WO2018006632A1 - 具有平移操控单元的计算机扩充座 - Google Patents

具有平移操控单元的计算机扩充座 Download PDF

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Publication number
WO2018006632A1
WO2018006632A1 PCT/CN2017/080977 CN2017080977W WO2018006632A1 WO 2018006632 A1 WO2018006632 A1 WO 2018006632A1 CN 2017080977 W CN2017080977 W CN 2017080977W WO 2018006632 A1 WO2018006632 A1 WO 2018006632A1
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Prior art keywords
push button
computer
control unit
docking station
disposed
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PCT/CN2017/080977
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English (en)
French (fr)
Inventor
梁徽湖
Original Assignee
梁徽湖
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Publication date
Priority claimed from CN201611105973.7A external-priority patent/CN107577270A/zh
Application filed by 梁徽湖 filed Critical 梁徽湖
Priority to CN201780000848.6A priority Critical patent/CN107896507A/zh
Publication of WO2018006632A1 publication Critical patent/WO2018006632A1/zh

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    • 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

Definitions

  • the invention relates to a computer electronic device device, in particular to a computer docking station with a panning operation unit.
  • a primary object of the present invention is to provide a computer docking station having a panning control unit having a plurality of operating interfaces and having a lighter overall size for conveniently setting up a computer and an operating program.
  • the present invention provides a computer docking station having a panning control unit, comprising a base, a communication unit, a membrane circuit switch, and a translational manipulation unit, the computer being detachably disposed on the base; a communication unit is disposed on the base, the communication unit can receive a signal from the computer or send a signal to the computer; the thin film circuit switch is disposed on the base; the translation control unit is disposed on the base; the translation control unit has A push button that reciprocates along a plane, the push button causes the thin film circuit to actuate and send a signal to the computer via the communication unit to operate a program running in the computer.
  • FIG. 1 is a perspective assembled view of a first preferred embodiment of the present invention, mainly showing a form in use;
  • Figure 2 is similar to Figure 1, in which the computer is separated from the docking station;
  • FIG. 3 is a perspective assembled view of a first preferred embodiment of the present invention, mainly showing a form at the time of folding;
  • Figure 4 is an exploded perspective view showing a first preferred embodiment of the present invention
  • Figure 5 is a front elevational view of a first preferred embodiment of the present invention.
  • Figure 6 is a perspective assembled view of a translational manipulation unit according to a first preferred embodiment of the present invention.
  • Figure 7 is an exploded perspective view of a translating control unit according to a first preferred embodiment of the present invention.
  • Figure 8 is a cross-sectional view showing a translating control unit according to a first preferred embodiment of the present invention.
  • Figure 9 is a perspective assembled view of a translating control unit according to a second preferred embodiment of the present invention.
  • Figure 10 is an exploded perspective view of a translating control unit according to a second preferred embodiment of the present invention.
  • Figure 11 is a cross-sectional view showing a translating control unit according to a second preferred embodiment of the present invention.
  • Figure 12 is a perspective assembled view of a translating control unit according to a third preferred embodiment of the present invention.
  • Figure 13 is an exploded perspective view of a translating control unit according to a third preferred embodiment of the present invention.
  • Figure 14 is a perspective assembled view of a translating control unit according to a fourth preferred embodiment of the present invention.
  • Figure 15 is an exploded perspective view of a translating control unit according to a fourth preferred embodiment of the present invention.
  • Figure 16 is a perspective assembled view of a translating control unit according to a fifth preferred embodiment of the present invention.
  • Figure 17 is an exploded perspective view of a translating control unit according to a fifth preferred embodiment of the present invention.
  • Figure 18 is a cross-sectional view showing a translating control unit according to a fifth preferred embodiment of the present invention.
  • Figure 19 is an exploded perspective view of a translating control unit according to a sixth preferred embodiment of the present invention.
  • Figure 20 is an exploded perspective view of a translating control unit according to a seventh preferred embodiment of the present invention.
  • Figure 21 is a perspective assembled view of a translating control unit according to an eighth preferred embodiment of the present invention.
  • Figure 22 is an exploded perspective view of a translating control unit according to an eighth preferred embodiment of the present invention.
  • Figure 23 is another embodiment of the eighth preferred embodiment of the present invention.
