JPH03215230A - Dish washer - Google Patents

Dish washer

Info

Publication number
JPH03215230A
JPH03215230A JP1137290A JP1137290A JPH03215230A JP H03215230 A JPH03215230 A JP H03215230A JP 1137290 A JP1137290 A JP 1137290A JP 1137290 A JP1137290 A JP 1137290A JP H03215230 A JPH03215230 A JP H03215230A
Authority
JP
Japan
Prior art keywords
water
water level
drainage
drain pump
drain
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP1137290A
Other languages
Japanese (ja)
Other versions
JP2767948B2 (en
Inventor
Takashi Miyauchi
隆 宮内
Masaki Yura
政樹 由良
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP2011372A priority Critical patent/JP2767948B2/en
Publication of JPH03215230A publication Critical patent/JPH03215230A/en
Application granted granted Critical
Publication of JP2767948B2 publication Critical patent/JP2767948B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Washing And Drying Of Tableware (AREA)

Abstract

PURPOSE:To diminish noise and vibration caused by air sucked in the drain water during draining process and allow setting a required draining time period by a method wherein the draining performance of a drain pump is estimated depending on the water levels detected at two or more points, and the drain pump is controlled. CONSTITUTION:A water level detector 4 which detects the washing water levels at two or more points in a washing drum 2, a drain pump 11 which discharges washing water from the washing drum 2 to the outside of a dish washer, and a controller 12 which controls the detection of signals from the water level detector 4 and the action of the drain pump 11 are provided. The water levels at two or more points in the washing drum 2 are detected by the water level detector 4 to estimate the performance of the drain pump 11 and control the drain pump 11. Therefore, the time at which washing water is drained completely is forecasted and the drain pump is stopped or the capacity of a motor is reduced. As a result, the noise and vibration caused by air sucked in drain water during draining process can be restrained, and the draining capacity can be accurately seized to set the draining time period and detect a failure in draining, resulting in stable operation of the dish washer with the performance maintained.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は食器の洗浄を行う食器洗い機に関するものであ
る。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a dishwasher for washing dishes.

従来の技術 従来、この種の食器洗い機は、第2図に示すよう々構成
になっている。
BACKGROUND OF THE INVENTION Conventionally, this type of dishwasher has been constructed as shown in FIG.

すなわち、木体1内部に洗浄槽2が設けられ、この洗浄
槽2内へ、給水弁3により水又は湯が供給される。この
時、水位検知装置4により供給される水量を洗浄に適し
たものにしている。装置駆動時において洗浄水は、洗浄
槽2の底部に配された排水孔の他側部に連通したポンプ
室に取り付けられ、モータ6によって駆動される洗浄ポ
ンプ6により、前記洗浄槽2の内部を循環する。すなわ
ち、この循環は、洗浄水が前記排水孔から洗浄ポンフ;
6に吸いこまれ、この洗浄ポンプ6より前記洗浄槽2内
底部の洗浄ノズル7に供給され、ここから噴射され、食
器を洗浄した後ふたたび排水孔に戻るという経路で行わ
れる。洗浄ノズル了と洗浄槽2の底部との間には、洗浄
水加熱用のヒータ8が装備されている。また、洗浄ノズ
)V 7の上方には、食器を整然と配置でき、洗浄水を
効果的に,食器に噴射するように設計された食器かと9
が設置されている。前記食器かと9には、複数の移動用
ローラが配設され、木体1の前面外部へ引き出し可能に
なっている。捷た、前記洗浄槽2の前面部には、開閉自
在な扉10が取り付けられている。
That is, a cleaning tank 2 is provided inside the wooden body 1, and water or hot water is supplied into the cleaning tank 2 by a water supply valve 3. At this time, the amount of water supplied by the water level detection device 4 is adjusted to be suitable for cleaning. During operation of the device, cleaning water is supplied to the inside of the cleaning tank 2 by a cleaning pump 6 installed in a pump chamber connected to the other side of the drainage hole arranged at the bottom of the cleaning tank 2 and driven by a motor 6. circulate. That is, in this circulation, the cleaning water flows from the drainage hole to the cleaning pump;
6, the washing pump 6 supplies the water to the washing nozzle 7 at the inner bottom of the washing tank 2, where it is sprayed, and after washing the dishes, it returns to the drain hole again. A heater 8 for heating the cleaning water is installed between the cleaning nozzle end and the bottom of the cleaning tank 2. In addition, above the washing nozzle V 7, there is a tableware nozzle V 7 designed to allow dishes to be placed in an orderly manner and to effectively spray washing water onto the dishes.
is installed. The tableware cup 9 is provided with a plurality of moving rollers and can be pulled out to the outside of the front surface of the wooden body 1. A door 10 that can be opened and closed is attached to the folded front part of the cleaning tank 2.

