WO2019153705A1 - 一种遥控器 - Google Patents

一种遥控器 Download PDF

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Publication number
WO2019153705A1
WO2019153705A1 PCT/CN2018/101093 CN2018101093W WO2019153705A1 WO 2019153705 A1 WO2019153705 A1 WO 2019153705A1 CN 2018101093 W CN2018101093 W CN 2018101093W WO 2019153705 A1 WO2019153705 A1 WO 2019153705A1
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WO
WIPO (PCT)
Prior art keywords
layer
remote controller
touch screen
energy storage
storage unit
Prior art date
Application number
PCT/CN2018/101093
Other languages
English (en)
French (fr)
Inventor
周庆明
Original Assignee
周庆明
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 周庆明 filed Critical 周庆明
Priority to CN201880001054.6A priority Critical patent/CN109874305A/zh
Publication of WO2019153705A1 publication Critical patent/WO2019153705A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C19/00Electric signal transmission systems
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C23/00Non-electrical signal transmission systems, e.g. optical systems
    • G08C23/04Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/56Power conversion systems, e.g. maximum power point trackers

Definitions

  • the invention belongs to the field of small household appliances for daily use, and in particular relates to a remote controller.
  • remote controls widely used in household appliances such as: air conditioner remote controls, television remote controls, etc.
  • a remote controller has been developed for solving the technical defects in the prior art that the use of the remote controller requires a large amount of dry batteries and causes great pollution to the environment, which has become an urgent problem to be solved by those skilled in the art.
  • the present invention provides a remote controller for solving the technical defects in the prior art that the use of the remote controller requires a large amount of dry batteries and causes great pollution to the environment.
  • the invention provides a remote controller, the remote controller comprising: a photovoltaic touch screen, an energy storage unit, a control unit and a casing;
  • An energy storage unit, a control unit and a photovoltaic touch screen are disposed in the outer casing, and the photovoltaic touch screen is respectively connected to the control unit and the energy storage unit, and the photovoltaic touch screen is disposed above the control unit and the energy storage unit.
  • the photovoltaic touch screen includes, in order from the outer layer to the inner layer, a touch control portion, a transparent insulating substrate, and a power generating portion.
  • the power generation portion includes a photoelectric conversion layer selected from any one or more of an amorphous silicon thin film photoelectric conversion layer, a CIGS thin film photoelectric conversion layer, and a cadmium telluride thin film photoelectric conversion layer.
  • the remote controller further includes: a display unit, wherein the display unit is respectively connected to the control unit and the energy storage unit;
  • the photovoltaic touch screen has a transparent window, and the display unit is disposed below the visible window.
  • the remote controller further includes: a transparent protection unit, the transparent protection unit is disposed above the photovoltaic touch screen.
  • the energy storage unit is selected from any one or more of a capacitor, a super capacitor, and a battery.
  • the display unit is an LCD display.
  • the touch control portion includes, in order from the outer layer to the inner layer, a transparent insulating layer, a first transparent conductive layer, an isolation layer, and a second transparent conductive layer;
  • the first transparent conductive layer and the second transparent conductive layer are respectively externally connected to the control unit for transmitting the signal of the touch control unit to the signal receiving portion.
  • the power generating portion includes, in order from the outer layer to the inner layer, a third transparent conductive layer, a photoelectric conversion layer, an electrode layer, and an insulating layer;
  • the third transparent conductive layer and the electrode layer are respectively connected to the electrode lead wires for transmitting the electric energy generated by the power generating portion to the energy storage unit.
  • the isolating layer is an air insulating layer and/or an insulating light-applying adhesive comprising a plurality of isolation points.
  • the present invention provides a remote controller including: a photovoltaic touch screen, an energy storage unit, a control unit, and a casing; the casing is provided with an energy storage unit, a control unit, and a photovoltaic touch screen, The photovoltaic touch screen is respectively connected to the control unit and the energy storage unit, and the photovoltaic touch screen is disposed above the control unit and the energy storage unit.