  • Figure 24 is a perspective view showing a ninth preferred embodiment of the present invention.
  • Figure 25 is a perspective view of a tenth preferred embodiment of the present invention.
  • Figure 26 is another perspective exploded view of the first preferred embodiment of the present invention.
  • the computer docking station 10 can include a base 20 and a cover 30 pivoted on a side of the base 20.
  • the inner side of the cover 30 can be detachably disposed as shown in FIGS.
  • the computer 40, the flip cover 30 can be tilted and fixed relative to the base 20 to make the computer 40 at an angle suitable for the user to view, or can be covered on the base 20 as shown in FIG. 3, thereby facilitating direct carrying by the user.
  • the computer 40 can be a game machine or a computer or a laptop computer, such as a smart phone of an operating system, an operating system, a personal mobile assistant, or the like.
  • the computer of the preferred embodiment takes a smart phone as an example.
  • a sheet body 50 is disposed on the outer side of the lid 30. In addition to protecting the docking station 10, the sheet body 50 can also be used for adding decoration and aesthetics.
  • the base 20 is a thinned casing in which a top plate 22 and a bottom plate 24 are opposed to each other.
  • the base 20 is internally provided with a control circuit 26, a battery 27, and a communication unit 28.
  • the control circuit 26 can be a thin film circuit switch or other type of thin switch, such as a membrane switch (Membarne switch), a flexible circuit board or a flexible circuit board commonly used in 3C products or electronic devices, as shown in FIG.
  • the control circuit 26 has an upper line 32 and a lower line 34.
  • the upper line 32 can be provided as a membrane switch
  • the lower line 34 can also be provided as a membrane switch, a PCB board, or a Laser Direct Structuring (LDS).
  • LDS Laser Direct Structuring
  • the top plate 22 has a plurality of positioning holes 29, and the base 20 is further provided with a plurality of circular buttons 80 and a cross button 82.
  • the two translational manipulation units 70 can provide user displacement through the positioning holes 29, and the circular buttons 70 are pushed.
  • the cross button 82 or the panning control unit 70 is pressed against the control circuit 26 to generate different electrical signals.
  • the communication unit 28 can further transmit the electrical signal of the control circuit 26 to the mobile phone 40, thereby operating the program operated by the mobile phone 40. For example, in the video game, the communication unit 28 can also receive the wireless signal sent by the mobile phone 40, and then the control circuit 26 can perform feedback and the like according to the wireless signal.
  • the battery 27 is used to supply power to the communication unit 28 and the control circuit 26.
  • the base 20 is further provided with a call hole 21. When the cover 30 is covered by the base 20, the docking station 10 provided by the present invention can also directly listen to the incoming voice message through the call hole 21.
  • the panning control unit provided by the present invention mainly allows the user to push the finger back and forth along the plane in the circular defined area to generate an operation signal.
  • the present invention proposes that the plurality of panning manipulation units 70 have a thin and light structure.
  • the panning operation unit 70 of the first preferred embodiment has a push button 71.
  • the push button 71 has a ring circumference 72, and the ring circumference 72 of the push button 71 is sleeved.
  • the spring 73 and the center of the bottom surface of the push button 71 are provided with a contact member 74, and the contact member 74 There is an elastic body 75 between the button 71 and the push button 71.
  • the spring 73 is received by the top plate 22 and the bottom plate 24 of the bottom plate 24.
  • the push button 71 can be pushed by the user.
  • the through-piece 74 directly presses against the control circuit 26, and the user presses the push button 71 to apply pressure to the contact member 74 and the elastic body 75.
  • the elastic body 75 can buffer and reduce the force between the contact member 74 and the control circuit 26. ,Extended service life. Since the spring 73 is looped around the push button 71, when the push button 71 is pushed in a specific direction along the plane, the spring 73 directly generates a returning elastic force to pull the push button 71 back in the opposite direction of the specific direction, and the push button 71 is pushed.
  • the reciprocating movement of the spring 73 is performed in conjunction with the return spring force of the spring 73, thereby generating a movement signal for controlling the video game on the mobile phone 40.
  • the panning operation unit 200 of the second preferred embodiment of the present invention is mainly applicable to the thin film circuit switch 201 .
  • the push button 202 of the panning operation unit 200 is disposed on a support plate 204 through a plurality of latching portions 203 .
  • the outer periphery of the support plate 204 is provided with an annular spring 205.
  • the center of the bottom surface of the push button 202 is also provided with a contact member 206 and an elastic body 207 between the contact member 206 and the push button 202.
  • the support plate 204 and the spring 205 are sandwiched.