また、前記洗浄水を機外に排出するために、排水ボンプ
11も備えている。そして、これらの部品を制御し食器
洗い機の運転を行うのが、制御装置12である。
Further, a drainage pump 11 is also provided to discharge the washing water to the outside of the machine. The control device 12 controls these parts and operates the dishwasher.

ことで、排水ポンプ11の運転について従来の制御を見
てみると、その制御はほとんどの場合、制御装置12に
よって時間により制御されている。
If we look at the conventional control of the operation of the drainage pump 11, in most cases the control is controlled by the control device 12 based on time.

すなわち、あらかじめ決められたシーケンスにしたがっ
て運転されるのみである。
That is, they are operated only according to a predetermined sequence.

発明が解決しようとする課題 しかしながら、このような構成の食器洗い機をみてみる
と、排水工程においてその騒音や振動が問題になってく
る。それは、排水ポンプ11においては洗浄水を機外に
排出するものであるので、洗浄水のある場合は排水ポン
プ11とし一仕事をしているので騒音や振動に対してさ
ほど問題にならないが、洗浄水がなくなった場合には、
洗浄水に空気が混じったエアーかみ状態で排水ボンプ1
1が回っているので、その回転による騒音が、洗浄水の
ある場合に対してはるかに大きい。また排水ポンプ11
はポンプとして余り仕事をしてい力いので、そのエネル
ギーがそれ自信の振動として使用されるので振動が非常
に大ぎ〈なる。特に最近では、食器洗い機が夜間に使用
されたりして、駿音や振動を低減したいというニーズが
非常に強くなってきているので、この排水ポンプ11の
騒音や振動は大きな問題である。
Problems to be Solved by the Invention However, when looking at dishwashers with such a configuration, noise and vibration become a problem during the draining process. The drain pump 11 discharges the wash water outside the machine, so if there is wash water, the drain pump 11 does its job, so noise and vibrations are not much of a problem. If the water runs out,
Drain pump 1 when air is mixed in the cleaning water.
1 is rotating, the noise caused by its rotation is much greater than when there is washing water. Also, the drainage pump 11
The pump does too much work and is too powerful, so that energy is used as its own vibration, resulting in extremely large vibrations. Particularly recently, as dishwashers are used at night, there is a strong need to reduce noise and vibration, so the noise and vibration of the drain pump 11 is a big problem.

また、従来の食器洗い機においては、排水ホースの状態
等により変化する排水ポンプ11の排水能力を正確に把
握することができなかった。したがってその排水工程で
の残水の量の把握や正確な排水不良といった排水にまつ
わる問題がわからなかった。一定時間による排水工程で
は排水能力が低下すると残水が多く、すすぎ性能が十分
に確保することができなくなり、食器洗い機として十分
々性能を満足できない。また、排水工程が終わった後の
水位検知装置のリセ7}により排水不良を検知している
もので、スイッチのリセット点が非常に早いマイクロス
インチを利用している水位検知装置ではこの排水不良を
正確に発見することが難しい。というのは、洗浄時に洗
浄水が各部に付着したり蒸発するので洗浄の最後には水
位が下がるからである。
Furthermore, in conventional dishwashers, it has not been possible to accurately grasp the drainage capacity of the drainage pump 11, which varies depending on the condition of the drainage hose and the like. Therefore, it was not possible to understand the amount of water remaining in the drainage process or problems related to drainage, such as incorrect drainage. In the draining process that takes a certain period of time, if the draining capacity decreases, there will be a lot of residual water, making it impossible to ensure sufficient rinsing performance, and the dishwasher will not be able to provide sufficient performance. In addition, drainage defects are detected by resetting the water level detection device after the draining process is completed.Water level detection devices that use micro-sinches, which have a very quick switch reset point, detect drainage defects. difficult to discover accurately. This is because during cleaning, the cleaning water adheres to various parts or evaporates, and the water level drops at the end of cleaning.

そこで本発明は、排水工程における排水ポンプの騒音や
振動をおさえ、食器洗い機の運転を静かなものにすると
共に、その運転を確実なものにして性能を確保すること
を目的としている。
SUMMARY OF THE INVENTION An object of the present invention is to suppress the noise and vibration of the drain pump during the draining process, to make the operation of the dishwasher quieter, and to ensure its operation to ensure performance.

