JPS59100310A - Temperature control device of gas appliance - Google Patents

Temperature control device of gas appliance

Info

Publication number
JPS59100310A
JPS59100310A JP57210393A JP21039382A JPS59100310A JP S59100310 A JPS59100310 A JP S59100310A JP 57210393 A JP57210393 A JP 57210393A JP 21039382 A JP21039382 A JP 21039382A JP S59100310 A JPS59100310 A JP S59100310A
Authority
JP
Japan
Prior art keywords
output
circuit
flame
state
detection device
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
JP57210393A
Other languages
Japanese (ja)
Other versions
JPS6331693B2 (en
Inventor
Takashi Oya
大宅 崇史
Shuji Iwasaki
修二 岩崎
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.)
NANAO KK
YANAGISAWA SEISAKUSHO KK
Original Assignee
NANAO KK
YANAGISAWA SEISAKUSHO KK
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 NANAO KK, YANAGISAWA SEISAKUSHO KK filed Critical NANAO KK
Priority to JP57210393A priority Critical patent/JPS59100310A/en
Publication of JPS59100310A publication Critical patent/JPS59100310A/en
Publication of JPS6331693B2 publication Critical patent/JPS6331693B2/ja
Granted legal-status Critical Current

Links

Classifications

    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23N—REGULATING OR CONTROLLING COMBUSTION
    • F23N5/00—Systems for controlling combustion
    • F23N5/02—Systems for controlling combustion using devices responsive to thermal changes or to thermal expansion of a medium
    • F23N5/022—Systems for controlling combustion using devices responsive to thermal changes or to thermal expansion of a medium using electronic 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
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23N—REGULATING OR CONTROLLING COMBUSTION
    • F23N2227/00—Ignition or checking
    • F23N2227/28—Ignition circuits
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23N—REGULATING OR CONTROLLING COMBUSTION
    • F23N2229/00—Flame sensors
    • 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

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Control Of Combustion (AREA)

Abstract

PURPOSE:To avoid occurring the perfectly stopped condition of an appliance when a main burner is extinguished during temperature controlling action by a method wherein the circuit breaking output of a stop motion is produced only by the change of output, which develops when a temperature detection device changes its state to a set temperature detected state or when a flame detection device changes its state from a flame detection state to a flame extinguished state under the conditions excluding the above-mentioned state of the temperature detection device. CONSTITUTION:A flame detection device 3 issues a ''1'' output when flame is formed at a main burner while produces a ''0'' state under the conditions except the above-mentioned condition. On the other hand, a temperature detection device 4 outputs a ''1'' when a part to be heated reaches a set temperature, while is set to a ''0'' when the temperature of said part is below the set temperature. The outputs from said two devices 3 and 4 are inputted to a first NAND circuit 5 and at the same time NOT outputs from said two devices 3 and 4 are inputted to a second NAND circuit 6. The outputs from the first and second NAND circuits 5 and 6 are inputted to a third NAND circuit 7. The output X of said third NAND circuit is inputted as an actuating signal to an ignition device 2 and simultaneously inputted to a T flip-flop circuit 9, which controls a main valve 1 and at the same time obtains a signal output to control a relay R2 inserted in the signal circuit 8 of said output X. The circuit of the relay R2 corresponds to a starting circuit of the unit.

Description

【発明の詳細な説明】 不発[!IIζJ、主バーナに点火しf’tl大バーナ
を・用いない形式の湿度調節装置1・・である。
[Detailed description of the invention] Misfire [! IIζJ is a humidity control device 1 that ignites the main burner and does not use the f'tl large burner.

従来のカス2:1具トケ種火バーナを・用いる形式のも
のか多く、この種火/く−ナは常時点火状C8K iハ
かれ、瀞)9険知装名からの出力に応して主バーナへの
ガス回路を、 jJi、閉じて被加熱部の温度調節を図
っていン気。こ、?)場合、種火バーナと伸仇す、B4
j火安全装置ff+か糾み込ま?Cでおり、可1火か−
すの吹き消えにより、器具へのガス供給か断たIごて3
4器具の安全性か保たれる。
Most of the models use a conventional 2:1 type pilot burner, and this pilot/burner is always ignited in response to the output from the C8K i-type. Close the gas circuit to the main burner to adjust the temperature of the heated area. child,? ), the pilot burner and the extension, B4
J Fire safety device FF+ or embedding? It's C, and it's okay 1 fire.
Gas supply to the appliance was cut off due to the blowout of the iron 3
4 The safety of the equipment is maintained.

