JPS63136897A - Remote control equipment - Google Patents

Remote control equipment

Info

Publication number
JPS63136897A
JPS63136897A JP28498686A JP28498686A JPS63136897A JP S63136897 A JPS63136897 A JP S63136897A JP 28498686 A JP28498686 A JP 28498686A JP 28498686 A JP28498686 A JP 28498686A JP S63136897 A JPS63136897 A JP S63136897A
Authority
JP
Japan
Prior art keywords
data
main body
remote controller
transmission
address
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
Application number
JP28498686A
Other languages
Japanese (ja)
Inventor
Kiyoshi Hioki
日置 清
Norihiro Miyamoto
典弘 宮本
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.)
Noritz Corp
Original Assignee
Noritz Corp
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 Noritz Corp filed Critical Noritz Corp
Priority to JP28498686A priority Critical patent/JPS63136897A/en
Publication of JPS63136897A publication Critical patent/JPS63136897A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To avoid the transition to a dangerous mode of a system due to defective transmission by providing an address discrimination means, and a counter means advancing its count at non-coincidence and initializing itself at coincidence. CONSTITUTION:A transmission/reception circuit 11 at remote controller side sets an address of a reception data sent from a main body 1 to a specific address set by itself and when they are coincident, the state of the remote controller is changed into a reception data to improve the accuracy of the transmission and if both addresses are non-coincident due to invasion of noise or the like, it is displayed on a display section 12 as a defective transmission, the data of operation/stop is sent to the main body 1, the data is sent from the main body 1 to other remote controller, all the remote controllers and the main body 1 are set initially and then the polling is restarted. If the addresses are coincident during the defective transmission, only the count of a counter means is initialized and the main body 1 and the state of each remote controller are not initialized.

Description

【発明の詳細な説明】 (技術分野) 本発明は、2芯式信号多重伝送システムを用いた給湯器
等の遠隔操作装置に関する。
DETAILED DESCRIPTION OF THE INVENTION (Technical Field) The present invention relates to a remote control device for a water heater or the like using a two-core signal multiplex transmission system.

(従来技術) 従莱、例えば先に本件出願人が提案した特願昭61−1
9932号の如く2芯伝送線を使用して本体側の送受信
回路と速隔設置6シた操作装置(以下、適宜リモコンと
いう)とを接続している給湯器のMtfljk操作装置
ではリモコン側で受信データへのノイズの侵入等で受信
データのアドレスと当該リモコンに設定された固有のア
ドレスとが一致しない伝送不良時には、このリモコン内
の状態がアドレスが一致するまで変更前の状態に保持さ
れることから、例えば本体側で何らかの異常が発生して
もリモコン側ではその表示が行われない恐れが生じ、使
用上不都合なものであった。
(Prior art) Jurai, for example, the patent application No. 1983 proposed by the applicant
In the Mtfljk operating device of a water heater, which uses a two-core transmission line to connect the transmitting/receiving circuit on the main unit side and the operating device (hereinafter referred to as the remote control as appropriate) using a two-core transmission line, the remote control side receives the signal. In the event of a transmission failure where the address of the received data does not match the unique address set for the remote controller due to noise intrusion into the data, etc., the state within this remote controller will be maintained in the state before the change until the address matches. Therefore, even if some abnormality occurs on the main body side, there is a possibility that the remote control will not display the abnormality, which is inconvenient for use.

(発明の構成) 本発明は上記8填点の解決を目的とし、その為に本発明
では、操作装置に受信データのアドレスが設定された個
有のアドレスと一致するか杏かを判定するアドレス判定
手段を設け、不一致時にはi数が進められると共に一致
時には初期化されるカウンタ手段を設けて、このカウン
タ手段の所定回数計数により伝送不良を検知するように
したものである。
(Structure of the Invention) The present invention aims to solve the above-mentioned 8 points, and for this purpose, the present invention provides an address for determining whether the address of received data matches a unique address set in the operating device or not. A determination means is provided, and a counter means is provided which increments the i number when there is a mismatch and is initialized when there is a match, and a transmission failure is detected by counting a predetermined number of times by the counter means.

