WO2018058449A1 - 遥控装置 - Google Patents
遥控装置 Download PDFInfo
- Publication number
- WO2018058449A1 WO2018058449A1 PCT/CN2016/100861 CN2016100861W WO2018058449A1 WO 2018058449 A1 WO2018058449 A1 WO 2018058449A1 CN 2016100861 W CN2016100861 W CN 2016100861W WO 2018058449 A1 WO2018058449 A1 WO 2018058449A1
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- WO
- WIPO (PCT)
- Prior art keywords
- remote control
- control device
- display screen
- shaft
- base
- 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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Classifications
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- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C17/00—Arrangements for transmitting signals characterised by the use of a wireless electrical link
- G08C17/02—Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B19/00—Program-control systems
- G05B19/02—Program-control systems electric
-
- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C23/00—Non-electrical signal transmission systems, e.g. optical systems
- G08C23/04—Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K7/00—Constructional details common to different types of electric apparatus
- H05K7/02—Arrangements of circuit components or wiring on supporting structure
Definitions
- the invention relates to a remote control device.
- the existing drone remote control device realizes the control and image transmission of the drone by fixing the mobile phone or the tablet computer on the remote control bracket and connecting the remote controller and the mobile phone or the tablet computer through the signal line.
- the signal line connecting the remote controller and the mobile phone or the tablet computer is exposed and cannot be folded, which affects the operation of the remote controller and also affects the appearance.
- a remote control device includes a remote controller body, a display screen, and a rotatable bracket for connecting the remote controller body and the display screen, the display screen being rotatably connected to the remote controller body by a rotatable bracket
- the display screen and the remote controller body are electrically connected by a signal line that is disposed inside the bracket.
- the remote control device provided by the technical solution provided by the technical solution penetrates the signal line inside the bracket, which can avoid the influence of the operation of the operator when the signal line is exposed, and can make the remote control device compact. And beautiful.
- FIG. 1 is a perspective view of a remote control device according to a first embodiment of the present technical solution.
- FIG. 2 is a perspective view showing the display screen of the remote control device according to the first embodiment of the present invention in a folded state.
- FIG. 3 is a perspective view showing the display screen of the remote control device of FIG. 2 in an open state.
- FIG. 4 is a perspective view showing the structure of the bracket and the manner in which the signal lines are routed in the first embodiment of the present technical solution.
- FIG. 5 is a perspective view showing the structure of the bracket and the manner in which the signal lines are routed in the second embodiment of the present technology.
- Fig. 6 is a perspective view showing the structure of the bracket and the manner in which the signal lines are routed in the third embodiment of the present invention.
- Fig. 7 is a perspective view showing the structure of the bracket and the manner in which the signal lines are routed in the fourth embodiment of the present invention.
- Remote control device 10 20, 30, 40 Display 11, 21, 31, 41 support 13,43 Remote control body 17 Signal line 18, 28, 38, 48 top 14, 24, 34, 44 Base 16,26 Damping shaft 15, 25, 45 First connection 141, 341, 441 First shaft hole 143, 243 Connection hole 145, 245, 345, 445, 465 Second connection 161, 261, 361, 461 Second shaft hole 163, 263, 363 Gap 165, 365 Axial hole 251 Radial hole 253 Signal line branch 381 Occlusion sleeve 431
- a component when a component is considered to be “connected” to another component, it can be directly connected to another component or a central component can be present at the same time.
- a component When a component is considered to be “set to” another component, it can be placed directly on another component or possibly with a centered component.
- a remote control device 10 provided by a first embodiment of the present technical solution is used for remote control of a drone.
- the drone may be an electronic device such as an unmanned aerial vehicle, an unmanned vehicle or an unmanned ship.
- the remote control device 10 includes a display screen 11, a rotatable support 13 and a remote control body 17.
- the display screen 11 is rotatably disposed on the remote control body 17 through the rotatable bracket 13.
- the display screen 11 can be folded and stored toward the remote controller body 17.
- the display screen 11 and the remote controller body 17 are electrically connected by a signal line 18 that is inserted inside the bracket 13.
- the display screen 11 can be rotated over an angle range of up to 180 degrees and can be stably placed at any angle within the range of angles of rotation.
- the display brightness of the display can reach 900 lumens to ensure that the picture can be clearly displayed under strong light.
- the display screen 11 is further provided with a light shielding plate.
