WO2015059920A1 - 操作装置及び操作方法 - Google Patents
操作装置及び操作方法 Download PDFInfo
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- WO2015059920A1 WO2015059920A1 PCT/JP2014/005327 JP2014005327W WO2015059920A1 WO 2015059920 A1 WO2015059920 A1 WO 2015059920A1 JP 2014005327 W JP2014005327 W JP 2014005327W WO 2015059920 A1 WO2015059920 A1 WO 2015059920A1
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- WIPO (PCT)
- Prior art keywords
- setting value
- value
- display unit
- time setting
- time
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Classifications
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0484—Interaction 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
- G06F3/04847—Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C7/00—Stoves or ranges heated by electric energy
- F24C7/08—Arrangement or mounting of control or safety devices
- F24C7/082—Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination
- F24C7/086—Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination touch control
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0488—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
- G06F3/04883—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/64—Heating using microwaves
- H05B6/6435—Aspects relating to the user interface of the microwave heating apparatus
Definitions
- the present invention relates to an operating device and an operating method for operating home appliances.
- a conventional display device including a display unit having a touch panel displays a plurality of images representing a plurality of options simultaneously on one screen of the display unit, and first represents a first option that is one of the plurality of images.
- a finger or a pen-like object sequentially contacts the first image at the display position and the second image at the second display position representing the second option, which is another option among the plurality of options.
- the first image representing the first option and the second image representing the second option are interchanged, and the first image is displayed.
- a 2nd display position a 2nd image is displayed on a 1st image display position (for example, refer patent document 1).
- the display order of the plurality of options displayed on the display unit can be easily rearranged by a simple operation by the user's finger or pen-like object touching the touch panel.
- the user when using the range function in a microwave oven, the user performs radio wave output setting as intensity setting, then sets time, and starts cooking.
- the oven function in the microwave oven the user sets the oven temperature (usually 150 to 300 ° C.), which is an intensity setting, then sets the time, and starts oven cooking.
- the conventional display device includes a display unit having a touch panel, displays a plurality of images representing a plurality of options on one screen of the display unit, and a finger or a pen-like object on the first image and the second image
- the operation of switching the first image and the second image can be easily performed by sequentially bringing them into contact with each other, in the case of using the oven function or the microwave function of the manual operation of the heating cooker, There is a problem that it is difficult to operate the intensity setting such as the output and the time setting easily and with less effort.
- the present invention has been made to solve the above-described problems, and an object of the present invention is to provide an operation device and an operation method that can improve user convenience.
- An operating device is an operating device that operates a home appliance, and includes a strength setting value that defines an operating strength of the home appliance and a time setting value that specifies an operating time of the home appliance.
- a display unit for displaying on an orthogonal coordinate system; and an operation unit for simultaneously receiving inputs of the intensity setting value and the time setting value displayed on the display unit by an operation of bringing a predetermined object into contact with the display unit.
- the present invention it is possible to easily set the strength setting value that prescribes the operation intensity of the home appliance and the time setting value that prescribes the operation time of the home appliance with a small amount of work. Can be improved.
- FIG. 6 is a flowchart for explaining an operation of changing a temperature setting value and a time setting value by a drag operation in the first embodiment.
- FIG. 1 It is a figure which shows an example of the display screen before changing the temperature setting value and time setting value in the oven cooking of the microwave oven of the 1st modification of this Embodiment 1.
- FIG. It is a figure which shows an example of the display screen after changing the temperature setting value and time setting value in the oven cooking of the microwave oven of the 1st modification of this Embodiment 1.
- FIG. It is a flowchart for demonstrating the operation
- FIG. It is a figure which shows an example of the display screen before changing the output setting value and time setting value of a microwave oven of the 2nd modification of this Embodiment 1.
- FIG. 1 It is a figure which shows an example of the display screen after changing the output setting value and time setting value of the microwave oven of the 2nd modification of this Embodiment 1.
- FIG. It is a figure which shows an example of the display screen before changing the output setting value and time setting value of a microwave oven of the 3rd modification of this Embodiment 1.
- FIG. It is a figure which shows an example of the display screen normally displayed when changing the temperature setting value and time setting value of the oven of the 4th modification of this Embodiment 1.
- FIG. It is a figure which shows an example of the display screen displayed when a finger
- FIG. 12 is a flowchart for explaining an operation of setting a temperature set value and a time set value by a drag operation in the second embodiment. It is a figure which shows an example of an apparatus control system provided with an operating device and the some household appliances operated with an operating device. It is a figure which shows an example of the intensity
- FIG. 1 is a diagram showing an appearance of an oven microwave oven according to Embodiment 1 of the present invention.
- FIG. 2 is a diagram showing the configuration of the operation display unit of the microwave oven in the first embodiment of the present invention.
- FIG. 3 is a block diagram showing a configuration of the operation display unit in the first embodiment of the present invention. The configuration of the first embodiment will be described with reference to FIG. 1, FIG. 2, and FIG. Note that in the first embodiment, an oven microwave oven is described as an example of a household appliance provided with an operation device, but the household appliance is not limited to the oven microwave oven.
- an oven microwave oven (hereinafter referred to as a microwave oven) includes a microwave housing 1, a door 2, a door handle 3, and an operation display unit 4.
- a microwave oven is an example of a heating cooker that heats food.
- the microwave oven according to the first embodiment is a microwave oven having a microwave cooking function that is heated by radio waves, an oven cooking function that is heated by a heater, and a steam cooking function that uses steam. From the door 2 provided on the front surface of the microwave oven casing 1 that is the exterior of the microwave oven, food is stored in the microwave oven, and the door 2 is closed to perform cooking. The user can put food to be cooked from the opening on the front surface of the microwave oven by grasping the door handle 3 provided on the door 2 by hand and pulling it forward.
- the user When the user puts the food to be cooked in the microwave oven, the user operates the operation display unit 4 to make settings and instructions for cooking the food.
- the door 2 When the door 2 is opened, the power of the microwave oven is turned on, and by the operation of the operation display unit 4, the manual operation or automatic menu mode is switched to perform cooking setting. Then, the start key is pressed and cooking is started. When cooking is complete, the microwave stops heating.
- one of the heating menus such as microwave oven, oven, grill or steam (heating and steaming food with steam) is selected, the intensity and time for heating are set, and cooking is performed. Is called.
- the output power (W) of radio waves and time are set.
- the temperature (° C.) and time are set and started.
- the time is set and started.
- the position which installs an oven dish is set.
- the automatic menu is a function that automatically cooks according to a set cooking menu by combining a microwave function, a oven function, a fermentation function, a grill function, and a steam function.
- the user operates the operation display unit 4, selects a cooking menu such as a hamburger from the automatic menu function provided in the microwave oven, and presses a start key to start cooking.
- a cooking menu such as a hamburger from the automatic menu function provided in the microwave oven
- the operation display unit 4 includes a full dot liquid crystal that displays a graphical user interface (hereinafter, GUI) and a capacitive touch panel provided on the full dot liquid crystal. And the operation display part 4 detects that the user's finger
- GUI graphical user interface
- the operation display unit 4 in FIG. 2 includes a GUI operation display unit 201, a start key 205, a return key 206, and a cancel key 207.
- a time setting axis 202, a temperature setting axis 203, and a touch point 204 are displayed.
- the GUI operation display unit 201 is composed of a full dot liquid crystal and a capacitive touch panel.
- the time setting axis 202 is a horizontal axis
- the temperature setting axis 203 is a vertical axis
- the heating time and the heating temperature are displayed in a graph.
- the user touches a touch point 204 described later to set the heating time and heating temperature of the microwave oven.
- the time setting axis 202 is a coordinate axis for time setting displayed on the GUI operation display unit 201.
- the time setting axis 202 is provided with a scale such as 5, 10, 15, 20 (minutes).
