WO2017004942A1 - 触控手套及智能可穿戴系统 - Google Patents

触控手套及智能可穿戴系统 Download PDF

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Publication number
WO2017004942A1
WO2017004942A1 PCT/CN2015/097720 CN2015097720W WO2017004942A1 WO 2017004942 A1 WO2017004942 A1 WO 2017004942A1 CN 2015097720 W CN2015097720 W CN 2015097720W WO 2017004942 A1 WO2017004942 A1 WO 2017004942A1
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WIPO (PCT)
Prior art keywords
touch
glove
signal
module
control
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Application number
PCT/CN2015/097720
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English (en)
French (fr)
Inventor
丁贤林
曾亭
杨忠正
胡明
谢涛峰
陈军涛
Original Assignee
京东方科技集团股份有限公司
合肥鑫晟光电科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 京东方科技集团股份有限公司, 合肥鑫晟光电科技有限公司 filed Critical 京东方科技集团股份有限公司
Priority to EP15866393.0A priority Critical patent/EP3321770A4/en
Priority to US15/104,381 priority patent/US10175754B2/en
Publication of WO2017004942A1 publication Critical patent/WO2017004942A1/zh

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    • 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
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • G06F3/014Hand-worn input/output arrangements, e.g. data gloves
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D19/00Gloves
    • A41D19/001Linings
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D19/00Gloves
    • A41D19/0024Gloves with accessories
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/163Wearable computers, e.g. on a belt
    • 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
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials
    • G06F3/0202Constructional details or processes of manufacture of the input device
    • G06F3/0219Special purpose keyboards

Definitions

  • Embodiments of the present invention relate to the field of smart wearable technologies, and in particular, to a touch glove and a smart wearable system.
  • embodiments of the present invention provide a touch glove and a smart wearable system, which facilitates indirect contact control of the smart device.
  • an embodiment of the present invention provides a touch glove, including: a glove body, a contact area disposed on the glove body, at least one touch area, a control module, and a signal transmission module;
  • the contact area is configured to touch the touch area
  • Each of the touch areas is connected to the control module for generating a touch signal and transmitting to the control module when it is touched by the contact area;
  • the control module is connected to the signal transmission module and configured to generate a corresponding control signal according to the touch signal;
  • the signal transmission module is configured to receive the control signal from the control module and send the signal.
  • the contact area is provided at a front half of the thumb receiving portion on the palm side of the glove body.
  • At least one of the touch areas is disposed at a front half of the finger receiving portion of the glove body on the palm side of the glove body or the index finger receiving portion is adjacent to the thumb receiving portion. Side part.
  • the contact region includes an electrical conductor that is exposed on an inner surface of the glove body.
  • the electrical conductor is exposed on an outer surface of the glove body.
  • the electrical conductor is a metal fiber woven in the glove body.
  • At least one of the touch regions includes a first insulating layer on a surface of the glove body, a second insulating layer on an outer surface of the glove body, and the first layer a touch device between the insulating layer and the second insulating layer.
  • the touch device includes first and second electrodes insulated from each other in the same layer, or the touch device includes a first electrode layer, a second electrode layer, and a third insulating layer between the first electrode layer and the second electrode layer.
  • control module is further configured to generate a corresponding touch signal according to the touch area generated by the touch, the touched position in the touch area, the touch track, and/or the number of consecutive touches. .
  • the signal transmission module is a wireless communication module.
  • the prompting module is further configured to prompt a control operation to be completed when the touch signal is issued or is about to be issued, or to issue a prompt when receiving a status signal of the smart device.
  • the touch glove includes two pairs of glove bodies, wherein one glove body is provided with the contact area, and another glove body is provided with the at least one touch area,
  • the control module and the signal transmission module are two pairs of glove bodies, wherein one glove body is provided with the contact area, and another glove body is provided with the at least one touch area,
  • the control module and the signal transmission module are two pairs of glove bodies, wherein one glove body is provided with the contact area, and another glove body is provided with the at least one touch area,
  • the control module and the signal transmission module is provided with the at least one touch area
  • an embodiment of the present invention provides a smart wearable system, including the touch glove and the at least one smart device according to the first aspect of the present invention, each of the smart devices including a signal transceiving module and an execution module.
  • the signal transceiver module is configured to receive the control signal
  • the execution module is configured to perform a corresponding operation according to the touch signal.