とCろ力・、種火バーナを用いない)ヒ式のガス器具の
場合て、主バーナに直接点火し、これの点火・消火によ
!7温鳩調節する場合、従来の安全誤1t(をその1捷
採用することかでき77い。
In the case of H-type gas appliances (which do not use a pilot burner), ignite the main burner directly to ignite and extinguish it! 7. When adjusting the temperature of pigeons, it is possible to adopt one of the conventional safety errors.

なぜなら、この場合には、A仝装置J+ (rで合まれ
る炎検知装置か直接主バーナに対応することとなり、温
度調節動作過程に生じる主バーナの消火によっても前記
炎検知装置がこれを検知し安全装置を動作させて器具が
停止状態となり、以後の温度調節−1作が行なわれない
からである。
This is because in this case, the flame detection device connected to device A (J+ (r) directly corresponds to the main burner, and the flame detection device detects even when the main burner is extinguished during the temperature adjustment process. This is because the safety device is activated and the appliance is in a stopped state, and subsequent temperature adjustment-1 operation is not performed.

木発明け、i部品;動作に於ける主バーナの消火時には
炎検知装置からの出力によっては器具停止状態とならな
いようにすることをその課題とする。
The object of this invention is to prevent the appliance from stopping due to the output from the flame detection device when the main burner is extinguished during operation.

上記課題を解決するための本発明の技術的手段は、被加
熱部の温度を検知する温度検知装置と、主バーナの炎を
検知する炎検知装置と、前記温度検知装置の出力を「a
」、炎検知装置の出力を「b」としたとき出力(X)=
a市+a−bを得・る演算装置と、前記出力(X)によ
り点火装置を始動させ同時に主弁全開介させる点火装置
始動用回路と、該主弁を開弁状態に自己保持させる自己
保持回路と、該自己保持回路及び011記点火装置始動
用回路を開成するための停止装置と、湿度検知装跋か設
定温度検知状組に変化した時又はこれ以外の状態で炎検
知装置が炎検知状態から炎消失状態に変化したときの出
力変化によってのみ、nlI記停車停止装置1−記回路
開放出力が生じるように出力変換回路とを具備させたこ
とである。
The technical means of the present invention for solving the above problems includes a temperature detection device that detects the temperature of the heated part, a flame detection device that detects the flame of the main burner, and an output of the temperature detection device that detects the temperature of the heated part.
”, when the output of the flame detection device is “b”, the output (X) =
an ignition device starting circuit that starts the ignition device using the output (X) and at the same time causes the main valve to fully open; and a self-holding device that self-maintains the main valve in an open state. circuit, a stop device for opening the self-holding circuit and the 011 ignition device starting circuit, and a flame detection device that detects a flame when the humidity detection device is inactive or the set temperature detection state is changed, or in any other state. The present invention is provided with an output conversion circuit so that the circuit open output as described in 1-1 of the vehicle stop and stop device is generated only by the output change when the state changes from the state to the flame-extinguished state.

上記した干、1・術手段によれば、温度調節動作では演
算装置の出力及び停止装置の出力の協Wノにより被加熱
部か設定温度になると主弁が閉弁して主バーナが消火す
る。
According to the above-mentioned method, the main valve closes and the main burner extinguishes when the heated part reaches the set temperature due to the cooperation of the output of the calculation device and the output of the stop device. .

次いで、被加熱部か設定温度以下になると温度検知装置
からの出力が変化し、このときの出力(X)の変化に応
じて出力変換回路の出力が初期状態に復元I〜、停止装
置は出力消失状態となって、点火始動用回路及び主弁の
自己保持回路はON状態となり、再度点火11作が進行
し、点火後は上記温度調節動作をくり返えす。
Next, when the temperature of the heated part falls below the set temperature, the output from the temperature detection device changes, and the output of the output conversion circuit is restored to the initial state according to the change in output (X) at this time. In the state of extinction, the ignition starting circuit and the self-holding circuit of the main valve are turned on, and the 11 ignition operations proceed again, and after ignition, the above-mentioned temperature adjustment operation is repeated.

