Gas stove fire power value setting method and gas stove

By installing sensors and solenoid valves on the gas stove and adjusting the firepower value with a controller, the problem of fixed and difficult-to-adjust knob firepower value is solved, enabling users to customize the firepower value setting and improving the user experience.

CN114857623BActive Publication Date: 2026-05-01QINGDAO HAIER WISDOM KITCHEN APPLIANCE CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
QINGDAO HAIER WISDOM KITCHEN APPLIANCE CO LTD
Filing Date
2021-02-05
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing gas stove knobs have fixed flame settings, making it difficult for users to accurately adjust them to the appropriate position, which affects the user experience.

Method used

By installing sensors on the gas stove, the position information of the knobs is collected and communicated with the controller to adjust the opening of the solenoid valve to change the firepower value of the burner. Users can set the firepower value corresponding to the knob position through the control panel or operating terminal.

Benefits of technology

Users can reset the power level corresponding to the knob position according to their preferences, improving the user experience and simplifying the power adjustment process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of electrical equipment, and aims to solve the problem that the existing knob of gas stove corresponds to fixed fire value, and the user is inconvenient to use. To this end, the present application provides a fire value setting method of gas stove and gas stove, which comprises: a burner; an air inlet pipe in communication with the burner; a control valve installed on the air inlet pipe, which can adjust the size of the gas flow; a knob which can adjust the size of the fire value of the burner; the fire value setting method of the gas stove comprises: judging whether the fire value setting instruction is received; entering the fire value setting mode in the case of receiving the fire value setting instruction; obtaining the fire value of the burner set by the user; obtaining the position of the knob specified by the user; assigning the fire value of the burner set by the user to the position of the knob specified by the user. Through such setting, the user can re-set the fire value corresponding to each position of the knob according to his own preference, and improve the user's experience.
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Description

Gas stove firepower setting method and gas stove Technical Field

[0001] This invention belongs to the field of electrical equipment technology, specifically providing a method for setting the firepower of a gas stove and a gas stove. Background Technology

[0002] Gas stoves, as an essential kitchen appliance, bring great convenience to people's lives, and their household penetration rate is increasing.

[0003] Gas stoves include a knob, which users can use to adjust the flame intensity. The typical way to use the knob on a gas stove is as follows: turn the knob counter-clockwise to ignite the flame; when the knob is rotated to -90°, the flame intensity is at its maximum; continuing to rotate the knob counter-clockwise gradually decreases the flame intensity; when the knob is rotated to -180°, the flame intensity is at its minimum.

[0004] When using a gas stove, users rarely use the maximum or minimum heat setting. They most often use a heat setting between the maximum and minimum, especially when cooking porridge or stewing soup. Users need to rotate the knob to a position between -90° and -180°, for example, to -150°. However, due to poor control, they may have to rotate the knob back and forth several times each time to adjust to the appropriate heat setting, which greatly affects the user experience.

[0005] Accordingly, a new technical solution is needed in this field to solve the above problems. Summary of the Invention

[0006] To address the aforementioned problems in the prior art, specifically the inconvenience caused by the fixed flame value corresponding to the knob on existing gas stoves, this invention provides a method for setting the flame value of a gas stove. The gas stove includes: a burner head; an inlet pipe connected to the burner head; a control valve installed on the inlet pipe, the control valve being able to adjust the gas flow rate; and a knob capable of adjusting the flame value of the burner head. The method for setting the flame value of the gas stove includes: determining whether a flame value setting command has been received; entering a flame value setting mode if a flame value setting command has been received; acquiring the flame value of the burner head set by the user; acquiring the position of the knob specified by the user; and assigning the flame value of the burner head set by the user to the position of the knob specified by the user.

[0007] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the method includes: first, executing "obtaining the firepower value of the burner set by the user", and then executing "obtaining the position of the knob specified by the user". Specifically, the step of "obtaining the firepower value of the burner set by the user" includes: obtaining the current firepower value of the burner; the step of "obtaining the position of the knob specified by the user" includes: obtaining the current position of the knob after it has been rotated; and the step of "assigning the firepower value of the burner set by the user to the position of the knob specified by the user" includes: assigning the current firepower value of the burner to the current position of the knob.

