JPS6290198A - Temperature sensor mount apparatus of washing machine - Google Patents

Temperature sensor mount apparatus of washing machine

Info

Publication number
JPS6290198A
JPS6290198A JP61032395A JP3239586A JPS6290198A JP S6290198 A JPS6290198 A JP S6290198A JP 61032395 A JP61032395 A JP 61032395A JP 3239586 A JP3239586 A JP 3239586A JP S6290198 A JPS6290198 A JP S6290198A
Authority
JP
Japan
Prior art keywords
temperature
water
temperature sensor
air trap
tank
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
JP61032395A
Other languages
Japanese (ja)
Other versions
JPH0256118B2 (en
Inventor
晴美 竹内
康志 荒木
憲二 山本
茂満 八谷
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.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric 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 Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Publication of JPS6290198A publication Critical patent/JPS6290198A/en
Publication of JPH0256118B2 publication Critical patent/JPH0256118B2/ja
Granted legal-status Critical Current

Links

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 (イ)産業上の利用分野 本発明は気温や水温を測定するための温度センサーの取
付装置に関する。
DETAILED DESCRIPTION OF THE INVENTION (a) Field of Industrial Application The present invention relates to a mounting device for a temperature sensor for measuring air temperature or water temperature.

(σ)従来の技術 洗濯水の温度を検知し、その水温に応して行程時間を制
御するものが、特開昭55−66394号公報に示きれ
ているが、実際にも水温の高低によって洗濯効果は大き
く変る。水温を検知する場合、温度センサーは槽に取付
けられることになるが、例えば槽の上部では水との接触
が不確実であり、また運転中に動く水の温度は非常にほ
らつきが太きい。
(σ) Conventional technology A method that detects the temperature of washing water and controls the process time according to the water temperature is disclosed in Japanese Patent Application Laid-open No. 55-66394. The washing effect changes greatly. When detecting water temperature, a temperature sensor is installed in the tank, but contact with the water is uncertain at the top of the tank, and the temperature of the water moving during operation has a large fluctuation.

(ハ)発明が解決しようとする問題点 本発明は、特別な取付構造を要せず、1つばらつきの少
い温度検知を可能にぜんとするものである。
(c) Problems to be Solved by the Invention The present invention does not require any special mounting structure and is capable of detecting temperature with less variation.

(ニ)問題点を解決するだめの手段 本発明は、エアートラップの下方の型抜孔を閉塞する底
栓に上向きに凹んだ収納部を形成し、この収納部内に温
度センサーを組込むことにより問題点を解決する。
(d) Means for solving the problem The present invention solves the problem by forming an upwardly recessed storage section in the bottom plug that closes the mold-cutting hole below the air trap, and incorporating a temperature sensor into this storage section. Solve.

(ホ) 作用 即も、底栓を取付手段として他の取付構造を省き、温度
センサーによりエアートラップの比較的おだやかな水の
温度を検知するのである。
(E) Function: The bottom plug is used as a mounting means, other mounting structures are omitted, and the temperature sensor detects the relatively mild temperature of the water in the air trap.

(へ)実施例 図面に基ついて説明すると、(1)は外槽(2)を防振
的に吊下した機枠、(3)は外槽(2)内に回転可能に
配設きれた脱水兼洗濯槽、(4)・・は脱水孔、く5)
はバランスリング、(6)は大径山形の回転翼である。
(f) To explain the example drawings, (1) is the machine frame with the outer tank (2) suspended for vibration isolation, and (3) is the machine frame that is rotatably arranged inside the outer tank (2). Dehydration/washing tub, (4)... is dehydration hole, 5)
is a balance ring, and (6) is a large-diameter chevron-shaped rotor blade.

上記外槽(2)の外底面には、駆動モータ(7)や軸受
ケース(8)が設けてあり、上記回転翼(6)を約18
Orpmで間欠反転させたり、脱水時にA〈6〉及び槽
(3)を同時に一方向に高速回転させる。
A drive motor (7) and a bearing case (8) are provided on the outer bottom surface of the outer tank (2), and the rotor blade (6) can be moved approximately 18
Orpm, or rotate A<6> and tank (3) simultaneously at high speed in one direction during dehydration.