  • the photovoltaic touch screen can generate electric energy to be delivered to the energy storage unit, and the energy storage unit stores the electric energy for use by each functional component of the remote controller, and does not need to use the dry battery, thereby reducing the consumption of the dry battery.
  • the invention provides a remote controller, which solves the technical defects in the prior art that the use of the remote controller requires a large amount of dry batteries and brings great pollution to the environment.
  • FIG. 1 is a longitudinal cross-sectional view of a remote controller in a technical solution according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram showing an explosion of a longitudinal section of a remote controller according to a technical solution provided by an embodiment of the present invention
  • FIG. 3 is a top plan view of one of the remote controllers according to the technical solution provided by the embodiment of the present invention.
  • FIG. 4 is another longitudinal cross-sectional view of a remote controller according to a technical solution provided by an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of another longitudinal section explosion of a remote controller according to a technical solution provided by an embodiment of the present invention.
  • FIG. 6 is a top plan view showing another front design of a remote controller according to a technical solution provided by an embodiment of the present invention.
  • FIG. 7 is a cross-sectional view of a photovoltaic touch screen in a remote controller according to an embodiment of the present invention.
  • the embodiment of the invention provides a remote controller for solving the technical defects in the prior art that the use of the remote controller requires a large amount of dry batteries and brings great pollution to the environment.
  • an embodiment of the present invention provides a remote controller, including: a photovoltaic touch screen 1 , an energy storage unit 3 , a control unit 2 , and a casing 5 .
  • the casing 5 is provided with an energy storage unit 3 and a control unit 2 .
  • the photovoltaic touch screen 1 , the photovoltaic touch screen 1 is respectively connected to the control unit 2 and the energy storage unit 3 , and the photovoltaic touch screen 1 is arranged above the control unit 2 and the energy storage unit 3 .
  • the remote controller provided by the embodiment of the invention solves the technical defect that the remote controller uses a large amount of dry batteries and brings great pollution to the environment in the prior art.
  • the photovoltaic touch screen 1 can generate electric energy, and the generated electric energy is stored into the energy storage unit 3 through the connection of the photovoltaic touch screen 1 and the energy storage unit 3, and the photovoltaic touch screen 1 is also controlled.
  • the unit 2 is connected. By pressing the photovoltaic touch screen 1, the touched signal is transmitted to the control unit 2, and the control unit 2 further makes a corresponding command to control the remote controller.
  • the photovoltaic touch screen 1 is disposed at the uppermost part of the entire remote control, and the external light can be directly injected into the photovoltaic touch screen 1 , and the light energy is converted into electric energy through the photovoltaic touch screen 1 , and the generated electric energy is stored by the energy storage unit 3 , and the energy storage unit is 3 stored energy can provide power for the rest of the remote control, no need to use dry batteries, avoiding the environmental pollution caused by dry batteries.
  • the remote controller provided by the embodiment of the invention has no mechanical button, but is controlled by the touch screen. From the overall structure of the remote controller, it is more beneficial to the user. Experience, and, can avoid the problem that the remote control is accidentally activated when the mechanical button is pressed by foreign objects.
  • the remote controller provided by the embodiment of the invention can effectively avoid the use of the dry battery, and can also solve the problem of accidental operation when the mechanical case is accidentally touched, and the appearance of the entire remote controller is more fashionable and beautiful.
  • the technical solution is further optimized, in order to effectively ensure the good touch control effect of the photovoltaic touch screen 1 , and the photovoltaic touch screen 1 can function to generate electric energy by generating electricity.
  • the photovoltaic touch screen 1 is composed of an outer layer.
  • the inner layer includes, in order, a touch control unit, a transparent insulating substrate, and a power generating unit.
  • the transparent insulating substrate 12 can function to isolate the touch control unit and the power generation unit from each other, and does not press the power generation unit when the touch control unit is pressed, thereby preventing the power generation unit from being damaged by pressure; when the power generation unit performs power generation, it is generated.
