WO2017190464A1 - 烹饪电器及其控制参数设置方法 - Google Patents

烹饪电器及其控制参数设置方法 Download PDF

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Publication number
WO2017190464A1
WO2017190464A1 PCT/CN2016/100169 CN2016100169W WO2017190464A1 WO 2017190464 A1 WO2017190464 A1 WO 2017190464A1 CN 2016100169 W CN2016100169 W CN 2016100169W WO 2017190464 A1 WO2017190464 A1 WO 2017190464A1
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WIPO (PCT)
Prior art keywords
parameter
coordinate
instruction
coordinate axis
control parameter
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PCT/CN2016/100169
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English (en)
French (fr)
Inventor
姜大秉
朱洁乐
彭淑方
Original Assignee
广东美的厨房电器制造有限公司
美的集团股份有限公司
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.)
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Publication date
Priority claimed from CN201610298279.5A external-priority patent/CN105843124A/zh
Priority claimed from CN201610375898.XA external-priority patent/CN105919398A/zh
Application filed by 广东美的厨房电器制造有限公司, 美的集团股份有限公司 filed Critical 广东美的厨房电器制造有限公司
Publication of WO2017190464A1 publication Critical patent/WO2017190464A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J37/00Baking; Roasting; Grilling; Frying
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range

Definitions

  • the invention belongs to the technical field of electrical appliances manufacturing, and in particular relates to a cooking appliance and a control parameter setting method of the cooking appliance.
  • the setting process for the heating control parameters mainly includes:
  • STEP1 Select firepower and trigger the fire button
  • STEP2 trigger the corresponding fire button
  • STEP3 Select time, trigger time button
  • STEP4 Select the minute and second of the time.
  • step STEP1 The above is the heating time of one heating stage and the setting of the heating power. In the next stage setting, it is necessary to repeat the setting from step STEP1.
  • the present invention aims to solve at least one of the technical problems in the related art to some extent.
  • the present invention needs to provide a cooking appliance that is more convenient to control parameter settings and simple to operate.
  • the invention also provides a method for setting control parameters of a cooking appliance.
  • a cooking appliance includes: a touch display screen for providing a parameter setting interface for receiving an input instruction of a user through the parameter setting interface; and a control module
  • the control module is connected to the touch display screen, and the control module is configured to acquire, according to the input instruction, a plurality of control parameter values of the cooking appliance, so that the cooking appliance according to the plurality of control parameter values run.
  • the cooking appliance according to the embodiment of the present invention receives an input instruction of the user through the parameter setting interface, and the control module acquires a plurality of control parameter values of the cooking appliance according to the input instruction, so that the cooking appliance operates according to the plurality of control parameter values. Therefore, multiple control parameter values are placed in the same parameter setting interface, so that the parameter setting interface is more intuitive and clear.
  • the secondary operation can complete the setting of multiple parameters at the same time, which simplifies the operation steps, improves the convenience of operation, and improves the user experience.
  • the touch display screen includes a display module and an input module, wherein the display module is configured to provide the parameter setting interface, and the parameter setting interface includes coordinate information of the control parameter;
  • the input module is configured to receive an input instruction of the user;
  • the control module is configured to determine a selected coordinate point in the coordinate information of the control parameter according to the input instruction, and obtain the multiple control according to the selected coordinate point Parameter value.
  • the cooking appliance disclosed by the invention can select the coordinate point of the corresponding parameter in the parameter setting interface of the display module through the input module, and the control module can determine the set value of the control parameter corresponding to the coordinate point, without triggering the parameter. Press the button to select parameters and parameter values, the operation is simple, and it is more convenient for the user to set the parameters.
  • control parameter includes a first parameter and a second parameter, and coordinate information of the first parameter and coordinate information of the second parameter are located in a same coordinate system of the same parameter setting interface, where the first The parameter is set in a first coordinate axis in the same coordinate system, and the second parameter is set in a second coordinate axis in the same coordinate system.
  • the input module is further configured to receive a click instruction of the user, and the control module is further configured to determine the selected coordinate point in the same coordinate system according to the click instruction, And obtaining a first parameter value corresponding to the first coordinate axis and a second parameter value corresponding to the second coordinate axis, wherein the first parameter value and the second parameter value are used as the heating stage Control parameter value.
  • the input module is further configured to receive a sliding instruction of the user along a first coordinate axis direction and an edge of the starting point of the sliding instruction from the first coordinate axis direction a sliding instruction in the direction of the two coordinate axes
  • the control module further configured to determine an end point of the sliding instruction in the direction of the first coordinate axis and an ending point of the sliding instruction in the direction of the second coordinate axis as the selection coordinate Pointing, and obtaining an end point of the sliding instruction in the direction of the first coordinate axis corresponding to the first parameter value of the first coordinate axis, and obtaining an end point of the sliding instruction in the direction of the second coordinate axis corresponding to the A second parameter value of the second coordinate axis, the first parameter value and the second parameter value being the control parameter values of the present heating phase.
  • the input module is further configured to receive an edge from the end point of the sliding instruction along the second coordinate axis direction The sliding instruction of the first coordinate axis direction and perpendicular to the second coordinate axis to switch to the setting of the control parameter value of the next heating stage.
  • the input module is further configured to receive a coordinate movement instruction of the user
  • the control module is further configured to move a display area of the coordinate information of the control parameter in the parameter setting interface according to the coordinate movement instruction.
  • the first parameter includes a heating fire or a heating time
  • the second parameter includes a heating time or a heating power
  • the display module is further configured to display control parameter values for each of the heating stages.
  • the cooking appliance may be a cooking device in the following embodiments
  • the touch display screen and the control module may be configured as an interaction device of the cooking device in the following embodiments
  • the control module may be in the following embodiments.
  • the processing unit, the parameter setting interface may be an interactive interface in the following embodiments
  • the input command may be a touch command in the following embodiments
  • the control parameter value may be an operating parameter in the following embodiments.
  • an interaction device for a cooking device includes: a touch display screen for providing an interaction interface to receive a user's touch instruction through the interaction interface; a unit, the processing unit is connected to the touch display screen, and the processing unit is configured to acquire a plurality of operating parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters .
  • the interaction device of the cooking device receives the touch instruction of the user through the interaction interface, and the processing unit acquires a plurality of working parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters. Therefore, the interaction device puts a plurality of working parameters in the same interaction interface, so that the interaction interface is more intuitive and intuitive, and can complete setting of multiple parameters at the same time by one operation, which simplifies the operation steps and improves the convenience of operation. , enhance the user experience.
  • the touch display screen provides an interactive interface in a coordinate axis manner, wherein the processing unit determines a coordinate point touched by a user on the coordinate axis according to the touch instruction, and according to the A coordinate point touched by the user on the coordinate axis acquires a plurality of operating parameters of the cooking device.
  • the plurality of operating parameters may include a temperature parameter and a time parameter.
  • the processing unit is further configured to control the touch display screen to display the plurality of operating parameters.
  • the touch display screen is a TFT display screen.
  • Embodiments of the present invention provide a cooking apparatus including the interactive device of the cooking apparatus.
  • a plurality of working parameters can be placed in the same interactive interface through the interaction device of the cooking device, so that the interactive interface is more intuitive and intuitive, and multiple parameters can be completed simultaneously by one operation.
  • the setup simplifies the operation steps, improves the convenience of operation, and enhances the user experience.
  • a cooking appliance includes: a display module, configured to provide a parameter setting interface, the parameter setting interface includes coordinate information of a control parameter; and an input module, configured to receive an input instruction of the user; And a control module, configured to determine a selected coordinate point in the coordinate information of the control parameter according to the input instruction, and obtain a control parameter value according to the selected coordinate point.
  • the cooking appliance disclosed by the invention can select corresponding parameters in the parameter setting interface of the display module through the input module The coordinate point, and then the control module can determine the set value of the coordinate point corresponding to the control parameter, without triggering the parameter button and then selecting the parameter and the parameter value, the operation is simple, and the user is more convenient to set the parameter.
  • control parameter includes a first parameter and a second parameter, and coordinate information of the first parameter and coordinate information of the second parameter are located in a same coordinate system of the same parameter setting interface, where the first The parameter is set in a first coordinate axis in the same coordinate system, and the second parameter is set in a second coordinate axis in the same coordinate system.
  • the input module is further configured to receive a click instruction of the user, and the control module is further configured to determine the selected coordinate point in the same coordinate system according to the click instruction, And obtaining a first parameter value corresponding to the first coordinate axis and a second parameter value corresponding to the second coordinate axis, wherein the first parameter value and the second parameter value are used as the heating stage Control parameter value.
  • the input module is further configured to receive a sliding instruction of the user along a first coordinate axis direction and an edge of the starting point of the sliding instruction from the first coordinate axis direction a sliding instruction in the direction of the two coordinate axes
  • the control module further configured to determine an end point of the sliding instruction in the direction of the first coordinate axis and an ending point of the sliding instruction in the direction of the second coordinate axis as the selection coordinate Pointing, and obtaining an end point of the sliding instruction in the direction of the first coordinate axis corresponding to the first parameter value of the first coordinate axis, and obtaining an end point of the sliding instruction in the direction of the second coordinate axis corresponding to the A second parameter value of the second coordinate axis, the first parameter value and the second parameter value being the control parameter values of the present heating phase.
  • the input module is further configured to receive an end point of the sliding instruction from the second coordinate axis direction.
  • the input module is further configured to receive a coordinate movement instruction of the user
  • the control module is further configured to move a display area of the coordinate information of the control parameter in the parameter setting interface according to the coordinate movement instruction.
  • the first parameter includes a heating fire or a heating time
  • the second parameter includes a heating time or a heating power
  • the display module is further configured to display control parameter values for each of the heating stages.
  • another embodiment of the present invention provides a control parameter setting method for a cooking appliance, comprising the steps of: providing a parameter setting interface through a touch display screen to receive an input instruction of a user through the parameter setting interface; The input command acquires a plurality of control parameter values of the cooking appliance to cause the cooking appliance to operate in accordance with the plurality of control parameter values.
  • the input instruction of the user is received through the parameter setting interface, and then the plurality of control parameter values of the cooking appliance are obtained according to the input instruction, so that the cooking appliance is controlled according to multiple The parameter value is run. Therefore, the method puts a plurality of control parameter values in the same parameter setting interface, so that the parameter setting interface is more intuitive and intuitive, and can complete setting of multiple parameters at the same time by one operation, simplifying the operation steps and improving the operation. Convenience enhances the user experience.
  • the touch display screen includes a display module, the display module provides a parameter setting interface, and the parameter setting interface includes coordinate information of the control parameter, and the control parameter setting method includes the following steps: Receiving an input instruction of the user; determining a selected coordinate point in the coordinate information of the control parameter according to the input instruction; obtaining a control parameter value according to the selected coordinate point.
