WO2017088335A1 - 一种具有远程操控功能的柔软型智能颈椎牵引器 - Google Patents

一种具有远程操控功能的柔软型智能颈椎牵引器 Download PDF

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WO2017088335A1
WO2017088335A1 PCT/CN2016/077597 CN2016077597W WO2017088335A1 WO 2017088335 A1 WO2017088335 A1 WO 2017088335A1 CN 2016077597 W CN2016077597 W CN 2016077597W WO 2017088335 A1 WO2017088335 A1 WO 2017088335A1
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traction
control
airbag
module
cervical
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PCT/CN2016/077597
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English (en)
French (fr)
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刘洋
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刘洋
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/01Orthopaedic devices, e.g. splints, casts or braces
    • A61F5/04Devices for stretching or reducing fractured limbs; Devices for distractions; Splints
    • A61F5/042Devices for stretching or reducing fractured limbs; Devices for distractions; Splints for extension or stretching
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link

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  • the invention relates to a soft intelligent cervical traction device with remote control function.
  • the soft intelligent cervical traction device is a new type of medical care product for cervical spondylosis. It is a starting traction device for the neck. It is mainly used for pneumatic traction of nerve root type cervical spondylosis, which can relieve clinical symptoms, and is easy to use and simple to operate. Good performance, safe and effective.
  • the soft intelligent cervical traction device adopts the structure of the inflatable capsule, but currently the manual inflation method is used, which reduces the user experience. There is also a semi-automatic inflation method that requires the user to control the inflation so that the high accuracy of traction cannot be achieved.
  • the technical problem to be solved by the present invention is to provide a soft intelligent cervical traction device with remote control function capable of performing remote monitoring and having an automatic inflation function in order to overcome the deficiencies of the prior art single inflation mode and low efficiency.
  • a soft intelligent cervical traction device with remote control function comprising a neck support, a traction adjusting mechanism and a base arranged in order from top to bottom, the traction adjusting mechanism
  • the utility model comprises three traction adjusting units and traction control mechanisms arranged in sequence from top to bottom.
  • the three traction adjusting units are electrically connected with the traction control mechanism, and the traction adjusting unit comprises a traction control airbag and a connecting component, the collar and the traction
  • the cross section of the control air bag and the base are open rings, and the connecting assembly is disposed at both ends of the opening of the traction control air bag;
  • the traction control airbag is provided with an inflation hole, and the traction control airbag is connected to the traction control mechanism through the inflation hole, and the inner side of the traction control airbag is provided with a medicine bag placement mouth band, and the traction control air bag is provided with pressure inside.
  • the traction control mechanism includes a gas pipe and a traction control unit, and the traction control unit is in communication with the traction control airbag through a gas pipe, the traction control unit includes a casing, a display interface and a control button disposed on the casing, and an inflation provided in the casing a pump, the air pump is connected to the air pipe;
  • a central control device is disposed in the outer casing, and the central control device includes a central control system, a wireless communication module connected to the central control system, a display control module, a button control module, an inflation control module, a pressure detection module, and a working power module.
  • the display interface is electrically connected to the display control module
  • the control button is electrically connected to the button control module
  • the air pump is electrically connected to the inflation control module
  • the pressure sensor is electrically connected to the pressure detection module;
  • the inflation control module includes an inflation control circuit, the inflation control circuit includes a capacitor, a first resistor, a second resistor, and a triode, an emitter of the triode is grounded, and a collector of the triode is externally connected with a 5V DC voltage through a second resistor.
  • a power source, the base of the transistor being grounded through a series circuit of a capacitor and a first resistor.
  • the connection assembly comprises a fixing block and a connecting belt, respectively, the fixing block and the connecting belt are respectively located at two ends of the traction control airbag, and one end of the connecting belt is disposed on the traction On the control airbag, the other end of the connecting belt is provided with a connecting block, and the connecting belt is connected to the fixing block through the connecting block.
  • the fixing block is provided with a hooked bristles, and the connecting block is provided with round hair.
  • the round hair is made of fiber.
  • the inflator is a gas booster pump.
  • the wireless communication mode The block transmits wireless signals through WIFI.
  • the working power module is electrically connected with a battery, and the battery is a trifluoro lithium battery.
