JP5949394B2 - Local cleaning equipment - Google Patents

Local cleaning equipment Download PDF

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JP5949394B2
JP5949394B2 JP2012213438A JP2012213438A JP5949394B2 JP 5949394 B2 JP5949394 B2 JP 5949394B2 JP 2012213438 A JP2012213438 A JP 2012213438A JP 2012213438 A JP2012213438 A JP 2012213438A JP 5949394 B2 JP5949394 B2 JP 5949394B2
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circuit
side circuit
tank
water
temperature
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JP2014066100A (en
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中村 雄一郎
雄一郎 中村
幹夫 古市
幹夫 古市
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Aisin Corp
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Aisin Seiki Co Ltd
Aisin Corp
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Description

本発明は、局部洗浄装置に関し、さらに詳しくは、人体への感電対策が施された局部洗浄装置に関する。   The present invention relates to a local cleaning device, and more particularly to a local cleaning device in which measures against electric shock to a human body are taken.

局部洗浄装置のように、人体に水が接触する電気機器において、水と電気部品が直接接触する箇所を有する場合には、水を介した人体への感電が起こらないように、感電対策が施される。例えば、下記特許文献1においては、足浴器に電解水を供給する電解水生成装置の電極からの感電を防ぐために、電解水生成装置に電圧を供給するトランスを、それ以外の電気回路に電圧を供給するトランスと分離し、それら2つのトランスとして、1次側巻線及び2次側巻線がそれぞれ二重絶縁構造となった絶縁トランスを使用している。   For electrical equipment that comes into contact with water, such as a local cleaning device, if there is a place where water and electrical components come into direct contact, take measures to prevent electric shock to prevent electric shock to the human body through water. Is done. For example, in Patent Document 1 below, in order to prevent an electric shock from an electrode of an electrolyzed water generating device that supplies electrolyzed water to a foot bath, a transformer that supplies voltage to the electrolyzed water generating device is used, and a voltage is applied to other electric circuits. Separated from the transformer to be supplied, an insulating transformer in which the primary winding and the secondary winding each have a double insulation structure is used as the two transformers.

特開2003−310704号公報JP 2003-310704 A

温水洗浄便座のような局部洗浄装置において、温水を貯留するタンク内には、水を加熱するヒータ、水温を検知するサーミスタ等の温度検出部、水温が異常に上昇した時に温水の供給を停止する温度異常検知装置が設けられ、通常、これらの部材はタンク内で接地され、感電防止が図られている。また、これらの各部材の通電部は、それぞれの外郭に対して絶縁されており、二重の感電対策が施されている。通常、これらの部材のうちヒータ及び温度検出部は、通電部が絶縁材に覆われて絶縁されたうえで、水が浸入しない金属ケースに覆われており、直接絶縁部材が水に接触することがないのに対し、温度異常検知装置においては、通電部を覆う絶縁部材が直接水と接触するので、接地が不完全であったり、絶縁部材に亀裂が発生するなどして絶縁不良が起こったりした場合に、人体への感電が発生する可能性がある。   In a local washing apparatus such as a warm water washing toilet seat, a temperature detection unit such as a heater that heats water, a thermistor that detects water temperature, and the supply of hot water is stopped when the water temperature rises abnormally. A temperature abnormality detection device is provided, and these members are usually grounded in the tank to prevent electric shock. Moreover, the energization part of each of these members is insulated with respect to each outline, and a double electric shock countermeasure is taken. Usually, of these members, the heater and the temperature detection part are covered with an insulating material and insulated, and then covered with a metal case that does not allow water to enter, so that the insulating member is in direct contact with water. On the other hand, in the temperature abnormality detection device, since the insulating member that covers the current-carrying part is in direct contact with water, the grounding may be incomplete, or the insulating member may be cracked, resulting in poor insulation. If you do, there is a possibility of electric shock to the human body.

そこで、上記引用文献1のように、温度異常検知装置に電源供給するトランスを、ヒータ及び温度検出部に電源供給するトランスと分離し、それぞれのトランスとして絶縁トランスを使用するという方法が考えられる。しかし、一般に絶縁トランスは高価であり、それを2つ使用することで、感電対策に要する費用が大きくなってしまう。さらに、これら2つの電気系統に絶縁トランスを採用した場合、その絶縁効果を享受するためには、トランス部分のみならず、それぞれの2次側回路全体、つまりタンク内の電子制御ユニット(ECU)全体を絶縁することが必要となる。この絶縁のために多数の絶縁部材を使用することとなり、ECUの製造コストが増大してしまう。   Therefore, as in the above cited reference 1, a method is conceivable in which the transformer that supplies power to the temperature abnormality detection device is separated from the transformer that supplies power to the heater and the temperature detection unit, and an insulating transformer is used as each transformer. However, in general, an insulating transformer is expensive, and using two of them increases the cost required for electric shock countermeasures. Further, when an insulating transformer is employed in these two electric systems, in order to enjoy the insulating effect, not only the transformer part but also the entire secondary circuit, that is, the entire electronic control unit (ECU) in the tank. Need to be insulated. Many insulating members are used for this insulation, and the manufacturing cost of the ECU increases.

