WO2017088337A1 - 一种基于物联网的具有全球定位功能的简易呼吸器 - Google Patents

一种基于物联网的具有全球定位功能的简易呼吸器 Download PDF

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WO2017088337A1
WO2017088337A1 PCT/CN2016/077601 CN2016077601W WO2017088337A1 WO 2017088337 A1 WO2017088337 A1 WO 2017088337A1 CN 2016077601 W CN2016077601 W CN 2016077601W WO 2017088337 A1 WO2017088337 A1 WO 2017088337A1
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global positioning
valve
module
positioning function
component
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PCT/CN2016/077601
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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
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/021Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes operated by electrical means
    • A61M16/022Control means therefor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/0051Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes with alarm devices

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  • the invention relates to a simple respirator with global positioning function based on the Internet of Things.
  • the technical problem to be solved by the present invention is to provide an Internet-based simple respirator with global positioning function with global positioning function and safety detection function in order to overcome the deficiencies of the prior art and the lack of safety detection function.
  • a simple respirator with global positioning function based on the Internet of Things comprising a breathing component, a gas storage component and a central control device, wherein the respiratory component is connected with the gas storage component,
  • the central control device is electrically connected to the respiratory component and the gas storage component, respectively,
  • the respiratory component comprises a breathing tube, a respiratory isolation component disposed at one end of the respiratory conduit, and an airbag disposed at the other end of the respiratory conduit, wherein the respiratory conduit is provided Pressure relief valve
  • the gas storage assembly includes an intake passage, an intake valve disposed at one end of the intake passage, a storage bladder disposed at the other end of the intake passage, an oxygen storage valve disposed at both sides of the intake passage, and a gas storage safety valve.
  • the intake passage is connected to the air bag through an intake valve, and the air intake passage is provided with a central control device;
  • the respiratory isolation assembly includes an air inlet nozzle, two exhalation valves, and an inhalation valve, the intake nozzle, the exhalation valve, and the inhalation valve are both disposed at one end of the breathing duct, and the exhalation valve is located at the air inlet nozzle On both sides, the inhalation valve is located above the air inlet nozzle and is disposed in the breathing duct;
  • the central control device includes a central control system, a wireless communication module connected to the central control system, a pressure detection module, an alarm prompt module, a display control module, a button control module, a working power module, and a global positioning module.
  • the pressure safety valve, the oxygen storage valve and the gas storage safety valve are each provided with a pressure sensor, and the pressure sensor is electrically connected to the pressure detecting module.
  • the display control module is electrically connected with a display interface
  • the button control module is electrically connected with a control button
  • the wireless communication module is electrically connected to the intelligent communication terminal, and the intelligent communication terminal is a smart phone.
  • the global positioning module adopts a chip model of VK1613A9M3.
  • the inhalation valve is a duckbill check valve.
  • the central control device is provided with a battery, and the battery is electrically connected to the working power module.
  • the button control module comprises a button control circuit
  • the button control circuit comprises a resistor, a switch and a capacitor, and one end of the series circuit composed of the switch and the resistor is grounded, the switch The other end of the series circuit composed of resistors is externally connected with a 5V DC voltage source, which is connected in parallel with the switch.
  • the invention has the beneficial effects that the IoT-based simple respirator with global positioning function realizes wireless connection with an external intelligent communication terminal through a wireless communication module, so that the user uses the device.
  • Real-time monitoring of the situation improves the applicability of the device; global positioning through the global positioning module enables the rescuer to locate it in real time, improve rescue efficiency, thereby improving the utility of the device, and at the same time, through the pressure sensor to the pressure safety valve,
  • the pressures of the oxygen storage valve and the gas storage safety valve are monitored in real time to prevent damage to the device caused by excessive pressure and improve the reliability of the device.