課題を解決するための手段 そして上記目的を達成するために、本発明は、洗浄槽と
、前記洗浄槽内部の複数の洗浄水の水位を検知する水位
検知装置と、前記洗浄槽から機外に洗浄水を排出する排
水ポンプと、前記水位検知装置からの信号の検出や排水
ポンプの動作を制御する制御装置を備え、前記複数の洗
浄水の水位の検出信号にもとづいて排水ポンプの制御を
行うものである。
Means for Solving the Problems In order to achieve the above object, the present invention provides a cleaning tank, a water level detection device that detects the water level of a plurality of cleaning waters inside the cleaning tank, and a water level detection device that detects the water level of a plurality of cleaning waters inside the cleaning tank, and a The drain pump is equipped with a drain pump that discharges wash water, and a control device that detects signals from the water level detection device and controls the operation of the drain pump, and controls the drain pump based on the plurality of wash water level detection signals. It is something.

作用 この技術的手段による作用は次のようになる。action The effect of this technical means is as follows.

すなわち、洗浄槽内部の複数の洗浄水の水位を検知する
水位検知装置を使って、2点以上の水位を測定すること
により排水ポンプの能力を推定し、それにより排水ポン
プの運転制御を行う。したがって、洗浄水がなくなる時
点を予測し、排水ポンプの運転を停止したりモータの能
力を落としたりすることにより排水工程時のエアーかみ
状態での騒音や振動をおさえるわけである。また、排水
能力を正確に把握して排水時間の設定や排水不良検知を
行う。
That is, the capacity of the drainage pump is estimated by measuring the water levels at two or more points using a water level detection device that detects the water levels of a plurality of cleaning waters inside the cleaning tank, and the operation of the drainage pump is controlled accordingly. Therefore, by predicting the point in time when the cleaning water will run out and stopping the operation of the drainage pump or reducing the capacity of the motor, noise and vibrations caused by air being trapped during the drainage process can be suppressed. In addition, by accurately understanding the drainage capacity, the drainage time can be set and drainage failure can be detected.

ごこで水位の予測についてもう少し述べておく。Let me say a little more about water level prediction.

水位検知装置によって洗浄水のなくなる時点を1点にて
測定することは非常に難しい。というのは水位検知装置
は洗浄水の量や圧力を利用しているので、洗浄水がない
状態を検知するのが難しいからである。したがって2点
以上の水位測定により排水能力を推定し、残水量を排出
するのに必要な時限を設定することにより、洗浄水のな
くなる時へも推定できるわけである。
It is very difficult to measure at one point when the washing water runs out using a water level detection device. This is because the water level detection device uses the amount and pressure of washing water, so it is difficult to detect when there is no washing water. Therefore, by estimating the drainage capacity by measuring the water level at two or more points and setting a time limit necessary for discharging the remaining amount of water, it is possible to estimate when the washing water will run out.

実施例 以下、本発明の一実施例を添付図面にもとづいて説明す
る。本発明の食器洗い機の基本構成は、第3図と同じで
あり、同一部品.同一部分は、同一符号を、付し説明を
省略する。第1図において、制御装置には水位検知装置
4の信号を排水時に複数回入力して、その水位検知装置
4の複数の信号と2つの信号間の時間とにより排水能力
を判断するものである。
Embodiment Hereinafter, one embodiment of the present invention will be described based on the accompanying drawings. The basic configuration of the dishwasher of the present invention is the same as that shown in FIG. 3, and the same parts are used. Identical parts are designated by the same reference numerals and description thereof will be omitted. In FIG. 1, the signal from the water level detector 4 is input to the control device multiple times during drainage, and the drainage capacity is determined based on the multiple signals from the water level detector 4 and the time between the two signals. .

第2図は、排水時間と洗浄槽2内の洗浄水水位の関係を
表している。横軸に排水時間を、縦軸に洗浄水水位をと
っており、▲とBが水位検知装置4における検知水位で
ある。洗浄水水位は、排水ポンプ11がエアーがみをす
る水位を基準0としている。
FIG. 2 shows the relationship between the drainage time and the level of cleaning water in the cleaning tank 2. The horizontal axis shows the drainage time, and the vertical axis shows the washing water level, and ▲ and B are the detected water levels by the water level detection device 4. The water level of the washing water is set to the water level at which the drain pump 11 pumps air as the standard zero.