  • control parameter setting method of the cooking appliance of the embodiment of the invention the control parameter is displayed in the form of coordinate information in the parameter setting interface, and the selection coordinate point of the coordinate information of the control parameter can be determined according to the input instruction, and then according to the selected coordinate point
  • the control parameter value in the corresponding coordinate information can be obtained, and no complicated selection is needed, and the method is simple and convenient for the user to operate.
  • control parameter includes a first parameter and a second parameter, and coordinate information of the first parameter and coordinate information of the second parameter are located in a same coordinate system of the same parameter setting interface,
  • the first parameter is set in a first coordinate axis in the same coordinate system, and the second parameter is set in a second coordinate axis in the same coordinate system.
  • the method further includes: receiving a click instruction of the user; determining the selected coordinate point in the same coordinate system according to the click instruction; and obtaining the selected coordinate point corresponding a first parameter value of the first coordinate axis and a second parameter value corresponding to the second coordinate axis, wherein the first parameter value and the second parameter value are used as control parameter values of the heating stage.
  • the method further includes: receiving a sliding instruction of the user in a direction of the first coordinate axis and a second along the end point of the sliding instruction along the direction of the first coordinate axis a sliding instruction in the coordinate axis direction; determining an end point of the sliding instruction along the first coordinate axis direction and an ending point of the sliding instruction in the second coordinate axis direction as the selected coordinate point; and obtaining the edge
  • An end point of the sliding instruction in the coordinate axis direction corresponds to the first parameter value of the first coordinate axis
  • an end point of the sliding instruction in the second coordinate axis direction is obtained corresponding to the second parameter of the second coordinate axis
  • a value wherein the first parameter value and the second parameter value are used as control parameter values of the heating stage.
  • the method further includes: receiving the first along the beginning of the end point of the sliding instruction along the second coordinate axis direction A sliding command in the direction of the coordinate axis and perpendicular to the second coordinate axis to switch to the setting of the control parameter value of the next heating phase.
  • the method further includes: receiving a coordinate movement instruction of the user; and moving a display area of the coordinate information of the control parameter in the parameter setting interface according to the coordinate movement instruction.
  • the first parameter includes a heating fire or a heating time
  • the second parameter includes a heating time or a heating power
  • the method further comprises: displaying the control parameter values for each heating stage by the display module, which is more intuitive.
  • the cooking appliance may be a cooking device in the following embodiments
  • the touch display screen may be used to construct an interaction device of the cooking device in the following embodiments
  • the control parameter setting method is the following embodiment.
  • the interaction method, the parameter setting interface may be the interaction interface in the following embodiments
  • the input instruction may be a touch instruction in the following embodiments
  • the control parameter value may be an operation parameter in the following embodiments.
  • an embodiment of the present invention provides a method for interacting a cooking device, comprising the steps of: receiving an interactive interface to receive a user's touch instruction through the interactive interface by touching a display screen; The instructions acquire a plurality of operating parameters of the cooking device to cause the cooking device to operate in accordance with the plurality of operating parameters.
  • the interaction method of the cooking device receives a touch instruction of the user through the interaction interface, and then acquires a plurality of working parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters. Therefore, the interaction method puts multiple working parameters in the same interactive interface, so that the interactive interface is more intuitive and intuitive, and can complete multiple parameter settings at the same time by one operation, simplifying the operation steps and improving the convenience of operation. , enhance the user experience.
  • the touch display screen provides an interactive interface in a coordinate axis manner
  • the acquiring a plurality of operating parameters of the cooking device according to the touch instruction comprises: determining according to the touch instruction a coordinate point touched by the user on the coordinate axis; acquiring a plurality of operating parameters of the cooking device according to the coordinate point touched by the user on the coordinate axis.
  • the plurality of operating parameters may include a temperature parameter and a time parameter.
  • the method of interacting the cooking device further comprises: controlling the touch display screen to display the plurality of operating parameters.
  • another aspect of the present invention provides a method for setting a control parameter of a cooking appliance, wherein the cooking appliance includes a display module, and the display module provides a parameter setting interface, and the parameter setting interface includes Controlling coordinate information of the parameter, the control parameter setting method comprising: receiving an input instruction of the user; determining a selected coordinate point in the coordinate information of the control parameter according to the input instruction; and obtaining the selected coordinate point according to the selected coordinate point Control parameter values.
  • control parameter setting method of the cooking appliance of the embodiment of the invention the control parameter is displayed in the form of coordinate information in the parameter setting interface, and the selection coordinate point of the coordinate information of the control parameter can be determined according to the input instruction, and then according to the selection By selecting the coordinate point, the control parameter value in the corresponding coordinate information can be obtained, and no complicated selection is needed, and the method is simple and convenient for the user to operate.
  • control parameter includes a first parameter and a second parameter, and coordinate information of the first parameter and coordinate information of the second parameter are located in a same coordinate system of the same parameter setting interface,
  • the first parameter is set in a first coordinate axis in the same coordinate system, and the second parameter is set in a second coordinate axis in the same coordinate system.
  • the method further includes: receiving a click instruction of the user; determining the selected coordinate point in the same coordinate system according to the click instruction; and obtaining the selected coordinate point corresponding a first parameter value of the first coordinate axis and a second parameter value corresponding to the second coordinate axis, wherein the first parameter value and the second parameter value are used as control parameter values of the heating stage.
  • the method further includes: receiving a sliding instruction of the user in a direction of the first coordinate axis and a second along the end point of the sliding instruction along the direction of the first coordinate axis a sliding instruction in the coordinate axis direction; determining an end point of the sliding instruction along the first coordinate axis direction and an ending point of the sliding instruction in the second coordinate axis direction as the selected coordinate point; and obtaining the edge
  • An end point of the sliding instruction in the coordinate axis direction corresponds to the first parameter value of the first coordinate axis
  • an end point of the sliding instruction in the second coordinate axis direction is obtained corresponding to the second parameter of the second coordinate axis
  • a value wherein the first parameter value and the second parameter value are used as control parameter values of the heating stage.
  • the method further includes: receiving the first along the beginning of the end point of the sliding instruction along the second coordinate axis direction A sliding command in the direction of the coordinate axis and perpendicular to the second coordinate axis to switch to the setting of the control parameter value of the next heating phase.
  • the method further includes: receiving a coordinate movement instruction of the user; and moving a display area of the coordinate information of the control parameter in the parameter setting interface according to the coordinate movement instruction.
  • the first parameter includes a heating fire or a heating time
  • the second parameter includes a heating time or a heating power
  • the method further comprises: displaying the control parameter values for each heating stage by the display module, which is more intuitive.
  • FIG. 1 is a block schematic diagram of an interaction device of a cooking apparatus in accordance with an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an interactive interface in accordance with one embodiment of the present invention.
  • FIG. 3 is a schematic diagram of an interaction interface according to another embodiment of the present invention.
  • FIG. 4 is a flow chart of a method of interaction of a cooking device in accordance with an embodiment of the present invention.
  • FIG. 5 is a block diagram of a cooking appliance in accordance with one embodiment of the present invention.
  • FIG. 6 is a schematic diagram of display content of a display module according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of display content of a display module according to another embodiment of the present invention.
  • Figure 8 is a flow chart of a method of setting control parameters of a cooking appliance in accordance with one embodiment of the present invention.
  • FIGS. 1-3 A cooking appliance according to an embodiment of the present invention will now be described with reference to FIGS. 1-3.
  • the cooking appliance comprises a touch display screen and a control module, wherein the touch display screen is used to provide a parameter setting interface to receive an input instruction of the user through the parameter setting interface; the control module is connected to the touch display screen, and the control module And a plurality of control parameter values for obtaining the cooking appliance according to the input instruction, so that the cooking appliance operates according to the plurality of control parameter values.
  • the cooking appliance may be the cooking device in the embodiment of FIG. 1-3
  • the touch display screen and the control module may be configured as an interaction device of the cooking device in the embodiment of FIG. 1-3
  • the control module may be a figure.
  • the processing unit 21 in the 1-3 embodiment, the parameter setting interface may be the interaction interface in the embodiment of FIG. 1-3, and the input instruction may be the touch instruction in the embodiment of FIG. 1-3, and the control parameter value may be FIG. 3 operating parameters in the embodiment.
  • Figure 1 is a block schematic diagram of an interaction device of a cooking device in accordance with an embodiment of the present invention.
  • the interaction device includes a touch display screen 11 and a processing unit 21.
  • FIG. 1 is a block schematic diagram of an interactive device of a cooking device in accordance with an embodiment of the present invention.
  • the interaction device includes a touch display screen 11 and a processing unit 21.
  • the touch display screen 11 is configured to provide an interactive interface to receive a touch instruction of the user through the interaction interface; the processing unit 21 is connected to the touch display screen 11 , and the processing unit 21 is configured to acquire a plurality of working parameters of the cooking device according to the touch instruction, so that The cooking equipment operates according to multiple operating parameters.
  • the user can complete the operations of clicking, double-clicking, short-pressing, long-pressing, zooming, sliding, etc. by touching the display screen 11, while touching the interface on the display screen 11 can respond accordingly according to the user's operation. change. For example, when the user clicks on the hot air grill setting function, the touch screen 11 can enter the interactive interface as shown in FIG. 2.
  • the touch display screen 11 provides an interactive interface (the interactive interface can be as shown in FIGS. 2 and 3), the user can touch the corresponding position of the touch display screen 11 as needed to complete the setting of multiple working parameters at the same time.
  • the touch display screen 11 outputs a touch signal to the processing unit 21 according to the touch of the user.
  • the processing unit 21 is configured to acquire a plurality of operating parameters corresponding to the position according to the touch signal, and the control device of the cooking device performs the cooking device according to the plurality of operating parameters. control.
  • the touch display screen 11 may provide an interactive interface in a coordinate axis manner, wherein the processing unit 21 determines coordinate points touched by the user on the coordinate axis according to the touch instruction. And acquiring a plurality of operating parameters of the cooking device according to coordinate points touched by the user on the coordinate axis.
  • the plurality of operating parameters may include a temperature parameter and a time parameter, that is, a cooking temperature and a cooking time.
  • an XY coordinate axis can be set on the interactive interface, and the temperature parameter and the time parameter are displayed on the same XY coordinate axis, wherein the abscissa axis X can display the preset time, and the ordinate axis Y can display the preset Set the temperature, and a plurality of preset times can be arranged at preset time intervals, such as 10:00 (ie 10 minutes), 20:00 (ie 20 minutes), 30:00 (ie 30 minutes), 40:00 (ie 40 minutes), 50:00 (ie 50 minutes), 60:00 (ie 60 minutes), multiple preset temperatures can be arranged at preset temperature intervals, such as 160 degrees Celsius, 180 degrees Celsius, 200 degrees Celsius, 220 degrees Celsius, 240 degrees Celsius .