  • FIG. 1 is a schematic structural view of an IOT-based simple respirator with global positioning function according to the present invention
  • FIG. 2 is a schematic diagram of a system based on the Internet of Things-based simple respirator with global positioning function of the present invention
  • FIG. 3 is a circuit schematic diagram of a button control circuit of a simple respirator with global positioning function based on the Internet of Things according to the present invention
  • an IoT-based simple respirator with global positioning function includes a respiratory component, a gas storage component and a central control device 7, and the respiratory component is connected to a gas storage component,
  • the central control device 7 is electrically connected to the breathing assembly and the gas storage assembly, respectively, the breathing assembly comprising a breathing conduit 4, a respiratory isolation assembly disposed at one end of the breathing conduit 4, and an air bag 6 disposed at the other end of the breathing conduit 4, the breathing conduit 4 is provided with a pressure relief valve 5;
  • the gas storage assembly includes an intake passage, an intake valve 8 disposed at one end of the intake passage, a storage air bag 11 disposed at the other end of the intake passage, an oxygen storage valve 9 disposed at both sides of the intake passage, and a gas storage safety
  • the valve 10 the intake passage is connected to the air bag 6 through the intake valve 8, the air intake passage is provided with a central control device 7;
  • the respiratory isolation assembly includes an intake nozzle 1, two exhalation valves 2, and an inhalation valve 3, and the intake nozzle 1, the exhalation valve 2, and the inhalation valve 3 are both disposed at one end of the breathing duct 4,
  • the exhalation valve 2 is located at two sides of the air inlet nozzle 1, and the inhalation valve 3 is located above the air inlet nozzle 1 and disposed in the breathing duct 4;
  • the central control device 7 includes a central control system 13, a wireless communication module 14 connected to the central control system 13, a pressure detection module 15, an alarm prompting module 16, a display control module 17, a button control module 18, a working power module 19, and a global system. Positioning module 20.
  • the pressure relief valve 5, the oxygen storage valve 9 and the gas storage safety valve 10 are each provided with a pressure sensor 12, which is electrically connected to the pressure detecting module 15.
  • the display control module 17 is electrically connected to the display interface 21, and the button control module 18 is electrically connected to the control button 22.
  • the wireless communication module 14 is electrically connected to the intelligent communication terminal 23, and the intelligent communication terminal 23 is a smart phone.
  • the global positioning module 20 employs a chip type VK1613A9M3.
  • the inhalation valve 3 is a duckbill check valve.
  • the central control device 7 is provided There is a battery 24 that is electrically connected to the operating power module 19.
  • the button control module 18 includes a button control circuit including a resistor R1, a switch S1 and a capacitor C1, and the series circuit of the switch S1 and the resistor R1 One end is grounded, and the other end of the series circuit composed of the switch S1 and the resistor R1 is externally connected with a 5V DC voltage power supply, and the capacitor C1 is connected in parallel with the switch S1.
  • the IoT-based simple respirator with global positioning function works by: the breathing component is connected with the gas storage component to ensure easy breathing of the user, wherein the central control device 7 detects and protects the device in real time, thereby improving The reliability and practicality of the device.
  • the breathing assembly the user exhales and inhales through the air inlet 1.
  • the inhalation valve 3 is automatically closed, and the two exhalation valves 2 are opened, and the exhaled gas is opened. It will be discharged from the exhalation channel on both sides of the air inlet 1.
  • the inhalation valve 3 will automatically open, the two exhalation valves 2 will be closed, and the oxygen will be from the breathing tube.
  • the pressure safety valve 5 provided on the breathing duct 4 is used for detecting the oxygen pressure in the breathing duct 4 to prevent the pressure from being damaged by the excessive pressure; the airbag 6 is used to assist the user in oxygen absorption.
  • the intake valve 8 is used to control the oxygen in the air bag 11 to enter the air bag 6, for the user to absorb oxygen; the oxygen storage valve 9 and the gas storage safety valve 10 on both sides of the intake passage, the oxygen storage valve 9 is used for communicating with an external oxygen storage tank, and storing oxygen in the air storage tank 11, the gas storage safety valve 10 prevents the pressure in the air storage tank 11 from being excessively large, damaging the air storage tank 11, and improving the reliability of the device.