水位検知装置4は圧力検知素子を利用したもので、洗浄
水の水位に対する特性が決1っており必要な水位を何点
でも測定することができる。したかって前述の▲.B点
もこの水位検知装置4一つでの測定が可能である。
The water level detecting device 4 uses a pressure detecting element, has fixed characteristics with respect to the water level of the washing water, and can measure the necessary water level at any number of points. I wanted to do the above ▲. Point B can also be measured using this single water level detection device 4.

また排水ポンプ11はその能力が排水ホースの抵抗等に
よりほぼ決寸っでいるので検知水位(&,B)における
時間(Ta,Tb)を測定することにより、その時間と
その水位に相対する洗浄水の水量の関係から排水ポンプ
11のその時の排水能力の推定ができる。したがって、
Tbからの残りの洗浄水の水量から、エアーかみ状態が
発生する水位o(To)の時間を推定することができる
In addition, the capacity of the drain pump 11 is almost determined by the resistance of the drain hose, etc., so by measuring the time (Ta, Tb) at the detected water level (&, B), the cleaning time relative to that time and that water level can be determined. The current drainage capacity of the drainage pump 11 can be estimated from the relationship with the amount of water. therefore,
From the amount of the remaining wash water from Tb, it is possible to estimate the time at which the water level o (To) occurs, at which the air trapping state occurs.

ここでA点をほぼ洗浄水位に取り、B点を信頼性のある
検知水位の最低点におくことにより、▲,B間のスパン
が広く取れ、Toの推定をより正確に士ることかできる
。そして、TOになった時点において、排水ポンプ11
を停止する。したがって、これ以降の排水ポンプ11の
エアーがみによる排水騒音はなくなるわけである。
By setting point A at approximately the washing water level and setting point B at the lowest reliable detection water level, the span between ▲ and B can be widened, and To can be estimated more accurately. . Then, when it becomes TO, the drainage pump 11
stop. Therefore, the subsequent drainage noise caused by the air intake of the drainage pump 11 is eliminated.

さらに、Toを推定することにより、排水時間を真に必
要な時間のみに設定することができるので確実な排水が
でき、残水が多いといったことがさけられる。
Furthermore, by estimating To, it is possible to set the drainage time only to the time that is truly necessary, so that reliable drainage can be achieved and a situation where there is a large amount of residual water can be avoided.

また本当に必要な時間のみを設定できるのでその排水ポ
ンプ11による最適な排水時間となり、食器洗い機の運
転時間としては、従来と比べて余裕をみなくてよい分、
運転時間の短縮を図ることができる。
In addition, since you can set only the time that is really necessary, the drain pump 11 will be used to optimize the draining time, and you will not have to worry about the operating time of the dishwasher compared to conventional methods.
Operation time can be shortened.

具体的な数値をあげて、実施例を説明する。Examples will be described using specific numerical values.

エアーかみ基準からの洗浄水の水位と水量の関係は、例
えばA点においては30朋で、2.6e、B点において
は1QMMで、o.s lとなっていたとすると。排水
工程において、水位検知装置4が▲慨の水位を検知して
からB点の水位を検知するまでの時間Tabが、20秒
の場合、2lの排水を20秒で行っているので残り0.
61を排水するためには、5秒の排水が必要となる。し
たがって水位検知装置4がB点の洗浄水の水位を検知し
てから5秒後に制御装置12により排水ポンプ11を停
止するわけである。当然のことながら排水ポンプ11の
排水能力が低下し、五点からB点までの時間が長くかか
る場合は、その時間の割合によつて、B点の水位を検知
してから排水ポンプ11を停止するまでの時間も長くな
る。
The relationship between the water level and water amount of the cleaning water based on the air intake standard is, for example, 30 to 2.6e at point A, 1QMM at point B, and o. Suppose it becomes s l. In the drainage process, if the time Tab from when the water level detection device 4 detects the water level at point ▲ to when it detects the water level at point B is 20 seconds, 2 liters of water is drained in 20 seconds, so there is no remaining water.
In order to drain 61, 5 seconds of draining is required. Therefore, the control device 12 stops the drain pump 11 five seconds after the water level detection device 4 detects the water level of the wash water at point B. Naturally, if the drainage capacity of the drainage pump 11 decreases and it takes a long time to go from point 5 to point B, the drainage pump 11 will be stopped after detecting the water level at point B depending on the proportion of the time. It will also take longer to do so.