(9)は排水弁(10〉を備えた排水路、(11)は排
水弁<10)を開閉するソレノイドである。このソレノ
イド(11)は励磁された時に同時にクラッチ装置(図
示せず)を操作して駆動モータ(7)の回転を回転翼(
6)及び洗濯1!(3)へ伝達すると共に、洗濯4〈3
)のブレーキ装置く図示せず)を解除する。
(9) is a drain channel equipped with a drain valve (10), and (11) is a solenoid that opens and closes the drain valve <10>. When this solenoid (11) is excited, it simultaneously operates a clutch device (not shown) to control the rotation of the drive motor (7) by rotating the rotor (
6) and laundry 1! In addition to transmitting to (3), washing 4<3
) to release the brake device (not shown).

(12)は洗濯槽(3)の上蓋で、開閉に連動する上蓋
スイッチ(13)を具備している。(14)は給水口で
給水弁(15)を具備している。
(12) is the top lid of the washing tub (3), and is equipped with a top lid switch (13) that is linked to opening and closing. (14) is a water supply port and is equipped with a water supply valve (15).

(16)は外槽く2)の下部側壁に膨出する如く一体形
成したエアートラップで、上部をチューブ(17)を介
してグイヤフラム型の水位スイッチ(18)に連通ずる
と共に、下部を外槽(2)内に連通孔り19)によって
連通している。(20〉はエアートラップ(16)の成
型時に形成される下向き突出筒状の型抜孔で、ABS樹
脂等から成る逆有底筒状の底栓(21〉によって閉室し
である。
(16) is an air trap that is integrally formed so as to bulge out on the lower side wall of the outer tank 2).The upper part communicates with the guyafram type water level switch (18) via the tube (17), and the lower part is connected to the outer tank. (2) is communicated with the inside through a communicating hole 19). (20> is a downwardly protruding cylindrical die cut hole formed when molding the air trap (16), and is closed by a bottom plug (21>) made of ABS resin or the like and having an inverted bottomed cylindrical shape.

この底栓(21)は、下方から順に、型抜孔(20)の
下端に係当する環状フラ〉シ(22)と、型抜孔(20
)の内周面に接着される接着面(23)と、接着面より
小径で型抜孔(20〉の内周面から少し離れ工いる中間
部(24)と、中間部より上向きに突出して工′アート
ラップ(16)内に位置する小径の第1収納部(25)
を一体形成している。更に、この底栓(21〉は、第1
収納部(25)に対向する中間部(24)に、下向きに
突出する筒状の第2収納部(26)を、第1収納部〈2
5)に連通して一体形成している。
This bottom plug (21) includes, in order from the bottom, an annular fly (22) that engages the lower end of the die cut hole (20) and a die cut hole (20).
), an intermediate part (24) that has a smaller diameter than the adhesive surface and is slightly away from the inner peripheral surface of the die cut hole (20), and a part that protrudes upward from the intermediate part and is machined. 'Small diameter first storage section (25) located inside the art wrap (16)
are integrally formed. Furthermore, this bottom plug (21)
A cylindrical second storage part (26) projecting downward is provided in the middle part (24) facing the storage part (25), and the first storage part (26)
5) and is integrally formed.

(27)はリード線(28)にかしめによって連結され
て電気接続きれた温度センサー、例えはサーミスタで、
かしめ部<29)(29)を上下に位置させてリード線
(28)と共に第2収納部り26)及び第1収納部(2
5)内に挿着される。(30)は挿着後に第2収納部(
26)内に充填されてサーミスタ等を止着する絶縁樹脂
から成るコーティング居である。
(27) is a temperature sensor, for example a thermistor, connected to the lead wire (28) by caulking and electrically connected.
The caulking part <29) (29) is positioned vertically and the second storage part (26) and the first storage part (26) are connected together with the lead wire (28).
5) It is inserted into the inside. (30) is the second storage part (
26) A coating made of insulating resin that is filled inside and fixes a thermistor, etc.

尚、実際の作業手順は、予め底栓(21)にサーミスタ
(27)等を止め、その後に底栓(21〉を型抜孔(2
0)に接着することになる。
The actual work procedure is to attach the thermistor (27) etc. to the bottom plug (21) in advance, and then insert the bottom plug (21) into the punching hole (2).
0).

