JPS62225797A - Pump device - Google Patents
Pump deviceInfo
- Publication number
- JPS62225797A JPS62225797A JP6746486A JP6746486A JPS62225797A JP S62225797 A JPS62225797 A JP S62225797A JP 6746486 A JP6746486 A JP 6746486A JP 6746486 A JP6746486 A JP 6746486A JP S62225797 A JPS62225797 A JP S62225797A
- Authority
- JP
- Japan
- Prior art keywords
- pump
- temperature
- circuit section
- section
- pump motor
- 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
Links
- 230000002159 abnormal effect Effects 0.000 claims abstract description 24
- 238000005259 measurement Methods 0.000 claims description 10
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 8
- 238000001514 detection method Methods 0.000 description 4
- 238000013019 agitation Methods 0.000 description 2
- 230000007423 decrease Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 238000004804 winding Methods 0.000 description 2
- 241000239290 Araneae Species 0.000 description 1
- OWNRRUFOJXFKCU-UHFFFAOYSA-N Bromadiolone Chemical compound C=1C=C(C=2C=CC(Br)=CC=2)C=CC=1C(O)CC(C=1C(OC2=CC=CC=C2C=1O)=O)C1=CC=CC=C1 OWNRRUFOJXFKCU-UHFFFAOYSA-N 0.000 description 1
- 235000007516 Chrysanthemum Nutrition 0.000 description 1
- 244000189548 Chrysanthemum x morifolium Species 0.000 description 1
- 241000277331 Salmonidae Species 0.000 description 1
- 230000005856 abnormality Effects 0.000 description 1
- 239000003990 capacitor Substances 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 239000003292 glue Substances 0.000 description 1
- 238000009499 grossing Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 230000010355 oscillation Effects 0.000 description 1
- 238000013021 overheating Methods 0.000 description 1
- 238000005086 pumping Methods 0.000 description 1
- 238000005406 washing Methods 0.000 description 1
Landscapes
- Control Of Non-Positive-Displacement Pumps (AREA)
- Control Of Positive-Displacement Pumps (AREA)
Abstract
Description
【発明の詳細な説明】
(イ)産業上の利用分野
本発明は、ポンプ本体部の異常状態を判定しこの判定結
果に基いてポンプモータの停止及び異常状態の表示を行
なうポンプ装置に関する。DETAILED DESCRIPTION OF THE INVENTION (a) Field of Industrial Application The present invention relates to a pump device that determines an abnormal state of a pump main body and stops a pump motor and displays an abnormal state based on the determination result.
(ロ)従来の技術
本発明に先行する特開昭60−237197号公報に記
載された従来の技術では、ポンプモータの電流によって
異常状態を検出しているが、空転及び締切運転等の異常
状態時の電流変化は小さく且つ瞬時である念めその検出
が帷かしい等の欠点がある。(B) Conventional technology In the conventional technology described in Japanese Patent Application Laid-Open No. 60-237197, which precedes the present invention, abnormal conditions are detected by the current of the pump motor. However, there are drawbacks such as the fact that the current change is small and instantaneous, but detection thereof is cumbersome.
し→ 発明が解決しようとする問題点
本発明は前述の欠点を解消し、空転及び締切運転等の異
常状態を簡単巨つ確実に検出してポンプモータの停止及
び異常状態の表示を行なうものである。→ Problems to be Solved by the Invention The present invention solves the above-mentioned drawbacks, and easily and reliably detects abnormal states such as idling and shut-off operation, and stops the pump motor and displays the abnormal state. be.