  • the touch glove and the smart wearable system provided by the present invention provide a contact area, at least one touch area, a control module, and a signal transmission mode on the glove body.
  • the block when the touch area is touched in the contact area, generates a control signal and sends the control signal to the corresponding smart device, thereby controlling the smart device to perform corresponding operations.
  • the control of the corresponding smart device can be completed only by touching a part of the touch glove to another part, and it is not necessary to directly contact the smart device, which is particularly convenient when traveling or performing other activities without being in direct contact with the smart device.
  • the operation of multiple smart devices is also incorporated into the touch glove, and the control of each smart device can be completed by simply moving the finger without moving the smart device and the arm, and even blind operation can be performed without the eyes, so that the user has A better control experience.
  • FIG. 1 is a schematic structural view of a touch glove according to a first embodiment of the present invention
  • FIG. 2 is a schematic structural view of a touch glove according to a first embodiment of the present invention.
  • a first embodiment of the present invention provides a touch glove, as shown in FIG. 1 , comprising: a glove body 1 , a contact area 2 disposed on the glove body 1 , at least one touch area 3 , a control module 4 , and Signal transmission module 5.
  • a touch glove as shown in FIG. 1 , comprising: a glove body 1 , a contact area 2 disposed on the glove body 1 , at least one touch area 3 , a control module 4 , and Signal transmission module 5.
  • the contact area, touch area, control module and letter in the drawing The shape, size and position of the transmission module are schematically shown, and can be designed as needed in practice.
  • the contact area 2 is used to touch the touch area 3; each touch area 3 is connected to the control module 4 for generating a touch signal when the touch area 3 is touched by the contact area 2 and transmitted to the control module 4;
  • the control module 4 is connected to the signal transmission module 5 for generating a corresponding control signal according to the touch signal.
  • the signal transmission module 5 is configured to receive and send a control signal from the control module 4.
  • each touch area 3 and the control module 4 are connected by a respective connection line 6 (represented by a broken line), and the control module 4 and the signal transmission module 5 are connected by a connection line 7, and the connection line can be generally
  • the wires can of course be flexible flat cables, flexible circuit boards, and the like.
  • the control module 4 and the signal transmission module 5 can also be disposed on a flexible circuit board.
  • the touch glove is used to control the smart device outside the glove.
  • the contact area touches a certain touch area to generate a corresponding control signal
  • the corresponding smart device receives the control signal, and can respond accordingly according to the control signal.
  • the operation makes it easy to realize the indirect contact control of the smart device outside the glove only by touching the touch area of the touch glove to its corresponding touch area. In this way, the control of the corresponding smart device can be completed only by touching a part of the touch glove to another part, and it is not necessary to directly contact the smart device, which is particularly convenient when traveling or performing other activities without being in direct contact with the smart device.
  • the operation of multiple smart devices is also incorporated into the touch glove, and the control of each smart device can be completed by simply moving the finger without moving the various smart devices and arms, and even blind operation can be performed without the eyes, so that the user Has a better control experience.
  • the contact area 2 is disposed on the front half of the thumb receiving portion of the glove body 1 on the palm side (opposite the back side of the hand), and at least one touch area 3 is disposed on the palm side of the glove body 1 in addition to the thumb.
  • the front half of the other finger receiving portion or the index finger receiving portion is adjacent to the side portion of the thumb receiving portion. In this way, after the person wears the glove, only the thumb and/or the corresponding finger are needed to conveniently touch the contact area 2 on the thumb receiving portion 1 of the glove body 1 to the other finger receiving portion required. Touch area 3.
  • Each touch area 3 includes, for example, a first insulating layer on the inner surface of the glove body 1, a second insulating layer on the outer surface of the glove body, and a touch device between the first insulating layer and the second insulating layer.
  • One or both of the first insulating layer and the second insulating layer may be an insulating material layer provided by the glove body 1 itself, or may be an additional material layer, and the barrier of the first insulating layer and the second insulating layer may be avoided.
  • the direct contact of the control device to the human hand affects the sensitivity of the touch.
  • the touch device can be a resistive, capacitive or other suitable type of touch device, preferably a capacitive touch device, because the resistive touch device generates touch because it only needs to be squeezed, and is easy to make a fist or Incorrect touch when touching other objects. Capacitive touch devices need to be exposed to the right substance.
  • the touch signal is generated.
  • the contact area 2 on the glove can include the electric conductor, and the electric conductor is exposed on the inner surface of the glove body 1. In this way, when the user wears the glove, the electric conductor contacts the human body.