炎がいったん形成され、温度調節動作以外の要因で炎が
消失した場合には、出力変換回路の出力により停止装置
がONN状上なり、点火装置始動回路及び主弁の自己保
持回路か開放されて器具は停止状態となる。
Once a flame is formed, if the flame is extinguished due to a factor other than the temperature control operation, the output of the output conversion circuit turns the stop device into the ON state, and the ignition device start circuit and the main valve self-holding circuit are opened. The instrument is in a stopped state.

他方、主バーナに炎か形成されない場合には、点火装置
に内蔵されるタイマーの出力により点火装置及び主弁へ
の回路か開放(OFF)されて同様に停止する。
On the other hand, if no flame is formed in the main burner, the circuit to the ignition device and the main valve is opened (OFF) by the output of a timer built in the ignition device, and the burner is also stopped.

以−1−のように、上記技術手段によれは温度調節動作
に伴う主バーナの消火によっては器具が完全停止状態に
ならず、以後の温度高j節か円滑に行えることとなる。
As described in -1- above, by using the above technical means, the appliance does not come to a complete stop state due to extinguishing of the main burner accompanying the temperature adjustment operation, and subsequent high-temperature conditions can be smoothly carried out.

以下、本発明の実施例のat−細を図面に基ついてさら
に詳述する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, details of embodiments of the present invention will be described in further detail with reference to the drawings.

寸す、主バーナへのガス回路に挿入される主弁(1)目
、点火装置(ン1と並列に接続され、該点火装置の動作
状態で(d主弁(1)が開弁状給となる。
The main valve (1) inserted into the gas circuit to the main burner is connected in parallel with the ignition device (1), and when the ignition device is in operation (d) the main valve (1) is in an open state. becomes.

前記点火装置に、主バーナの近鈎に設けたプラグさ、該
プラグからその対極たる主バーナ間にスパークを発生さ
せるだめのイグナイター011と、さらには、このスパ
ーク発生局向を一定時同に最優先で規制するためのタイ
マー鋭)吉がら成り、該点火装置への始動信号入力によ
り一定時間プラグから対極にスパークを発生させるもの
である。
The ignition device includes a plug provided near the hook of the main burner, an igniter 011 for generating spark between the plug and the opposite pole of the main burner, and an igniter 011 that simultaneously controls the spark generation direction to the maximum. It consists of a timer for priority regulation, and a spark is generated from the plug to the opposite pole for a certain period of time by inputting a starting signal to the ignition device.

次に、上記点火装置(2)及び主弁(11K &i、炎
検知装置(3)からの出力及び温度高1節装置の温度検
知装置(4)からの出力が後述の制御回it介して入力
されるものであり、この点についてさらに訂述するこの
実施例て用いる炎検知装置゛(3)は主バーナに炎か形
成された時その出力が「1」吉なり他は「0」の状態と
なるものであり、他方、温度検知装置西(4)は、被加
熱部か設定温度になると出力か1−1」となりそれ以下
では「0」となる形式のものである。
Next, the output from the ignition device (2), the main valve (11K&i), the flame detection device (3), and the output from the temperature detection device (4) of the temperature high node device are inputted via the control circuit IT, which will be described later. The flame detection device (3) used in this embodiment, which will be further elaborated on this point, has an output of ``1'' when a flame is formed in the main burner, and ``0'' otherwise. On the other hand, the temperature detection device west (4) is of a type in which the output becomes "1-1" when the heated part reaches the set temperature, and becomes "0" below that temperature.

