A slider button control method for a cooking appliance
A technology of cooking utensils and control methods, which is applied to household appliances, household stoves/stoves, pulse technology, etc., can solve the problems of easy jumping keys and poor user experience, and achieves improved comfort, comfortable user experience, and high sliding operation efficiency. Effect
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[0048] As an implementation, the sliding touch area extends along a straight line or an unclosed arc, and the distribution trend of the gear button body is the same as that of the sliding touch area; as another implementation, the The sliding touch area is set in a closed circular or elliptical ring, and the distribution trend of the gear button body is the same as the extension trend of the sliding touch area. The ring-shaped sliding touch area is in line with the operating habits of the human body, and the interface design can be optimized accordingly; the sliding touch area extended by a straight line or an unclosed arc is convenient for short operation strokes, high operating efficiency, and comfortable gear buttons; the above two types of sliding The design of the touch area has its own advantages and disadvantages, which can be designed according to the needs of products and users.
[0049] Wherein, the gears provided in the sliding touch area are used to adjust the cook...
Embodiment 1
[0055] refer to figure 1 , a method for controlling a slide button of a cooking appliance, comprising the following steps:
[0056] S1: Set the capacitance change threshold A caused by the first gear being touched, define the count variable X and clear it; set the capacitance change threshold B caused by the second gear being touched, define the count variable Y and clear it Zero; define the internal preset times Z; where B
[0057] S2: start identifying and judging;
[0058] S3: Determine whether the capacitance change caused by any gear being touched is greater than B, if not, clear X and Y, exit this identification, and return to S2; if yes, according to whether the touched gear is the first gear or The second gear, enters one of S41 and S42 respectively;
[0059] S41: The gear touched in S3 is the first gear, then judge whether the capacitance change caused by the touch in S3 is greater than A, if not, exit this identification and return to S2; if yes, enter S5;
[...
Embodiment 2
[0069] refer to figure 2 , this embodiment is the most preferred solution, this embodiment is basically the same as Embodiment 1, and only the entry selection of S42 is further specified. Described control method comprises the following steps:
[0070] S1: Set the capacitance change threshold A caused by the first gear being touched, define the count variable X and clear it; set the capacitance change threshold B caused by the second gear being touched, define the count variable Y and clear it Zero; define the internal preset times Z; where B
[0071] S2: start identifying and judging;
[0072] S3: Determine whether the capacitance change caused by any gear being touched is greater than B, if not, clear X and Y, exit this identification, and return to S2; if yes, according to whether the touched gear is the first gear or The second gear, enters one of S41 and S42 respectively;
[0073] S41: The gear touched in S3 is the first gear, then judge whether the capacitance ch...
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