Dual-mode controllable internal environment constant-temperature stove with camera
By introducing microcontrollers and human-computer interactive devices into the gas stove, the control of the constant temperature and constant power mode in multiple periods is solved, and the problem of difficulty in achieving constant temperature heating in the existing gas stove is improved, and the cooking effect and efficiency are improved.
Patent Information
- Application Number
- CN202410428802.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-10
- Publication Date
- 2025-06-13
AI Technical Summary
It is difficult for existing gas stoves to control the constant temperature and power of electric constant temperature for multiple periods, which makes it difficult to achieve constant temperature heating during the cooking process, affecting the cooking effect.
A controlled internal environment constant temperature stove with a camera is designed, and a microcontroller and human-computer interactive device are used to realize the constant temperature and constant power mode control for multiple periods. The closed-loop control is carried out through thermal power actuators and temperature sensors to ensure that the pot reaches the preset constant temperature and constant power state within different periods.
Constant temperature and constant power control over multiple periods is achieved, ensuring the stability of temperature and balanced power during the cooking process, and improving the cooking effect and efficiency.
Smart Images

Figure CN120140798A_ABST
Abstract
Description
[0001] Technical Field The present invention relates to household appliances, especially the field of in-environment constant-temperature stoves. Background Art
[0002] Ordinary gas stoves do not have a multi-period electric constant-temperature and constant-power system. It is impossible or very difficult to continue to improve the maturity after stir-frying until the juice is dried up, there is rice crust, baking, roasting, etc. The constant-temperature stove technology can solve this problem, and by matching between the pot and the groove, the free switching between gas and electricity can be realized. The operation is simple, with high gas fire, electric constant temperature, constant power, energy saving and emission reduction. Summary of the Invention In order to solve the above problems, the technical solution proposed by the present invention is:
[0003] 1. A controllable internal environment constant temperature stove with a camera, characterized in that it includes an outer stove body of the controllable internal environment constant temperature stove, an internal environment medium (not limited to gas, liquid, solid) of the controllable internal environment constant temperature stove. The outer stove body and the medium are fixedly arranged to form a main stove body. The main stove body is not limited to having a groove. The pot edge (the edge of the pot) of the cookware is not limited to being able to be sleeved on or completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking. The cookware is not limited to having a handle. The handle is not limited to being able to be embedded in the groove during use. The handle is not limited to being fixedly arranged on the edge. The position where the pot contacts the pot lid when placed on the stove is not limited to being lower than, equal to, or higher than the height of the outer stove body or the internal environment medium. A thermal power execution device fixedly arranged in the main stove body heats the internal solid medium, and then the internal solid medium heats the cookware. The cookware is not limited to having more than one pot handle. The main stove body is not limited to having more than one groove fixedly arranged. Users can set the desired duration of multiple time periods, the corresponding constant temperature and constant power modes for each time period, and the corresponding constant temperature and constant power values for each time period in the microcontroller fixedly arranged in the main stove body through the human-computer interaction device fixedly arranged on the main stove body. Furthermore, the microcontroller is connected to and capable of data interaction with a module of not less than one A / D conversion device and temperature sensor, and the module is fixedly arranged on the main stove body. Thus, the microcontroller obtains data from not less than one of the temperature sensors. The temperature sensing ends of the temperature sensors are not limited to detecting the temperatures of the cookware and the medium simultaneously or separately. The microcontroller drives the thermal power execution device through the power drive device fixedly arranged and connected to the main stove body according to the set value and the data value to achieve closed-loop control of heating the medium to achieve constant temperature control corresponding to the set value within each time period, and open-loop constant power control. The constant temperature control means that the temperature value fluctuates slightly above and below the constant temperature value or remains unchanged at the constant temperature value. The human-computer interaction device can display the temperature, power, remaining time, and temperature value of the current target quantity for each time period. A servo mechanism is arranged on the main stove body. The direction and angle of the servo mechanism are controlled by the microcontroller. A camera is arranged on the servo mechanism. The camera sends the collected audio and video to the microcontroller connected to it. The controllable internal environment constant temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller to communicate directly or indirectly through a server with other intelligent devices to interact the constant temperature and constant power modes corresponding to each time period and the corresponding constant temperature and constant power values for each time period to achieve constant temperature and constant power control corresponding to the set value within each time period of the medium, and to interact the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and to interact the audio and video data.
