Handheld appliance control device, handheld appliance and electric shaver
By setting a first touch area and a second touch area in the handheld device and combining them with a sensing module, the problem of accidental touch in touch-sensitive devices is solved, achieving higher operational accuracy and waterproof performance.
Patent Information
- Application Number
- CN202422614542.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-10-28
AI Technical Summary
In the existing technology, touch-screen handheld devices are prone to misoperation due to accidental touch. Existing measures to prevent accidental touch mainly distinguish between object touch and human body touch, which cannot effectively prevent accidental touch during user use.
A touch module comprising a first touch area and a second touch area is used, combined with a sensing module (such as a gyroscope, accelerometer, or capacitive sensor) to detect the user's touch operation. By combining the signals from the touch area and triggering the sensing module, the accuracy of the operation is improved and misoperations are reduced.
Through the combination of rich touch signals and sensing modules, misoperation is significantly reduced, and the operational accuracy and waterproof performance of handheld devices are improved.
Smart Images

Figure CN223573233U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of home appliances, especially relates to a handheld appliance control device, handheld appliance and electric shaver. BACKGROUND
[0002] Touch technology is to set up touch sensor to induct touch action, thereby triggering the equipment to execute corresponding operation. Touch sensor is inductive, can adopt the structure of closed setting, improves the sealing property and uniformity of product appearance, reduces product surface gap, improves waterproof grade and so on, replaces mechanical structure type touch button, is favorable for improving product service life.
[0003] One problem of touch operation is easy to be mistaken, and the equipment is easy to move because of touching when carrying or using usually, although the detection value of touch sensor can be set to prevent mistaken touch, but this way mainly distinguishes article touching and human body touching, and mistaken touch of user in use process cannot be effectively prevented. UTILITY MODEL CONTENT
[0004] The utility model embodiment aims at providing a handheld appliance control device, and aims at solving the problem of easy mistaken touch of touch type handheld appliance in prior art.
[0005] The utility model embodiment is realized in this way, a handheld appliance control device, the handheld appliance control device includes touch module, treater and execution module;
[0006] The touch module is connected with the treater, is used for receiving the touch operation of user, the touch module includes first touch area and second touch area, and first touch area and second touch area are arranged in parallel or nested to form an entirety;
[0007] The execution module is connected with the treater, and the treater controls the execution model to execute corresponding action according to the touch operation received by touch module.
[0008] Preferably, the handheld appliance control device further includes an induction module, the induction module is connected with the treater, and is used for inducting the trigger operation of user;The trigger of induction module and the detection of touch module are controlled to execute corresponding action when they are effective together.
[0009] The induction module adopts any one or more of gyroscope, accelerometer, capacitive sensor, wherein the capacitive sensor is arranged on the holding part of handheld appliance.
[0010] Preferably, the touch module adopts capacitive sensor.
[0011] Preferably, the first touch area and the second touch area are triggered respectively or simultaneously to generate at least two touch signals.
[0012] Preferably, the first touch area is provided with a protruding part, and the second touch area is provided with an inner recess part matched with the protruding part, and the protruding part and the inner recess part are nested and connected to form a touch area.
[0013] Preferably, the handheld appliance control device further comprises a power module, the power module comprises a charging interface and a battery, the charging interface is used for charging the battery, and the battery is used for power supply of the touch module, the processor and the execution module.
[0014] Preferably, the execution module comprises a motor and / or a heating body, wherein the motor is used for driving an execution mechanism, the motor and the battery of the power module are connected through a driving module, and the driving module is controlled by the processor.
[0015] Preferably, the handheld appliance control device further comprises an indication module, and the indication module comprises a first indication lamp and / or a second indication lamp.
[0016] The first indication lamp is connected with the processor and is used for indicating a charging state of the handheld appliance.
[0017] The second indication lamp is connected with the processor and is used for indicating an operation of the touch module.
[0018] Another purpose of the embodiment of the utility model is to provide a handheld appliance, the handheld appliance comprises an appliance body and the handheld appliance control device as any one of the embodiments of the utility model.
[0019] The appliance body is provided with a holding part, and the appliance body is further provided with an execution mechanism driven by a motor
[0020] Another purpose of the embodiment of the utility model is to provide an electric shaver, the electric shaver comprises an electric shaver body and the handheld appliance control device as any one of the embodiments of the utility model.
[0021] The electric shaver body is provided with a holding part, and the holding part is provided with a cutter head, and the cutter head is driven by the motor in the execution module, and the motor is controlled by the processor in the handheld appliance control device.
