TW202319741A - Electronic moisture absorption system and moisture absorption sensing method thereof - Google Patents

Electronic moisture absorption system and moisture absorption sensing method thereof Download PDF

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TW202319741A
TW202319741A TW110142313A TW110142313A TW202319741A TW 202319741 A TW202319741 A TW 202319741A TW 110142313 A TW110142313 A TW 110142313A TW 110142313 A TW110142313 A TW 110142313A TW 202319741 A TW202319741 A TW 202319741A
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electrode
amplifier
electronic
electrically connected
moisture absorption
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TW110142313A
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TWI797832B (en
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黄竹熊
林育德
李承霖
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黄竹熊
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N27/00Investigating or analysing materials by the use of electric, electrochemical, or magnetic means
    • G01N27/02Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance
    • G01N27/04Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance
    • G01N27/048Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance for determining moisture content of the material

Abstract

An electronic moisture absorption system and a moisture absorption sensing method thereof are provided. The electronic moisture absorption system includes a moisture absorption object and an electronic sensing device. The moisture absorbing object includes a water-absorbing layer, a waterproof layer, and a sensing electrode. The waterproof layer is disposed on the water-absorbing layer. The sensing electrode is formed on the waterproof layer and includes a first electrode portion and a second electrode portion. The first electrode part and the second electrode part are spaced apart from each other. After the electronic sensing device contacts to the sensing electrode, an electrical signal is outputted. The electronic sensing device calculates an impedance data of the water-absorbing layer according to voltage change of the electrical signal passing through the first electrode portion and the second electrode portion and generates humidity data according to the impedance data.

Description

電子吸濕系統及其吸濕感測方法Electronic moisture absorption system and moisture absorption sensing method thereof

本申請是有關於一種電子吸濕系統及其吸濕感測方法,特別是關於一種可測量吸濕物件之吸水量的之一種電子吸濕系統及其吸濕感測方法。The present application relates to an electronic moisture absorption system and its moisture absorption sensing method, in particular to an electronic moisture absorption system capable of measuring the water absorption of a hygroscopic object and its moisture absorption sensing method.

對於安養院或是醫院來說,失禁照護用品,例如紙尿褲的使用十分頻繁。為了確保住戶或是病患的身體健康,須定時更換紙尿褲。然而,若是過度頻繁的更換,將會使得失禁用品的成本十分高昂,難以負荷。For nursing homes or hospitals, incontinence care products, such as diapers, are frequently used. In order to ensure the health of residents or patients, diapers must be changed regularly. However, if the replacement is too frequent, the cost of incontinence products will be very high, which is difficult to bear.

而為了確認紙尿褲是否需要更換,除了以人工確認之外,目前已有若干種方法。如圖11所示,習知的量測方法是以量測裝置,藉由設置於紙尿褲91之防水層92上的電極93,量測紙尿褲91的電容值。然而,此種量測方式有諸多的不便。In order to confirm whether the diapers need to be replaced, there are currently several methods besides manual confirmation. As shown in FIG. 11 , the conventional measuring method is to measure the capacitance value of the diaper 91 by means of a measuring device through the electrodes 93 arranged on the waterproof layer 92 of the diaper 91 . However, this measurement method has many inconveniences.

舉例來說,紙尿褲的電容值為十分小的數值,且電極93的覆蓋範圍狹小。因此,如何精確地測量,是十分困難的課題。例如,如何設定設計電路的量測時長,是十分困難的課題。如果量測時長太長,將會導致量測的結果不精確。更重要的是,由於紙尿褲的電容值是隨著吸水量的變化而改變,因此,如何精確的設計量測時長為十分困難的問題。因此,需要一種電子吸濕系統及其吸濕感測方法以改善上述習知問題。For example, the capacitance value of the diaper is very small, and the coverage of the electrode 93 is narrow. Therefore, how to measure accurately is a very difficult subject. For example, how to set the measurement duration of the designed circuit is a very difficult issue. If the measurement time is too long, the measurement result will be inaccurate. More importantly, since the capacitance value of diapers changes with the change of water absorption, how to accurately design the measurement time is a very difficult problem. Therefore, there is a need for an electronic moisture absorption system and its moisture absorption sensing method to improve the above known problems.

本申請提供一種電子吸濕系統及其吸濕感測方法。本申請的電子吸濕系統及其吸濕感測方法是以測量吸濕物件的阻抗的方式計算吸濕物件的吸水量,並且可結合物聯網(Internet of Things, IoT)及大數據(Big Data)分析,節省照護人力。The present application provides an electronic moisture absorption system and a moisture absorption sensing method thereof. The electronic moisture absorption system and its moisture absorption sensing method of the present application calculate the water absorption of the hygroscopic object by measuring the impedance of the hygroscopic object, and can combine the Internet of Things (IoT) and Big Data (Big Data ) analysis, saving care manpower.

基於上述目的,本申請提供一種電子吸濕系統,其包含吸濕物件以及電子感測裝置。吸濕物件包含吸水層、防水層及感測電極。防水層設置於吸水層上。感測電極形成於防水層上,且包含第一電極部及第二電極部。第一電極部及第二電極部相互間隔設置。電子感測裝置與感測電極接觸後,輸出電訊號。電子感測裝置依據通過第一電極部及第二電極部之電訊號之電壓變化,運算產生吸水層之阻抗數據並依據阻抗數據產生濕度資料。Based on the above purpose, the present application provides an electronic hygroscopic system, which includes a hygroscopic article and an electronic sensing device. The hygroscopic article includes a water-absorbing layer, a waterproof layer and a sensing electrode. The waterproof layer is arranged on the water-absorbing layer. The sensing electrode is formed on the waterproof layer and includes a first electrode part and a second electrode part. The first electrode part and the second electrode part are spaced apart from each other. After the electronic sensing device is in contact with the sensing electrode, it outputs an electrical signal. The electronic sensing device calculates the impedance data of the water-absorbing layer according to the voltage change of the electric signal passing through the first electrode part and the second electrode part, and generates humidity data according to the impedance data.

在本申請的一實施例中,第一電極部包含第一主電極及複數個第一分支電極,第二電極部包含第二主電極及複數個第二分支電極,第一主電極與該第二主電極相互間隔平行,複數個第一分支電極自第一主電極之一側向第二主電極延伸,複數個第二分支電極自第二主電極之一側向第一主電極延伸,且各複數個第一分支電極及各該複數個第二分支電極間隔設置。In an embodiment of the present application, the first electrode portion includes a first main electrode and a plurality of first branch electrodes, the second electrode portion includes a second main electrode and a plurality of second branch electrodes, and the first main electrode and the first branch electrodes The two main electrodes are parallel to each other at intervals, a plurality of first branch electrodes extend from one side of the first main electrode to the second main electrode, and a plurality of second branch electrodes extend from one side of the second main electrode to the first main electrode, and Each of the plurality of first branch electrodes and each of the plurality of second branch electrodes are arranged at intervals.