  • the spring 205 is disposed between the two plates 208.
  • the spring 205 is limited to be between the two plates 208.
  • the push button 202 After the push button 202 is pushed along the plane, the push button 202 can also reciprocate by the return elastic force generated by the spring 205.
  • the contact member 206 After the elastomer 207 is displaced, the force can be buffered at the membrane circuit switch 201, and the signal can be moved and generated.
  • the panning control unit 300 of the third preferred embodiment of the present invention also has a push button 301 , which is characterized in that a push button 302 is directly coupled under the push button 301 , and a bottom surface of the link member 302 has a contact portion.
  • the 303 can be pressed against the control circuit, and an annular spring 305 is disposed around the periphery of the linking member 302. The outer diameter of the spring 305 is smaller than the outer diameter of the push button 301.
  • the translation control unit 400 of the fourth preferred embodiment of the present invention is characterized in that the bottom surface of the push button 401 directly has a coupling post 402, and the outer periphery of the coupling post 402 has a groove 403, and the push button 401 utilizes a binding post.
  • the spring is inserted into the groove 403 to form a limit push button 401 and provides a reciprocating elastic force.
  • the bottom surface of the binding post 402 is provided with a contact portion 405 that can be pressed against the control circuit.
  • the translational manipulation unit 500 of the fifth preferred embodiment of the present invention has a socket 501.
  • the push button 502 is disposed on the top surface of the socket 501, so that the push button 502 is limited to the socket 501.
  • the binding post 504 of the bottom surface of the push button 502 is also embedded in the central portion of the coil spring 505 under the receiving base 501.
  • the bottom of the binding post 504 can touch the sensing area of the thin film circuit switch. 507, reaching the detection movement position and generating The purpose of the mobile signal.
  • the panning operation unit 600 of the sixth preferred embodiment of the present invention is similar to the fifth preferred embodiment.
  • the main feature is that the bottom surface of the push button 601 is provided with a support plate 602, and the outer periphery of the support plate 602 is provided with a ring spring. 603.
  • a toothed positioning member 701 is added to the bottom surface of the push button 700.
  • the positioning member 701 can be coupled with the toothed peripheral wall of the positioning hole 702, so that the moving process of the push button 700 is more sensitive and the movement can be further improved. To be accurate.
  • the panning operation unit 800 of the eighth preferred embodiment of the present invention includes a push button 801 and a flat reset member 802.
  • the reset member 802 has a central joint portion 803 and an outer frame 804, and a central joint portion.
  • a plurality of curved elastic portions 805 are disposed between the 803 and the outer frame 804.
  • the coupling post 806 of the push button 801 is disposed at the central joint portion 803, the push button 801 can generate a resettable force by the elastic portions 805.
  • the elastic portion 805 can also be modified by a tension spring or a compression spring to achieve the same effect.
  • the present invention can also fix a computer having different sizes in the cover setting adjustment component.
  • the adjustment component mainly uses a cover 901 having a body 902 having two mutually spaced guiding portions 903. And a support portion 904 that is slidably disposed between the guiding portions 903.
  • a positioning member 905 is pivotally disposed at a top end of the supporting portion 904.
  • the computer can be directly placed on the cover 901, and then the support portion 904 is slid down to adjust the positioning member 905 to abut the computer, and then the positioning member 905 is fixed to the computer.
  • the embodiment can also be in the body 902 and the support portion 904.
  • a tension spring (not shown) is disposed between the positioning members 905 to abut the computer more firmly.
  • the present invention can also be directly integrated into the keyboard, that is, the panning manipulation unit 910 is disposed between the keys 912 of the keyboard or the peripheral area of the button 912, which can also achieve the technical effect of the invention.
  • the docking station provided by the invention can conveniently directly set up various computers of different sizes or forms of smart phones, so that the user can execute various programs or video games with the best control manner anytime and anywhere, and the above various panning operations
  • the unit uses a thinned annular spring, a coil spring, or a flat-shaped reset member to generate a restoring force, so that the overall height dimension is extremely low, which conforms to the current mobile phone design trend, and is convenient to set and match the expansion seat structure, with the above
  • Each push button has operation It is extremely sensitive, more effective and realistic in controlling video games, and adding technical features such as entertainment and presence.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Set Structure (AREA)
  • Position Input By Displaying (AREA)