- the visor extends outwardly from a top of the display side of the display screen 11. The visor can further ensure the visual effect of displaying the picture under strong light.
- the bracket 13 has a hollow structure, and the signal line 18 is embedded in the bracket 13.
- the bracket 13 includes a top portion 14 and a base portion 16 that are rotatably coupled.
- the signal line 18 extends from the base 16 to the top portion 14 within the bracket 13.
- the bracket 13 also includes a damper shaft 15.
- the base 16 and the top portion 14 are rotatably connected by the damping shaft 15 .
- the signal line 18 extends from the base 16 within the bracket 13 and extends through the damping shaft 15 to the top portion 14.
- the signal line 18 extends from the base portion 16 to one end of the damper shaft 15 in the bracket 13 and extends along the damper shaft 15 to the other end of the damper shaft 15 .
- the damper shaft 15 is bypassed and extends into the top portion 14.
- the top portion 14 is coupled to the display screen 11.
- the connection between the top portion 14 and the display screen 11 is a fixed connection.
- the fixed connection between the top portion 14 and the display screen 11 can be achieved by a locking mechanism or a snap mechanism, or the top portion 14 can be integrally formed with the display screen 11.
- the top portion 14 and the display screen 11 are fixedly connected by a snap structure.
- the top portion 14 is a hollow structure.
- the top portion 14 includes a first connection portion 141.
- the first connecting portion 141 is located at an end of the top portion 14 away from the display screen 11.
- the first connecting portion 141 defines a shaft receiving hole that cooperates with the damping shaft 15 .
- the first connecting portion 141 is one.
- the first connecting portion 141 defines a first shaft receiving hole 143 that cooperates with the damping shaft 15 .
- the top portion 14 is provided with a connecting hole 145 communicating with the hollow structure of the top portion 14 at a position close to the first connecting portion 141.
- connection between the top portion 14 and the display screen 11 can be a damped rotational connection.
- the base 16 is coupled to the remote control body 17.
- the connection between the base portion 16 and the remote controller body 17 is a fixed connection.
- the fixed connection between the base 16 and the remote control body 17 can be achieved by a locking mechanism or a snap mechanism, or by integrally forming the base 16 with the remote control body 17.
- the base portion 16 and the remote controller body 17 are fixedly connected by a snap mechanism.
- the base 16 is a hollow structure.
- the base 16 includes a second connecting portion 161.
- the second connecting portion 161 is located at an end of the base portion 16 away from the remote control body 17 .
- the second connecting portion 161 is rotatably coupled to the first connecting portion 141 through the damper shaft 15 to rotatably connect the base portion 16 with the top portion 14.
- the second connecting portion 161 defines a shaft receiving hole that cooperates with the damping shaft 15 .
- the first connecting portion 141 and the second connecting portion 161 are rotatably connected to each other by the shaft connecting hole and the damping shaft 15 .
- the second connecting portions 161 are two and the two second connecting portions 161 are spaced apart from each other.
- Each of the second connecting portions 161 defines a second shaft receiving hole 163 corresponding to the first shaft connecting hole 143.
- the damper shaft 15 is disposed in the first shaft hole 143 and the second shaft hole 163, and both ends of the damper shaft 15 are received in the second shaft hole 163.
- the second shaft hole 163 of one of the second connecting portions 161 is in communication with the hollow structure of the base portion 16.
- the other second connecting portion 161 is provided with a slit 165 communicating with the second shaft receiving hole 163 thereon.
- the gap 165 is in communication with the connection hole 145.
- the signal line 18 extends from the hollow structure of the base 16 into the hollow structure of the top portion 14 to electrically connect the remote control body 17 with the display screen 11.
- the signal line 18 extends from the hollow structure of the base portion 16 into the second shaft hole 163 of the second connecting portion 161 communicating with the hollow structure of the base portion 16 and along the
- the outer wall of the damper shaft 15 extends into the second shaft hole 163 of the other second connecting portion 161, and then is wound around the gap 165 in the circumferential direction of the damper shaft 15, passing through the space communicating with the gap 165
- the connection aperture 145 which in turn extends into the hollow structure of the top portion 14, is in signal connection with the display screen 11.
- connection between the base 16 and the remote control body 17 can be a damped rotational connection.
- the remote control device 10 further includes an antenna 19.
