CN210891779U - Flameout protection ignition controller by inducing fan current - Google Patents

Flameout protection ignition controller by inducing fan current Download PDF

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Publication number
CN210891779U
CN210891779U CN201921388533.6U CN201921388533U CN210891779U CN 210891779 U CN210891779 U CN 210891779U CN 201921388533 U CN201921388533 U CN 201921388533U CN 210891779 U CN210891779 U CN 210891779U
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CN
China
Prior art keywords
circuit
ignition
relay
output
electrically connected
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Expired - Fee Related
Application number
CN201921388533.6U
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Chinese (zh)
Inventor
应陈杰
李元
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Shengzhou Shenghua Intelligent Control Technology Co ltd
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Shengzhou Shenghua Intelligent Control Technology Co ltd
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Priority to CN201921388533.6U priority Critical patent/CN210891779U/en
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Publication of CN210891779U publication Critical patent/CN210891779U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A flameout protection ignition controller by inducing fan current belongs to the technical field of gas equipment and comprises a power switch, a relay, a single chip microcomputer circuit, an ignition circuit, an induction circuit, a current transformer and a solenoid valve, wherein the output end of the solenoid valve is electrically connected with the input end of the power switch, the output end of the power switch is electrically connected with the input ends of the relay, the single chip microcomputer circuit, the induction circuit and the ignition circuit, the output end of the relay is electrically connected with the input end of the ignition circuit, the output end of the ignition circuit is connected with an ignition needle, the output end of the single chip microcomputer circuit is electrically connected with the current transformer, and the output end of the current transformer is electrically connected with the input end of; this flame-out protection ignition controller through response fan electric current can improve flame-out protection ignition controller in use stability of igniteing to and burning homogeneity in the use, have characteristics such as simple structure, reasonable in design.

Description

Flameout protection ignition controller by inducing fan current
Technical Field
The utility model belongs to the technical field of gas equipment, specifically be relate to a through flameout protection ignition controller of response fan current.
Background
The commercial multi-burner gas stove is a main kitchen device for broad hotels to take dishes and cook dishes, and is usually a multi-burner stove with more than two burner holes. The traditional multi-burner gas stove is provided with a piezoelectric ignition device and an air supply device, is manually ignited by an operator when in use and does not have a flameout protection function. With the development of science and technology, the functions of the multi-burner gas stove are more and more comprehensive, and the use is more and more convenient. The flameout protection, ignition function and the large gas storage bag are main components of the multi-burner gas stove, and by using the flameout protection, ignition function and the large gas storage bag, the multi-burner gas stove can be protected, ignited and uniformly combusted, the service life is prolonged, the use safety performance of the multi-burner gas stove can be improved, and the accident occurrence rate is reduced.
However, the ignition stability of the existing flameout protection ignition controller is poor in use, the ignition is not uniform in use, and the air supply device is too small, so that the air intake is insufficient.
Disclosure of Invention
The utility model discloses solve the technical problem that above-mentioned prior art exists, provide a flame-out protection ignition controller through response fan current.
The above technical problem of the present invention can be solved by the following technical solutions: the utility model provides a flame-out protection ignition controller through response fan current, includes switch, relay, singlechip circuit, ignition circuit, induction circuit, current transformer and solenoid valve, solenoid valve output and switch's input electric connection, switch's output and relay, singlechip circuit, induction circuit and ignition circuit's input electric connection, the output of relay and ignition circuit's input electric connection, ignition circuit's output is connected with the ignition needle, induction circuit's input and relay and singlechip circuit's output electric connection, singlechip circuit's output and current transformer electric connection, and current transformer's output and the input electric connection of fan.
Preferably, the input end of the ignition circuit is electrically connected with a high-voltage trigger diode, the output end of the high-voltage trigger diode is provided with a high-voltage coil and is connected with an ignition needle through the high-voltage coil, the input end of the ignition needle is connected with a burner, the ignition needle adopts a high-voltage ceramic electrode, and the high-voltage ceramic electrode adopts a tungsten electrode core.
The utility model discloses beneficial effect who has: the output end of the power switch is electrically connected with the relay, the singlechip circuit, the induction circuit and the ignition circuit, the output end of the current transformer is electrically connected with the fan, when in use, the power switch is electrically connected with the commercial power, the current transformer provides electricity for the operation of the relay, the singlechip circuit, the induction circuit and the ignition circuit, receives the information output by the singlechip circuit, and output to the fan, the fan generates current after running and feeds back to the current transformer, the current transformer feeds back to the single chip circuit, the sensing circuit receives information for the running of the relay and the single chip circuit, the relay is connected with the power supply and outputs the power supply to the ignition circuit, the ignition circuit operates to ignite the ignition needle, the fan operates to ignite and support combustion for the ignition needle, therefore, the ignition stability of the flameout protection ignition controller in use and the combustion uniformity in the use process are improved. The utility model discloses can improve flame-out protection ignition controller in use stability of igniteing to and burning homogeneity in the use, have characteristics such as simple structure, reasonable in design.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure: a power switch 1; a relay 2; a single chip circuit 3; an ignition circuit 4; a sensing circuit 5; a current transformer 6; an electromagnetic valve 7; an ignition needle 8; a fan 9; a high voltage trigger diode 10; a high-voltage coil 11; a burner 12.
Detailed Description
The technical solution of the present invention is further specifically described below by way of examples and with reference to the accompanying drawings.
Example (b): a flameout protection ignition controller by inducing fan current is disclosed, as shown in figure 1, comprising a power switch 1, a relay 2, a single chip microcomputer circuit 3, an ignition circuit 4, an induction circuit 5, a current transformer 6 and a solenoid valve 7, wherein the power switch 1, the relay 2, the ignition circuit 4, the induction circuit 5, the current transformer 6 and the solenoid valve 7 all adopt common electronic elements for gas cookers on the market, the single chip microcomputer circuit 3 adopts a PLC16LF1507 integrated circuit IC single chip microcomputer, the output end of the solenoid valve 7 is electrically connected with the input end of the power switch 1, the output end of the power switch 1 is electrically connected with the input ends of the relay 2, the single chip microcomputer circuit 3, the induction circuit 5 and the ignition circuit 4, the output end of the relay 2 is electrically connected with the input end of the ignition circuit 4, the output end of the ignition circuit 4 is connected with an ignition needle 8, the input end of the induction circuit 5 is electrically connected with the output ends of, the output end of the single chip microcomputer circuit 3 is electrically connected with the current transformer 6, and the output end of the current transformer 6 is electrically connected with the fan 9.
The input end of the ignition circuit 4 is electrically connected with a high-voltage trigger diode 10, the output end of the high-voltage trigger diode 10 is provided with a high-voltage coil 11 and is connected with an ignition needle 8 through the high-voltage coil 11, the input end of the ignition needle 8 is connected with a combustor 12, and the ignition needle 8 adopts a high-voltage ceramic electrode. The ignition circuit 4 outputs electric quantity to the high-voltage trigger diode 10 when in operation, the high-voltage trigger diode 10 outputs electric quantity to the high-voltage coil 11, the high-voltage coil 11 operates to generate high-voltage electric arcs to the ignition needle 8, and the combustor 12 outputs fuel gas or fuel oil to the ignition needle 8, so that the fuel oil or the fuel gas output by the ignition needle 8 is ignited through the high-voltage electric arcs generated by the high-voltage coil 11.
The principle of the utility model is as follows: the output end of a power switch 1 is electrically connected with a relay 2, a singlechip circuit 3, an induction circuit 5 and an ignition circuit 4, the output end of a current transformer 6 is electrically connected with a fan 9, when in use, the power switch 1 is electrically connected with commercial power to provide electric quantity for the operation of the relay 2, the singlechip circuit 3, the induction circuit 5 and the ignition circuit 4, the current transformer 6 receives the information output by the singlechip circuit 3 and outputs the information to the fan 9, the fan 9 generates current after operation and feeds back the current to the current transformer 6, the current transformer 6 feeds back the current to the singlechip circuit 3, the induction circuit 5 receives the information for the operation of the relay 2 and the singlechip circuit 6, the relay 2 outputs power to the ignition circuit 4 after being connected with the power supply, the ignition circuit 4 outputs the electric quantity to a high-voltage trigger diode 10 when in operation, the high-voltage trigger diode 10 outputs the electric, the high-voltage coil 11 operates to generate high-voltage electric arcs to the ignition needle 8, the combustor 12 outputs fuel gas or fuel oil to the ignition needle 8, so that the high-voltage electric arcs generated by the high-voltage coil 11 ignite the fuel oil or fuel gas output by the ignition needle 8, and the fan 9 operates to ignite and support combustion of the ignition needle 8, thereby improving the ignition stability of the flameout protection ignition controller in use and the combustion uniformity in the use process.
Finally, it should be noted that the above embodiments are merely representative examples of the present invention. Obviously, the present invention is not limited to the above-described embodiments, and many modifications are possible. Any simple modification, equivalent change and modification made to the above embodiments according to the technical spirit of the present invention should be considered as belonging to the protection scope of the present invention.