  • the user can complete the time and temperature settings at the same time by clicking on the relevant area in the XY axis. As shown in FIG. 3, the user can select a temperature parameter and a time parameter to be set by pressing a coordinate point on the interaction interface, and the interaction interface can identify the current user by displaying a preset identifier such as the gray dot in FIG. The area below, and the interactive interface hides the preset identifier when the user releases the finger, and is no longer displayed.
  • the processing unit 21 determines the coordinate point touched by the user according to the user's touch (30:00). , 220), and according to the coordinate point, the time parameter is determined to be 30:00 and the temperature parameter is 220 degrees Celsius.
  • the cooking device when the start button is triggered by the user, the cooking device performs cooking with 220 degrees and 30 minutes as control parameters, ie the control device of the cooking device can control the cooking device to heat at 220 degrees Celsius and heat for 30 minutes.
  • the cancel button when the cancel button is triggered by the user, the user can reselect the desired multiple operating parameters.
  • the processing unit 21 is further configured to control the touch display screen 11 to display a plurality of operating parameters.
  • the processing unit 21 can control the touch display screen 11 to automatically display the temperature parameter and the time parameter selected by the user to the display frame above the interaction interface, for example, as shown in FIG. 3 .
  • the processing unit 21 can display 220 through the display box above the interaction interface. Degree and 30 minutes and recorded.
  • the temperature parameter and the time parameter are displayed as 0 when the interactive interface is first entered and the user does not perform any operation.
  • the touch display screen 11 may be a TFT (Thin Film Transistor) display screen.
  • TFT Thin Film Transistor
  • the interaction device of the cooking device is suitable for a microwave oven or a microwave oven, and is particularly suitable for a TFT display screen and a full-screen touch microwave oven or microwave oven, and the aforementioned microwave oven or microwave oven can interact with the user through the TFT display screen. And through the TFT display screen to display the user interface.
  • the hot air grilling function when the hot air grilling function is performed in a microwave oven or a microwave oven, the user needs to set the temperature and time to start cooking.
  • the embodiment of the invention sets an coordinate axis and displays the temperature and time parameters on the same coordinate axis, and the user can complete the time and temperature setting at the same time by clicking the relevant area in the coordinate axis, thereby simplifying the user's
  • the operation process enhances the user experience.
  • the interaction device of the cooking device receives the user's touch instruction through the interaction interface, and the processing unit acquires a plurality of working parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters. Therefore, the interaction device puts a plurality of working parameters in the same interaction interface, so that the interaction interface is more intuitive and intuitive, and can complete setting of multiple parameters at the same time by one operation, which simplifies the operation steps and improves the convenience of operation. , enhance the user experience.
  • the present invention also proposes a cooking apparatus comprising the interactive device of the cooking apparatus of the above embodiment.
  • multiple interaction parameters can be placed in the same interaction interface through the interaction device of the cooking device, so that the interaction interface is more intuitive and clear, and multiple parameters can be completed simultaneously by one operation.
  • the setting simplifies the operation steps, improves the convenience of operation, and improves the user experience.
  • the touch display screen may include a display module and an input module, wherein the display module is configured to provide a parameter setting interface, the parameter setting interface includes coordinate information of the control parameter, and the input module is configured to receive the input instruction of the user.
  • the control module is configured to determine a selected coordinate point in the coordinate information of the control parameter according to the input instruction, and obtain a plurality of control parameter values according to the selected coordinate point.
  • FIG. 5 is a block diagram of a cooking appliance, including a display module 10, an input module 20, and a control module 30, as shown in FIG. 5, in accordance with an embodiment of the present invention.
  • the cooking appliance 100 can include, for example, a rice cooker, an induction cooker, an electric kettle.
  • the display module 10 is configured to provide a parameter setting interface, where the parameter setting interface includes coordinate information of the control parameter, for example, coordinate information including heating fire power and coordinate information of the heating time.
  • the input module 20 is configured to receive an input instruction of a user.
  • the control module 30 is configured to determine a selected coordinate point in the coordinate information of the control parameter according to the input instruction, and obtain a control parameter value according to the selected coordinate point. Briefly, the user can select the coordinate point of the corresponding parameter in the parameter setting interface of the display module 10 through the input module 20, and then the control module 30 can determine the set value of the coordinate point corresponding to the control parameter, without triggering the parameter button. Select parameters and parameter values, the operation is simple, and it is more convenient for the user to set the parameters.
  • the coordinate information of different control parameters can be respectively set in an independent coordinate system, and the user can select the set coordinate point of each parameter, that is, the selection coordinate point of the coordinate information, according to the need, to determine the corresponding parameter setting value.
  • the coordinate information of the control parameters can also be set in the same coordinate system.
  • the control parameter includes a first parameter and a second parameter, such as heating heating power and heating time, and the coordinate information of the first parameter and the coordinate information of the second parameter are located in the same coordinate system of the same parameter setting interface.
  • the first parameter is set in a first coordinate axis in the same coordinate system
  • the second parameter is set in a second coordinate axis in the same coordinate system. It can be known from the related mathematical knowledge that in the two-dimensional coordinate system with respect to the first parameter and the second parameter, the corresponding first parameter value and second parameter value can be determined by one coordinate point.
  • the input module 20 can receive a click command of the user or a sliding instruction in successive directions.
  • the input module 20 is further configured to receive a click instruction of the user
  • the control module 30 is further configured to determine, according to the click instruction, a selected coordinate point in the same coordinate system in which the first parameter and the second parameter are located, and Obtaining a first parameter value corresponding to the first coordinate axis and a second parameter value corresponding to the second coordinate axis, the first parameter value and the second parameter value are used as control parameter values of the heating stage, that is, the user can By selecting one coordinate point in the two-dimensional coordinate system composed of the first parameter and the second parameter by the input module 20, the control parameter value of the current heating stage can be set, which is very convenient and simple to operate. Then select another coordinate point in the coordinate system to determine the control parameter value of the next heating stage until the control parameters of each heating stage are set.
  • the input module 20 is further configured to receive a sliding instruction of the user along the first coordinate axis direction and a direction along the second coordinate axis starting from an end point of the sliding instruction along the first coordinate axis direction.
  • the control module 30 is further configured to determine an end point of the sliding instruction along the first coordinate axis direction and an ending point of the sliding instruction along the second coordinate axis direction as the selected coordinate point, and obtain the direction along the first coordinate axis
  • the end point of the sliding instruction corresponds to the first parameter value of the first coordinate axis
  • the end point of the sliding instruction along the second coordinate axis direction is obtained corresponding to the second parameter value of the second coordinate axis, the first parameter value and the second parameter
  • the value is used as the control parameter value for this heating phase. That is to say, the user can set the control parameters by performing the sliding operation through the input module 20.
  • the input module 20 is further configured to receive the first coordinate axis direction and the vertical direction from the end point of the sliding instruction in the second coordinate axis direction as described above. a sliding command on the second coordinate axis to switch to the setting of the control parameter value of the next heating stage, and then the control module 30 according to the upper
  • the setting process of the control parameters of the surface heating stage sets the setting of the control parameters of the next heating stage according to the sliding command until the parameter setting of the last heating stage is completed.
  • the first parameter may comprise a heating fire or a heating time
  • the second parameter may comprise a heating time or a heating fire.
  • the first coordinate axis may be a vertical axis or a horizontal axis in the coordinate system.
  • the second coordinate axis may be a horizontal axis or a vertical axis in the coordinate system.
  • the first axis may be set first.
  • the parameter can also set the second parameter first.
  • the display module 10 can also display the control parameter values of each heating stage, so that the user can be more directly provided to the user, and the user can know the set control parameters in time.
  • the heating power and the heating time are in the same coordinate system, wherein the heating power is the vertical axis in the coordinate system, and the heating axis is the horizontal axis in the coordinate system, which is called the time coordinate axis.
  • the control parameter setting process of the example is explained.
  • the fire point is the starting point, and sliding at the point along the time axis axis indicates that the heating power has been selected.
  • the coordinate point can be marked with the color A, and the sliding time can be selected to continue the required heating time, for example, 5 minutes.
  • the axis can be parallelly slid along the axis as shown in FIG. 6, or can be slid along the curve.
  • the display in the parameter setting interface of the display module 10 displays a straight line or displays the current corresponding time point along with the sliding instruction of the input module 20.
  • the heating time point of the first heating stage may be linearly up or down (ie, there is a turning point), and then the control parameter setting of entering the second heating stage is considered, that is, the second heating stage is selected.
  • the heating fire power is, for example, the fire power 1.
  • the display module 10 can display the heating fire power and the heating time set in the first heating stage as shown in FIGS. 6 and 7. When the coordinate point of the firepower 1 slides along the time axis axis, it indicates that the heating fire force has been selected.
  • the color B can be used to mark the point as the starting point of the second heating stage, and the time axis of the time axis is counted.
  • the first way is as follows: in the second heating stage, the fire power setting value, for example, the vertical coordinate corresponding to the fire power 1 is the coordinate zero point of the heating time, and the user continues to set the time as the first heating stage setting; In the second mode, the time accumulation is performed at the vertical coordinate corresponding to the heating coordinate axis of the second heating stage, for example, the heating time set in the first heating stage is 3 minutes, and the heating time in the second heating stage is 2 minutes in the preset heating time.
  • the heating time in the second heating stage needs to be slid to 5 minutes. Similar to the heating time setting of the first heating stage, it takes time to continue the sliding selection, and it can slide parallel along the axis or slide the curve during the sliding process.
  • control parameter setting of the third heating stage is considered to be adopted for the sake of obviousness, for example, selecting the fire power 5 linearly upward or downward (ie, having a turning point) along the coordinate point of the heating time.
  • Color C indicates the coordinate point of the third heating stage, at which point display module 10 displays the control parameters for the second heating stage.
  • the color point D can be marked at the end of the coordinate point.
  • the colors A, B, C, and D may be the same or different, and may be set according to specific conditions.
  • the display module 10 displays the heating fire power and the corresponding heating time of each heating stage, as shown in FIGS. 6 and 7.
  • the heating parameter is set after the heating parameter is set in the heating parameter of each heating stage, and the setting order of the two can be reversed, that is, the heating time can be set first and then the heating power can be set in each heating stage.
  • the heating power and the heating time are simultaneously displayed on the parameter setting interface in the form of a coordinate axis. If the heating heat and/or the heating time value is excessive, the display module 10 cannot display the complete heating heat and heating time.
  • the display can vary as the move command changes. Specifically, the input module 20 receives the coordinate movement instruction of the user, and the control module 30 moves the display area of the coordinate information of the control parameter in the parameter setting interface according to the coordinate movement instruction. In other words, when the movement instruction is input, the parameter setting of the display module 10 The interface can follow the slide, such as zooming in or out or shifting left or right until all the content is displayed, which makes it easier for the user to set the control parameters.
  • a control parameter setting method of a cooking appliance includes the steps of: providing a parameter setting interface through a touch display screen to receive an input instruction of a user through a parameter setting interface; and acquiring a plurality of control parameters of the cooking appliance according to the input instruction The value is such that the cooking appliance operates according to a plurality of control parameter values.