- the antenna 19 is disposed on the remote controller body 17 and is rotatable relative to the remote controller body 17 to better receive signals.
- the remote control device 20 provided in the second embodiment of the present invention is substantially the same as the remote control device 10 provided in the first embodiment of the present invention, except that the damper shaft 25 is a hollow structure, a signal line 28 extending from the base portion 26 to one end of the damper shaft 25 and extending into the damper shaft 25 in the bracket 23 to extend axially along the damper shaft 25 from the side of the damper shaft 25 The wall passes out and extends to the top portion 24.
- the damper shaft 25 is provided with an axial hole 251 and a radial hole 253 communicating with the axial hole 251.
- the axial bore 251 is in communication with a second axial bore 263 that communicates with the hollow structure of the base 26.
- the top portion 24 defines a connecting hole 245 that communicates with the hollow structure of the top portion 24 and the first shaft hole 243.
- the signal line 28 extends from the hollow structure of the base portion 26 into the second shaft hole 263 of the second connecting portion 261 communicating with the hollow structure of the base portion 26, and extends into the axial hole 251 And electrically connected to the display screen 21 through the radial hole 253 and the connecting hole 245 extending into the hollow structure of the top portion 24.
- the remote control device 30 provided in the third embodiment of the present invention is substantially the same as the remote control device 10 provided in the first embodiment of the present invention, except that the signal line 38 is inside the base portion 36. Divided into two signal line branches 381 that extend to both ends of the damper shaft 35 and extend around the damper shaft 35 to the top portion 34, respectively.
- the second shaft hole 363 of the other second connecting portion 361 is also in communication with the hollow structure of the base portion 36, and the two second connecting portions 361 are both open and respectively
- the second shaft receiving hole 363 communicates with the opening 365;
- the top portion 34 defines a connecting hole 345 communicating with the hollow structure of the top portion 34, and the connecting hole 345 is respectively communicated with the opening 365.
- the two signal line branches 381 extend into the two second shaft holes 363, respectively, and are wound in the circumferential direction of the damping shaft 35 to the corresponding gap 365, and communicate with the gap 365.
- the connecting hole 345 which in turn extends into the hollow structure of the top portion 34, is in signal connection with the display screen 31.
- the remote control device 40 provided by the fourth embodiment of the present invention is substantially the same as the remote control device 10 provided in the first embodiment of the present invention, except that the first connecting portion 441 is two and Two first connecting portions 441 are spaced apart, the second connecting portion 461 is two and two of the second connecting portions 461 are spaced apart, and each of the first connecting portions 441 and one of the second portions Corresponding to the connecting portion 461, the damping shaft 45 is two, and each of the first connecting portions 441 and the corresponding second connecting portion 461 are rotatably connected by one of the damping rotating shafts 45, and the signal line 48 is from the base portion. 46 extends and extends from between the two first connecting portions 441 to the top portion 44.
- the two first connecting portions 441 are located between the two second connecting portions 461.
- the two first connecting portions 441 are respectively coupled to the two second connecting portions 461.
- a first connecting hole 445 communicating with the hollow structure of the top portion 44 is defined between the two first connecting portions 441.
- a second connecting hole 465 corresponding to the first connecting hole 445 is defined between the two second connecting portions 461.
- the signal line 48 is signally connected to the display screen 41 from a hollow structure of the base 46 extending through the second connection hole 465 and the first connection hole 445 to a hollow structure of the top portion 44.
- the bracket 43 further includes a blind rubber sleeve 431.
- the occlusion rubber sleeve 431 is disposed between the two first connecting portions 441 for shielding the signal line 48 exposed between the two first connecting portions 441.
- the two second connecting portions 461 are located between the two first connecting portions 441.
- the two second connecting portions 461 are spaced apart from each other.
- the signal line 48 extends from the base 46 through between the two second connecting portions 461 and into the top portion 44.
- the occlusion rubber sleeve 431 is disposed between the two second connecting portions 461 for shielding the signal line 48 exposed between the two second connecting portions 461.
- each of the damping shafts 45 can be integrated with the first connecting portion 441 or the second connecting portion 461.
- the remote control device provided by the technical solution provided by the technical solution penetrates the signal line inside the bracket, which can avoid the influence of the operation of the operator when the signal line is exposed, and can make the remote control device compact. And beautiful.