在本申請的一實施例中,複數個第一分支電極與第一主電極垂直,複數個第二分支電極與第二主電極垂直。In an embodiment of the present application, the plurality of first branch electrodes are perpendicular to the first main electrode, and the plurality of second branch electrodes are perpendicular to the second main electrode.

在本申請的一實施例中,電子感測裝置可包含運算電路及峰值檢測電路。運算電路之訊號輸出端與吸水層及該峰值檢測電路之電壓接收端電性連接。峰值檢測電路之電壓輸出端與運算電路之一訊號輸入端電性連接。運算電路輸出電訊號。該峰值檢測電路檢測該電訊號之峰值電壓。運算電路依據峰值電壓運算產生吸水層之阻抗數據,並依據阻抗數據產生濕度資料。In an embodiment of the present application, the electronic sensing device may include an arithmetic circuit and a peak detection circuit. The signal output terminal of the computing circuit is electrically connected with the water-absorbing layer and the voltage receiving terminal of the peak detection circuit. The voltage output terminal of the peak detection circuit is electrically connected with a signal input terminal of the operation circuit. The computing circuit outputs electrical signals. The peak detection circuit detects the peak voltage of the electrical signal. The calculation circuit generates impedance data of the water-absorbing layer according to the peak voltage calculation, and generates humidity data according to the impedance data.

在本申請的一實施例中,運算電路更包含微處理器、第一電阻,電子吸濕系統更包含第一放大器及第二放大器。第一電阻之第一端與微處理器電性連接,第一電阻之第二端經由感測電極與吸水層電性連接。微處理器輸出及接收電訊號,微處理器依據第一端之第一電壓值及第二端之第二電壓值運算產生阻抗數據。第一放大器之第一正極輸入端與第一電阻之第二端電性連接。第一放大器之第一輸出端與峰值檢測電路及第一放大器之第一負極輸入端電性連接。第二放大器之第二正極輸入端與峰值檢測電路電性連接。第二放大器之第二輸出端與第二放大器之第二負極輸入端及微處理器電性連接。In an embodiment of the present application, the operation circuit further includes a microprocessor and a first resistor, and the electronic moisture absorption system further includes a first amplifier and a second amplifier. The first end of the first resistor is electrically connected to the microprocessor, and the second end of the first resistor is electrically connected to the water-absorbing layer through the sensing electrode. The microprocessor outputs and receives electric signals, and the microprocessor calculates and generates impedance data according to the first voltage value of the first terminal and the second voltage value of the second terminal. The first positive input terminal of the first amplifier is electrically connected with the second terminal of the first resistor. The first output end of the first amplifier is electrically connected with the peak detection circuit and the first negative input end of the first amplifier. The second positive input terminal of the second amplifier is electrically connected with the peak detection circuit. The second output terminal of the second amplifier is electrically connected with the second negative input terminal of the second amplifier and the microprocessor.

在本申請的一實施例中,電子吸濕系統更包含第一放大器、峰值檢測電路、及第二放大器。第一放大器之第一正極輸入端與第一電阻之第二端電性連接,第一放大器之第一輸出端與峰值檢測電路及第一放大器之第一負極輸入端電性連接,第二放大器之第二正極輸入端與峰值檢測電路電性連接,第二放大器之第二輸出端與第二放大器之第二負極輸入端及微處理器電性連接。In an embodiment of the present application, the electronic moisture absorption system further includes a first amplifier, a peak detection circuit, and a second amplifier. The first positive input end of the first amplifier is electrically connected to the second end of the first resistor, the first output end of the first amplifier is electrically connected to the peak detection circuit and the first negative input end of the first amplifier, and the second amplifier The second positive input end of the second amplifier is electrically connected with the peak detection circuit, and the second output end of the second amplifier is electrically connected with the second negative input end of the second amplifier and the microprocessor.

在本申請的一實施例中,峰值檢測電路包含第三放大器、二極體、電容及第二電阻,第三放大器之一第三正極輸入端與第一輸出端電性連接,第三放大器之第三輸出端與二極體之一端電性連接,第三放大器之第三負極輸入端與二極體之另一端、第二正極輸入端、電容之一端及第二電阻之一端電性連接,電容及第二電阻並聯,電容之另一端及第二電阻之另一端接地。In one embodiment of the present application, the peak detection circuit includes a third amplifier, a diode, a capacitor, and a second resistor. One of the third positive input terminals of the third amplifier is electrically connected to the first output terminal. The third output end is electrically connected to one end of the diode, the third negative input end of the third amplifier is electrically connected to the other end of the diode, the second positive input end, one end of the capacitor and one end of the second resistor, The capacitor and the second resistor are connected in parallel, and the other end of the capacitor and the other end of the second resistor are grounded.

在本申請的一實施例中,電訊號為方波電訊號,感測電極包含導電油墨及銀離子,感測電極的面積與該防水層的面積比值大於0.3。In an embodiment of the present application, the electric signal is a square wave electric signal, the sensing electrode includes conductive ink and silver ions, and the ratio of the area of the sensing electrode to the area of the waterproof layer is greater than 0.3.

在本申請的一實施例中,電子感測裝置包含通訊單元,通訊單元傳遞該濕度資料至主控裝置。In an embodiment of the present application, the electronic sensing device includes a communication unit, and the communication unit transmits the humidity data to the main control device.

基於上述目的,本申請再提供一種電子吸濕系統之吸濕感測方法,其包含下列步驟:Based on the above purpose, the present application further provides a moisture absorption sensing method of an electronic moisture absorption system, which includes the following steps:

將電子感測裝置與吸濕物件之感測電極相接觸。The electronic sensing device is brought into contact with the sensing electrodes of the absorbent article.

以電子感測裝置輸出電訊號。An electrical signal is output by an electronic sensing device.

以電子感測裝置依據通過該感測電極之該電訊號感測該電訊號之電壓變化,並運算產生該吸濕物件之吸水層之阻抗數據。Sensing the voltage change of the electric signal according to the electric signal passed through the sensing electrode by the electronic sensing device, and calculating and generating the impedance data of the water-absorbing layer of the hygroscopic article.

以電子感測裝置依據阻抗數據產生濕度資料。The humidity data is generated by the electronic sensing device according to the impedance data.

進一步說明,吸濕物件包含吸水層、防水層及感測電極,防水層設置於吸水層上,感測電極形成於防水層上。To further illustrate, the hygroscopic article includes a water-absorbing layer, a waterproof layer and sensing electrodes, the waterproof layer is disposed on the water-absorbing layer, and the sensing electrodes are formed on the waterproof layer.