[0022] The handheld appliance control device provided by the embodiment of the utility model receives the touch operation of the user through the touch module composed of the first touch area and the second touch area, realizes the operation control of different working states of the handheld appliance, improves the accuracy of the correspondence between the instruction and the operation through the setting of the two touch areas, and reduces the misoperation. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 A structural block diagram of a handheld device control device provided in one embodiment of the present invention;
[0024] Figure 2 Structural block diagram of a handheld device control device provided in another embodiment of the present invention;
[0025] Figure 3 A structural diagram of the touch module provided in an embodiment of this utility model;
[0026] Figure 4 This is a structural diagram of a touch module, which is an alternative embodiment of the present utility model.
[0027] In the attached diagram: 1. First touch area; 2. Second touch area. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0029] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.
[0030] like Figure 1 The diagram shown is a structural block diagram of a handheld device control device provided in an embodiment of the present invention, including a sensing module, a touch module, a processor, and an execution module;
[0031] The touch module is connected to the processor and is used to receive user touch operations. The touch module includes a first touch area and a second touch area, which are arranged side by side or nested to form a whole.
[0032] The execution module is connected to the processor, and the processor controls the execution model to perform corresponding actions based on the touch operation received by the touch module.
[0033] In the embodiment, the touch module comprises a first touch area and a second touch area, and the two touch areas are arranged in a side-by-side or nested manner to form a whole. A user can trigger the processor to execute an instruction function corresponding to the operation by performing a touch operation on the touch module. The setting mode of the corresponding relationship between the touch operation and the instruction of the processor belongs to the prior art, and the utility model does not make superfluous repetition here. In the utility model, the touch module is provided as two touch areas, and a richer operation instruction corresponding relationship can be obtained by detecting different combinations of signals of the two touch areas. It can be understood that the touch module can further comprise a third touch area, a fourth touch area and more touch areas, wherein, the two adjacent touch areas are arranged in a side-by-side or nested manner. In the utility model, the whole formed here refers to the visual effect formed by the touch area, and does not represent that the whole touch area detects the touch operation of the user and outputs two detection results of 0 and 1.
[0034] In the embodiment, the processor is the center of execution control, including power control, instruction control, display control and the like, and can further comprise gear control. The processor mainly comprises a control chip and related peripheral circuits, and the related peripheral circuits can be clock circuits, voltage stabilizing circuits, filter circuits and the like.
[0035] In the embodiment, the execution module is used for function execution of the handheld appliance. The function can be specifically a plurality of types of actions, such as function actions based on rotary motion and reciprocating motion (such as a shaver, a hair clipper, massage, tooth brushing, adsorption, blowing and the like), function actions based on temperature control (such as physiotherapy and refrigeration), and in addition, unconventional function outputs (such as infrared light, ultraviolet light, ultrasonic waves, electromagnetic waves and magnetism). Different handheld appliances can adopt any one or a combination of a plurality of function actions, which is determined by the specific function of the appliance, and the specific output function action type is not limited in the utility model.
[0036] The handheld appliance control device provided in the embodiment of the utility model receives the touch operation of the user by setting the touch module composed of the first touch area and the second touch area, realizes operation control of different working states of the handheld appliance, improves the accuracy of the corresponding relationship between the instruction and the operation by setting the two touch areas, and reduces the misoperation.
[0037] As shown in the figure, Figure 2 As shown in the figure, in one example of the utility model, the handheld appliance control device further comprises an induction module, the induction module is connected with the processor, and is used for inducting the trigger operation of the user; the trigger of the induction module and the detection of the touch module are effective at the same time to control the execution model to execute the corresponding action;
[0038] The sensing module adopts any one or more of a gyroscope, an accelerometer and a capacitive sensor, wherein the capacitive sensor is arranged on a holding part of the handheld appliance.
[0039] In the embodiment, the trigger herein can include two aspects, one aspect is to make the appliance enter from the sleep or standby state to the waiting state which can be operated, the main difference between before and after the change includes but is not limited to the increase of the detection frequency of the touch module, in the sleep or standby state, the detection frequency is lower than that in the waiting state, which can reduce the consumption of power; the other aspect is to enable the control of the touch module, so that the touch module can receive the touch operation of the user, or can transmit the received touch operation of the user to the processor, or the processor responds to the received detection signal of the touch module, the former two cases are mainly realized by controlling the on-off of the receiving or transmitting circuit of the touch module, and the latter case can be realized as the on-off control inside the processor, which is essentially also the on-off of the switch on the hardware, the difference lies in whether the switch structure outside the processor or inside the processor is used to realize.
[0040] In the embodiment, when the sensing model does not sense the trigger operation of the user or the distance from the last time when the user's trigger operation is sensed is more than a set time length, the handheld appliance enters the sleep or standby state, at this time, the touch operation of the user on the touch module is ineffective, and the execution module does not respond, thereby effectively solving the false touch problem of the handheld appliance.
[0041] In the embodiment, the gyroscope can be used to detect the acceleration or angle direction of the handheld appliance, so as to judge whether the appliance is picked up, if the appliance is picked up, the appliance is triggered; the capacitive sensor controls the state of the appliance by detecting whether the holding part of the appliance is held, specifically, when the capacitive value reaches a set range, it is judged that the appliance is held by a hand, at this time, the appliance enters the trigger state.