  • the capacitance value of the capacitive touch device of the touch area 3 is changed, thereby generating a touch signal.
  • the control module 4 transfersred to the control module 4, the control module 4 generates a control signal accordingly.
  • the electrical conductor may be, for example, a metal fiber woven in the body of the glove, so that it is possible to avoid the provision of a foreign matter-type electrical conductor, thereby making the touch of the human hand more comfortable.
  • the control module 4 generates a corresponding control signal according to the touch area generated by the touch, the touched position in the touch area, the touch track, and/or the number of consecutive touches. For example, when a certain touch area is touched, the control module 4 can determine which touch area is touched according to which port is connected to the touch area, thereby generating a corresponding control signal, for example, The corresponding controlled smart device is determined by touching the specific touch area, and corresponding control signals for controlling the smart device are generated according to the touched position, the touch trajectory and/or the number of touch consecutive times. It should be understood that the control module 4 may be a functional device including a processor or a programmable logic controller and corresponding software and/or firmware, such as a touch IC. Control module 4 can As a whole integrated module, it can also be a plurality of sub-modules that independently perform functions, and each sub-module corresponds to one touch area or a plurality of adjacent touch areas.
  • the signal transmission module 5 is preferably a wireless communication device, for example, a Bluetooth device or a wifi device, etc., and to improve compatibility, various types of wireless communication devices may be included.
  • control module 4 and the signal transmission module 5 can be placed at any suitable location in the glove body 1, for example at the back of the hand, to avoid collision damage.
  • the touch glove of this embodiment may further include a prompting module for prompting the control operation to be completed when the control signal is issued or is about to be issued, or issuing a prompt when receiving the status signal of the smart device.
  • the prompting module may include, for example, a sounding device, a display screen or an indicator light, etc., and the prompting module may be operated by the control of the control module, or may have a controller itself, and perform a prompting operation according to the signal received from the signal transmitting module. For example, when a smart device is lost, the prompting module does not receive the signal of the smart device within a certain period of time, and then may sound or flash the indicator light to inform a smart device that it is lost.
  • the touch glove of the embodiment needs to include other functional modules, such as a power supply module, and is not described here.
  • the touch glove includes two pairs of glove bodies, one of the glove bodies is provided with a contact area 2, and the other glove body is provided with at least one touch area. 3.
  • the second embodiment is similar to the first embodiment except that the contact area 2 and the touch area 3, the control module 4, and the signal transmission module 5 are respectively disposed on different glove bodies, and details are not described herein again.
  • a third embodiment of the present invention provides a smart wearable system, including the touch glove of the first embodiment or the second embodiment, and at least one smart device, each smart device including a signal transceiving module and an execution module, and a signal transceiving module Receiving a control signal sent by the signal transmission module of the touch glove, the execution module performs a corresponding operation according to the control signal.
  • the signal transceiving module can be, for example, a wireless communication device possessed by the smart device, and the execution module can be a controller or other functional device that the smart device itself has.
  • the signal transceiver module When the signal transceiver module receives the control signal sent by the signal transmission module of the touch glove, the signal transceiver module or the execution module identifies the control signal, and if it is determined that it is an effective instruction for the smart device, the conversion is controlled by the local machine. The instruction is executed by the execution module.
  • the smart device can be a Bluetooth headset, smart glasses, and the like. It should be understood that any electronic device capable of receiving the control signal of the touch glove of the present invention and performing corresponding operations belongs to the "smart device" mentioned in the present invention.
  • the contact area 2 of the thumb receiving portion can be touched by the touch area 3 of the index finger receiving portion to open the Bluetooth earphone to answer the call, and the horizontal direction (the direction perpendicular to the finger length direction).
  • the touch area 3 across the index finger receiving portion increases the volume, and the vertical direction (the direction parallel to the finger length direction) passes across the touch area 3 of the index finger receiving portion to reduce the volume, and continuously double-clicks the touch area of the index finger receiving portion.
  • the computer is turned off, and the touch area 3 of the middle finger receiving portion is touched by the contact area 2 of the thumb receiving portion, so that the camera of the smart glasses can be turned on, and the touch area 3 of the middle finger receiving portion is horizontally moved to increase the focal length, and the vertical direction is drawn.
