TWI778505B - A point-pressed audio pickup apparatus - Google Patents

A point-pressed audio pickup apparatus Download PDF

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Publication number
TWI778505B
TWI778505B TW110103092A TW110103092A TWI778505B TW I778505 B TWI778505 B TW I778505B TW 110103092 A TW110103092 A TW 110103092A TW 110103092 A TW110103092 A TW 110103092A TW I778505 B TWI778505 B TW I778505B
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Taiwan
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pickup device
sound pickup
distance sensing
sensing element
vertical point
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TW110103092A
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Chinese (zh)
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TW202228599A (en
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許黃月華
楊連煌
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淇譽電子科技股份有限公司
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Abstract

A point-pressed audio pickup apparatus includes a deformation element and an audio pickup device. The deformation element is pushed by an external force to induce deformation, so that a distance sensing element in the audio pickup device can measure the deformation through the changed distance so as to trigger the audio pickup device to start receiving sound.

Description

點壓式拾音設備Point pressure pickup equipment

本發明是有關一種點壓式拾音設備,係用於接收生理聲音(心、肺、內臟或體內組織運動所產生的音訊)以利於醫療診斷用的設備。The present invention relates to a point-pressed sound pickup device, which is used for receiving physiological sound (audio generated by the movement of heart, lung, internal organs or internal tissues) for the benefit of medical diagnosis.

習用技術中,拾音設備係用於接收人體的生理聲音,運用在醫療用途上即稱作聽診器,其中,有較為舊式的有線聽診器以及無線的電子聽診器,無論是該有線聽診器或該無線的電子聽診器,多數是於內部設置觸接式的麥克風,在聽診器觸接人體時進行收音。In the conventional technology, the pickup device is used to receive the physiological sound of the human body, and it is called a stethoscope when used in medical applications. Among them, there are relatively old wired stethoscopes and wireless electronic stethoscopes, whether it is the wired stethoscope or the wireless electronic Most of the stethoscopes are equipped with a contact-type microphone inside, and the sound is collected when the stethoscope is in contact with the human body.

在收音過程中,不乏接收到聽診器移動時所產生的摩擦聲,或是在操作時的各種環境音,這些雜音會嚴重的影響原本的生理聲音,干擾醫護人員判斷,因此,本發明採點壓式的拾音方式,透過將拾音設備移動至預定位置時,只有在單點進行施加外力時才可以接收到生理聲音,因此可大幅的減少操作過程中所產生的雜音,如此為本發明點壓式拾音設備之解決方案。In the process of sound collection, there is no lack of friction sounds generated when the stethoscope is moved, or various environmental sounds during operation. These noises will seriously affect the original physiological sound and interfere with the judgment of medical staff. Therefore, the present invention adopts point pressure The sound pickup method, by moving the pickup device to a predetermined position, can only receive physiological sound when an external force is applied at a single point, so the noise generated during the operation can be greatly reduced, which is the point of the present invention The solution for pressure pickup equipment.

本發明之點壓式拾音設備,包括有一形變元件與一拾音裝置,該形變元件具有一第一表面、一第二表面以及一接合於該第一表面與該第二表面之間的接合塊,該第一表面、該第二表面與該接合塊的任一者或任一者以上係可透過外力產生形變,在該第一表面中心位置開設有一拾音孔;該拾音裝置具有一裝設在該拾音孔中的拾音元件,以及設置在該形變元件內部的一傳導元件與一距離感測元件,該拾音元件、該距離感測元件係分別的與該傳導元件電性連接,該距離感測元件係對應在該第一表面旁;其中,將該第一表面貼合於一物件表面,以垂直於該第一表面的外力推壓該形變元件進而產生形變,使得該第一表面或該第二表面以垂直方向位移,讓該第一表面縮減與該距離感測元件之間的距離,當該距離感測元件可測得該距離長度達1μm以上時,便得觸發該拾音元件開始接收聲音。 The point pressure pickup device of the present invention includes a deformation element and a pickup device, the deformation element has a first surface, a second surface, and a joint connected between the first surface and the second surface block, any one or more of the first surface, the second surface and the joint block can be deformed by external force, and a pickup hole is opened in the center of the first surface; the pickup device has a A sound pickup element installed in the sound pickup hole, a conducting element and a distance sensing element arranged inside the deformation element, the pickup element and the distance sensing element are respectively electrically connected to the conducting element connected, the distance sensing element is corresponding to the first surface; wherein, the first surface is attached to a surface of an object, and the deformation element is pushed by an external force perpendicular to the first surface to generate deformation, so that The first surface or the second surface is displaced in the vertical direction, so that the distance between the first surface and the distance sensing element is reduced. When the distance sensing element can measure the length of the distance is more than 1 μm, then Trigger the pickup to start receiving sound.