  • the triode is an NPN triode.
  • the invention has the beneficial effects that the soft intelligent cervical traction device with remote control function realizes real-time monitoring of the working state of the device through the wireless communication module; and then inflates the traction control airbag through the air pump, and simultaneously passes the pressure sensor The traction controls the pressure in the airbag for detection and subsequent feedback, thereby ensuring the traction reliability of the traction control airbag, thereby improving the reliability of the cervical traction device.
  • FIG. 1 is a schematic structural view of a soft intelligent cervical traction device with remote control function according to the present invention
  • FIG. 2 is a schematic structural view of a traction adjusting unit of a flexible smart cervical traction device with remote control function according to the present invention
  • FIG. 3 is a schematic diagram of a system of a flexible smart cervical vertebra tractor with remote control function according to the present invention
  • FIG. 4 is a circuit schematic diagram of an inflation control circuit of a flexible smart cervical traction device with remote control function according to the present invention
  • a soft type intelligent cervical traction device with a remote control function includes a neck support 1, a traction adjusting mechanism and a base 3 which are disposed in order from top to bottom, and the traction adjusting mechanism includes three a traction adjustment unit and a traction control mechanism, which are sequentially arranged from top to bottom, the three traction adjustment units are electrically connected to the traction control mechanism, and the traction adjustment unit comprises a traction control airbag 2 and a connection assembly, the collar 1 and the traction
  • the cross section of the control air bag 2 and the base 3 are both open rings, and the connecting assembly is disposed at both ends of the opening of the traction control air bag 2;
  • the traction control airbag 2 is provided with an inflation hole 4, and the traction control airbag 2 is connected to the traction control mechanism through the inflation hole 4, and the inner side of the traction control airbag 2 is provided with a medicine bag placement port 12, and the traction control
  • the inside of the air bag 2 is provided with a pressure sensor 14;
  • the traction control mechanism includes a gas pipe 5 and a traction control unit, and the traction control unit communicates with the traction control airbag 2 through a gas pipe 5, the traction control unit including a casing 6, a display interface 7 disposed on the casing 6, and a control button 8.
  • An air pump 13 disposed in the outer casing 6, the air pump 13 being in communication with the air tube 5;
  • a central control device is disposed in the outer casing 6.
  • the central control device includes a central control system 15, a wireless communication module 16 connected to the central control system 15, a display control module 17, a button control module 18, an inflation control module 19, and a pressure.
  • the detection module 20 and the working power module 21 are electrically connected to the display control module 17, the control button 8 is electrically connected to the button control module 18, and the air pump 13 is electrically connected to the inflation control module 19,
  • the pressure sensor 14 is electrically connected to the pressure detecting module 20;
  • the inflation control module 19 includes an inflation control circuit including a capacitor C1.
  • the first resistor R1, the second resistor R2 and the transistor Q1, the emitter of the transistor Q1 is grounded, the collector of the transistor Q1 is externally connected to the 5V DC voltage source through the second resistor R2, and the base of the transistor Q1 passes through the capacitor C1.
  • a series circuit composed of the first resistor R1 is grounded.
  • the connecting assembly comprises a fixing block 9 and a connecting belt 10, the fixing block 9 and the connecting belt 10 are respectively located at two ends of the traction control airbag 2, the connecting belt One end of the connecting belt 10 is disposed on the traction control airbag 2, and the other end of the connecting belt 10 is provided with a connecting block 11, which is connected to the fixed block 9 through the connecting block 11.
  • the fixing block 9 is provided with hooked bristles, and the connecting block 11 is provided with round hair.
  • the round hair is made of fiber.
  • the inflator 13 is a gas booster pump.
  • the wireless communication module 16 transmits the wireless signal through the WIFI.
  • the working power module 21 is electrically connected to the battery 22, and the battery 22 is a trifluoro lithium battery.
  • the triode Q1 is an NPN triode.
  • the soft intelligent cervical vertebra tractor with remote control function works: the neck support 1, the traction adjusting mechanism and the base 3 are arranged from top to bottom, the neck support 1 is used to support the cervical vertebra of the user; the base 3 It is convenient for the device to be fixed on the shoulder of the user; the traction adjusting mechanism is used for controlling the traction of the device to ensure traction of the cervical vertebra of the user.