Abstract

一种具有平移操控单元的计算机扩充座,包含有一可分离地设置计算机的基座,一通信单元设于基座,通信单元可自计算机接收信号或是发送信号至计算机,一薄膜电路开关设于该基座,一平移操控单元设于基座,平移操控单元具有一沿平面往复移动的推钮,推钮可使薄膜电路开关动作并经由通信单元发送信号至计算机,进而操作计算机内所运行的程序。

Description

具有平移操控单元的计算机扩充座 技术领域
本发明有关于一种计算机用电子配件装置,特别是指一种具有平移操控单元的计算机扩充座。
背景技术
随着计算机的日益普及,例如移动电话、平板计算机,或是手持式个人助理(PDA)等电子装置均已具备多样化且丰富的应用方式,不再只是单纯的收发电话或程序计算等单一功能。特别是随着移动数据网络与物联网技术的蓬勃发展,影音功能也变成用户爱用计算机的重要理由。
再者,越来越多的计算机直接通过触控屏幕操作各种程序,或是通过因特网执行各种电玩游戏,也是另一个非常重要与受欢迎的应用领域,特别是电玩游戏的高娱乐性更深受人们喜爱。
但是,随着计算机的设计趋势与尺寸越来越轻薄,用户却仍都只能通过触控屏幕操作游戏,严重的限制了各种程序或电玩游戏的操控性。
发明内容
本发明的主要目的在于提供一种具有平移操控单元的计算机扩充座,其具有多种操作接口,而且整体尺寸更为轻薄,可方便地直接设置计算机与操作程序。
为了达成上述目的,本发明所提供具有平移操控单元的计算机扩充座,包含有一基座、一通信单元、一薄膜电路开关,以及一平移操控单元,该计算机可分离地设于该基座;该通信单元设于该基座,该通信单元可自该计算机接收信号或是发送信号至该计算机;该薄膜电路开关设于该基座;该平移操控单元设于该基座;该平移操控单元具有一沿平面往复移动的推钮,该推钮可使该薄膜电路开关动作并经由该通信单元发送信号至该计算机,进而操作该计算机内所运行的程序。
附图说明
图1为本发明第1优选实施例的立体组合图,主要显示使用时的形式;
图2类同于图1,其中计算机分离于扩充座;
图3为本发明第1优选实施例的立体组合图,主要显示收合时的形式;
图4为本发明第1优选实施例的立体分解图;
图5为本发明第1优选实施例的正视图;
图6为本发明第1优选实施例的平移式操控单元的立体组合图;
图7为本发明第1优选实施例的平移式操控单元的立体分解图;
图8为本发明第1优选实施例的平移式操控单元的剖视图;
图9为本发明第2优选实施例的平移式操控单元的立体组合图;
图10为本发明第2优选实施例的平移式操控单元的立体分解图;
图11为本发明第2优选实施例的平移式操控单元的剖视图;
图12为本发明第3优选实施例的平移式操控单元的立体组合图;
图13为本发明第3优选实施例的平移式操控单元的立体分解图;
图14为本发明第4优选实施例的平移式操控单元的立体组合图;
图15为本发明第4优选实施例的平移式操控单元的立体分解图;
图16为本发明第5优选实施例的平移式操控单元的立体组合图;
图17为本发明第5优选实施例的平移式操控单元的立体分解图;
图18为本发明第5优选实施例的平移式操控单元的剖视图;
图19为本发明第6优选实施例的平移式操控单元的立体分解图;
图20为本发明第7优选实施例的平移式操控单元的立体分解图;
图21为本发明第8优选实施例的平移式操控单元的立体组合图;
图22为本发明第8优选实施例的平移式操控单元的立体分解图;
图23为本发明第8优选实施例的另一实施形式;
图24为本发明第9优选实施例的立体图;