[0008] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the method includes: first executing "obtaining the position of the knob specified by the user", and then executing "obtaining the firepower value of the burner set by the user", wherein the step of "obtaining the position of the knob specified by the user" specifically includes: obtaining the current position of the knob; the step of "obtaining the firepower value of the burner set by the user" specifically includes: obtaining the current firepower value of the burner after adjustment; the step of "assigning the firepower value of the burner set by the user to the position of the knob specified by the user" specifically includes:

[0009] Assign the current firepower value of the burner to the current position of the knob.

[0010] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the step of "obtaining the firepower value of the stove head set by the user" specifically includes: obtaining the current firepower value of the stove head after it has been adjusted; the step of "obtaining the position of the knob specified by the user" specifically includes: obtaining the current position of the knob after it has been rotated; the step of "assigning the firepower value of the stove head set by the user to the position of the knob specified by the user" specifically includes: assigning the current firepower value of the stove head to the current position of the knob.

[0011] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the firepower setting command is input by the user on the control panel of the gas stove.

[0012] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the firepower setting command is input by the user on an operating terminal that communicates with the gas stove.

[0013] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, a sensor is provided on the knob, and the sensor is configured to collect the position of the knob.

[0014] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the sensor is an angular displacement sensor or a photoelectric sensor.

[0015] In the preferred embodiment of the above-mentioned method for setting the firepower of a gas stove, the control valve is a solenoid valve.

[0016] In another aspect, the present invention also provides a gas stove, the gas stove including a controller configured to execute the above-described gas stove firepower setting method.

[0017] Those skilled in the art will understand that, in the preferred embodiment of the present invention, upon receiving a firepower setting command, the system enters a firepower setting mode; obtains the firepower value of the burner set by the user; obtains the position of the knob specified by the user; and assigns the firepower value of the burner set by the user to the position of the knob specified by the user. This setting allows users to reset the firepower value corresponding to each knob position according to their preferences, thus improving the user experience.

[0018] Furthermore, the gas stove provided by the present invention, based on the above technical solution, has the technical effects of the above-mentioned firepower setting method because it adopts the above-mentioned firepower setting method. Compared with existing gas stoves, the gas stove of the present invention allows users to reset the firepower value corresponding to each position of the knob according to their own preferences, thereby improving the user experience. Attached Figure Description

[0019] The technical solution of the present invention will now be described in detail with reference to the accompanying drawings and a gas stove.

[0020] in,

[0021] Figure 1 is a schematic diagram of the structure of the gas stove of the present invention;

[0022] Figure 2 is a schematic diagram of the assembly of the knob and the angular displacement sensor of the gas stove of the present invention;

[0023] Figure 3 is a schematic diagram of the assembly of the knob and photoelectric sensor of the gas stove of the present invention;

[0024] Figure 4 is a flowchart of the firepower setting method for the gas stove of the present invention;

[0025] Figure 5 is a flowchart of a first embodiment of the firepower setting method for the gas stove of the present invention;

[0026] Figure 6 is a flowchart of Embodiment 2 of the gas stove firepower setting method of the present invention;

[0027] Figure 7 is a flowchart of Embodiment 3 of the gas stove firepower setting method of the present invention.

[0028] List of reference numerals in the attached diagram:

[0029] 1. Stove head;

[0030] 2. Knob; 21. Knob lever;

[0031] 3. Angular displacement sensor;

[0032] 41. Grating ruler; 42. Reading head;

[0033] 5. Control Panel;

[0034] 6. Setting button;

[0035] 7. Exit button;

[0036] 8. Confirm button. Detailed Implementation

[0037] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that the embodiments described below are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.

[0038] It should be noted that in the description of this invention, terms such as "upper," "lower," "left," "right," "inner," "outer," "top," and "bottom," which indicate direction or positional relationships, are based on the direction or positional relationships shown in the accompanying drawings. These are used merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0039] Furthermore, it should be noted that, in the description of this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0040] For ease of description, the firepower value of the burner is divided into 10 values ​​from low to high, namely 1 to 10, as shown in the table below. When the gas stove leaves the factory, the firepower value corresponding to each position of the knob is generally set. Under normal circumstances, the firepower value corresponding to the knob at -90° is the largest, which is 10, and the firepower value corresponding to the knob at -180° is the smallest, which is 1.