ここで、他の実施例について述べておく。水位検知装置
4は実施例では圧力検知素子を利用しているが別に複数
の水位を検知できるものであればかまわない。例えば超
音波を利用したものや圧電素子による周波数を利用した
もの等が考えられる。
Here, another embodiment will be described. Although the water level detection device 4 uses a pressure detection element in the embodiment, it may be any other device as long as it can detect a plurality of water levels. For example, one that uses ultrasonic waves, one that uses a frequency generated by a piezoelectric element, etc. can be considered.

また、水位検知装置12は一つで々ぐても複数のものに
よって複数の洗浄水の水位を測定しても一向にさしつか
えはない。
In addition, there is no problem in measuring the water levels of a plurality of wash waters using a single water level detection device 12 or a plurality of devices.

1た、洗浄水の水位測定点を2点の測定点として述べた
が、当然ながらさらに多くの測定点を取ることによって
さらに精度をあげることができる。
1. Although the water level measurement points of the washing water are described as two measurement points, it is obvious that the accuracy can be further improved by taking more measurement points.

と−うのは、洗浄槽2の底の形状はわりと複雑であるの
で第2図に示すように時間と水位の関係を示す線はリニ
アーにはならないで、変曲点を持つから多くの点を測定
することが有効なわけである。
This is because the shape of the bottom of the cleaning tank 2 is rather complex, so the line showing the relationship between time and water level is not linear as shown in Figure 2, but has many points of inflection. This is why measuring points is effective.

また、実施例ではToにおいて排水ポンプ11を直ちに
停止したが、この時点から排水ポンプ110回転数を下
げてその能力を下げることによ・っても排水騒音の低減
を図ることができる。
Further, in the embodiment, the drainage pump 11 is immediately stopped at To, but the drainage noise can also be reduced by lowering the rotational speed of the drainage pump 110 from this point on to lower its capacity.

さらに、前述したように、従来の食器洗い機では正確に
は排水ポンプ11の能力を測定することができないが、
本発明においては、複数の洗浄水の水位を測定すること
で、排水ポンプ11の排水能力を推定できるので、その
能力を正確に把握し、排水能力が著しく延びたときには
、排水不良として異常報知千段13により異常報知を行
い、使用者に対して警告を発することができる。したが
って、食器洗い機の運転として確実な運転ができる。
Furthermore, as mentioned above, although it is not possible to accurately measure the capacity of the drain pump 11 with conventional dishwashers,
In the present invention, the drainage capacity of the drainage pump 11 can be estimated by measuring the water levels of a plurality of wash waters, so the capacity can be accurately grasped, and when the drainage capacity has increased significantly, an abnormality is notified as a drainage failure. Anomaly notification can be performed by the stage 13, and a warning can be issued to the user. Therefore, the dishwasher can be operated reliably.

発明の効果 以上のように本発明は、複数の水位検知により排水ポン
プの排水能力を推定して排水ポンプの制御を行うので、
排水T程時のエアーかみ状態での騒音や振動をおさえる
ことができ、静かな運転の食器洗い機を供給することが
できる。また、本当に必要な排水時間の設定ができるの
で、確実な排水が期待できると共に、排水工程として必
要最小限な時間ですむので運転時間の短縮も図れる。ま
た確実な排水ができることにより、すすぎ性能、洗浄性
能の確保をすることができる。さらに排水異常といった
状態も正確に把握でき食器洗い機の運転をより正確にす
ることができる。
Effects of the Invention As described above, the present invention estimates the drainage capacity of the drainage pump by detecting a plurality of water levels and controls the drainage pump.
It is possible to suppress the noise and vibration caused by the air being sucked when the water is drained T, and it is possible to provide a dishwasher that operates quietly. In addition, since the really necessary drainage time can be set, reliable drainage can be expected, and the operation time can be shortened because the drainage process requires the minimum amount of time. Furthermore, by ensuring reliable drainage, rinsing performance and cleaning performance can be ensured. Furthermore, conditions such as drainage abnormalities can be accurately grasped, allowing for more accurate operation of the dishwasher.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明の実施例を示す食器洗い機のブロック図
、第2図は洗浄水位と排水時間との関係図、第3図は従
来の食器洗い機の縦断面図である。 2・・・・・・洗浄槽、4・・・・・・水位検知装置、
11・・・・・・排水ポンプ、12・・・・・・制御装
置。
FIG. 1 is a block diagram of a dishwasher showing an embodiment of the present invention, FIG. 2 is a diagram showing the relationship between washing water level and drain time, and FIG. 3 is a longitudinal sectional view of a conventional dishwasher. 2...Cleaning tank, 4...Water level detection device,
11... Drain pump, 12... Control device.