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- Microelectronics & Electronic Packaging (AREA)
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Abstract
一种遥控装置(10),包括遥控器本体(17)、显示屏(11)及一用于连接遥控器本体(17)与显示屏(11)的可转动支架(13),显示屏(11)通过可转动支架(13)可转动地连接于遥控器本体(17),显示屏(11)与遥控器本体(17)之间通过穿设在可转动支架(13)内部的信号线(18)电连接。
Description
本发明涉及一种遥控装置。
现有无人机遥控装置,是通过将手机或平板电脑固定在遥控器支架上,通过信号线连接遥控器和手机或平板电脑,实现对无人机的控制和图像传输。然而,现有遥控装置,连接遥控器和手机或平板电脑的信号线外露且无法收拢,影响操作遥控器,同时也影响美观。
有鉴于此,有必要提供一种克服上述问题的遥控装置。
一种遥控装置,包括遥控器本体、显示屏及一用于连接所述遥控器本体与所述显示屏的可转动支架,所述显示屏通过可转动支架可转动地连接于所述遥控器本体,所述显示屏与所述遥控器本体之间通过穿设在所述支架内部的信号线电连接。
与现有技术相比,本技术方案提供的本技术方案提供的遥控装置将信号线穿设在所述支架内部,可避免信号线外露时对操作者操作的影响,且可使得遥控装置结构紧凑且美观。
图1是本技术方案第一实施方式提供的遥控装置的立体示意图。
图2是本技术方案第一实施方式提供的遥控装置的显示屏处于折叠状态的立体示意图。
图3是图2的遥控装置的显示屏处于打开状态的立体示意图。
图4是本技术方案第一实施方式中所述支架的结构及所述信号线的过线方式的立体示意图。
图5是本技术方案第二实施方式中所述支架的结构及所述信号线的过线方式的立体示意图。
图6是本技术方案第三实施方式中所述支架的结构及所述信号线的过线方式的立体示意图。
图7是本技术方案第四实施方式中所述支架的结构及所述信号线的过线方式的立体示意图。
| 遥控装置 | 10、20、30、40 |
| 显示屏 | 11、21、31、41 |
| 支架 | 13、43 |
| 遥控器本体 | 17 |
| 信号线 | 18、28、38、48 |
| 顶部 | 14、24、34、44 |
| 基部 | 16、26 |
| 阻尼转轴 | 15、25、45 |
| 第一连接部 | 141、341、441 |
| 第一轴接孔 | 143、243 |
| 连接孔 | 145、245、345、445、465 |
| 第二连接部 | 161、261、361、461 |
| 第二轴接孔 | 163、263、363 |
| 豁口 | 165、365 |
| 轴向孔 | 251 |
| 径向孔 | 253 |
| 信号线分支 | 381 |
| 遮线胶套 | 431 |
如下具体实施方式将结合上述附图进一步说明本发明。
下面将结合本技术方案实施方式中的附图,对本技术方案实施方式中的技术方案进行清楚、完整地描述,显然,所描述的实施方式仅仅是本技术方案一部分实施方式,而不是全部的实施方式。基于本技术方案中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施方式,都属于本技术方案保护的范围。
需要说明的是,当一个组件被认为是“连接”另一个组件,它可以是直接连接到另一个组件或者可能同时存在居中组件。当一个组件被认为是“设置于”另一个组件,它可以是直接设置在另一个组件上或者可能同时存在居中组件。
除非另有定义,本文所使用的所有的技术和科学术语与属于本技术方案的技术领域的技术人员通常理解的含义相同。本文中在本技术方案的说明书中所使用的术语只是为了描述具体的实施方式的目的,不是旨在于限制本技术方案。本文所使用的术语“及/或”包括一个或多个相关的所列项目的任意的和所有的组合。
下面结合附图,对本技术方案的一些实施方式作详细说明。在不冲突的情况下,下述的实施方式及实施方式中的特征可以相互组合。