  • the wireless communication module 14 is used for wireless connection with the external intelligent communication terminal 23, realizing real-time monitoring of the device usage by the user, and improving the practicability of the device;
  • the pressure detecting module 15 monitors the pressures of the pressure safety valve 5, the oxygen storage valve 9 and the gas storage safety valve 10 through the pressure sensor 12 in real time, prevents the pressure from being excessively damaged, and improves the reliability of the device;
  • Module 16 is used to prompt the user, The user is prevented from operating by mistake;
  • the display control module 17 and the button control module 18 are respectively used to control the display interface 21 and the control button 22 to improve the operability of the device;
  • the working power module 19 is used to provide a stable voltage to each module of the device to ensure The normal operation of the device;
  • the global positioning module 20 is used for global positioning, so that the rescuer can locate it in real time, improve the rescue efficiency, thereby improving the utility of the device;
  • the central control system 13 is used to control each module to ensure the modules Working properly improves the reliability and intelligence of the device
  • the button control circuit in the simple respirator with global positioning function based on the Internet of Things achieves the reliability of receiving the action signal of the control button 22 by a simple circuit structure design.
  • the resistor R1 is used to protect the switch S1, to prevent the spike voltage from impacting on it, and to damage the switch S1.
  • the capacitor C1 is used for absorbing external surge current, which improves the reliability of signal reception.
  • the IoT-based simple respirator with global positioning function is wirelessly connected to the external intelligent communication terminal 23 through the wireless communication module 14, so that the user can monitor the usage of the device in real time, thereby improving the device.