图25为本发明第10优选实施例的立体图;
图26为本发明第1优选实施例的另一立体分解图。
具体实施方式
请参阅图1至4所示,本发明第1优选实施例所提供具有平移操控单 元的计算机扩充座10,可包含一基座20以及一枢设于基座20侧边的掀盖30,掀盖30的内侧面可如图1、2所示地以可分离的方式设置一计算机40,掀盖30可相对于基座20翻起倾斜地固定在让计算机40呈适合用户观看的角度,也可如图3所示地盖合于基座20,进而方便用户直接携带。计算机40可以是任何厂牌、操作系统的智能型手机、个人移动助理等以触控操作为主的游戏机或是计算机、手提电脑等,本优选实施例的计算机以智能型手机为例。掀盖30外侧面设置一片体50,片体50除了可以保护扩充座10,也可以做为增加装饰及美观的用途。
如图4及5所示,基座20为一顶板22与一底板24相互对合的薄形化壳体,基座20内部设有控制电路26、电池27,以及通信单元28。控制电路26可以是薄膜电路开关或其他类型的薄形开关,例如3C产品或电子设备常使用的薄膜按键开关(Membarne switch)、软性电路板或柔性电路板,也可如图26所示,控制电路26具有一上线路32与一下线路34,上线路32可以设置为薄膜开关,下线路34则可以同样设置为薄膜开关、PCB板,或者是利用激光直接成型方式(Laser Direct Structuring,LDS)在底板24布局出电路,本案的通信单元或是其他电路组件也可直接设于下线路34。
顶板22具有若干定位孔29,基座20内部另设有若干圆形按键80、十字按键82,与两个平移操控单元70可经由各定位孔29提供用户推移,受推移的圆形按键70、十字按键82或平移操控单元70再压抵控制电路26而产生出各自不同的电性信号,通信单元28可再将控制电路26的电性信号传送至手机40,进而操作手机40运作的程序,例如电玩游戏,通信单元28也可接收手机40发出的无线信号,再由控制电路26依无线信号做出回馈等功能,电池27用以供应电能至通信单元28与控制电路26。基座20另设有通话孔21,当掀盖30盖合于基座20,本发明所提供的扩充座10也能够通过通话孔21直接收听来电语音消息。
本发明所提供的平移操控单元,主要是可让用户以手指沿着平面于圆形限定区域内来回推动而产生出操作信号,本发明提出多种平移操控单元70均具有轻薄化结构。如图4、6至8所示,第1优选实施例的平移操控单元70具有一推钮71,推钮71具有一环周垣72,推钮71的环周垣72套设一环圈状弹簧73,推钮71的底面中央设有一触通件74,触通件74 与推钮71之间具有一弹性体75,当平移操控单元70设于基座20,弹簧73会受顶板22与底板24的凸块23上下限位住,推钮71可供用户推动,触通件74直接抵压着控制电路26,用户按住推钮71会施压于触通件74与弹性体75,弹性体75可缓冲且降低触通件74与控制电路26之间的作用力,延长使用寿命。由于弹簧73环套着推钮71,当推钮71沿着平面被朝特定方向推动时,弹簧73会直接产生出回复弹力将推钮71朝前述特定方向的相反方向拉回,推钮71就会配合弹簧73的回复弹力而往复移动,进而于手机40产生出可控制电玩游戏的移动信号。
如图9至11所示,本发明第2优选实施例的平移操控单元200主要可应用于薄膜电路开关201,平移操控单元200的推钮202通过若干卡接部203设于一支撑板204,支撑板204的外围设有环状弹簧205,推钮202的底面中央也设有触通件206与介于触通件206与推钮202之间的弹性体207,支撑板204与弹簧205夹设于两个相互间隔的板体208之间,弹簧205限位于两个板体208之间,推钮202沿平面受推动之后同样可通过弹簧205产生的回复弹力而往复移动,触通件206与弹性体207受推移后可于薄膜电路开关201缓冲力,并且可移动与产生出信号。