於一較佳實施例中,該形變元件係裝設於一電子裝置上,而該傳導元件亦與該電子裝置內的控制元件電性連接,而該控制元件又與一聽音裝置電性連接。 In a preferred embodiment, the deformation element is installed on an electronic device, and the conductive element is also electrically connected to a control element in the electronic device, and the control element is also electrically connected to a listening device .

於一較佳實施例中,該距離感測元件與該傳導元件皆設置在該第二表面,該距離感測元件則係對應該第一表面。 In a preferred embodiment, the distance sensing element and the conducting element are both disposed on the second surface, and the distance sensing element corresponds to the first surface.

於一較佳實施例中,該第一表面、該第二表面與該接合塊的任一者或任一者以上係使用具撓性之材質。 In a preferred embodiment, any one or more of the first surface, the second surface and the engaging block are made of flexible materials.

於一較佳實施例中,該第一表面、該第二表面與該接合塊的任一者或任一者以上係設計為連續凹凸的波浪狀,該第一表面與該第二表面的連續凹凸的延伸方向係平行於該第一表面,而該接合塊的連續凹凸的延伸方向垂直於該第一表面。 In a preferred embodiment, any one or more of the first surface, the second surface and the engaging block is designed as a continuous concave-convex wavy shape, and the first surface and the second surface are continuous. The extending direction of the concavity and convexity is parallel to the first surface, and the extending direction of the continuous concavity and convexity of the engaging block is perpendicular to the first surface.

於一較佳實施例中,設計為連續凹凸的波浪狀的該第一表面、該第二表面或該接合塊係使用具撓性之材質。In a preferred embodiment, the first surface, the second surface or the joint block which is designed as a continuous concave and convex wave shape is made of a flexible material.

於一較佳實施例中,設計為連續凹凸的波浪狀的該第一表面上朝外形成有一外凸部。In a preferred embodiment, an outer convex portion is formed on the first surface of the wave-shaped continuous concave and convex.

於一較佳實施例中,該第一表面上或該第二表面上的任一者或任二者同時開設有複數個孔洞。In a preferred embodiment, a plurality of holes are opened on either or both of the first surface or the second surface.

於一較佳實施例中,開設有複數個該孔洞的該第一表面或該第二表面係使用具撓性之材質。In a preferred embodiment, the first surface or the second surface on which the plurality of holes are opened is made of a flexible material.

於一較佳實施例中,該撓性之材質係可為矽膠、橡膠、軟膠、泡棉、海綿或彈簧等具有形變力並可自動復歸原型的材質。In a preferred embodiment, the flexible material can be silicone, rubber, soft rubber, foam, sponge or spring, etc., which have deformation force and can automatically return to the original shape.

有關於本發明其他技術內容、特點與功效,在以下配合參考圖式之較佳實施例的詳細說明中,將可清楚的呈現。Other technical contents, features and effects of the present invention will be clearly presented in the following detailed description of the preferred embodiments with reference to the drawings.

本創作/發明說明書之內容所揭示用於描述結構位置的「上」之用語,係指結構的任一表面位置,並非俗稱具有方向性的「上方」或「上面」。用於描述結構位置的「上方」、「下方」之用語,係指常規使用下結構位置的方向性。The term "upper" used to describe the position of the structure disclosed in the content of this creation/invention specification refers to any surface position of the structure, and is not commonly known as "above" or "upper" with a directionality. The terms "above" and "below" used to describe the position of a structure refer to the directionality of the position of the structure under conventional usage.