  • Practicality; global positioning by the global positioning module 20 enables the rescuer to locate it in real time, improve rescue efficiency, thereby improving the utility of the device, and simultaneously through the pressure sensor 12 to the pressure safety valve 5, the oxygen storage valve 9 and The pressures in the gas storage safety valve 10 are monitored in real time to prevent damage to the device caused by excessive pressure and improve the reliability of the device.

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  • Health & Medical Sciences (AREA)
  • Emergency Medicine (AREA)
  • Pulmonology (AREA)
  • Engineering & Computer Science (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Respiratory Apparatuses And Protective Means (AREA)

Abstract

一种基于物联网的具有全球定位功能的简易呼吸器,包括呼吸组件、储气组件和中央控制装置(7),所述呼吸组件与储气组件连接,所述中央控制装置(7)分别与呼吸组件和储气组件电连接,该基于物联网的具有全球定位功能的简易呼吸器通过无线通讯模块(14)实现与外部智能通讯终端(23)无线连接,使得使用者对装置的使用情况进行实时监控,提高了装置的实用性;通过全球定位模块(20)实现全球定位,使得营救者对其进行实时定位,提高营救效率,从而提高了装置的实用性,同时通过压力传感器(12)对压力安全阀(5)、储氧阀(9)和储气安全阀(10)各处的压力进行实时监测,防止压力过大对装置进行损坏,提高了装置的可靠性。

Description

一种基于物联网的具有全球定位功能的简易呼吸器 技术领域
本发明涉及一种基于物联网的具有全球定位功能的简易呼吸器。
背景技术
在现代社会,随着科学技术水平的不断提高,人们的生活质量也不断提升。在医疗领域,各种精致的医疗器械给人们带来了很大的便利。
在人们野外旅行时,往往会碰到意外情况,而且在紧急情况下,需要对伤者进行供氧,由于现在的供氧设备较大,无法随身携带。有些简易的呼吸器,但是由于它们缺少很好的检测功能,会导致浪费或者使用不到位,影响了其实用性。不仅如此,单一的供氧功能,已经无法满足人们对于现代化电子设备的要求。
发明内容
本发明要解决的技术问题是:为了克服现有技术功能单一且缺少安全检测功能的不足,提供一种具有全球定位功能且具有安全检测功能的基于物联网的具有全球定位功能的简易呼吸器。
本发明解决其技术问题所采用的技术方案是:一种基于物联网的具有全球定位功能的简易呼吸器,包括呼吸组件、储气组件和中央控制装置,所述呼吸组件与储气组件连接,所述中央控制装置分别与呼吸组件和储气组件电连接,所述呼吸组件包括呼吸管道、设置在呼吸管道一端的呼吸隔离组件和设置在呼吸管道另一端的气囊,所述呼吸管道上设有压力安全阀;
所述储气组件包括进气通道、设置在进气通道一端的进气阀、设置在进气通道另一端的储气囊、设置在进气通道两侧的储氧阀和储气安全阀,所述进气通道通过进气阀与气囊连通,所述进气通道上设有中央控制装置;
所述呼吸隔离组件包括进气嘴、两个呼气阀和吸气阀,所述进气嘴、呼气阀和吸气阀均设置在呼吸管道的一端,所述呼气阀位于进气嘴的两侧,所述吸气阀位于进气嘴的上方且设置在呼吸管道内;
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、压力检测模块、报警提示模块、显示控制模块、按键控制模块、工作电源模块和全球定位模块。
作为优选,为了提高呼吸器的可靠性,所述压力安全阀、储氧阀和储气安全阀上均设有压力传感器,所述压力传感器与压力检测模块电连接。
作为优选,为了提高呼吸器的实用性和可操作性,所述显示控制模块电连接有显示界面,所述按键控制模块电连接有控制按键。
作为优选,为了提高呼吸器的无线通讯可靠性,所述无线通讯模块电连接有智能通讯终端,所述智能通讯终端为智能手机。
作为优选,为了提高呼吸器的全球定位的可靠性,所述全球定位模块采用的芯片型号为VK1613A9M3。
作为优选,为了提高呼吸器的可靠性,所述吸气阀为鸭嘴单向阀。