- the scale differs depending on the heating mode such as a range, oven, grill, steam or fermentation, and the range can be enlarged or reduced (not shown).
- the temperature setting axis 203 is a temperature setting coordinate axis displayed on the GUI operation display unit 201.
- the temperature setting shaft 203 is provided with a scale such as 100, 200, 300 (° C.).
- the graph part scrolls.
- the scale differs depending on the heating mode such as the range, oven, grill, steam or fermentation.
- the heating mode is oven or fermentation
- the scale represents temperature
- the heating mode is a microwave oven
- the scale represents output power (W) of radio waves.
- the touch point 204 is an intersection of the temperature setting value and the time setting value displayed on the GUI operation display unit 201.
- the touch point 204 includes a straight line extending in a direction perpendicular to the temperature setting axis 203 from the temperature setting value on the temperature setting axis 203, and a direction perpendicular to the time setting axis 202 from the time setting value on the time setting axis 202. This is the intersection with the straight line.
- the touch point 204 is touched with a user's finger and dragged up, down, left, right, or diagonally. Thereby, two setting values are changed continuously and simultaneously. Then, when the finger is released from the touch point 204 (the finger is released), two set values are determined. When the touch point 204 is dragged rightward and the touch point 204 reaches the right end of the graph, the scale of the time setting axis 202 is scrolled.
- the touch point 204 may be moved to the touched position.
- the color of the area surrounded by the vertical line extending from the time setting axis 202 to the touch point 204 and the vertical line extending from the temperature setting axis 203 to the touch point 204 is displayed by changing the color around the area to display the time. Make the setpoint and temperature setpoint easy to understand.
- an area surrounded by a perpendicular extending from the time setting axis 202 to the touch point 204 and a perpendicular extending from the temperature setting axis 203 to the touch point 204 is graphically displayed in a graphical form, so that the setting value of the function is set. Is intuitive and easy to understand.
- the GUI operation display unit 201 displays the initial setting values of the temperature setting value and the time setting value in a rectangular area in which the surroundings and the color are changed, but does not display the initial setting value. May be.
- the GUI operation display unit 201 may display an initial setting value when an arbitrary position on the displayed graph-like setting map is touched.
- the touch point 204 indicates the intersection of the temperature setting value and the time setting value.
- a marker button (described later) is attached to the touch point 204. You may display in a position. Further, the GUI operation display unit 201 may display a marker button only during a touch operation.
- the touch point 204 should just comprise the operation part which can be touch-operated for changing a temperature setting value and a time setting value, The means is not limited.
- the GUI operation display unit 201 may display a marker button when the finger approaches.
- the start key 205 is a button for starting cooking with the temperature setting value and the time setting value set and confirmed in the GUI operation display unit 201.
- a return key 206 is a button for returning to the previous procedure the GUI display changed on the GUI operation display unit 201 or the setting determined on the GUI operation display unit 201, and the like to return to the previous screen. Button.
- the cancel key 207 is a button for stopping the heating operation after the set values sequentially set on the GUI operation display unit 201 or the heating operation is started.
- the start key 205, the return key 206, and the cancel key 207 are composed of independent keys such as a tact switch or a capacitive touch switch.
- the operation display unit 4 includes a touch operation unit 301, a touch detection unit 302, a control unit 303, a GUI display unit 304, a switch (SW) operation unit 305, a storage unit 306, a heater 307, and a radio wave output unit 308. These components are made to cooperate and function as the operation display unit 4.
- the operation display unit 4 includes, as hardware, a microcomputer, a full dot liquid crystal, a capacitive touch panel, a capacitive touch sensor IC (Integrated Circuit) and a switch, and hardware and software for operating the microcomputer And collaborate.
- the touch operation unit 301 is composed of, for example, a capacitive touch panel. When the user's finger comes into contact, the capacitance changes and is detected by a touch detection unit 302 described later.
- the touch detection unit 302 is a sensor IC that detects a change in capacitance of the touch operation unit 301.
- the touch detection unit 302 outputs the detected change amount and coordinates of the capacitance.
- the control unit 303 includes a microcomputer and software, and acquires detection information of various sensors and setting values of the operation display unit 4. If the microwave oven is equipped with an operating device (operation display unit 4) as in the present embodiment, the control unit 303 may have a magnetron that outputs a heating radio wave or an interior in addition to the above functions. The heater which heats is driven and the microwave oven is controlled. In addition, the microcomputer which comprises the control part 303 may be one, or plural.
- the GUI display unit 304 is composed of, for example, a full dot liquid crystal.
- the control unit 303 creates a GUI image to be drawn in a video RAM (Random Access Memory), and outputs the created GUI image to the liquid crystal (GUI display unit 304) at predetermined timings.
- the GUI display unit 304 displays the GUI image output by the control unit 303.
- the GUI display unit 304 displays the strength setting value that defines the operation intensity of the home appliance and the time setting value that defines the operation time of the home appliance on an orthogonal coordinate system.
- the touch operation unit 301 simultaneously receives inputs of an intensity setting value and a time setting value displayed on the GUI display unit 304 by an operation of bringing a predetermined object into contact with the GUI display unit 304.
- the predetermined object is a finger, a touch pen, or the like, and various objects that can cause the touch detection unit 302 to detect contact.
- one of the vertical axis and the horizontal axis on the Cartesian coordinate system represents the intensity setting value
- the other of the vertical axis and the horizontal axis represents the time setting value.
- the touch operation unit 301 simultaneously receives input of the intensity setting value and the time setting value by an operation of dragging the intersection of the intensity setting value and the time setting value on the orthogonal coordinate system.
- the SW operation unit 305 is constituted by a tact switch (SW), for example.
- the SW operation unit 305 includes a start key for instructing the start of the heating operation, a return key for returning to the previous screen, and a cancel key for canceling the input contents or stopping the heating operation.
- the storage unit 306 is configured by a memory such as a ROM (Read Only Memory) or a RAM.
- the storage unit 306 is a standard default setting value (a combination of a temperature setting value and a time setting value or a combination of an output setting value and a time setting value) frequently used for each heating mode, or frequently used by a user. Stores the set value.
- the arbitrary set value is stored in a RAM or a rewritable ROM (such as FlashROM or EEPROM) as the user operates the operation display unit 4.
- the heater 307 is composed of a heater for oven cooking.
- the control unit 303 controls the power supplied to the heater 307, and adjusts and controls the temperature of the oven cooking.
- the radio wave output unit 308 is composed of a magnetron that outputs radio waves for cooking a microwave oven.
- the control unit 303 adjusts and controls the radio wave output from the radio wave output unit 308.
- the operation device includes a touch operation unit 301, a touch detection unit 302, a control unit 303, a GUI display unit 304, a SW operation unit 305, and a storage unit 306 indicated by dotted lines in FIG.
- the touch operation unit 301 includes a touch operation unit 301, a touch detection unit 302, a control unit 303, a GUI display unit 304, a SW operation unit 305, and a storage unit 306 indicated by dotted lines in FIG.
- FIG. 4 is a diagram showing an example of a display screen before changing the temperature setting value and the time setting value in the oven cooking of the microwave oven according to the first embodiment.
- FIG. 5 is a diagram illustrating an example of a display screen after changing the temperature setting value and the time setting value in the oven cooking of the microwave according to the first embodiment.
- FIG. 6 is a flowchart for explaining the operation of changing the temperature setting value and the time setting value by the drag operation in the first embodiment. The operation for changing the temperature setting value and the time setting value will be described with reference to FIGS.
- the GUI display unit 304 displays the initial temperature setting value and the initial time setting value on an orthogonal coordinate system in which the vertical axis is the temperature setting value and the horizontal axis is the time setting value.
- the storage unit 306 stores an initial temperature set value and an initial time set value in advance.