[0004] 2. A dual-mode controllable constant-temperature stove for internal environment. It consists of a gas stove top plate, an outer stove body, and a main stove body formed by fixedly arranging between the outer stove body and an internal environment medium (not limited to gas, liquid, solid). The thermal power execution device fixedly installed in the main stove body heats the internal solid medium, and then the internal solid medium heats the cookware. The cookware is not limited to having more than one pot handle, and the main stove body is not limited to having more than one groove fixedly installed therein. The edge of the cookware (the edge of the pot) is not limited to being able to fit over and completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking. The user can set the desired duration of multiple time periods, the corresponding constant temperature and constant power modes for each time period, and the corresponding constant temperature and constant power values for each time period in the microcontroller fixedly installed in the main stove body through the human-computer interaction device fixedly installed on the main stove body. Furthermore, the microcontroller is connected to and capable of data interaction with modules of more than one A / D conversion device and temperature sensor, and the modules are fixedly installed on the main stove body. Thus, the microcontroller obtains data from more than one of the temperature sensors. The temperature sensing ends of the temperature sensors are not limited to detecting the temperature of the cookware and the medium simultaneously or separately. The microcontroller drives the thermal power execution device through the power driving device fixedly installed and connected to the main stove body according to the set value and the data value to achieve closed-loop control for heating the medium and achieve constant temperature control corresponding to the set value within each time period, as well as open-loop constant power control. The constant temperature control means that the temperature value fluctuates slightly above and below the constant temperature value or remains unchanged at the constant temperature value. The main stove body is installed on the gas stove top plate and is not limited to being connected by two connecting devices. The gas stove burner is installed on the gas stove top plate and is placed at the opening of the main stove body. The ignition and flame size of the gas stove burner are controlled by the manual ignition device installed on the gas stove top plate. The dual-mode controllable internal environment constant temperature stove further includes a base that is not connected to the stove body and is placed independently. The base is jointly composed of a bottom plate and a column. The main stove body can be directly removed from the gas stove top plate or the connection state of the connecting device can be manually released and then removed. After removal, the stove body can be placed on the base, and there is a connecting component to connect and fix the stove body and the base to each other. And the whole after the column is embedded in the opening is used as an independent electrical appliance. The outer stove body and the medium of the controllable internal environment constant temperature stove are not limited to having one groove. The edge of the cookware (the edge of the pot) is not limited to being able to fit over the outer stove body and the medium or extend beyond the range of the outer stove body to ensure that oil and water do not fall into the internal environment during cooking. The cookware is not limited to having one handle, and the handle is not limited to being able to be embedded in the groove during use. The handle is not limited to being fixedly installed on the edge. It is not limited that the contact position between the pot and the pot lid when the pot is placed on the stove is lower than or equal to the outer stove body or the outer extension of the internal environment medium and the pot lid.The human-computer interaction device can display the temperature, power, remaining time, and temperature value of the current target quantity for each of the time periods; the main stove body is provided with a servo mechanism, the direction and angle of the servo mechanism are controlled by the microcontroller, a camera is arranged on the servo mechanism, and the camera sends the collected audio and video to the microcontroller connected thereto; the controllable internal environment constant-temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller to directly or indirectly communicate with other intelligent devices through a server to interact with the constant-temperature and constant-power modes corresponding to each time period and the constant-temperature and constant-power values corresponding to each of the time periods, so as to achieve constant-temperature and constant-power control corresponding to the set values within each of the time periods for the medium, and to interact with the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and to interact with the audio and video data.
[0005] 3. A method for using a dual-mode controllable internal environment constant-temperature stove: The dual-mode controllable internal environment constant-temperature stove has two modes when in use: when using gas to heat the cookware, the pot handle is not inserted into the groove, and when using the electric heating power to heat the medium and then heat the cookware, the pot handle is inserted into the groove, and at this time the cookware is in contact with the medium. BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 : Schematic diagram of the present invention Embodiment: 1. A controllable internal environment constant temperature stove with a camera, characterized in that it includes an outer stove body of the controllable internal environment constant temperature stove, an internal environment medium (not limited to gas, liquid, solid) of the controllable internal environment constant temperature stove. The outer stove body and the medium are fixedly arranged to form a main stove body. The main stove body is not limited to having a groove. The pot edge (the edge of the pot) of the cooking utensil is not limited to being able to be sleeved on or completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking. The cooking utensil is not limited to having a handle. The handle is not limited to being able to be embedded in the groove during use. The handle is not limited to being fixedly arranged on the edge. The position where the pot contacts the pot lid when placed on the stove is not limited to being lower than, equal to, or higher than the height of the outer stove body or the internal environment medium. The heat power execution device fixedly arranged in the main stove body heats the internal solid medium, and then the internal solid medium heats the cooking utensil. The cooking utensil is not limited to having