本発明が解決しようとする課題は、タンク内に設けられる温度異常検知装置から人体への感電対策が低コストで施された局部洗浄装置を提供することにある。   The problem to be solved by the present invention is to provide a local cleaning device in which a countermeasure against electric shock from a temperature abnormality detection device provided in a tank to a human body is applied at low cost.

上記課題を解決するために、本発明にかかる局部洗浄装置は、外部に供給可能に温水を貯留するタンク内の水を加熱するヒータと、前記タンク内の水温を計測する温度検出部と、前記タンク内の水温が急激に上昇した際に前記タンクから外部への温水の供給を遮断する温度異常検知装置とを前記タンク内の水と絶縁した状態で前記タンク内に備え、さらに前記ヒータ、前記温度検出部及び前記温度異常検知装置に電力を供給する電源部を有し、前記電源部は、交流電源を入力される一次側回路と、前記一次側回路に入力された電力を電圧変換して前記ヒータ及び前記温度検出部の駆動及び制御用に供給する第一の二次側回路と、前記一次側回路に入力された電力を電圧変換して前記温度異常検知装置の駆動及び制御用に供給する第二の二次側回路とを有し、前記一次側回路と前記第一の二次側回路との間は電気的に非絶縁であり、前記一次側回路と前記第二の二次側回路との間は電気的に絶縁されていることを要旨とする。   In order to solve the above-mentioned problem, a local cleaning device according to the present invention includes a heater that heats water in a tank that stores hot water so as to be supplied to the outside, a temperature detection unit that measures the water temperature in the tank, A temperature abnormality detector that shuts off the supply of hot water from the tank to the outside when the water temperature in the tank suddenly rises is provided in the tank in a state insulated from the water in the tank, and further, the heater, A power supply unit configured to supply power to the temperature detection unit and the temperature abnormality detection device; the power supply unit performs voltage conversion on the primary side circuit to which AC power is input and the power input to the primary side circuit; A first secondary circuit supplied for driving and controlling the heater and the temperature detection unit, and electric power input to the primary circuit are converted into voltage and supplied for driving and control of the temperature abnormality detection device. Second secondary side The primary side circuit and the first secondary side circuit are electrically non-insulated, and the primary side circuit and the second secondary side circuit are electrically non-insulated. The main point is that they are insulated.

ここで、前記一次側回路から前記第一の二次側回路及び第二の二次側回路への電圧変換はトランスを用いて行われ、前記トランスは、前記一次側回路を構成する一次巻線と、前記一次側回路に入力された電力を電圧変換して前記第一の二次側回路に出力する第一の二次巻線と、前記一次側回路に入力された電力を電圧変換して前記第二の二次側回路に出力する第二の二次巻線とを有し、前記一次巻線と前記第一の二次巻線との間は電気的に非絶縁であり、前記一次巻線と前記第二の二次巻線との間は電気的に絶縁されていることが好適である。   Here, voltage conversion from the primary side circuit to the first secondary side circuit and the second secondary side circuit is performed using a transformer, and the transformer is a primary winding constituting the primary side circuit. And a first secondary winding that converts the power input to the primary side circuit and outputs the voltage to the first secondary side circuit, and converts the power input to the primary side circuit to a voltage. A second secondary winding that outputs to the second secondary circuit, the primary winding and the first secondary winding are electrically non-insulated, and the primary It is preferable that the winding and the second secondary winding are electrically insulated.

さらに、前記第一の二次側回路と前記第二の二次側回路との間に電気的な接続を形成することなく、前記温度異常検知装置から出力される前記タンク内の水温の異常に関する電気信号を前記第一の二次側回路に含まれて前記ヒータ及び前記温度検出部を制御する制御部に伝達可能な絶縁回路を有するとよい。   Further, the present invention relates to a water temperature abnormality in the tank that is output from the temperature abnormality detection device without forming an electrical connection between the first secondary circuit and the second secondary circuit. It is good to have an insulation circuit which can be transmitted to the control part which is contained in the 1st secondary side circuit and controls the heater and the temperature detection part.

また、前記ヒータと前記温度検出部は、それぞれ通電部が絶縁部材によって絶縁されたうえで、前記タンク内に設けられ内部への水の浸入が防止された金属ケースの中に収納された状態で、前記タンク内に配置され、前記温度異常検知装置は、絶縁性外郭樹脂に収容され、前記絶縁性外郭樹脂が前記タンク中の水に接触する状態で、前記金属ケースの外側に配置されているとよい。   In addition, the heater and the temperature detection unit are respectively housed in a metal case that is provided in the tank and prevents water from entering the inside after the energization unit is insulated by an insulating member. The temperature abnormality detection device is disposed in the tank, and is accommodated in an insulating outer resin, and is disposed outside the metal case in a state where the insulating outer resin is in contact with water in the tank. Good.

このとき、前記金属ケースはアース接地されていることが好ましい。   At this time, the metal case is preferably grounded.