- the control unit 303 reads the initial temperature setting value and the initial time setting value from the storage unit 306, creates a GUI image for displaying the initial temperature setting value and the initial time setting value on the orthogonal coordinate system, and outputs the GUI image to the GUI display unit 304. To do.
- the GUI display unit 304 displays the current initial temperature setting value and the initial time setting value in an area between the time setting axis 202 and the temperature setting axis 203.
- the initial temperature set value is, for example, 150 ° C.
- the initial time set value is, for example, 7 minutes.
- the GUI display unit 304 displays a perpendicular extending to the time setting axis 202 and a perpendicular extending to the temperature setting axis 203 from a point on the orthogonal coordinate system specified by the initial temperature setting value and the initial time setting value.
- the user touches the area displayed between the time setting axis 202 and the temperature setting axis 203.
- the point 204 is touched with the finger 401.
- step S2 the touch detection unit 302 determines whether or not the user's finger has touched the touch panel (touch operation unit 301). When the touch operation unit 301 is touched with a finger, the touch detection unit 302 detects a touch operation. If it is determined that the user's finger is not in contact (NO in step S2), the process returns to step S1.
- step S3 the touch detection unit 302 detects the touched coordinates and outputs the detected coordinates to the control unit 303.
- step S ⁇ b> 4 the control unit 303 determines whether or not the detected coordinates match the coordinates of the current touch point 204 held in the storage unit 306.
- the control unit 303 determines whether or not the inside of a predetermined area including the coordinates of the current touch point 204 held in the storage unit 306 is touched by comparing with the acquired touch coordinates. If it is determined that the detected coordinates do not match the coordinates of the touch point 204 (NO in step S4), the process returns to step S1.
- step S5 the touch detection unit 302 determines whether a drag operation is detected.
- the drag operation is an operation that moves while the finger is in contact with the touch panel.
- the touch detection unit 302 detects a drag operation. If a drag operation is not detected (NO in step S5), the process proceeds to step S8.
- step S5 when a drag operation is detected (YES in step S5), in step S6, the touch detection unit 302 detects the dragged coordinates and outputs the detected coordinates to the control unit 303.
- the touch detection unit 302 detects the coordinates of the touch operation unit 301 touched by the finger at predetermined time intervals (for example, about several tens of milliseconds), The detected coordinates are output to the control unit 303.
- the control unit 303 creates a GUI image according to the acquired touch coordinates.
- the control unit 303 creates a GUI image in which the position touched by the user's finger matches the touch point 204.
- the touch point 204 moves in accordance with the movement of the user's finger, and the perpendicular extending from the touch point 204 to the time setting axis 202 and the temperature setting axis 203 also moves in accordance with the movement of the user's finger.
- step S7 the GUI display unit 304 displays the GUI image created by the control unit 303 at each screen update timing.
- the user moves the finger 401 in contact with the screen to the temperature and time position that the user wants to set, and releases the finger 401. Release is an operation of releasing the finger from the operation target touched with the finger 401.
- step S8 the touch detection unit 302 determines whether or not the finger 401 is released from the screen.
- the touch detection unit 302 detects that the finger 401 has been released from the screen. If it is determined that the finger 401 is not released (NO in step S8), the process returns to step S5.
- step S9 the touch detection unit 302 detects coordinates indicating the position where the finger 401 is released from the screen.
- the touch detection unit 302 outputs release information indicating that the finger 401 is released from the screen and coordinates indicating the position where the finger 401 is released to the control unit 303.
- step S ⁇ b> 10 the control unit 303 creates a GUI image in which the temperature setting value and the time setting value are changed by moving the touch point 204, and the GUI display unit 304 is created by the control unit 303.
- a GUI image is displayed.
- the GUI display unit 304 displays a GUI image in which the temperature setting value is changed to 250 ° C. and the time setting value is changed to 20 minutes.
- the control unit 303 stores the changed temperature setting value and time setting value in the storage unit 306.
- the SW operation unit 305 accepts pressing of the start key 205.
- the control unit 303 controls the heating operation of the oven cooking heater 307 using the temperature setting value and the time setting value stored in the storage unit 306.
- the color of the area surrounded by the perpendicular extending from the time setting axis 202 to the touch point 204 and the perpendicular extending from the temperature setting axis 203 to the touch point 204 is the color around the area. It is changed and displayed. For this reason, “energy (temperature) ⁇ time” in cooking is displayed visually in an easily understandable manner.
- FIG. 7 is a diagram illustrating an example of a display screen before changing the temperature setting value and the time setting value in oven cooking of the microwave oven according to the first modification of the first embodiment.
- FIG. 8 is a diagram illustrating an example of a display screen after changing the temperature setting value and the time setting value in oven cooking of the microwave oven according to the first modification of the first embodiment.
- FIG. 9 is a flowchart for explaining an operation of changing the temperature setting value and the time setting value by a touch operation in the first modification of the first embodiment. The operation for changing the temperature setting value and the time setting value will be described with reference to FIGS.
- the first modification of the first embodiment is different from the first embodiment described above in that the temperature setting value and the time setting value are changed by a single touch operation instead of a drag operation.
- One of the vertical axis and the horizontal axis on the orthogonal coordinate system represents the intensity setting value
- the other of the vertical axis and the horizontal axis represents the time setting value.
- the touch operation unit 301 simultaneously receives input of the intensity setting value and the time setting value by an operation of touching an arbitrary position on the orthogonal coordinate system.
- the GUI display unit 304 displays the strength setting value and the time setting value so that the position touched by the touch operation unit 301 matches the intersection of the strength setting value and the time setting value.
- the GUI display unit 304 displays the initial temperature setting value and the initial time setting value on the orthogonal coordinate system.
- the storage unit 306 stores an initial temperature set value and an initial time set value in advance.
- the control unit 303 reads the initial temperature setting value and the initial time setting value from the storage unit 306, creates a GUI image for displaying the initial temperature setting value and the initial time setting value on the orthogonal coordinate system, and outputs the GUI image to the GUI display unit 304. To do.
- the GUI display unit 304 of the microwave oven displays the current initial temperature setting value and initial time setting value as shown in FIG. 7 when changing the oven cooking temperature setting value and time setting value.
- the initial temperature setting value is, for example, 150 ° C.
- the initial time setting value is, for example, 5 minutes.
- the user uses his / her finger 401 to locate the vicinity of the position corresponding to the desired temperature setting value and the time setting value in the touch operation area displayed between the time setting axis 202 and the temperature setting axis 203 displayed by the GUI display unit 304. touch.
- the GUI display unit 304 displays the initial temperature setting value and the initial time setting value on the orthogonal coordinate system, but the present disclosure is not particularly limited thereto.
- the GUI display unit 304 may display only the time setting axis 202 and the temperature setting axis 203 without displaying the initial temperature setting value and the initial time setting value.
- step S2 the touch detection unit 302 determines whether or not the user's finger has touched the touch panel (touch operation unit 301). When the touch operation unit 301 is touched with the finger 401, the touch detection unit 302 detects the touch operation. If it is determined that the user's finger is not in contact (NO in step S22), the process returns to step S21.
- step S23 the touch detection unit 302 detects the touched coordinates and outputs the detected coordinates to the control unit 303.
- step S ⁇ b> 24 the control unit 303 moves the touch point 204, which is the intersection of the temperature setting value and the time setting value, to the detected touch coordinates, and holds them in the storage unit 306 in association with the coordinates.
- the set value information (temperature set value and time set value) is read out, a GUI image indicating the read temperature set value and time set value is created, and the GUI display unit 304 displays the created GUI image.
- the GUI display unit 304 moves the touch point 204 to a position where the finger 401 is touched, and also sets a temperature setting value (300 corresponding to the coordinates of the position where the finger 401 is touched). ° C.) and a time set value (18 minutes) are displayed to the user.
