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JP2013000530A - Washing machine - Google Patents

Washing machine Download PDF

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Publication number
JP2013000530A
JP2013000530A JP2011137950A JP2011137950A JP2013000530A JP 2013000530 A JP2013000530 A JP 2013000530A JP 2011137950 A JP2011137950 A JP 2011137950A JP 2011137950 A JP2011137950 A JP 2011137950A JP 2013000530 A JP2013000530 A JP 2013000530A
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washing
conductivity
capacitor
water
washing machine
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JP5707246B2 (en
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Takayuki Fumino
高之 文野
Hironori Komori
啓礼 小森
Tsunehiro Soma
倫弘 相馬
Woo Dong
宇 董
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Hitachi Appliances Inc
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Hitachi Appliances Inc
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  • Investigating Or Analyzing Materials By The Use Of Electric Means (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a washing machine that allows conductivity to be measured with high accuracy to perform control in accordance with the conductivity.SOLUTION: A washing machine is provided that includes: a housing; an outer tub anti-vibration supported within the housing and storing washing water therein; a washing and spin-drying tub rotatably supported within the outer tub and containing laundry; a driving device rotationally driving the washing and spin-drying tub; water supply means for supplying water into the outer tub; conductivity detecting means for detecting conductivity of water used for washing; and a control unit controlling the driving device and the water supply means to allow at least a washing operation to be performed. The conductivity detecting means is formed of electrodes facing each other. A capacitor is provided in a negative feedback circuit including these electrodes and a transformer. An element for discharging the charge accumulated in this capacitor is provided.

Description

本発明は、特に洗濯に使用する水硬度を計測する機能を有する洗濯機に関する。   The present invention particularly relates to a washing machine having a function of measuring water hardness used for washing.

洗濯機は、水道水で洗剤を溶解した洗濯水で衣類の洗い運転を行うものである。洗濯機に給水される水道水は、カルシウムやマグネシウムなどの硬度成分を含んでいる。硬度成分は、洗剤の主成分である界面活性剤と結合して石鹸かすとなるため、洗濯水中の界面活性剤量を減少させ、洗浄力を低下させる原因となっている。また、水道水の硬度は、各地域で異なり、また季節ごとにも変動する。このため、洗濯に使用する水の硬度から洗剤量を算出し、適切な運転を行う洗濯機が求められている。   The washing machine performs a washing operation of clothes with washing water obtained by dissolving detergent in tap water. The tap water supplied to the washing machine contains hardness components such as calcium and magnesium. Since the hardness component is combined with the surfactant, which is the main component of the detergent, to form soap scum, the amount of the surfactant in the wash water is reduced, which causes a reduction in cleaning power. In addition, the hardness of tap water varies from region to region and varies from season to season. For this reason, there is a need for a washing machine that calculates the amount of detergent from the hardness of water used for washing and performs an appropriate operation.

下記特許文献1には、洗濯水が溜まる外槽に洗濯水の電導度を測定するための一対の電極を備え、測定した洗濯水の電導度から、洗濯水の硬度を換算し、洗濯水の硬度に応じて洗濯工程を行う洗濯機が開示されている。   The following Patent Document 1 includes a pair of electrodes for measuring the electric conductivity of washing water in an outer tub in which the washing water is accumulated, and the hardness of the washing water is converted from the measured electric conductivity of the washing water, A washing machine that performs a washing process according to hardness is disclosed.

特開2009−195737号公報JP 2009-195737 A

特許文献1で開示された洗濯機は、外槽に設けられた空気チャンバの底面から外槽内に突出するように一対の電極が設けられている。このような構造を設けた洗濯機においては、電導度が変化していないにも関わらず、時間の経過と共に電導度が変化する問題がある。また、広範囲に電導度を計測する場合、精度が落ちる問題がある。   The washing machine disclosed in Patent Document 1 is provided with a pair of electrodes so as to protrude into the outer tub from the bottom surface of the air chamber provided in the outer tub. In the washing machine provided with such a structure, there is a problem that the conductivity changes with the passage of time even though the conductivity does not change. In addition, when measuring conductivity over a wide range, there is a problem that accuracy is lowered.

本発明は、上記課題を解決するものであり、その目的は、電導度を精度良く測定して、その電導度に応じた制御を行うことのできる洗濯機を提供することにある。   This invention solves the said subject, The objective is to provide the washing machine which can measure electrical conductivity accurately and can perform control according to the electrical conductivity.