  • the power is transmitted to the energy storage unit 3 connected to the photovoltaic touch screen 1 without being directly transmitted to the touch control unit without control, thereby realizing the controllable and continuous operation of the photovoltaic touch screen 1.
  • the power generation portion includes a photoelectric conversion layer selected from any one or more of an amorphous silicon thin film photoelectric conversion layer, a CIGS thin film photoelectric conversion layer, and a cadmium telluride thin film photoelectric conversion layer.
  • the 1cm 2 screen can generate 4 ⁇ hW of electricity per hour after being injected by a conventional indoor light source (200Lux), which fully meets the needs of conventional remote controls.
  • the remote controller further includes: a display unit 4 connected to the control unit 2 and the energy storage unit 3; the photovoltaic touch screen 1 has a transparent window, and the display unit 2 is disposed on the visible window.
  • the functional components with poor light transmission effect or no light transmission can be removed, and the glass component with good light transmittance can be retained, and the protection function of the display unit 4 can be protected to some extent through the photovoltaic touch screen.
  • the transparent window of 1 can be used by the user to observe the parameter information of some control units 2 displayed by the display unit 4 in real time, that is, the remote controller can display the current parameter information in real time, which is convenient for the user to use.
  • the remote controller further includes a transparent protection unit 6 , and the transparent protection unit 6 is disposed above the photovoltaic touch screen 1 . .
  • the energy storage unit 3 is capable of discharging the electrical energy and avoiding the loss of the electrical energy.
  • the energy storage unit 3 is selected from the group consisting of: Any one or more of super capacitors and batteries.
  • the display unit 4 is an LCD display, and the display unit 4 is designed to ensure a good display effect of the display unit 4.
  • the touch control unit can ensure a high transmittance of the light, which is provided by the embodiment of the present invention.
  • the touch control portion includes, in order from the outer layer to the inner layer, a transparent insulating layer 111, a first transparent conductive layer 112, an isolation layer 113, and a second transparent conductive layer 114; the first transparent conductive layer 112 and the second transparent layer
  • the conductive layer 114 is externally connected to the control unit 2 for transmitting the signal of the touch control unit to the signal receiving portion.
  • the transparent insulating layer 111 is disposed at the uppermost portion of the entire touch control portion to prevent external matter from causing interference to the touch control portion and to prevent the touch control portion from being damaged when touched; second, the first conductive layer and the second conductive layer A transparent conductive layer is used to ensure high light transmittance.
  • the first transparent conductive layer 112 and the second transparent conductive layer 114 break through the isolation of the isolation layer 113, and the first transparent conductive layer 112 and the second transparent conductive layer 114 are turned on; or, at the finger touch surface
  • a coupling capacitor is formed between the human body electric field, the finger and the touch control unit; when the touch control unit is in operation, the first transparent conductive layer 112 and/or the second transparent conductive layer 114 are externally connected with a high frequency signal.
  • the touch will draw a small current, which flows out from the electrodes at the four corners of the touch control, respectively. Based on the current flowing through the four electrodes and the current from the finger to the four corners, the current can be measured.
  • the specific touch position effectively ensures the precise touch control of the touch control unit.
  • the power generating portion of the photovoltaic touch panel 1 includes, in order from the outer layer to the inner layer, a third transparent conductive layer 131, a photoelectric conversion layer 132, an electrode layer 133, and an insulation.
  • the layer 134; the third transparent conductive layer 131 and the electrode layer 133 are respectively connected to the electrode lead wires for transmitting the electric energy generated by the power generating portion to the energy storage unit 3.
  • the photoelectric conversion layer 132 converts the light energy into electrical energy
  • the generated electrical energy passes through the third transparent conductive layer 131 and the electrode layer 133, and the generated electricity is transmitted to the energy storage unit 3 via the external electrode lead-out line; the insulating layer 134 To the role of insulation isolation, to prevent the loss of electrical energy generated by the power generation.