  • the traction adjustment mechanism of the soft intelligent cervical traction device with remote control function works: the air pump 13 communicates with the inflation hole 4 through the air tube 5, and the air pump 13 can control the lifting and lowering of the traction control airbag 2;
  • the mouth strap 12 is used for placing a medicine bag for treating the cervical vertebra of the user, thereby improving the reliability of the device;
  • the pressure sensor 14 is used for detecting the pressure in the traction control airbag 2, thereby ensuring the traction of the cervical vertebra of the user.
  • the air pump 13 will pass again to inflate the traction control airbag 2.
  • the soft intelligent cervical traction device with remote control function the wireless communication module 16 is used to ensure real-time monitoring of the working state of the device; the display control module 17 is used to control the display interface 7 to display related device information; the button control module 18 It is convenient for simple control of the device through the control button 8; the inflation control module 19 is used to control the operation of the air pump 13 to inflate the traction control air bag 2; the pressure detecting module 20 is configured to analyze the measurement information of the pressure sensor 14, thereby Feedback to the inflation control module 19 improves the traction reliability of the intelligent cervical traction device; the working power module 21 is used to ensure the normal operation of each module, and the reliability of the device is improved; the central control system 15 is used to control each module, and the reliability is improved.
  • the degree of intelligence of the device is used to ensure real-time monitoring of the working state of the device.
  • the inflation control circuit in the soft intelligent cervical traction device with remote control function controls the air pump 13 by simply driving the switching circuit of the transistor Q1, which not only ensures the reliability of the control but also reduces the design cost.