more than one pot handle. The main stove body is not limited to having more than one groove fixedly arranged. The user can set the desired duration of multiple time periods, the corresponding constant temperature and constant power modes for each time period, and the corresponding constant temperature and constant power values for each time period through the human-computer interaction device fixedly arranged on the main stove body to the microcontroller fixedly arranged in the main stove body. Furthermore, the microcontroller is connected to and capable of data interaction with a module of not less than one A / D conversion device and temperature sensor, and the module is fixedly arranged on the main stove body. Thus, the microcontroller obtains data from not less than one of the temperature sensors. The temperature sensing ends of the temperature sensors are not limited to detecting the temperature of the cooking utensil and the medium simultaneously or separately. The microcontroller drives the heat power execution device through the power driving device fixedly arranged and connected to the main stove body according to the set value and the data value to realize closed-loop control of heating the medium to achieve constant temperature control corresponding to the set value within each time period, and open-loop constant power control. The constant temperature control means that the temperature value fluctuates slightly above and below the constant temperature value or remains unchanged at the constant temperature value. The human-computer interaction device can display the temperature, power, remaining time, and temperature value of the current target quantity for each time period. A servo mechanism is arranged on the main stove body. The direction and angle of the servo mechanism are controlled by the microcontroller. A camera is arranged on the servo mechanism. The camera sends the collected audio and video to the microcontroller connected to it.The described controllable internal environment constant temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller to communicate directly or indirectly through a server with other intelligent devices to interact with the constant temperature and constant power modes corresponding to each time period and the constant temperature and constant power values corresponding to each time period, so as to achieve the constant temperature and constant power control corresponding to the set values within each time period of the medium, and to interact with the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and to interact with the audio and video data. One end of a conductor that can be connected to an elastic machine is fixedly placed on the outer stove body of the controllable internal environment constant temperature stove in contact with the bottom of the pot. After being pressed down by the bottom of the pot, the bottom of the pot can contact the medium, and then the conductor controls the switch of a circuit of current. Whether it is conducted is detected by the single-chip microcomputer of the controllable internal environment constant temperature stove to judge whether the pot is placed on the stove and needs to be heated by the medium, so as to pause or stop the heating process;
[0007] 2. A dual-mode controllable internal environment constant temperature stove is composed of a gas stove top plate, an outer stove body, and a main stove body fixedly arranged between the outer stove body and an internal environment medium (not limited to gas, liquid, solid); The thermal power execution device fixedly installed in the main stove body heats the internal solid medium, and then the internal solid medium heats the cookware. The cookware is not limited to having more than one pot handle, and the main stove body is not limited to having more than one groove fixedly installed. The edge of the cookware (the edge of the pot) is not limited to being able to be sleeved on and completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking. The user can set the desired duration of multiple time periods, the corresponding constant temperature and constant power modes for each time period, and the corresponding constant temperature and constant power values for each time period in the microcontroller fixedly installed in the main stove body through the human-computer interaction device fixedly installed on the main stove body. Furthermore, the microcontroller is connected to and capable of data interaction with modules including but not limited to one A / D conversion device and temperature sensor, and the modules are fixedly installed on the main stove body. Thus, the microcontroller obtains data from more than one temperature sensor. The temperature sensing ends of the temperature sensors are not limited to detecting the temperatures of the cookware and the medium simultaneously or separately. The microcontroller drives the thermal power execution device through the power driving device fixedly connected to and installed on the main stove body according to the set values and the data values to achieve closed-loop control for heating the medium and realize constant temperature control corresponding to the set values within each time period, as well as open-loop constant power control. The constant temperature control means that the temperature value fluctuates slightly above and below the constant temperature value or remains unchanged. The main stove body is installed on the gas stove top plate and is not limited to being connected by two connecting devices. The gas stove burner is installed on the gas stove top plate and is placed at the opening of the main stove body. The ignition and the fire power of the gas stove burner are controlled by the manual ignition device installed on the gas stove top plate. The dual-mode controllable internal environment constant temperature stove further includes a base that is not connected to the stove body and is placed independently. The base is composed of a bottom plate and a column. The main stove body can be directly removed from the gas stove top plate or the connection state of the connecting device can be manually released and then removed. After removal, the stove body can be placed on the base, and there is a connecting component to connect and fix the stove body and the base to each other. And the whole after the column is embedded in the opening is used as an independent electrical appliance. The outer stove body and the medium of the controllable internal environment constant temperature stove are not limited to having one groove. The edge of the cookware (the edge of the pot) is not limited to being able to be sleeved on the outer stove body and the medium or exceeding the range of the outer stove body to ensure that oil and water do not fall into the internal environment during cooking. The cookware is not limited to having one handle. The handle is not limited to being able to be embedded in the groove during use. The handle is not limited