另外,在触控层12中对应容纳孔40的位置可以设置有避空区域,而避空区域内未设置有氧化铟锡膜。
另外,显示屏幕10还可以包括粘胶层,且显示层11和触控层12之间通过粘胶层固定连接,粘胶层可以具有预设厚度(厚度的具体取值在此不做具体限定)。当然,容纳孔40可以包括相互连通的第一容纳孔段和第二容纳孔段,粘胶层上开设有第一容纳孔段,显示层11上开设有第二容纳孔段,而天线30可以设置于第一容纳孔段或者第二容纳孔段内。当然,天线30还可以一部分设置于第一容纳孔段内,另一部分设置于第二容纳孔段内。
另外,天线30与触控层12之间可以通过胶水或者连接件固定连接,天线30与容纳孔40的内壁之间也可以通过胶水或者连接件固定连接。
本公开实施例中,由于在显示层11上开设有容纳孔40,且容纳孔40可以贯穿显示层11的第一表面和第二表面,既减小了终端设备的体积,也降低了加工难度。
可选地,所述容纳孔40包括相互连通的第一容纳孔和第二容纳孔,所述显示屏幕包括10层叠设置的显示层11、触控层12和透光盖板,所述触控层12上开设有所述第一容纳孔,所述显示层11上开设有所述第二容纳孔,所述天线30设置于所述第一容纳孔内。
其中,第一容纳孔可以贯穿触控层12,也可以不贯穿触控层12(即此时第一容纳孔为盲孔)。当第一容纳孔不贯穿触控层12时,第一容纳孔在触控层12上的深度在此不作具体限定。例如:触控层12的厚度为0.5毫米,则第一容纳孔的深度可以为0.2或者0.3毫米等。
其中,触控层12的材质可以选用导电玻璃,导电玻璃具体可以为在钠钙基或硅硼基基片玻璃的基础上,利用溅射、蒸发等多种方法镀上一层氧化铟锡(Indium Tin Oxide,ITO)膜加工制作成的。另外,天线30的辐射体31同样可以采用氧化铟锡材料制成,从而使得天线30的透光性能较好。
需要说明的是,在触控层12中设置有第一容纳孔的区域未设置有氧化铟锡膜。
其中,第一容纳孔与第二容纳孔的形状可以相同,且第一容纳孔与第二容纳孔的孔径也可以相同。
其中,天线30的辐射体31可以设置于第一容纳孔内,而天线30的馈源32的设置位置可以在此不做限定。例如:馈源32可以设置于第一容纳孔内,也可以设置于第二容纳孔内。
本公开实施例中,由于触控层12上设置有第一容纳孔,且天线30设置于第一容纳孔内,从而可以进一步的减小终端设备的体积。
可选地,所述第一容纳孔贯穿所述触控层12,所述天线30与所述透光盖板固定连接,或者,所述天线30与所述第一容纳孔的内壁固定连接。
其中,天线30与透光盖板之间,以及天线30与第一容纳孔的内壁之间可以分别通过粘接剂或者连接件固定连接,上述粘接剂可以为胶水。
本公开实施例中,由于第一容纳孔贯穿触控层12,天线30与透光盖板固定连接,或者,天线30与第一容纳孔的内壁固定连接,从而可以进一步的减小终端设备的体积。另外,当天线30与透光盖板固定连接时,减小了其他部件对天线30信号的遮挡,从而使得天线30的辐射性能较好。
可选地,所述终端设备还包括,所述天线30包括辐射体31、馈电结构50和馈源32,所述辐射体31与所述馈电结构50间隔设置,所述馈电结构50与所述馈源32电连接,所述辐射体31与所述馈源32通过所述馈电结构50耦合馈电。
其中,辐射体31与馈电结构50之间不直接相连,即辐射体31与馈电结构50间隔设置,当然,辐射体31与馈电结构50之间的间距在此不作具体限定。另外,辐射体31的类型、个数以及设置方式等均在此不做具体限定。
其中,馈源32的一端与馈电结构50电连接,馈源32的另一端可以接地。当然,馈源32还可以被称作为信号发生器。
其中,馈电结构50的设置位置在此不作具体限定。例如:馈电结构50可以设置于容纳孔40内,当然,馈电结构50也可以不设置于容纳孔40内。
本公开实施例中,辐射体31与馈源32通过馈电结构50耦合馈电,使得辐射体31与馈源32之间无须直接连接,从而使得能量的传递更加方便。
可选地,参见图1,所述终端设备还包括柔性电路板60,所述馈电结构50通过所述柔性电路板60与所述馈源32电连接。
其中,柔性电路板60的设置位置在此不作具体限定,例如:柔性电路板60可以设置于光学器件模组20的基座的外壁或者底壁上,可选地,柔性电路板60设置于光学器件模组20的基座的外壁上。