[0041] Knob position - 90 - 100 - 110 - 120 - 130 - 140 - 150 - 160 - 170 - 180 Power level 10987654321 surface

[0042] When using a gas stove, the most commonly used firepower value is probably 4. Therefore, it is necessary to rotate the knob to -150°. However, it is usually difficult for users to rotate the knob to -150° on the first try. It may be necessary to rotate the knob back and forth several times to rotate it to the appropriate position. In other words, users may need to rotate the knob back and forth several times to adjust the firepower of the burner to the firepower they need.

[0043] To address the aforementioned problems, this invention provides a method for setting the firepower value of a gas stove.

[0044] First, the gas stove of the present invention will be described with reference to Figure 1, wherein Figure 1 is a schematic diagram of the structure of the gas stove of the present invention.

[0045] As shown in Figure 1, the gas stove of the present invention mainly includes a burner 1, a knob 2, an inlet pipe (not shown in the figure) and a control valve (not shown in the figure).

[0046] There are two burners 1 and two knobs 2, each corresponding to one burner 1. There are also two gas inlet pipes, each connected to one burner 1 to supply gas to the burners 1. In addition, each gas inlet pipe is equipped with a control valve, which can adjust the gas flow rate to change the firepower of the burner 1. The control valve is preferably a solenoid valve.

[0047] A sensor is installed on knob 2 to collect its position. The sensor communicates with the gas stove's controller and transmits the collected position information to the controller in real time. The solenoid valve also communicates with the gas stove's controller. The controller adjusts the opening of the solenoid valve based on the obtained position of knob 2, controlling the gas flow and thus changing the flame value of burner 1. In other words, there is a corresponding relationship between the position of burner 1, the opening of the solenoid valve, and the flame value of burner 1.

[0048] In a preferred embodiment, the sensor is an angular displacement sensor 3, as shown in Figure 2. The knob 2 includes a body and a knob rod 21. The knob rod 21 can rotate synchronously with the body. The angular displacement sensor 3 is sleeved on the knob rod 21 to detect the angular displacement of the knob rod 21 and transmit the angular displacement signal to the gas stove controller in real time. The controller controls the opening of the solenoid valve according to the acquired angular displacement signal to adjust the firepower of the burner 1.

[0049] In another preferred embodiment, the sensor is a photoelectric sensor, as shown in Figure 3. The photoelectric sensor includes a grating ruler 41 and a reading head 42. The grating ruler 41 is fixed on the gas stove, and the reading head 42 is fixed on the knob rod 21 of the knob 2. The reading head 42 can rotate with the knob rod 21.

[0050] The method for setting the firepower of a gas stove according to the present invention will be described in detail below with reference to Figures 4 to 7. Figure 4 is a flowchart of the method for setting the firepower of a gas stove according to the present invention; Figure 5 is a flowchart of Embodiment 1 of the method for setting the firepower of a gas stove according to the present invention; Figure 6 is a flowchart of Embodiment 2 of the method for setting the firepower of a gas stove according to the present invention; and Figure 7 is a flowchart of Embodiment 3 of the method for setting the firepower of a gas stove according to the present invention.

[0051] As shown in Figure 4, the method for setting the firepower of the gas stove according to the present invention includes the following steps:

[0052] S1: Determine whether a firepower setting command has been received;

[0053] S2: Enters firepower setting mode upon receiving a firepower setting command;

[0054] S3: Obtain the firepower value of the stove set by the user;

[0055] S4: Get the position of the knob specified by the user;

[0056] S5: Assign the user-defined firepower value of the burner to the position of the knob specified by the user.

[0057] This method allows users to reset the firepower value corresponding to each position of the knob.

[0058] Specifically, when the gas stove is running, if a firepower setting command is received, the gas stove will enter the firepower setting mode. For example, the control panel 5 of the gas stove is equipped with a setting key 6 (see Figure 1). The user can input the firepower setting command through the setting key 6. When the user presses the setting key 6, the gas stove enters the firepower setting mode.

[0059] It should be noted that users can also input firepower setting commands on operating terminals (such as mobile phones, tablets, or computers). These operating terminals can communicate with the gas stove. Taking a mobile phone as an example, users can scan the QR code printed on the gas stove to download an APP and input firepower setting commands on the APP. Such flexible adjustments and changes do not deviate from the principles and scope of this invention and should be limited to the protection scope of this invention.