  • the soft intelligent cervical traction device with remote control function realizes real-time monitoring of the working state of the device through the wireless communication module 16; and then inflates the traction control airbag 2 through the air pump 13 while passing through
  • the pressure sensor 14 detects the pressure in the traction control airbag 2 and then feeds back, thereby ensuring the traction reliability of the traction control airbag 2, thereby improving the reliability of the cervical vertebra tractor.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Heart & Thoracic Surgery (AREA)
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  • Physics & Mathematics (AREA)
  • Nursing (AREA)
  • Orthopedic Medicine & Surgery (AREA)
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Abstract

一种具有远程操控功能的柔软型智能颈椎牵引器,包括从上到下依次设置的颈托(1)、牵引调节机构和基座(3),所述牵引调节机构包括三个依次从上到下设置的牵引调节单元和牵引控制机构,三个牵引调节单元均与牵引控制机构电连接,所述牵引调节单元包括牵引控制气囊(2)和连接组件,所述颈托(1)、牵引控制气囊(2)和基座(3)的横截面均为开口圆环,该具有远程操控功能的柔软型智能颈椎牵引器通过无线通讯模块(16)实现了用户对设备的工作状态进行实时监控;再通过充气泵(13)给牵引控制气囊(2)充气,同时通过压力传感器(14)对牵引控制气囊(2)中的压力进行检测,随后反馈,从而保证了牵引控制气囊(2)的牵引可靠性,从而提高了颈椎牵引器的可靠性。

Description

一种具有远程操控功能的柔软型智能颈椎牵引器 技术领域
本发明涉及一种具有远程操控功能的柔软型智能颈椎牵引器。
背景技术
柔软型智能颈椎牵引器是颈椎病的新型医疗保健产品,一种用于颈部的起动牵引器械,主要适用于神经根型颈椎病气动牵引,起到缓解临床症状的作用,使用方便、操作简单、性能良好、安全有效。
现有技术中,柔软型智能颈椎牵引器都采用了充气囊的结构,但是目前都是使用手动充气的方式,这样降低了使用者的体验效果。也有采用半自动充气方式,需要使用者控制充气,这样无法达到牵引的高精确性。
发明内容
本发明要解决的技术问题是:为了克服现有技术充气方式单一且效率低下的不足,提供一种能够进行实施远程监控且具有自动充气功能的具有远程操控功能的柔软型智能颈椎牵引器。
本发明解决其技术问题所采用的技术方案是:一种具有远程操控功能的柔软型智能颈椎牵引器,包括从上到下依次设置的颈托、牵引调节机构和基座,所述牵引调节机构包括三个依次从上到下设置的牵引调节单元和牵引控制机构,三个牵引调节单元均与牵引控制机构电连接,所述牵引调节单元包括牵引控制气囊和连接组件,所述颈托、牵引控制气囊和基座的横截面均为开口圆环,所述连接组件设置在牵引控制气囊的开口两端;
所述牵引控制气囊上设有充气孔,所述牵引控制气囊通过充气孔与牵引控制机构连通,所述牵引控制气囊的内侧设有药包放置口带,所述牵引控制气囊的内部设有压力传感器;
所述牵引控制机构包括气管和牵引控制单元,所述牵引控制单元通过气管与牵引控制气囊连通,所述牵引控制单元包括外壳、设置在外壳上的显示界面和控制按键、设置在外壳内的充气泵,所述充气泵与气管连通;
所述外壳内设有中央控制装置,所述中央控制装置包括中央控制系统、与中央控制系统连接的无线通讯模块、显示控制模块、按键控制模块、充气控制模块、压力检测模块和工作电源模块,所述显示界面与显示控制模块电连接,所述控制按键与按键控制模块电连接,所述充气泵与充气控制模块电连接,所述压力传感器与压力检测模块电连接;
所述充气控制模块包括充气控制电路,所述充气控制电路包括电容、第一电阻、第二电阻和三极管,所述三极管的发射极接地,所述三极管的集电极通过第二电阻外接5V直流电压电源,所述三极管的基极通过电容和第一电阻组成的串联电路接地。
作为优选,为了提高颈椎牵引器的连接紧固程度,所述连接组件包括固定块和连接带,所述固定块和连接带分别位于牵引控制气囊的两端,所述连接带的一端设置在牵引控制气囊上,所述连接带的另一端设有连接块,所述连接带通过连接块与固定块连接。
作为优选,为了进一步提高颈椎牵引器的连接紧固程度,所述固定块上设有带钩的刺毛,所述连接块上设有圆毛。
作为优选,为了进一步提高颈椎牵引器的连接紧固程度,所述圆毛的材质为纤维。