to being fixedly installed on the edge. The contact position between the pot and the pot cover when the pot is placed on the stove for cooking is lower than or equal to the outer stove body or the extension of the internal environment medium and the pot cover.The human-computer interaction device can display the temperature, power, remaining time, and temperature value of the current target quantity for each of the time periods; the main cooking body is provided with a servo mechanism, the direction and angle of the servo mechanism are controlled by the microcontroller, a camera is arranged on the servo mechanism, and the camera sends the collected audio and video to the microcontroller connected thereto; the controllable internal environment constant-temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller and directly or indirectly communicating with other intelligent devices through a server to interact with the constant-temperature and constant-power modes corresponding to each of the time periods and the constant-temperature and constant-power values corresponding to each of the time periods, so as to realize the constant-temperature and constant-power control corresponding to the set values within each of the time periods for the medium, and to interact with the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and to interact with the audio and video data. One end of a conductor that can be connected to an elastic machine is fixedly arranged on the outer cooking body of the controllable internal environment constant-temperature stove to contact the bottom of the pot. After being pressed down by the bottom of the pot, the bottom of the pot can contact the medium, and then the conductor controls the switch of a circuit of current, and the single-chip microcomputer of the controllable internal environment constant-temperature stove detects whether it is conducted to judge whether the cookware is placed on the stove and needs to be heated by the medium, so as to pause or stop the heating process.
[0008] 3. A method for using a dual-mode controllable internal environment constant-temperature stove: The dual-mode controllable internal environment constant-temperature stove has two modes when in use: when using gas to heat the cookware, the pot handle is not inserted into the groove; when using the electric heating power to heat the medium and then heat the cookware, the pot handle is inserted into the groove, and at this time the cookware is in contact with the medium.
Claims
1. A controllable internal environment constant temperature stove with a camera is characterized by The outer stove body of the controllable internal environment constant temperature stove, the internal environment medium of the controllable internal environment constant temperature stove (not limited to gas, liquid, solid), the outer stove body and the medium are fixedly arranged to form the main stove body, the main stove body is not limited to having one groove, the pot edge (edge of the pot) of the pot is not limited to being able to be put on and completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking, the pot is not limited to having one handle, the handle is not limited to being embedded in the groove when in use, the handle is not limited to being fixedly arranged on the edge, the position where the pot is placed on the stove and contacts the pot cover when cooking is not limited to being lower than or equal to or higher than the height of the outer stove body or the internal environment medium; the thermal power actuator fixedly installed in the main stove body heats the internal solid medium, and then the internal solid medium heats the pot, the pot is not limited to having more than one pot handle, and is not limited to having more than one groove fixedly installed in the main stove body, and the user can use the human-machine interaction device fixedly installed in the main stove body to move the human-machine interaction device fixedly installed in the main stove body to the human-machine interaction device fixedly installed in the main stove body. The microcontroller sets the desired duration of multiple time periods and the constant temperature and constant power mode corresponding to each time period and the constant temperature and constant power values corresponding to each time period, and then the microcontroller is connected to a module capable of not limited to an A / D conversion device and a temperature sensor and performs data exchange, and the module is fixedly placed on the main stove body, so that the microcontroller obtains data not limited to one temperature sensor, and the temperature sensing end of the temperature sensor is not limited to detecting the temperature of the pot and the medium simultaneously or separately. The microcontroller drives the thermal power actuator according to the setting value and the data value through a power driving device connected and fixedly placed on the main stove body to realize closed-loop control to heat the medium to realize constant temperature control corresponding to the setting value in each time period, and open-loop constant power control; the constant temperature control is that the temperature value fluctuates slightly above and below the constant temperature value or keeps the constant temperature value unchanged; the human-computer interaction device can display the temperature, power, remaining time, and current target temperature value of each time period; The main stove body is equipped with a servo mechanism, and the direction and angle of the servo mechanism are controlled by the microcontroller. A camera is installed on the servo mechanism, and the camera sends the collected audio and video to the microcontroller connected thereto; the controllable internal environment constant temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller to communicate with other intelligent devices directly or indirectly through a server to interact with the constant temperature and constant power modes corresponding to each time period and the constant temperature and constant power values corresponding to each time period, thereby realizing constant temperature and constant power control corresponding to the set value of the medium in each time period, and interacting with the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and interacting with the audio and video data; the outer stove body of the controllable internal environment constant temperature stove is fixedly equipped with a conductor that can be connected to an elastic machine to contact the bottom of the pot. After being pressed down by the bottom of the pot, the bottom of the pot can contact the medium, and then the switch of the current controlled by the conductor is detected by the single-chip microcomputer of the controllable internal environment constant temperature stove to determine whether the pot is placed on the stove and needs to be heated by the medium, thereby pausing or stopping the heating process.
