JPS604748A - Gas fired hot water supplier - Google Patents
Gas fired hot water supplierInfo
- Publication number
- JPS604748A JPS604748A JP58113414A JP11341483A JPS604748A JP S604748 A JPS604748 A JP S604748A JP 58113414 A JP58113414 A JP 58113414A JP 11341483 A JP11341483 A JP 11341483A JP S604748 A JPS604748 A JP S604748A
- Authority
- JP
- Japan
- Prior art keywords
- water
- sensor
- hot water
- temperature
- valve
- 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.)
- Pending
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N1/00—Regulating fuel supply
- F23N1/08—Regulating fuel supply conjointly with another medium, e.g. boiler water
- F23N1/085—Regulating fuel supply conjointly with another medium, e.g. boiler water using electrical or electromechanical means
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N2225/00—Measuring
- F23N2225/08—Measuring temperature
- F23N2225/18—Measuring temperature feedwater temperature
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N2235/00—Valves, nozzles or pumps
- F23N2235/12—Fuel valves
- F23N2235/14—Fuel valves electromagnetically operated
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23N—REGULATING OR CONTROLLING COMBUSTION
- F23N5/00—Systems for controlling combustion
- F23N5/18—Systems for controlling combustion using detectors sensitive to rate of flow of air or fuel
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Instantaneous Water Boilers, Portable Hot-Water Supply Apparatuses, And Control Of Portable Hot-Water Supply Apparatuses (AREA)
Abstract
Description
【発明の詳細な説明】
本発明はカス燃焼壁に閥するものである0第1図は、従
来の実施例でおり瞬間湯沸器等の帽湯機】・らの出湯量
か多丁き′た場合、フ附湯龍力に超力りして出湯温度が
U定温度より低下するのオ防止した構造にがしたもので
ある0
第1図について以下簡明すると、1はガス用電磁弁4.
5及びガス比例制御弁12寺に収けたガスバーナである
02は島父挨器であり、蛇官6の出湯側には幅1双セン
サ11等オ収OJた絽湯自Bが接続6n、ま瓦鮒水πi
lKは水流センサ10水市り両弁14等忙l又け′fc
胞水看7が汝わ亡さ才している。16は゛ml湯層狽1
[渦1毘センサ11とカス比秒!I ftfl」伺j弁
12との間VC収りら扛た出隅瀞度匍]1仰回路であり
、15は給湯9111編度センサ11と水制御弁14と
の間にBiけられた水制御回路である。16は帽湯慎全
坏制仙j回陥てあジ出陽崗吸制御I!2回路16、水制
御回路15.水流センサ10及びガス用電磁弁4.5に
接わじされ回路力・形成さnている。DETAILED DESCRIPTION OF THE INVENTION The present invention is directed to a waste combustion wall. Fig. 1 shows a conventional embodiment of the present invention. The structure is designed to prevent the temperature of the hot water from dropping below the constant temperature due to excessive force from the hot water when the water is heated.To briefly explain Fig. 1 below, 1 is the gas solenoid valve 4.
5 and the gas burner 02 housed in the gas proportional control valve 12 is a Shimabuchiki, and the hot water outlet side of the hot water tank 6 is connected to the hot water bath B with a width of 1 twin sensor 11 etc. Kawara carp water πi
lK is water flow sensor 10 water flow valve 14 etc.
Shosuikan 7 is saying that you are dead. 16 is ゛ml hot water layer 1
[Vortex 1 bisensor 11 and dregs ratio seconds! 15 is a water control circuit connected between the water supply 9111 knitting sensor 11 and the water control valve 14. It is a circuit. 16 is the cap bath Shin Zenkai Senj times and the control I! 2 circuit 16, water control circuit 15. It is connected to the water flow sensor 10 and the gas solenoid valve 4.5 to form a circuit.
尚、出湯温度と胎湯hヒカとの間には仄の4鎗な関係が
ある。Furthermore, there is a subtle relationship between the hot water temperature and the temperature of the hot water.