上記発明にかかる局部洗浄装置においては、感電対策が施されていないと、温度異常検知装置の電気回路を経由してタンクに浸入する一次側回路の交流電流によって、水を介した人体への感電が起こるおそれがあるが、温度異常検知装置に電力を供給する第二の二次側回路が一次側回路と絶縁されており、第二の二次側回路が電気的に独立しているため、そのような温度異常検知装置を経由した人体への感電が防止されている。一方、水を介した感電が起こる可能性が低いヒータ及び温度検出部に電力を供給する第一の二次側回路は一次側回路に対して絶縁されておらず、第一の二次側回路を絶縁するための絶縁部材等を使用する必要がないので、絶縁部材に要するコストが削減されている。第一の二次側回路に絶縁部材を使用することによる回路基板の大型化も回避されている。   In the local cleaning device according to the above invention, if measures against electric shock are not taken, electric shock to the human body through water is caused by the alternating current of the primary circuit that enters the tank via the electric circuit of the temperature abnormality detection device. However, because the second secondary circuit that supplies power to the temperature abnormality detection device is insulated from the primary circuit, and the second secondary circuit is electrically independent, Electric shock to the human body via such a temperature abnormality detection device is prevented. On the other hand, the first secondary side circuit that supplies power to the heater and the temperature detection unit that is unlikely to cause an electric shock via water is not insulated from the primary side circuit, and the first secondary side circuit Since it is not necessary to use an insulating member or the like for insulating the material, the cost required for the insulating member is reduced. An increase in the size of the circuit board by using an insulating member for the first secondary circuit is also avoided.

ここで、前記一次側回路から前記第一の二次側回路及び第二の二次側回路への電圧変換が前記のようなトランスを用いて行われる場合には、第一の二次側回路を一次側回路に対して非絶縁とし、第二の二次側回路を一次側回路に対して絶縁する構成を簡便に構築することができる。また、単一の一次巻線を第一の二次巻線と第二の二次巻線に対して共通に使用した単一のトランスから2つの二次側回路に電圧を供給できることに加え、巻線間の絶縁が一次巻線と第二の二次巻線の間にのみ施されることにより、トランス部の製造のためのコストが抑制される。   Here, when the voltage conversion from the primary side circuit to the first secondary side circuit and the second secondary side circuit is performed using the transformer as described above, the first secondary side circuit It is possible to easily construct a configuration in which the second side circuit is insulated from the primary circuit while the second side circuit is insulated from the primary circuit. Moreover, in addition to being able to supply voltage to two secondary side circuits from a single transformer that uses a single primary winding in common for the first secondary winding and the second secondary winding, Since the insulation between the windings is provided only between the primary winding and the second secondary winding, the cost for manufacturing the transformer part is suppressed.

さらに、前記第一の二次側回路と前記第二の二次側回路との間に電気的な接続を形成することなく、前記温度異常検知装置から出力されるタンク内の水温の異常に関する電気信号を前記第一の二次側回路に含まれてヒータ及び温度検出部を制御する制御部に伝達可能な絶縁回路を有する場合には、第一の二次側回路と第二の二次側回路の間の電気的絶縁を維持しつつ、2つの二次側回路の構成部材の間で、必要な信号のやりとりを行うことができる。   Furthermore, the electric power related to the abnormality of the water temperature in the tank output from the temperature abnormality detection device without forming an electrical connection between the first secondary circuit and the second secondary circuit. A first secondary circuit and a second secondary side if the first secondary circuit includes an insulation circuit that is included in the first secondary circuit and is capable of transmitting to a controller that controls the heater and the temperature detector; Necessary signals can be exchanged between the components of the two secondary circuits while maintaining the electrical insulation between the circuits.

また、前記ヒータと前記温度検出部が、それぞれ通電部が絶縁部材によって絶縁されたうえで、上記のような金属ケースの中に収納された状態で前記タンク内に配置されていると、ヒータ及び温度検出部がタンク内の水と直接接触しないので、これらに電源供給を行う第一の二次側回路が一次側回路と絶縁されていなくても、ヒータ及び/又は温度検出部から水を介した人体への感電が起こる可能性が一層低減される。さらに、前記温度異常検知装置が、絶縁性外郭樹脂に収容され、前記絶縁性外郭樹脂が前記タンク中の水に接触する状態で、前記金属ケースの外側に配置されていると、ヒータ及び/又は温度検出部に異常が生じた際にも、温度検出装置がその異常の影響を受けずに外部への水の供給を遮断することが可能となる。   Further, when the heater and the temperature detecting unit are disposed in the tank in a state where the energizing unit is insulated by an insulating member and stored in the metal case as described above, the heater and Since the temperature detector does not come into direct contact with the water in the tank, even if the first secondary circuit supplying power to them is not insulated from the primary circuit, water is passed from the heater and / or temperature detector. The possibility of electric shock to the human body is further reduced. Furthermore, when the temperature abnormality detection device is accommodated in an insulating outer resin, and the insulating outer resin is disposed outside the metal case in contact with water in the tank, a heater and / or Even when an abnormality occurs in the temperature detection unit, the temperature detection device can block the supply of water to the outside without being affected by the abnormality.

このとき、前記金属ケースがアース接地されていると、一次側回路に対して絶縁されていないヒータ及び温度検出部の漏電がより一層防止され、水を介した人体への感電が防がれる。   At this time, if the metal case is grounded, the heater and the temperature detector that are not insulated from the primary circuit are further prevented from leaking, and electric shock to the human body through water is prevented.

本発明の一実施形態にかかる局部洗浄装置の全体を示す斜視図である。It is a perspective view showing the whole local cleaning device concerning one embodiment of the present invention. 上記局部洗浄装置の電源部及び制御回路を示す概略図である。It is the schematic which shows the power supply part and control circuit of the said local washing | cleaning apparatus.