本創作/發明說明書之內容所揭示用於描述結構組合關係的「接設」、「裝設」或「設置」之用語,泛指多個結構在組合後不會輕易的分離或掉落,可以是固定連接,也可以是可拆式的連接,亦可以是一體成型地連接;可以是機械連接,也可以是電連接;可以是直接的物理相連,亦也可以通過中間媒介間接相連,可以是兩個元件內部的連通,例如:使用螺紋、卡榫、扣具、釘子、黏著劑或高週波任一方式結合者。The terms "connection", "installation" or "arrangement" used to describe the combination relationship of structures disclosed in the content of this creation/invention specification generally refer to the fact that multiple structures will not be easily separated or dropped after being combined, and can be It can be a fixed connection, a detachable connection, or an integrally formed connection; it can be a mechanical connection or an electrical connection; it can be a direct physical connection or an indirect connection through an intermediate medium. Internal communication between two components, for example, using threads, tenons, fasteners, nails, adhesives, or any combination of high frequency.

本創作/發明說明書之內容所揭示用於描述結構組合關係的「連結」、或「電性連接」之用語,係指使用電線、電路板、網路線或無線網路任一方式進行通電或網路通訊的結合。The terms "connection" or "electrical connection" used to describe the structural combination relationship disclosed in the content of this creation/invention specification refer to the use of wires, circuit boards, network lines or wireless networks to conduct electricity or network connections. The combination of road communication.

請參閱第1、2圖,分別為本發明點壓式拾音設備的立體示意圖以及內部結構剖面示意圖,如圖中所示,至少包含一形變元件1與一拾音裝置2;其中,該形變元件1係具有一第一表面11、一第二表面12以及一接合於該第一表面11與該第二表面12之間的接合塊13,該第一表面11、該第二表面12與該接合塊13的任一者或任一者以上係可透過外力產生形變,在該第一表面11中心位置開設有一拾音孔111;其中,該拾音裝置2具有一裝設在該拾音孔111中的拾音元件21,以及設置在該形變元件1內部的一傳導元件22與一距離感測元件23,該拾音元件21、該距離感測元件23係分別的與該傳導元件22電性連接,該距離感測元件23係對應在該第一表面11或該第二表面12旁;其中,當操作該形變元件1於人體皮膚上滑移至預定位置時,以外力垂直推壓該形變元件1,使得該形變元件1產生形變,使得該第一表面11或該第二表面12以垂直方向位移,讓該第一表面11縮減與該距離感測元件23之間的距離,致該距離感測元件23可測得該距離的長度L達1μm以上時,便得觸發該拾音元件21開始接收人體所產生的生理聲音(心、肺、內臟或體內組織運動所產生的音訊),且該拾音元件21在接收生理聲音後便將其進行數位化處理轉成一音訊檔,並傳入該傳導元件22,亦即,當再次操作該形變元件1於人體皮膚上滑移至下一個預定位置前會鬆放垂直推壓的外力,該形變元件1則自動復歸原型,故會取消觸發該拾音元件21動作之條件,因此,只有在單點進行施加外力時才可以接收到生理聲音,可大幅的減少操作過程中所產生的雜音;請參閱第1圖,其中,該形變元件1係裝設於一電子裝置3上,而該傳導元件22亦與該電子裝置3內的控制元件31電性連接,而該控制元件31又與一聽音裝置4電性連接,因此該傳導元件22可將該音訊檔傳輸至該電子裝置3,使用者可使用該聽音裝置4收聽該音訊檔,透過該控制元件31來控制該音訊檔進行播放、儲存、聲音放大、聲音縮小等功能,藉此可作為聽診器之用途。Please refer to Figures 1 and 2, which are a three-dimensional schematic diagram and a cross-sectional schematic diagram of the internal structure of the point-pressed sound pickup device of the present invention, respectively. As shown in the figure, at least one deformation element 1 and a sound pickup device 2 are included; wherein, the deformation The element 1 has a first surface 11, a second surface 12 and a joint block 13 joined between the first surface 11 and the second surface 12, the first surface 11, the second surface 12 and the Any one or more than one of the engaging blocks 13 can be deformed by external force, and a sound pickup hole 111 is formed in the center of the first surface 11 ; wherein, the sound pickup device 2 has a sound pickup hole installed in the sound pickup hole. The pickup element 21 in 111, as well as a conducting element 22 and a distance sensing element 23 arranged inside the deformation element 1, the pickup element 21 and the distance sensing element 23 are respectively electrically connected to the conducting element 22. Sexual connection, the distance sensing element 23 is corresponding to the first surface 11 or the second surface 12; wherein, when the deformation element 1 is operated to slide to a predetermined position on the human skin, an external force vertically pushes the Deformation element 1, so that the deformation element 1 is deformed, so that the first surface 11 or the second surface 12 is displaced in a vertical direction, so that the first surface 11 reduces the distance from the distance sensing element 23, so that the When the distance sensing element 23 can measure the length L of the distance to be more than 1 μm, the pickup element 21 must be triggered to start to receive the physiological sound produced by the human body (the sound produced by the movement of the heart, lungs, internal organs or internal tissues), After receiving the physiological sound, the pickup element 21 digitizes it into an audio file and transmits it to the conducting element 22. That is, when the deformation element 1 is operated again, it slides on the human skin and slides to the bottom. Before a predetermined position, the external force of vertical pressing will be released, and the deformation element 1 will automatically return to the original shape, so the conditions for triggering the action of the pickup element 21 will be cancelled. The sound can greatly reduce the noise generated during the operation; please refer to FIG. 1, wherein the deformation element 1 is installed on an electronic device 3, and the conductive element 22 is also connected with the control in the electronic device 3. The element 31 is electrically connected, and the control element 31 is electrically connected to a listening device 4, so the conducting element 22 can transmit the audio file to the electronic device 3, and the user can use the listening device 4 to listen to the audio For the audio file, the control element 31 is used to control the audio file to perform functions such as playback, storage, sound amplification, and sound reduction, thereby being used as a stethoscope.