  • the isolation layer 113 can function to isolate the first transparent conductive layer 112 and the second transparent conductive layer 114 before being subjected to external pressing, and at the same time, when being pressed, The first transparent conductive layer 112 and the second transparent conductive layer 114 can be smoothly turned on, and after the pressing is eliminated, the isolation layer 113 can be quickly recovered to function as an isolation barrier.
  • the isolation layer 113 is an air insulating layer and/or an insulating light-applying adhesive having a plurality of isolation points.
  • the present invention provides a remote controller including: a photovoltaic touch screen, an energy storage unit, a control unit, and a casing; the casing is provided with an energy storage unit, a control unit, and a photovoltaic touch screen, The photovoltaic touch screen is respectively connected to the control unit and the energy storage unit, and the photovoltaic touch screen is disposed above the control unit and the energy storage unit.
  • the photovoltaic touch screen can generate electric energy to be delivered to the energy storage unit, and the energy storage unit stores the electric energy for use by each functional component of the remote controller, and does not need to use the dry battery, thereby reducing the consumption of the dry battery.
  • the invention provides a remote controller, which solves the technical defects in the prior art that the use of the remote controller requires a large amount of dry batteries and brings great pollution to the environment.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Power Engineering (AREA)
  • Selective Calling Equipment (AREA)
  • Photovoltaic Devices (AREA)

Abstract

一种遥控器,包括:光伏触摸屏(1)、储能单元(3)、控制单元(2)以及外壳(5);外壳(5)中设置有储能单元(3)、控制单元(2)和光伏触摸屏(1),光伏触摸屏(1)分别与控制单元(2)和储能单元(3)连接,光伏触摸屏(1)设置于控制单元(2)和储能单元(3)的上方。光伏触摸屏(1)可产生电能输送至储能单元(3),储能单元(3)将电能储存后供遥控器的各功能部件使用,无需再使用干电池,减少了干电池的消耗。该遥控器解决了现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。