请参阅图1,本技术方案第一实施方式提供的遥控装置10, 用于遥控一无人机。所述无人机可以为无人飞行器、无人车或无人船等电子设备。所述遥控装置10包括显示屏11,可转动支架13及遥控器本体17。
请一并参阅图2-4,所述显示屏11通过所述可转动支架13可转动地设置于所述遥控器本体17上。所述显示屏11能够朝向所述遥控器本体17折叠收纳。所述显示屏11与所述遥控器本体17之间通过穿设在所述支架13内部的信号线18电连接。所述显示屏11转动的角度范围能够达到180度,并能够在转动的角度范围内的任一角度稳定的放置。所述显示屏的显示亮度能够达到900流明,以保证在强光下仍可清晰显示画面。
可以理解,其他实施方式中,所述显示屏11还设置有遮光板。所述遮光板自所述显示屏11的显示侧的顶部向外延伸设置。所述遮光板可进一步保证在强光下显示画面的可视效果。
所述支架13为中空结构,所述信号线18埋设在所述支架13内。
本实施方式中,所述支架13包括转动连接的顶部14及基部16。所述信号线18在所述支架13内自所述基部16延伸至所述顶部14。所述支架13还包括阻尼转轴15。所述基部16与所述顶部14之间通过所述阻尼转轴15转动连接。所述信号线18在所述支架13内自所述基部16延伸,经过所述阻尼转轴15延伸至所述顶部14。具体到图示实施方式中,所述信号线18在所述支架13内从所述基部16延伸至所述阻尼转轴15的一端,沿所述阻尼转轴15延伸至所述阻尼转轴15的另一端并绕过所述阻尼转轴15,进而延伸至所述顶部14内。
所述顶部14与所述显示屏11连接。所述顶部14与所述显示屏11之间的连接为固定连接。所述顶部14与所述显示屏11之间的固定连接可通过锁紧机构或卡扣机构实现,或者使所述顶部14与所述显示屏11一体成型。本实施方式中,所述顶部14与所述显示屏11通过卡扣结构固定连接。所述顶部14为中空结构。所述顶部14包括第一连接部141。所述第一连接部141位于所述顶部14远离所述显示屏11的一端。所述第一连接部141开设有与所述阻尼转轴15配合的轴接孔。本实施方式中,所述第一连接部141为一个。所述第一连接部141开设有与所述阻尼转轴15配合的第一轴接孔143。所述顶部14在靠近所述第一连接部141的位置开设有与所述顶部14的中空结构连通的连接孔145。
可以理解,其他实施方式中,所述顶部14与所述显示屏11之间的连接可为阻尼转动连接。
所述基部16与所述遥控器本体17连接。本实施方式中,所述基部16与所述遥控器本体17之间的连接为固定连接。所述基部16与所述遥控器本体17之间的固定连接可通过锁紧机构或卡扣机构实现,或者使所述基部16与所述遥控器本体17一体成型的方式实现。本实施方式中,所述基部16与所述遥控器本体17通过卡扣机构实现固定连接。所述基部16为中空结构。所述基部16包括第二连接部161。所述第二连接部161位于所述基部16远离所述遥控器本体17的一端。所述第二连接部161与所述第一连接部141通过所述阻尼转轴15转动连接,以使所述基部16与所述顶部14转动连接。所述第二连接部161开设有与所述阻尼转轴15配合的轴接孔。所述第一连接部141及所述第二连接部161通过轴接孔与所述阻尼转轴15相互配合实现转动连接。本实施方式中,所述第二连接部161为两个且两个所述第二连接部161间隔设置。每个所述第二连接部161分别开设与所述第一轴接孔143对应的第二轴接孔163。所述阻尼转轴15穿设在所述第一轴接孔143及第二轴接孔163中,且所述阻尼转轴15的两端收容在所述第二轴接孔163中。其中一个所述第二连接部161的第二轴接孔163与所述基部16的中空结构连通。另一个所述第二连接部161开设有与其上的第二轴接孔163连通的豁口165。所述豁口165与所述连接孔145连通。
所述信号线18自所述基部16的中空结构延伸至所述顶部14的中空结构中,以使所述遥控器本体17与所述显示屏11电性连接。
本实施方式中,所述信号线18自所述基部16的中空结构延伸至与所述基部16的中空结构连通的所述第二连接部161的第二轴接孔163中,并沿所述阻尼转轴15的外壁延伸至另一第二连接部161的第二轴接孔163中,然后沿所述阻尼转轴15的周向绕至所述豁口165,穿过与所述豁口165连通的所述连接孔145,进而延伸至所述顶部14的中空结构中与所述显示屏11信号连接。