(31)(32)は機枠(1)の上後部に設けられた電
源スイッチのツマミと、水位設定及び水補給のために水
位スイッチ(18)を操作するツマミで、第4図(イ)
で示されている。(33)は第3図で示すマイク■ココ
〉・ピユータ(以下マイコンと言う>(34)から成る
制御回路を内蔵した制御ボックスで、機枠(1)の上部
の前部に設けられており、その操作パネルには第4図(
ロ)で示すように各種のキー(35a)〜(35h)、
操作や進行を表示する発光ダイオード(以下LEDと言
う)(36a)〜(36o)及び水温や気温をランク毎
に表六するL E D (37a)〜(37c)を設け
ている。
(31) and (32) are the power switch knobs installed at the upper rear of the machine frame (1) and the knobs for operating the water level switch (18) for setting the water level and replenishing water.
is shown. (33) is a control box containing a control circuit consisting of a microphone and a computer (hereinafter referred to as microcomputer) (34) shown in Figure 3, and is installed at the front of the upper part of the machine frame (1). , the operation panel is shown in Figure 4 (
As shown in b), various keys (35a) to (35h),
Light emitting diodes (hereinafter referred to as LEDs) (36a) to (36o) that display operations and progress, and LEDs (37a) to (37c) that display water temperature and air temperature for each rank are provided.

第3図で示す制御回路に於いて、上蓋スイッチ(13)
の開閉信号、水位スイッチ(18)の水位検知信号、リ
セット回路(38)のリセット信号、外部割込回路(3
9)からの計時用の基準信号、上記サーミスタ(27)
と比較器から成る温度illl不定(40)のランク別
の温度信号は、マイコン(34)に入力される。
In the control circuit shown in Figure 3, the top cover switch (13)
open/close signal, water level detection signal of water level switch (18), reset signal of reset circuit (38), external interrupt circuit (3
Reference signal for timing from 9), the thermistor (27) above
A rank-specific temperature signal of temperature illll unknown (40) consisting of a comparator and a temperature illll is inputted to a microcomputer (34).

(41)は駆動モータ(7)を右l]転きせる駆動回路
、(42)は左回転きせる駆動回路、(43)は異常を
含む各種の状態を使用者に報知するブザーである。
(41) is a drive circuit that rotates the drive motor (7) to the right, (42) is a drive circuit that rotates the drive motor (7) to the left, and (43) is a buzzer that notifies the user of various conditions including abnormalities.

次に動作について説明すると、まず電源スィッチをON
!、、てマイコン(34)をリセットする。すると、水
流キー(35d)での“標準゛′のL E D (36
j)が点灯し、温Jf /1lII定手段(40)では
気温を測定する。
Next, to explain the operation, first turn on the power switch.
! ,, reset the microcomputer (34). Then, press the water flow key (35d) to select “Standard” L E D (36
j) lights up, and the temperature Jf/1lII measuring means (40) measures the temperature.

温度/![I定手段(40)は、サーミスタ(27)の
端子電圧を12℃、14°Cに対応した基準電圧と比較
器によって比較し、気温、水温に関する温度信号庖・マ
イコンク34)に入力する。
temperature/! [The I-determining means (40) compares the terminal voltage of the thermistor (27) with reference voltages corresponding to 12°C and 14°C using a comparator, and inputs the temperature signals related to air temperature and water temperature to the temperature signal controller/microcontroller 34).

マイコン(34〉は電源スィッチがONuた直後の温度
信号、或いはその後の水位スイッチ(18)のセット時
までの温度信号を気温に係る温度信号として処理し、水
位スイッチ〈18)のセット後の温度信号を水温に係る
温度信号として処理する。そして、気温、水温を12℃
未満、12℃・〜24℃未満、24℃以上の3ランクに
分け、このう〉・りに対応するL E D (37a)
、<37b)、(37c)を点灯きせる。
The microcomputer (34) processes the temperature signal immediately after the power switch is turned on, or the temperature signal until the water level switch (18) is set thereafter, as a temperature signal related to the air temperature, and calculates the temperature after the water level switch (18) is set. Process the signal as a temperature signal related to water temperature. Then, the air temperature and water temperature were set to 12℃.
Divided into 3 ranks: less than 12°C/~24°C, and 24°C or more, and L E D (37a) corresponding to these
, <37b) and (37c) are turned on.