Description

一种遥控器
本申请要求于2018年02月09日提交中国专利局、申请号为201810155937.4、发明名称为“一种全面光伏触摸屏遥控器产品的结构”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明属于日用小家电领域,尤其涉及一种遥控器。
背景技术
目前,家用电器中广泛使用的遥控器,如:空调遥控器、电视遥控器等,普遍是塑胶壳与按键开关方式,使用干电池作为电源。
技术问题
当遥控器所配装的干电池电量用尽后,需要更换干电池。现有技术中,每年由于遥控器所耗费的干电池数量巨大,给环境带来了极大的污染。
因此,研发出一种遥控器,用于解决现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷,成为了本领域技术人员亟待解决的问题。
技术解决方案
有鉴于此,本发明提供了一种遥控器,用于解决现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。
本发明提供了一种遥控器,所述遥控器包括:光伏触摸屏、储能单元、控制单元以及外壳;
所述外壳中设置有储能单元、控制单元和光伏触摸屏,所述光伏触摸屏分别与所述控制单元和储能单元连接,所述光伏触摸屏设置于所述控制单元和储能单元的上方。
优选地,所述光伏触摸屏由外层到内层依次包括:触摸控制部、透明绝缘基板以及发电部。
优选地,所述发电部包括光电转换层,所述光电转换层选自:非晶硅薄膜光电转换层、CIGS薄膜光电转换层以及碲化镉薄膜光电转换层中的任意一种或多种。
优选地,所述遥控器还包括:显示单元,所述显示单元分别与所述控制单元和所述储能单元连接;
所述光伏触摸屏开有透明窗口,所述显示单元设置于所述可视窗口下方。
优选地,所述遥控器还包括:透明防护单元,所述透明防护单元设置于所述光伏触摸屏的上方。
优选地,所述储能单元选自:电容、超级电容以及蓄电池中的任意一种或多种。
优选地,所述显示单元为LCD显示器。
优选地,所述触摸控制部由外层到内层依次包括:透明绝缘层、第一透明导电层、隔离层以及第二透明导电层;
所述第一透明导电层和第二透明导电层分别外接控制单元,用于将所述触摸控制部的信号传输至信号接收处。
优选地,发电部由外层到内层依次包括:第三透明导电层、光电转换层、电极层以及绝缘层;
所述第三透明导电层与电极层分别外接电极引出线,用于将所述发电部产生的电能传输至所述储能单元。
优选地,所述隔离层为:含若干个隔离点的空气绝缘层和/或绝缘光涂胶。
有益效果
综上所述,本发明提供了一种遥控器,所述遥控器包括:光伏触摸屏、储能单元、控制单元以及外壳;所述外壳中设置有储能单元、控制单元和光伏触摸屏,所述光伏触摸屏分别与所述控制单元和储能单元连接,所述光伏触摸屏设置于所述控制单元和储能单元的上方。本发明提供的技术方案中,光伏触摸屏可产生电能输送至储能单元,储能单元将电能储存后供遥控器的各功能部件使用,无需再使用干电池,减少了干电池的消耗。本发明提供的一种遥控器,解决了现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术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发明的实施例,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,还可以根据提供的附图获得其他的附图。
图1为本发明实施例提供的技术方案中,一种遥控器的其中一个纵向截面图;
图2为本发明实施例提供的技术方案中,一种遥控器的其中一个纵向截面***示意图;
图3为本发明实施例提供的技术方案中,一种遥控器的其中一个正面设计俯视图;
图4为本发明实施例提供的技术方案中,一种遥控器的另一个纵向截面图;
图5为本发明实施例提供的技术方案中,一种遥控器的另一个纵向截面***示意图;
图6为本发明实施例提供的技术方案中,一种遥控器的另一个正面设计俯视图;
图7为本发明实施例提供的一种遥控器中,光伏触摸屏的剖面示意图;
其中,光伏触摸屏1、透明绝缘层111、第一透明导电层112、隔离层113、第二透明导电层114、透明绝缘基板12、第三透明导电层131、光电转换层132、电极层133、绝缘层134、控制单元2、储能单元3、显示单元4、外壳5以及防护单元6;
其中,指定附图1为摘要附图。
本发明的实施方式