Claims (3)

【特許請求の範囲】[Claims] (1)洗浄槽と、前記洗浄槽内部の複数の洗浄水の水位
を検知する水位検知装置と、前記洗浄槽から機外に洗浄
水を排出する排水ポンプと、前記水位検知装置からの信
号の検出や排水ポンプの動作を制御する制御装置を備え
、前記複数の洗浄水の水位の検出信号にもとづいて排水
ポンプの制御を行う食器洗い機。
(1) A cleaning tank, a water level detection device that detects the water levels of a plurality of cleaning waters inside the cleaning tank, a drainage pump that discharges the cleaning water from the cleaning tank to the outside of the machine, and a signal from the water level detection device. A dishwasher comprising a control device that controls detection and operation of a drain pump, and controls the drain pump based on the plurality of wash water level detection signals.
(2)複数の洗浄水の水位の検出信号により判断された
排水ポンプの排水能力に基づいて、排水時間を設定する
請求項1記載の食器洗い機。
(2) The dishwasher according to claim 1, wherein the drain time is set based on the drain capacity of the drain pump determined by a plurality of wash water level detection signals.
(3)複数の洗浄水の水位の検出信号により判断された
排水ポンプの排水能力に基づいて排水異常報知を行う請
求項1記載の食器洗い機。
(3) The dishwasher according to claim 1, wherein the drainage abnormality notification is performed based on the drainage capacity of the drainage pump determined based on the detection signals of a plurality of wash water levels.
JP2011372A 1990-01-19 1990-01-19 dishwasher Expired - Lifetime JP2767948B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011372A JP2767948B2 (en) 1990-01-19 1990-01-19 dishwasher

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011372A JP2767948B2 (en) 1990-01-19 1990-01-19 dishwasher

Publications (2)

Publication Number Publication Date
JPH03215230A true JPH03215230A (en) 1991-09-20
JP2767948B2 JP2767948B2 (en) 1998-06-25

Family

ID=11776187

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011372A Expired - Lifetime JP2767948B2 (en) 1990-01-19 1990-01-19 dishwasher

Country Status (1)

Country Link
JP (1) JP2767948B2 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012061161A (en) * 2010-09-16 2012-03-29 Harman Co Ltd Dish washer
JP2012228463A (en) * 2011-04-27 2012-11-22 Harman Co Ltd Dishwasher
US8385805B2 (en) 2010-02-25 2013-02-26 Fuji Xerox Co., Ltd. Fixing member, fixing apparatus and image forming apparatus
CN103120576A (en) * 2013-02-26 2013-05-29 美的集团股份有限公司 Water draining control and detection circuit of dish-washing machine, dish-washing machine and water draining and detecting method thereof

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101634172B1 (en) * 2009-04-03 2016-06-28 엘지전자 주식회사 Dish washer

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6011372U (en) * 1983-07-01 1985-01-25 三菱電機株式会社 display device
JPS6110172U (en) * 1984-06-20 1986-01-21 三洋電機株式会社 Dishwasher
JPS6440098A (en) * 1987-08-05 1989-02-10 Matsushita Electric Ind Co Ltd Drain abnormality alarm apparatus of machinery

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6011372U (en) * 1983-07-01 1985-01-25 三菱電機株式会社 display device
JPS6110172U (en) * 1984-06-20 1986-01-21 三洋電機株式会社 Dishwasher
JPS6440098A (en) * 1987-08-05 1989-02-10 Matsushita Electric Ind Co Ltd Drain abnormality alarm apparatus of machinery

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8385805B2 (en) 2010-02-25 2013-02-26 Fuji Xerox Co., Ltd. Fixing member, fixing apparatus and image forming apparatus
JP2012061161A (en) * 2010-09-16 2012-03-29 Harman Co Ltd Dish washer
JP2012228463A (en) * 2011-04-27 2012-11-22 Harman Co Ltd Dishwasher
CN103120576A (en) * 2013-02-26 2013-05-29 美的集团股份有限公司 Water draining control and detection circuit of dish-washing machine, dish-washing machine and water draining and detecting method thereof
CN103120576B (en) * 2013-02-26 2015-09-02 美的集团股份有限公司 The draining of dish-washing machine controls testing circuit, dish-washing machine and draining thereof and detection method

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