【0≦ t i十、、w=・ ・・・・・・・・・・・
・・・・ (υto二出出湯厩 (℃)
ti:入水湯度 CC)
W :出湯量 (1/m i n )
Bmax:給湯機の最大(足格)人力(kcal/h)
:t#3湯機の効率(%)
即ち、出湯温/jl−toに一般K(0式の右辺の値才
通えることはない。しかし設建渦朋【S に(1)式と
は無関係VC取り得る給湯機においては、帽湯磯の出湯
管の先に設けた蛇口の開開によっては出湯量か多丁さて
to < ts (奴だ偏度)・・・・・・・・・・・
・(2)となる揚台があり、1史用中蛇口の開度に気に
つけねはならぬという1史用上の小便かある0この出湯
山鹿特性図1c第2図にボ丁。第5図は第2図のA部出
湯特性に示す拡大図である。0≦t i ten,,w=・・・・・・・・・・・・・
・・・・・・ (υto double hot water supply (℃) ti: Inlet hot water temperature CC) W: Output amount of hot water (1/min) Bmax: Maximum (account) human power of water heater (kcal/h)
:t#3 Efficiency of water machine (%) In other words, the hot water temperature/jl-to cannot be expressed as the value of the right-hand side of equation 0. However, the equation (1) has nothing to do with construction In water heaters that can take VC, depending on whether the faucet installed at the end of the hot water pipe is opened or opened, the amount of hot water that comes out may vary.・
・(2) There is a lifting platform, and you have to be careful about the opening of the faucet during use. FIG. 5 is an enlarged view showing the hot water discharge characteristics in section A of FIG. 2.
記1図でボした従来の実施例の一冗出湯崗度の制イLl
lは第4凶のフローチャート図に、また給湯機の能力限
界に達した揚台の出湯温度低下防止制御は第5図のフロ
ーチャート図に示したことぐ、いずfLも出湯湯度にフ
ィードバックしてガス比例制御3H2及び水制御弁14
鯛刀・子方式であるので、黙契換器、あるいは蛇管5の
熱容量による熱慣性勿早く吸収することが難しく。Control of hot water pressure in the conventional embodiment shown in Figure 1
l is shown in the flowchart of the fourth problem, and the control to prevent a drop in the hot water temperature of the pumping stand when the capacity of the hot water heater has been reached is shown in the flowchart of Fig.5. Gas proportional control 3H2 and water control valve 14
Since it is a taito-ko method, it is difficult to quickly absorb the thermal inertia due to the heat capacity of the silent exchanger or the serpentine pipe 5.
第3図に示すごとぐ水制御弁14?絞って取戻温度に戻
る段階で収定温就より晶(なるよりl震動か生じ、i+
llえはシャワーにめひている時などこの震動か火協寺
の人材事故につながる恐)しがある。Water control valve 14 as shown in FIG. At the stage of squeezing and returning to the recovery temperature, crystallization (rather than l vibration) occurs, i +
If you are busy taking a shower, there is a risk that this shaking could lead to a personnel accident at Kakyoji Temple.
本発明は%給水1゛7の途中に水量センサ17と錦度セ
ンザ18に納7cVc挿入し、入水熱量πf1111建
して水制御弁14と組付ぜることにより出湯崗匪の低下
防止〒図るとともに出湯渦度市1」1叩πフイ一ドフオ
ワード方式としで出湯量vの変動オ少なくシ、さらに水
皿センサt)虱呂の水加υのための計量用あるいは安全
装置としての水流検出J41寺多目的に利用することに
目「9としたものである。The present invention aims to prevent a decrease in the output power by inserting a 7cVc supply into the water flow rate sensor 17 and the temperature sensor 18 in the middle of the % water supply 1゛7, establishing the input water heat amount πf1111, and assembling it with the water control valve 14. In addition, the hot water output vorticity city 1'' 1 tap π feed forward method reduces fluctuations in the hot water output v, and furthermore, the water tray sensor t) Water flow detection J41 is used for measuring or as a safety device for adding water to the bath. The goal was to use the temple for multiple purposes.
以下本発明の給湯機に応用した実施vすに第6図乃至第
10図に基さ以下脱明する。The implementation of the present invention applied to a water heater will be explained below based on FIGS. 6 to 10.
第6図において1は、カス用i1抑弁4.5及びカス比
例制御弁12等葡収けたガスバーナであり。In FIG. 6, reference numeral 1 denotes a gas burner containing a waste i1 suppression valve 4.5 and a waste proportional control valve 12.
該バーナ上方には黙契換器2が設けられ黙契換器2の蛇
管6の出#Ij1111には崗朋センサ11等に収りた
出湯管か接続きn、蛇管5の給水側にはフィルター9.