其中,柔性电路板60可以为光学器件模组20中的电路板,即天线30与光学器件模组20可以共用上述柔性电路板60。当然,柔性电路板60也可以为天线30中的电路板,即天线30可以包括辐射体31、馈电结构50、柔性电路板60和馈源32。
本公开实施例中,馈电结构50通过柔性电路板60与馈源32电连接,从而使得馈电结构50与馈源32之间信号传输更加稳定。
可选地,所述柔性电路板60贴合所述光学器件模组20的外壁设置。
其中,馈电结构50可以设置于柔性电路板60上。
本公开实施例中,柔性电路板60贴合光学器件模组20的外壁设置,从而可以减少柔性电路板60沿着容纳孔40滑动现象的发生。
可选地,所述柔性电路板60贴合所述容纳孔40的内壁设置。
本公开实施例中,柔性电路板60贴合容纳孔40的内壁设置,可以减少柔性电路板60与光学器件模组20之间的摩擦,从而延长柔性电路板60的使用寿命。
可选地,所述柔性电路板60分别与所述光学器件模组20的外壁和所述容纳孔40的内壁贴合。
本公开实施例中,柔性电路板60分别与光学器件模组20的外壁和容纳孔40的内壁贴合,同样可以减少柔性电路板60沿着容纳孔40滑动现象的发生,另外,柔性电路板60还可以填充光学器件模组20的外壁与容纳孔40的内壁之间的间隙,从而可以使得光学器件模组20在容纳孔40内的固定效果较好。
可选地,参见图4,所述终端设备包括多个天线30,所述多个天线30呈阵列设置。
本公开实施例中,终端设备包括多个天线30,且上述多个天线30呈阵列设置,从而使得上述多个天线30的辐射性能较好。
可选地,所述天线30为毫米波天线。
其中,毫米波天线的频率在此不做限定,例如:毫米波天线的频率可以大于或等于60GHz,从而使得该毫米波天线可以用于人脸识别,手势识别等功能。
本公开实施例中,天线30为毫米波天线,可以提升天线30的传输质量。另外,毫米波天线可以将显示屏幕10(即显示屏11)的底部作为其反射器,以使得毫米波天线获得较高的增益,从而更好的兼容周边的环境。
可选地,所述天线30为偶极子天线或者贴片天线。
本公开实施例中,天线30为偶极子天线或者贴片天线,由于天线30的类型的不同,从而使得终端设备更加多样化。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。
Claims (12)
- 一种终端设备,包括:显示屏幕、光学器件模组和天线;所述显示屏幕上开设有供所述光学器件模组采光的容纳孔;所述天线设置于所述容纳孔内,以及所述光学器件模组的至少一部分设置于所述容纳孔内,所述天线为透光天线。
- 根据权利要求1所述的终端设备,其中,所述显示屏幕包括层叠设置的显示层和触控层,所述显示层上开设有所述容纳孔,所述天线与所述触控层固定连接,或者,所述天线与所述容纳孔的内壁固定连接。
- 根据权利要求1所述的终端设备,其中,所述容纳孔包括相互连通的第一容纳孔和第二容纳孔,所述显示屏幕包括层叠设置的显示层、触控层和透光盖板,所述触控层上开设有所述第一容纳孔,所述显示层上开设有所述第二容纳孔,所述天线设置于所述第一容纳孔内。
- 根据权利要求3所述的终端设备,其中,所述第一容纳孔贯穿所述触控层,所述天线与所述透光盖板固定连接,或者,所述天线与所述第一容纳孔的内壁固定连接。
- 根据权利要求1所述的终端设备,其中,所述天线包括辐射体、馈电结构和馈源,所述辐射体与所述馈电结构间隔设置,所述馈电结构与所述馈源电连接,所述辐射体与所述馈源通过所述馈电结构耦合馈电。
- 根据权利要求5所述的终端设备,其中,所述终端设备还包括柔性电路板,所述馈电结构通过所述柔性电路板与所述馈源电连接。
- 根据权利要求6所述的终端设备,其中,所述柔性电路板贴合所述光学器件模组的外壁设置。
- 根据权利要求6所述的终端设备,其中,所述柔性电路板贴合所述容纳孔的内壁设置。
- 根据权利要求6所述的终端设备,其中,所述柔性电路板分别与所述光学器件模组的外壁和所述容纳孔的内壁贴合。
- 根据权利要求1所述的终端设备,包括多个天线,所述多个天线呈阵列设置。
- 根据权利要求1所述的终端设备,其中,所述天线为毫米波天线。
- 根据权利要求11所述的终端设备,其中,所述天线为偶极子天线或者贴片天线。
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