  • the touch area 3 of the middle finger receiving portion is reduced in focal length, and the touch area 3 of the middle finger receiving portion is continuously double-clicked to be turned off.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Textile Engineering (AREA)
  • User Interface Of Digital Computer (AREA)
  • Gloves (AREA)

Abstract

一种触控手套及智能可穿戴系统,其中在手套本体(1)上设置有接触区(2)、至少一个触控区(3)、控制模块(4)和信号传输模块(5),当在接触区(2)触摸触控区(3)时,产生控制信号并发送给对应的智能设备,从而控制智能设备进行相应操作。这样,仅使用触控手套的一部分接触另一部分就可以完成对相应智能设备的控制,不需要直接接触智能设备,这在行进或进行其他活动而不便于直接接触智能设备时显得尤其方便,同时也把对多个智能设备的操作合并到触控手套进行,只需移动手指而不需移动智能设备和手臂就可完成对各个智能设备的控制,甚至可以不用眼睛而进行盲操作,使用户具有更好的操控体验。

Description

触控手套及智能可穿戴系统 技术领域
本发明的实施例涉及智能可穿戴技术领域,具体涉及一种触控手套及智能可穿戴系统。
背景技术
目前,智能设备种类越来越丰富,数量越来越多,如何管控这些设备成为一个难题。特别是可佩戴在人体的不同位置的可穿戴设备的兴起,对于这些设备的控制越来越难。
虽然目前也有利用手机来控制多种智能设备的开关,但是手机的尺寸越来越大,操控不方便。尤其在行进或进行其他活动时,使用手机来对智能设备进行操控非常不方便。
发明内容
针对现有技术中的缺陷,本发明的实施例提供了一种触控手套及智能可穿戴系统,方便对智能设备进行非直接接触控制。
在第一方面,本发明的实施例提供了一种触控手套,包括:手套本体、设置在所述手套本体上的接触区、至少一个触控区、控制模块和信号传输模块;
所述接触区,用于触摸所述触控区;
每个所述触控区,与所述控制模块相连,用于当其被所述接触区触摸时产生触控信号并传送给所述控制模块;
所述控制模块,与所述信号传输模块相连,用于根据所述触控信号产生相应的控制信号;
所述信号传输模块,用于从所述控制模块接收所述控制信号并发送。
根据本发明的一示例性实施例,所述接触区设置在所述手套本体手掌侧的大拇指容纳部的前半部分。
根据本发明的一示例性实施例,至少一个所述触控区设置在所述手套本体手掌侧的除大拇指容纳部外的其他指容纳部的前半部分或食指容纳部靠近大拇指容纳部的侧面部分。
根据本发明的一示例性实施例,所述接触区包括导电体,所述导电体露出于所述手套本体的内表面。
根据本发明的一示例性实施例,导电体露出于所述手套本体的外表面。
根据本发明的一示例性实施例,所述导电体为编织在所述手套本体中的金属纤维。
根据本发明的一示例性实施例,至少一个所述触控区包括位于所述手套本体内表面的第一绝缘层,位于所述手套本体外表面的第二绝缘层,以及位于所述第一绝缘层和所述第二绝缘层之间的触控器件。
根据本发明的一示例性实施例,所述触控器件为电容式触控器件。
根据本发明的一示例性实施例,所述触控器件包括位于同一层的相互绝缘的第一电极和第二电极,或者所述触控器件包括第一电极层、第二电极层和设置在所述第一电极层和第二电极层之间的第三绝缘层。
根据本发明的一示例性实施例,所述控制模块,进一步用于根据触摸所发生的触控区、触控区中被触摸的位置、触摸轨迹和/或触摸连续次数产生相应的触控信号。
根据本发明的一示例性实施例,所述信号传输模块为无线通信模块。
根据本发明的一示例性实施例,还包括提示模块,用于当触控信号发出或即将发出时提示将完成的控制操作,或当接收到智能设备的状态信号时发出提示。
根据本发明的一示例性实施例,所述触控手套包括成对的两个手套本体,其中一个手套本体设置有所述接触区,并且另一个手套本体设置有所述至少一个触控区、所述控制模块和所述信号传输模块。