在本申請的一實施例中,感測電極包含第一電極部及第二電極部,第一電極部及第二電極部相互間隔設置。電子感測裝置包含微處理器、第一電阻、第一放大器、第二放大器、第三放大器、二極體、電容及第二電阻。第一電阻之第一端與微處理器電性連接,第一電阻之第二端經由感測電極與吸水層電性連接,微處理器輸出及接收電訊號,微處理器依據第一端之第一電壓值及第二端之第二電壓值運算產生阻抗數據。第一放大器之第一正極輸入端與第一電阻之該第二端電性連接,第三放大器之第三正極輸入端與第一放大器之第一輸出端電性連接,第三放大器之第三輸出端與二極體之一端電性連接,第三放大器之第三負極輸入端與二極體之另一端、第二放大器之第二正極輸入端、電容之一端及第二電阻之一端電性連接。電容及第二電阻並聯,電容之另一端及第二電阻之另一端接地。In an embodiment of the present application, the sensing electrode includes a first electrode portion and a second electrode portion, and the first electrode portion and the second electrode portion are arranged at intervals from each other. The electronic sensing device includes a microprocessor, a first resistor, a first amplifier, a second amplifier, a third amplifier, a diode, a capacitor and a second resistor. The first end of the first resistor is electrically connected to the microprocessor, the second end of the first resistor is electrically connected to the water-absorbing layer through the sensing electrode, the microprocessor outputs and receives electrical signals, and the microprocessor is based on the first end. The first voltage value and the second voltage value of the second terminal are calculated to generate impedance data. The first positive input terminal of the first amplifier is electrically connected to the second terminal of the first resistor, the third positive input terminal of the third amplifier is electrically connected to the first output terminal of the first amplifier, and the third positive terminal of the third amplifier is electrically connected to the first output terminal of the first amplifier. The output end is electrically connected to one end of the diode, and the third negative input end of the third amplifier is electrically connected to the other end of the diode, the second positive input end of the second amplifier, one end of the capacitor, and one end of the second resistor. connect. The capacitor and the second resistor are connected in parallel, and the other end of the capacitor and the other end of the second resistor are grounded.

為瞭解本申請之技術特徵、內容與優點及其所能達成之功效,茲將本申請配合附圖,並以實施例之表達形式詳細說明如下,而其中所使用之圖式,其主旨僅為示意及輔助說明之用,未必為本申請實施後之真實比例與精準配置,故不應就所附之圖式的比例與配置關係解讀、侷限本申請於實際實施上的權利範圍,合先敘明。In order to understand the technical features, content and advantages of this application and the effects it can achieve, this application is hereby combined with the accompanying drawings and described in detail in the form of embodiments as follows, and the purposes of the drawings used therein are only The purpose of illustration and auxiliary explanation is not necessarily the true proportion and precise configuration of this application after implementation, so the scale and configuration relationship of the attached drawings should not be interpreted or limited to the scope of rights of this application in actual implementation. bright.

以下將參照相關圖式,說明依本申請之動力工具及其安全控制電路模組之實施例,為使便於理解,下述實施例中之相同元件係以相同之符號標示來說明。The following will describe embodiments of the power tool and its safety control circuit module according to the present application with reference to related drawings. For ease of understanding, the same components in the following embodiments are described with the same symbols.

現請一併參閱第1圖至第6圖,其分別係為根據本申請之實施例之吸濕物件之第一示意圖至第三示意圖、電子吸濕系統之第一示意圖至第三示意圖。Please refer to Fig. 1 to Fig. 6 together, which are respectively the first to third schematic diagrams of the hygroscopic article and the first to third schematic diagrams of the electronic moisture absorption system according to the embodiment of the present application.

本申請之電子吸濕系統包含吸濕物件11及電子感測裝置12。進一步說明,如圖1及圖2所示,吸濕物件11可為紙尿褲或是看護墊等可吸水的物件。The electronic hygroscopic system of the present application includes a hygroscopic article 11 and an electronic sensing device 12 . To further illustrate, as shown in FIG. 1 and FIG. 2 , the absorbent article 11 can be a water-absorbable article such as a diaper or a nursing pad.

進一步說明,如圖3所示,吸濕物件11可包含吸水層111、防水層112及感測電極113。吸水層111可包含不織布、吸收體等,以吸收例如尿液等液體。防水層112可以軟性防水材質製成,例如塑膠、橡膠等。防水層112可設置於吸水層111上。感測電極113可形成於防水層112上。To further illustrate, as shown in FIG. 3 , the hygroscopic article 11 may include a water-absorbing layer 111 , a waterproof layer 112 and a sensing electrode 113 . The water-absorbing layer 111 may include non-woven fabrics, absorbers, etc. to absorb liquids such as urine. The waterproof layer 112 can be made of soft waterproof material, such as plastic, rubber and so on. The waterproof layer 112 can be disposed on the water-absorbing layer 111 . The sensing electrodes 113 may be formed on the waterproof layer 112 .

在一實施例中,感測電極113可包含導電油墨,並以噴塗方式形成於防水層112上,換言之,導電油墨可滲透於防水層112中,與吸水層111相接觸。In one embodiment, the sensing electrodes 113 may include conductive ink and be formed on the waterproof layer 112 by spraying. In other words, the conductive ink may penetrate into the waterproof layer 112 and contact the water-absorbing layer 111 .

在另一實施例中,感測電極113除了導電油墨外可更包含銀離子。因此,本申請的感測電極113還具有殺菌或抗菌效果,可減少細菌感染的機會。In another embodiment, the sensing electrode 113 may further contain silver ions in addition to the conductive ink. Therefore, the sensing electrode 113 of the present application also has a bactericidal or antibacterial effect, which can reduce the chance of bacterial infection.

在一實施例中,感測電極113的面積與防水層112的面積比值大於0.3。在一較佳的實施例中,感測電極113的面積與防水層112的面積比值大於0.66,因此,當吸濕物件11被尿液浸濕之後,由於感測電極113於防水層112上的面積足夠,容易檢測吸水層111的電性變化。In one embodiment, the ratio of the area of the sensing electrode 113 to the area of the waterproof layer 112 is greater than 0.3. In a preferred embodiment, the ratio of the area of the sensing electrode 113 to the area of the waterproof layer 112 is greater than 0.66. Therefore, when the absorbent article 11 is wetted by urine, due to the sensing electrode 113 on the waterproof layer 112 The area is sufficient, and it is easy to detect the electrical change of the water-absorbing layer 111 .