作为优选,为了提高颈椎牵引器的牵引的可靠性,所述充气泵为气体增压泵。
作为优选,为了保证颈椎牵引器的无线信号传输可靠性,所述无线通讯模 块通过WIFI传输无线信号。
作为优选,为了保证颈椎牵引器的工作可靠性和可持续工作能力,所述工作电源模块电连接有蓄电池,所述蓄电池为三氟锂电池。
作为优选,为了保证颈椎牵引器的充气泵控制的可靠性,所述三极管为NPN三极管。
本发明的有益效果是,该具有远程操控功能的柔软型智能颈椎牵引器通过无线通讯模块实现了用户对设备的工作状态进行实时监控;再通过充气泵给牵引控制气囊充气,同时通过压力传感器对牵引控制气囊中的压力进行检测,随后反馈,从而保证了牵引控制气囊的牵引可靠性,从而提高了颈椎牵引器的可靠性。
附图说明
下面结合附图和实施例对本发明进一步说明。
图1是本发明的具有远程操控功能的柔软型智能颈椎牵引器的结构示意图;
图2是本发明的具有远程操控功能的柔软型智能颈椎牵引器的牵引调节单元的结构示意图;
图3是本发明的具有远程操控功能的柔软型智能颈椎牵引器的系统原理图;
图4是本发明的具有远程操控功能的柔软型智能颈椎牵引器的充气控制电路的电路原理图;
图中:1.颈托,2.牵引控制气囊,3.基座,4.充气孔,5.气管,6.外壳,7.显示界面,8.控制按键,9.固定块,10.连接带,11.连接块,12.药包放置口带,13.充气泵,14.压力传感器,15.中央控制系统,16.无线通讯模块,17.显示控制模块,18.按键控制模块,19.充气控制模块,20.压力检测模块,21.工作电源模块,22.蓄电池,C1.电容,R1.第一电阻,R2.第二电阻,Q1.三极管。
具体实施方式
现在结合附图对本发明作进一步详细的说明。这些附图均为简化的示意图,仅以示意方式说明本发明的基本结构,因此其仅显示与本发明有关的构成。
如图1-图4所示,一种具有远程操控功能的柔软型智能颈椎牵引器,包括从上到下依次设置的颈托1、牵引调节机构和基座3,所述牵引调节机构包括三个依次从上到下设置的牵引调节单元和牵引控制机构,三个牵引调节单元均与牵引控制机构电连接,所述牵引调节单元包括牵引控制气囊2和连接组件,所述颈托1、牵引控制气囊2和基座3的横截面均为开口圆环,所述连接组件设置在牵引控制气囊2的开口两端;
所述牵引控制气囊2上设有充气孔4,所述牵引控制气囊2通过充气孔4与牵引控制机构连通,所述牵引控制气囊2的内侧设有药包放置口带12,所述牵引控制气囊2的内部设有压力传感器14;
所述牵引控制机构包括气管5和牵引控制单元,所述牵引控制单元通过气管5与牵引控制气囊2连通,所述牵引控制单元包括外壳6、设置在外壳6上的显示界面7和控制按键8、设置在外壳6内的充气泵13,所述充气泵13与气管5连通;
所述外壳6内设有中央控制装置,所述中央控制装置包括中央控制系统15、与中央控制系统15连接的无线通讯模块16、显示控制模块17、按键控制模块18、充气控制模块19、压力检测模块20和工作电源模块21,所述显示界面7与显示控制模块17电连接,所述控制按键8与按键控制模块18电连接,所述充气泵13与充气控制模块19电连接,所述压力传感器14与压力检测模块20电连接;
所述充气控制模块19包括充气控制电路,所述充气控制电路包括电容C1、 第一电阻R1、第二电阻R2和三极管Q1,所述三极管Q1的发射极接地,所述三极管Q1的集电极通过第二电阻R2外接5V直流电压电源,所述三极管Q1的基极通过电容C1和第一电阻R1组成的串联电路接地。
作为优选,为了提高颈椎牵引器的连接紧固程度,所述连接组件包括固定块9和连接带10,所述固定块9和连接带10分别位于牵引控制气囊2的两端,所述连接带10的一端设置在牵引控制气囊2上,所述连接带10的另一端设有连接块11,所述连接带10通过连接块11与固定块9连接。
作为优选,为了进一步提高颈椎牵引器的连接紧固程度,所述固定块9上设有带钩的刺毛,所述连接块11上设有圆毛。
作为优选,为了进一步提高颈椎牵引器的连接紧固程度,所述圆毛的材质为纤维。
作为优选,为了提高颈椎牵引器的牵引的可靠性,所述充气泵13为气体增压泵。
作为优选,为了保证颈椎牵引器的无线信号传输可靠性,所述无线通讯模块16通过WIFI传输无线信号。
作为优选,为了保证颈椎牵引器的工作可靠性和可持续工作能力,所述工作电源模块21电连接有蓄电池22,所述蓄电池22为三氟锂电池。
作为优选,为了保证颈椎牵引器的充气泵13控制的可靠性,所述三极管Q1为NPN三极管。
该具有远程操控功能的柔软型智能颈椎牵引器的工作原理是:颈托1、牵引调节机构和基座3从上到下依次设置,颈托1用于对托住用户的颈椎;基座3便于设备固定在用户肩膀处;牵引调节机构用于控制设备的牵引,保证对用户的颈椎进行牵引。
该具有远程操控功能的柔软型智能颈椎牵引器的牵引调节机构的工作原理是:充气泵13通过气管5与充气孔4连通,则充气泵13就可以控制牵引控制气囊2的升降;药包放置口带12用来放置药包,用来对用户的颈椎进行治疗,提高了设备的可靠性;压力传感器14用来对牵引控制气囊2中的压力进行检测,从而保证对用户的颈椎的牵引始终达到一定力度,如果达不到,充气泵13就会再次通过,给牵引控制气囊2充气。