[0060] Suppose a user wants to set the firepower value when the knob is rotated to -180° to their usual firepower value of 4. The user can press the setting button 6 on the control panel to input the firepower value setting command. After receiving the command, the gas stove controller puts the gas stove into the firepower value setting mode, then obtains the firepower value of the burner set by the user (e.g., 4) and the position of the knob (e.g., -180°), and finally assigns the firepower value of the burner set by the user (e.g., 4) to the position of the knob (e.g., -180°), and then exits the firepower value setting mode. For example, the control panel 5 of the gas stove is provided with an exit button 7 (see Figure 1). The user can exit the firepower value setting mode by pressing the exit button 7.

[0061] In this way, the firepower value when the knob is at -180° is modified to 4. When using the gas stove, users only need to rotate the knob to -180° to adjust the firepower value of the burner to their preferred level. Compared to rotating the knob to -150°, it is obviously easier to rotate the knob to -180°, as you only need to rotate the knob all the way to the end.

[0062] It should be noted that the burner's heat output is actually controlled by a solenoid valve. The burner's heat output is directly related to the opening degree of the solenoid valve. The larger the opening degree of the solenoid valve, the greater the gas flow in the gas intake pipe, and the greater the burner's heat output. Therefore, obtaining the burner's heat output actually means obtaining the opening degree of the solenoid valve corresponding to the burner's heat output.

[0063] It should also be noted that in practical applications, step S3 can be executed first, followed by step S4, or step S4 can be executed first, followed by step S3. Such flexible adjustments and changes do not deviate from the principles and scope of the present invention and should be limited to the protection scope of the present invention.

[0064] The following describes in detail the firepower setting method of the gas stove of the present invention with reference to three specific embodiments.

[0065] Example 1

[0066] As shown in Figure 5, the method for setting the firepower of the gas stove in this embodiment includes the following steps:

[0067] S1: Determine whether a firepower setting command has been received;

[0068] S2: Enters firepower setting mode upon receiving a firepower setting command;

[0069] S3: Get the current firepower value of the stove;

[0070] S4: Get the current position of the knob after it has been rotated;

[0071] S5: Assign the current firepower value of the burner to the current position of the knob.

[0072] In this embodiment, the process first executes "obtaining the user-set burner firepower value", and then executes "obtaining the user-specified knob position". Specifically, the step of "obtaining the user-set burner firepower value" includes: obtaining the current firepower value of the burner; the step of "obtaining the user-specified knob position" includes: obtaining the current position of the knob after it has been rotated; and the step of "assigning the user-set burner firepower value to the user-specified knob position" includes: assigning the current firepower value of the burner to the current position of the knob.

[0073] Taking the example of a user wanting to set the firepower value when the knob is rotated to -180° to their usual firepower value of 4, after the user ignites the gas stove, rotates the knob to the position of -150°, adjusts the firepower value of the burner to 4, and then presses the setting key on the control panel to input the firepower value setting command, so that the gas stove enters the firepower value setting mode. After the gas stove enters the firepower value setting mode, it obtains the current firepower value of the burner, which is 4. Then the user rotates the knob to -180° and confirms. For example, a confirmation key 8 can be set on the control panel of the gas stove (see Figure 1). The confirmation command is input through the confirmation key. After receiving the confirmation command, the current position of the knob after being rotated is obtained by the angular displacement sensor or photoelectric sensor set on the knob, which is -180°. Then the current firepower value (4) of the burner is assigned to the current position (-180°) of the knob, and then the firepower value setting mode is exited.

[0074] In other words, before putting the gas stove into the power setting mode, you first set the desired power value using the knob. After setting the power value of the burner, you then put the gas stove into the power setting mode. Once in the power setting mode, the system first obtains the user-set power value of the burner, i.e., the current power value of the burner. Then, you rotate the knob to the desired position and confirm it. The system then obtains the user-specified knob position, i.e., the current position of the knob. Finally, the current power value of the burner is assigned to the current position of the knob, completing the power setting.

[0075] Example 2

[0076] As shown in Figure 6, the method for setting the firepower of the gas stove in this embodiment includes the following steps:

[0077] S1: Determine whether a firepower setting command has been received;

[0078] S2: Enters firepower setting mode upon receiving a firepower setting command;

[0079] S3: Get the current position of the knob;

[0080] S4: Get the current firepower value of the stove after it has been adjusted;

[0081] S5: Assign the current firepower value of the burner to the current position of the knob.