に)問題点を解決するための手段
本発明は、ポンプ本体部に設けた温度センサと、該温度
センサに接接して前記ポンプ本体部の温度上昇勾配を測
定する測定回路部と、核測定回路部で測定された温度上
昇勾配に基いて前配ポンプ本体部の積電状態を判定する
判定回路部と、該判定回路部の判定結果に基いてポンプ
制御信号を停止する制御回路部と、該制御回路部の出力
に基いてポンプモータを停止するスイッチング回路部と
、前記判定回路部の出力に基いて異常状態をその状態ご
とに区別して表示する表示部と、を備えたものである。B) Means for Solving the Problems The present invention provides a temperature sensor provided in a pump body, a measurement circuit unit that is in contact with the temperature sensor and measures the temperature increase gradient of the pump body, and a nuclear measurement circuit. a determination circuit unit that determines the load state of the front pump body based on the temperature rise gradient measured by the unit; a control circuit unit that stops the pump control signal based on the determination result of the determination circuit unit; The apparatus includes a switching circuit section that stops the pump motor based on the output of the control circuit section, and a display section that distinguishes and displays abnormal conditions for each state based on the output of the determination circuit section.
(ホ)作 用
本発明によれば、空転及び締切運転等の界常時にはポン
プの情拌による摩擦熱とポンプモータの過熱によりポン
プ本体部が温度上昇しこの温度上昇状態に基いて渦空セ
ンサ、測定回路部及び判定回路部等にて異常状態が検出
され、更にこの検出皓果に基いてポンプモータの停止及
び異常状態の表示が行なわれる。ポンプモータの電流変
化ではなくポンプ本体部全体の温度上昇状態に基いて異
常状態を判定するので、瞬時値ではなく序時変化におけ
る平均値で確実に安定して異常状態が検出される。(E) Function According to the present invention, during normal conditions such as idling and shut-off operation, the temperature of the pump body rises due to frictional heat caused by pump agitation and overheating of the pump motor, and based on this temperature rise state, the vortex air sensor An abnormal state is detected by the measurement circuit section, the determination circuit section, etc., and the pump motor is stopped and the abnormal state is displayed based on the detection results. Since the abnormal state is determined based on the temperature rise state of the entire pump main body rather than the current change of the pump motor, the abnormal state is reliably and stably detected based on the average value over time rather than the instantaneous value.
(へ)実施例 次洗本発明の一実施例について説明する。(f) Example Next washing An embodiment of the present invention will be described.
塩1図において、(りはポンプ本体部で、具体的には、
ポンプモータ(2)(後記する)と該ポンプモータ(2
)により回転されるウェスコ型のインペラを収納し六ケ
ーシング部(図示しかい)とから構成されている。ケー
シング部はインペラの回転軸を挿通させる軸封部(1閉
示しない)を有している。In Figure 1, (ri is the pump body, specifically,
Pump motor (2) (described later) and the pump motor (2)
), which houses a Wesco-type impeller rotated by a casing (not shown). The casing portion has a shaft seal portion (1 not shown) through which the rotating shaft of the impeller is inserted.
(3)はポンプ本体部mK接続した吸込側配管で、逆上
弁(4)を介設している。(5)は水位が所定値以下で
あることを検出する低水位センサ、f6)はポンプ本体
部(1)K設けた温度センサで、前記ケーシング部に凹
所(図示しかい)を設けこの凹所に埋設している。()
)はポンプ本体部fil K接続した吐出側配管、(8
)は吐出側配管(71K設けた圧力センサ、(9)は流
量センサ、(lφけ吐出側配管(7)に接続した圧力タ
ンク、(11)は吐出側配管(7)の先端部に設けた吐
出水怜である。(3) is a suction side pipe connected to the pump main body mK, and has a reverse valve (4) interposed therein. (5) is a low water level sensor that detects that the water level is below a predetermined value, f6) is a temperature sensor provided in the pump body (1) K, and a recess (not shown) is provided in the casing part. It is buried in a place. ()
) is the discharge side piping connected to the pump body fil K, (8
) is the pressure sensor installed on the discharge side piping (71K), (9) is the flow rate sensor, (1φ is the pressure tank connected to the discharge side piping (7), and (11) is installed at the tip of the discharge side piping (7). The discharge water is poor.