Claims (2)

1. The utility model provides a flame-out protection ignition controller through response fan current, includes switch (1), relay (2), singlechip circuit (3), ignition circuit (4), induction circuit (5), current transformer (6) and solenoid valve (7), its characterized in that: solenoid valve (7) output and switch (1) input electric connection, switch (1) output and relay (2), singlechip circuit (3), induction circuit (5) and ignition circuit (4) input electric connection, the output of relay (2) and the input electric connection of ignition circuit (4), the output of ignition circuit (4) is connected with ignition needle (8), the input of induction circuit (5) and the output electric connection of relay (2) and singlechip circuit (3), the output and current transformer (6) electric connection of singlechip circuit (3), and the output electric connection of current transformer (6) has fan (9).
2. A misfire protection ignition controller by inducing fan current as recited in claim 1 wherein: the ignition device is characterized in that the input end of the ignition circuit (4) is electrically connected with a high-voltage trigger diode (10), the output end of the high-voltage trigger diode (10) is provided with a high-voltage coil (11) and is connected with an ignition needle (8) through the high-voltage coil (11), the input end of the ignition needle (8) is connected with a combustor (12), and the ignition needle (8) adopts a high-voltage ceramic electrode.
CN201921388533.6U 2019-08-26 2019-08-26 Flameout protection ignition controller by inducing fan current Expired - Fee Related CN210891779U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921388533.6U CN210891779U (en) 2019-08-26 2019-08-26 Flameout protection ignition controller by inducing fan current

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921388533.6U CN210891779U (en) 2019-08-26 2019-08-26 Flameout protection ignition controller by inducing fan current

Publications (1)

Publication Number Publication Date
CN210891779U true CN210891779U (en) 2020-06-30

Family

ID=71315955

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921388533.6U Expired - Fee Related CN210891779U (en) 2019-08-26 2019-08-26 Flameout protection ignition controller by inducing fan current

Country Status (1)

Country Link
CN (1) CN210891779U (en)

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Granted publication date: 20200630