作为优选,为了提高呼吸器的可持续工作能力,所述中央控制装置中设有蓄电池,所述蓄电池与工作电源模块电连接。
作为优选,为了提高呼吸器的操作可靠性,所述按键控制模块包括按键控制电路,所述按键控制电路包括电阻、开关和电容,所述开关和电阻组成的串联电路的一端接地,所述开关和电阻组成的串联电路的另一端外接5V直流电压电源,所述电容与开关并联。
本发明的有益效果是,该基于物联网的具有全球定位功能的简易呼吸器通过无线通讯模块实现与外部智能通讯终端无线连接,使得使用者对装置的使用 情况进行实时监控,提高了装置的实用性;通过全球定位模块实现全球定位,使得营救者对其进行实时定位,提高营救效率,从而提高了装置的实用性,同时通过压力传感器对压力安全阀、储氧阀和储气安全阀各处的压力进行实时监测,防止压力过大对装置进行损坏,提高了装置的可靠性。
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是本发明的基于物联网的具有全球定位功能的简易呼吸器的结构示意图;
图2是本发明的基于物联网的具有全球定位功能的简易呼吸器的系统原理图;
图3是本发明的基于物联网的具有全球定位功能的简易呼吸器的按键控制电路的电路原理图;
图中:1.进气嘴,2.呼气阀,3.吸气阀,4.呼吸管道,5.压力安全阀,6.气囊,7.中央控制装置,8.进气阀,9.储氧阀,10.储气安全阀,11.储气囊,12.压力传感器,13.中央控制系统,14.无线通讯模块,15.压力检测模块,16.报警提示模块,17.显示控制模块,18.按键控制模块,19.工作电源模块,20.全球定位模块,21.显示界面,22.控制按键,23.智能通讯终端,24.蓄电池,R1.电阻,S1.开关,C1.电容。
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3所示,一种基于物联网的具有全球定位功能的简易呼吸器,包括呼吸组件、储气组件和中央控制装置7,所述呼吸组件与储气组件连接,所述 中央控制装置7分别与呼吸组件和储气组件电连接,所述呼吸组件包括呼吸管道4、设置在呼吸管道4一端的呼吸隔离组件和设置在呼吸管道4另一端的气囊6,所述呼吸管道4上设有压力安全阀5;
所述储气组件包括进气通道、设置在进气通道一端的进气阀8、设置在进气通道另一端的储气囊11、设置在进气通道两侧的储氧阀9和储气安全阀10,所述进气通道通过进气阀8与气囊6连通,所述进气通道上设有中央控制装置7;
所述呼吸隔离组件包括进气嘴1、两个呼气阀2和吸气阀3,所述进气嘴1、呼气阀2和吸气阀3均设置在呼吸管道4的一端,所述呼气阀2位于进气嘴1的两侧,所述吸气阀3位于进气嘴1的上方且设置在呼吸管道4内;
所述中央控制装置7包括中央控制系统13、与中央控制系统13连接的无线通讯模块14、压力检测模块15、报警提示模块16、显示控制模块17、按键控制模块18、工作电源模块19和全球定位模块20。
作为优选,为了提高呼吸器的可靠性,所述压力安全阀5、储氧阀9和储气安全阀10上均设有压力传感器12,所述压力传感器12与压力检测模块15电连接。
作为优选,为了提高呼吸器的实用性和可操作性,所述显示控制模块17电连接有显示界面21,所述按键控制模块18电连接有控制按键22。
作为优选,为了提高呼吸器的无线通讯可靠性,所述无线通讯模块14电连接有智能通讯终端23,所述智能通讯终端23为智能手机。
作为优选,为了提高呼吸器的全球定位的可靠性,所述全球定位模块20采用的芯片型号为VK1613A9M3。
作为优选,为了提高呼吸器的可靠性,所述吸气阀3为鸭嘴单向阀。
作为优选,为了提高呼吸器的可持续工作能力,所述中央控制装置7中设 有蓄电池24,所述蓄电池24与工作电源模块19电连接。
作为优选,为了提高呼吸器的操作可靠性,所述按键控制模块18包括按键控制电路,所述按键控制电路包括电阻R1、开关S1和电容C1,所述开关S1和电阻R1组成的串联电路的一端接地,所述开关S1和电阻R1组成的串联电路的另一端外接5V直流电压电源,所述电容C1与开关S1并联。
该基于物联网的具有全球定位功能的简易呼吸器的工作原理是:呼吸组件与储气组件连通,保证了使用者进行简易的呼吸,其中中央控制装置7对装置进行实时检测和保护,提高了装置的可靠性和实用性。呼吸组件中,使用者通过进气嘴1进行呼气和吸气,当呼气时,由于压力作用,则吸气阀3就会自动关闭,两个呼气阀2就会打开,呼出的气体就会从进气嘴1两侧的呼气通道排出,当吸气时,由于压力作用,则吸气阀3就会自动打开,两个呼气阀2就会关闭,氧气就会从呼吸管道4中流出,供使用者进行吸氧。呼吸管道4上设有的压力安全阀5用于对呼吸管道4内的氧气压力进行检测,防止压力过大损坏装置;气囊6用于辅助使用者进行吸氧。储气组件中,进气阀8用于控制储气囊11中的氧气进入到气囊6中,供使用者吸氧;进气通道两侧的储氧阀9和储气安全阀10,储氧阀9用于与外部储氧罐进行连通,对储气囊11中进行储存氧气,储气安全阀10防止储气囊11中压力过大,损坏储气囊11,提高装置的可靠性。