本发明实施例提供了一种遥控器,用于解决现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。
下面将对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,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例,都属于本发明保护的范围。
为了更详细说明本发明,下面结合附图对本发明实施例提供的一种遥控器,进行具体地描述。
请参阅图1至图6,本发明实施例提供了一种遥控器,包括:光伏触摸屏1、储能单元3、控制单元2以及外壳5;外壳5中设置有储能单元3、控制单元2和光伏触摸屏1,光伏触摸屏1分别与控制单元2和储能单元3连接,光伏触摸屏1设置于控制单元2和储能单元3的上方。本发明实施例提供的一种遥控器,解决了现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。
本发明实施例提供的技术方案中,光伏触摸屏1可产生电能,通过光伏触摸屏1与储能单元3的连接,将所产生的电能储存至储能单元3中,同时,光伏触摸屏1还与控制单元2连接,通过按压光伏触摸屏1,触摸的信号传递至控制单元2,进一步地控制单元2作出相应地指令,起到遥控器的控制作用。
光伏触摸屏1设置于整个遥控器的最上部,外界的光线可以直接射入光伏触摸屏1,通过光伏触摸屏1将光能转换为电能,所产生的电能通过储能单元3进行储能,储能单元3所储存的能量可为遥控器其余部件提供电能,无需再使用干电池,避免了干电池所造成的环境污染。
与现有技术中,常规遥控器不同的是,本发明实施例提供的一种遥控器,无机械按键,而是通过触摸屏的方式进行控制,从遥控器的整体结构来说,更有利于用户体验,而且,可以避免机械按键受到异物压迫时,遥控器误启动的问题。
本发明实施例提供的一种遥控器,可有效避免干电池的使用,同时,还可解决机械类案件误触碰时意外操作的问题,整个遥控器的外观也更加的时尚、美观。
进一步地优化技术方案,为有效确保光伏触摸屏1良好的触摸控制效果,以及,光伏触摸屏1可以起到发电产生电能的作用,本发明实施例提供的一种遥控器中,光伏触摸屏1由外层到内层依次包括:触摸控制部、透明绝缘基板以及发电部。
触摸控制部在受到触摸后,将触摸指令进行相应的传输,实现触摸屏的基本功能。透明绝缘基板12可以起到隔离触摸控制部和发电部互不干扰的作用,在按压触摸控制部时,不会按压到发电部,防止发电部受到压力发生损坏;当发电部进行发电时,产生的电能传输至与光伏触摸屏1相连的储能单元3,而不会直接不经控制传输至触摸控制部,实现了光伏触摸屏1的可控、持续性的运行使用。
为满足常规遥控器的用电需求,同时,还需考虑到在夜间以及光线不足的条件下,储能单元3储存足够的电量供遥控器使用,因此,发电部的发电效率应越高越好。发电部包括光电转换层,光电转换层选自:非晶硅薄膜光电转换层、CIGS薄膜光电转换层以及碲化镉薄膜光电转换层中的任意一种或多种。1cm 2的屏幕在受到室内常规光源(200Lux)射入后,每小时可产生4μhW的电能,完全可满足常规遥控器的使用需求。
本发明实施例提供的一种遥控器还包括:显示单元4,显示单元4分别与控制单元2和储能单元3连接;光伏触摸屏1开有透明窗口,显示单元2设置于所述可视窗口下方。
将光伏触摸屏1中,透光效果不佳或者无法透光的功能部件抠去,透光性能好的玻璃部件可以保留,还可起到一定程度上对显示单元4的保护作用,透过光伏触摸屏1的透明窗口,使用者可实时观察到通过显示单元4所显示的一些控制单元2的参数信息,即实现了遥控器实时显示当前的参数信息,便于使用者使用。
为更好地对光伏触摸屏1起到一个防护作用,防止光伏触摸屏1的损坏,本发明实施例提供的一种遥控器还包括:透明防护单元6,透明防护单元6设置于光伏触摸屏1的上方。
为更好地储存光伏触摸屏1所产生的电能,同时,兼顾以储能单元3良好地放电能力,避免电能的损耗,本发明实施例提供的技术方案中,储能单元3选自:电容、超级电容以及蓄电池中的任意一种或多种。
在确保显示单元4良好的显示效果的基础上,同时,兼顾以显示单元4耗能低、体积小巧的设计需求,本发明实施例提供的一种遥控器中,显示单元4为LCD显示器。
进一步地优化技术方案,此处请进一步参阅图7,在确保触摸控制部良好的触摸控制效果的基础上,同时,兼顾以触摸控制部可以确保光线较高的透过率,本发明实施例提供的技术方案中,触摸控制部由外层到内层依次包括:透明绝缘层111、第一透明导电层112、隔离层113以及第二透明导电层114;第一透明导电层112和第二透明导电层114分别外接控制单元2,用于将触摸控制部的信号传输至信号接收处。