如图12至13所示,本发明第3优选实施例的平移操控单元300同样具有推钮301,特点在于推钮301下方直接结合一连动件302,连动件302底面具有一触通部303可抵压于控制电路,而连动件302外围套设一环状弹簧305,弹簧305的外径尺寸小于推钮301的外径尺寸。
如图14至15所示,本发明第4优选实施例的平移操控单元400特点在于,推钮401底面直接具有一结合柱402,结合柱402外周具有一沟槽403,推钮401利用结合柱402塞入一圈状弹簧404的中央部位,弹簧404嵌发于沟槽403,形成限位推钮401且提供往复弹力的作用。结合柱402的底面设有触通部405可压抵控制电路。
如图16至18所示,本发明第5优选实施例的平移操控单元500具有一承接座501,推钮502设于承接座501顶面的凹窝503,使推钮502限位于承接座501,推钮502底面的结合柱504也嵌设位于承接座501下方的圈状弹簧505中央部位,推钮502相对于承接座501平移的时候,结合柱504底部可触通薄膜电路开关的感应区507,达到检测移动位置且产生 出移动信号的目的。
如图19所示,本发明第6优选实施例的平移操控单元600概同于第5优选实施例,主要特点在于推钮601底面设有支撑板602,支撑板602的外周设有环状弹簧603。再如图20所示,推钮700底面增设一具齿形的定位件701,定位件701可以与定位孔702的齿形周壁相互结合,让推钮700的移动过程更有手感,移动能更为准确。
另如图21及22所示,本发明第8优选实施例的平移操控单元800包括推钮801与一平板状复位件802,复位件802具有一中央结合部803与外框804,中央结合部803与外框804之间设有多个呈弯曲状的弹性部805,当推钮801的结合柱806设于中央结合部803,推钮801即可利用各弹性部805产生出可复位力。另如图23所示,上述弹性部805也可改以拉伸弹簧或是压缩弹簧同样可达成相同的功效。
如图24所示,本发明也可于掀盖设置调整组件固定住具有不同尺寸大小的计算机,调整组件主要是利用掀盖901具有一本体902,本体902具有两个相互间隔的导引部903,以及可滑移地设于导引部903之间的支撑部904,支撑部904顶端枢设一定位件905。计算机可直接放置于掀盖901,再将支撑部904上下滑移调整至定位件905抵接于计算机,进而转动定位件905固定住计算机即可,本实施例也可以在本体902以及支撑部904之间设置拉力弹簧(图中未示),使定位件905更为牢固地抵接于计算机。
再如图25所示,本发明也可直接整合于键盘,也即将平移操控单元910设于键盘的按键912之间,或者是按键912的外围区域,同样可达成本发明的技术功效。
工业应用性
本发明所提供的扩充座可便利地直接设置各式不同大小或形式的智能型手机等计算机,让用户随时随地都能用最佳的操控方式执行各种程序或电玩游戏,而且上述各平移操控单元都是利用薄型化的环状弹簧、圈状弹簧,或平板状复位件产生出回复力,使得整体高度尺寸极低,符合目前的手机设计趋势,方便设置与匹配于扩充座结构,搭配上述各推钮具有操 作性可极为灵敏,更为有效与真实的控制电玩游戏,以及增加娱乐及临场感等技术功效。