该基于物联网的具有全球定位功能的简易呼吸器中,无线通讯模块14用于与外部智能通讯终端23实现无线连接,实现使用者对装置的使用情况进行实时监控,提高了装置的实用性;压力检测模块15通过压力传感器12对压力安全阀5、储氧阀9和储气安全阀10各处的压力进行实时监测,防止压力过大对装置进行损坏,提高了装置的可靠性;报警提示模块16用于向使用者发出提示, 防止使用者误操作;显示控制模块17和按键控制模块18分别用于控制显示界面21和控制按键22,提高了装置的可操作性;工作电源模块19用于给装置各个模块提供稳定电压,保证装置的正常工作;全球定位模块20用于实现全球定位,使得营救者对其进行实时定位,提高营救效率,从而提高了装置的实用性;中央控制系统13用于控制各个模块,保证各个模块的正常工作,提高了装置的可靠性和智能化。
该基于物联网的具有全球定位功能的简易呼吸器中的按键控制电路通过简单的电路结构设计,达到了对控制按键22动作信号接收的可靠性。其中电阻R1用于保护开关S1,防止尖峰电压对其冲击,损坏开关S1,电容C1用于吸收外部涌流,提高了对信号接收的可靠性。
与现有技术相比,该基于物联网的具有全球定位功能的简易呼吸器通过无线通讯模块14实现与外部智能通讯终端23无线连接,使得使用者对装置的使用情况进行实时监控,提高了装置的实用性;通过全球定位模块20实现全球定位,使得营救者对其进行实时定位,提高营救效率,从而提高了装置的实用性,同时通过压力传感器12对压力安全阀5、储氧阀9和储气安全阀10各处的压力进行实时监测,防止压力过大对装置进行损坏,提高了装置的可靠性。
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. 一种基于物联网的具有全球定位功能的简易呼吸器,其特征在于,包括呼吸组件、储气组件和中央控制装置(7),所述呼吸组件与储气组件连接,所述中央控制装置(7)分别与呼吸组件和储气组件电连接,所述呼吸组件包括呼吸管道(4)、设置在呼吸管道(4)一端的呼吸隔离组件和设置在呼吸管道(4)另一端的气囊(6),所述呼吸管道(4)上设有压力安全阀(5);
    所述储气组件包括进气通道、设置在进气通道一端的进气阀(8)、设置在进气通道另一端的储气囊(11)、设置在进气通道两侧的储氧阀(9)和储气安全阀(10),所述进气通道通过进气阀(8)与气囊(6)连通,所述进气通道上设有中央控制装置(7);
    所述呼吸隔离组件包括进气嘴(1)、两个呼气阀(2)和吸气阀(3),所述进气嘴(1)、呼气阀(2)和吸气阀(3)均设置在呼吸管道(4)的一端,所述呼气阀(2)位于进气嘴(1)的两侧,所述吸气阀(3)位于进气嘴(1)的上方且设置在呼吸管道(4)内;
    所述中央控制装置(7)包括中央控制系统(13)、与中央控制系统(13)连接的无线通讯模块(14)、压力检测模块(15)、报警提示模块(16)、显示控制模块(17)、按键控制模块(18)、工作电源模块(19)和全球定位模块(20)。
  2. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述压力安全阀(5)、储氧阀(9)和储气安全阀(10)上均设有压力传感器(12),所述压力传感器(12)与压力检测模块(15)电连接。
  3. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述显示控制模块(17)电连接有显示界面(21),所述按键控制模块(18)电连接有控制按键(22)。
  4. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其 特征在于,所述无线通讯模块(14)电连接有智能通讯终端(23),所述智能通讯终端(23)为智能手机。
  5. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述全球定位模块(20)采用的芯片型号为VK1613A9M3。
  6. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述吸气阀(3)为鸭嘴单向阀。
  7. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述中央控制装置(7)中设有蓄电池(24),所述蓄电池(24)与工作电源模块(19)电连接。
  8. 如权利要求1所述的基于物联网的具有全球定位功能的简易呼吸器,其特征在于,所述按键控制模块(18)包括按键控制电路,所述按键控制电路包括电阻(R1)、开关(S1)和电容(C1),所述开关(S1)和电阻(R1)组成的串联电路的一端接地,所述开关(S1)和电阻(R1)组成的串联电路的另一端外接5V直流电压电源,所述电容(C1)与开关(S1)并联。
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