筐体と、前記筐体内に防振支持され、内部に洗濯水を貯留する外槽と、前記外槽内に回転可能に支持され、洗濯物が収容される洗濯兼脱水槽と、前記洗濯兼脱水槽を回転駆動させる駆動装置と、前記外槽内に給水する給水手段と、洗濯に使用される水の電導度を検出する電導度検出手段と、前記駆動装置および前記給水手段を制御して、少なくとも洗い運転を実行可能な制御部を備えた洗濯機において、前記電導度検出手段は、互いに向かい合う電極で形成され、これら電極とトランスを有する負帰還回路にコンデンサを設け、このコンデンサに溜まった電荷を放電させる素子を設置した。   A housing; an anti-vibration support in the housing; and an outer tub for storing washing water therein; a washing and dewatering tub that is rotatably supported in the outer tub and stores laundry; and the washing and washing A drive device for rotationally driving the dehydration tub, water supply means for supplying water into the outer tub, conductivity detection means for detecting the conductivity of water used for washing, and controlling the drive device and the water supply means. In a washing machine having a control unit capable of executing at least a washing operation, the conductivity detecting means is formed of electrodes facing each other, a capacitor is provided in a negative feedback circuit having these electrodes and a transformer, and the capacitor is accumulated in the capacitor. An element for discharging electric charge was installed.

本発明によれば、洗濯に用いられる水の硬度(電気伝導度)を高精度に測定し、能率よく洗濯が行える洗濯機を提供することができる。   ADVANTAGE OF THE INVENTION According to this invention, the washing machine which measures the hardness (electrical conductivity) of the water used for washing with high precision, and can wash efficiently can be provided.

本実施形態に係る洗濯機の外観斜視図である。It is an external appearance perspective view of the washing machine which concerns on this embodiment. 本実施形態に係る洗濯機の内部構造を示すために筐体の一部および外槽を切断して示した右側断面図である。It is the right sectional view which cut and showed a part of case and an outer tub in order to show the internal structure of the washing machine concerning this embodiment. 電極単体を示す斜視図である。It is a perspective view which shows an electrode single-piece | unit. 図2の電導度検出手段11の線断面図である。FIG. 3 is a cross-sectional view of the conductivity detecting means 11 in FIG. 2. 制御装置16の詳細をブロック図で示したものである。The details of the control device 16 are shown in a block diagram. 電導度回路1。Conductivity circuit 1. 電導度の測定精度を向上させた電導度回路2。Conductivity circuit 2 with improved measurement accuracy of conductivity. 電導度の測定精度を向上させた電導度回路3。Conductivity circuit 3 with improved measurement accuracy of conductivity. 電導度の測定精度を向上させた電導度回路4。Conductivity circuit 4 with improved measurement accuracy of conductivity. 電導度の測定精度を向上させた電導度回路5。Conductivity circuit 5 with improved measurement accuracy of conductivity.

以下、本発明を実施するための形態(以下「実施形態」という)について、適宜図面を参照しながら詳細に説明する。なお、本説明において、同一の構成要素には同一の番号を付し、重複する説明は省略する。   Hereinafter, modes for carrying out the present invention (hereinafter referred to as “embodiments”) will be described in detail with reference to the drawings as appropriate. In the present description, the same constituent elements are denoted by the same reference numerals, and redundant description is omitted.

図1は、本実施形態に係る洗濯機(洗濯乾燥機)の外観斜視図である。   FIG. 1 is an external perspective view of a washing machine (washing / drying machine) according to the present embodiment.

洗濯機1は、洗濯兼脱水槽7(図2参照)の回転軸が略鉛直方向の縦型式洗濯機である。まず、洗濯機1の筐体の上部は外蓋2が設けられている。また、外蓋2は、山型に折れ曲がりながら後ろ側に開くことにより開口し、洗濯兼脱水槽7(図2参照)に衣類(洗濯物)が出し入れ可能になっている。そして、洗濯機1上面には、水道栓からの給水口3,電源スイッチ5が設けられ、外蓋2の正面側には、操作スイッチおよび表示器からなる操作表示パネル6が設けられている。洗濯機1下部には排水口4が設けられている。   The washing machine 1 is a vertical washing machine in which the rotation axis of the washing and dewatering tub 7 (see FIG. 2) is substantially vertical. First, an outer lid 2 is provided on the upper part of the casing of the washing machine 1. In addition, the outer lid 2 is opened by opening to the rear side while being bent in a mountain shape, and clothes (laundry) can be taken in and out of the washing and dewatering tub 7 (see FIG. 2). A water supply port 3 from the water tap 3 and a power switch 5 are provided on the upper surface of the washing machine 1, and an operation display panel 6 including an operation switch and a display is provided on the front side of the outer lid 2. A drain port 4 is provided at the lower part of the washing machine 1.