以下、本発明の一実施形態にかかる局部洗浄装置について、図面を参照しながら詳細に説明する。局部洗浄装置1は、例えば温水洗浄便座のように、温水を人体局部洗浄用に供給する装置である。   Hereinafter, a local cleaning device according to an embodiment of the present invention will be described in detail with reference to the drawings. The local cleaning apparatus 1 is an apparatus that supplies hot water for human body local cleaning, such as a warm water cleaning toilet seat.

図1に、局部洗浄装置の一例を示す。局部洗浄装置1は、便座5の後方に設けられたノズル2を有し、ノズル2から温水を噴出することで、人体局部を洗浄する。ノズル2に供給される温水は、公共水道等の給水源4から取得され、(温水)タンク6において加温、貯留されたものである。水の加温や温水の供給は、制御手段3によって制御される。制御手段3には、後述する第一の二次側回路20及び第二の二次側回路40を構成する各種素子等が含まれる。   FIG. 1 shows an example of a local cleaning apparatus. The local cleaning device 1 has a nozzle 2 provided behind the toilet seat 5, and cleans a human body part by ejecting hot water from the nozzle 2. The hot water supplied to the nozzle 2 is obtained from a water supply source 4 such as a public water supply, and is warmed and stored in a (hot water) tank 6. Water heating and hot water supply are controlled by the control means 3. The control means 3 includes various elements constituting the first secondary side circuit 20 and the second secondary side circuit 40 described later.

次に、図2に基づき、局部洗浄装置1の電源系統と電気回路の概要について説明する。   Next, based on FIG. 2, the outline | summary of the power supply system and electric circuit of the local washing | cleaning apparatus 1 is demonstrated.

タンク6の中には、水を加熱するための(温水)ヒータ22、水温を計測するための例えばサーミスタ等の水温検出部23、水温が異常上昇した際に外部への温水の供給を緊急停止するための温度異常検知装置42が備えられる。   In the tank 6, a heater 22 for heating water (a hot water), a water temperature detection unit 23 such as a thermistor for measuring the water temperature, and the emergency stop of the supply of hot water to the outside when the water temperature rises abnormally A temperature abnormality detecting device 42 is provided.

そして、局局部洗浄装置1は、一次側回路10、第一の二次側回路20、第二の二次側回路40を有する。詳細は後述するが、第一の二次側回路20は一次側回路10に対して電気的に絶縁されていない。一方、第二の二次側回路40は一次側回路10に対して電気的に絶縁され、従って第一の二次側回路20とも電気的に絶縁されている。一次側回路10に含まれる一次巻線11と第一の二次側回路20に含まれる第一の二次巻線21、第二の二次側回路40に含まれる第二の二次巻線41は、トランス50を構成している。   The local cleaning apparatus 1 includes a primary circuit 10, a first secondary circuit 20, and a second secondary circuit 40. Although details will be described later, the first secondary circuit 20 is not electrically insulated from the primary circuit 10. On the other hand, the second secondary circuit 40 is electrically insulated from the primary circuit 10, and thus is also electrically insulated from the first secondary circuit 20. A primary winding 11 included in the primary side circuit 10, a first secondary winding 21 included in the first secondary side circuit 20, and a second secondary winding included in the second secondary side circuit 40. 41 constitutes a transformer 50.

一次側回路10は、例えば商用電源12から取得された交流を、一次巻線11に入力する。一次側回路10に入力される交流電源としては、商用電源12だけではなく、スイッチング回路を使用したスイッチング電源等、任意の交流電源を使用することができる。   The primary side circuit 10 inputs, for example, alternating current acquired from the commercial power supply 12 to the primary winding 11. As the AC power source input to the primary circuit 10, not only the commercial power source 12, but also any AC power source such as a switching power source using a switching circuit can be used.

第一の二次側回路20には、一次巻線11に入力された電力を電圧変換して出力する第一の二次巻線21の他に、ヒータ22、温度検出部23等、各種機器と、それらを制御するための制御部(マイコン)24が実装されている。これらヒータ22、温度検出部23をはじめとする各種機器と制御部24を駆動及び制御する電源は、第一の二次巻線21より出力された交流がダイオード25及び電解コンデンサ26による整流平滑化、シリーズレギュレータ27による安定化を受けて所定の電圧(第一出力電圧、例えば12V)を有する直流に変換されて供給される。ヒータ22及び温度検出部23以外に第一の二次側回路20に実装される機器としては、ヒータ22を制御するヒータ駆動回路28、タンク6内の温水の外部への供給、つまりノズル2への供給を制御するウォータバルブ回路29及びロータリバルブ30が例示される。   The first secondary circuit 20 includes various devices such as a heater 22 and a temperature detection unit 23 in addition to the first secondary winding 21 that converts the power input to the primary winding 11 and outputs the voltage. And the control part (microcomputer) 24 for controlling them is mounted. As for the power source for driving and controlling the various devices including the heater 22 and the temperature detecting unit 23 and the control unit 24, the alternating current output from the first secondary winding 21 is rectified and smoothed by the diode 25 and the electrolytic capacitor 26. In response to stabilization by the series regulator 27, it is converted into a direct current having a predetermined voltage (first output voltage, for example, 12V) and supplied. In addition to the heater 22 and the temperature detector 23, the devices mounted on the first secondary circuit 20 include a heater drive circuit 28 that controls the heater 22, supply of hot water in the tank 6 to the outside, that is, to the nozzle 2. A water valve circuit 29 and a rotary valve 30 for controlling the supply of the oil are illustrated.