  • the cooking appliance can be the cooking device in the embodiment of FIG. 4, and the touch display screen can be used to construct the interaction device of the cooking device in the embodiment of FIG. 4, and the control parameter setting method is the embodiment in FIG. 4
  • the interaction method, the parameter setting interface may be the interaction interface in the embodiment of FIG. 4
  • the input command may be the touch command in the embodiment of FIG. 4
  • the control parameter value may be the working parameter in the embodiment of FIG. 4.
  • FIG. 4 is a flow chart of a method of interaction of a cooking device in accordance with an embodiment of the present invention. As shown in FIG. 4, the interaction method of the cooking device includes the following steps:
  • S11 Providing an interactive interface to receive a user's touch instruction through the interactive interface by touching the display screen.
  • S21 Acquire a plurality of operating parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters.
  • the user can perform operations such as clicking, double-clicking, short-pressing, long-pressing, zooming, sliding, etc. by touching the display screen, and touching the interface on the display screen can respond and change according to the user's operation. For example, when the user clicks on the hot air grill setting function, the touch screen can enter the interactive interface as shown in FIG. 2.
  • the touch display screen provides an interactive interface (the interactive interface can be as shown in FIGS. 2 and 3)
  • the user can touch the corresponding position of the touch display screen as needed to complete the setting of multiple working parameters at the same time, so that According to the user's touch, a plurality of working parameters corresponding to the position can be obtained, and the cooking device is further controlled according to the plurality of working parameters.
  • the touch display screen provides an interactive interface in the form of an axis, wherein the plurality of operating parameters of the cooking device are acquired according to the touch instruction, including: according to the touch instruction A coordinate point touched by the user on the coordinate axis is determined; a plurality of operating parameters of the cooking device are acquired according to the coordinate point touched by the user on the coordinate axis.
  • the plurality of operating parameters may include a temperature parameter and a time parameter.
  • an XY coordinate axis can be set on the interactive interface, and the temperature parameter and the time parameter are displayed on the same XY coordinate axis, wherein the abscissa axis X can display the preset time, and the ordinate axis Y can display the preset Set the temperature, and a plurality of preset times can be arranged at preset time intervals, such as 10:00 (ie 10 minutes), 20:00 (ie 20 minutes), 30:00 (ie 30 minutes), 40:00 (ie 40 minutes), 50:00 (ie 50 minutes), 60:00 (ie 60 minutes), multiple preset temperatures can be arranged at preset temperature intervals, such as 160 degrees Celsius, 180 degrees Celsius, 200 degrees Celsius, 220 degrees Celsius, 240 degrees Celsius .
  • the user can complete the time and temperature settings at the same time by clicking on the relevant area in the XY axis. As shown in FIG. 3, the user can select a temperature parameter and a time parameter to be set by pressing a coordinate point on the interaction interface, and the interaction interface can identify the current user by displaying a preset identifier such as the gray dot in FIG. The area below, and the interactive interface hides the preset identifier when the user releases the finger, and is no longer displayed.
  • the coordinate point touched by the user is determined according to the user's touch (30:00, 220). And according to the coordinate point, the time parameter is determined to be 30:00 and the temperature parameter is 220 degrees Celsius.
  • the cooking device when the start button is triggered by the user, the cooking device performs cooking with 220 degrees and 30 minutes as control parameters, ie the control device of the cooking device can control the cooking device to heat at 220 degrees Celsius and heat for 30 minutes.
  • the cancel button when the cancel button is triggered by the user, the user can reselect the desired multiple operating parameters.
  • the interaction method of the cooking device further comprises: controlling the touch display screen to display a plurality of operating parameters.
  • the touch display screen can automatically display the temperature parameter and the time parameter selected by the user to the display frame above the interaction interface. For example, as shown in FIG. 3, the user selects 220. Degree After the intersection with 30 minutes, 220 degrees and 30 minutes can be displayed and recorded through the display box above the interactive interface. And, as shown in FIG. 2, the temperature parameter and the time parameter are displayed as 0 when the interactive interface is first entered and the user does not perform any operation.
  • the interactive method of the cooking device is suitable for a microwave oven or a microwave oven, and is particularly suitable for a TFT display screen and a full-screen touch microwave oven or microwave oven, and the aforementioned microwave oven or microwave oven can interact with the user through the TFT display screen. And through the TFT display screen to display the user interface.
  • the hot air grilling function when the hot air grilling function is performed in a microwave oven or a microwave oven, the user needs to set the temperature and time to start cooking.
  • the embodiment of the invention sets an coordinate axis and displays the temperature and time parameters on the same coordinate axis, and the user can complete the time and temperature setting at the same time by clicking the relevant area in the coordinate axis, thereby simplifying the user's
  • the operation process enhances the user experience.
  • the interaction method of the cooking device receives a touch instruction of the user through the interaction interface, and then acquires a plurality of working parameters of the cooking device according to the touch instruction, so that the cooking device operates according to the plurality of working parameters. Therefore, the interaction method puts multiple working parameters in the same interactive interface, so that the interactive interface is more intuitive and intuitive, and can complete multiple parameter settings at the same time by one operation, simplifying the operation steps and improving the convenience of operation. , enhance the user experience.
  • the cooking appliance includes a display module, the display module provides a parameter setting interface, and the parameter setting interface includes coordinate information of the control parameter, and the control parameter setting method includes the following steps: receiving an input instruction of the user; Determining a selected coordinate point in the coordinate information of the control parameter; obtaining a plurality of control parameter values according to the selected coordinate point.
  • FIG. 8 is a flowchart of a control parameter setting method of a cooking appliance in accordance with an embodiment of the present invention. As shown in FIG. 8, the control parameter setting method includes the following steps:
  • S1 Receive input instructions from the user.
  • control parameter setting method of the cooking appliance of the embodiment of the invention the control parameter is displayed in the form of coordinate information in the parameter setting interface, and the selection coordinate point of the coordinate information of the control parameter can be determined according to the input instruction, and then according to the selected coordinate point
  • the control parameter value in the corresponding coordinate information can be obtained, and no complicated selection is needed, and the method is simple and convenient for the user to operate.
  • control parameter includes a first parameter and a second parameter, coordinate information of the first parameter, and
  • the coordinate information of the second parameter is located in the same coordinate system of the same parameter setting interface, wherein the first parameter is set in the first coordinate axis in the same coordinate system, and the second parameter is set in the second coordinate axis in the same coordinate system. It can be known from the related mathematical knowledge that in the two-dimensional coordinate system with respect to the first parameter and the second parameter, the corresponding first parameter value and second parameter value can be determined by one coordinate point.
  • the user's click instruction or the continuous sliding instruction in each direction may be received.
  • the user's click instruction is received; the selected coordinate point in the same coordinate system is determined according to the click instruction; and the first parameter value corresponding to the first coordinate axis and the corresponding second coordinate axis are obtained.
  • the two parameter values, wherein the first parameter value and the second parameter value are used as control parameter values of the heating stage. That is to say, the user can select a coordinate point in the two-dimensional coordinate system composed of the first parameter and the second parameter, and can set the control parameter value of the current heating phase, which is very convenient and simple to operate. Then select another coordinate point in the coordinate system to determine the control parameter value of the next heating stage until the control parameters of each heating stage are set.
  • the setting of the control parameter may also be implemented by receiving a sliding instruction of the user, specifically, receiving a sliding instruction of the user along the direction of the first coordinate axis and a sliding instruction from the direction along the first coordinate axis.
  • the user can set the control parameters by sliding.
  • a sliding instruction along the first coordinate axis direction and perpendicular to the second coordinate axis starting from the end point of the sliding instruction along the second coordinate axis direction may be received, To switch to the setting of the control parameter value for the next heating phase.
  • the setting of the control parameter of the next heating stage is set according to the sliding instruction until the parameter setting of the last heating stage is completed.
  • the first parameter may comprise a heating fire or a heating time
  • the second parameter may comprise a heating time or a heating fire.
  • the first coordinate axis may be a vertical axis or a horizontal axis in the coordinate system.
  • the second coordinate axis may be a horizontal axis or a vertical axis in the coordinate system.
  • the first axis may be set first.
  • the parameter can also set the second parameter first.
  • the display module can display the control parameter values of each heating stage, so that the user can be more directly provided to the user, and the user can know the set control parameters in time.
  • the heating power and the heating time are simultaneously displayed on the parameter setting interface in the form of a coordinate axis. If the heating heat and/or the heating time value is excessive, the display module cannot display the complete, heating heat and heating time.
  • the display can change as the move command changes. Specifically, if the coordinate movement instruction of the user is received, according to the coordinate shift The display area of the coordinate information of the control parameter in the movement instruction parameter setting interface. In other words, when the movement instruction is input, the parameter setting interface of the display module can follow the sliding, such as zooming in or out or shifting left or right until all the contents are displayed, so that the user can set the control parameters more conveniently.
  • control parameter setting method of the cooking appliance of the embodiment of the invention the heating parameters such as the heating firepower and the heating time are displayed in the parameter setting interface, and are directly visible, and the trigger button of the parameter setting is not required to be switched, and no complicated selection is required. Similar to the trigger action, the setting of the next heating stage can be realized, and the control parameter setting of multiple heating stages can be realized more simply and conveniently.
  • any process or method description in the flowcharts or otherwise described herein may be understood to include one or more steps for implementing a particular logic function or process. Modules, segments or portions of code of executable instructions, and the scope of preferred embodiments of the invention includes additional implementations, which may not be in the order shown or discussed, including in a substantially simultaneous manner depending on the functionality involved. The functions are performed in the reverse order, which should be understood by those skilled in the art to which the embodiments of the present invention pertain.
  • a "computer-readable medium” can be any apparatus that can contain, store, communicate, propagate, or transport a program for use in an instruction execution system, apparatus, or device, or in conjunction with the instruction execution system, apparatus, or device.
  • computer readable media include the following: electrical connections (electronic devices) having one or more wires, portable computer disk cartridges (magnetic devices), random access memory (RAM), Read only memory (ROM), erasable editable read only memory (EPROM or flash memory), fiber optic devices, and portable compact disk read only memory (CDROM).
  • the computer readable medium may even be a paper or other suitable medium on which the program can be printed, as it may be optically scanned, for example by paper or other medium, followed by editing, interpretation or, if appropriate, other suitable The method is processed to obtain the program electronically and then stored in computer memory.
  • portions of the invention may be implemented in hardware, software, firmware or a combination thereof.
  • multiple steps or methods may be implemented in software or firmware stored in a memory and executed by a suitable instruction execution system.
  • a suitable instruction execution system For example, if implemented in hardware, as in another embodiment, it can be implemented by any one or combination of the following techniques well known in the art: having logic gates for implementing logic functions on data signals. Discrete logic circuits, application specific integrated circuits with suitable combinational logic gates, programmable gate arrays (PGAs), field programmable gate arrays (FPGAs), etc.