請參閱第1圖,所述之形變,係該第一表面11、該第二表面12或該接合塊13透過外力使得外形產生擠壓、扭曲或內縮等變化,進而導致該第一表面11或該第二表面12與該距離感測元件23之間的距離變化達1μm以上,以下列出多個實施態樣來闡述各種形變之可能: 1.   請參閱第3A、3B圖,為該形變元件1第一實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該接合塊13係使用具撓性之材質,因此當外力垂直推壓該第一表面11,該接合塊13受外力擠壓產生形變,使得該第一表面11以垂直方向朝該距離感測元件23位移,致該距離感測元件23可測得形變量; 2.   請參閱第4A、4B圖,為該形變元件1第二實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該第一表面11係使用具撓性之材質,因此當外力垂直推壓該第一表面11,該第一表面11受外力擠壓產生形變,使得該第一表面11以垂直方向朝該距離感測元件23位移,致該距離感測元件23可測得形變量; 3.   請參閱第5A、5B圖,為該形變元件1第三實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該接合塊13係設計為連續凹凸的波浪狀,且連續凹凸的延伸方向垂直於該第一表面11,並使用具撓性之材質,當外力垂直推壓該第一表面11,同樣可該接合塊13受外力擠壓產生形變; 4.   請參閱第6A、6B圖,為該形變元件1第四實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該第一表面11係設計為連續凹凸的波浪狀,且連續凹凸的延伸方向平行於該第一表面11,該第一表面11上更朝外形成有一外凸部14,並使用具撓性之材質,因此當外力垂直推壓該第一表面11,可使該外凸部14以垂直方向朝該距離感測元件23內縮並位移,致該距離感測元件23可測得形變量; 5.   請參閱第7A、7B圖,為該形變元件1第五實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該第一表面11上平均的開設有複數個孔洞15,並使用具撓性之材質,由於各該孔洞15截斷了該第一表面11外圍結構的支撐力,讓該第一表面11內圍具有較大的形變力,因此當外力垂直推壓該第一表面11,可使該第一表面11內圍以垂直方向朝該距離感測元件23內縮並位移,致該距離感測元件23可測得形變量; 6.   請參閱第8A、8B圖,為該形變元件1第六實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該第二表面12係使用具撓性之材質,因此當外力垂直推壓該第一表面11,可使該第二表面12以垂直方向帶動該距離感測元件23朝該第一表面11位移,致該距離感測元件23可測得形變量,此一實施例係將第二實施例的該第一表面11替換至該第二表面12,可達成相同之功效,同理,第四、第五實施例的該第一表面11替換至該第二表面12,亦可達成相同之功效; 7.   請參閱第9A圖,為該形變元件1第七實施例,有別於第一至六實施例,在本實施例中,該距離感測元件23設置在該第二表面12,該距離感測元件23則係對應該第一表面11,而該第一表面11與該接合塊13係使用具撓性之材質,因此當外力垂直推壓該第一表面11,可使該第一表面11以垂直方向朝該距離感測元件23位移,致該距離感測元件23可測得形變量,請參閱第9B圖,為該形變元件1第八實施例,在本實施例中,係將第七實施例的該第一表面11與該接合塊13設計為連續凹凸的波浪狀,且該第一表面11上更朝外形成有一外凸部14,並使用具撓性之材質,因此當外力垂直推壓該第一表面11,可使該第一表面11以垂直方向朝該距離感測元件23位移,致該距離感測元件23可測得形變量,同理,無論是使用具撓性之材質或設計為連續凹凸的波浪狀,可以套用在該第一表面11、該第二表面12與該接合塊13的任一者或任一者以上,亦可達成相同形變之功效; Please refer to FIG. 1 , the deformation mentioned above is that the first surface 11 , the second surface 12 or the engaging block 13 changes the shape of the first surface 11 by extruding, twisting or shrinking inwardly through external force, thereby causing the first surface 11 Or the distance between the second surface 12 and the distance sensing element 23 varies by more than 1 μm. The following lists several implementation aspects to illustrate the possibility of various deformations: 1. Please refer to Figures 3A and 3B, which are the first embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11 and the engaging block 13 are made of a flexible material, so when an external force pushes the first surface 11 vertically, the engaging block 13 is deformed by the external force, so that the first surface 11 is perpendicular to the vertical direction Displace toward the distance sensing element 23, so that the distance sensing element 23 can measure the amount of deformation; 2. Please refer to Figures 4A and 4B, which are the second embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11 is made of a flexible material, so when an external force pushes the first surface 11 vertically, the first surface 11 is squeezed and deformed by the external force, so that the first surface 11 is The vertical direction is displaced toward the distance sensing element 23, so that the distance sensing element 23 can measure the deformation; 3. Please refer to Figures 5A and 5B, which are the third embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11, and the engaging block 13 is designed in a continuous concave-convex wavy shape, and the extending direction of the continuous concave-convex is perpendicular to the first surface 11, and a flexible material is used, when the external force vertically pushes the first surface 11. Similarly, the joint block 13 can be deformed by external force extrusion; 4. Please refer to