第二の二次側回路40は、一次巻線11に入力された電力を電圧変換して出力する第二の二次巻線41の他に、温度異常検知装置42を含む。第二の二次側回路40には、局部洗浄装置1を構成する各種機器のうち、温度異常検知装置42のみ実装され、他の機器は実装されていない。他の機器類は、第一の二次側回路20か、第二の二次側回路40とは電気的に絶縁されたさらに別の回路に実装される。第二の二次巻線41より出力された交流がダイオード43と電解コンデンサ44によって整流平滑化され、所定の電圧(第二出力電圧、例えば12V)を有する直流に変換されて、温度異常検知装置42の電源として供給される。   The second secondary circuit 40 includes a temperature abnormality detection device 42 in addition to the second secondary winding 41 that converts the power input to the primary winding 11 and outputs the voltage. Of the various devices constituting the local cleaning device 1, only the temperature abnormality detection device 42 is mounted on the second secondary circuit 40, and other devices are not mounted. Other devices are mounted on the first secondary circuit 20 or another circuit that is electrically insulated from the second secondary circuit 40. The alternating current output from the second secondary winding 41 is rectified and smoothed by the diode 43 and the electrolytic capacitor 44 and converted into direct current having a predetermined voltage (second output voltage, for example, 12V), and the temperature abnormality detection device 42 is supplied as a power source.

絶縁トランス50において、一次巻線11と第一の二次巻線21の間には、絶縁処理が施されず、両者は電気的に絶縁されていない。一方、一次巻線11と第二の二次巻線41の間は、電気的に絶縁されている。この絶縁は、例えば二重絶縁構造の形成によって行われる。一次巻線11と第二の二次巻線41の間が電気的に絶縁されていることから、第一の二次巻線21と第二の二次巻線41の間も電気的に絶縁されていることになる。   In the insulating transformer 50, the primary winding 11 and the first secondary winding 21 are not insulated and are not electrically insulated from each other. On the other hand, the primary winding 11 and the second secondary winding 41 are electrically insulated. This insulation is performed, for example, by forming a double insulation structure. Since the primary winding 11 and the second secondary winding 41 are electrically insulated, the first secondary winding 21 and the second secondary winding 41 are also electrically insulated. Will be.

また、第二の二次側回路40は、温度異常検知装置42及びダイオード43、電解コンデンサ44をはじめとする各素子など、全ての構成要素が外部から電気的に絶縁され、電気的に独立している。トランス50での絶縁と合わせて、第二の二次側回路40は、全体として、一次側回路10及び第一の二次側回路20から電気的に絶縁されている。   In addition, the second secondary circuit 40 includes a temperature abnormality detection device 42, a diode 43, and each element including the electrolytic capacitor 44, and all other components are electrically insulated from the outside and are electrically independent. ing. Together with the insulation in the transformer 50, the second secondary circuit 40 is electrically insulated from the primary circuit 10 and the first secondary circuit 20 as a whole.

一方、第一の二次側回路20を構成する各種機器、各種素子等には、特別な絶縁処理が施されておらず、外部との絶縁が確保されていない。トランス50でも一次巻線11と第一の二次巻線21の間が絶縁されていないことと合わせて、第一の二次側回路20全体が、一次側回路10に対して電気的に絶縁されていない状態にある。   On the other hand, various devices, various elements, and the like constituting the first secondary circuit 20 are not subjected to special insulation treatment and insulation from the outside is not ensured. In addition to the fact that the transformer 50 is not insulated between the primary winding 11 and the first secondary winding 21, the entire first secondary circuit 20 is electrically insulated from the primary circuit 10. It is in a state that has not been done.