可以理解,其他实施方式中,所述基部16与所述遥控器本体17之间的连接可为阻尼转动连接。
本实施方式中,所述遥控装置10还包括天线19。所述天线19设置在所述遥控器本体17上,并能够相对所述遥控器本体17转动以更好的接收信号。
请参阅图5,本发明第二实施方式中提供的遥控装置20与本发明第一实施方式中提供的遥控装置10大致相同,其不同之处在于,所述阻尼转轴25为中空结构,所述信号线28在所述支架23内从所述基部26延伸至所述阻尼转轴25的一端并伸入所述阻尼转轴25内沿所述阻尼转轴25轴向延伸,自所述阻尼转轴25的侧壁穿出并延伸至所述顶部24。
具体到图示实施方式中,所述阻尼转轴25开设有轴向孔251及与所述轴向孔251连通的径向孔253。所述轴向孔251连通至与所述基部26的中空结构连通的第二轴接孔263。所述顶部24开设有连通所述顶部24的中空结构与所述第一轴接孔243的连接孔245。所述信号线28自所述基部26的中空结构延伸至与所述基部26的中空结构连通的所述第二连接部261的第二轴接孔263中,伸入所述轴向孔251中,并经所述径向孔253及所述连接孔245延伸至所述顶部24的中空结构中与所述显示屏21电连接。
请参阅图6,本发明第三实施方式中提供的遥控装置30与本发明第一实施方式中提供的遥控装置10大致相同,其不同之处在于,所述信号线38在所述基部36内分成两个信号线分支381,所述信号线分支381分别延伸至所述阻尼转轴35的两端并绕过所述阻尼转轴35延伸至所述顶部34。
具体到图示实施方式中,另一所述第二连接部361的第二轴接孔363也与所述基部36的中空结构连通,且两个所述第二连接部361均开设有与各自的第二轴接孔363连通的豁口365;所述顶部34开设有与所述顶部34的中空结构连通的连接孔345,所述连接孔345分别与所述豁口365连通。
所述两个信号线分支381分别延伸至所述两个第二轴接孔363中,沿所述阻尼转轴35的周向绕至对应的所述豁口365,并穿过与所述豁口365连通的所述连接孔345,进而延伸至所述顶部34的中空结构中与所述显示屏31信号连接。
请参阅图7,本技术方案第四实施方式提供的遥控装置40与本发明第一实施方式中提供的遥控装置10大致相同,其不同之处在于,所述第一连接部441为两个且两个所述第一连接部441间隔设置,所述第二连接部461为两个且两个所述第二连接部461间隔设置,每个所述第一连接部441与一个所述第二连接部461对应,所述阻尼转轴45为两个,每个所述第一连接部441与对应的第二连接部461通过一个所述阻尼转轴45转动连接,所述信号线48自所述基部46延伸并从两个所述第一连接部441之间延伸至所述顶部44。
本实施方式中,两个所述第一连接部441位于两个所述第二连接部461之间。两个所述第一连接部441分别与两个所述第二连接部461轴接。两个所述第一连接部441之间开设有与所述顶部44的中空结构连通的第一连接孔445。两个所述第二连接部461之间开设有与所述第一连接孔445对应的第二连接孔465。所述信号线48自所述基部46的中空结构经所述第二连接孔465及所述第一连接孔445延伸至所述顶部44的中空结构中与所述显示屏41信号连接。
本实施方式中,所述支架43还包括遮线胶套431。所述遮线胶套431设置在两个所述第一连接部441之间,用于遮蔽自两个所述第一连接部441之间露出的所述信号线48。
可以理解,其他实施方式中,所述两个第二连接部461位于所述两个第一连接部441之间。所述两个第二连接部461彼此间隔。所述信号线48自所述基部46延伸从所述两个第二连接部461之间穿过并延伸至所述顶部44中。所述遮线胶套431设置在所述两个第二连接部461之间,用于遮蔽自两个所述第二连接部461之间露出的所述信号线48。
可以理解,其他实施方式中,每个所述阻尼转轴45可与所述第一连接部441或所述第二连接部461为一体结构。
与现有技术相比,本技术方案提供的本技术方案提供的遥控装置将信号线穿设在所述支架内部,可避免信号线外露时对操作者操作的影响,且可使得遥控装置结构紧凑且美观。
可以理解的是,对于本领域的普通技术人员来说,可以根据本发明的技术构思做出其它各种相应的改变与变形,而所有这些改变与变形都应属于本发明权利要求的保护范围。