第2図において、(lりは前記温度センサ(6)に接続
した測定回路部で、ポンプ本体部mのケーシング部の温
度変化の程度、いわ【Φる温度上昇勾配を測定する。(
131は測定回路部f+2に接続した判定回路部で前記
温度上昇勾配に基いてポンプ本体部fl+の異常状態を
判定する。判定回路部(1(至)は後述のように温度上
昇勾配に基いてポンプ本体部illの空転と締切運転を
判別すべく構成されている。041は判定回路部(1:
1の出力に基いて作動する制御回路部で判定回路部(1
′3で異常状態が判定されぇ場合だけ非導通となりポン
プモータmを停止する。情はスイッチング回路部で、高
圧の交流電路に介在し前記ポンプ制御信号の停止にとも
なってポンプモータmを停止する。(1値は前記判定回
路部(1国に接続した表示部で、ポンプ本体部[11の
空転及び締切運転等の異常状!′j!を表示する。In FIG. 2, (l) is a measurement circuit connected to the temperature sensor (6), which measures the degree of temperature change in the casing of the pump body m, or the temperature rise gradient (Φ).
Reference numeral 131 denotes a determination circuit unit connected to the measurement circuit unit f+2, which determines the abnormal state of the pump body part fl+ based on the temperature increase gradient. The determination circuit unit (1 (to) is configured to determine whether the pump main body ill is idling or closed operation based on the temperature rise gradient as described later.041 is the determination circuit unit (1:
The control circuit section operates based on the output of 1, and the judgment circuit section (1
Only when an abnormal state is determined in step '3, conduction is made and the pump motor m is stopped. The switching circuit is interposed in the high-voltage AC line and stops the pump motor m when the pump control signal stops. (A value of 1 is a display unit connected to the judgment circuit unit (1 country), which indicates abnormal conditions such as idling and shut-off operation of the pump main body [11!'j!
第3[」ておいて、Qφは前記測定回路部(+dの主要
部を構成するコンパレータで、前記温度センサ(6)と
分割抵抗(1カの間から温度信号をマイナス側に入力し
、この温度信号をプラス側に入力する基゛準値信号と比
較してポンプ本体部Hの温度を知得する。In the third point, Qφ is a comparator that constitutes the main part of the measurement circuit section (+d), and a temperature signal is input to the minus side from between the temperature sensor (6) and the dividing resistor (1 capacitor). The temperature of the pump main body H is determined by comparing the temperature signal with a reference value signal input on the positive side.
前記基準イ!α信号はラダー抵抗0約から出力端子(a
)を介して入力する。この測定回路部flfiでは、マ
イコン(1匂のメモリでに記憶されている現叩基準値に
基いて出力ポート(Do)〜(D2)及ヒ(F″o)〜
(F3)から温度データを順次出力してラダー抵抗(l
鵠を通じて階段状電圧を発生し、この基漁信号としての
階段状電圧と前記ポンプ本体部illのm度に対応し九
電圧とを比較し、階段状電圧値が小さくなった時コンパ
レータ(lφの出力は高レベルとなり同時にこの高レベ
ル信号がマイコン(贈のボー) (AI)に入力して、
マイコン(1匍によりポンプ本体部fi+の湛変を検知
する。この測定回路部Hではマイコン圃の内部に形成さ
れたタイマーにより温度検知動作を後述のように所定時
間後知行々ってその検知時点に到達するまでのm度上昇
勾配を測定している。The above standards! The α signal is from the ladder resistance approximately 0 to the output terminal (a
). In this measurement circuit part flfi, output ports (Do) to (D2) and H (F″o) to
Temperature data is output sequentially from (F3) and the ladder resistance (l
A step voltage is generated through the gate, and this step voltage as a base signal is compared with nine voltages corresponding to m degrees of the pump main body. When the step voltage value becomes small, a comparator (of lφ) is generated. The output becomes high level and at the same time this high level signal is input to the microcontroller (AI),
A microcomputer (1 liter) detects changes in the pump main body fi+.In this measuring circuit section H, a timer formed inside the microcomputer performs temperature detection operation after a predetermined period of time as described later, and then detects the detection point. The slope of increase in m degrees until reaching .