図2は、本実施形態に係る洗濯機1の内部構造を示すために筐体の一部および外槽8を切断して示した右側断面図である。衣類を収容する洗濯兼脱水槽7は、略有底円筒状であって、外槽8内に回転可能に支持されている。   FIG. 2 is a right-side sectional view showing a part of the casing and the outer tub 8 in order to show the internal structure of the washing machine 1 according to the present embodiment. The washing / dehydrating tub 7 for storing clothes has a substantially bottomed cylindrical shape and is rotatably supported in the outer tub 8.

外槽8は、筐体内に防振支持され、洗濯兼脱水槽7を同軸上に内包している。この外槽8は、円盤状の底壁部と円筒状の周壁部から形成され、上側が開口する構造となっており、内部に洗濯水を貯留する。また、外槽8には、洗濯に使用される水の電導度を検出するための電導度検出手段11として、互いに平行な2枚の電極P1,P2が設けられており、この電導度検出手段11は制御装置16に接続されている。   The outer tub 8 is supported in an anti-vibration manner in the housing and encloses the washing and dewatering tub 7 on the same axis. The outer tub 8 is formed of a disc-shaped bottom wall portion and a cylindrical peripheral wall portion, and has a structure in which an upper side is opened, and stores washing water therein. Further, the outer tub 8 is provided with two electrodes P1 and P2 parallel to each other as the conductivity detecting means 11 for detecting the conductivity of water used for washing, and this conductivity detecting means. 11 is connected to the control device 16.

洗濯兼脱水槽7の内側底面には、回転翼10が設けられ、外槽8の底面の外側中央には、モータ9が設けられている。また、モータ9は、外槽8を貫通し、洗濯兼脱水槽7および回転翼10と結合し、洗濯兼脱水槽7等を回転駆動させる。更に、モータ9は、その回転を検出するホール素子あるいはフォトインタラプタなどで構成される回転検出装置12を備えている。   A rotary blade 10 is provided on the inner bottom surface of the washing and dewatering tub 7, and a motor 9 is provided on the outer center of the bottom surface of the outer tub 8. The motor 9 penetrates the outer tub 8 and is coupled to the washing / dehydrating tub 7 and the rotary blade 10 to rotate the washing / dehydrating tub 7 and the like. Furthermore, the motor 9 includes a rotation detection device 12 configured by a Hall element or a photo interrupter that detects the rotation.

給水口3から供給された水は、給水手段を介して外槽8と洗濯兼脱水槽7の間から外槽9内に注水される。外槽8の底面は、排水するための穴が開いており、排水バルブ13を介して排水口4に接続されている。また、循環ポンプ15は、下部連通管14を介して、洗濯兼脱水槽7の上部から洗濯兼脱水槽7内に散水し、水を循環させている。   The water supplied from the water supply port 3 is poured into the outer tub 9 from between the outer tub 8 and the washing / dehydrating tub 7 through the water supply means. The bottom surface of the outer tub 8 has a hole for draining, and is connected to the drain port 4 via the drain valve 13. Further, the circulation pump 15 sprinkles water from the upper part of the washing and dewatering tank 7 into the washing and dewatering tank 7 through the lower communication pipe 14 to circulate water.

更に、制御装置16は、この電導度検出手段11で検出された電導度又はこの電導度から得られた硬度を記憶する電導度・硬度記憶部と、この電導度・硬度記憶部に記憶された前回運転時の電導度又は硬度を用いて洗剤量,洗い時間,すすぎ時間及び脱水時間を判定する制御部を有し、この判定後に、前記電導度検出手段11で検出される電導度に応じて洗い時間,すすぎ時間,脱水時間の少なくとも1つを変更する。また、この制御部16は、モータ9や給水手段等を制御して、洗い工程等を運転するための指令も行っている。   Further, the control device 16 stores the conductivity detected by the conductivity detection means 11 or the hardness obtained from the conductivity, and the conductivity / hardness storage unit and the conductivity / hardness storage unit. According to the electric conductivity detected by the electric conductivity detection means 11 after this determination, it has a controller for determining the amount of detergent, the washing time, the rinsing time and the dehydrating time using the electric conductivity or hardness at the previous operation. Change at least one of the washing time, rinsing time, and dewatering time. In addition, the control unit 16 controls the motor 9 and the water supply means to give a command for operating the washing process and the like.