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Abstract

一种烹饪电器(100)以及烹饪电器(100)的控制参数设置方法,烹饪电器(100)包括:触摸显示屏(11),用于提供参数设置界面以通过参数设置界面接收用户的输入指令;控制模块(21),与触摸显示屏(11)相连,用于根据输入指令获取烹饪电器的多个控制参数值,以使烹饪电器根据多个控制参数值运行。由此,将多个控制参数值放在同一个参数设置界面内,使参数设置界面更直观明白,通过一次操作可同时完成多个参数的设置,简化操作步骤,提升操作便利性和用户体验。

Description

烹饪电器及其控制参数设置方法 技术领域
本发明属于电器制造技术领域,尤其涉及一种烹饪电器以及烹饪电器的控制参数设置方法。
背景技术
进行烹饪时,需要一段时间的连续加热,由于食物加热需要,在加热时间内,加热火力需要多次变化,因而用户需要进行多阶段的设置例如设置:火力1和时间1、火力2和时间2,设置结束之后,加热电器按照该设置进行加热,直至所有的设置时间全部结束。
目前,对于加热控制参数的设置过程主要包括:
STEP1:选择火力,触发火力按键;
STEP2:触发对应的火力按键;
STEP3:选择时间,触发时间按键;
STEP4:选择时间的分钟和秒钟。
以上为一个加热阶段的加热时间和加热火力的设置,在下一阶段的设置,还需要从步骤STEP1开始,重复设置。
可以看出,现有的加热控制参数设置过程,步骤过多,极其繁复。
发明内容
本发明旨在至少在一定程度上解决相关技术中的技术问题之一。
为此,本发明需要提出一种烹饪电器,该烹饪电器,控制参数设置更加方便,操作简单。
本发明还提出一种烹饪电器的控制参数设置方法。
为达到上述目的,本发明一方面实施例提出的一种烹饪电器,包括:触摸显示屏,所述触摸显示屏用于提供参数设置界面以通过所述参数设置界面接收用户的输入指令;控制模块,所述控制模块与所述触摸显示屏相连,所述控制模块用于根据所述输入指令获取所述烹饪电器的多个控制参数值,以使所述烹饪电器根据所述多个控制参数值运行。
根据本发明实施例提出的烹饪电器,通过参数设置界面接收用户的输入指令,控制模块根据输入指令获取烹饪电器的多个控制参数值,以使烹饪电器根据多个控制参数值运行。由此,将多个控制参数值放在同一个参数设置界面内,使参数设置界面更直观明白,并通过一 次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
在本发明的一些实施例中,所述触摸显示屏包括显示模块和输入模块,其中,所述显示模块用于提供所述参数设置界面,所述参数设置界面中包括控制参数的坐标信息;所述输入模块用于接收用户的输入指令;所述控制模块用于根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点,并根据所述选择坐标点获得所述多个控制参数值。
由此,本发明公开的烹饪电器,通过输入模块可以选择显示模块的参数设置界面中的相应参数的坐标点,进而控制模块即可确定该坐标点对应该控制参数的设定值,无需触发参数按键再选择参数和参数值,操作简单,更加方便用户进行参数设置。
进一步地,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
在本发明的一些实施例中,所述输入模块进一步用于接收所述用户的点击指令,所述控制模块进一步用于根据所述点击指令确定所述同一坐标系中的所述选择坐标点,以及获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,所述输入模块进一步用于接收所述用户沿第一坐标轴方向的滑动指令以及从所述沿第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令,所述控制模块进一步用于确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点,并获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,在所述本加热阶段的控制参数值设置结束之后,所述输入模块进一步用于接收从所述沿第二坐标轴方向的滑动指令的结束点起始的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
另外,所述输入模块还用于接收所述用户的坐标移动指令,所述控制模块还用于根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
具体地,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
在本发明的一些实施例中,所述显示模块还用于显示所述每个加热阶段的控制参数值。
其中,需要说明的是,烹饪电器可为下述实施例中的烹饪设备,触摸显示屏和控制模块可构造为下述实施例中的烹饪设备的交互装置,控制模块可为下述实施例中的处理单元,参数设置界面可为下述实施例中的交互界面,输入指令可为下述实施例中的触摸指令,控制参数值可为下述实施例中的工作参数。
为达到上述目的,本发明一方面实施例提出的一种烹饪设备的交互装置,包括:触摸显示屏,所述触摸显示屏用于提供交互界面以通过所述交互界面接收用户的触摸指令;处理单元,所述处理单元与所述触摸显示屏相连,所述处理单元用于根据所述触摸指令获取所述烹饪设备的多个工作参数,以使所述烹饪设备根据所述多个工作参数运行。
根据本发明实施例提出的烹饪设备的交互装置,通过交互界面接收用户的触摸指令,处理单元根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。由此,该交互装置将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
根据本发明的一个实施例,所述触摸显示屏以坐标轴的方式提供交互界面,其中,所述处理单元根据所述触摸指令确定所述坐标轴上被用户触摸的坐标点,并根据所述坐标轴上被用户触摸的坐标点获取所述烹饪设备的多个工作参数。
其中,所述多个工作参数可包括温度参数和时间参数。
根据本发明的一个实施例,所述处理单元还用于控制所述触摸显示屏显示所述多个工作参数。
根据本发明的一个实施例,所述触摸显示屏为TFT显示屏。
本发明实施例提出了一种烹饪设备,包括所述的烹饪设备的交互装置。
根据本发明实施例提出的微波炉,通过上述的烹饪设备的交互装置,可将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
为了解决上述问题,本发明一方面提出的烹饪电器,包括:显示模块,用于提供参数设置界面,所述参数设置界面中包括控制参数的坐标信息;输入模块,用于接收用户的输入指令;和控制模块,用于根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点,根据所述选择坐标点获得控制参数值。
本发明公开的烹饪电器,通过输入模块可以选择显示模块的参数设置界面中的相应参数 的坐标点,进而控制模块即可确定该坐标点对应该控制参数的设定值,无需触发参数按键再选择参数和参数值,操作简单,更加方便用户进行参数设置。
进一步地,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
在本发明的一些实施例中,所述输入模块进一步用于接收所述用户的点击指令,所述控制模块进一步用于根据所述点击指令确定所述同一坐标系中的所述选择坐标点,以及获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,所述输入模块进一步用于接收所述用户沿第一坐标轴方向的滑动指令以及从所述沿第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令,所述控制模块进一步用于确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点,并获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,,在所述本加热阶段的控制参数值设置结束之后,所述输入模块进一步用于接收从所述沿第二坐标轴方向的滑动指令的结束点起始的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
另外,所述输入模块还用于接收所述用户的坐标移动指令,所述控制模块还用于根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
具体地,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
在本发明的一些实施例中,所述显示模块还用于显示所述每个加热阶段的控制参数值。
为达到上述目的,本发明另一方面实施例提出了一种烹饪电器的控制参数设置方法,包括以下步骤:通过触摸显示屏提供参数设置界面以通过所述参数设置界面接收用户的输入指令;根据所述输入指令获取所述烹饪电器的多个控制参数值,以使所述烹饪电器根据所述多个控制参数值运行。
根据本发明实施例提出的烹饪电器的控制参数设置方法,通过参数设置界面接收用户的输入指令,然后根据输入指令获取烹饪电器的多个控制参数值,以使烹饪电器根据多个控制 参数值运行。由此,该方法将多个控制参数值放在同一个参数设置界面内,使参数设置界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
在本发明的一些实施例中,所述触摸显示屏包括显示模块,所述显示模块提供参数设置界面,所述参数设置界面中包括控制参数的坐标信息,所述控制参数设置方法包括以下步骤:接收用户的输入指令;根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点;根据所述选择坐标点获得控制参数值。
本发明实施例的烹饪电器的控制参数设置方法,控制参数在参数设置界面中以坐标信息的形式进行显示,可以根据输入指令确定控制参数的坐标信息的选择坐标点,进而根据该选择坐标点即可获得对应坐标信息中的控制参数值,无需进行繁复的选择,方法简单,方便用户进行操作。
在本发明的一些实施例中,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
在本发明的一些实施例中,所述方法进一步包括:接收所述用户的点击指令;根据所述点击指令确定所述同一坐标系中的所述选择坐标点;以及获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,所述方法进一步包括:接收所述用户沿第一坐标轴方向的滑动指令以及从沿所述第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令;确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点;以及获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,在所述本加热阶段的控制参数值设置结束之后,进一步包括:接收从所述沿第二坐标轴方向的滑动指令的结束点起始的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
另外,所述方法还包括:接收所述用户的坐标移动指令;以及根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
具体地,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
在本发明的一些实施例中,所述方法还包括:通过所述显示模块显示每个加热阶段的控制参数值,更加直观。