Figures 6A and 6B, which are the fourth embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11, and the first surface 11 is designed as a continuous concave-convex wavy shape, and the extending direction of the continuous concave-convexity is parallel to the first surface 11, and an outer convex portion 14 is formed on the first surface 11 toward the outside, And a flexible material is used, so when an external force pushes the first surface 11 vertically, the convex portion 14 can be retracted and displaced toward the distance sensing element 23 in a vertical direction, so that the distance sensing element 23 can be Measured shape variable; 5. Please refer to Figures 7A and 7B, which are the fifth embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11, and a plurality of holes 15 are evenly opened on the first surface 11, and a flexible material is used. Since the holes 15 cut off the supporting force of the peripheral structure of the first surface 11, the first surface 11 is formed. The inner circumference of a surface 11 has a relatively large deformation force, so when an external force pushes the first surface 11 vertically, the inner circumference of the first surface 11 can be retracted and displaced toward the distance sensing element 23 in a vertical direction, so that the The distance sensing element 23 can measure the deformation; 6. Please refer to Figures 8A and 8B, which are the sixth embodiment of the deformation element 1. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance sensing element 23 corresponds to the The first surface 11 and the second surface 12 are made of flexible material, so when an external force pushes the first surface 11 vertically, the second surface 12 can vertically drive the distance sensing element 23 toward the The first surface 11 is displaced, so that the distance sensing element 23 can measure the deformation. In this embodiment, the first surface 11 of the second embodiment is replaced with the second surface 12, which can achieve the same effect. It is reasonable to replace the first surface 11 of the fourth and fifth embodiments with the second surface 12, and the same effect can also be achieved; 7. Please refer to FIG. 9A, which is the seventh embodiment of the deformation element 1, which is different from the first to sixth embodiments. In this embodiment, the distance sensing element 23 is disposed on the second surface 12, and the distance The sensing element 23 corresponds to the first surface 11, and the first surface 11 and the engaging block 13 are made of flexible materials, so when an external force vertically pushes the first surface 11, the first surface 11 can be 11 is displaced toward the distance sensing element 23 in the vertical direction, so that the distance sensing element 23 can measure the deformation amount. Please refer to FIG. 9B, which is the eighth embodiment of the deformation element 1. In this embodiment, the In the seventh embodiment, the first surface 11 and the engaging block 13 are designed in a continuous concave-convex wavy shape, and a convex portion 14 is formed on the first surface 11 toward the outside, and a flexible material is used. The external force pushes the first surface 11 vertically, so that the first surface 11 can be displaced toward the distance sensing element 23 in a vertical direction, so that the distance sensing element 23 can measure the deformation. The flexible material or the design is a continuous concave-convex wavy shape, which can be applied to any one or more of the first surface 11, the second surface 12 and the joint block 13, and can also achieve the same deformation effect;