- step S25 the touch detection unit 302 determines whether or not the finger 401 is released from the screen.
- the touch detection unit 302 detects that the finger 401 has been released from the screen. If it is determined that the finger 401 has not been released (NO in step S25), the process returns to step S24.
- step S26 the touch detection unit 302 detects coordinates indicating the position where the finger 401 is released from the screen.
- the touch detection unit 302 outputs release information indicating that the finger 401 is released from the screen and coordinates indicating the position where the finger 401 is released to the control unit 303.
- step S ⁇ b> 27 the control unit 303 creates a GUI image in which the temperature setting value and the time setting value are changed by moving the touch point 204, and the GUI display unit 304 is created by the control unit 303. A GUI image is displayed.
- the control unit 303 stores the changed temperature setting value and time setting value in the storage unit 306.
- the SW operation unit 305 accepts pressing of the start key 205.
- the control unit 303 heats the oven cooking heater 307 with the temperature set value and the time set value stored in the storage unit 306. Control the behavior.
- the present invention can be similarly applied to a heating operation using the microwave mode or a heating operation using another heating mode. It is.
- the heating mode is the microwave oven mode
- the output set value is used on the vertical axis instead of the temperature set value, and the heating operation of the microwave oven is set by a combination of the output set value and the time set value.
- the GUI display unit 304 displays the current setting value (initial setting value) in a state before the user changes the setting value (default state). It is not necessary to display the current set value (initial set value) in the default state.
- FIG. 10 is a diagram illustrating an example of a display screen before changing the output set value and the time set value of the microwave oven according to the second modification of the first embodiment.
- FIG. 11 is a diagram illustrating an example of a display screen after changing the output set value and the time set value of the microwave oven according to the second modification of the first embodiment.
- the GUI display unit 304 has a standard set value as shown in FIG. 10 in the touch operation area indicated between the time setting axis 202 and the temperature setting axis 203. Icons corresponding to default setting values (output setting value and time setting value) may be mapped and displayed. As a result, it is possible to easily set a setting value frequently used by the user.
- the user drags the touch point 204 to the position of a desired icon among a plurality of icons displayed on the screen.
- the user touches a desired icon among a plurality of icons displayed on the screen.
- the heating operation of a microwave oven can be set by one operation.
- the user drags the touch point 204 to the position of one icon displayed on the screen or touches one icon displayed on the screen. .
- the origin position of the orthogonal coordinate system defined by the output setting axis 208 and the time setting axis 202 is set to the touch point 204.
- touch the touch point 204 drag the touch point 204 to the default setting value 900 (output setting value 600W, time setting value 3 minutes) indicating the frozen rice, Release.
- the touch point 204 can be set to the set value for frozen rice.
- the display of the icon corresponding to the default setting value 900 is switched when the user operates the touch operation unit 301 or the SW operation unit 305.
- the default setting value 900 is displayed as an icon with a pattern that allows the user to know the food or dish to be heated. This makes it easier to understand what kind of food is the set value for heating.
- the touch operation unit 301 may have a function of detecting the proximity of the finger 401, and the GUI display unit 304 displays an icon corresponding to the default setting value 900 when the proximity of the finger 401 is detected. May be. In that case, the GUI display unit 304 switches display / non-display of the icon according to the distance between the finger 401 and the touch operation unit 301.
- the storage unit 306 of the microwave oven may store arbitrary setting values frequently used by the user, and the GUI display unit 304 displays the arbitrary setting values stored in the storage unit 306 in the touch operation area. May be.
- the GUI display unit 304 may display “arbitrary setting value (700 W, 1 minute)” in the touch operation area.
- FIG. 12 is a diagram showing an example of a display screen before changing the output set value and the time set value of the microwave oven of the third modification of the first embodiment.
- the GUI display unit 304 displays an icon corresponding to the arbitrarily set value 901 in the touch operation area. Then, similarly to the operation of the default setting value 900, the user drags the touch point 204 or touches an icon. Thereby, the setting value which a user uses frequently can be set easily.
- the display of the icon corresponding to the arbitrary setting value 901 can be switched by the user operating the touch operation unit 301 or the SW operation unit 305, similarly to the display switching of the default setting value 900. Since the arbitrary setting value 901 frequently used by the user is iconified, the arbitrary setting position can be understood more intuitively.
- the GUI display unit 304 displays only one arbitrary setting value 901, but may display a plurality of arbitrary setting values 901. Also, different icons may be used for each family, and the desired arbitrary set value can be displayed more easily for each user and can be set.
- the touch operation unit 301 may have a function of detecting the proximity of the finger 401, and the GUI display unit 304 displays an icon corresponding to the arbitrary setting value 901 when the proximity of the finger 401 is detected. May be. In that case, the GUI display unit 304 switches display / non-display of the icon according to the distance between the finger 401 and the touch operation unit 301. Further, the GUI display unit 304 may display the default setting value 900 and the arbitrary setting value 901 at the same time.
- GUI display unit 304 may enlarge and display icons corresponding to the default setting value 900 and the arbitrary setting value 901 when the finger 401 is approached. Thereby, since the set value can be enlarged and displayed in an easy-to-understand manner, convenience can be improved.
- FIG. 13 is a diagram illustrating an example of a display screen that is normally displayed when the temperature setting value and the time setting value of the oven according to the fourth modification of the first embodiment are changed.
- FIG. 14 is a diagram illustrating an example of a display screen that is displayed when a finger comes close when changing the temperature setting value and the time setting value of the oven according to the fourth modification of the first embodiment.
- the GUI display unit 304 displays the intersection of the temperature setting value and the time setting value as the touch point 204 as shown in FIG. 14 is detected, a circular marker button 1001 may be displayed at the position of the touch point 204 as shown in FIG. Thereby, the position where the touch operation is performed can be clearly indicated.
- the marker button 1001 may be blinked so that the user can easily recognize it, and the shape or display method of the marker button 1001 is not limited to this.
- the GUI display unit 304 displays the marker button 1001 when a finger approaches the touch operation unit 301, that is, when the distance between the screen and the finger is about several mm to 10 mm, and when the finger is released from the screen.
- the marker button 1001 is deleted.
- the GUI display unit 304 may display the circular marker button 1001 at the position of the touch point 204 even in a normal state (when a finger is not in proximity).
- a method for setting a combination of temperature and time or a combination of output and time has been described.
- a combination of other parameters and time may be set.
- a GUI image similar to the above is displayed, and other parameters and time are set by a touch operation (not shown).
- the GUI display unit 304 displays the time setting axis 202 in the horizontal direction, the temperature setting axis 203 in the vertical direction, and the touch operation unit 301 is displayed. A touch operation in the touch operation area is accepted.
- the temperature setting value (or output setting value) and the time setting value can be input simultaneously with a single touch operation, so the number of operations for setting the microwave oven can be reduced and the operability can be reduced. And convenience can be improved.
- the touch operation unit 301 allows a temperature setting value (or output setting value) and a time setting value to be input simultaneously by a single drag operation. Therefore, since the user can set the two parameters of cooking by heating in the microwave oven simultaneously and easily while visually confirming the setting change operation, the operability and convenience can be further improved.
- the touch operation unit 301 receives a touch operation to an arbitrary position on the two-axis coordinate system of the time setting axis 202 and the temperature setting axis 203 (the output setting axis 208 in the microwave function), thereby increasing the strength. Input time simultaneously. Therefore, the user can change the heating control temperature (or output power) and time of the microwave oven simultaneously by directly touching the position of the desired set value combination, thereby reducing the number of setting operations. It is possible to improve operability and convenience.
- the GUI display unit 304 displays an icon (image) corresponding to a default setting value obtained by combining a temperature setting value and a time setting value in advance with a time setting axis 202 and a temperature setting axis 203 (in the microwave function, an output setting axis 208). ) And a two-axis coordinate system.