其中,需要说明的是,烹饪电器可为下述实施例中的烹饪设备,触摸显示屏可用于构造下述实施例中的烹饪设备的交互装置,控制参数设置方法即为下述实施例中的交互方法,参数设置界面可为下述实施例中的交互界面,输入指令可为下述实施例中的触摸指令,控制参数值可为下述实施例中的工作参数。
为达到上述目的,本发明又一方面实施例提出了一种烹饪设备的交互方法,包括以下步骤:通过触摸显示屏,提供交互界面以通过所述交互界面接收用户的触摸指令;根据所述触摸指令获取所述烹饪设备的多个工作参数,以使所述烹饪设备根据所述多个工作参数运行。
根据本发明实施例提出的烹饪设备的交互方法,通过交互界面接收用户的触摸指令,然后根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。由此,该交互方法将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
根据本发明的一个实施例,所述触摸显示屏以坐标轴的方式提供交互界面,其中,所述根据所述触摸指令获取所述烹饪设备的多个工作参数,包括:根据所述触摸指令确定所述坐标轴上被用户触摸的坐标点;根据所述坐标轴上被用户触摸的坐标点获取所述烹饪设备的多个工作参数。
其中,所述多个工作参数可包括温度参数和时间参数。
根据本发明的一个实施例,所述的烹饪设备的交互方法还包括:控制所述触摸显示屏显示所述多个工作参数。
为了解决上述问题,本发明另一方面还提出一种烹饪电器的控制参数设置方法,其特征在于,所述烹饪电器包括显示模块,所述显示模块提供参数设置界面,所述参数设置界面中包括控制参数的坐标信息,所述控制参数设置方法包括以下步骤:接收用户的输入指令;根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点;以及根据所述选择坐标点获得控制参数值。
本发明实施例的烹饪电器的控制参数设置方法,控制参数在参数设置界面中以坐标信息的形式进行显示,可以根据输入指令确定控制参数的坐标信息的选择坐标点,进而根据该选 择坐标点即可获得对应坐标信息中的控制参数值,无需进行繁复的选择,方法简单,方便用户进行操作。
在本发明的一些实施例中,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
在本发明的一些实施例中,所述方法进一步包括:接收所述用户的点击指令;根据所述点击指令确定所述同一坐标系中的所述选择坐标点;以及获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,所述方法进一步包括:接收所述用户沿第一坐标轴方向的滑动指令以及从沿所述第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令;确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点;以及获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
在本发明的一些实施例中,在所述本加热阶段的控制参数值设置结束之后,进一步包括:接收从所述沿第二坐标轴方向的滑动指令的结束点起始的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
另外,所述方法还包括:接收所述用户的坐标移动指令;以及根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
具体地,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
在本发明的一些实施例中,所述方法还包括:通过所述显示模块显示每个加热阶段的控制参数值,更加直观。
附图说明
图1是根据本发明实施例的烹饪设备的交互装置的方框示意图;
图2是根据本发明一个实施例的交互界面的示意图;
图3是根据本发明另一个实施例的交互界面的示意图;
图4是根据本发明实施例的烹饪设备的交互方法的流程图;
图5是根据本发明的一个实施例的烹饪电器的框图;
图6是根据本发明的一个实施例的显示模块的显示内容的示意图;
图7是根据本发明的另一个具体实施例的显示模块的显示内容的示意图;以及
图8是根据本发明的一个实施例的烹饪电器的控制参数设置方法的流程图。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
下面结合图1-3来描述本发明一方面实施例提出的一种烹饪电器。
根据本发明的一个实施例,烹饪电器包括触摸显示屏和控制模块,其中,触摸显示屏用于提供参数设置界面以通过参数设置界面接收用户的输入指令;控制模块与触摸显示屏相连,控制模块用于根据输入指令获取烹饪电器的多个控制参数值,以使烹饪电器根据多个控制参数值运行。
其中,需要说明的是,烹饪电器可为图1-3实施例中的烹饪设备,触摸显示屏和控制模块可构造为图1-3实施例中的烹饪设备的交互装置,控制模块可为图1-3实施例中的处理单元21,参数设置界面可为图1-3实施例中的交互界面,输入指令可为图1-3实施例中的触摸指令,控制参数值可为图1-3实施例中的工作参数。
具体地,图1是根据本发明实施例的烹饪设备的交互装置的方框示意图。如图1所示,该交互装置包括:触摸显示屏11和处理单元21。
图1是根据本发明实施例的烹饪设备的交互装置的方框示意图。如图1所示,该交互装置包括:触摸显示屏11和处理单元21。
其中,触摸显示屏11用于提供交互界面以通过交互界面接收用户的触摸指令;处理单元21与触摸显示屏11相连,处理单元21用于根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。
应当理解的是,用户可以通过触摸显示屏11来完成单击、双击、短按、长按、缩放、滑动等操作,同时触摸显示屏11上的界面可根据用户的操作做出相应的响应和改变。例如,当用户单击热风烧烤设置功能后,触摸显示屏11可进入如图2所示的交互界面。
具体来说,当触摸显示屏11提供交互界面(交互界面可如图2和3所示)之后,用户可根据需要触摸触摸显示屏11的相应位置,以一次同时完成多个工作参数的设置,这样, 触摸显示屏11根据用户的触摸输出触摸信号给处理单元21,处理单元21用于根据触摸信号即可获取该位置对应的多个工作参数,烹饪设备的控制装置根据多个工作参数对烹饪设备进行控制。
由此,通过重新设计交互界面的,将多个工作参数放在同一个界面内,使设置界面变的更直观明白,并且在操作上,能够明显简化操作步骤,可进行一键参数设置,提升操作的便利性,提升用户的体验。
具体地,根据本发明的一个实施例,如图2和3所示,触摸显示屏11可以坐标轴的方式提供交互界面,其中,处理单元21根据触摸指令确定坐标轴上被用户触摸的坐标点,并根据坐标轴上被用户触摸的坐标点获取烹饪设备的多个工作参数。其中,多个工作参数可包括温度参数和时间参数即烹饪温度和烹饪时间。
由此,以坐标轴的方式清晰、直观的显示出来温度参数和时间参数。
具体地,可在交互界面上设定一个XY坐标轴,并将温度参数和时间参数显示在同一个XY坐标轴上,其中,横坐标轴X可显示预设时间,纵坐标轴Y可显示预设温度,并且多个预设时间可以预设时间间隔进行排列,例如10:00(即10分钟)、20:00(即20分钟)、30:00(即30分钟)、40:00(即40分钟)、50:00(即50分钟)、60:00(即60分钟),多个预设温度可以预设温度间隔进行排列,例如160摄氏度、180摄氏度、200摄氏度、220摄氏度、240摄氏度。
用户可以通过点击XY坐标轴中的相关区域来一次同时完成时间和温度的设置。如图3所示,用户可以通过在交互界面上按下坐标点来选择需要设置的温度参数和时间参数,交互界面可通过显示预设标识例如图3中灰色圆点的方式来标识用户当前按下的区域,并在用户松开手指时交互界面隐藏该预设标识、不再显示。
如图3的示例,当用户触摸灰色圆点所标识的区域,即用户选择了220度与30分钟的交叉点后,处理单元21根据用户的触摸确定被用户触摸的坐标点为(30:00,220),并根据该坐标点确定时间参数为30:00、温度参数为220摄氏度。
由此,当开始按键被用户触发时,烹饪设备即采用220度和30分钟作为控制参数进行烹饪,即烹饪设备的控制装置可控制烹饪设备以220摄氏度进行加热,并加热30分钟。另外,当取消按键被用户触发后,用户可重新选择所需的多个工作参数。
根据本发明的一个实施例,处理单元21还用于控制触摸显示屏11显示多个工作参数。
具体的,当用户选择温度参数和时间参数之后,处理单元21可控制触摸显示屏11自动将用户所选择的温度参数和时间参数显示到交互界面上方的显示框上,例如如图3所示,用户选择了220度与30分钟的交叉点后,处理单元21可通过交互界面上方的显示框显示220 度和30分钟并记录。并且,如图2所示,在初次进入交互界面且用户未进行任何操作时,温度参数和时间参数显示为0。
根据本发明的一个实施例,触摸显示屏11可为TFT(Thin Film Transistor,薄膜晶体管)显示屏。
根据本发明的一个实施例,烹饪设备的交互装置适用于微波炉或微波烤箱,特别适用于TFT显示屏和全屏触摸的微波炉或微波烤箱,前述微波炉或微波烤箱可以通过TFT显示屏与用户产生交互,并通过TFT显示屏显示出用户交互界面。
具体地,以热风烧烤功能为例,在微波炉或微波烤箱执行热风烧烤功能时,需要用户进行温度和时间的设置才能启动烹饪。本发明实施例设定了一个坐标轴,并将温度和时间参数显示在同一个坐标轴上,用户通过点击坐标轴中的相关区域即可一次同时完成时间和温度的设置,从而简化了用户的操作过程,提升了用户体验。
综上,根据本发明实施例提出的烹饪设备的交互装置,通过交互界面接收用户的触摸指令,处理单元根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。由此,该交互装置将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
本发明还提出了一种烹饪设备,包括上述实施例的烹饪设备的交互装置。
根据本发明实施例提出的烹饪设备,通过上述的烹饪设备的交互装置,可将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
下面结合图5-7来描述本发明另一方面实施例提出的一种烹饪电器。
根据本发明的一个实施例,触摸显示屏可包括显示模块和输入模块,其中,显示模块用于提供参数设置界面,参数设置界面中包括控制参数的坐标信息;输入模块用于接收用户的输入指令;控制模块用于根据输入指令确定在控制参数的坐标信息中的选择坐标点,并根据选择坐标点获得多个控制参数值。
具体地,图5是根据本发明的一个实施例的烹饪电器的框图,如图5所示,该烹饪电器100包括显示模块10、输入模块20和控制模块30。烹饪电器100可以包括例如电饭煲、电磁炉、电水壶。
显示模块10用于提供参数设置界面,参数设置界面中包括控制参数的坐标信息,例如包括加热火力的坐标信息、加热时间的坐标信息。
输入模块20用于接收用户的输入指令。控制模块30用于根据输入指令确定在控制参数的坐标信息中的选择坐标点,根据该选择坐标点获得控制参数值。简单地说,用户通过输入模块20可以选择显示模块10的参数设置界面中的相应参数的坐标点,进而控制模块30即可确定该坐标点对应该控制参数的设定值,无需触发参数按键再选择参数和参数值,操作简单,更加方便用户进行参数设置。
其中,不同控制参数的坐标信息可以分别设置在独立的坐标系中,用户可以根据需要选择各个参数的设置的坐标点即坐标信息的选择坐标点,以确定对应的参数设定值。当然,控制参数的坐标信息也可以设置在同一坐标系中。
在本发明的一个实施例中,控制参数包括第一参数和第二参数,例如加热火力和加热时间,第一参数的坐标信息和第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,第一参数设置在同一坐标系中的第一坐标轴,第二参数设置在同一坐标系中的第二坐标轴。从相关的数学知识可知,在关于第一参数和第二参数的二维坐标系中,通过一个坐标点即可确定对应的第一参数值和第二参数值。