[0082] This embodiment is the opposite of Embodiment 1. In this embodiment, the process of "obtaining the position of the user-specified knob" is executed first, followed by "obtaining the firepower value of the burner set by the user". Specifically, the step of "obtaining the position of the user-specified knob" includes obtaining the current position of the knob; the step of "obtaining the firepower value of the burner set by the user" includes obtaining the current firepower value of the burner after adjustment; and the step of "assigning the firepower value of the burner set by the user to the position of the user-specified knob" includes assigning the current firepower value of the burner to the current position of the knob.

[0083] Taking the example of a user wanting to set the firepower value when the knob is rotated to -180° to their usual firepower value of 4, after the user ignites the gas stove, rotates the knob to the -180° position, and then presses the setting key on the control panel to input the firepower value setting command, so that the gas stove enters the firepower value setting mode. After the gas stove enters the firepower value setting mode, the current position of the knob is obtained by the angular displacement sensor or photoelectric sensor set on the knob, which is -180°. Then the user rotates the knob to -150°, that is, adjusts the firepower value of the burner to 4 and confirms. For example, a confirmation key 8 can be set on the control panel of the gas stove (see Figure 1). The confirmation command is input through the confirmation key. After receiving the confirmation command, the current firepower value of the burner is obtained, which is 4. Then the current firepower value (4) of the burner is assigned to the current position (-180°) of the knob, and then the firepower value setting mode is exited.

[0084] In other words, before putting the gas stove into the power setting mode, first rotate the knob to the desired position, then put the gas stove into the power setting mode. After entering the power setting mode, first obtain the user-specified knob position, i.e., the current position of the knob, then adjust the burner's power value by rotating the knob to the desired power value and confirm it, then obtain the user-set burner's power value, i.e., the current power value of the burner, and finally assign the current power value of the burner to the current position of the knob, completing the power setting.

[0085] It should be noted that after entering the firepower setting mode, the firepower of the burner can also be adjusted in other ways. For example, an adjustment button can be set on the control panel of the gas stove specifically for adjusting the firepower of the burner in the firepower setting mode. Alternatively, the firepower of the burner can be adjusted via a mobile app, etc. Such flexible adjustments and changes do not deviate from the principles and scope of this invention and should be limited to the protection scope of this invention.

[0086] Example 3

[0087] As shown in Figure 7, the method for setting the firepower of the gas stove in this embodiment includes the following steps:

[0088] S1: Determine whether a firepower setting command has been received;

[0089] S2: Enters firepower setting mode upon receiving a firepower setting command;

[0090] S3: Get the current firepower value of the stove after it has been adjusted;

[0091] S4: Get the current position of the knob after it has been rotated;

[0092] S5: Assign the current firepower value of the burner to the current position of the knob.

[0093] In this embodiment, the step of "obtaining the user-set firepower value of the stove head" specifically includes: obtaining the current firepower value of the stove head after it has been adjusted; the step of "obtaining the position of the knob specified by the user" specifically includes: obtaining the current position of the knob after it has been rotated; the step of "assigning the user-set firepower value of the stove head to the position of the knob specified by the user" specifically includes: assigning the current firepower value of the stove head to the current position of the knob.

[0094] Taking the example of a user wanting to set the firepower value when the knob is rotated to -180° to their usual firepower value of 4, the user ignites the gas stove and then presses the setting button on the control panel to input the firepower value setting command, thus putting the gas stove into the firepower value setting mode.

[0095] After the gas stove enters the firepower setting mode, rotate the knob to the -150° position, that is, adjust the firepower of the burner to 4 and confirm. For example, a confirmation key 8 can be set on the control panel of the gas stove (see Figure 1). The confirmation command is input through the confirmation key. After receiving the confirmation command, the current firepower value of the burner is obtained, which is 4. Then the user rotates the knob to -180° and confirms. After receiving the confirmation command, the current position of the knob after being rotated is obtained through the angular displacement sensor or photoelectric sensor set on the knob, which is -180°. Then the current firepower value (4) of the burner is assigned to the current position (-180°) of the knob, and then the firepower setting mode is exited.

[0096] In other words, after putting the gas stove into the firepower setting mode, you can set the desired firepower value and the position of the knob. Then, after obtaining the set firepower value of the burner and the position of the knob, you can finally assign the firepower value of the burner to the position of the knob to complete the firepower setting.