水型センサ17、水制御弁14、自吸センサ18等に収
けた給水17カS接献されている。そして、給湯1jl
ij rAW eセンサ11とカス比例1トリ婢升12
.温度センサー18及び水封センサ17との間VCは出
湯編jW制俳回路13にブ1゛して6つの回路π形ノ戊
場−+Cた出湯藺誌制御回路1fli分9C教りるとと
+1に出陽伸jの虐腋センサ11と袷水側藺1几センサ
18.水1ttll m弁14及び水和センサ17との
間には水制御回路15て弁して前記出湯龜度制御回路部
分とl−I異る他の5つの回路を形成賂ぜた水制御回路
部分が収けられている。16は**機全全体制御口)路
であり、該回路16はガス用遡磁弁4.5.水加センサ
17゜水制御回路15及び出r#崗度制御I11回路1
5に各々接続されている。A silent exchanger 2 is provided above the burner, and the outlet #Ij1111 of the flexible pipe 6 of the silent exchanger 2 is connected to a hot water outlet pipe housed in a hot water sensor 11, etc., and a filter 9 is connected to the water supply side of the flexible pipe 5. ..
17 water supplies are connected to the water type sensor 17, water control valve 14, self-priming sensor 18, etc. And hot water 1jl
ij rAW e-sensor 11 and cass proportional 1-tri-masu 12
.. The VC between the temperature sensor 18 and the water seal sensor 17 is connected to the hot water control circuit 13, and the six circuits π type -+C are connected to the hot water control circuit 1fli. +1 is Dehi Shinj's axillary sensor 11 and Umizu's side axillary sensor 18. A water control circuit 15 is connected between the water 1ttll m valve 14 and the hydration sensor 17 to form five other circuits that are different from the hot water tap temperature control circuit. is contained. 16 is the **machine overall control port) path, and this circuit 16 is connected to the gas recirculation valve 4.5. Water addition sensor 17゜Water control circuit 15 and output r#Gravity control I11 circuit 1
5, respectively.
次に出湯温度の制#′9c第7図Vコ、出湯fi1度低
下防止の制(llI忙第7図のフローチャート図に基き
睨明すると、先ず出湯御要の制御については。Next, we will look at the control of the hot water temperature in Figure 7, and the control to prevent the hot water temperature from dropping by 1 degree.
全体制御回路16の信号によりガス用ilt磁チF4゜
5葡開口させるとと%、に水量センサー17の1ど号に
出建方度制御器16に入力しその信号によりガス比例制
御弁12に開口させ燃焼させる。When the gas ilt magnet F4゜5 is opened by the signal from the overall control circuit 16, the water flow sensor 17 is input to the direction controller 16, and the signal is input to the gas proportional control valve 12. Open and burn.
そして渦屁センサ18の入水渦度恢出匍号と水禽センサ
17の入水態検出1g号と忙出湯瀞度制側1回路15で
入水熱鎗討典に行なわせるととtK水制御回路15にお
いて収足幌鵬と入水類とによt)瞑短熱誼に計算せしめ
、股ボ熱須と入水熱量と葡出湯瀞腿制岬回路15で比軟
しガス比例制御弁12の開展に収ださせ、そして副度セ
ンサ11で山陽温度π測足しガス比例制御弁12の開度
微調Jl x h iわ丁ものである。Then, the incoming water vorticity detection number 1g of the vortex fart sensor 18, the water incoming state detection 1g number of the water fowl sensor 17, and the hot water control circuit 15 are used to determine the temperature of the incoming water, and in the tK water control circuit 15. Calculate the amount of heat in the water and the amount of heat in the water, soften the ratio in the foot control circuit 15 and the opening of the gas proportional control valve 12. Then, the secondary temperature sensor 11 measures the Sanyo temperature π and finely adjusts the opening degree of the gas proportional control valve 12.
出湯温度低下防止制御については、娼吸センサ18の入
水崗[to測定伯号と水氷センサ17の入水tw検出信
号とに出湯崗度tilj呻回路16で入水熱量に耐jl
!イせるとともに水制御回路15において水型センサ1
7の人水菫W検出悟号と出湯渦紋toVcLり奴足熱量
の剖算葡イテなわせしめ、銭だ熱量と入水熱血との比較
値と給湯イ表の最大能力BmaX とに出湯湯度制御回
w615で比較し、そして給湯機の最大能力の方が小の
楊8Vcは水制御回路15により水制御弁14に「閉」
方向へ制御し、また給湯機の最大能力の方が大の場合i
zコは水制御弁14τ「開」の方向へ制ψ11さぜるt
のである。Regarding the control to prevent the temperature of the hot water from decreasing, the temperature of the hot water is determined based on the incoming water temperature of the water intake sensor 18 and the water incoming water detection signal of the water ice sensor 17.