具体地,输入模块20可以接收用户的点击指令或连续各个方向的滑动指令。在本发明的一个实施例中,输入模块20进一步用于接收用户的点击指令,控制模块30进一步用于根据点击指令确定第一参数和第二参数位于的同一坐标系中的选择坐标点,以及获得选择坐标点对应第一坐标轴的第一参数值以及对应第二坐标轴的第二参数值,第一参数值和第二参数值作为本加热阶段的控制参数值,也就是说,用户可以通过输入模块20在由第一参数和第二参数构成的二维坐标系中选择一个坐标点,即可设定当前加热阶段的控制参数值,非常方便,操作简单。再选择坐标系内的另一个坐标点即可确定下一个加热阶段的控制参数值,直至各个加热阶段的控制参数设定完成。
在本发明的另一个实施例中,输入模块20进一步用于接收用户沿第一坐标轴方向的滑动指令以及从沿第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令,控制模块30进一步用于确定沿第一坐标轴方向的滑动指令的结束点和沿第二坐标轴方向的滑动指令的结束点为选择坐标点,并获得沿第一坐标轴方向的滑动指令的结束点对应第一坐标轴的第一参数值,以及获得沿第二坐标轴方向的滑动指令的结束点对应第二坐标轴的第二参数值,该第一参数值和第二参数值作为本加热阶段的控制参数值。也就是说,用户通过输入模块20进行滑动操作即可设定控制参数。
进一步地,在本加热阶段的控制参数值设置结束之后,输入模块20进一步用于接收从上面所说的沿第二坐标轴方向的滑动指令的结束点起始的沿第一坐标轴方向且垂直于第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置,进而控制模块30根据上 面本加热阶段的控制参数的设置过程根据滑动指令设置下一加热阶段的控制参数的设置,直至最后一个加热阶段的参数设置完成。
在本发明的实施例中,第一参数可以包括加热火力或加热时间,第二参数可以包括加热时间或加热火力。第一坐标轴可以为坐标系中的纵轴也可以为横轴,同样地第二坐标轴可以为坐标系中的横轴也可以为纵轴,在进行控制参数设置时,可以先设置第一参数也可以先设置第二参数。
其中,显示模块10还可以显示每个加热阶段的控制参数值,从而可以更加直接地提供给用户,用户可以及时了解设置的控制参数。
下面以,加热火力和加热时间位于同一坐标系中,其中加热火力为坐标系中的纵轴称为火力坐标轴,加热时间为坐标系中横轴称为时间坐标轴,为例,对本发明实施例的控制参数设置过程进行说明。
具体来说,在第一加热阶段,在火力坐标轴方向滑动以选择需要的加热火力例如火力8,此时该火力点为起始点,在该点沿时间坐标轴方向滑动,则表明已经选择加热火力,为了明显起见,可以采用颜色A标记该坐标点,并继续滑动选择需要的加热时间例如5分钟,在滑动过程中,可以沿轴线平行滑动如图6所示,也可以是沿曲线滑动如图7所示,显示模块10的参数设置界面中的显示随着输入模块20的滑动指令,显示一条直线或者显示当前对应的时间点。
设置第一加热阶段的控制参数之后,可以沿第一加热阶段的加热时间点直线向上或向下(即有转折)选择,则认为进入第二加热阶段的控制参数设置,即选择第二加热阶段的加热火力例如火力1,此时显示模块10可以显示第一加热阶段设置的加热火力和加热时间如图6和图7所示。在该火力1的坐标点沿时间坐标轴方向滑动,则表明已经选择加热火力,为了明显起见,可以用颜色B标出该点为第二加热阶段的起始点,此时时间坐标轴的时间计数可以通过以下两种方式:第一种方式是,以第二加热阶段的火力设置值例如火力1对应的垂直坐标处为加热时间的坐标零点,用户和第一加热阶段设置一样继续设置时间;第二中方式是,在第二加热阶段的火力坐标轴对应的垂直坐标处,进行时间累加,例如第一加热阶段设置的加热时间是3分钟,第二加热阶段预设值加热时间2分钟,则在第二加热阶段时加热时间需要滑动到5分钟处即可。与第一加热阶段的加热时间设置类似,继续滑动选择需要时间,在滑动过程中,可以沿轴线平行滑动,也可以为曲线滑动。设置完第二加热阶段的加热时间之后,沿该加热时间的坐标点直线向上或向下(即有转折)选择例如火力5,则认为进入第三加热阶段的控制参数设置,为了明显起见可以采用颜色C标出该第三加热阶段的坐标点,此时显示模块10显示第二加热阶段的控制参数。
依次,直至各个加热阶段的控制参数设置完成,可以采用颜色D在结束的坐标点标记。其中,颜色A、B、C和D可以相同,也可以不相同,可以视具体情况设置。
各个加热阶段的控制参数设置完成之后,显示模块10显示各个加热阶段的加热火力和对应的加热时间,如图6和图7所示。
可以理解的是,上述实施例中,各个加热阶段的控制参数设置时先设置加热火力后设置加热时间,两者设置顺序也可以颠倒,即在各个加热阶段可以先设置加热时间再设置加热火力。
在本发明的实施例中,加热火力和加热时间以坐标轴的形式同时在参数设置界面上显示,如果加热火力和/或加热时间数值过多,显示模块10无法显示完全,加热火力和加热时间的显示可以随着移动指令的变化而变化。具体地,输入模块20接收用户的坐标移动指令,控制模块30根据坐标移动指令移动参数设置界面中控制参数的坐标信息的显示区域,换句话说,当输入移动指令时,显示模块10的参数设置界面可以跟随滑动,例如放大或缩小或者左移或者右移,直至显示完所有的内容,从而可以更加方便用户设置控制参数。
基于上述一方面实施例的烹饪电器,下面结合图4来描述本发明又一方面实施例提出的烹饪电器的控制参数设置方法。
根据本发明的一个实施例,烹饪电器的控制参数设置方法,包括以下步骤:通过触摸显示屏提供参数设置界面以通过参数设置界面接收用户的输入指令;根据输入指令获取烹饪电器的多个控制参数值,以使烹饪电器根据多个控制参数值运行。
其中,需要说明的是,烹饪电器可为图4实施例中的烹饪设备,触摸显示屏可用于构造图4实施例中的烹饪设备的交互装置,控制参数设置方法即为图4实施例中的交互方法,参数设置界面可为图4实施例中的交互界面,输入指令可为图4实施例中的触摸指令,控制参数值可为图4实施例中的工作参数。
图4是根据本发明实施例的烹饪设备的交互方法的流程图。如图4所示,该烹饪设备的交互方法包括以下步骤:
S11:通过触摸显示屏,提供交互界面以通过交互界面接收用户的触摸指令。
S21:根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。
应当理解的是,用户可以通过触摸显示屏来完成单击、双击、短按、长按、缩放、滑动等操作,同时触摸显示屏上的界面可根据用户的操作做出相应的响应和改变。例如,当用户单击热风烧烤设置功能后,触摸显示屏可进入如图2所示的交互界面。
具体来说,当触摸显示屏提供交互界面(交互界面可如图2和3所示)之后,用户可根据需要触摸触摸显示屏的相应位置,以一次同时完成多个工作参数的设置,这样,根据用户的触摸即可获取该位置对应的多个工作参数,进一步根据多个工作参数对烹饪设备进行控制。
由此,通过重新设计交互界面的,将多个工作参数放在同一个界面内,使设置界面变的更直观明白,并且在操作上,能够明显简化操作步骤,可进行一键参数设置,提升操作的便利性,提升用户的体验。
具体地,根据本发明的一个实施例,如图2和3所示,触摸显示屏以坐标轴的方式提供交互界面,其中,根据触摸指令获取烹饪设备的多个工作参数,包括:根据触摸指令确定坐标轴上被用户触摸的坐标点;根据坐标轴上被用户触摸的坐标点获取烹饪设备的多个工作参数。其中,多个工作参数可包括温度参数和时间参数。
由此,以坐标轴的方式清晰、直观的显示出来温度参数和时间参数。
具体地,可在交互界面上设定一个XY坐标轴,并将温度参数和时间参数显示在同一个XY坐标轴上,其中,横坐标轴X可显示预设时间,纵坐标轴Y可显示预设温度,并且多个预设时间可以预设时间间隔进行排列,例如10:00(即10分钟)、20:00(即20分钟)、30:00(即30分钟)、40:00(即40分钟)、50:00(即50分钟)、60:00(即60分钟),多个预设温度可以预设温度间隔进行排列,例如160摄氏度、180摄氏度、200摄氏度、220摄氏度、240摄氏度。
用户可以通过点击XY坐标轴中的相关区域来一次同时完成时间和温度的设置。如图3所示,用户可以通过在交互界面上按下坐标点来选择需要设置的温度参数和时间参数,交互界面可通过显示预设标识例如图3中灰色圆点的方式来标识用户当前按下的区域,并在用户松开手指时交互界面隐藏该预设标识、不再显示。
如图3的示例,当用户触摸灰色圆点所标识的区域,即用户选择了220度与30分钟的交叉点后,根据用户的触摸确定被用户触摸的坐标点为(30:00,220),并根据该坐标点确定时间参数为30:00、温度参数为220摄氏度。
由此,当开始按键被用户触发时,烹饪设备即采用220度和30分钟作为控制参数进行烹饪,即烹饪设备的控制装置可控制烹饪设备以220摄氏度进行加热,并加热30分钟。另外,当取消按键被用户触发后,用户可重新选择所需的多个工作参数。
根据本发明的一个实施例,烹饪设备的交互方法还包括:控制触摸显示屏显示多个工作参数。
具体的,当用户选择温度参数和时间参数之后,可控制触摸显示屏自动将用户所选择的温度参数和时间参数显示到交互界面上方的显示框上,例如如图3所示,用户选择了220度 与30分钟的交叉点后,可通过交互界面上方的显示框显示220度和30分钟并记录。并且,如图2所示,在初次进入交互界面且用户未进行任何操作时,温度参数和时间参数显示为0。
根据本发明的一个实施例,烹饪设备的交互方法适用于微波炉或微波烤箱,特别适用于TFT显示屏和全屏触摸的微波炉或微波烤箱,前述微波炉或微波烤箱可以通过TFT显示屏与用户产生交互,并通过TFT显示屏显示出用户交互界面。
具体地,以热风烧烤功能为例,在微波炉或微波烤箱执行热风烧烤功能时,需要用户进行温度和时间的设置才能启动烹饪。本发明实施例设定了一个坐标轴,并将温度和时间参数显示在同一个坐标轴上,用户通过点击坐标轴中的相关区域即可一次同时完成时间和温度的设置,从而简化了用户的操作过程,提升了用户体验。
综上,根据本发明实施例提出的烹饪设备的交互方法,通过交互界面接收用户的触摸指令,然后根据触摸指令获取烹饪设备的多个工作参数,以使烹饪设备根据多个工作参数运行。由此,该交互方法将多个工作参数放在同一个交互界面内,使交互界面更直观明白,并通过一次操作可同时完成多个参数的设置,简化了操作步骤,提升了操作的便利性,提升了用户的体验。
基于上述另一方面实施例的烹饪电器,下面参照附图8描述根据本发明再一方面实施例提出的烹饪电器的控制参数设置方法。
根据本发明的一个实施例,烹饪电器包括显示模块,该显示模块提供参数设置界面,参数设置界面中包括控制参数的坐标信息,控制参数设置方法包括以下步骤:接收用户的输入指令;根据输入指令确定在控制参数的坐标信息中的选择坐标点;根据选择坐标点获得多个控制参数值。
具体地,图8是根据本发明的一个实施例的烹饪电器的控制参数设置方法的流程图。如图8所示,该控制参数设置方法包括以下步骤:
S1:接收用户的输入指令。
S2:根据输入指令确定在控制参数的坐标信息中的选择坐标点。
S3:根据选择坐标点获得控制参数值。
本发明实施例的烹饪电器的控制参数设置方法,控制参数在参数设置界面中以坐标信息的形式进行显示,可以根据输入指令确定控制参数的坐标信息的选择坐标点,进而根据该选择坐标点即可获得对应坐标信息中的控制参数值,无需进行繁复的选择,方法简单,方便用户进行操作。
在本发明的一个实施例中,控制参数包括第一参数和第二参数,第一参数的坐标信息和 第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,第一参数设置在同一坐标系中的第一坐标轴,第二参数设置在同一坐标系中的第二坐标轴。从相关的数学知识可知,在关于第一参数和第二参数的二维坐标系中,通过一个坐标点即可确定对应的第一参数值和第二参数值。