(実施例〕 以下本発明を風呂釜付き給湯器に適用した例に基づき説
明する。(1)は浴槽水をポンプ(2)により強制循環
しながら加熱する風呂釜(3)と、給湯温度を設定温度
に制御する比例制御式の給湯器(4)とを有する風呂釜
付き給湯器本体である。(5)は台所に設けられるメイ
ンリモコン、(6)はサブリモコン、(7)は浴室に設
けられるフロリモコンであり、これらリモコン(5)〜
(7)は本体(1)の送受信回路(8)と2芯伝送線(
9)で接続されている。(10)は送受信回路(8)か
らのデータにより風呂釜(3)と給湯器(4)の制御を
行う制御回路である。(11)は各リモコンに設けられ
る送受信回路、(12)は同じく表示部、(13)は操
作部であり、各操作部(13)には運転スイッチ(14
)、!温設定スイッチ(15)が設けられ、フロリモコ
ン(7)にのみ優先切替スイッチ(16)が設けられて
いる。
(Example) The present invention will be explained below based on an example in which the present invention is applied to a water heater with a bathtub.(1) is a bathtub (3) that heats bathtub water while being forcedly circulated by a pump (2), and This is a water heater body with a bath pot that has a proportional control type water heater (4) that controls the temperature to a set temperature. (5) is the main remote control installed in the kitchen, (6) is the sub remote control, and (7) is the one installed in the bathroom. These remote controllers (5) -
(7) is the transmitting/receiving circuit (8) of the main body (1) and the two-core transmission line (
9). (10) is a control circuit that controls the bathtub (3) and water heater (4) based on data from the transmitter/receiver circuit (8). (11) is a transmitting/receiving circuit provided in each remote control, (12) is a display section, (13) is an operation section, and each operation section (13) has an operation switch (14).
),! A temperature setting switch (15) is provided, and a priority changeover switch (16) is provided only on the flow remote control (7).

第2図は本体(1)の送受信回路(8)における信号デ
ータの処理手順を示した説明図、第3図は送受信される
要部の信号データの内容を示す説明図である。信号デー
タは2ビツトのアドレスデータと1ビツトの優先切替デ
ータと4ビツトの湯温設定データと1.ビットの運転信
号データとからなり、アドレスデータはeollをメイ
ンリモコン、+003をフロリモコン、flO)をサブ
リモコン、C11)を本体に割り当て、優先データはP
 O′をフロリモコン、′1′をメインリモコンとサブ
リモコンと設定しである。
FIG. 2 is an explanatory diagram showing the processing procedure of signal data in the transmitting/receiving circuit (8) of the main body (1), and FIG. 3 is an explanatory diagram showing the contents of the main part of the signal data to be transmitted and received. The signal data consists of 2-bit address data, 1-bit priority switching data, 4-bit hot water temperature setting data, and 1. The address data is assigned to eoll as the main remote controller, +003 as the flo remote controller, flO) as the sub remote controller, C11) as the main unit, and the priority data as P.
O' is set as the flow remote controller, and '1' is set as the main remote controller and sub remote controller.