次に、タンク6の内部に設けられた機器の構成について説明する。前述のとおり、タンク6の内部にはヒータ22、温度検出部23、温度異常検知装置42が設けられている。ヒータ22と温度検出部23は、それぞれ通電部分が絶縁材に被覆されて絶縁された状態で、金属ケース31に収納されている。つまり、通電部分が金属ケース31に対して絶縁された状態で、金属ケース31に収納されている。金属ケース31は、タンク6に水を満たしても、内部に水が浸入しないように形成されている。この構成により、ヒータ22及び温度検出部23の通電部を被覆する絶縁材は水に接触することがなく、その絶縁材に覆われた通電部も水に接触することがないので、ヒータ22及び温度検出部23から漏電が起こることはなく、ヒータ22及び温度検出部23からの水を経由した感電が防止されている。さらには、金属ケース31がアース接地されていることにより、万一、通電部を被覆する絶縁材や金属ケース31に損傷等が生じ、ヒータ22及び温度検出部23の通電部が水に接触する事態が発生したとしても、人体への感電が防止される。ここで、金属ケース31は必ずしも必要なものではないが、ヒータ22及び温度検出部23の絶縁材が直接タンク6内の水に接触する場合に比べて、このように金属ケース31に収容されて水と接触しない場合の方が、万一ヒータ22及び温度検出部23の絶縁材に損傷が発生した場合にも、これらからの感電が防止され、好ましい。   Next, the configuration of equipment provided inside the tank 6 will be described. As described above, the heater 22, the temperature detection unit 23, and the temperature abnormality detection device 42 are provided inside the tank 6. The heater 22 and the temperature detection unit 23 are housed in the metal case 31 in a state where the energized portions are covered with an insulating material and insulated. That is, the energized portion is housed in the metal case 31 in a state of being insulated from the metal case 31. The metal case 31 is formed so that water does not enter the tank 6 even when the tank 6 is filled with water. With this configuration, the insulating material that covers the heater 22 and the current-carrying part of the temperature detection unit 23 does not come into contact with water, and the current-carrying part that is covered with the insulation material does not come into contact with water. Electric leakage does not occur from the temperature detection unit 23, and an electric shock via water from the heater 22 and the temperature detection unit 23 is prevented. Furthermore, since the metal case 31 is grounded, the insulating material covering the energization part and the metal case 31 are damaged, and the energization parts of the heater 22 and the temperature detection unit 23 come into contact with water. Even if a situation occurs, electric shock to the human body is prevented. Here, the metal case 31 is not necessarily required, but is contained in the metal case 31 in this manner as compared with the case where the insulating materials of the heater 22 and the temperature detection unit 23 are in direct contact with the water in the tank 6. The case where it does not come into contact with water is preferable in the event that the heater 22 and the insulating material of the temperature detection unit 23 are damaged, because electric shock is prevented from occurring.

一方、温度異常検知装置42は、金属ケース31に収容されず、金属ケース31の外側に配置されている。温度異常検知装置42は、感温リードスイッチを主体として構成され、温度の異常上昇を検知すると、ウォータバルブ回路29を切断し、タンク6から外部への温水の供給を即座に停止し、ノズル2からの温水の噴出が停止できる。温度異常検知装置42は、ヒータ22及び/又は温度検出部23に異常が発生した場合にも、その異常の影響を受けずに、外部への温水の供給を停止することができるように、このようにヒータ22及び温度検出部23から空間的に分離され、金属ケース31の外側に設けられている。温度異常検知装置42の通電部は、絶縁性樹脂外郭の中に収容されているが、絶縁性樹脂外郭は、ヒータ22及び温度検出部23の通電部を被覆する絶縁材とは異なり、タンク6内の水と直接接触する。   On the other hand, the temperature abnormality detection device 42 is not accommodated in the metal case 31 and is disposed outside the metal case 31. The temperature abnormality detection device 42 is mainly composed of a temperature-sensitive reed switch. When an abnormal temperature rise is detected, the water valve circuit 29 is cut off, and the supply of hot water from the tank 6 to the outside is immediately stopped. The hot water jet from can be stopped. The temperature abnormality detection device 42 is configured so that, even when an abnormality occurs in the heater 22 and / or the temperature detection unit 23, the supply of hot water to the outside can be stopped without being affected by the abnormality. As described above, it is spatially separated from the heater 22 and the temperature detector 23 and provided outside the metal case 31. The energization part of the temperature abnormality detection device 42 is accommodated in the insulating resin outer shell, but the insulating resin outer shell is different from the insulating material that covers the energization part of the heater 22 and the temperature detection unit 23, and the tank 6. Direct contact with the water inside.

温度異常検知装置42の感温リードスイッチからウォータバルブ回路29への信号伝達は、フォトカプラ等よりなり、絶縁的に信号伝達を行うことができる絶縁回路70を介して行われる。絶縁回路70に中継された信号(感温スイッチ入力)は、制御部24を介してウォータバルブ回路29に伝達される。このように、絶縁回路70を介して信号伝達を行うことで、第二の二次側回路40と第一の二次側回路20及び一次側回路10との間の絶縁を維持したまま、第二の二次側回路40と第一の二次側回路20の間で信号のやり取りを行うことができる。   Signal transmission from the temperature-sensitive reed switch of the temperature abnormality detection device 42 to the water valve circuit 29 is performed via an insulating circuit 70 which is made of a photocoupler and can transmit signals in an insulating manner. The signal relayed to the insulation circuit 70 (temperature sensitive switch input) is transmitted to the water valve circuit 29 via the control unit 24. In this way, by performing signal transmission through the insulation circuit 70, the insulation between the second secondary circuit 40 and the first secondary circuit 20 and the primary circuit 10 is maintained while maintaining the insulation. Signals can be exchanged between the second secondary circuit 40 and the first secondary circuit 20.

温度異常検知装置42は、制御上の必要性から、上記のように絶縁性樹脂外郭がタンク6内の温水と直接接触する構成とされている。また、ヒータ22、温度検出部23等、他の構成機器が何らかの問題で異常動作を起こしてタンク6内の水が異常昇温を起こした際にも、温度異常検知装置42がそれらの異常動作の影響を受けずに即座に温水の供給を停止することができるように、温度異常検知装置42は、ヒータ22及び温度検出部23等、他の機器とは、空間的に分離されるとともに、独立した電気回路上に構成されている。   The temperature abnormality detection device 42 is configured such that the insulating resin shell is in direct contact with the hot water in the tank 6 as described above because of the necessity for control. In addition, when other components such as the heater 22 and the temperature detection unit 23 cause an abnormal operation due to some problem and the water in the tank 6 abnormally rises in temperature, the temperature abnormality detection device 42 performs the abnormal operation. The temperature abnormality detection device 42 is spatially separated from other devices such as the heater 22 and the temperature detection unit 23 so that the supply of hot water can be stopped immediately without being affected by It is configured on an independent electric circuit.