上述各實施例的結構配置是配合圖示說明,實際的運用上係可更廣泛的套用在該第一表面11、該第二表面12或該接合塊13上,不單侷限在實施例所呈現的態樣。The structural configurations of the above-mentioned embodiments are described in conjunction with the illustrations, and the actual application can be more widely applied to the first surface 11 , the second surface 12 or the engaging block 13 , and is not limited to the one shown in the embodiments. manner.

上述實施例所指撓性之材質,係可為矽膠、橡膠、軟膠、泡棉、海綿或彈簧等具有形變力並可自動復歸原型的材質。The flexible material referred to in the above-mentioned embodiment may be a material with deformation force and automatic return to the original shape, such as silicone, rubber, soft rubber, foam, sponge or spring.

上述之實施例揭露,僅是本發明部分較佳的實施例選擇,然其並非用以限定本發明,任何熟悉此一技術領域具有通常知識者,在瞭解本發明前述的技術特徵及實施例,並在不脫離本發明之精神和範圍內所做的均等變化或潤飾,仍屬本發明涵蓋之範圍,而本發明之專利保護範圍須視本說明書所附之請求項所界定者為準。The above-mentioned embodiments are only selected from some preferred embodiments of the present invention, but are not intended to limit the present invention. Anyone familiar with this technical field with ordinary knowledge, after understanding the aforementioned technical features and embodiments of the present invention, Equivalent changes or modifications made without departing from the spirit and scope of the present invention still fall within the scope of the present invention, and the scope of patent protection of the present invention shall be defined by the claims attached to this specification.

1:形變元件 11:第一表面 111:拾音孔 12:第二表面 13:接合塊 14:外凸部 15:孔洞 2:拾音裝置 21:拾音元件 22:傳導元件 23:距離感測元件 3:電子裝置 31:控制元件 4:聽音裝置 L:距離長度 1: Deformation element 11: The first surface 111: Pickup hole 12: Second surface 13: Engagement block 14: Outer convex part 15: Holes 2: Pickup device 21: Pickup components 22: Conductive element 23: Distance sensing element 3: Electronic device 31: Control elements 4: listening device L: distance length