! At the same time, the water type sensor 1 is installed in the water control circuit 15.
7 Human water violet W detection Satoru and the calculation of the hot water vortex pattern to VcL and the foot heat value, the comparison value of the hot water heat value and the hot water input, the maximum capacity BmaX of the hot water supply table, and the hot water temperature control cycle. Comparing with W615, and Yang 8Vc, which has a smaller maximum water heater capacity, the water control circuit 15 closes the water control valve 14.
If the maximum capacity of the water heater is higher than i
z is the water control valve 14τ, which is controlled by ψ11 in the direction of “open”.
It is.
第9図は給湯機に風呂釜の機能を追加した他の実施世」
でめり、水量センサ17?浴槽水張りのボ童g1側用と
して兼用したものである。Figure 9 shows another example of a water heater with the function of a bath pot added.
Demeri, water level sensor 17? It is also used for the Bodo g1 side of the bathtub filled with water.
風呂釜関係の王な栖tJ!1.は、水加り怜湯首27、
* bjセンサ17.水閉止弁28.逆止弁29、分離
器60、水張り制御回路62等からなる目動水張り制御
部分と、ボンダ56、湯度センサ54、水流センサ65
、浴僧水備環バイグ56゜JK呂出用ガス電磁弁68風
呂用バーナ69、ノ虱呂用黙契換器40.蛇管41、沸
さ上は側斜回路42寺からなる目勤那き上は制御部分η
・ら猶成さnている。The king of bath kettles, Su tJ! 1. , Mizukari Rei Yukubi 27,
* bj sensor 17. Water shutoff valve 28. A variable water filling control section consisting of a check valve 29, a separator 60, a water filling control circuit 62, etc., a bonder 56, a hot water temperature sensor 54, a water flow sensor 65
, bathing monk water pipe ring 56° JK bath gas solenoid valve 68 bath burner 69, noba bath silence exchanger 40. The control part η consists of a serpentine pipe 41 and a side oblique circuit 42.
・There is a delay.
即ち、水張り・Sき上けは、水張り開始→水量センサ1
7で針側→眩足水量で弁28に閉止→閉止信号により伽
環ポンプ駆動→水流センザ65で流t′L検出→風呂用
カス′也磁弁「開」(燃焼)→温度センサ64で備城水
の娼匿検出→叔定錦度でガス電磁弁58とホンプロ61
苧止の順に自動的V(行なうこと力ST:@る○
尚、台所・洗面所等で出湯した場合にeユ、水測センサ
61で水流に検知して水閉止弁28覧一時閉じ、出湯牙
甲止しjlli:扛か止ったら丹ひ水閉止弁28オ囲け
るような匍」仰π竹って水加ジ水足の誤差になく丁よう
な構成としているO促って1本発明は給湯機の能力を越
えるような蛇口の開度となった楊台第12図にボテごと
く給湯機のhヒカ限界−に沿ってそくさに敗足畠#ts
Vc相幽する水型まで絞ることis′T″さ危険な出湯
搗匿の変動は生じないOlた水量センサ忙出湯娼度制御
(フィードフォワード制卸〕用として米用で@、出#h
温展の震動ン防止することができる。さらに自動和水・
那き上は戦龍忙もった給湯機付風呂釜に通用した場合、
水量センサに水張りの水蓋計側用として兼用でき安価に
製VFで@得る幼釆忙奏する0In other words, water filling/S lifting starts from water filling → water level sensor 1.
At 7, the needle side → the valve 28 closes when the amount of water is dizzy → the ring pump is driven by the closing signal → the water flow sensor 65 detects the flow t'L → the bath scum valve is ``open'' (combustion) → the temperature sensor 64 Detection of prostitution in Beijo water → Gas solenoid valve 58 and Honpro 61 in Shuding Jindu
Automatically V in the order of the stopper (force to do ST: @RU○) Furthermore, when hot water is dispensed in the kitchen or washroom, etc., the water flow is detected by the water meter sensor 61, the water stop valve 28 is temporarily closed, and the hot water is dispensed. Fang armor stop Jlli: When the water stops, the water shutoff valve can be closed by 28 feet.The bamboo has a structure similar to that of a dragon without any error in adding water.This invention was inspired by this invention. The opening of the faucet exceeded the capacity of the water heater, as shown in Figure 12.