温度異常検知装置42の通電部は、絶縁性外郭樹脂の中に収納されているので、正常に動作している状態では、第二の二次側回路40と一次側回路10の間の絶縁の有無にかかわらず、温度異常検知装置42からの漏電は起こらない。しかし、上記のように、第二の二次側回路40が一次側回路10と電気的に絶縁されていることで、万一絶縁性外郭樹脂に亀裂等が発生して、絶縁性外郭樹脂による絶縁が維持されなくなったとしても、温度異常検知装置42の通電部は一次側回路10から電気的に独立しており、商用電源12が温度異常検知装置42を介してタンク6内に侵入することがなく、商用電源12の漏電は起こらない。   Since the current-carrying part of the temperature abnormality detection device 42 is housed in the insulating outer resin, the insulation between the second secondary side circuit 40 and the primary side circuit 10 in the normal operation state. Regardless of the presence or absence, no leakage from the temperature abnormality detection device 42 occurs. However, as described above, since the second secondary circuit 40 is electrically insulated from the primary circuit 10, a crack or the like may occur in the insulating outer resin, which is caused by the insulating outer resin. Even if insulation is no longer maintained, the energization part of the temperature abnormality detection device 42 is electrically independent from the primary circuit 10, and the commercial power supply 12 enters the tank 6 through the temperature abnormality detection device 42. There is no leakage of the commercial power supply 12.

ただし、水にはある程度の電気伝導性があるため、もし第二の二次側回路40がこのように一次側回路10と絶縁されていなかった場合にも、金属ケース31がアース接地されていれば、商用電源12からタンク6内に電流が浸入したとしても、その電流の少なくとも一部が水と金属ケース31を介してアース電位に逃がされるので、深刻な感電は回避することができる。しかし、上記のように第二の二次側回路40が一次側回路10と絶縁されていることで、局部洗浄装置1の据え付け時に金属ケース31のアース接地を失念したり、何らかの原因で一旦接続されたアース接地配線が切断等されたりした場合にも、商用電源12のタンク6への侵入が起こらず、商用電源12からの感電を防止することができる。   However, since water has a certain degree of electrical conductivity, even if the second secondary circuit 40 is not insulated from the primary circuit 10 in this way, the metal case 31 must be grounded. For example, even if an electric current enters the tank 6 from the commercial power source 12, at least a part of the electric current is released to the ground potential through the water and the metal case 31, so that a serious electric shock can be avoided. However, because the second secondary circuit 40 is insulated from the primary circuit 10 as described above, the grounding of the metal case 31 is forgotten when the local cleaning device 1 is installed, or is temporarily connected for some reason. Even when the earth ground wiring is cut or the like, the commercial power source 12 does not enter the tank 6 and electric shock from the commercial power source 12 can be prevented.

上記の構成において、ヒータ22及び温度検出部23の通電部は被覆する絶縁材の効果及び金属ケース31への水の浸入防止の効果で、二重に絶縁がなされているうえ、すぐ近傍で金属ケース31がアース接地されているため、温度異常検知装置42の通電部に比べて、深刻な漏電を起こす確率が低い。このため、第一の二次側回路20には、一次側回路10との間に絶縁が施されていない。絶縁を施すとすれば、トランジスタ50部分での絶縁及び第一の二次巻線21よりも下流側の第一の二次側回路20全体での絶縁処理が必要となり、そのために要するコストと基板スペースの増加が大きいため、本発明においては、第一の二次側回路20と一次側回路10の間には絶縁が行われない。   In the above configuration, the heater 22 and the current-carrying portion of the temperature detection unit 23 are double insulated due to the effect of the insulating material to be coated and the effect of preventing water intrusion into the metal case 31, and a metal in the immediate vicinity. Since the case 31 is grounded, the probability of causing a serious electric leakage is lower than that of the energization part of the temperature abnormality detection device 42. For this reason, the first secondary circuit 20 is not insulated from the primary circuit 10. If insulation is provided, insulation at the transistor 50 portion and insulation processing at the entire first secondary circuit 20 downstream from the first secondary winding 21 are required, and the cost and substrate required for this are required. Due to the large increase in space, no insulation is performed between the first secondary circuit 20 and the primary circuit 10 in the present invention.

以上、本発明の実施形態について詳細に説明したが、本発明は上記実施例に何ら限定されるものではなく、本発明の要旨を逸脱しない範囲で種々の改変が可能である。   As mentioned above, although embodiment of this invention was described in detail, this invention is not limited to the said Example at all, A various change is possible in the range which does not deviate from the summary of this invention.