又送受信回路(8)には第2図に示すようにフロリモコ
ン(9)により設定された湯温設定データを出力する湯
温設定データ出力部(8a)とメインリモコン(5)と
サブリモコン(6)により設定された湯温設定データを
出力する湯温設定データ出力5(sb)と優先清書デー
タ(8C)を格納するメモリーと該優先切替データ(8
C)の内容に応じて湯温設定データ出力部(8a)、(
8b)のいずれかのデータが転送される湯温設定出力バ
ッファ (8d) とが設けられている。尚(17a)
〜(17c)は夫々フロリモコン、メインリモコン、サ
ブリモコンからの3回の受信データを示し、(18s 
)〜(18c)は夫々フロリモコン、メインリモコン、
サブリモコンからの受信確定データを示す。(19)は
データ確定部であり、後述するように送信データ(20
)を出力すると共に制御回路(10)に確定データ(2
1)を出力することを示している。又リモコン側の送受
信回路(11)には受信データのアドレスと予め設定さ
れた固有のアドレスとを比較するアドレス判定手段並び
に該アドレス判定手段の判定結果により不一致時には計
数を進め、一致時には計数を初期化するカウンタ手段を
設けて、当該カウンタ手段が所定回数を計数した場合に
は伝送不良として当該リモコン成るいは全てのリモコン
の表示部(12)に伝送不良表示を行わしめ、かつ本体
(1)並びに全てのリモコンの状態を初期状態に制御さ
れるようにしである。
The transmitting/receiving circuit (8) also includes a hot water temperature setting data output section (8a) that outputs hot water temperature setting data set by the flow remote controller (9), a main remote controller (5), and a sub remote controller ( The hot water temperature setting data output 5 (sb) that outputs the hot water temperature setting data set by 6), the memory that stores the priority fair copy data (8C), and the priority switching data (8C)
Depending on the contents of C), the hot water temperature setting data output section (8a), (
A hot water temperature setting output buffer (8d) to which any of the data of 8b) is transferred is provided. Nao (17a)
~(17c) shows the data received three times from the flow remote controller, main remote controller, and sub remote controller, respectively, and (18s
) to (18c) are respectively the flow remote control, main remote control,
Indicates reception confirmed data from the sub remote controller. (19) is a data confirmation section, and as described later, the transmission data (20
) is output and the final data (2) is output to the control circuit (10).
1) is output. In addition, the transmitting/receiving circuit (11) on the remote control side includes an address determining means for comparing the address of the received data with a unique address set in advance, and counting proceeds when there is a discrepancy based on the determination result of the address determining means, and initializes the counting when there is a match. If the counter means counts a predetermined number of times, a transmission failure is displayed on the display section (12) of the remote controller or all remote controllers as a transmission failure, and the main body (1) In addition, the states of all remote controllers are controlled to the initial state.

以上の構成においてフロリモコン(7)の優先切替スイ
ッチ(16)を切換えるとフロリモコン(7)内の優先
清書データがC15にセットされた第3図に示す信号デ
ータがフロリモコン(9)の送受信回路(11)から本
体(1)の送受信回路(8)に送信され、本体(1)側
ではその受信データ(17a )の全てが一致したこと
を確認すれば受信確定データ(18a)の優先切替デー
タがe1′にセットされると共に送信データ(20)の
優先切替データもC12にセットされる。そして次にこ
の送信データ(20)がメインリモコン(5)に送信さ
れるとメインリモコン(5)の信号データの優先切替デ
ータがC15にセットされて、メインリモコン(5)の
送受信回路(11)から本体(1)に優先切替データが
C15にセットされた信号データが送信され、本体(1
)便ではその受信データ(17b)の全てが一致したこ
とを確認すれば受信確定データ(18b)の優先切替デ
ータがC1フにセットされる。
In the above configuration, when the priority changeover switch (16) of the fluoro remote controller (7) is switched, the signal data shown in FIG. The data is sent from the circuit (11) to the transmitting/receiving circuit (8) of the main unit (1), and if the main unit (1) side confirms that all of the received data (17a) match, it will prioritize the reception confirmed data (18a). The data is set to e1' and the priority switching data of the transmission data (20) is also set to C12. Then, when this transmission data (20) is transmitted to the main remote controller (5), the priority switching data of the signal data of the main remote controller (5) is set in C15, and the transmitting/receiving circuit (11) of the main remote controller (5) The signal data with the priority switching data set in C15 is transmitted to the main body (1), and the main body (1)
) flight, if it is confirmed that all of the received data (17b) match, the priority switching data of the reception confirmed data (18b) is set to C1f.