[0042] In the embodiment, further, a state maintaining time length can be set, so that the appliance in the trigger state maintains the trigger state for a set time length, thereby avoiding repeated detection.
[0043] In one example of the utility model, the touch module adopts a capacitive sensor.
[0044] In the embodiment, the capacitive sensor used in the touch module has the characteristics of stability and reliability, and the capacitive sensor as a whole can be made relatively closed, improving the sealing property of the surface of the appliance, which is beneficial to the daily waterproof of the appliance.
[0045] In one example of the utility model, the first touch area and the second touch area are triggered to generate at least two touch signals.
[0046] In the embodiment, when the first touch area and the second touch area are triggered respectively, each generates a touch signal, the first touch area generates a signal having two states of a triggered state 1 and an untriggered state 0, and the second touch area generates a signal having two states of a triggered state 1 and an untriggered state 0. In addition, in the embodiment, as a further priority scheme, when the first touch area and the second touch area are in the triggered state at the same time (not necessarily at the same time), the first touch area and the second touch area jointly generate a signal, which is in the triggered state 1 when the first touch area and the second touch area are in the triggered state at the same time, and is in the untriggered state 0 otherwise. The processor controls the work of the execution module according to the state combination of the three touch signals, for example, when the three touch signals are 1, 1, 1 in turn (corresponding order: the first touch area, the first touch area and the second touch area, and the second touch area), the state of the execution module is changed (from off to on, or from on to off). It should be noted that the correspondence between the touch signal and the execution instruction does not belong to the key content of the utility model, and the user can set the correspondence; the specific correspondence does not affect the realization of the technical effect of the utility model. In the embodiment, it can be understood that when there are more numbers of touch areas, the state of two adjacent touch areas is used to determine a touch signal, which can increase the rich pairs of touch signals and improve the accuracy of the operation and instruction correspondence without changing the hardware. It can be understood that in the embodiment, if the number of touch areas is N, at least N touch signals can be generated, and 2N-1 touch signals can be generated preferentially (each two adjacent touch areas jointly generate an additional touch signal), thereby increasing the signal generation mode without changing the hardware, making the operation and instruction correspondence more accurate, and enriching the instruction correspondence.
[0047] In the embodiment, by setting the first touch area and the second touch area, three touch signals can be obtained by using two detection points, the operation mode is enriched, and the execution module can be prevented from moving due to false touch more effectively.
[0048] As shown in Figure 3 In one example of the utility model, the first touch area is provided with a protruding part, the second touch area is provided with an inner recess part matched with the protruding part, and the protruding part and the inner recess part are nested and connected to form a touch area.
[0049] In the embodiment, the first touch control area is provided with a protruding part, and the second touch control area is provided with an inner recessed part, so that the protruding part and the inner recessed part are matched to form an integral area (it is to be noted that the two touch control areas are still detected in sub-areas after forming the integral area, and the sub-areas or the integral area can not be necessarily seen on the appearance of the product, and the sub-areas or the integral area herein only refer to the effective detection area), so that one operation of the user on the integral area can be divided into three processes, the corresponding relationship between the operation and the instruction is refined, the touch control and the instruction are more accurately corresponding, and the corresponding relationship between the operation and the instruction is enriched, and more abundant instructions can be obtained by setting different combinations of three touch control signals (0 or 1).
[0050] In the embodiment, as a further optional solution, the protruding part of the first touch control area and the inner recessed part of the second touch control area are all triangular, and the junction of the two touch control areas is < shaped or > shaped (taking left and right sliding touch control as an example), so that, as shown in FIG. Figure 4 Even if the sliding direction of the user operation is inclined, the junction can also be detected, and compared with the mode that the two touch control areas are provided with the same size and shape and the junction is a vertical line, the process of generating the second touch control signal is prolonged, so that the second touch control signal can be more effectively detected.
[0051] In an example of the utility model, the handheld appliance control device further includes a power module, the power module includes a charging interface and a battery, the charging interface is used for charging the battery, and the battery is used for power supply of the touch control module, the processor and the execution module.
[0052] In the embodiment, the form of the charging interface and the battery is not specifically limited, which can be implemented by referring to the prior art. In addition, a voltage regulating circuit can be adaptively arranged between the battery and the touch control module, the processor and the execution module to provide the required power supply voltage for each module.
[0053] In an example of the utility model, the execution module includes a motor and / or a heating body, wherein the motor is used for driving an execution mechanism, the motor and the battery of the power module are connected through a driving module, and the driving module is controlled by the processor.
[0054] In the embodiment, the main function of the driving module is to realize small control of large current and / or voltage, so as to realize isolation of high and low voltage, ensure circuit safety, and realize the form of the circuit or circuit device, which can be implemented by referring to the prior art, and the utility model does not make further limitation.