(2])は前記制御回路部(14)の主要部を構成する
フォトダイオードで、マイコンα鱒のI@動用出力ボー
ト(GO)に接続し、このボート(Go)を介してマイ
コン(1鎖の内部の前記判定回路部(131に接続して
いる。(2]) is a photodiode that constitutes the main part of the control circuit section (14), and is connected to the I@ operation output boat (GO) of the microcomputer α trout, and is connected to the microcomputer (1 chain) via this boat (Go). It is connected to the determination circuit section (131) inside the.
+22は前記制御信号回路部(14)のフォトダイオー
ド(21)にカップリングし>tフォトトライアックで
、スイッチング回路部0ωのトライアックf′!3)の
ゲート回路を構成している。+22 is coupled to the photodiode (21) of the control signal circuit section (14) >t phototriac, and triac f'! of the switching circuit section 0ω! 3) constitutes the gate circuit.
(24a)(24b)(24c ’)(24a)は前記
表示部0輪の主要部を構成するフォトダイオードで、ボ
ー)(IThO)(El )(E2 )(ffi3 )
を介してマイコン牧の内部の”S1部(2(へ)に接続
している。表示部(Iinでは、前記判定回路部(13
1の出力に基いて前記、嘔動部(2(5)が各フォトダ
イオード(24PL)(24b)(24c)(24a)
を選択的に点灯し点灯状態の組合せによって種々のポン
プ状態を表示する。各フォトダイオード(z4a)(z
4b’)(24c)(24d)を後述の空転の場合はオ
ン、オン、オフ、オフとし、マ九締切運転の場合はオン
、オフ、オン、オフすること等により、多種類の異常状
婦を区別して表示する。使用者はその表示状態をその説
明書に対照して、トラブルの種類及びそのトラブル例対
する処理方法を簡単に知ることができる。(24a) (24b) (24c') (24a) are photodiodes constituting the main part of the display section 0 wheel;
It is connected to the S1 section (2) inside the microcomputer Maki through the display section (Iin), and the judgment circuit section (13
Based on the output of 1, the oscillation part (2 (5)
are selectively lit to display various pump statuses by combining the lighting statuses. Each photodiode (z4a) (z
4b') (24c) (24d) are turned on, on, off, off in the case of idling, which will be described later, and turned on, off, on, off in the case of deadline operation, etc., so that many types of abnormalities can occur. Display them separately. The user can easily know the type of trouble and how to deal with the trouble by comparing the display state with the instruction manual.
嶽は直流電源回路部で、降圧用トランス(21′11整
流子(28)及びRC平滑回Ii!8(2!′!1を有
して、5ボルトと7ボルトの′重圧を各所に給電する。The Dake is the DC power supply circuit section, which has a step-down transformer (21'11 commutator (28) and an RC smoothing circuit Ii!8 (2!'!1) to supply heavy voltages of 5 volts and 7 volts to various parts. do.
((至)けり′1り込み信号回路部で、端子(工NT)
に割り込み信号を入力して所望時にマイコン蜘の実行状
態を中断させる。((to) Terminal (engineering NT) in the input signal circuit section
Input an interrupt signal to interrupt the execution state of the microcomputer spider at a desired time.
l31)はスイッチ部で、前配圧カセンサ(8)、流量
センサ(9)及び低水位センサ(5)のそれぞれに対応
するスイッチを有している。131) is a switch section, which has switches corresponding to each of the front pressure distribution sensor (8), the flow rate sensor (9), and the low water level sensor (5).
■はリセット回路部で、前記判定電路部(131によリ
ボンブ本体部+1)が停止された後で再度このポンプ本
体部(1)を起動可能にする場合に、そのリセットボタ
ン田を手動操作するものである。■ is a reset circuit section, which is used to manually operate the reset button when the pump main body section (1) can be started again after the judgment circuit section (131 has stopped the ribbon main body section +1). It is something.
而して前記測定回路部0り及び前記判定回路部−は第3
図に示すようにその判定基単がマイコンlの内部にプロ
グラム構成されている。The measurement circuit section 0 and the judgment circuit section are the third
As shown in the figure, the determination criteria are programmed inside the microcomputer I.