[第1圖]係本發明拾音設備之整體結構立體示意圖。 [第2圖]係本發明拾音設備之結構剖面示意圖。 [第3A圖]係本發明拾音設備之形變元件第一實施例立體示意圖。 [第3B圖]係本發明拾音設備之形變元件第一實施例剖面示意圖。 [第4A圖]係本發明拾音設備之形變元件第二實施例立體示意圖。 [第4B圖]係本發明拾音設備之形變元件第二實施例剖面示意圖。 [第5A圖]係本發明拾音設備之形變元件第三實施例立體示意圖。 [第5B圖]係本發明拾音設備之形變元件第三實施例剖面示意圖。 [第6A圖]係本發明拾音設備之形變元件第四實施例立體示意圖。 [第6B圖]係本發明拾音設備之形變元件第四實施例剖面示意圖。 [第7A圖]係本發明拾音設備之形變元件第五實施例立體示意圖。 [第7B圖]係本發明拾音設備之形變元件第五實施例剖面示意圖。 [第8A圖]係本發明拾音設備之形變元件第六實施例立體示意圖。 [第8B圖]係本發明拾音設備之形變元件第六實施例剖面示意圖。 [第9A圖]係本發明拾音設備之形變元件第七實施例剖面示意圖。 [第9B圖]係本發明拾音設備之形變元件第八實施例剖面示意圖。 [Fig. 1] is a three-dimensional schematic diagram of the overall structure of the sound pickup device of the present invention. [Fig. 2] is a schematic sectional view of the structure of the pickup device of the present invention. [Fig. 3A] is a perspective view of the first embodiment of the deformation element of the pickup device of the present invention. [FIG. 3B] is a schematic cross-sectional view of the first embodiment of the deformation element of the pickup device of the present invention. [Fig. 4A] is a perspective view of the second embodiment of the deformation element of the pickup device of the present invention. [FIG. 4B] is a schematic cross-sectional view of the second embodiment of the deformation element of the pickup device of the present invention. [Fig. 5A] is a three-dimensional schematic diagram of the third embodiment of the deformation element of the pickup device of the present invention. [FIG. 5B] is a schematic cross-sectional view of the third embodiment of the deformation element of the pickup device of the present invention. [Fig. 6A] is a perspective view of the fourth embodiment of the deformation element of the pickup device of the present invention. [Fig. 6B] is a schematic cross-sectional view of the fourth embodiment of the deformation element of the pickup device of the present invention. [Fig. 7A] is a three-dimensional schematic diagram of the fifth embodiment of the deformation element of the pickup device of the present invention. [Fig. 7B] is a schematic cross-sectional view of the fifth embodiment of the deformation element of the pickup device of the present invention. [Fig. 8A] is a perspective view of the sixth embodiment of the deformation element of the pickup device of the present invention. [Fig. 8B] is a schematic cross-sectional view of the sixth embodiment of the deformation element of the pickup device of the present invention. [Fig. 9A] is a schematic cross-sectional view of the seventh embodiment of the deformation element of the pickup device of the present invention. [Fig. 9B] is a schematic cross-sectional view of the eighth embodiment of the deformation element of the sound pickup device of the present invention.

1:形變元件 11:第一表面 12:第二表面 13:接合塊 2:拾音裝置 21:拾音元件 22:傳導元件 23:距離感測元件 3:電子裝置 31:控制元件 4:聽音裝置 1: Deformation element 11: The first surface 12: Second surface 13: Engagement block 2: Pickup device 21: Pickup components 22: Conductive element 23: Distance sensing element 3: Electronic device 31: Control elements 4: listening device

Claims (12)