こうして、対応ランク毎の点灯表示が実行きれる中で、
洗濯運転はスタートキー(35f)を押圧操作し、また
必要によっては種々のキーを操作して時間等を変更して
からスタートキー(3Sf)を抑圧操作すると開始する
。更に短時間で洗濯したい時にはスター1−キー(35
g)を押圧して開始する。マイコン(34月よ洸い、す
すぎ、脱水の各時間、回数、周期を水温のランク毎に予
め記憶しており、この記憶内容に沿って作業を実行させ
る。仮に運転開始時に時間を短く設定していても、水温
のランクに見合う時間だけ運転を行なわせる。
In this way, while the lighting display for each corresponding rank was completed,
The washing operation is started by pressing the start key (35f) and, if necessary, changing the time etc. by operating various keys, and then pressing the start key (3Sf). If you want to wash clothes in an even shorter time, use the Star 1-key (35
g) Press to start. Microcomputer (34 months, rinsing, spin-drying time, number of times, and cycle are stored in advance for each rank of water temperature, and the work is executed according to the stored contents. Temporarily, if the time is set short at the start of operation) Even if the water temperature is low, the water temperature will be allowed to run for a period of time commensurate with the rank of the water temperature.

供給された水は連通孔(19)からエアートラップ(1
6)内に流入し、所定位まで水位が上るとサーミスタ(
27)は第1収納部〈25)を介して流入水の温度を検
知する。サーミスタ(27)をエアートラップ(16〉
の型抜孔(20)の底栓(21)に取付(すたので、サ
ーミスタ(27)は種々の運転動作の中で比較的おだや
かなエアート2ツブク16)内の水の温度を検知でき、
ばらつきの少い検知能が期待できるものである。
The supplied water flows from the communication hole (19) to the air trap (1
6) When the water level rises to a certain level, the thermistor (
27) detects the temperature of the inflowing water via the first storage section (25). Air trap (16) thermistor (27)
Since the thermistor (27) is attached to the bottom stopper (21) of the die-cut hole (20), the thermistor (27) can detect the temperature of the water in the airt 2 tube 16, which is relatively calm during various operating operations.
Detection performance with little variation can be expected.

ところで、サーミスタ(27)は第5図で示すようにそ
の収納部の体積の変化により応答速度が異なり、処理能
力を上げるためにも応答速度を速くすることが望まれる
。そこで、本実施例では、第1収納部(25)の縦寸法
を極力小きくすると共に、その号笛2収納部(26)に
よってカバーしている。即ち、第1収納部(25)た(
づでは結線部位が露出するので、この部位を第2収納部
(26)内に位置させ、ここで絶縁樹脂をコーティング
している。
Incidentally, as shown in FIG. 5, the response speed of the thermistor (27) varies depending on the volume of its storage portion, and it is desirable to increase the response speed in order to increase processing capacity. Therefore, in this embodiment, the vertical dimension of the first storage section (25) is made as small as possible and is covered by the whistle 2 storage section (26). That is, the first storage part (25)
Since the wire connection part is exposed at this point, this part is located in the second housing part (26) and coated with an insulating resin.

また、本実施例では接着面(23)よりも縮径した中間
部(24)を形成し、ここに収納部(25)<26>を
形成している。従って、接着面(23)を型抜孔(2o
)に圧入し、接着した際に或いはその他の場合に、接着
面(23〉が歪んでも、その変形が中間部(24)に伝
わりにくい。この結果、収納部(25>(26)の位置
、即ち、ナーミスタ(27)の位置は安定し、取付けの
不安定さによる検出誤差が極めて減少する。
Furthermore, in this embodiment, an intermediate portion (24) is formed whose diameter is smaller than that of the adhesive surface (23), and storage portions (25)<26> are formed therein. Therefore, the adhesive surface (23) is
Even if the bonding surface (23> is distorted when press-fitting and bonding) or in other cases, the deformation is unlikely to be transmitted to the intermediate part (24).As a result, the position of the storage part (25>(26), That is, the position of the narmistor (27) is stabilized, and detection errors due to instability in attachment are greatly reduced.

更に、前記中間部(24)を設げたことにより前記エア
ートラップ(16ンと外槽(2)内との連通孔(19)
部を狭め、脱水時に内槽く3〉の回転に伴なって引き起
こされる水流や内外槽(3)<2)間に落下した洗濯物
により前記温度センサー(27)が破損することを防止
している。
Furthermore, by providing the intermediate portion (24), a communication hole (19) between the air trap (16) and the inside of the outer tank (2) is formed.
The temperature sensor (27) is prevented from being damaged by the water flow caused by the rotation of the inner tub (3) during spin-drying or by the laundry that has fallen between the inner and outer tubs (3) (2). There is.