前記回路部f+dQlでは、ポンプ本体部(1)の温度
変化が2分以内に5℃に到達した場合、締切運転と判定
しその判定信号を出力することにより、前記制御回路部
(I4を非導通としてポンプモータ(2)を停止すると
共に、前記表示部0・に前述の締切運転表示を行々う。In the circuit section f+dQl, when the temperature change of the pump main body section (1) reaches 5 degrees Celsius within 2 minutes, the circuit section f+dQl determines that it is a shut-off operation and outputs the judgment signal, thereby making the control circuit section (I4 non-conducting). As a result, the pump motor (2) is stopped, and the aforementioned cut-off operation display is displayed on the display section 0.
従って使用者はポンプ停止原因が締切運転であることが
表示されその修理箇所及び修理方法を即座に判別できる
。具体的に、締切運転による故障の場合は、その故障箇
所がポンプ停止用センサ(9)(流量センサ)等である
ことが即座に判別できる。Therefore, the user is able to see that the cause of the pump stoppage is due to shut-off operation, and can immediately identify the repair location and repair method. Specifically, in the case of a failure due to shut-off operation, it can be immediately determined that the failure location is the pump stop sensor (9) (flow rate sensor) or the like.
また前記回路部(I力(1mでは、ポンプ本体部C1)
の温度変化が2分で5℃には到達しないが10分以内に
3℃に到達した場合に、空運転と判定してポンプモータ
(2)を停止すると共に前記表示部αφに前述の空運転
表示を行なう。空運転は、ポンプ本体部(1)の軸封部
及び吸込側配管(3)等から空気を吸込み、揚水せずに
ポンプ本体部fl)が空転状態になっているものである
力・ら、その修理箇所が前記軸封部及び吸込側配管(3
)のジヨイント部等であることが即座に判別される。In addition, the circuit section (I force (for 1 m, pump main body C1)
If the temperature change does not reach 5°C in 2 minutes but reaches 3°C within 10 minutes, it is determined that the pump motor (2) is running idle, and the pump motor (2) is stopped and the display section αφ shows the above-mentioned idle running. Perform display. Dry operation is when air is sucked in from the shaft seal part of the pump body (1) and the suction side piping (3), etc., and the pump body (fl) is in an idle state without pumping water. The repair points are the shaft seal section and the suction side piping (3
), it is immediately determined that it is a joint part, etc.
前記ポンプの制御装置では、水栓(11)が開かれてポ
ンプ本体mh1)の圧力が低下すると、圧力センサ(8
)が作動してそれに基いてマイコン峻の出力ボート(G
O)の制御回路部(14)が導通し、電源スイッチング
回路部0ωがオンとなりポンプモータ(2)が作動する
。In the pump control device, when the water faucet (11) is opened and the pressure in the pump body mh1) decreases, the pressure sensor (8
) is activated and based on that, the output boat (G
The control circuit section (14) of O) becomes conductive, the power switching circuit section 0ω is turned on, and the pump motor (2) operates.
水栓(11)が閉じられて流量がなくなると流量センサ
(9)が作動してそれに基いて制御回路部(14)が非
導通となり、ポンプモータ(2)も停止する。When the faucet (11) is closed and the flow rate disappears, the flow rate sensor (9) is activated, and based on this, the control circuit section (14) becomes non-conductive, and the pump motor (2) also stops.
また、吸込側の水位が低下した場合には、低水位スイッ
チ(5)が動作して制御回路部θ菊が非導通となりポン
プモータ(2)は起動不能になる。Further, when the water level on the suction side decreases, the low water level switch (5) operates, the control circuit section θ chrysanthemum becomes non-conductive, and the pump motor (2) becomes unable to start.