[0097] It should be noted that after entering the firepower setting mode, the firepower of the burner can also be adjusted in other ways. For example, an adjustment button can be set on the control panel of the gas stove specifically for adjusting the firepower of the burner in the firepower setting mode. Alternatively, the firepower of the burner can be adjusted via a mobile app, etc. Such flexible adjustments and changes do not deviate from the principles and scope of this invention and should be limited to the protection scope of this invention.

[0098] It should also be noted that in this embodiment, step S3 can be executed first, followed by step S4, or step S4 can be executed first, followed by step S3. Such flexible adjustments and changes do not deviate from the principles and scope of the present invention and should be limited to the protection scope of the present invention.

[0099] The technical solution of the present invention has been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will all fall within the scope of protection of the present invention.

Claims

1. A method for setting the firepower value of a gas stove, characterized in that, The gas stove includes: a burner head; an inlet pipe connected to the burner head; a control valve installed on the inlet pipe, the control valve being able to adjust the gas flow rate; and a knob being able to adjust the flame value of the burner head. The control valve is a solenoid valve, and the flame value of the burner head is actually controlled by the solenoid valve. The flame value of the burner head is related to the opening degree of the solenoid valve; the larger the opening degree of the solenoid valve, the larger the gas flow rate in the inlet pipe, and the larger the flame value of the burner head. The flame value setting method of the gas stove includes: determining whether a flame value setting command has been received; entering a flame value setting mode if a flame value setting command has been received; obtaining the flame value of the burner head set by the user; obtaining the position of the knob specified by the user; and assigning the flame value of the burner head set by the user to the position of the knob specified by the user.

2. The method for setting the firepower of a gas stove according to claim 1, characterized in that, The method for setting the firepower value of the gas stove includes: first, executing "obtaining the firepower value of the burner set by the user", and then executing "obtaining the position of the knob specified by the user". Specifically, the step of "obtaining the firepower value of the burner set by the user" includes: obtaining the current firepower value of the burner; the step of "obtaining the position of the knob specified by the user" includes: obtaining the current position of the knob after it has been rotated; and the step of "assigning the firepower value of the burner set by the user to the position of the knob specified by the user" includes: assigning the current firepower value of the burner to the current position of the knob.

3. The method for setting the firepower of a gas stove according to claim 1, characterized in that, The method for setting the firepower value of the gas stove includes: first executing "obtaining the position of the knob specified by the user", and then executing "obtaining the firepower value of the burner set by the user". The step of "obtaining the position of the knob specified by the user" specifically includes: obtaining the current position of the knob; the step of "obtaining the firepower value of the burner set by the user" specifically includes: obtaining the current firepower value of the burner after adjustment; the step of "assigning the firepower value of the burner set by the user to the position of the knob specified by the user" specifically includes: assigning the current firepower value of the burner to the current position of the knob.

4. The method for setting the firepower of a gas stove according to claim 1, characterized in that, The step of "obtaining the user-set firepower value of the stove head" specifically includes: obtaining the current firepower value of the stove head after it has been adjusted; the step of "obtaining the user-specified position of the knob" specifically includes: obtaining the current position of the knob after it has been rotated; the step of "assigning the user-set firepower value of the stove head to the user-specified position of the knob" specifically includes: assigning the current firepower value of the stove head to the current position of the knob.

5. The method for setting the firepower of a gas stove according to claim 1, characterized in that, The firepower setting command is entered by the user on the control panel of the gas stove.

6. The method for setting the firepower of a gas stove according to claim 1, characterized in that, The firepower setting command is input by the user on the operating terminal that communicates with the gas stove.

7. The method for setting the firepower of a gas stove according to claim 1, characterized in that, A sensor is installed on the knob, and the sensor is configured to detect the position of the knob.

8. The method for setting the firepower of a gas stove according to claim 7, characterized in that, The sensor is an angular displacement sensor or a photoelectric sensor.

9. The method for setting the firepower value of a gas stove according to any one of claims 1 to 8, characterized in that, The control valve is a solenoid valve.

10. A gas stove, characterized in that, The gas stove includes a controller configured to perform the firepower setting method for the gas stove according to any one of claims 1 to 9.

Citation Information

Patent Citations

  • Gas valve and gas cooker capable of adjusting fire power linearly

    CN110206915A

  • Rotary knob, gas stove and control method

    CN110454608A