電導度検出手段11は、外槽8下部に取り付けられている。そして、電導度検出手段11を構成する電極単品Pは図3に示した形状をしており、図4に示すように一対の電極P1,P2は、絶縁体17で固定され、一定の間隔を設けた状態で設置されている。   The conductivity detection means 11 is attached to the lower part of the outer tub 8. The single electrode P constituting the conductivity detecting means 11 has the shape shown in FIG. 3, and as shown in FIG. 4, the pair of electrodes P1 and P2 are fixed by an insulator 17 and have a constant interval. It is installed in the state of providing.

制御装置16は、図5に記載したように、操作SW18,水温センサ19,水位センサ20及び電導度の値を基に、マイコン22で最適な洗濯条件を算出し、モータ9の動作時間と、給水バルブ23,排水弁24を制御して洗濯を行うようになっている。また、電導度検出手段11は、図6に示すような抵抗R1〜R6,コンデンサC1〜C3,オペアンプOP1,2,トランスT1,電極P1,P2からなる発振回路において、負帰還を構成している電極P1,P2のインピーダンスが変化することで、検出することができるようになっている。   As shown in FIG. 5, the control device 16 calculates the optimum washing condition by the microcomputer 22 based on the values of the operation SW 18, the water temperature sensor 19, the water level sensor 20, and the conductivity, and the operation time of the motor 9 Washing is performed by controlling the water supply valve 23 and the drain valve 24. Further, the conductivity detecting means 11 constitutes a negative feedback in an oscillation circuit comprising resistors R1 to R6, capacitors C1 to C3, operational amplifiers OP1 and 2, transformer T1, electrodes P1 and P2 as shown in FIG. Detection can be performed by changing the impedance of the electrodes P1 and P2.

次に、電導度を計測する機能の詳細について説明する。図6に示すように、互いに向かい合う電極P1,P2は外槽8に設けられ、トランスT1を介して二次側にある第1のコンデンサC1及び第2のコンデンサC2に接続されている。そして、電極P1,P2間のインピーダンスの変化を発振回路で周波数に変換することにより、電導度が算出される。尚、トランスT1は電極P1,P2を絶縁するために設けたものであり、第1のコンデンサC1及び第2のコンデンサC2は更に絶縁して二重に保護するために設けたものである。   Next, the detail of the function which measures electrical conductivity is demonstrated. As shown in FIG. 6, the electrodes P1, P2 facing each other are provided in the outer tub 8, and are connected to the first capacitor C1 and the second capacitor C2 on the secondary side via a transformer T1. Then, the conductivity is calculated by converting the change in impedance between the electrodes P1 and P2 into a frequency by an oscillation circuit. The transformer T1 is provided to insulate the electrodes P1 and P2, and the first capacitor C1 and the second capacitor C2 are provided to further insulate and protect double.

ここで、第1のコンデンサC1及び第2のコンデンサC2に電荷が溜まると、発振周波数がずれ、正確な電導度が計測できないことがある。このため、トランスの一次側と二次側とを数メガオームの抵抗で接続する方法も考えられるが、その場合には、絶縁が十分に確保できない。そこで、本実施形態では、図7に示すように、第1のコンデンサC1に対し、この第1のコンデンサC1に溜まった電荷を放電させる素子として、抵抗R7を並列に接続する。このため、電荷を開放でき、電極P1,P2間のインピーダンスが正確に計測できるようになり、電導度を精度良く測定することが可能となる。尚、追加したこの抵抗R7は、第2のコンデンサC2に並列して挿入しても同様の効果が得られる。   Here, if charges accumulate in the first capacitor C1 and the second capacitor C2, the oscillation frequency may be shifted, and accurate conductivity may not be measured. For this reason, a method of connecting the primary side and the secondary side of the transformer with a resistance of several megaohms is conceivable, but in that case, sufficient insulation cannot be secured. Therefore, in the present embodiment, as shown in FIG. 7, a resistor R7 is connected in parallel to the first capacitor C1 as an element for discharging the electric charge accumulated in the first capacitor C1. For this reason, the charge can be released, the impedance between the electrodes P1 and P2 can be accurately measured, and the conductivity can be accurately measured. Even if the added resistor R7 is inserted in parallel with the second capacitor C2, the same effect can be obtained.