また前記ポンプ装置では、締切運転を生じるとポンプモ
ータ(2)が過電荷になりこのモータ(2)カ・らモー
タ軸を通してポンプケーシング側に伝達される熱とイン
ペラの攪拌による摩擦熱とによりポンプ本体部(1)の
ケーシングは全体的に温度上昇して、その状態が判定回
路部f+31で判定され、ポンプモータ(2)が停止す
ると共に締切運転表示かがされる。In addition, in the pump device, when shut-off operation occurs, the pump motor (2) becomes overcharged, and the heat transferred from the motor (2) to the pump casing side through the motor shaft and the frictional heat caused by the agitation of the impeller pump the pump. The temperature of the casing of the main body (1) increases as a whole, and this state is determined by the determination circuit f+31, and the pump motor (2) is stopped and a cut-off operation display is displayed.
空運転を生じると、ポンプモータ(2)は高速回転して
、前述の締切運転表示ではないにしても発熱してポンプ
本体部11)けj’g4同に示すように緩やかに温度上
昇し、2分後の温度変化が5℃以下であって1つ10分
後の温度変化が3℃以上の場合は空運転と判定され、そ
の表示がポンプモータ(2)の停止と共に々される。When idle operation occurs, the pump motor (2) rotates at high speed, generates heat, and the temperature of the pump main body 11) gradually rises as shown in the figure. If the temperature change after 2 minutes is 5°C or less and the temperature change after 10 minutes is 3°C or more, it is determined that the pump is running idle, and this indication is displayed when the pump motor (2) is stopped.
(ト)発明の効果
本発明は以上のように構成したから、空転及び締切等の
運転時にはポンプ本体部が全体的に温度上昇しその温度
上昇勾配に基いてポンプモータの停止と共に各異常状態
の区別された表示がなされるようになり、従って使用者
はその表示により故障箇所を即座に知得して修理作業を
簡単に能率良く行なえる。まな、ポンプモータの電流や
巻線温度ではなくポンプ本体部の全体の温度変化てより
異常状態を検出するので、この温度変化は継続的で且つ
緩やかなものであり、電流検知のようにその瞬時変化を
常時監視することなしに且つ巻線温度の上昇によるエネ
ルギー損失及びポンプ部品の熱劣化を招来することなし
に、ポンプの異常状態を検出できる。(G) Effects of the Invention Since the present invention is configured as described above, the temperature of the entire pump body rises during operations such as idling and shutoff, and based on the temperature rise gradient, the pump motor is stopped and each abnormal state is prevented. Distinguished displays are now provided, so that the user can immediately identify the location of the failure and perform repair work easily and efficiently. However, since abnormal conditions are detected not by the pump motor's current or winding temperature but by the overall temperature change of the pump body, this temperature change is continuous and gradual; Abnormal conditions in the pump can be detected without constantly monitoring changes and without causing energy loss and thermal deterioration of pump components due to increases in winding temperature.
図面は本発明の一実施例を示し、塩1図は水路1列、第
21閃は構成(囚、第3図は電気回路図、筆4図は判定
動作の説明図である。
(1)・・・ポンプ本体M、 +21・・・ポンプモー
タ、(6)・・・温度センサ、(12・・・測定回路部
、崗・・・判定回路部、04・・・制御回路部、U+・
・・スイッチング回路部、1161・・・表示部。The drawings show one embodiment of the present invention, and the 1st drawing shows one row of water channels, the 21st drawing shows the configuration, the 3rd drawing is an electric circuit diagram, and the 4th drawing is an explanatory diagram of the judgment operation. (1) ... Pump body M, +21... Pump motor, (6)... Temperature sensor, (12... Measuring circuit section, Glue... Judgment circuit section, 04... Control circuit section, U+.
...Switching circuit section, 1161...Display section.