在一實施例中,如圖4至圖6所示,當需要檢測吸濕物件11的溼度時,可將電子感測裝置12與感測電極113接觸。電子感測裝置12可輸出電訊號,並依據通過第一電極部1131及第二電極部1132之電訊號之電壓變化,運算產生吸水層111之阻抗數據並依據阻抗數據產生濕度資料。In one embodiment, as shown in FIGS. 4 to 6 , when it is necessary to detect the humidity of the absorbent article 11 , the electronic sensing device 12 can be brought into contact with the sensing electrode 113 . The electronic sensing device 12 can output electrical signals, and calculate and generate impedance data of the water-absorbing layer 111 according to voltage changes of the electrical signals passing through the first electrode part 1131 and the second electrode part 1132 and generate humidity data according to the impedance data.

在一實施例中,如圖4及圖5所示,電子感測裝置12可以感測電極113與第一感測電極131及第二感測電極132接觸,且電子感測裝置12可包含夾持部133,以使得電子感測裝置12可固定於吸濕物件11上。In one embodiment, as shown in FIG. 4 and FIG. 5 , the electronic sensing device 12 can sense the electrode 113 in contact with the first sensing electrode 131 and the second sensing electrode 132, and the electronic sensing device 12 can include a clip The holding portion 133 is provided so that the electronic sensing device 12 can be fixed on the absorbent article 11.

在一實施例中,如圖6所示,電子感測裝置12可包含通訊單元130。通訊單元130可為藍芽通訊單元130或是無線網路(wireless fidelity,Wi-Fi)通訊單元130,當電子感測裝置12運算產生吸水層111之阻抗數據並依據阻抗數據產生濕度資料後,通訊單元130可無線傳遞濕度資料至主控裝置13,但不以此為限。In one embodiment, as shown in FIG. 6 , the electronic sensing device 12 may include a communication unit 130 . The communication unit 130 can be a Bluetooth communication unit 130 or a wireless network (wireless fidelity, Wi-Fi) communication unit 130. When the electronic sensing device 12 calculates and generates impedance data of the water-absorbing layer 111 and generates humidity data according to the impedance data, The communication unit 130 can transmit the humidity data to the main control device 13 wirelessly, but not limited thereto.

舉例來說,在其它實施例中,亦可於電子感測裝置12運算產生濕度資料後,將電子感測裝置12與主控裝置13有線連接,以將濕度資料至主控裝置13。For example, in other embodiments, after the electronic sensing device 12 calculates and generates the humidity data, the electronic sensing device 12 and the main control device 13 can be wired to send the humidity data to the main control device 13 .

在一實施例中,主控裝置13可為電腦、工作站、雲端運算裝置等可接收多筆電子感測裝置12之濕度資料之運算裝置。在一較佳的實施例中,主控裝置13可為具有ThingsBoard物聯網平台的運算裝置,主控裝置13可收集和可視化物聯網設備的數據。因此,對於例如安養院、醫院而言,可利用主控裝置13及電子感測裝置12得知病患或是住戶是否需要更換紙尿褲,減少人力管理可能會產生的錯誤,並且可將該些數據進行大數據分析處理,以分析各病患或是住戶的身體狀況。In one embodiment, the main control device 13 can be a computing device such as a computer, a workstation, or a cloud computing device that can receive multiple pieces of humidity data from the electronic sensing device 12 . In a preferred embodiment, the main control device 13 can be a computing device with the ThingsBoard Internet of Things platform, and the main control device 13 can collect and visualize the data of the Internet of Things devices. Therefore, for nursing homes and hospitals, for example, the main control device 13 and the electronic sensing device 12 can be used to know whether the patient or the resident needs to change their diapers, which can reduce the errors that may be caused by human management, and can use these The data is processed by big data analysis to analyze the physical condition of each patient or resident.

在一實施例中,如圖7及圖8所示,感測電極113包含第一電極部1131及第二電極部1132,且第一電極部1131及第二電極部1132相互間隔設置。第一電極部1131可包含第一主電極11311及複數個第一分支電極11312。第二電極部1132可包含第二主電極11321及複數個第二分支電極11322。第一主電極11311與第二主電極11321相互間隔平行。複數個第一分支電極11312自第一主電極11311之一側向第二主電極11321延伸。複數個第二分支電極11322自第二主電極11321之一側向第一主電極11311延伸,且各複數個第一分支電極11312及各複數個第二分支電極11322間隔設置。In one embodiment, as shown in FIG. 7 and FIG. 8 , the sensing electrode 113 includes a first electrode portion 1131 and a second electrode portion 1132 , and the first electrode portion 1131 and the second electrode portion 1132 are spaced apart from each other. The first electrode portion 1131 may include a first main electrode 11311 and a plurality of first branch electrodes 11312 . The second electrode portion 1132 may include a second main electrode 11321 and a plurality of second branch electrodes 11322 . The first main electrode 11311 and the second main electrode 11321 are spaced apart and parallel to each other. A plurality of first branch electrodes 11312 extend from one side of the first main electrode 11311 to the second main electrode 11321 . A plurality of second branch electrodes 11322 extend from one side of the second main electrode 11321 to the first main electrode 11311 , and each of the plurality of first branch electrodes 11312 and each of the plurality of second branch electrodes 11322 are arranged at intervals.

另外,在一實施例中,複數個第一分支電極11312與第一主電極11311垂直,複數個第二分支電極11322與第二主電極11321垂直。In addition, in one embodiment, the plurality of first branch electrodes 11312 are perpendicular to the first main electrode 11311 , and the plurality of second branch electrodes 11322 are perpendicular to the second main electrode 11321 .

也就是說,透過上述的第一電極部1131及第二電極部1132的設置,本申請的感測電極113可大範圍地感測吸濕物件11是否潮濕,例如被尿液浸濕。但本申請不以此為限,感測電極113也可具有不同的形狀或是態樣,換言之,即使感測電極113的配置、幾何結構、形狀、大小等不同,但只要與本申請採用相似原理,且具有感測阻抗變化者均應在本發明的保護範圍之內。That is to say, through the arrangement of the above-mentioned first electrode part 1131 and second electrode part 1132, the sensing electrode 113 of the present application can sense whether the absorbent article 11 is wet in a wide range, such as wetted by urine. But the present application is not limited thereto, and the sensing electrodes 113 may also have different shapes or shapes. In other words, even if the configuration, geometric structure, shape, size, etc. Principles, and those with sensing impedance changes should fall within the protection scope of the present invention.

在本申請中,感測電極113可視為阻抗量測的導線,第一電極部1131及第二電極部1132間吸水層111吸收的濕度大小會改變第一電極部1131及第二電極部1132間距中的阻抗值。In this application, the sensing electrode 113 can be regarded as a wire for impedance measurement, and the amount of humidity absorbed by the water-absorbing layer 111 between the first electrode part 1131 and the second electrode part 1132 will change the distance between the first electrode part 1131 and the second electrode part 1132 The impedance value in .