この二つの装置からの出力が第1NANI)回路(5)
に入力されると共にこれらの二つの装置からの否定出力
か第2NANI)回路(6)に入力され、これら第1、
第2 NAND回路t5) 、 f6)の出力か第3N
ANI)回路(7)に入力され、該第3NAND回路の
出力が(X)か点火装置(2)の動作信号と1〜で入力
され、Ii”i1時K、主弁(1)を制御し且前記出力
(X+の信号回路(8)に挿入したリレー(R2)を制
御すべき信シー出力を得るT−1”F回路L9+ Ct
ε(、述の出力変換回路に対応する)に入力されている
。このリレー(R2)の回路は既述の技術手段に於ける
点火装置始動用回路に対応する。
The output from these two devices is the first NANI) circuit (5)
The negative outputs from these two devices are also input to the second NANI) circuit (6), and the first,
The output of the second NAND circuit t5), f6) or the third NAND circuit
ANI) is input to the circuit (7), and the output of the third NAND circuit is input to (X) or the operation signal of the ignition device (2) from 1 to 1 to control the main valve (1). and T-1"F circuit L9+ Ct which obtains the signal output to control the relay (R2) inserted in the signal circuit (8) of the output (X+)
ε (corresponding to the output conversion circuit described above). The circuit of this relay (R2) corresponds to the circuit for starting the ignition device in the previously described technical means.

T−FF回路(9)の−力の出力ゆ)側の回路には、既
述の停止装置としてのリレー(Rθが挿入されており、
これの常閉出力接点の一方00)かリレー(R2) n
1llの回路に、他方の常閉出力接点(]J)か、主弁
(1)と直列に接続され、さらに、該主弁上並列接続し
たリレー(R3)の常閉出力接点u21か1tii記常
閉出力接点(11)と直列(で接続されている。
The relay (Rθ) as the above-mentioned stopping device is inserted in the -force output side circuit of the T-FF circuit (9).
One of the normally closed output contacts of this (00) or relay (R2) n
1ll circuit, the other normally closed output contact (]J) is connected in series with the main valve (1), and the normally closed output contact U21 or 1tii of the relay (R3) connected in parallel on the main valve. It is connected in series with the normally closed output contact (11).

この場合、炎検知装置(3)からの出力を「a」、温度
検知装置n t41からの出力krbjとすれば、出力
[X−1は次式で与えられる。
In this case, if the output from the flame detection device (3) is "a" and the output from the temperature detection device nt41 is krbj, the output [X-1 is given by the following equation.

X = aXb+aX石 これから、raj 、 1−b−1、rxJ 、 rQ
Jの出力の真理伯表を作成すると次の通りとなる。
X = aXb + aX stone From this, raj, 1-b-1, rxJ, rQ
The truth table of the output of J is created as follows.

ここで、T−FFf9)の入力と出力は初期状叱(器具
始動時)に於いてrlJ 、 rojの関係となるよう
に設定されている。
Here, the input and output of T-FFf9) are set to have a relationship of rlJ and roj in the initial state (when starting the appliance).

上記した実施例の13作についてさらに詳述すると、器
具始ur時には、出力(X)4プ、上表から明らかなよ
うに「1」となり、]−FFIL!l路(9)の出力(
Q)は1−0」の状態の1まで、リレー(R2)の出力
接点(13)の開成により点火装置(2)が始動するさ
共に七介(月が開弁状態となる。
To explain in more detail the 13 works of the above-mentioned embodiments, when the device starts ur, the output (X) is 4, which is "1" as is clear from the above table, and ]-FFIL! The output of l path (9) (
When Q) reaches 1 (1-0), the ignition device (2) is started by opening the output contact (13) of the relay (R2), and at the same time, the valve becomes open.

点火装置(2)内のタイマー122)の設定時間内に主
バーナ(で点火すると該タイマーの出力接点は初期状態
(ON)K保たれた1丑となるか、この時、炎検知装置
(3)が炎検知してその出力が[Oj −rlJ K変
化して出力(X)かrlj−rOJK変化し、リレー(
R,)かOFFとなり出力接点03)が開成してイグナ
イター011は停止する。他方、011記出力変化によ
って一′l゛−FF回WJ+91の出力(Q)は変化せ
ず、[−〇」の1捷で、主弁(1)は開ブp状1本に維
持される。
If the main burner is ignited within the set time of the timer 122 in the ignition device (2), the output contact of the timer will remain in the initial state (ON) K, or at this time, the flame detection device (3) ) detects a flame, its output changes by [Oj - rlJ K, and the output (X) or rlj - rOJK changes, and the relay (
R,) turns OFF, the output contact 03) opens, and the igniter 011 stops. On the other hand, the output (Q) of 1'l゛-FF times WJ+91 does not change due to the output change in 011, and the main valve (1) is maintained as one open valve p-shaped with one stroke of [-〇''. .