2. A dual-mode controllable internal environment constant temperature stove, which consists of a gas stove top, an outer stove body, and a main stove body fixedly arranged between the outer stove body and the internal environment medium (not limited to gas, liquid, and solid). The thermal power actuator fixedly arranged in the main stove body heats the internal solid medium, and then the internal solid medium heats the pot. The pot is not limited to having more than one handle, and is not limited to having more than one groove fixedly arranged in the main stove body. The pot edge (edge of the pot) of the pot is not limited to being able to be covered on or completely cover the upper part of the main stove body to ensure that oil and water do not fall into the internal environment during cooking. The user can set the desired multi-time duration and the constant temperature and constant power mode corresponding to each time period and the constant temperature and constant power value corresponding to each time period to the microcontroller fixedly arranged in the main stove body through the human-machine interaction device fixedly arranged in the main stove body, and then the microcontroller is connected to a module capable of not limited to an A / D conversion device and a temperature sensor and performs Data interaction, and the module is fixedly installed with the main stove body, so that the microcontroller obtains data of not limited to one temperature sensor, and the temperature sensing end of the temperature sensor is not limited to detecting the temperature of the cookware and the medium simultaneously or separately, and the microcontroller drives the thermal power actuator according to the setting value and the data value through the power driving device connected and fixedly installed on the main stove body to realize closed-loop control to heat the medium to realize constant temperature control corresponding to the setting value in each time period, and open-loop constant power control; the constant temperature control is that the temperature value fluctuates slightly above and below the constant temperature value or keeps the constant temperature value unchanged; the main stove body is placed on the gas stove plate and is not limited to two connected by a connecting device, the gas stove head is placed on the gas stove plate and placed in the opening of the main stove body, and the ignition and firepower of the gas stove head are controlled by the manual ignition device installed on the gas stove plate. The dual-mode controllable internal environment constant temperature stove also includes a base that is not connected to the stove body and is placed independently. The base is composed of a bottom plate and a column. The main stove body can be directly removed from the gas stove table or removed after the connection state of the connecting device is manually released. After being removed, the stove body can be placed on the base, and a connecting component is provided to connect and fix the stove body and the base to each other, and the column is embedded in the opening as a whole and is used as an independent electrical appliance; the outer stove body and the medium of the controllable internal environment constant temperature stove are not limited to having a groove, and the pot edge (edge of the pot) of the pot is not limited to being able to be covered on the outer stove body and the medium or exceeding the range of the outer stove body to ensure that oil and water do not fall into the internal environment during cooking. The pot is not limited to having a handle, and is not limited to the handle being embedded in the groove when in use. The handle is not limited to being fixedly placed on the edge, and is not limited to the contact position of the pot with the pot cover when the pot is placed on the stove for cooking is lower than or equal to the outer stove body or the extension of the internal environment medium and the pot cover.The human-machine interaction device can display the temperature, power, remaining time, and temperature value of the current target quantity for each of the time periods; the main stove body is provided with a servo mechanism, the direction and angle of the servo mechanism is controlled by the microcontroller, and a camera is provided on the servo mechanism, and the camera sends the collected audio and video to the microcontroller connected thereto; the controllable internal environment constant temperature stove with a camera is not limited to including a remote data transmission module connected to the microcontroller to communicate with other intelligent devices directly or indirectly through a server to interact with the constant temperature and constant power modes corresponding to each of the time periods and the constant temperature and constant power values corresponding to each of the time periods, thereby realizing constant temperature and constant power control corresponding to the set values of the medium in each of the time periods, and interacting with the direction and angle data of the servo mechanism to control the position and angle of the servo mechanism, and interacting with the audio and video data; the outer stove body of the controllable internal environment constant temperature stove is fixedly provided with a conductor that can be connected to an elastic machine to contact the bottom of the pot, and the bottom of the pot can contact the medium after being pressed down by the bottom of the pot, and then the switch of the current controlled by the conductor is detected by the single-chip microcomputer of the controllable internal environment constant temperature stove to determine whether the pot is placed on the stove and needs to be heated by the medium, thereby pausing or stopping the heating process.
3. A method for using a dual-mode controllable internal environment constant temperature stove: The dual-mode controllable internal environment constant temperature stove can be used in two ways: when the cookware is heated by gas, the pot handle is not embedded in the groove; when the electric heating power is used to heat the medium and then heat the cookware, the pot handle is embedded in the groove, and at this time the cookware is in contact with the medium or close to zero distance contact.