また、図8に示したように、第1のコンデンサC1の代わりに抵抗R7に置き換えることでも同様の効果が得られる。即ち、コンデンサC1,C2の少なくとも一方を、抵抗又はコイル等の直流電流を流すことができる素子に変更することで、電導度の変化をなくすことができる。   Further, as shown in FIG. 8, the same effect can be obtained by replacing the resistor R7 in place of the first capacitor C1. That is, the change in conductivity can be eliminated by changing at least one of the capacitors C1 and C2 to an element capable of flowing a direct current such as a resistor or a coil.

更には、図9では、上記図7,図8と同様に、互いに向かい合う電極P1,P2とトランスT1を有する負帰還回路で電導度検出手段11が構成されているが、上記図7,図8と異なり、負帰還回路には第1コンデンサC1及び第2のコンデンサC2を設けず、これらのコンデンサの代わりに、抵抗R7とR8を設けている。このような構成によっても、図7,図8と同様に、電導度を精度良く検出することが可能となる。   Further, in FIG. 9, as in FIGS. 7 and 8, the conductivity detecting means 11 is configured by a negative feedback circuit having electrodes P1 and P2 facing each other and a transformer T1, but in FIGS. Unlike the capacitor, the negative feedback circuit is not provided with the first capacitor C1 and the second capacitor C2, but is provided with resistors R7 and R8 instead of these capacitors. Even with such a configuration, it is possible to detect the conductivity with high accuracy as in FIGS.

上記回路6では、水,洗剤,汚れ等含んだ多種多様な電導度を計測することができ、純水に近い水は電導度が低く、泥で汚れた水などは電解質が混じっているため、電導度が高い。広範囲な電導度を測定しようとした場合、電導度に対する出力(発振)周波数は、三次曲線のような曲線を描き、近似式を用いても誤差が大きくなる。そのため、計測する電導度の範囲を明確し、三次曲線の中でも二次近似できる範囲になるように、発振周波数を決める抵抗R2や第3のコンデンサC3を調整することで、より精度の良い電導度が求められる。   The circuit 6 can measure a wide variety of electrical conductivity including water, detergent, dirt, etc., because water close to pure water has low electrical conductivity, and water contaminated with mud is mixed with electrolyte. High conductivity. When an attempt is made to measure a wide range of conductivity, the output (oscillation) frequency with respect to the conductivity draws a curve such as a cubic curve, and the error increases even if an approximate expression is used. Therefore, the range of conductivity to be measured is clarified, and the resistance R2 and the third capacitor C3 that determine the oscillation frequency are adjusted so that the range can be quadratic approximated in the cubic curve. Is required.

また、洗濯機1は、洗濯,脱水,すすぎ、のように複数の工程からなっている。そこで、図10のように、発振周波数を決める抵抗R2やコンデンサC3を、工程毎に切換部SW1,SW2で適宜切換えることで、各工程に適した回路により電導度を精度良く計測することが可能となる。また、この切換部SW1,SW2は、マイコン22等の指令に基づき、汚れ度合い等に応じて抵抗やコンデンサに切換え、計測する電導度の程度にあわせた回路定数に変更することができる。   The washing machine 1 includes a plurality of processes such as washing, dehydration, and rinsing. Therefore, as shown in FIG. 10, it is possible to accurately measure the conductivity with a circuit suitable for each process by appropriately switching the resistor R2 and the capacitor C3 that determine the oscillation frequency by the switching units SW1 and SW2 for each process. It becomes. In addition, the switching units SW1 and SW2 can be switched to resistors or capacitors according to the degree of contamination or the like based on a command from the microcomputer 22 or the like, and can be changed to circuit constants according to the degree of conductivity to be measured.