在第二方面,本发明的实施例提供了一种智能可穿戴系统,包括本发明第一方面所述的触控手套和至少一个智能设备,每个所述智能设备包括信号收发模块和执行模块,所述信号收发模块用于接收所述控制信号,所述执行模块用于根据所述触控信号执行相应的操作。
由上述技术方案可知,本发明提供的触控手套及智能可穿戴系统,通过在在手套本体上设置接触区、至少一个触控区、控制模块和信号传输模 块,当在接触区触摸触控区时,产生控制信号并发送给对应的智能设备,从而控制智能设备进行相应操作。这样,可以仅使触控手套的一部分接触另一部分就可以完成对相应智能设备的控制,不需要直接接触智能设备,这在行进或进行其他活动而不便于直接接触智能设备时显得尤其方便,同时也把对多个智能设备的操作合并到触控手套进行,只需移动手指而不需移动智能设备和手臂就可完成对各个智能设备的控制,甚至可以不用眼睛而进行盲操作,使用户具有更好的操控体验。
附图说明
图1为本发明第一实施例提供的触控手套的结构示意图;
图2为本发明第一实施例提供的触控手套的结构示意图;
具体实施方式
下面结合附图,对本发明的具体实施方式作进一步描述。以下实施例仅用于更加清楚地说明本发明的技术方案,而不能以此来限制本发明的保护范围。
本发明的第一实施例中提供了一种触控手套,如图1所示,包括:手套本体1、设置在手套本体1上的接触区2、至少一个触控区3、控制模块4和信号传输模块5。应该理解,附图中接触区、触控区、控制模块和信 号传输模块的形状、尺寸和位置都为示意性的示出,实际中可以根据需要进行设计。
接触区2用于触摸触控区3;每个触控区3,都与控制模块4相连,用于当该触控区3被接触区2触摸时产生触控信号并传送给控制模块4;控制模块4,与信号传输模块5相连,用于根据触控信号生成相应的控制信号;信号传输模块5,用于从控制模块4接收控制信号并发送。
如图1中所示,每个触控区3与控制模块4通过各自的连接线6(断续线表示)连接,控制模块4与信号传输模块5通过连接线7连接,连接线可以为一般的导线,当然也可以为柔性扁平电缆、柔性电路板等。控制模块4、信号传输模块5也可以设置在一块柔性电路板上。
触控手套用于控制手套外的智能设备,当接触区触摸到某一个触控区而产生相应的控制信号时,对应的智能设备接收到该控制信号,就可以根据该控制信号作出相应的响应操作,从而只需通过触控手套接触区对其本身相应的触控区的触摸就方便地实现了对手套外智能设备的非直接接触控制。这样,可以仅使触控手套的一部分接触另一部分就可以完成对相应智能设备的控制,不需要直接接触智能设备,这在行进或进行其他活动而不便于直接接触智能设备时显得尤其方便,同时也把对多个智能设备的操作合并到触控手套进行,只需移动手指而不需移动各个智能设备和手臂就可完成对各个智能设备的控制,甚至可以不用眼睛而进行盲操作,使用户具有更好的操控体验。
手套本体1一般包括各个手指容纳部和手掌容纳部。如图1所示的,五个手指容纳部都是分立的手指容纳部,但是在其他实施例中,除大拇指容纳部的其他四个指容纳部可以形成为一个整体容纳部。在图1中,是为封闭式指容纳部,在其他实施例中,也可以为半截式指容纳部(即,手指前端露出)。手套本体1的主体材质可以为一般的布料、毛料、皮料、塑料等柔性绝缘材质,并便于在其中或其上设置接触区2、触控区3、控制模块4和信号传输模块5。
如图1所示,接触区2设置在手套本体1手掌侧(与手背侧相对)的大拇指容纳部的前半部分,而至少一个触控区3设置在手套本体1手掌侧的除大拇指容纳部外的其他指容纳部的前半部分或食指容纳部靠近大拇指容纳部的侧面部分。这样,人戴上手套后,只需要活动大拇指和/或对应的其他手指,就可以方便地使手套本体1的大拇指容纳部1上的接触区2触摸到所需的其他指容纳部上的触控区3。