1 局部洗浄装置
6 タンク
10 一次側回路
11 一次巻線
20 第一の二次側回路
21 第一の二次巻線
22 ヒータ
23 温度検出部
24 制御部
31 金属ケース
40 第二の二次側回路
41 第二の二次巻線
42 温度異常検知装置
50 トランス
70 絶縁回路
DESCRIPTION OF SYMBOLS 1 Local washing apparatus 6 Tank 10 Primary side circuit 11 Primary winding 20 First secondary side circuit 21 First secondary winding 22 Heater 23 Temperature detection part 24 Control part 31 Metal case 40 Second secondary side circuit 41 Second secondary winding 42 Temperature abnormality detection device 50 Transformer 70 Insulation circuit

Claims (5)

外部に供給可能に温水を貯留するタンク内の水を加熱するヒータと、前記タンク内の水温を計測する温度検出部と、前記タンク内の水温が急激に上昇した際に前記タンクから外部への温水の供給を遮断する温度異常検知装置とを前記タンク内の水と絶縁した状態で前記タンク内に備え、さらに前記ヒータ、前記温度検出部及び前記温度異常検知装置に電力を供給する電源部を有し、
前記電源部は、交流電源を入力される一次側回路と、
前記一次側回路に入力された電力を電圧変換して前記ヒータ及び前記温度検出部の駆動及び制御用に供給する第一の二次側回路と、前記一次側回路に入力された電力を電圧変換して前記温度異常検知装置の駆動及び制御用に供給する第二の二次側回路とを有し、
前記一次側回路と前記第一の二次側回路との間は電気的に非絶縁であり、前記一次側回路と前記第二の二次側回路との間は電気的に絶縁されている局部洗浄装置。
A heater that heats water in a tank that stores hot water so that it can be supplied to the outside, a temperature detection unit that measures the water temperature in the tank, and when the water temperature in the tank suddenly rises, A temperature abnormality detection device that shuts off the supply of hot water is provided in the tank in a state insulated from the water in the tank, and further, a power supply unit that supplies power to the heater, the temperature detection unit, and the temperature abnormality detection device Have
The power supply unit includes a primary side circuit to which AC power is input,
A first secondary circuit that converts the power input to the primary circuit and supplies it for driving and controlling the heater and the temperature detector, and converts the power input to the primary circuit to a voltage And a second secondary side circuit that supplies the temperature abnormality detection device for driving and control,
A local part that is electrically non-insulated between the primary side circuit and the first secondary side circuit, and is electrically isolated between the primary side circuit and the second secondary side circuit. Cleaning device.
前記一次側回路から前記第一の二次側回路及び第二の二次側回路への電圧変換はトランスを用いて行われ、前記トランスは、前記一次側回路を構成する一次巻線と、前記一次側回路に入力された電力を電圧変換して前記第一の二次側回路に出力する第一の二次巻線と、前記一次側回路に入力された電力を電圧変換して前記第二の二次側回路に出力する第二の二次巻線とを有し、前記一次巻線と前記第一の二次巻線との間は電気的に非絶縁であり、前記一次巻線と前記第二の二次巻線との間は電気的に絶縁されている請求項1に記載の局部洗浄装置。   Voltage conversion from the primary side circuit to the first secondary side circuit and the second secondary side circuit is performed using a transformer, and the transformer includes a primary winding that constitutes the primary side circuit, and A first secondary winding that converts the power input to the primary side circuit and outputs it to the first secondary side circuit; and converts the power input to the primary side circuit to a voltage and converts the power to the second secondary circuit. A second secondary winding that outputs to the secondary side circuit of the first, and the primary winding and the first secondary winding are electrically non-insulated, and the primary winding and The local cleaning apparatus according to claim 1, wherein the second secondary winding is electrically insulated from the second secondary winding. 前記第一の二次側回路と前記第二の二次側回路との間に電気的な接続を形成することなく、前記温度異常検知装置から出力される前記タンク内の水温の異常に関する電気信号を前記第一の二次側回路に含まれて前記ヒータ及び前記温度検出部を制御する制御部に伝達可能な絶縁回路を有する請求項1又は2に記載の局部洗浄装置。   An electrical signal relating to a water temperature abnormality in the tank that is output from the temperature abnormality detection device without forming an electrical connection between the first secondary circuit and the second secondary circuit. 3. The local cleaning device according to claim 1, further comprising an insulating circuit that is included in the first secondary circuit and can be transmitted to a control unit that controls the heater and the temperature detection unit. 前記ヒータと前記温度検出部は、それぞれ通電部が絶縁部材によって絶縁されたうえで、前記タンク内に設けられ内部への水の浸入が防止された金属ケースの中に収納された状態で、前記タンク内に配置され、前記温度異常検知装置は、絶縁性外郭樹脂に収容され、前記絶縁性外郭樹脂が前記タンク中の水に接触する状態で、前記金属ケースの外側に配置された請求項1〜3のいずれかに記載の局部洗浄装置。   In the state where the heater and the temperature detection unit are respectively housed in a metal case provided in the tank and prevented from entering water after the energization unit is insulated by an insulating member. The temperature abnormality detection device is disposed in a tank, and is housed in an insulating outer resin, and is disposed outside the metal case in a state where the insulating outer resin is in contact with water in the tank. The local cleaning apparatus in any one of -3. 前記金属ケースはアース接地されている請求項4に記載の局部洗浄装置。   The local cleaning apparatus according to claim 4, wherein the metal case is grounded.
JP2012213438A 2012-09-27 2012-09-27 Local cleaning equipment Expired - Fee Related JP5949394B2 (en)

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