1 洗濯機
2 外蓋
3 給水口
4 排水口
5 電源スイッチ
6 操作表示パネル
7 洗濯兼脱水槽
8 外槽
9 モータ
10 回転翼
11 電導度検出手段
12 回転検出装置
13 排水バルブ
14 下部連絡管
15 循環ポンプ
16 制御装置
17 絶縁体
18 操作SW
19 水温センサ
20 水位センサ
21 電導度回路
22 マイコン
23 給水バルブ
DESCRIPTION OF SYMBOLS 1 Washing machine 2 Outer lid 3 Water supply port 4 Drainage port 5 Power switch 6 Operation display panel 7 Washing / dehydration tub 8 Outer tub 9 Motor 10 Rotary blade 11 Conductivity detection means 12 Rotation detection device 13 Drain valve 14 Lower connection pipe 15 Circulation Pump 16 Controller 17 Insulator 18 Operation SW
19 Water temperature sensor 20 Water level sensor 21 Conductivity circuit 22 Microcomputer 23 Water supply valve

Claims (5)

筐体と、前記筐体内に防振支持され、内部に洗濯水を貯留する外槽と、前記外槽内に回転可能に支持され、洗濯物が収容される洗濯兼脱水槽と、前記洗濯兼脱水槽を回転駆動させる駆動装置と、前記外槽内に給水する給水手段と、洗濯に使用される水の電導度を検出する電導度検出手段と、前記駆動装置および前記給水手段を制御して、少なくとも洗い運転を実行可能な制御部を備えた洗濯機において、
前記電導度検出手段は、互いに向かい合う電極で形成され、これら電極とトランスを有する負帰還回路にコンデンサを設け、このコンデンサに溜まった電荷を放電させる素子を設置したことを特徴とする洗濯機。
A housing; an anti-vibration support in the housing; and an outer tub for storing washing water therein; a washing and dewatering tub that is rotatably supported in the outer tub and stores laundry; and the washing and washing A drive device for rotationally driving the dehydration tub, water supply means for supplying water into the outer tub, conductivity detection means for detecting the conductivity of water used for washing, and controlling the drive device and the water supply means. In a washing machine having a control unit capable of executing at least a washing operation,
The electric conductivity detecting means is formed of electrodes facing each other, a capacitor is provided in a negative feedback circuit having these electrodes and a transformer, and an element for discharging the electric charge accumulated in the capacitor is installed.
筐体と、前記筐体内に防振支持され、内部に洗濯水を貯留する外槽と、前記外槽内に回転可能に支持され、洗濯物が収容される洗濯兼脱水槽と、前記洗濯兼脱水槽を回転駆動させる駆動装置と、前記外槽内に給水する給水手段と、前記駆動装置および前記給水手段を制御して少なくとも洗い運転を実行可能な制御部と、互いに向かい合う電極を有する電導度検出手段を備え、前記電極間のインピーダンスの変化を発振回路で周波数に変換することにより電導度を算出し、算出した電導度に応じて前記制御部で洗い運転の制御を行う洗濯機において、
前記電極を絶縁するトランスの二次側には、更なる絶縁を行う第1のコンデンサと第2のコンデンサが設けられ、これらコンデンサの少なくとも1つに対して、抵抗又はコイルを並列に設けたことを特徴とする洗濯機。
A housing; an anti-vibration support in the housing; and an outer tub for storing washing water therein; a washing and dewatering tub that is rotatably supported in the outer tub and stores laundry; and the washing and washing A drive device that rotationally drives the dewatering tank, a water supply means that supplies water into the outer tank, a control unit that controls the drive apparatus and the water supply means to perform at least a washing operation, and an electric conductivity having electrodes facing each other In the washing machine comprising a detection means, calculating the conductivity by converting the change in impedance between the electrodes into a frequency by an oscillation circuit, and controlling the washing operation by the control unit according to the calculated conductivity,
The secondary side of the transformer that insulates the electrode is provided with a first capacitor and a second capacitor for further insulation, and a resistor or a coil is provided in parallel with at least one of these capacitors. A washing machine featuring.
請求項2において、前記第1のコンデンサ又は第2のコンデンサの代わりに、抵抗又はコイルを設けたことを特徴とする洗濯機。   3. The washing machine according to claim 2, wherein a resistor or a coil is provided instead of the first capacitor or the second capacitor. 請求項2において、前記第1のコンデンサ及び第2のコンデンサの代わりに、抵抗又はコイルを設けたことを特徴とする洗濯機。   The washing machine according to claim 2, wherein a resistor or a coil is provided instead of the first capacitor and the second capacitor. 請求項2において、発振周波数を決める第3のコンデンサ及び抵抗を、検出する電導度の程度に応じて選択する切換部を設けたことを特徴とする洗濯機。   3. The washing machine according to claim 2, further comprising a switching unit that selects the third capacitor and the resistance that determine the oscillation frequency according to the degree of conductivity to be detected.
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