サブリモコン(6)間ともメインリモコン(5)と同様
の送受信が行われ、全ての受信確定データ(18a )
〜(18c)の優先切替データが一致すれば受信確定部
(19)では優先切替データ(8C)の内容に応じて湯
温設定データ出力部(8a)あるいは(8b)から湯温
設定データが湯潟設定出カバッファ (8d)に伝送さ
れ、当該バッファ (8d)の湯温設定データが確定デ
ータ(21)として制御回路(10)に出力され、給湯
器(4)はかかる@温設定データにより湯温制御が行わ
れるのである。
Transmission and reception is performed between the sub remote controllers (6) in the same way as with the main remote controller (5), and all reception confirmed data (18a)
If the priority switching data of ~(18c) match, the reception confirmation unit (19) outputs the hot water temperature setting data from the hot water temperature setting data output unit (8a) or (8b) according to the contents of the priority switching data (8C). The hot water temperature setting data in the buffer (8d) is output to the control circuit (10) as final data (21), and the water heater (4) turns on the hot water according to the temperature setting data. Temperature control is performed.

又リモコン側の送受信回路(11)では本体(1)側よ
り送られた受信データのアドレスが自己の設定された固
有のアドレスと比較して、両アドレスが一致すればリモ
コン側の状態を受信データに変更するようにして伝送の
精度を向上させているが、ノイズ等の侵入で両アドレス
が一致しない場合には第4図に示した如く、カウンタ手
段の計数を進め(Fl) 、このカウンタ手段の計数が
所定回数に達すれば(F2) 、伝送不良として表示部
(材)にその旨を表示して(F3)1初期設定即ち運転
停止のデータを本体(1)側へ送信せしめ(F4)ると
共に本体(1)側から他のリモコンにその初期設定され
たデ゛−夕を送信し、本体(1)並びに全てのリモコン
が初期設定されて後ポーリングが再開される(F5)の
であり、又上述した伝送不良中にアドレスが一致すれば
カウンタ手段の計数のみ初期化され、本体(1)並びに
各リモコンはその状態が初期化されることはないのであ
る。
In addition, the transmitting/receiving circuit (11) on the remote control side compares the address of the received data sent from the main body (1) side with its own set unique address, and if the two addresses match, the status of the remote control side is recognized as the received data. The accuracy of transmission is improved by changing to When the count reaches a predetermined number of times (F2), it is indicated as a transmission failure on the display section (material) and (F3) 1 initial setting, ie, operation stop data is sent to the main unit (1) (F4). At the same time, the main unit (1) side sends the initialized data to the other remote controllers, and after the main unit (1) and all remote controllers are initialized, polling is restarted (F5). Furthermore, if the addresses match during the above-mentioned transmission failure, only the count of the counter means is initialized, but the state of the main body (1) and each remote controller is not initialized.

(発明の効果) 以上のように、本発明によれば、任意のリモコンにおけ
る伝送不良を確実に検知することができ、かかる伝送不
良検知時にはその不良表示や本体並びに各リモコンの状
態を初期状態(全OFF状態)にしてから伝送を再開す
ることができるので、装置全体をより安定に保つことが
でき、伝送不良によるシステムの危険モードへのH移を
回避することができる。
(Effects of the Invention) As described above, according to the present invention, it is possible to reliably detect a transmission failure in any remote controller, and when such a transmission failure is detected, the failure display and the status of the main body and each remote control are changed to the initial state ( Since the transmission can be restarted after the transmission is completely turned off, the entire device can be kept more stable, and the system can be prevented from going into a dangerous mode due to a transmission failure.