因此,在另一實施例中,複數個第一分支電極11312及複數個第二分支電極11322的間距可依據待測濕度的條件要求,佈置成寬窄不一的配置。另外,感測電極113實際的幾何形狀亦可依據待測環境的空間特性、形狀特性,例如計算特徵長度等,進行較佳的配置。Therefore, in another embodiment, the distances between the plurality of first branch electrodes 11312 and the plurality of second branch electrodes 11322 can be arranged in configurations of different widths and narrownesses according to the condition requirements of the humidity to be measured. In addition, the actual geometric shape of the sensing electrodes 113 can also be optimally configured according to the spatial characteristics and shape characteristics of the environment to be measured, such as calculating the characteristic length.

如圖9所示,在一實施例中,電子感測裝置12可包含運算電路120及峰值檢測電路124。運算電路120之訊號輸出端可與吸水層111及峰值檢測電路124電性連接。峰值檢測電路124之電壓輸出端與運算電路120之訊號輸入端電性連接。運算電路120可輸出電訊號,峰值檢測電路124檢可測電訊號之峰值電壓。運算電路120可再依據峰值電壓計算吸水層111之阻抗數據,並依據阻抗數據產生濕度資料,以判斷吸水層111之潮濕程度。As shown in FIG. 9 , in an embodiment, the electronic sensing device 12 may include an arithmetic circuit 120 and a peak detection circuit 124 . The signal output end of the computing circuit 120 can be electrically connected with the water-absorbing layer 111 and the peak detection circuit 124 . The voltage output terminal of the peak detection circuit 124 is electrically connected to the signal input terminal of the computing circuit 120 . The arithmetic circuit 120 can output electrical signals, and the peak detection circuit 124 can detect the peak voltage of the electrical signals. The computing circuit 120 can then calculate the impedance data of the water-absorbing layer 111 according to the peak voltage, and generate humidity data according to the impedance data, so as to determine the degree of humidity of the water-absorbing layer 111 .

在一實施例中,如圖10所示,運算電路120可包含微處理器121及第一電阻122。第一電阻122之第一端與微處理器121電性連接,第一電阻122之一第二端經由感測電極113與吸水層111電性連接。微處理器121可輸出及接收電訊號,微處理器121可依據第一端之第一電壓值V in及第二端之第二電壓值Vo運算產生阻抗數據。 In one embodiment, as shown in FIG. 10 , the computing circuit 120 may include a microprocessor 121 and a first resistor 122 . A first end of the first resistor 122 is electrically connected to the microprocessor 121 , and a second end of the first resistor 122 is electrically connected to the water-absorbing layer 111 through the sensing electrode 113 . The microprocessor 121 can output and receive electric signals, and the microprocessor 121 can calculate and generate impedance data according to the first voltage value V in of the first terminal and the second voltage value Vo of the second terminal.

在一實施例中,第一電阻122之電阻值R介於50KΩ至500KΩ,例如64.9KΩ。而吸水層111之阻抗值Z load可依據潮濕程度介於20KΩ至800KΩ,甚至高於800KΩ。藉由量測第一電壓值V in及第二電壓值V o之間的關係可以得出

Figure 02_image001
,藉此依據第一電壓值V in及第二電壓值V o之關係,得出吸水層111之阻抗值Z load。 In one embodiment, the resistance R of the first resistor 122 is between 50KΩ to 500KΩ, for example, 64.9KΩ. The impedance value Z load of the water-absorbing layer 111 can range from 20KΩ to 800KΩ, or even higher than 800KΩ, depending on the degree of humidity. By measuring the relationship between the first voltage value V in and the second voltage value V o can be obtained
Figure 02_image001
, so as to obtain the impedance value Z load of the water-absorbing layer 111 according to the relationship between the first voltage value V in and the second voltage value V o .

換言之,當吸水層111之阻抗值Z load隨著吸水量而增加時,第二電壓值V o將會改變,例如若吸水層111之最大吸水量為200ml時,當吸水量由0ml增加至200ml時,阻抗值Z load將會由20KΩ增加至800KΩ。 In other words, when the impedance value Z load of the water-absorbing layer 111 increases with the water absorption, the second voltage V o will change, for example, if the maximum water absorption of the water-absorbing layer 111 is 200ml, when the water absorption increases from 0ml to 200ml , the impedance value Z load will increase from 20KΩ to 800KΩ.

進一步說明,電子感測裝置12可更包含第一放大器123、峰值檢測電路124及第二放大器125。第一放大器123之第一正極輸入端與第一電阻122之第二端電性連接,第一放大器123之第一輸出端與峰值檢測電路124及第一放大器123之第一負極輸入端電性連接。To further illustrate, the electronic sensing device 12 may further include a first amplifier 123 , a peak detection circuit 124 and a second amplifier 125 . The first positive input end of the first amplifier 123 is electrically connected to the second end of the first resistor 122, and the first output end of the first amplifier 123 is electrically connected to the peak detection circuit 124 and the first negative input end of the first amplifier 123. connect.

第二放大器125之第二正極輸入端與峰值檢測電路124電性連接,第二放大器125之第二輸出端與第二放大器125之第二負極輸入端及微處理器121電性連接。The second positive input terminal of the second amplifier 125 is electrically connected to the peak detection circuit 124 , and the second output terminal of the second amplifier 125 is electrically connected to the second negative input terminal of the second amplifier 125 and the microprocessor 121 .

峰值檢測電路124包含第三放大器126、二極體127、電容128及第二電阻129。第三放大器126之第三正極輸入端與第一輸出端電性連接,第三放大器126之第三輸出端與二極體127之一端電性連接,第三放大器126之第三負極輸入端與二極體127之另一端、第二正極輸入端、電容128之一端及第二電阻129之一端電性連接。電容128及第二電阻129並聯,電容128之另一端及第二電阻129之另一端接地。The peak detection circuit 124 includes a third amplifier 126 , a diode 127 , a capacitor 128 and a second resistor 129 . The third positive input end of the third amplifier 126 is electrically connected to the first output end, the third output end of the third amplifier 126 is electrically connected to one end of the diode 127, and the third negative input end of the third amplifier 126 is electrically connected to the first output end. The other end of the diode 127 , the second positive input end, one end of the capacitor 128 and one end of the second resistor 129 are electrically connected. The capacitor 128 and the second resistor 129 are connected in parallel, and the other end of the capacitor 128 and the other end of the second resistor 129 are grounded.

進一步說明,第一正極輸入端、第二正極輸入端及第三正極輸入端為第一放大器123、第二放大器125、第三放大器126標示有”+”符號的輸入端;第一負極輸入端、第二負極輸入端及第三負極輸入端為第一放大器123、第二放大器125、第三放大器126標示有”-”符號的輸入端。To further illustrate, the first positive input terminal, the second positive input terminal and the third positive input terminal are the input terminals of the first amplifier 123, the second amplifier 125, and the third amplifier 126 marked with a "+" sign; the first negative input terminal , the second negative input terminal and the third negative input terminal are the input terminals of the first amplifier 123 , the second amplifier 125 , and the third amplifier 126 marked with a "-" symbol.