透明绝缘层111设置于整个触摸控制部的最上方,可防止外界的物质对触摸控制部造成干扰,以及防止触摸控制部在触摸时,受到损坏;第二,第一导电层和第二导电层均选用透明导电层,可以确保较高的光线透过率。
在受到外界压力后,第一透明导电层112和第二透明导电层114突破隔离层113的隔离作用,第一透明导电层112和第二透明导电层114导通;或者,在手指碰触表面时,人体电场、手指以及触摸控制部之间,形成一个耦合电容;在触摸控制部工作时,第一透明导电层112和/或第二透明导电层114会外接高频信号,此时,手指的触摸会吸走一个很小的电流,该电流分别从触摸控制部的四个角的电极流出,基于流经四个电极的电流与手指到四个角的电流成比例,即可通过测算得出具体的触摸位置,有效确保了触摸控制部的精确的触摸控制。
进一步地优化技术方案,本发明实施例提供的一种遥控器中,光伏触摸屏1的发电部由外层到内层依次包括:第三透明导电层131、光电转换层132、电极层133以及绝缘层134;第三透明导电层131与电极层133分别外接电极引出线,用于将发电部产生的电能传输至储能单元3。光电转换层132将光能转换为电能后,所产生的电能通过第三透明导电层131和电极层133,经外接的电极引出线,将产生的电传输至储能单元3;绝缘层134起到绝缘隔离的作用,防止发电部产生电能的流失。
为有效确保隔离层113良好的隔离效果,在未受到外界按压前,隔离层113可起到隔离第一透明导电层112及第二透明导电层114的作用,同时,兼顾以在受到按压时,第一透明导电层112与第二透明导电层114可以顺利导通,以及在按压消除后,隔离层113可以迅速恢复,起到隔离屏障的作用。兼顾以对于隔离层113的上述设计需求,本发明实施例提供的技术方案中,隔离层113为:含若干个隔离点的空气绝缘层和/或绝缘光涂胶。
综上所述,本发明提供了一种遥控器,所述遥控器包括:光伏触摸屏、储能单元、控制单元以及外壳;所述外壳中设置有储能单元、控制单元和光伏触摸屏,所述光伏触摸屏分别与所述控制单元和储能单元连接,所述光伏触摸屏设置于所述控制单元和储能单元的上方。本发明提供的技术方案中,光伏触摸屏可产生电能输送至储能单元,储能单元将电能储存后供遥控器的各功能部件使用,无需再使用干电池,减少了干电池的消耗。本发明提供的一种遥控器,解决了现有技术中,遥控器的使用过程需要耗费大量干电池,给环境带来很大污染的技术缺陷。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。

Claims (10)

  1. 一种遥控器,其特征在于,所述遥控器包括:光伏触摸屏、储能单元、控制单元以及外壳;
    所述外壳中设置有储能单元、控制单元和光伏触摸屏,所述光伏触摸屏分别与所述控制单元和储能单元连接,所述光伏触摸屏设置于所述控制单元和储能单元的上方。
  2. 根据权利要求1所述的遥控器,其特征在于,所述光伏触摸屏由外层到内层依次包括:触摸控制部、透明绝缘基板以及发电部。
  3. 根据权利要求2所述的遥控器,其特征在于,所述发电部包括光电转换层,所述光电转换层选自:非晶硅薄膜光电转换层、CIGS薄膜光电转换层以及碲化镉薄膜光电转换层中的任意一种或多种。
  4. 根据权利要求1所述的遥控器,其特征在于,所述遥控器还包括:显示单元,所述显示单元分别与所述控制单元和所述储能单元连接;
    所述光伏触摸屏开有透明窗口,所述显示单元设置于所述可视窗口下方。
  5. 根据权利要求1所述的遥控器,其特征在于,所述遥控器还包括:透明防护单元,所述透明防护单元设置于所述光伏触摸屏的上方。
  6. 根据权利要求1所述的遥控器,其特征在于,所述储能单元选自:电容、超级电容以及蓄电池中的任意一种或多种。
  7. 根据权利要求4所述的遥控器,其特征在于,所述显示单元为LCD显示器。
  8. 根据权利要求2所述的遥控器,其特征在于,所述触摸控制部由外层到内层依次包括:透明绝缘层、第一透明导电层、隔离层以及第二透明导电层;
    所述第一透明导电层和第二透明导电层分别外接控制单元,用于将所述触摸控制部的信号传输至信号接收处。
  9. 根据权利要求2所述的遥控器,其特征在于,发电部由外层到内层依次包括:第三透明导电层、光电转换层、电极层以及绝缘层;
    所述第三透明导电层与电极层分别外接电极引出线,用于将所述发电部产生的电能传输至所述储能单元。
  10. 根据权利要求8所述的遥控器,其特征在于,所述隔离层为:含若干个隔离点的空气绝缘层和/或绝缘光涂胶。
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