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

図面は本発明の一実施例を示し、第1図は全体構成図、
第2図は本体の送受信回路における送受信を示す説明図
、第3図は信号データの説明図、第4図はフローチャー
トである。 (1) ・・・被制御装置本体(給湯器)(5)・・・
操作装置(メインリモコン)(6)・・・操作装置(サ
ブリモコン)(7)・・・操作装置(フロリモコン)(
8)・・・送受信回路 (9)・・・2芯伝送線
The drawings show one embodiment of the present invention, and FIG. 1 is an overall configuration diagram;
FIG. 2 is an explanatory diagram showing transmission and reception in the transmitting and receiving circuit of the main body, FIG. 3 is an explanatory diagram of signal data, and FIG. 4 is a flowchart. (1) ... Controlled device body (water heater) (5) ...
Operating device (main remote control) (6)... Operating device (sub remote control) (7)... Operating device (furo remote control) (
8)...Transmission/reception circuit (9)...2-core transmission line

Claims (1)

【特許請求の範囲】[Claims] 被制御装置本体の送受信回路と遠隔設置した複数の操作
装置の送受信回路とを2芯伝送線により接続し、上記本
体側の送受信回路と操作装置側の送受信回路とを介して
送受信を行ない被制御装置本体を制御するものにおいて
、上記操作装置には受信データのアドレスが該操作装置
に設定された固有のアドレスと一致するか否かを判定す
るアドレス判定手段を設け、不一致時には計数が進めら
れると共に一致時には初期化されるカウンタ手段を設け
て、このカウンタ手段の所定回数計数により伝送不良を
検知するようにしたことを特徴とする遠隔操作装置。
The transmitter/receiver circuit of the main body of the controlled device and the transmitter/receiver circuits of a plurality of remotely installed operating devices are connected via a two-core transmission line, and transmission and reception is performed via the transmitter/receiver circuit of the main body and the transmitter/receiver circuit of the operating device to control the device. In the device that controls the main body of the device, the operating device is provided with an address determining means for determining whether or not the address of the received data matches a unique address set in the operating device, and when the address does not match, counting is continued and A remote control device characterized in that a counter means is provided which is initialized when a match occurs, and a transmission failure is detected by counting a predetermined number of times by the counter means.
JP28498686A 1986-11-28 1986-11-28 Remote control equipment Pending JPS63136897A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP28498686A JPS63136897A (en) 1986-11-28 1986-11-28 Remote control equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP28498686A JPS63136897A (en) 1986-11-28 1986-11-28 Remote control equipment

Publications (1)

Publication Number Publication Date
JPS63136897A true JPS63136897A (en) 1988-06-09

Family

ID=17685656

Family Applications (1)

Application Number Title Priority Date Filing Date
JP28498686A Pending JPS63136897A (en) 1986-11-28 1986-11-28 Remote control equipment

Country Status (1)

Country Link
JP (1) JPS63136897A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8509272B2 (en) 2009-06-10 2013-08-13 Lee Laser, Inc. Laser beam combining and power scaling device

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS586482B2 (en) * 1978-11-30 1983-02-04 岡安 徳一 How to make fully machine-sewn lightweight underground tabs
JPS5910836U (en) * 1982-07-12 1984-01-23 三菱重工業株式会社 Mixer for coal storage
JPS5972948A (en) * 1982-10-15 1984-04-25 松下電工株式会社 Power line carriage controller

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS586482B2 (en) * 1978-11-30 1983-02-04 岡安 徳一 How to make fully machine-sewn lightweight underground tabs
JPS5910836U (en) * 1982-07-12 1984-01-23 三菱重工業株式会社 Mixer for coal storage
JPS5972948A (en) * 1982-10-15 1984-04-25 松下電工株式会社 Power line carriage controller

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8509272B2 (en) 2009-06-10 2013-08-13 Lee Laser, Inc. Laser beam combining and power scaling device
US8693511B2 (en) 2009-06-10 2014-04-08 Lee Laser, Inc. Laser device and method
US9106054B2 (en) 2009-06-10 2015-08-11 Lee Laser, Inc. Laser device and method
US9647417B2 (en) 2009-06-10 2017-05-09 Lee Laser, Inc. Laser device and method

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