Claims (18)
- 一种遥控装置,包括遥控器本体、显示屏及一用于连接所述遥控器本体与所述显示屏的可转动支架,所述显示屏通过可转动支架可转动地连接于所述遥控器本体,所述显示屏与所述遥控器本体之间通过穿设在所述支架内部的信号线电连接。
- 如权利要求1所述的遥控装置,其特征在于,所述显示屏设置有遮光板,所述遮光板自所述显示屏显示侧的顶部向外延伸设置。
- 如权利要求1所述的遥控装置,其特征在于,所述显示屏能够朝向所述遥控器本体折叠收纳。
- 如权利要求1所述的遥控装置,其特征在于,所述显示屏转动的角度范围能够达到180度,并能够在转动的角度范围内的任一角度稳定的放置。
- 如权利要求1所述的遥控装置,其特征在于,所述支架为中空结构,所述信号线埋设在所述支架内。
- 如权利要求1所述的遥控装置,其特征在于,所述支架包括与所述遥控器本体连接的基部及与所述显示屏连接的顶部,所述基部与所述顶部之间转动连接,所述信号线在所述支架内自所述基部延伸至所述顶部并与所述显示屏电连接。
- 如权利要求6所述的遥控装置,其特征在于,所述基部与所述遥控器本体一体成型及/或所述顶部与所述显示屏一体成型。
- 如权利要求6所述的遥控装置,其特征在于,所述支架还包括阻尼转轴,所述基部与所述顶部之间通过所述阻尼转轴转动连接。
- 如权利要求8所述的遥控装置,其特征在于,所述信号线自所述基部延伸,经过所述阻尼转轴延伸至所述顶部并与所述显示屏电连接。
- 如权利要求9所述的遥控装置,其特征在于,所述信号线在所述支架内从所述基部延伸至所述阻尼转轴的一端,沿所述阻尼转轴延伸至所述阻尼转轴的另一端并绕过所述阻尼转轴延伸至所述顶部与所述显示屏电连接。
- 如权利要求9所述的遥控装置,其特征在于,所述信号线在所述基部内分成两个信号线分支,所述信号线分支分别延伸至所述阻尼转轴的两端并绕过所述阻尼转轴延伸至所述顶部。
- 如权利要求9所述的遥控装置,其特征在于,所述阻尼转轴为中空结构,所述信号线在所述支架内从所述基部延伸至所述阻尼转轴的一端并伸入所述阻尼转轴内,沿所述阻尼转轴轴向延伸,自所述阻尼转轴的侧壁穿出并延伸至所述顶部与所述显示屏电连接。
- 如权利要求8所述的遥控装置,其特征在于,所述顶部包括第一连接部,所述基部包括第二连接部,所述第一连接部与所述第二连接部通过所述阻尼转轴转动连接,以使所述顶部与基部转动连接。
- 如权利要求13所述的遥控装置,其特征在于,所述第一连接部及第二连接部均设有轴接孔,所述阻尼转轴穿设在所述轴接孔中。
- 如权利要求14所述的遥控装置,其特征在于,所述第一连接部为一个,所述第二连接部为两个且两个所述第二连接部间隔设置,所述第一连接部位于两个所述第二连接部之间,所述阻尼转轴的两端收容在所述第二连接部的轴接孔中。
- 如权利要求14所述的遥控装置,其特征在于,所述第一连接部,所述第二连接部及所述阻尼转轴均为两个,每个所述第一连接部均与一个所述第二连接部对应,所述第一连接部与对应的第二连接部通过一个所述阻尼转轴转动连接。
- 如权利要求16所述的遥控装置,其特征在于,所述两个第一连接部位于所述两个第二连接部之间,所述两个第一连接部彼此间隔,所述信号线自所述基部延伸并从所述两个第一连接部之间延伸至所述顶部。
- 如权利要求17所述的遥控装置,其特征在于,所述支架还包括遮线胶套,所述遮线胶套设置在两个所述第一连接部之间并遮挡所述两个第一连接部之间的间隔。
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| CN111706706A (zh) * | 2020-06-18 | 2020-09-25 | 中国石化销售有限公司华南分公司 | 一种抗干扰数字式电动执行器 |
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| CN112684847A (zh) * | 2020-12-17 | 2021-04-20 | 湖南三易精工科技有限公司 | 一种用于无人机的具有防护功能的操作手柄 |
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