手套本体1上设置的触控区3的数量根据实际需要设定。每个触控区3例如包括位于手套本体1内表面的第一绝缘层,位于所述手套本体外表面的第二绝缘层,以及位于第一绝缘层和第二绝缘层之间的触控器件。第一绝缘层和第二绝缘层其中一个或两个可以为手套本体1本身具备的绝缘材料层,也可以是外加的材料层,通过第一绝缘层和第二绝缘层的阻隔,可以避免触控器件直接接触到人手影响触控灵敏性。触控器件可以为电阻式、电容式或其他合适类型的触控器件,优选为电容式触控器件,这是因为电阻式触控器件由于仅需挤压就会产生触控,容易因为握拳或接触到其他物件而发生误触控。而电容式触控器件需要通过接触到合适的物质才会 产生触控信号,此时可以使手套上的接触区2包括导电体,导电体露出于手套本体1的内表面。这样,用户戴上手套时,导电体和人体接触,当接触区2触摸到触控区3时,就会使触控区3的电容式触控器件的电容值变化,从而产生触控信号并传送到控制模块4,控制模块4据此产生控制信号。当导电体露出于手套本体1的外表面时,由于可以直接接触到触控区3,因此触控的灵敏度更高。导电体例如可以为编织在所述手套本体中的金属纤维,这样可以避免设置突出异物式的导电体,从而使人手的触感更舒服。
触控器件包括位于同一层的相互绝缘的第一电极和第二电极,或者触控器件包括第一电极层、第二电极层和设置在第一电极层和第二电极层之间的第三绝缘层。如本领域技术人员所熟知的,这两种方式都可以形成电容式触控器件,显然前者更轻薄而后者制造更容易,可以根据具体要求选定。第一电极层和第二电极层例如可以由氧化铟锡制成。
控制模块4,根据触摸所发生的触控区、触控区中被触摸的位置、触摸轨迹和/或触摸连续次数产生相应的控制信号。例如,当某个触控区被触摸时,控制模块4可以根据其与触控区相连的哪个端口传来触控信号而判定是哪个触控区被触摸,从而产生相应的控制信号,例如可以通过触摸的具体触控区而确定对应控制的智能设备,并根据被触摸的位置、触摸轨迹和/或触摸连续次数产生相应的用于控制该智能设备的控制信号。应该理解,控制模块4可以为包括处理器或可编程逻辑控制器及相应的软件和/或固件的功能器件,例如可以为触控芯片(Touch IC)。控制模块4可以 为一个整体集成模块,也可以为多个独立完成功能的子模块,每个子模块对应一个触控区或相邻的多个触控区。
信号传输模块5优选为无线通信器件,例如可以为蓝牙器件或wifi器件等,为提高兼容性,可以包括多种类型的无线通信器件。
控制模块4和信号传输模块5可以设置在手套本体1中任何合适的位置,例如可以设置在手背处,从而避免碰撞损坏。
本实施例的触控手套还可以包括提示模块,用于当控制信号发出或即将发出时提示将完成的控制操作,或当接收到智能设备的状态信号时发出提示。提示模块例如可以包括发声器件、显示屏或指示灯等,提示模块可以受控制模块的控制完成操作,也可以本身具有控制器,根据从信号传输模块接收到的信号进行提示操作。例如当某个智能设备遗失时,提示模块在一定时间内接收不到该智能设备的信号,则有可能发出声音或使指示灯闪烁来告知某个智能设备遗失。
当然,根据实际需要,本实施例的触控手套还需包括供电模块等其他功能模块,在此不再赘述。
如图2所述,在本发明的第二实施例中,触控手套包括成对的两个手套本体,其中一个手套本体设置有接触区2,并且另一个手套本体设置有至少一个触控区3、控制模块4和信号传输模块5。这种设置将接触区和触控区分配在不同的手套上,可以更好地避免误触控。第二实施例除了将接触区2与触控区3、控制模块4和信号传输模块5分设在不同的手套本体上外,其余设置与第一实施例类似,在此不再赘述。
本发明第三实施例提供了一种智能可穿戴系统,包括第一实施例或第二实施例的触控手套和至少一个智能设备,每个智能设备包括信号收发模块和执行模块,信号收发模块接收触控手套的信号传输模块所发出的控制信号,执行模块根据控制信号执行相应的操作。信号收发模块例如可以为智能设备具有的无线通信器件,执行模块可以为智能设备本身具有的控制器或其他功能器件。当信号收发模块接收到触控手套的信号传输模块所发出的控制信号时,信号收发模块或执行模块对控制信号进行识别,若确定其是针对本智能设备的有效指令,则转换为本机控制指令而由执行模块执行相应操作。
智能设备可以为蓝牙耳机、智能眼镜等。应该理解,只要能接收本发明的触控手套的控制信号并进行相应操作的电子设备都属于本发明提及的“智能设备”。例如,当智能设备包括蓝牙耳机、智能眼镜时,可以用大拇指容纳部的接触区2触摸食指容纳部的触控区3就可以打开蓝牙耳机接听电话,横向(与指长方向垂直的方向)划过食指容纳部的触控区3则增大音量,竖向(与指长方向平行的方向)划过食指容纳部的触控区3则减小音量,连续双击食指容纳部的触控区3则关机,用大拇指容纳部的接触区2触摸中指容纳部的触控区3,就可以开启智能眼镜的摄像头,横向划过中指容纳部的触控区3则增大焦距,竖向划过中指容纳部的触控区3则减小焦距,连续双击中指容纳部的触控区3则关机。