该具有远程操控功能的柔软型智能颈椎牵引器中:无线通讯模块16用于保证用户对设备的工作状态进行实时监控;显示控制模块17用来控制显示界面7显示相关设备信息;按键控制模块18便于用于通过控制按键8对设备进行简单控制;充气控制模块19用于控制充气泵13的工作,对牵引控制气囊2充气;压力检测模块20用于对压力传感器14的测量信息进行分析,从而反馈给充气控制模块19,提高了智能颈椎牵引器的牵引可靠性;工作电源模块21用于保证各个模块的正常工作,提高了设备的可靠性;中央控制系统15用于控制各个模块,提高了设备的智能化程度。
该具有远程操控功能的柔软型智能颈椎牵引器中的充气控制电路,通过简单的驱动三极管Q1的开关电路,对充气泵13进行控制,不仅保证了控制的可靠性,还降低了设计成本。
与现有技术相比,该具有远程操控功能的柔软型智能颈椎牵引器通过无线通讯模块16实现了用户对设备的工作状态进行实时监控;再通过充气泵13给牵引控制气囊2充气,同时通过压力传感器14对牵引控制气囊2中的压力进行检测,随后反馈,从而保证了牵引控制气囊2的牵引可靠性,从而提高了颈椎牵引器的可靠性。
以上述依据本发明的理想实施例为启示,通过上述的说明内容,相关工作 人员完全可以在不偏离本项发明技术思想的范围内,进行多样的变更以及修改。本项发明的技术性范围并不局限于说明书上的内容,必须要根据权利要求范围来确定其技术性范围。

Claims (8)

  1. 一种具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,包括从上到下依次设置的颈托(1)、牵引调节机构和基座(3),所述牵引调节机构包括三个依次从上到下设置的牵引调节单元和牵引控制机构,三个牵引调节单元均与牵引控制机构电连接,所述牵引调节单元包括牵引控制气囊(2)和连接组件,所述颈托(1)、牵引控制气囊(2)和基座(3)的横截面均为开口圆环,所述连接组件设置在牵引控制气囊(2)的开口两端;
    所述牵引控制气囊(2)上设有充气孔(4),所述牵引控制气囊(2)通过充气孔(4)与牵引控制机构连通,所述牵引控制气囊(2)的内侧设有药包放置口带(12),所述牵引控制气囊(2)的内部设有压力传感器(14);
    所述牵引控制机构包括气管(5)和牵引控制单元,所述牵引控制单元通过气管(5)与牵引控制气囊(2)连通,所述牵引控制单元包括外壳(6)、设置在外壳(6)上的显示界面(7)和控制按键(8)、设置在外壳(6)内的充气泵(13),所述充气泵(13)与气管(5)连通;
    所述外壳(6)内设有中央控制装置,所述中央控制装置包括中央控制系统(15)、与中央控制系统(15)连接的无线通讯模块(16)、显示控制模块(17)、按键控制模块(18)、充气控制模块(19)、压力检测模块(20)和工作电源模块(21),所述显示界面(7)与显示控制模块(17)电连接,所述控制按键(8)与按键控制模块(18)电连接,所述充气泵(13)与充气控制模块(19)电连接,所述压力传感器(14)与压力检测模块(20)电连接;
    所述充气控制模块(19)包括充气控制电路,所述充气控制电路包括电容(C1)、第一电阻(R1)、第二电阻(R2)和三极管(Q1),所述三极管(Q1)的发射极接地,所述三极管(Q1)的集电极通过第二电阻(R2)外接5V直流电压电源,所述三极管(Q1)的基极通过电容(C1)和第一电阻(R1)组成的串联 电路接地。
  2. 如权利要求1所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述连接组件包括固定块(9)和连接带(10),所述固定块(9)和连接带(10)分别位于牵引控制气囊(2)的两端,所述连接带(10)的一端设置在牵引控制气囊(2)上,所述连接带(10)的另一端设有连接块(11),所述连接带(10)通过连接块(11)与固定块(9)连接。
  3. 如权利要求2所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述固定块(9)上设有带钩的刺毛,所述连接块(11)上设有圆毛。
  4. 如权利要求3所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述圆毛的材质为纤维。
  5. 如权利要求1所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述充气泵(13)为气体增压泵。
  6. 如权利要求1所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述无线通讯模块(16)通过WIFI传输无线信号。
  7. 如权利要求1所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述工作电源模块(21)电连接有蓄电池(22),所述蓄电池(22)为三氟锂电池。
  8. 如权利要求1所述的具有远程操控功能的柔软型智能颈椎牵引器,其特征在于,所述三极管(Q1)为NPN三极管。
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