Claims (1)
に接続して前記ポンプ本体部の温度上昇勾配を測定する
測定回路部と、該測定回路部で測定された温度上昇勾配
に基いて前記ポンプ本体部の異常状態を判定する判定回
路部と、該判定回路部の判定結果に基いてポンプ制御信
号を停止する制御回路部と、該制御回路部の出力に基い
てポンプモータを停止するスイッチング回路部と、前記
判定回路部の出力に基いて異常状態をその状態ごとに区
別して表示する表示部と、を備えたことを特徴とするポ
ンプ装置。 2)前記判定回路部は、温度上昇勾配に基いて前記ポン
プ本体部の空転と締切運転を判別すべく構成してなるこ
とを特徴とする特許請求の範囲第1項記載のポンプ装置
。[Claims] 1) A temperature sensor provided in the pump body, a measurement circuit connected to the temperature sensor to measure the temperature rise gradient of the pump body, and a temperature measured by the measurement circuit. a determination circuit unit that determines an abnormal state of the pump main body based on the upward slope; a control circuit unit that stops the pump control signal based on the determination result of the determination circuit unit; A pump device comprising: a switching circuit section that stops a pump motor; and a display section that distinguishes and displays abnormal states for each state based on the output of the determination circuit section. 2) The pump device according to claim 1, wherein the determination circuit section is configured to determine whether the pump main body is running idly or is running in a closed state based on a temperature increase gradient.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6746486A JPS62225797A (en) | 1986-03-26 | 1986-03-26 | Pump device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6746486A JPS62225797A (en) | 1986-03-26 | 1986-03-26 | Pump device |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS62225797A true JPS62225797A (en) | 1987-10-03 |
JPH0363680B2 JPH0363680B2 (en) | 1991-10-02 |
Family
ID=13345701
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6746486A Granted JPS62225797A (en) | 1986-03-26 | 1986-03-26 | Pump device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS62225797A (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01193096A (en) * | 1988-01-27 | 1989-08-03 | Ebara Corp | Submergible pump mounting data processor |
WO1999040322A1 (en) * | 1998-02-09 | 1999-08-12 | Ebara Corporation | Fluid machinery |
KR100402323B1 (en) * | 2001-01-03 | 2003-10-22 | 주식회사 비엔테크놀로지 | Dual temperature sensing unit of pump motor for under water |
JP2007327368A (en) * | 2006-06-06 | 2007-12-20 | Kawamoto Pump Mfg Co Ltd | Pump drought protection device for automatic water supply device |
JP2017096293A (en) * | 2013-03-29 | 2017-06-01 | 株式会社荏原製作所 | Driving device of self-priming pump, liquid supply device, and driving method of self-priming pump |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS57131887A (en) * | 1981-02-07 | 1982-08-14 | Hitachi Ltd | Electric well pump |
JPS5865983A (en) * | 1981-10-16 | 1983-04-19 | Hitachi Ltd | Overheat detecting device for feed water pump |
-
1986
- 1986-03-26 JP JP6746486A patent/JPS62225797A/en active Granted
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS57131887A (en) * | 1981-02-07 | 1982-08-14 | Hitachi Ltd | Electric well pump |
JPS5865983A (en) * | 1981-10-16 | 1983-04-19 | Hitachi Ltd | Overheat detecting device for feed water pump |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01193096A (en) * | 1988-01-27 | 1989-08-03 | Ebara Corp | Submergible pump mounting data processor |
WO1999040322A1 (en) * | 1998-02-09 | 1999-08-12 | Ebara Corporation | Fluid machinery |
EP1065381A1 (en) * | 1998-02-09 | 2001-01-03 | Ebara Corporation | Fluid machinery |
US6435836B1 (en) | 1998-02-09 | 2002-08-20 | Ebara Corporation | Fluid machinery |
CN1133010C (en) * | 1998-02-09 | 2003-12-31 | 株式会社荏原制作所 | Fluid machinery |
EP1065381A4 (en) * | 1998-02-09 | 2007-01-10 | Ebara Corp | Fluid machinery |
KR100402323B1 (en) * | 2001-01-03 | 2003-10-22 | 주식회사 비엔테크놀로지 | Dual temperature sensing unit of pump motor for under water |
JP2007327368A (en) * | 2006-06-06 | 2007-12-20 | Kawamoto Pump Mfg Co Ltd | Pump drought protection device for automatic water supply device |
JP2017096293A (en) * | 2013-03-29 | 2017-06-01 | 株式会社荏原製作所 | Driving device of self-priming pump, liquid supply device, and driving method of self-priming pump |
Also Published As
Publication number | Publication date |
---|---|
JPH0363680B2 (en) | 1991-10-02 |
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