在一實施例中,電訊號可為方波電訊號,方波電訊號之頻率可供調整。舉例來說,可藉由微處理器121調整方波電訊號之頻率。進一步說明,方波電訊號之頻率可介於1KHz至100KHz。在一較佳的實施例中,方波電訊號之頻率可介於1KHz至50KHz,可依據吸濕物件11之特性,例如依據吸濕物件11之標的差異,可以微處理器121控制方波電訊號之頻率,進行不同頻率下的阻抗量測,以達到更精準的濕度辨識。In one embodiment, the electrical signal can be a square wave electrical signal, and the frequency of the square wave electrical signal can be adjusted. For example, the frequency of the square wave electric signal can be adjusted by the microprocessor 121 . To further illustrate, the frequency of the square wave electric signal can be between 1KHz and 100KHz. In a preferred embodiment, the frequency of the square wave electric signal can be between 1KHz and 50KHz, and the square wave signal can be controlled by the microprocessor 121 according to the characteristics of the hygroscopic article 11, for example, according to the difference of the label of the hygroscopic article 11. The frequency of the signal is used to measure the impedance at different frequencies to achieve more accurate humidity identification.

在一實施例中,第三放大器126及二極體127所構成的部份可以視為超級二極體(super diode),可利用此電路結構檢測電訊號的峰值電壓。In one embodiment, the part formed by the third amplifier 126 and the diode 127 can be regarded as a super diode, and this circuit structure can be used to detect the peak voltage of the electrical signal.

另外,本申請的微處理器121所輸出的電訊號可為直流電,亦可為交流電。舉例來說,若電訊號為方波電訊號,可將此方波電訊號透過帶通濾波器 (Band-pass filter)及各種適當的電路轉換為交流電,再由微處理器121所接收。In addition, the electric signal output by the microprocessor 121 of the present application can be direct current or alternating current. For example, if the electrical signal is a square wave electrical signal, the square wave electrical signal can be converted into alternating current through a band-pass filter and various appropriate circuits, and then received by the microprocessor 121 .

在一實施例中,微處理器121可包含訊號輸出端及類比/數位(Analog-to-Digital,A/D)接收端,以輸出及接收上述的電訊號。In one embodiment, the microprocessor 121 may include a signal output terminal and an Analog-to-Digital (A/D) receiving terminal for outputting and receiving the aforementioned electrical signals.

以上微處理器121、第一放大器123、第二放大器125、第三放大器126等配置僅為電子感測裝置12之一種電路配置的實施例,舉凡類似本發明可檢測阻抗值電路架構,均應在本申請之保護範圍內。The configuration of the above microprocessor 121, first amplifier 123, second amplifier 125, third amplifier 126, etc. is only an embodiment of a circuit configuration of the electronic sensing device 12. For example, any circuit structure similar to the present invention that can detect impedance values should be Within the protection scope of this application.

本申請再提供一種電子吸濕系統之吸濕感測方法,包含下列步驟:The present application further provides a moisture absorption sensing method of an electronic moisture absorption system, which includes the following steps:

S101:將電子感測裝置12與吸濕物件11之感測電極113相接觸。例如在一實施例中,以夾持部133使得電子感測裝置12固定於吸濕物件11上,使電子感測裝置12可以感測電極113與第一感測電極131及第二感測電極132接觸。S101 : Contact the electronic sensing device 12 with the sensing electrode 113 of the hygroscopic article 11 . For example, in one embodiment, the electronic sensing device 12 is fixed on the absorbent article 11 with the clamping portion 133, so that the electronic sensing device 12 can sense the electrodes 113, the first sensing electrodes 131 and the second sensing electrodes. 132 contacts.

S102:以電子感測裝置12輸出一電訊。例如在一實施例中,輸出頻率介於1KHz至50KHz之方波電訊號。S102: Output a telecommunication with the electronic sensing device 12 . For example, in one embodiment, a square wave electrical signal with a frequency ranging from 1 KHz to 50 KHz is output.

S103:以電子感測裝置12依據通過感測電極113之電訊號感測電訊號之電壓變化,並運算產生吸濕物件11之吸水層111之阻抗數據。S103: Use the electronic sensing device 12 to sense the voltage change of the electrical signal according to the electrical signal passing through the sensing electrode 113, and calculate and generate impedance data of the water-absorbing layer 111 of the hygroscopic article 11.

S103:以電子感測裝置12依據阻抗數據產生濕度資料。S103: Using the electronic sensing device 12 to generate humidity data according to the impedance data.

在一實施例中,當以上述的步驟運算產生濕度資料後,可利用電子感測裝置12之通訊單元130將傳度資料傳遞至主控裝置13。In one embodiment, after the humidity data is generated through the above steps, the communication unit 130 of the electronic sensing device 12 can be used to transmit the humidity data to the main control device 13 .

綜上所述,本申請的電子吸濕系統及其吸濕感測方法是以測量吸濕物件的阻抗的方式計算吸濕物件的吸水量,並且可結合物連網及大數據分析,節省照護人力。另外,在本申請電子吸濕系統的架構下,對於不同型態的吸濕物件,例如不同吸收量的紙尿褲、看護墊等,可依據吸濕物件的阻抗值,改變第一電阻的大小,並且依據需求改變電訊號的頻率,已達到最佳的測量效果。In summary, the electronic moisture absorption system and its moisture absorption sensing method of the present application calculate the water absorption of the hygroscopic object by measuring the impedance of the hygroscopic object, and can combine the Internet of Things and big data analysis to save care manpower. In addition, under the framework of the electronic hygroscopic system of the present application, for different types of hygroscopic articles, such as diapers and nursing pads with different absorption capacities, the size of the first resistor can be changed according to the impedance value of the hygroscopic articles, and Changing the frequency of the electrical signal according to the needs has achieved the best measurement effect.

以上所述僅為舉例性,而非為限制性者。任何未脫離本申請之精神與範疇,而對其進行之等效修改或變更,均應包含於後附之申請專利範圍中。The above descriptions are illustrative only, not restrictive. Any equivalent amendments or changes that do not deviate from the spirit and scope of this application shall be included in the scope of the appended patent application.