- the storage unit 306 stores a combination of a temperature setting value (or output setting value) and a time setting value input in advance by the user as an arbitrary setting value, and the GUI display unit 304 is stored in the storage unit 306.
- An icon (image) corresponding to the arbitrary set value is displayed on a two-axis coordinate system including a time setting axis 202 and a temperature setting axis 203 (output setting axis 208 in the microwave function).
- the GUI operation display unit 201 is configured by a capacitive touch panel.
- the present disclosure is not particularly limited to this, and the GUI operation display unit 201 performs a touch operation or a drag operation. It may be configured by another type of touch panel such as a possible resistive film type touch panel.
- the scale of the time setting axis 202 is expressed in units of 5 minutes, and the scale of the temperature setting axis 203 is expressed in units of 100 ° C.
- the time setting axis 202 and the temperature setting axis 203 The scale of is not limited to this unit width.
- the GUI display unit 304 may scroll the screen in the horizontal direction if the finger protrudes from the liquid crystal screen.
- the GUI display unit 304 may change the scale of the time to be displayed and display the scale of the time setting axis 202 so as to fit within the screen.
- the operation device (operation display unit 4) of the first embodiment may be a smart phone, a tablet computer, a personal computer (PC), or the like capable of a touch operation for wireless communication.
- the home appliance can be remotely operated, so that convenience can be improved.
- FIG. 15 is a diagram showing the configuration of the operation display unit of the oven microwave oven according to the second embodiment of the present invention.
- FIG. 16 is a block diagram showing a configuration of the operation display unit in the second embodiment of the present invention.
- the configuration of the second embodiment will be described with reference to FIG. 1, FIG. 15, and FIG. Note that in this second embodiment, an oven microwave oven (hereinafter referred to as a microwave oven) is described as an example of a household appliance provided with an operation device; however, the household appliance is not limited to the oven microwave oven.
- a microwave oven an oven microwave oven
- the operation display unit 4 in FIG. 15 includes a GUI operation display unit 201, a start key 205, a return key 206, and a cancel key 207.
- a time setting axis 202, a temperature setting axis 203, and a guidance auxiliary line 601 are displayed.
- the GUI operation display unit 201 is composed of a full dot liquid crystal and a capacitive touch panel.
- the time setting axis 202 is a horizontal axis
- the temperature setting axis 203 is a vertical axis
- the heating time and the heating temperature are displayed in a graph.
- the user draws a trajectory with a single stroke and moves the region in the Cartesian coordinate system represented by the time setting axis 202 and the temperature setting axis 203 in a state where a predetermined object is in contact with the microwave oven. Set the action.
- the time setting axis 202 is a coordinate axis for time setting displayed on the GUI operation display unit 201.
- the time setting axis 202 is provided with a scale such as 5, 10, 15, 20 (minutes).
- the scale differs depending on the heating mode such as a range, oven, grill, steam or fermentation, and the range can be enlarged or reduced (not shown).
- the temperature setting axis 203 is a temperature setting coordinate axis displayed on the GUI operation display unit 201.
- the temperature setting shaft 203 is provided with a scale such as 1, 3, 5, 7, 9 (level). Further, when an attempt is made to display after the upper end of the temperature setting axis 203, that is, after the heating level 9 shown in FIG. 15, the graph portion scrolls.
- the scale differs depending on the heating mode such as the range, oven, grill, steam or fermentation.
- the heating mode is oven or fermentation
- the scale represents temperature
- the heating mode is a microwave oven
- the scale represents output power (W) of radio waves.
- the guidance auxiliary line 601 is a line that serves as a guide when the user sets the temperature setting value and the time setting value.
- the user moves the object on a rectangular coordinate system defined by the time setting axis 202 and the temperature setting axis 203 with a predetermined object in contact therewith. Thereby, the locus of the contact position of the predetermined object is set as the temperature set value and the time set value.
- the start key 205 is a button for starting cooking with the temperature setting value and the time setting value set and confirmed in the GUI operation display unit 201.
- a return key 206 is a button for returning to the previous procedure the GUI display changed on the GUI operation display unit 201 or the setting determined on the GUI operation display unit 201, and the like to return to the previous screen. Button.
- the cancel key 207 is a button for stopping the heating operation after the set values sequentially set on the GUI operation display unit 201 or the heating operation is started.
- the start key 205, the return key 206, and the cancel key 207 are composed of independent keys such as a tact switch or a capacitive touch switch.
- the operation display unit 4 includes a touch operation unit 501, a touch detection unit 502, a control unit 503, a GUI display unit 504, a switch (SW) operation unit 505, a storage unit 506, a heater 507, and a radio wave output unit 508. These components are made to cooperate and function as the operation display unit 4.
- the operation display unit 4 includes, as hardware, a microcomputer, a full-dot liquid crystal, a capacitive touch panel, a capacitive touch sensor IC, and a switch. These hardware and software for operating the microcomputer are included. Collaborate.
- the touch operation unit 501 is composed of, for example, a capacitive touch panel.
- the capacitance changes and is detected by a touch detection unit 502 described later.
- the touch detection unit 502 is a sensor IC that detects a change in capacitance of the touch operation unit 501.
- the touch detection unit 502 outputs the detected change amount and coordinates of the capacitance.
- the control unit 503 includes a microcomputer and software, and acquires detection information of various sensors and setting values of the operation display unit 4.
- the control unit 503 has a magnetron that outputs a heating radio wave or an interior in addition to the above function. The heater which heats is driven and the microwave oven is controlled. Note that the number of microcomputers constituting the control unit 503 may be one or more.
- the GUI display unit 504 is composed of, for example, a full dot liquid crystal.
- the control unit 503 creates a GUI image to be drawn in the video RAM, and outputs the created GUI image to the liquid crystal (GUI display unit 504) at predetermined timings.
- the GUI display unit 504 displays the GUI image output by the control unit 503.
- the SW operation unit 505 is constituted by a tact switch (SW), for example.
- the SW operation unit 505 includes a start key for instructing the start of the heating operation, a return key for returning to the previous screen, and a cancel key for canceling the input contents or stopping the heating operation.
- the storage unit 506 is configured by a memory such as a ROM or a RAM.
- the storage unit 506 is a standard default setting value (a combination of a temperature setting value and a time setting value or a combination of an output setting value and a time setting value) frequently used for each heating mode, or frequently used by a user. Stores the set value.
- the arbitrary set value is stored in a RAM or a rewritable ROM (FlashROM, EEPROM, etc.) as needed by the user operating the operation display unit 4.
- the heater 507 is composed of a heater for oven cooking.
- the control unit 503 controls the power supplied to the heater 507 to adjust and control the temperature of the oven cooking.
- the radio wave output unit 508 is composed of a magnetron that outputs radio waves for cooking a microwave oven.
- the control unit 503 adjusts and controls the radio wave output from the radio wave output unit 508.
- the operation device includes a touch operation unit 501, a touch detection unit 502, a control unit 503, a GUI display unit 504, a SW operation unit 505, and a storage unit 506, which are indicated by dotted lines in FIG.
- the touch operation unit 501 includes a touch operation unit 501, a touch detection unit 502, a control unit 503, a GUI display unit 504, a SW operation unit 505, and a storage unit 506, which are indicated by dotted lines in FIG.
- the touch operation unit 501 receives the locus of the contact position of the predetermined object as an input of the intensity setting value and the time setting value by an operation of moving on the orthogonal coordinate system in a state where the predetermined object is in contact.
- the storage unit 506 stores a predetermined locus (guidance auxiliary line 601) on the orthogonal coordinate system.
- the GUI display unit 504 displays a predetermined locus (guidance auxiliary line 601) stored in the storage unit 506 before a predetermined object comes into contact with the GUI display unit 504.