It is 'T'' that the water type is narrowed down to a level that is compatible with Vc. Dangerous fluctuations in hot water supply do not occur.
It can prevent shaking during heating. In addition, automatic hydration
If you pass the bath kettle with hot water heater,
It can be used both as a water volume sensor and a water cap meter side, making it easy to use with a low cost VF.
第1図は従来の実施例〒7Jり丁檜成図、第2図は第1
図の出湯渦度特性図、第6図は第2図のA都仏太図、第
41J及び第5図は従来実施例の作用にボ丁フローチャ
ート図、第6図は本発明の実〃1!1例忙示す4J<地
図、第7図及び第8図は本発明の作用オが丁フローナヤ
ート図1絹9図は本発明の1mの実Mlj例に4く丁楢
成図、第10図は出砺搗度低ト防止の有性図である○
符号の説明
1 カスノ・−す 2 熱量4央器
5 蛇目′ 4 カス用′「4L(ホ)弁5 カス用屯
輯升 6 ノくイロットノ・−す7 祁水°「す 8
出湯管
9 フィルタ 10 水流センサ
11温世センサ 12 ガス比・レリ制御弁16 出湯
部1及朋廁V回路 14 本市り仰弁15 木節」婢回
路 16 給湯機全体−jj卸回昂17 水舅七ンサ
1B 湯度センサ
27 水張り給湯肯 28 水閉止弁
29 逆止弁 60 分1llit器
61 水流センサ 62 水加り匍J側1回路66 ホ
ン1 64 貌厩センサ
65 水流センサ 66陪憎水備討ノ(イブ67 フィ
ルタ 68)虱呂用ガス電や!+弁59ノ紙呂用バーナ
40ノ虱呂用熱父候器41 蛇管 42 沸さ上()
制飾回節45 依器本俸 44 浴槽
第3図
第4図
第7図Figure 1 shows the conventional embodiment.
Figure 6 is a diagram of the vorticity characteristic of the outlet water, Figure 6 is the A-to-butsu diagram of Figure 2, Figures 41J and 5 are flowcharts showing the operation of the conventional embodiment, and Figure 6 is the actual flowchart of the present invention. Figures 7 and 8 show the effect of the present invention on a 4J< map, Figure 1 shows the effect of the present invention, and Figure 9 shows how the present invention works. This is a diagram of the ability to prevent low abrasion. ○ Explanation of symbols 1 Kasno-su 2 Calorific value 4 Central unit 5 Snake' 4 For refuse' 4L (E) valve 5 For refuse 6 Nokuirotno-su −su 7 Keisui ° “su 8
Outlet pipe 9 Filter 10 Water flow sensor 11 Temperature sensor 12 Gas ratio/reli control valve 16 Outlet section 1 and V circuit 14 Honichi rise valve 15 Kibushi's circuit 16 Entire water heater - jj wholesale circulation 17 Water holder Nansa
1B Hot water temperature sensor 27 Water filling hot water supply check valve 28 Water stop valve 29 Check valve 60 minute 1llit device 61 Water flow sensor 62 Water filling J side 1 circuit 66 Phone 1 64 Water filling sensor 65 Water flow sensor 66 Eve 67 Filter 68) Gas electric for Aro! + Valve 59 burner for paper bath 40 pot heating oven 41 Serpentine pipe 42 Boiling top ()
Decoration round 45 Ikimoto 44 Bathtub Figure 3 Figure 4 Figure 7
Claims (1)
水−セ/す・水制御弁・偏度センサ等2Mする給水型及
び湯度センV等に山する出湯眉忙収けた熱父換器と、出
湯11i1渦度センサとガス比例+11J岬升・鮒ボ側
硯吸センサ及び水産センキ同に出?#龜肢制御回路に暇
りて谷々回路忙形戚をぜた出湯協度制側1部分と、給湯
側幅凝センサと給水911I搗度センサ・水制御III
I弁及び水)tIセセン間に水ft1ll mu回路π
収けて64回路を形成させた水制御回路部分と、胎湯惚
全体制#回路等によって形成させた給湯機全体回路部分
と忙設けてなることtt給徴とするカス給湯機。1. A gas burner housed in a gas proportional flJ control valve, etc.