11:吸濕物件 111:吸水層 112:防水層 113:感測電極 1131:第一電極部 11311:第一主電極 11312:第一分支電極 1132:第二電極部 11321:第二主電極 11322:第二分支電極 12:電子感測裝置 120:運算電路 121:微處理器 122:第一電阻 123:第一放大器 124:峰值檢測電路 125:第二放大器 126:第三放大器 127:二極體 128:電容 129:第二電阻 130:通訊單元 131:第一感測電極 132:第二感測電極 133:夾持部 13:主控裝置 91:紙尿褲 92:防水層 93:電極 11: Hygroscopic objects 111: water absorption layer 112: waterproof layer 113: sensing electrode 1131: the first electrode part 11311: the first main electrode 11312: The first branch electrode 1132: second electrode part 11321: Second main electrode 11322: The second branch electrode 12: Electronic sensing device 120: Operation circuit 121: Microprocessor 122: the first resistance 123: The first amplifier 124: Peak detection circuit 125: second amplifier 126: The third amplifier 127: Diode 128: capacitance 129: second resistance 130: Communication unit 131: the first sensing electrode 132: the second sensing electrode 133: clamping part 13: Master control device 91: Diapers 92: waterproof layer 93: electrode

圖1為根據本申請之實施例之吸濕物件之第一示意圖。Figure 1 is a first schematic view of an absorbent article according to an embodiment of the present application.

圖2為根據本申請之實施例之吸濕物件之第二示意圖。Figure 2 is a second schematic view of an absorbent article according to an embodiment of the present application.

圖3為根據本申請之實施例之吸濕物件之第三示意圖。Figure 3 is a third schematic view of an absorbent article according to an embodiment of the present application.

圖4為根據本申請之實施例之電子吸濕系統之第一示意圖。Fig. 4 is a first schematic diagram of an electronic moisture absorption system according to an embodiment of the present application.

圖5為根據本申請之實施例之電子吸濕系統之第二示意圖。Fig. 5 is a second schematic diagram of an electronic moisture absorption system according to an embodiment of the present application.

圖6為根據本申請之實施例之電子吸濕系統之第三示意圖。Fig. 6 is a third schematic diagram of an electronic moisture absorption system according to an embodiment of the present application.

圖7為根據本申請之實施例之感測電極之第一示意圖。FIG. 7 is a first schematic diagram of sensing electrodes according to an embodiment of the present application.

圖8為根據本申請之實施例之感測電極之第二示意圖。FIG. 8 is a second schematic diagram of sensing electrodes according to an embodiment of the present application.

圖9為根據本申請之實施例之電子感測裝置之電路示意圖。FIG. 9 is a schematic circuit diagram of an electronic sensing device according to an embodiment of the present application.

圖10為根據本申請之實施例之電子感測裝置之電路示意圖。圖11為習知技術中之一種電子紙尿褲的示意圖。FIG. 10 is a schematic circuit diagram of an electronic sensing device according to an embodiment of the present application. Fig. 11 is a schematic diagram of an electronic diaper in the prior art.

11:吸濕物件 11: Hygroscopic objects

112:防水層 112: waterproof layer

113:感測電極 113: sensing electrode

12:電子感測裝置 12: Electronic sensing device

131:第一感測電極 131: the first sensing electrode

132:第二感測電極 132: the second sensing electrode

133:夾持部 133: clamping part

Claims (10)