具体地,在进行控制参数设置时,可以接收用户的点击指令或连续各个方向的滑动指令。在本发明的一个实施例中,接收用户的点击指令;根据点击指令确定同一坐标系中的选择坐标点;获得选择坐标点对应第一坐标轴的第一参数值以及对应第二坐标轴的第二参数值,其中,第一参数值和第二参数值作为本加热阶段的控制参数值。也就是说,用户可以在由第一参数和第二参数构成的二维坐标系中选择一个坐标点,即可设定当前加热阶段的控制参数值,非常方便,操作简单。再选择坐标系内的另一个坐标点即可确定下一个加热阶段的控制参数值,直至各个加热阶段的控制参数设定完成。
在本发明的另一个实施例中,也可以通过接收用户的滑动指令实现控制参数的设置,具体地,接收用户沿第一坐标轴方向的滑动指令以及从沿第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令;确定沿第一坐标轴方向的滑动指令的结束点和沿第二坐标轴方向的滑动指令的结束点为选择坐标点;获得沿第一坐标轴方向的滑动指令的结束点对应第一坐标轴的第一参数值,以及获得沿第二坐标轴方向的滑动指令的结束点对应第二坐标轴的第二参数值,其中,第一参数值和第二参数值作为本加热阶段的控制参数值。也就是说,用户通过滑动操作即可设定控制参数。
进一步地,在本加热阶段的控制参数值设置结束之后,可以接收从沿第二坐标轴方向的滑动指令的结束点起始的沿第一坐标轴方向且垂直于第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。进而可以根据上面本加热阶段的控制参数的设置过程根据滑动指令设置下一加热阶段的控制参数的设置,直至最后一个加热阶段的参数设置完成。
在本发明的实施例中,第一参数可以包括加热火力或加热时间,第二参数可以包括加热时间或加热火力。第一坐标轴可以为坐标系中的纵轴也可以为横轴,同样地第二坐标轴可以为坐标系中的横轴也可以为纵轴,在进行控制参数设置时,可以先设置第一参数也可以先设置第二参数。
其中,可以通过显示模块显示每个加热阶段的控制参数值,从而可以更加直接地提供给用户,用户可以及时了解设置的控制参数。
在本发明的实施例中,加热火力和加热时间以坐标轴的形式同时在参数设置界面上显示,如果加热火力和/或加热时间数值过多,显示模块无法显示完全,加热火力和加热时间的显示可以随着移动指令的变化而变化。具体地,如果接收到用户的坐标移动指令,根据坐标移 动指令移动参数设置界面中控制参数的坐标信息的显示区域。换句话说,当输入移动指令时,显示模块的参数设置界面可以跟随滑动,例如放大或缩小或者左移或者右移,直至显示完所有的内容,从而可以更加方便用户设置控制参数。
综上所述,本发明实施例的烹饪电器的控制参数设置方法,加热参数例如加热火力和加热时间在参数设置界面都显示,直接可见,无需切换参数设置的触发按键,不需要繁复选择,通过类似触发动作即可进入下一个加热阶段的设置,可以更加简单、方便地实现多个加热阶段的控制参数设置。
需要说明的是,在本说明书的描述中,流程图中或在此以其他方式描述的任何过程或方法描述可以被理解为,表示包括一个或更多个用于实现特定逻辑功能或过程的步骤的可执行指令的代码的模块、片段或部分,并且本发明的优选实施方式的范围包括另外的实现,其中可以不按所示出或讨论的顺序,包括根据所涉及的功能按基本同时的方式或按相反的顺序,来执行功能,这应被本发明的实施例所属技术领域的技术人员所理解。
在流程图中表示或在此以其他方式描述的逻辑和/或步骤,例如,可以被认为是用于实现逻辑功能的可执行指令的定序列表,可以具体实现在任何计算机可读介质中,以供指令执行系统、装置或设备(如基于计算机的系统、包括处理器的系统或其他可以从指令执行系统、装置或设备取指令并执行指令的系统)使用,或结合这些指令执行系统、装置或设备而使用。就本说明书而言,"计算机可读介质"可以是任何可以包含、存储、通信、传播或传输程序以供指令执行系统、装置或设备或结合这些指令执行系统、装置或设备而使用的装置。计算机可读介质的更具体的示例(非穷尽性列表)包括以下:具有一个或多个布线的电连接部(电子装置),便携式计算机盘盒(磁装置),随机存取存储器(RAM),只读存储器(ROM),可擦除可编辑只读存储器(EPROM或闪速存储器),光纤装置,以及便携式光盘只读存储器(CDROM)。另外,计算机可读介质甚至可以是可在其上打印所述程序的纸或其他合适的介质,因为可以例如通过对纸或其他介质进行光学扫描,接着进行编辑、解译或必要时以其他合适方式进行处理来以电子方式获得所述程序,然后将其存储在计算机存储器中。
应当理解,本发明的各部分可以用硬件、软件、固件或它们的组合来实现。在上述实施方式中,多个步骤或方法可以用存储在存储器中且由合适的指令执行系统执行的软件或固件来实现。例如,如果用硬件来实现,和在另一实施方式中一样,可用本领域公知的下列技术中的任一项或他们的组合来实现:具有用于对数据信号实现逻辑功能的逻辑门电路的离散逻辑电路,具有合适的组合逻辑门电路的专用集成电路,可编程门阵列(PGA),现场可编程门阵列(FPGA)等。
本技术领域的普通技术人员可以理解实现上述实施例方法携带的全部或部分步骤是可 以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,该程序在执行时,包括方法实施例的步骤之一或其组合。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (18)

  1. 一种烹饪电器,其特征在于,包括:
    触摸显示屏,所述触摸显示屏用于提供参数设置界面以通过所述参数设置界面接收用户的输入指令;
    控制模块,所述控制模块与所述触摸显示屏相连,所述控制模块用于根据所述输入指令获取所述烹饪电器的多个控制参数值,以使所述烹饪电器根据所述多个控制参数值运行。
  2. 如权利要求1所述的烹饪电器,其特征在于,所述触摸显示屏包括显示模块和输入模块,其中,
    所述显示模块用于提供所述参数设置界面,所述参数设置界面中包括控制参数的坐标信息;
    所述输入模块用于接收用户的输入指令;
    所述控制模块用于根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点,并根据所述选择坐标点获得所述多个控制参数值。
  3. 如权利要求2所述的烹饪电器,其特征在于,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
  4. 如权利要求3所述的烹饪电器,其特征在于,所述输入模块进一步用于接收所述用户的点击指令,所述控制模块进一步用于根据所述点击指令确定所述同一坐标系中的所述选择坐标点,以及获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
  5. 如权利要求3所述的烹饪电器,其特征在于,所述输入模块进一步用于接收所述用户沿第一坐标轴方向的滑动指令以及从所述沿第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令,所述控制模块进一步用于确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点,并获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
  6. 如权利要求5所述的烹饪电器,其特征在于,在所述本加热阶段的控制参数值设置结束之后,所述输入模块进一步用于接收从所述沿第二坐标轴方向的滑动指令的结束点起始 的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
  7. 如权利要求2或4或5所述的烹饪电器,其特征在于,所述输入模块还用于接收所述用户的坐标移动指令,所述控制模块还用于根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
  8. 如权利要求3所述的烹饪电器,其特征在于,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
  9. 如权利要求2所述的烹饪电器,其特征在于,所述显示模块还用于显示每个加热阶段的控制参数值。
  10. 一种烹饪电器的控制参数设置方法,其特征在于,包括以下步骤:
    通过触摸显示屏提供参数设置界面以通过所述参数设置界面接收用户的输入指令;
    根据所述输入指令获取所述烹饪电器的多个控制参数值,以使所述烹饪电器根据所述多个控制参数值运行。
  11. 如权利要求10所述的烹饪电器的控制参数设置方法,其特征在于,所述触摸显示屏包括显示模块,所述显示模块提供参数设置界面,所述参数设置界面中包括控制参数的坐标信息,所述控制参数设置方法包括以下步骤:
    接收用户的输入指令;
    根据所述输入指令确定在所述控制参数的坐标信息中的选择坐标点;以及
    根据所述选择坐标点获得控制参数值。
  12. 如权利要求11所述的烹饪电器的控制参数设置方法,其特征在于,所述控制参数包括第一参数和第二参数,所述第一参数的坐标信息和所述第二参数的坐标信息位于同一参数设置界面的同一坐标系中,其中,所述第一参数设置在所述同一坐标系中的第一坐标轴,所述第二参数设置在所述同一坐标系中的第二坐标轴。
  13. 如权利要求12所述的烹饪电器的控制参数设置方法,其特征在于,进一步包括:
    接收所述用户的点击指令;
    根据所述点击指令确定所述同一坐标系中的所述选择坐标点;以及
    获得所述选择坐标点对应所述第一坐标轴的第一参数值以及对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
  14. 如权利要求12所述的烹饪电器的控制参数设置方法,其特征在于,进一步包括:
    接收所述用户沿第一坐标轴方向的滑动指令以及从沿所述第一坐标轴方向的滑动指令的结束点起始的沿第二坐标轴方向的滑动指令;
    确定所述沿第一坐标轴方向的滑动指令的结束点和所述沿第二坐标轴方向的滑动指令的结束点为所述选择坐标点;以及
    获得所述沿第一坐标轴方向的滑动指令的结束点对应所述第一坐标轴的第一参数值,以及获得所述沿第二坐标轴方向的滑动指令的结束点对应所述第二坐标轴的第二参数值,其中,所述第一参数值和所述第二参数值作为本加热阶段的控制参数值。
  15. 如权利要求14所述的烹饪电器的控制参数设置方法,其特征在于,在所述本加热阶段的控制参数值设置结束之后,进一步包括:
    接收从所述沿第二坐标轴方向的滑动指令的结束点起始的沿所述第一坐标轴方向且垂直于所述第二坐标轴的滑动指令,以切换至下一加热阶段的控制参数值的设置。
  16. 如权利要求11或13或14所述的烹饪电器的控制参数设置方法,其特征在于,还包括:
    接收所述用户的坐标移动指令;以及
    根据所述坐标移动指令移动所述参数设置界面中所述控制参数的坐标信息的显示区域。
  17. 如权利要求12所述的烹饪电器的控制参数设置方法,其特征在于,所述第一参数包括加热火力或加热时间,所述第二参数包括加热时间或加热火力。
  18. 如权利要求11所述的烹饪电器的控制参数设置方法,其特征在于,还包括:
    通过所述显示模块显示每个加热阶段的控制参数值。
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CN109960454B (zh) * 2019-03-11 2022-08-02 深圳市诺为控制技术有限公司 电器设备的用户参数输入方法、装置及使用该方法的电器设备
CN111904249A (zh) * 2019-05-08 2020-11-10 浙江苏泊尔家电制造有限公司 烹饪的方法、烹饪器具及计算机存储介质
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