次いで、被加熱部が設定温度になって温度検知装置(4
)の出力か「1」になると、出力(X)、すなわち、T
−FF回路(9)への入力がI−0,,1−1−1jに
変化し、出力(Q)が「】」となり、リレー(R1)が
ON状態となって、主弁(1)及Oリレー(R3)もO
F F 、!:なる。すなわち主バーナが消火する。
Next, when the heated part reaches the set temperature, the temperature detection device (4
) becomes “1”, the output (X), that is, T
-The input to the FF circuit (9) changes to I-0,,1-1-1j, the output (Q) becomes "]", the relay (R1) becomes ON, and the main valve (1) and O relay (R3) is also O
FF,! :Become. In other words, the main burner is extinguished.

この状態から、被加熱部の温度か降下1〜で、温度検知
装置it t41の出力がrOJ Kなると、出力(X
)が再び「−1」となり、リレー(R2)がON状態と
なり上記一連の動作をくり返えす。
From this state, when the temperature of the heated part decreases by 1 or more and the output of the temperature detection device it t41 becomes rOJ K, the output (X
) becomes "-1" again, the relay (R2) is turned on, and the above series of operations is repeated.

ここで、始OJ時(て主バーナに点火しない場合には、
炎検知装置(3)からの出力が変化せず(発生せず)、
点火装置(2] K組み込まれたタイマー囚)の出力に
より、イグナイター(2+1及び主弁(」)及びリレー
(R3)への回路かOF F状態となる。
At the beginning of OJ (if the main burner is not ignited),
The output from the flame detection device (3) does not change (no generation occurs),
The output of the igniter (2) (built-in timer) turns the circuits to the igniter (2+1 and main valve ('') and relay (R3) OFF).

さらに、主バーナに点火したあと、この炎が吹き消え等
により異常消失した場合には、炎検知装置(3)からの
出力はrLJ −rOJに変化し、第3NAND回路(
7)の出力(X)は1−1) l−Illに変化する。
Furthermore, if the flame abnormally disappears due to blowing out after igniting the main burner, the output from the flame detection device (3) changes to rLJ - rOJ, and the third NAND circuit (
The output (X) of 7) changes to 1-1) l-Ill.

これによりT−FF回路(9)の出力(Q)はrOJ−
rlJに変化し、点火装置(2)及び主弁(1)さらに
はリレー(R3)が停止する。
As a result, the output (Q) of the T-FF circuit (9) becomes rOJ-
rlJ, and the ignition device (2), main valve (1), and relay (R3) stop.

この時、湯度検知装置(4)の出力は「0−」の状態の
ま捷であるから、出力(X)の変化すなわちT−FF回
路(9)への入力変化は生ずることがなく、器具が停車
状態に置かれる。
At this time, the output of the hot water temperature detection device (4) remains in the "0-" state, so there is no change in the output (X), that is, no change in the input to the T-FF circuit (9). The equipment is placed at rest.

尚、上記に於いて、タイマー(221+d出力接点i2
3+が設定時間経過時に常閉出力接点から常開接点側に
切替るものであり、タイマー(22)への回路かOFF
に々る初期状1ルにリセットされるものである。
In addition, in the above, the timer (221+d output contact i2
3+ is the one that switches from the normally closed output contact to the normally open contact side when the set time elapses, and the circuit to the timer (22) is turned OFF.
It is reset to the initial state of 1.

また、上記実施例のものでは、3つのNAND回路と二
つのNOT回路の組み合せを用い7辷が、こノ1吉等価
な他の回路を採用し得るこ吉は言うまてもなく、N A
 N I)回路、AND回路及びop回路の組み合せに
よって上記と同様の出力(X) k得ることができる。
In addition, in the above embodiment, a combination of three NAND circuits and two NOT circuits is used, but it goes without saying that other circuits equivalent to this one can be adopted, and N A
The same output (X) k as above can be obtained by combining the N I) circuit, the AND circuit, and the OP circuit.