一種電子吸濕系統,包含: 一吸濕物件,包含: 一吸水層; 一防水層,設置於該吸水層上;及 一感測電極,形成於該防水層上,且包含一第一電極部及一第二電極部,該第一電極部及該第二電極部相互間隔設置;以及 一電子感測裝置,與該感測電極接觸後,輸出一電訊號, 其中,該電子感測裝置依據通過該第一電極部及該第二電極部之該電訊號之電壓變化,運算產生該吸水層之一阻抗數據,並依據該阻抗數據產生一濕度資料。 An electronic moisture absorption system comprising: A hygroscopic article, comprising: a water-absorbing layer; a waterproof layer disposed on the absorbent layer; and A sensing electrode is formed on the waterproof layer and includes a first electrode part and a second electrode part, and the first electrode part and the second electrode part are spaced apart from each other; and An electronic sensing device, after contacting the sensing electrode, outputs an electrical signal, Wherein, the electronic sensing device calculates and generates impedance data of the water-absorbing layer according to the voltage change of the electrical signal passing through the first electrode portion and the second electrode portion, and generates humidity data according to the impedance data. 如請求項1所述之電子吸濕系統,其中,該第一電極部包含一第一主電極及複數個第一分支電極,該第二電極部包含一第二主電極及複數個第二分支電極,該第一主電極與該第二主電極相互間隔平行,該複數個第一分支電極自該第一主電極之一側向該第二主電極延伸,該複數個第二分支電極自該第二主電極之一側向該第一主電極延伸,且各該複數個第一分支電極及各該複數個第二分支電極間隔設置。The electronic moisture absorption system according to claim 1, wherein the first electrode part includes a first main electrode and a plurality of first branch electrodes, and the second electrode part includes a second main electrode and a plurality of second branches electrode, the first main electrode and the second main electrode are spaced and parallel to each other, the plurality of first branch electrodes extend from one side of the first main electrode to the second main electrode, and the plurality of second branch electrodes extend from the side of the first main electrode One side of the second main electrode extends toward the first main electrode, and each of the plurality of first branch electrodes and each of the plurality of second branch electrodes are arranged at intervals. 如請求項2所述之電子吸濕系統,其中,該複數個第一分支電極與該第一主電極垂直,該複數個第二分支電極與該第二主電極垂直。The electronic moisture absorption system according to claim 2, wherein the plurality of first branch electrodes are perpendicular to the first main electrode, and the plurality of second branch electrodes are perpendicular to the second main electrode. 如請求項1所述之電子吸濕系統,其中,該電子感測裝置包含一運算電路及一峰值檢測電路,該運算電路之一訊號輸出端與該吸水層及該峰值檢測電路之一電壓接收端電性連接,該峰值檢測電路之一電壓輸出端與該運算電路之一訊號輸入端電性連接,該運算電路輸出該電訊號,該峰值檢測電路檢測該電訊號之一峰值電壓,該運算電路依據該峰值電壓運算產生該吸水層之該阻抗數據,並依據該阻抗數據產生該濕度資料。The electronic moisture absorption system as described in Claim 1, wherein the electronic sensing device includes an operation circuit and a peak detection circuit, and a signal output terminal of the operation circuit is connected to a voltage receiving terminal of the water absorption layer and the peak detection circuit Terminals are electrically connected, a voltage output terminal of the peak detection circuit is electrically connected to a signal input terminal of the calculation circuit, the calculation circuit outputs the electrical signal, the peak detection circuit detects a peak voltage of the electrical signal, and the calculation The circuit generates the impedance data of the water-absorbing layer according to the peak voltage calculation, and generates the humidity data according to the impedance data. 如請求項4所述之電子吸濕系統,其中,該運算電路更包含一微處理器、一第一電阻,該電子吸濕系統更包含一第一放大器及一第二放大器;該第一電阻之一第一端與該微處理器電性連接,該第一電阻之一第二端經由該感測電極與該吸水層電性連接,該微處理器輸出及接收該電訊號,該微處理器依據該第一端之第一電壓值及該第二端之第二電壓值運算產生該阻抗數據;該第一放大器之一第一正極輸入端與該第一電阻之該第二端電性連接,該第一放大器之一第一輸出端與該峰值檢測電路及該第一放大器之一第一負極輸入端電性連接,該第二放大器之一第二正極輸入端與該峰值檢測電路電性連接,該第二放大器之一第二輸出端與該第二放大器之一第二負極輸入端及該微處理器電性連接。The electronic moisture absorption system as described in Claim 4, wherein the operation circuit further includes a microprocessor and a first resistor, and the electronic moisture absorption system further includes a first amplifier and a second amplifier; the first resistor One first end is electrically connected to the microprocessor, one second end of the first resistor is electrically connected to the water-absorbing layer through the sensing electrode, the microprocessor outputs and receives the electrical signal, and the microprocessor The amplifier generates the impedance data according to the first voltage value of the first terminal and the second voltage value of the second terminal; the first positive input terminal of the first amplifier is electrically connected to the second terminal of the first resistor connected, a first output terminal of the first amplifier is electrically connected with the peak detection circuit and a first negative input terminal of the first amplifier, a second positive input terminal of the second amplifier is electrically connected with the peak detection circuit A second output terminal of the second amplifier is electrically connected with a second negative input terminal of the second amplifier and the microprocessor. 如請求項5所述之電子吸濕系統,其中該峰值檢測電路包含一第三放大器、一二極體、一電容及一第二電阻,該第三放大器之一第三正極輸入端與該第一輸出端電性連接,該第三放大器之一第三輸出端與該二極體之一端電性連接,該第三放大器之一第三負極輸入端與該二極體之另一端、該第二正極輸入端、該電容之一端及該第二電阻之一端電性連接,該電容及該第二電阻並聯,該電容之另一端及該第二電阻之另一端接地。The electronic moisture absorption system as described in claim 5, wherein the peak detection circuit includes a third amplifier, a diode, a capacitor and a second resistor, a third positive input terminal of the third amplifier is connected to the first An output end is electrically connected, a third output end of the third amplifier is electrically connected to one end of the diode, a third negative input end of the third amplifier is connected to the other end of the diode, the first end of the diode Two positive input terminals, one terminal of the capacitor and one terminal of the second resistor are electrically connected, the capacitor and the second resistor are connected in parallel, and the other terminal of the capacitor and the other terminal of the second resistor are grounded. 如請求項1所述之電子吸濕系統,其中該電訊號為一方波電訊號,該感測電極包含導電油墨及銀離子,該感測電極的面積與該防水層的面積比值大於0.3。The electronic moisture absorption system as described in claim 1, wherein the electrical signal is a square wave electrical signal, the sensing electrode contains conductive ink and silver ions, and the ratio of the area of the sensing electrode to the area of the waterproof layer is greater than 0.3. 如請求項1所述之電子吸濕系統,其中該電子感測裝置包含一通訊單元,該通訊單元傳遞該濕度資料至一主控裝置。The electronic moisture absorption system according to claim 1, wherein the electronic sensing device includes a communication unit, and the communication unit transmits the humidity data to a master control device. 一種電子吸濕系統之吸濕感測方法,包含: 將一電子感測裝置與一吸濕物件之一感測電極相接觸; 以該電子感測裝置輸出一電訊號; 以該電子感測裝置依據通過該感測電極之該電訊號感測該電訊號之電壓變化,並運算產生該吸濕物件之一吸水層之一阻抗數據;以及 以該電子感測裝置依據該阻抗數據產生一濕度資料; 其中,該吸濕物件包含該吸水層、一防水層及該感測電極,該防水層設置於該吸水層上,該感測電極形成於該防水層上。 A moisture absorption sensing method for an electronic moisture absorption system, comprising: contacting an electronic sensing device with a sensing electrode of an absorbent article; outputting an electrical signal with the electronic sensing device; Using the electronic sensing device to sense the voltage change of the electrical signal according to the electrical signal passing through the sensing electrode, and calculate and generate impedance data of the water-absorbing layer of the hygroscopic article; and using the electronic sensing device to generate a humidity data according to the impedance data; Wherein, the hygroscopic article includes the water-absorbing layer, a waterproof layer and the sensing electrode, the waterproof layer is arranged on the water-absorbing layer, and the sensing electrode is formed on the waterproof layer. 如請求項9所述之電子吸濕系統之吸濕感測方法,其中該感測電極包含一第一電極部及一第二電極部,該第一電極部及該第二電極部相互間隔設置;該電子感測裝置包含一微處理器、一第一電阻、一第一放大器、一第二放大器、一第三放大器、一二極體、一電容及一第二電阻;該第一電阻之一第一端與該微處理器電性連接,該第一電阻之一第二端經由該感測電極與該吸水層電性連接,該微處理器輸出及接收該電訊號,該微處理器依據該第一端之第一電壓值及該第二端之第二電壓值運算產生該阻抗數據;該第一放大器之一第一正極輸入端與該第一電阻之該第二端電性連接,該第三放大器之一第三正極輸入端與該第一放大器之一第一輸出端電性連接,該第三放大器之一第三輸出端與該二極體之一端電性連接,該第三放大器之一第三負極輸入端與該二極體之另一端、該第二放大器之一第二正極輸入端、該電容之一端及該第二電阻之一端電性連接;該電容及該第二電阻並聯,該電容之另一端及該第二電阻之另一端接地。The moisture absorption sensing method of the electronic moisture absorption system according to claim 9, wherein the sensing electrode includes a first electrode part and a second electrode part, and the first electrode part and the second electrode part are arranged at intervals ; The electronic sensing device includes a microprocessor, a first resistor, a first amplifier, a second amplifier, a third amplifier, a diode, a capacitor and a second resistor; the first resistor A first end is electrically connected to the microprocessor, a second end of the first resistor is electrically connected to the water-absorbing layer through the sensing electrode, the microprocessor outputs and receives the electrical signal, and the microprocessor The impedance data is generated according to the first voltage value of the first terminal and the second voltage value of the second terminal; a first positive input terminal of the first amplifier is electrically connected with the second terminal of the first resistor A third positive input terminal of the third amplifier is electrically connected to a first output terminal of the first amplifier, a third output terminal of the third amplifier is electrically connected to one end of the diode, and the first One of the third negative input terminals of the three amplifiers is electrically connected with the other end of the diode, the second positive input terminal of the second amplifier, one end of the capacitor and one end of the second resistor; the capacitor and the first resistor The two resistors are connected in parallel, and the other end of the capacitor and the other end of the second resistor are grounded.
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