ところで、水温と室温に大きな差がある場合(例えば冬
季に洸111!機を暖房した室内で使用する場合)、当
初槽や回転翼が室温により暖められており、ここで給水
を開始するとます槽や回転翼に触れて少し暖められた水
が前記エアートラップ(16)内に流れ込むが、前記連
通孔(19)が狭いと、以後のエアートラップ(16)
と槽内との水の流通が起こりにくく、初めの内はエアー
トラップ(16)と槽内の水温に5℃程の差が生しる。
By the way, if there is a large difference between the water temperature and the room temperature (for example, when the Ko 111! aircraft is used in a heated room in the winter), the tank and rotor are initially warmed by the room temperature, and when you start water supply here, the tank The water that has been slightly warmed by contact with the rotary blades flows into the air trap (16), but if the communication hole (19) is narrow, the water that comes into contact with the air trap (16)
It is difficult for water to flow between the air trap (16) and the tank, and initially there is a difference of about 5°C in water temperature between the air trap (16) and the tank.

従って、前記温度センサー(27)が、実際の水温より
も少し高い温度を検知することが起こり得る。
Therefore, the temperature sensor (27) may detect a temperature slightly higher than the actual water temperature.

そこで、第2の実施例として、斯かる危惧を解消するも
のを第6図及び第7図に基ついて説明する。
Therefore, a second embodiment that eliminates such concerns will be described with reference to FIGS. 6 and 7.

(44)は前記底栓(21)の上面(21a)中央部に
突設した収納筒部であり、内部に温度センサー(27)
を収納する。前記底栓(21)の上面(21a)に於け
る前記収納筒部(44)の四方4箇所には、4枚のリブ
(45)・・・を互いに間隔を設けて立設している。そ
して、この内の1枚のリブ(45a>を、前記底栓(2
1)を取着したときに前記連通孔(19)に面し且つ所
定の間隔を有するような位置に形成す゛る。尚、実施例
では取着作業を容易にするため、全てのリブ(45)・
・が対応できるよう、前記リブ(45)・ を夫々前記
収納首部(44)から等距離の位置に形成している。ま
た、前記リブ(45)はM記外梼(2〉内に位置しても
よいし、前記エアートラップ(16)内に位置してもよ
い。
(44) is a storage cylinder protruding from the center of the upper surface (21a) of the bottom plug (21), and there is a temperature sensor (27) inside.
to store. On the upper surface (21a) of the bottom stopper (21), four ribs (45) are provided upright at four locations on each side of the storage tube (44) at intervals. Then, one of the ribs (45a) is connected to the bottom plug (2).
1) is formed at a position facing the communication hole (19) and having a predetermined interval when it is attached. In addition, in the example, all ribs (45) and
The ribs (45) and (45) are formed at equal distances from the storage neck (44) to accommodate the storage neck (44). Further, the rib (45) may be located within the M outer shell (2>) or may be located within the air trap (16).

第8図は、第3の実施例を示し、前記連通孔(19)に
面し且つ所定の間隔を有するリブ(46)を前記外槽(
2)の底面(2a)に一体に立設ず己と共に、前記リブ
(46ンを前記底面(2a)角部に形成した段部(47
)(48)で挾んだものである。
FIG. 8 shows a third embodiment, in which ribs (46) facing the communication hole (19) and having a predetermined interval are connected to the outer tank (
2) is integrally erected on the bottom surface (2a) of the bottom surface (2a).
) (48).

斯かる構成としたことにより、水流や洗濯物から温度セ
ンサー(27)を保護し、且つ連通孔り19〉を狭める
こともない。
With such a configuration, the temperature sensor (27) is protected from water flow and laundry, and the communication hole 19> is not narrowed.

第9図及び第10図は第4の実施例を示し、油記収納筒
部(44〉に連接してリブ(49)を立設したものであ
り、このリブ(49)により収納筒部(44)を補強し
ている。
9 and 10 show a fourth embodiment, in which a rib (49) is provided upright in connection with the oil storage cylinder (44), and this rib (49) 44) is reinforced.