[0055] In an example of the utility model, the handheld appliance control device further includes an indication module, and the indication module includes a first indication lamp and / or a second indication lamp.
[0056] The first indicator lamp is connected with the processor, and is used for indicating the charging state of the handheld appliance;
[0057] The second indicator lamp is connected with the processor, and is used for indicating the operation of the touch module.
[0058] In the embodiment, the first indicator lamp can indicate the charging, the completion of charging, the amount of power and the like by displaying different colors or lighting different numbers of lamp beads.
[0059] In the embodiment, the second indicator lamp can be in the form of a lamp row, and the number of lighted lamp beads in the lamp row is controlled to indicate the sliding process of the user, so that the user can adjust the operation gesture according to the needs, and the touch control is more accurate.
[0060] The utility model embodiment further provides a handheld appliance, the handheld appliance includes appliance body and handheld appliance control device as any one embodiment of the utility model;
[0061] The appliance body is provided with a holding part, and the appliance body is further provided with an execution mechanism driven by a motor.
[0062] In the embodiment, the handheld appliance herein includes but is not limited to an electric shaver, an electric hair dryer, an electric toothbrush, a fascia gun, a handheld blender, a handheld juicer and the like. For the structure of the appliance body of different types, the prior art can be referred to for implementation, and the utility model does not specifically limit the structure form of the appliance body. For the appliance body of different types, the holding part structure form is different, and the form of the execution mechanism of the appliance is also different, which can be realized by referring to the prior art.
[0063] The utility model embodiment further provides an electric shaver, the electric shaver includes electric shaver body and handheld appliance control device as any one embodiment of the utility model;
[0064] The electric shaver body is provided with a holding part, and the holding part is provided with a cutter head, the cutter head is driven by a motor in the execution module, and the motor is controlled by the processor in the handheld appliance control device.
[0065] In the embodiment, the handheld appliance control device provided by the utility model is used on the electric shaver, the operation of the user is sensed by arranging the sensing module, so as to prevent the false touch; the touch control module composed of the first touch control area and the second touch control area is arranged to receive the touch operation of the user, and the operation control of different working states of the handheld appliance is realized. It can be understood that the specific optimization scheme provided by any one embodiment of the utility model is applicable to the electric shaver.
[0066] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A handheld appliance control device, characterized in that, The handheld device control unit includes a touch module, a processor, and an execution module; The touch module is connected to the processor and is used to receive user touch operations. The touch module includes a first touch area and a second touch area, which are arranged side by side or nested to form a whole. The execution module is connected to the processor, and the processor controls the execution model to perform corresponding actions based on the touch operation received by the touch module.
2. The handheld device control device according to claim 1, characterized in that, The handheld device control device also includes a sensing module, which is connected to the processor and is used to sense the user's trigger operation; when the trigger of the sensing module and the detection of the touch module are both effective, the control execution model is controlled to perform the corresponding action. The sensing module employs any one or more of a gyroscope, accelerometer, and capacitive sensor, wherein the capacitive sensor is disposed on the grip portion of the handheld device.
3. The handheld device control device according to claim 1, characterized in that, The touch module uses a capacitive sensor.
4. The handheld device control device according to claim 1, characterized in that, The first touch area and the second touch area are triggered to generate at least two touch signals.
5. The handheld device control device according to claim 1, characterized in that, The first touch area has a protruding part, and the second touch area has a concave part that cooperates with the protruding part. The protruding part and the concave part are nested and connected to form a touch area.
6. The handheld device control device according to claim 1, characterized in that, The handheld device control unit also includes a power module, which includes a charging interface and a battery. The charging interface is used to charge the battery, and the battery is used to power the touch module, the processor, and the execution module.
7. The handheld device control device according to claim 6, characterized in that, The execution module includes a motor and / or a heating element, wherein the motor is used to drive the actuator, and the motor is connected to the battery of the power module through a drive module, which is controlled by the processor.
8. The handheld device control device according to claim 1, characterized in that, The handheld device control device also includes an indicator module, which includes a first indicator light and / or a second indicator light; The first indicator light is connected to the processor and is used to indicate the charging status of the handheld device; The second indicator light is connected to the processor and is used to indicate the operation of the touch module.
9. A handheld device, characterized in that, The handheld device includes a device body and a handheld device control device as described in any one of claims 1-8; The device body is provided with a gripping part, and the device body is also provided with an actuator driven by a motor.
10. An electric shaver, characterized in that, The electric shaver includes an electric shaver body and a handheld appliance control device as described in any one of claims 1-8. The electric shaver body is provided with a grip, and the grip is provided with a shaver head. The shaver head is driven by a motor in the execution module, and the motor is controlled by a processor in the handheld appliance control device.