- the GUI display unit 504 displays a predetermined locus (guidance auxiliary line 601) stored in the storage unit 506 after the power is turned on, the door 3 is closed, or the heating mode is selected. It may be displayed.
- the temperature setting value and the time setting value are obtained by drawing a locus on the GUI operation display unit 201 with a pen-type input device such as a finger or a stylus pen.
- a pen-type input device such as a finger or a stylus pen.
- FIG. 17 is a diagram illustrating an example of a display screen before setting the temperature setting value (heating level) and the time setting value in the oven cooking of the microwave oven according to the second embodiment.
- FIG. 18 is a diagram illustrating an example of a display screen after setting a temperature set value and a time set value in oven cooking of the microwave according to the second embodiment.
- FIG. 19 is a flowchart for explaining the operation of setting the temperature set value and the time set value by the drag operation in the second embodiment. The operation for setting the temperature setting value and the time setting value will be described with reference to FIGS.
- the GUI display unit 504 assists the user's operation and displays a guidance auxiliary line 601 indicating the time change of the temperature set value, and the vertical axis is the temperature set value and the horizontal axis is the time set value. Display on the coordinate system.
- the storage unit 506 stores guidance auxiliary lines 601 in advance.
- the control unit 503 reads the guidance auxiliary line 601 from the storage unit 506, creates a GUI image for displaying the guidance auxiliary line 601 on the orthogonal coordinate system, and outputs the GUI image to the GUI display unit 504.
- the GUI display unit 504 displays a guidance auxiliary line 601 indicated by a dotted line in a region between the time setting axis 202 and the temperature setting axis 203.
- the user performs a drag operation by tracing the guidance auxiliary line 601 with the finger 401 from the left side.
- the auxiliary guidance line 601 can know to some extent the setting contents to be input with a single stroke and perform an input operation with a single stroke. Make it easier.
- the guidance auxiliary line 601 is displayed before setting the temperature set value and the time set value when cooking in the oven.
- the guidance auxiliary line 601 represented by a dotted line or the like is for guiding the user, and does not force the user to trace the dotted line with a finger.
- the display form of the guidance auxiliary line 601 may be other than the dotted line, but as shown in FIG. 18 to be described later, a display form different from the locus (displayed by a thick solid line) actually traced with the finger 401 by the user. It is desirable from the viewpoint of visibility.
- the guidance auxiliary line 601 represented by a dotted line or the like is displayed in a different form (cooking process) depending on the cooking object to be cooked by the oven and different depending on the cooking object specified by the user. That is, the predetermined trajectory (guidance auxiliary line 601) displayed before the predetermined object comes into contact with the GUI display unit 504 is preferably different depending on the object controlled by the home appliance.
- the storage unit 506 stores the guidance auxiliary line 601 in association with the object controlled by the home appliance.
- the storage unit 506 may store the guidance auxiliary line 601 in association with a cooking menu such as a hamburger, or may store the guidance auxiliary line 601 in association with food such as frozen rice.
- the control unit 503 reads the guidance auxiliary line 601 corresponding to the input food and displays it on the GUI display unit 504.
- the microwave oven may include a photographing unit that photographs the food in the warehouse, and the control unit 503 may automatically specify the guidance auxiliary line 601 corresponding to the food photographed by the photographing unit.
- the guidance auxiliary line 601 represented by a dotted line or the like may be displayed in the form (cooking process) set by the user last time. That is, the storage unit 506 may store a trajectory of the contact position of a predetermined object set by the user last time, and the GUI display unit 504 displays the previous trajectory stored in the storage unit 506 as the guidance auxiliary line 601. May be displayed.
- the guidance auxiliary line 601 may average and display a plurality of forms (cooking processes) set by the user in the past. That is, the storage unit 506 may store a plurality of trajectories of contact positions of a predetermined object set by the user in the past, and the control unit 503 averages the plurality of trajectories stored in the storage unit 506.
- the GUI display unit 504 may display the averaged trajectory as the guidance auxiliary line 601.
- the GUI display unit 504 displays the current set value in an area between the time setting axis 202 and the temperature setting axis 203.
- the temperature set value is displayed with nine heating levels.
- the current guidance auxiliary line 601 is set to the heating level 9 for 5 minutes from the start of heating, for example, and then set to the heating level 2 for 15 minutes thereafter.
- step S42 the touch detection unit 502 determines whether or not the user's finger has touched the touch panel (touch operation unit 501).
- touch detection unit 502 detects the presence of a touch operation. If it is determined that the user's finger is not in contact (NO in step S42), the process returns to step S41.
- step S43 the touch detection unit 502 detects the touched coordinate and outputs the detected coordinate to the control unit 503.
- step S44 the touch detection unit 502 determines whether or not a drag operation has been detected.
- the drag operation is an operation that moves while the finger is in contact with the touch panel.
- the touch detection unit 502 detects a drag operation. If no drag operation is detected (NO in step S44), the process proceeds to step S47.
- step S45 the touch detection unit 502 detects the dragged coordinates and outputs the detected coordinates to the control unit 503.
- the touch detection unit 502 sets the coordinates of the touch operation unit 501 touched by the finger 401 at predetermined time intervals (for example, about several tens of milliseconds).
- the detected coordinates are output to the control unit 503.
- the control unit 503 creates a GUI image according to the acquired touch coordinates.
- the control unit 503 creates a GUI image that draws a straight line connecting two coordinates detected at predetermined time intervals while moving while the user's finger is in contact. Thereby, the locus
- step S46 the GUI display unit 504 displays the GUI image created by the control unit 503 at each screen update timing.
- the user moves the finger 401 in contact with the screen to the temperature and time position that the user wants to set, and then releases the finger 401 from the screen.
- step S47 the touch detection unit 502 determines whether or not the finger 401 is released from the screen.
- the touch detection unit 502 detects that the finger 401 has been released from the screen. If it is determined that the finger 401 is not released (NO in step S47), the process returns to step S44.
- step S48 the touch detection unit 502 detects coordinates indicating the position where the finger 401 is released from the screen.
- the touch detection unit 502 outputs release information indicating that the finger 401 is released from the screen and coordinates indicating the position where the finger 401 is released to the control unit 503.
- step S49 the control unit 503 creates a GUI image showing the changed temperature setting value and time setting value by moving the finger 401, and the GUI display unit 504 is created by the control unit 503.
- the GUI image displayed is displayed.
- the locus 602 of the contact position of the finger 401 is displayed by an operation of moving on the orthogonal coordinate system with the finger 401 in contact.
- the control unit 503 stores the changed temperature setting value and time setting value in the storage unit 506.
- the storage unit 506 stores a set value of a series of heating operations in which heating is performed from 0 minutes to 5 minutes at the heating level 9 and then heated from 5 minutes to 20 minutes at the heating level 2.
- the display form of the predetermined locus (guidance auxiliary line 601) displayed before the predetermined object comes into contact with the GUI display unit 504 is that of the locus 602 of the contact position of the predetermined object input by the touch operation unit 501. It is preferable that the display form is different.
- the SW operation unit 505 accepts pressing of the start key 205.
- the control unit 503 controls the heating operation of the oven cooking heater 507 using the temperature setting value and the time setting value stored in the storage unit 506.
- the GUI display unit 504 displays the guidance auxiliary line 601 when the user sets the temperature setting value and the time setting value, but the present disclosure is not particularly limited thereto.
- the GUI display unit 504 may not display the guidance auxiliary line 601 as a default display.
- the touch detection unit 502 converts the locus of a predetermined object touched by the GUI display unit 504 into a coordinate value for each arbitrary section, and the change in the horizontal value of adjacent coordinate values is equal to or less than the predetermined value. If the horizontal value of the adjacent coordinate value is not changed, the input is accepted, and if the change in the vertical value of the adjacent coordinate value is equal to or less than a predetermined value, the vertical value of the adjacent coordinate value is Accept input as it has not changed.