一種具形變之垂直點壓式拾音設備,係至少包含:一形變元件,具有一第一表面、一第二表面以及一接合於該第一表面與該第二表面之間的接合塊,該第一表面、該第二表面與該接合塊的任一者或任一者以上係可透過外力產生形變,在該第一表面中心位置開設有一拾音孔;一拾音裝置,具有一裝設在該拾音孔中的拾音元件,以及設置在該形變元件內部的一傳導元件與一距離感測元件,該拾音元件、該距離感測元件係分別的與該傳導元件電性連接,該距離感測元件係對應在該第一表面旁;其中,將該第一表面貼合於一物件表面,以垂直於該第一表面的外力推壓該形變元件進而產生形變,使得該第一表面或該第二表面以垂直方向位移,讓該第一表面縮減與該距離感測元件之間的距離,當該距離感測元件可測得該距離長度達1μm以上時,便得觸發該拾音元件開始接收聲音。 A deformable vertical point-pressed sound pickup device at least comprises: a deformable element having a first surface, a second surface and a joint block joined between the first surface and the second surface, the One or more of the first surface, the second surface and the joint block can be deformed by external force, and a sound pickup hole is opened in the center of the first surface; a sound pickup device has a device The sound pickup element in the sound pickup hole, a conducting element and a distance sensing element disposed inside the deformation element, the pickup element and the distance sensing element are respectively electrically connected to the conducting element, The distance sensing element is corresponding to the first surface; wherein, the first surface is attached to a surface of an object, and the deformation element is pushed by an external force perpendicular to the first surface to generate deformation, so that the first surface is deformed. A surface or the second surface is displaced in the vertical direction, so that the distance between the first surface and the distance sensing element is reduced. When the distance sensing element can measure the length of the distance is more than 1 μm, it will trigger the The pickup element begins to pick up sound. 如請求項1之具形變之垂直點壓式拾音設備,其中該形變元件係裝設於一電子裝置上,而該傳導元件亦與該電子裝置內的控制元件電性連接,而該控制元件又與一聽音裝置電性連接。 As claimed in claim 1, the deformable vertical point-pressed sound pickup device, wherein the deformable element is installed on an electronic device, and the conductive element is also electrically connected with a control element in the electronic device, and the control element It is also electrically connected with a listening device. 如請求項1之具形變之垂直點壓式拾音設備,其中該距離感測元件與該傳導元件皆設置在該第二表面,該距離感測元件則係對應該第一表面。 As claimed in claim 1, the vertical point pressure pickup device, wherein the distance sensing element and the conducting element are both disposed on the second surface, and the distance sensing element corresponds to the first surface. 如請求項1之具形變之垂直點壓式拾音設備,其中該第一表面、該第二表面與該接合塊的任一者或任一者以上係使用具撓性之材質。 The deformable vertical point-pressed sound pickup device of claim 1, wherein any one or more of the first surface, the second surface and the joint block are made of flexible materials. 如請求項1之具形變之垂直點壓式拾音設備,其中該第一表面、該第二表面與該接合塊的任一者或任一者以上係設計為連續凹凸的波浪狀。 The deformable vertical point-pressed sound pickup device of claim 1, wherein any one or more of the first surface, the second surface and the engaging block are designed to be in a continuous concave-convex wavy shape. 如請求項5之具形變之垂直點壓式拾音設備,其中設計為連續凹凸的波浪狀的該第一表面、該第二表面或該接合塊係使用具撓性之材質。 As claimed in claim 5, the deformable vertical point-pressed sound pickup device, wherein the first surface, the second surface or the joint block designed as continuous concave and convex waves are made of flexible materials. 如請求項5之具形變之垂直點壓式拾音設備,其中設計為連續凹凸的波浪狀的該第一表面上朝外形成有一外凸部。 According to the deformed vertical point-pressed sound pickup device of claim 5, an outer convex portion is formed on the wave-shaped first surface designed as continuous concavo-convex. 如請求項5之具形變之垂直點壓式拾音設備,其中該第一表面與該第二表面的連續凹凸的延伸方向平行於該第一表面。 The deformed vertical point-pressed sound pickup device as claimed in claim 5, wherein the extending directions of the continuous concavities and convexities of the first surface and the second surface are parallel to the first surface. 如請求項5之具形變之垂直點壓式拾音設備,其中該接合塊的連續凹凸的延伸方向垂直於該第一表面。 The deformed vertical point-pressed sound pickup device as claimed in claim 5, wherein the extending direction of the continuous concavity and convexity of the engaging block is perpendicular to the first surface. 如請求項1之具形變之垂直點壓式拾音設備,其中該第一表面上或該第二表面上的任一者或任二者同時開設有複數個孔洞。 The deformable vertical point-pressed sound pickup device according to claim 1, wherein a plurality of holes are opened on either or both of the first surface or the second surface at the same time. 如請求項10之具形變之垂直點壓式拾音設備,其中開設有複數個該孔洞的該第一表面或該第二表面係使用具撓性之材質。 As claimed in claim 10, the deformable vertical point-pressed sound pickup device, wherein the first surface or the second surface on which the plurality of holes are formed is made of a flexible material. 如請求項4、6或11之具形變之垂直點壓式拾音設備,其中該撓性之材質,係可為矽膠、橡膠、軟膠、泡棉、海綿或彈簧等具有形變力並可自動復歸原型的材質。 As in claim 4, 6 or 11, the deformable vertical point pressure pickup device, wherein the flexible material can be silicone, rubber, soft rubber, foam, sponge or spring, etc. Returns the original material.
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TWM451943U (en) * 2012-11-28 2013-05-01 中原大學 Audio and optical pressure multi-parameter arterial measurement device
CN104883976A (en) * 2012-12-03 2015-09-02 埃勒根特医疗公司 Electronic stethoscope
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