2M water supply type, water control valve, eccentricity sensor, etc., hot water temperature sensor V, etc., a hot water exchanger, a hot water outlet 11i1 vorticity sensor, gas proportionality + 11J misakimasu, etc. Is the crucian carp side inkstone suction sensor and fisheries suction sensor the same? # The hot water supply cooperative system side 1 part, the hot water supply side width concentration sensor, water supply 911I temperature sensor, water control III
I valve and water) tI water between ft1ll mu circuit π
This is a waste water heater that is equipped with a water control circuit part that has a total of 64 circuits and a whole water heater circuit part that is formed by a total system # circuit and the like.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP58113414A JPS604748A (en) | 1983-06-23 | 1983-06-23 | Gas fired hot water supplier |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP58113414A JPS604748A (en) | 1983-06-23 | 1983-06-23 | Gas fired hot water supplier |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS604748A true JPS604748A (en) | 1985-01-11 |
Family
ID=14611652
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP58113414A Pending JPS604748A (en) | 1983-06-23 | 1983-06-23 | Gas fired hot water supplier |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS604748A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS62242761A (en) * | 1986-04-11 | 1987-10-23 | Matsushita Electric Ind Co Ltd | Hot water supplier |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS57134650A (en) * | 1981-02-14 | 1982-08-19 | Yamatake Honeywell Co Ltd | Hot water supply device |
JPS57187553A (en) * | 1981-05-14 | 1982-11-18 | Matsushita Electric Ind Co Ltd | Controller for water heater |
JPS591950A (en) * | 1982-06-28 | 1984-01-07 | Toto Ltd | Tap-controlled gas burning type hot-water supplier |
JPS59137746A (en) * | 1983-01-26 | 1984-08-07 | Paloma Ind Ltd | Electric controller for instantaneous gas water heater |
JPS59174562A (en) * | 1983-03-22 | 1984-10-03 | 東邦化学工業株式会社 | Porous ceramic body and manufacture |
-
1983
- 1983-06-23 JP JP58113414A patent/JPS604748A/en active Pending
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS57134650A (en) * | 1981-02-14 | 1982-08-19 | Yamatake Honeywell Co Ltd | Hot water supply device |
JPS57187553A (en) * | 1981-05-14 | 1982-11-18 | Matsushita Electric Ind Co Ltd | Controller for water heater |
JPS591950A (en) * | 1982-06-28 | 1984-01-07 | Toto Ltd | Tap-controlled gas burning type hot-water supplier |
JPS59137746A (en) * | 1983-01-26 | 1984-08-07 | Paloma Ind Ltd | Electric controller for instantaneous gas water heater |
JPS59174562A (en) * | 1983-03-22 | 1984-10-03 | 東邦化学工業株式会社 | Porous ceramic body and manufacture |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS62242761A (en) * | 1986-04-11 | 1987-10-23 | Matsushita Electric Ind Co Ltd | Hot water supplier |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN201481092U (en) | Quick electric-heating drinking water machine | |
CN107811505A (en) | A kind of intelligent electric kettle and its control method | |
CN106473604A (en) | Drinking water supply device and water dispenser | |
TWI526658B (en) | Storage water heater with instant hot water supply and control method thereof | |
JPS604748A (en) | Gas fired hot water supplier | |
CN207515220U (en) | Water loop module and the hot-water heating system for including the water loop module | |
CN104879910A (en) | Water heating device with automatic water adding function | |
CN207570124U (en) | A kind of double tanks for water storage formula speed heat electric heater | |
CN203148005U (en) | High-efficiency, energy-saving and healthy water-heating apparatus | |
CN110403471A (en) | A kind of instant heating type direct drinking device for fetching water and its control system device | |
CN207778783U (en) | A kind of environmental protection and energy saving electric water boiler | |
CN209279382U (en) | Reflow type gas heater | |
CN210951908U (en) | Prevent hanging stove of dry combustion method | |
CN209346687U (en) | The instant heating type bucket drinking water fountain of cistern free | |
JP2011153802A (en) | Bath device | |
JP4350292B2 (en) | Electric water heater | |
JPS59173650A (en) | Hot water boiler | |
CN2239598Y (en) | Multifunctional electrothermal steam water heater | |
CN215983273U (en) | Water temperature control device of gas water heater | |
CN205579958U (en) | Multiple endless form's hot water heating system | |
CN212253127U (en) | Water heater with hot spring bath function | |
CN212755286U (en) | Pipeline machine with drip proof device | |
CN220887082U (en) | Waterway system for water purifying and drinking equipment and water purifying and drinking equipment | |
JP2013210115A (en) | Water heater | |
CN217907344U (en) | Step-by-step heating drinking water equipment |