- the arbitrary section is, for example, a predetermined section in the horizontal direction, a predetermined section in the vertical direction, a predetermined length, or the touch detection unit 502 detects that a predetermined object is in contact with the screen. Indicates the period.
- the touch detection unit 502 detects the coordinates of the touch operation unit 501 touched by the finger 401 at predetermined time intervals (about several tens of milliseconds).
- the touch detection unit 502 compares the first coordinates detected at the first time with the second coordinates detected at the second time before the predetermined time (several tens of milliseconds) from the first time. To do.
- the touch detection unit 502 determines the horizontal value of the first coordinate. Replace with the horizontal value of the second coordinate.
- the touch detection unit 502 sets the vertical value of the first coordinate to the first value. Replace with the vertical value of 2 coordinates.
- the setting value of the cooking appliance is optimized, and the user can easily input the setting value without worrying about the shape of the trajectory.
- the GUI display unit 504 displays the time setting axis 202 in the horizontal direction, the temperature setting axis 203 in the vertical direction, and the touch operation unit 501 is displayed. A touch operation in the touch operation area is accepted.
- the temperature setting value (or output setting value) and the time setting value can be input simultaneously with a single touch operation, so the number of operations for setting the microwave oven can be reduced and the operability can be reduced. And convenience can be improved.
- the touch operation unit 501 allows a temperature set value (or output set value) and a time set value to be input simultaneously by a single drag operation. Therefore, since the user can set the two parameters of cooking by heating in the microwave oven simultaneously and easily while visually confirming the setting change operation, the operability and convenience can be further improved.
- the touch operation unit 501 receives a touch operation to an arbitrary position on the two-axis coordinate system of the time setting axis 202 and the temperature setting axis 203 (output setting axis in the case of the microwave function), so that the strength and time Are input simultaneously. Therefore, the user can set the temperature (or output power) and time of the heating control of the microwave oven by directly touching the position of the desired set value combination, thereby reducing the number of setting operations. It is possible to improve operability and convenience.
- the GUI operation display unit 201 is configured by a capacitive touch panel.
- the present disclosure is not particularly limited to this, and the GUI operation display unit 201 performs a touch operation or a drag operation. It may be configured by another type of touch panel such as a possible resistive film type touch panel.
- the scale of the time setting axis 202 is expressed in units of 5 minutes and the scale of the temperature setting axis 203 is expressed in units of one level, but the time setting axis 202 and the temperature setting axis 203 are displayed.
- the scale of is not limited to this unit width.
- the GUI display unit 504 may scroll the screen in the horizontal direction if the finger protrudes from the liquid crystal screen.
- the GUI display unit 504 may display the scale of the time setting axis 202 so as to fit within the screen by changing the scale of time to be displayed.
- the operation device (operation display unit 4) may be a smart phone, a tablet computer, a personal computer (PC), or the like that can perform a touch operation for wireless communication.
- the home appliance can be remotely operated, so that convenience can be improved.
- household appliances provided with the operation device (operation display unit 4) are not limited to a microwave oven, and may be household appliances that set strength and time for an object to be controlled. Good. Examples other than the microwave oven include a washing / drying machine, a dishwasher, a microwave oven, an oven, a rice cooker, an IH (Induction Heating) cooker, an air conditioner, a health device such as a massage chair, or a robot cleaner. .
- the operating device according to the first and second embodiments may be used as an operating device for an FA (Factory Automation) device or a medical device.
- FIG. 20 is a diagram illustrating an example of a device control system including an operating device and a plurality of home appliances operated by the operating device.
- the device control system includes an operating device 701 and a plurality of home appliances 800.
- the operation device 701 is the operation device (operation display unit 4) in the first and second embodiments. Operation device 701 remotely operates a plurality of home appliances 800.
- the plurality of home appliances 800 includes a microwave oven 801, an oven 802, an IH cooker 803, a rice cooker 804, a mixer 805, a washing machine 806, a dryer 807, a vacuum cleaner 808, a dishwasher 809, an air conditioner 810, and a massage chair 811. .
- the operating device 701 and the plurality of home appliances 800 are connected to each other via a network so that they can communicate with each other.
- the network is, for example, a local area network (LAN) or the Internet.
- FIG. 21 is a diagram illustrating an example of an intensity setting value controlled by each of a plurality of home appliances.
- the strength setting value controlled by the microwave oven 801 is an electromagnetic wave output value
- the strength setting value controlled by the oven 802 is thermal power or temperature, and is controlled by the IH cooker 803.
- the strength setting value is a heating power or temperature
- the strength setting value controlled by the rice cooker 804 is a heating power or temperature
- the strength setting value controlled by the mixer 805 is the number of revolutions and is controlled by the washing machine 806.
- the strength setting value to be set is the number of rotations of the washing tub, the amount of water or the water temperature, the strength setting value controlled by the dryer 807 is a heater output value or temperature, and the strength setting value controlled by the cleaner 808 is The strength setting value that is the suction strength and controlled by the dishwasher 809 is the amount of water or the water temperature and the strength that is controlled by the air conditioner 810.
- Set value is a temperature or air volume, intensity setting, which is controlled by the massage chair 811 is fir strength.
- An operating device is an operating device that operates a home appliance, and includes a strength setting value that defines an operating strength of the home appliance and a time setting value that specifies an operating time of the home appliance.
- a display unit for displaying on an orthogonal coordinate system; and an operation unit for simultaneously receiving inputs of the intensity setting value and the time setting value displayed on the display unit by an operation of bringing a predetermined object into contact with the display unit.
- the display unit displays the strength setting value that defines the operation intensity of the home appliance and the time setting value that defines the operation time of the home appliance on the orthogonal coordinate system.
- the strength setting value that defines the operation intensity of the home appliance and the time setting value that defines the operation time of the home appliance can be easily set with less effort, the convenience of the user can be improved. it can.
- one of the vertical axis and the horizontal axis on the orthogonal coordinate system represents the intensity setting value
- the other of the vertical axis and the horizontal axis represents the time setting value
- the unit simultaneously receives inputs of the intensity setting value and the time setting value by an operation of dragging an intersection between the intensity setting value and the time setting value on the orthogonal coordinate system.
- the strength setting value and the time setting value are received. Can be set at the same time while visually confirming, so that the operability and convenience of the user can be improved.
- one of the vertical axis and the horizontal axis on the orthogonal coordinate system represents the intensity setting value
- the other of the vertical axis and the horizontal axis represents the time setting value
- the operation The unit simultaneously receives input of the intensity setting value and the time setting value by an operation of touching an arbitrary position on the orthogonal coordinate system, and the display unit is configured to receive the position touched by the operation unit; It is preferable to display the intensity setting value and the time setting value so that the intersection between the intensity setting value and the time setting value coincides.
- the input of the intensity setting value and the time setting value is simultaneously received by an operation of touching an arbitrary position on the orthogonal coordinate system, and the touched position, the intensity setting value, and the time setting value are The intensity setting value and the time setting value are displayed so that the intersections coincide.
- the strength setting value and the time setting value can be set at the same time while visually confirming, the user's operability and convenience can be improved.
- the operation unit may move the locus of the contact position of the predetermined object and the intensity setting value and the locus of the predetermined object by an operation of moving on the orthogonal coordinate system in a state where the predetermined object is in contact. It is preferable to accept as an input of the time set value.
- the locus of the contact position of the predetermined object is accepted as an input of the intensity setting value and the time setting value by an operation of moving on the orthogonal coordinate system in a state where the predetermined object is in contact.