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

第1図は本発明の詳細な説明図であり、図中(1)・・
・・・・主弁    (2)・・・・・・点火装置(3
)・・・・・・炎検知装置 (4)・・・・・・節度検
知装置(9)・・・・・・T−FF回路因)・・・・・
・イグナイター(22)・・・・・・タイマー  (R
l)・・・・リレー(R2)・・・・IJL/−(R3
)・・・・リレー代理人 弁理士  坂 上 好 博
FIG. 1 is a detailed explanatory diagram of the present invention, and in the figure (1)...
...Main valve (2) ...Ignition device (3
)...Flame detection device (4)...Moderation detection device (9)...T-FF circuit factor)...
・Igniter (22)... Timer (R
l)...Relay (R2)...IJL/-(R3
)...Relay agent Patent attorney Yoshihiro Sakaue

Claims (1)

【特許請求の範囲】[Claims] 始IILIl信り入力により一定時聞動4′r L、そ
の後Iri停止l−状(占となる点火装W1の点火L1
」プラグkf上バーナ(で対向させ、主バーナの炎の有
無を検知する炎検知装置を有するガフ器具に於いて、被
加熱部の沼、1度を検知する温度検知装置と、主バーナ
の炎を検知する炎検知装置と、tiIj記l都度検知装
j1イの出力を1−aJ、炎検知装置14の出力を[b
Jキしたとき出力(X)=1・1十a−bを青る演算装
詩と、11」記出力(X)により点火装!i′4′合始
動させ同時KEE六〜を[!目Zf−させる点火多置始
中11用回路と、訃主弁S:IJ)1升状態に自己保持
させ乙自己(気ト持回W、と、該自a保持回路及び11
」記点火装置始動用回路を開成するだめの停止装置ハ′
と、湿度調節装置か設定温度検知状1ル、(C変化した
時又−これ以外の状態で炎検知装置が炎検知状態から炎
消失状り粁・に変化[7たときの出力変化によってのみ
、fiii記停止装髄の上記回路開放141カが生じる
rうCてし/こ出力変換回路とを具備させたガス器具の
温度調節装置。
Due to the initial input, the ignition of the ignition device W1 becomes 4'r L for a certain period of time, and then the ignition stops.
In gaff equipment, which has a flame detection device that detects the presence or absence of the flame of the main burner, the plug kf upper burner (opposed to the The output of the flame detector 14 is 1-aJ, and the output of the flame detector 14 is [b
When J is pressed, the output (X) = 1.10 a-b is blue, and the output (X) of 11'' is the ignition device! Start i'4' and simultaneously KEE6~ [! A circuit for 11 during ignition multi-position starting, and a circuit for self-holding the main valve S:IJ) in a state of 1 sq.
The stop device for opening the ignition device starting circuit
When the humidity controller or set temperature detection status changes (C) or in any other state, the flame detector changes from the flame detection state to the flame extinguished state [7]. , fiii. A temperature control device for a gas appliance, which is equipped with an output conversion circuit in which the above-mentioned circuit opening 141 of the stop supply occurs.
JP57210393A 1982-11-29 1982-11-29 Temperature control device of gas appliance Granted JPS59100310A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP57210393A JPS59100310A (en) 1982-11-29 1982-11-29 Temperature control device of gas appliance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP57210393A JPS59100310A (en) 1982-11-29 1982-11-29 Temperature control device of gas appliance

Publications (2)

Publication Number Publication Date
JPS59100310A true JPS59100310A (en) 1984-06-09
JPS6331693B2 JPS6331693B2 (en) 1988-06-24

Family

ID=16588584

Family Applications (1)

Application Number Title Priority Date Filing Date
JP57210393A Granted JPS59100310A (en) 1982-11-29 1982-11-29 Temperature control device of gas appliance

Country Status (1)

Country Link
JP (1) JPS59100310A (en)

Also Published As

Publication number Publication date
JPS6331693B2 (en) 1988-06-24

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