(1・)発明の効果 本発明に依れば、温度センサーのための特別の取イ・[
構造を省き、且つばら〕きの少い温度検知を行なうこと
ができるので、温度検知能が高く且つ簡易構成のセンサ
ー取付装置を提供できるものである。
(1.) Effects of the invention According to the present invention, a special arrangement for the temperature sensor [
Since the structure can be omitted and temperature detection can be performed with less variation, it is possible to provide a sensor mounting device with high temperature detection ability and a simple configuration.

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

第1図は本発明装置の断面図、第2図は洗濯機全体の正
面断面図、第3図は151:心機の制御回路図、第4図
くイ〉く口〉は夫々別の操作パネルの正面図、第5図は
サーミスタの応答特性図、第6図は第2の実施例に於け
る第1図相当図、第7区は同社体の斜視図、第8図は第
3の実施例に於けるエアートランプ部の斜視図、第9図
は第4の実施例に於ける第1相邑図、第10図は同栓体
の斜腕図である。 (2) ・外槽、(16)・・エアートラップ、(18
)・・水位スイッチ、(20)・型抜孔、(21)・底
栓、(25)・・第1収納部、(26)・・第2収納部
、(27)・・・サーミスタ1M度センサー)。
Fig. 1 is a sectional view of the device of the present invention, Fig. 2 is a front sectional view of the entire washing machine, Fig. 3 is a control circuit diagram of the 151: heart machine, and Fig. 4 is a separate operation panel. , Figure 5 is a response characteristic diagram of the thermistor, Figure 6 is a diagram equivalent to Figure 1 in the second embodiment, Section 7 is a perspective view of the company's body, and Figure 8 is the third implementation. FIG. 9 is a perspective view of the air lamp part in the example, FIG. 9 is a view of the first phase in the fourth embodiment, and FIG. 10 is a perspective view of the plug body. (2) ・Outer tank, (16)... Air trap, (18
)・・Water level switch, (20)・Mold hole, (21)・Bottom plug, (25)・・1st storage part, (26)・・2nd storage part, (27)・・Thermistor 1M degree sensor ).

Claims (1)

【特許請求の範囲】[Claims] (1)槽の下部側壁に、槽内水位の変化を水位スイッチ
に伝達するエアートラップを一体形成し、このエアート
ラップの下方の型抜孔を閉塞する底栓に、上向きに凹ん
だ収納部を形成し、この収納部内に温度センサーを挿着
して成る洗濯機の温度センサー取付装置。
(1) An air trap that transmits changes in the water level in the tank to the water level switch is integrally formed on the lower side wall of the tank, and an upwardly recessed storage section is formed in the bottom plug that closes the cut-out hole below the air trap. A temperature sensor mounting device for a washing machine is made by inserting a temperature sensor into this storage compartment.
JP61032395A 1985-06-26 1986-02-17 Temperature sensor mount apparatus of washing machine Granted JPS6290198A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP60-96885 1985-06-26
JP9688585 1985-06-26

Publications (2)

Publication Number Publication Date
JPS6290198A true JPS6290198A (en) 1987-04-24
JPH0256118B2 JPH0256118B2 (en) 1990-11-29

Family

ID=14176853

Family Applications (1)

Application Number Title Priority Date Filing Date
JP61032395A Granted JPS6290198A (en) 1985-06-26 1986-02-17 Temperature sensor mount apparatus of washing machine

Country Status (1)

Country Link
JP (1) JPS6290198A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0626789U (en) * 1992-07-09 1994-04-12 三星電子株式会社 Boiler washing machine heater safety device
WO2021037147A1 (en) * 2019-08-29 2021-03-04 松下知识产权经营株式会社 Fluid temperature detection device for laundry processing apparatus, and laundry processing apparatus

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0626789U (en) * 1992-07-09 1994-04-12 三星電子株式会社 Boiler washing machine heater safety device
JP2507396Y2 (en) * 1992-07-09 1996-08-14 三星電子株式会社 Heater safety device for boilers
WO2021037147A1 (en) * 2019-08-29 2021-03-04 松下知识产权经营株式会社 Fluid temperature detection device for laundry processing apparatus, and laundry processing apparatus

Also Published As

Publication number Publication date
JPH0256118B2 (en) 1990-11-29

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