Claims (16)

  1. 一种具有平移操控单元的计算机扩充座,其特征在于,包含有:
    一基座,以能够分离的方式设置一计算机;
    一通信单元,设于该基座,该通信单元可自该计算机接收信号或是发送信号至该计算机;
    一薄膜电路开关,设于该基座;以及
    一平移操控单元,设于该基座;该平移操控单元具有一沿平面往复移动的推钮,该推钮可使该薄膜电路开关动作并使该通信单元发送信号至该计算机,进而控制该计算机所运行的程序。
  2. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮,该推钮套设一环圈状弹簧,该推钮的底面设有一触通件,该触通件与该推钮之间具有一弹性体;当该平移操控单元设于该基座,该推钮可供用户推动,且该弹性体可缓冲且降低该触通件与该薄膜电路开关之间的作用力。
  3. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮,该推钮设有一支撑板,该支撑板套设有一环状弹簧,该推钮的底面设有一触通件,以及介于该触通件与该推钮之间的一弹性体,该支撑板与该弹簧沿平面滑移,使得该推钮可通过该支撑板与该弹簧之间的弹力沿平面往复移动。
  4. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮,该推钮具有一触通件,该触通件受推移后于该薄膜电路开关移动并触通该开关产生信号。
  5. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮与一环状弹簧,该推钮具有一触通部可抵压于该薄膜电路开关,该推钮具有一连动件,该环状弹簧套设于该连动件。
  6. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具行一推钮,该推钮具有一结合柱,该结合柱塞入一圈状弹簧的中央部位,使该弹簧形成限位该推钮且提供往复弹力的作用,该结合柱设有触通部可压抵该薄膜电路开关。
  7. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮,该推钮设有一具齿形的定位件,该定位件可以与该基座的定位孔周壁相互结合。
  8. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮与一平板状复位件,该复位件具有一中央结合部与一外框,该中央结合部与该外框之间设有多个呈弯曲状的弹性部,当该推钮设于该中央结合部,该推钮即可利用各该弹性部产生出可复位力。
  9. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该平移操控单元具有一推钮与一平板状复位件,该复位件具有一中央结合部与一外框,该中央结合部与该外框之间设有多个弹簧,当该推钮设于该中央结合部,该推钮即可利用各该弹簧产生出复位力。
  10. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该基座设有通话孔,该计算机可通过该通话孔传递声音信号。
  11. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该基座具有一掀盖,该掀盖枢设于该基座,该掀盖可盖合于该基座或相对于该基座倾斜,该计算机可分离地设于该掀盖。
  12. 如权利要求11所述具有平移操控单元的计算机扩充座,其特征在于,该掀盖设置一调整组件可用以固定具有不同尺寸大小的计算机。
  13. 如权利要求12所述具有平移操控单元的计算机扩充座,其特征在于,该调整组件具有一设于该掀盖的本体,该本体具有两个相互间隔的导引部,以及一可滑移地设于该导引部之间的支撑部,该支撑枢设一定位件;该计算机放置于该掀盖,该支撑部滑移调整至该定位件抵接于该计算机,该定位件固定住该计算机。
  14. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该基座具有多个按键,该平移操控单元设于该按键之间或外围。
  15. 如权利要求1所述具有平移操控单元的计算机扩充座,其特征在于,该薄膜电路开关具有一上线路,该上线路设置为薄膜开关。
  16. 如权利要求15所述具有平移操控单元的计算机扩充座,其特征在于该基座具有一顶板与一底板,该薄膜电路开关具有一设于底板的下线 路,该下线路可设置为薄膜开关、PCB板,或是直接布局于该底板。
PCT/CN2017/080977 2016-07-04 2017-04-19 具有平移操控单元的计算机扩充座 WO2018006632A1 (zh)

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TWM362439U (en) * 2009-01-23 2009-08-01 qing-hui Lu Extension base for portable electronic device
CN202748742U (zh) * 2011-12-16 2013-02-20 许量 操控装置
TW201339856A (zh) * 2012-03-26 2013-10-01 Compal Electronics Inc 具有跨平台主裝置的模組系統

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW443515U (en) * 1999-07-08 2001-06-23 Inventec Corp Expansion base structure of personal digital assistance
TW200622830A (en) * 2004-12-28 2006-07-01 Airwave Technologies Inc Inverse mouse of a computer
TWM362439U (en) * 2009-01-23 2009-08-01 qing-hui Lu Extension base for portable electronic device
CN202748742U (zh) * 2011-12-16 2013-02-20 许量 操控装置
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