- the operation device may further include a storage unit that stores a predetermined locus on the orthogonal coordinate system, and the display unit stores the storage unit before the predetermined object contacts the display unit. It is preferable to display the predetermined locus.
- the user can use the predetermined trajectory displayed in advance as a guide.
- a set value and a time set value can be input, and user convenience can be improved.
- the display form of the predetermined trajectory displayed before the predetermined object contacts the display unit is a trajectory of the contact position of the predetermined object input by the operation unit. It is preferable that the display form is different.
- the display form of the predetermined locus displayed before the predetermined object comes into contact with the display unit is different from the display form of the locus of the contact position of the predetermined object input by the operation unit.
- the predetermined trajectory displayed as a guide to the user before the predetermined object comes into contact with the display unit can be easily distinguished from the trajectory actually input by the user, thereby improving visibility. be able to.
- the predetermined locus displayed before the predetermined object contacts the display unit varies depending on an object controlled by the home appliance.
- the predetermined trajectory displayed before the predetermined object comes into contact with the display unit differs depending on the object controlled by the home appliance, so the intensity setting according to the object controlled by the home appliance
- the value and the time setting value can be presented to the user in advance, and the convenience for the user can be improved.
- the operation unit converts the locus of the predetermined object in contact with the display unit into a coordinate value for each arbitrary section, and a change in a horizontal value of adjacent coordinate values is detected.
- the input is accepted as the horizontal value of the adjacent coordinate value is not changed.
- the change in the vertical value of the adjacent coordinate value is not more than the predetermined value, the adjacent coordinate value is It is preferable to accept an input assuming that the value in the vertical direction has not changed.
- the trajectory of the predetermined object that is in contact with the display unit is converted into a coordinate value for each arbitrary section. If the change in the horizontal value of the adjacent coordinate value is equal to or less than the predetermined value, the input is accepted as the horizontal value of the adjacent coordinate value has not changed. Further, when the change in the vertical value of the adjacent coordinate value is equal to or less than the predetermined value, the input is accepted as the vertical value of the adjacent coordinate value has not changed.
- the trajectory of the contact position of a predetermined object has a distorted shape
- the trajectory is recognized as a straight line, so that the strength setting value and the time setting value of the home appliance are optimized, and the user can It is possible to easily input the intensity setting value and the time setting value without worrying about.
- the home appliance includes a heating cooker for heating food.
- An operation method is an operation method for operating a home electric appliance, wherein the display unit sets an intensity setting value that defines an operation intensity of the home appliance and an operation time of the home appliance.
- the display unit displays the strength setting value that defines the operation intensity of the home appliance and the time setting value that defines the operation time of the home appliance on the orthogonal coordinate system.
- the strength setting value that defines the operation intensity of the home appliance and the time setting value that defines the operation time of the home appliance can be easily set with less effort, the convenience of the user can be improved. it can.
- the operation device and operation method according to the present invention can improve user convenience, and are useful as an operation device and operation method for operating home appliances.
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Abstract
Description
図1は、本発明の実施の形態1におけるオーブン電子レンジの外観を示す図である。図2は、本発明の実施の形態1におけるオーブン電子レンジの操作表示部の構成を示す図である。図3は、本発明の実施の形態1における操作表示部の構成を示すブロック図である。図1、図2及び図3を用いて、本実施の形態1の構成を説明する。なお、本実施の形態1では、操作装置を備えた家電機器の一例としてオーブン電子レンジを用いて説明するが、家電機器は、オーブン電子レンジに限定されない。
実施の形態2におけるオーブン電子レンジの外観は、図1に示す実施の形態1における電子レンジの外観と同じであるので、説明を省略する。
Claims (10)
- 家電機器を操作する操作装置であって、
前記家電機器の動作強度を規定する強度設定値と、前記家電機器の動作時間を規定する時間設定値とを直交座標系上に表示する表示部と、
前記表示部に所定の物体を接触させる操作により、前記表示部で表示される前記強度設定値と前記時間設定値との入力を同時に受け付ける操作部とを備える、
操作装置。 - 前記直交座標系上の縦軸及び横軸の一方は、前記強度設定値を表し、前記縦軸及び前記横軸の他方は、前記時間設定値を表し、
前記操作部は、前記直交座標系上における前記強度設定値と前記時間設定値との交点をドラッグさせる操作により、前記強度設定値と前記時間設定値との入力を同時に受け付ける、
請求項1記載の操作装置。 - 前記直交座標系上の縦軸及び横軸の一方は、前記強度設定値を表し、前記縦軸及び前記横軸の他方は、前記時間設定値を表し、
前記操作部は、前記直交座標系上における任意の位置をタッチする操作により、前記強度設定値と前記時間設定値との入力を同時に受け付け、
前記表示部は、前記操作部によってタッチされた位置と、前記強度設定値と前記時間設定値との交点とが一致するように、前記強度設定値と前記時間設定値とを表示する、
請求項1記載の操作装置。 - 前記操作部は、前記所定の物体を接触させた状態で前記直交座標系上を移動させる操作により、前記所定の物体の接触位置の軌跡を前記強度設定値及び前記時間設定値の入力として受け付ける、
請求項1記載の操作装置。 - 前記直交座標系上における所定の軌跡を記憶する記憶部をさらに備え、
前記表示部は、前記表示部に前記所定の物体が接触する前に、前記記憶部に記憶されている前記所定の軌跡を表示する、
請求項4記載の操作装置。 - 前記表示部に前記所定の物体が接触する前に表示される前記所定の軌跡の表示形態は、前記操作部により入力される前記所定の物体の接触位置の軌跡の表示形態と異なる、
請求項5記載の操作装置。 - 前記表示部に前記所定の物体が接触する前に表示される前記所定の軌跡は、前記家電機器が制御する対象物に応じて異なる、
請求項5又は6記載の操作装置。 - 前記操作部は、前記表示部に接触された前記所定の物体の軌跡を任意の区間ごとに座標値に変換し、隣り合う座標値の水平方向の値の変化が所定値以下である場合、前記隣り合う座標値の水平方向の値は変化していないとして入力を受け付け、隣り合う座標値の垂直方向の値の変化が所定値以下である場合、前記隣り合う座標値の垂直方向の値は変化していないとして入力を受け付ける、
請求項4~7のいずれか1項に記載の操作装置。 - 前記家電機器は、食品を加熱する加熱調理器を含む、
請求項1~8のいずれか1項に記載の操作装置。 - 家電機器を操作するための操作方法であって、
表示部が、前記家電機器の動作強度を規定する強度設定値と、前記家電機器の動作時間を規定する時間設定値とを直交座標系上に表示するステップと、
操作部が、前記表示部に所定の物体を接触させる操作により、前記表示部で表示される前記強度設定値と前記時間設定値との入力を同時に受け付けるステップと、
を含む操作方法。
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| CN201480057900.8A CN105659029B (zh) | 2013-10-21 | 2014-10-21 | 操作装置以及操作方法 |
| JP2015543714A JP6432889B2 (ja) | 2013-10-21 | 2014-10-21 | 操作装置及び操作方法 |
| US15/029,419 US10222964B2 (en) | 2013-10-21 | 2014-10-21 | Operation device and operation method |
| EP14856097.2A EP3062206B1 (en) | 2013-10-21 | 2014-10-21 | Operation device |
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| Publication number | Publication date |
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| US10222964B2 (en) | 2019-03-05 |
| CN105659029B (zh) | 2018-04-10 |
| JP6432889B2 (ja) | 2018-12-05 |
| JPWO2015059920A1 (ja) | 2017-03-09 |
| CN105659029A (zh) | 2016-06-08 |
| EP3062206A1 (en) | 2016-08-31 |
| EP3062206A4 (en) | 2017-03-22 |
| US20160253080A1 (en) | 2016-09-01 |
| EP3062206B1 (en) | 2019-12-04 |
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