本发明的说明书中,说明了大量具体细节。然而,能够理解,本发明的实施例可以在没有这些具体细节的情况下实践。在一些实例中,并未详细示出公知的方法、结构和技术,以便不模糊对本说明书的理解。
除非另有说明,本公开使用的技术术语或者科学术语应当为本发明所属领域技术人员所理解的通常意义。本公开中使用的“第一”、“第二”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。“包括”或者“包含”等类似的词语意指出现在该词前面的元件或者物件涵盖出现在该词后面列举的元件或者物件及其等同物,而不排除其他元件或者物件。“连接”或者“相连”等类似的词语并非限定于物理的或者机械的连接,而是可以包括电性的连接,不管是直接的还是间接的。
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围,其均应涵盖在本发明的权利要求和说明书的范围当中。

Claims (14)

  1. 一种触控手套,其特征在于,包括:手套本体、设置在所述手套本体上的接触区、至少一个触控区、控制模块和信号传输模块;
    所述接触区,用于触摸所述触控区;
    每个所述触控区,与所述控制模块相连,用于当其被所述接触区触摸时产生触控信号并传送给所述控制模块;
    所述控制模块,与所述信号传输模块相连,用于根据所述触控信号产生相应的控制信号;
    所述信号传输模块,用于从所述控制模块接收所述控制信号并发送。
  2. 根据权利要求1所述的触控手套,其特征在于,所述接触区设置在所述手套本体手掌侧的大拇指容纳部的前半部分。
  3. 根据权利要求1所述的触控手套,其特征在于,至少一个所述触控区设置在所述手套本体手掌侧的除大拇指容纳部外的其他指容纳部的前半部分或食指容纳部靠近大拇指容纳部的侧面部分。
  4. 根据权利要求1所述的触控手套,其特征在于,所述接触区包括导电体,所述导电体露出于所述手套本体的内表面。
  5. 根据权利要求4所述的触控手套,其特征在于,所述导电体露出于所述手套本体的外表面。
  6. 根据权利要求4所述的触控手套,其特征在于,所述导电体为编织在所述手套本体中的金属纤维。
  7. 根据权利要求1所述的触控手套,其特征在于,至少一个所述触控区包括位于所述手套本体内表面的第一绝缘层,位于所述手套本体外表面的第二绝缘层,以及位于所述第一绝缘层和所述第二绝缘层之间的触控器件。
  8. 根据权利要求7所述的触控手套,其特征在于,所述触控器件为电容式触控器件。
  9. 根据权利要求8所述的触控手套,其特征在于,所述触控器件包括位于同一层的相互绝缘的第一电极和第二电极,或者所述触控器件包括第一电极层、第二电极层和设置在所述第一电极层和第二电极层之间的第三绝缘层。
  10. 根据权利要求1-8其中任一项所述的触控手套,其特征在于,所述控制模块,进一步用于根据触摸所发生的触控区、触控区中被触摸的位置、触摸轨迹和触摸连续次数中的任何一项或多项产生相应的触控信号。
  11. 根据权利要求1-8其中任一项所述的触控手套,其特征在于,所述信号传输模块为无线通信模块。
  12. 根据权利要求1-8其中任一项所述的触控手套,其特征在于,还包括提示模块,用于当触控信号发出或即将发出时提示将完成的控制操作,或当接收到智能设备的状态信号时发出提示。
  13. 根据权利要求1-8其中任一项所述的触控手套,其特征在于,所述触控手套包括成对的两个手套本体,其中一个手套本体设置有所述接触区,并且另一个手套本体设置有所述至少一个触控区、所述控制模块和所述信号传输模块。
  14. 一种智能可穿戴系统,包括权利要求1-13其中任一项所述的触控手套和至少一个智能设备,所述智能设备包括信号收发模块和执行模块,所述信号收发模块用于接收所述控制信号,所述执行模块用于根据所述触控信号执行相应的操作。
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