Sterilization machine and sterilization control method
By using a detection device in the sterilizer to automatically identify the type of appliance and match the sterilization mode, the problem of cumbersome manual operation is solved, achieving intelligent and user-friendly sterilization results.
Patent Information
- Application Number
- CN202310596625.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-24
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2043-05-24
AI Technical Summary
Existing kitchen appliance sterilizers require manual operation by the user, which is cumbersome and inconvenient.
By installing detection devices such as gravity sensors, image sensors, infrared sensors, and ultrasonic sensors in the sterilizer, the type of appliance can be automatically identified and the corresponding sterilization mode can be matched to control the sterilization mechanism to perform sterilization treatment.
It simplifies the sterilization process, improves the sterilization effect and user experience, and realizes the intelligence and humanization of the sterilization machine.
Smart Images

Figure CN116637217B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of kitchenware technology, and in particular to a sterilization machine and sterilization control method. Background Technology
[0002] Bowls, chopsticks, plates, spoons, knives, cutting boards and other kitchen utensils are daily necessities in household life. Although these utensils are washed with water, various pathogens such as Escherichia coli, Staphylococcus aureus and Staphylococcus albus can still be detected on them. In order to prevent diseases from entering through the mouth, kitchen utensils need to be disinfected.
[0003] Normally, when a user puts the kitchen utensils that need to be sterilized into the sterilizer, the user can start the sterilization process by manually pressing the sterilization button; and after sterilization for a period of time, the user can manually turn off the sterilization button to stop the sterilization process.
[0004] However, in the above methods, the sterilization process of the sterilizer is based on manual operation by the user, which is cumbersome. Summary of the Invention
[0005] Therefore, it is necessary to provide a sterilization machine, sterilization control method, device, computer-readable storage medium, and computer program product that can simplify the sterilization operation process in response to the above-mentioned technical problems.
[0006] In a first aspect, this application provides a sterilization machine, the sterilization machine comprising:
[0007] A housing component for holding the first sterilization device;
[0008] A sterilization mechanism is used to sterilize the first sterilization device in the receiving component;
[0009] The detection device is used to acquire the first instrument parameters of the first sterilization instrument;
[0010] A controller connected to the sterilization mechanism is used to match a corresponding first sterilization mode according to the first appliance parameters and control the sterilization mechanism to perform sterilization treatment according to the first sterilization mode.
[0011] In one embodiment, the controller identifies the type of the first sterilization device based on the first device parameters and matches the first sterilization mode corresponding to the type of the first sterilization device.
[0012] In one embodiment, the controller, in response to a memory instruction, acquires the instrument parameters of the sterilization device detected by the detection device; and in response to an input instruction for a sterilization mode, stores the mapping relationship between the instrument parameters and the sterilization mode.
[0013] In one embodiment, the controller, in response to a memory instruction, acquires the device parameters of the sterilizing device detected by the detection device, identifies the type of the sterilizing device based on the device parameters, and stores the mapping relationship between the type of the sterilizing device and the sterilizing mode in response to an input instruction for a sterilization mode.
[0014] In one embodiment, the housing component includes multiple housing areas; the multiple housing areas hold different specified types of sterilization devices;
[0015] The detection device is further configured to obtain the first instrument parameters based on the detection results of the plurality of accommodating areas.
[0016] In one embodiment, the detection device includes at least one of a gravity sensor, an image sensor, an infrared sensor, and an ultrasonic sensor.
[0017] In one embodiment, the detection device includes a gravity sensor, and the controller identifies the type of sterilization appliance based on its weight.
[0018] In one embodiment, the detection device includes a gravity sensor disposed below the receiving component.
[0019] In one embodiment, the sterilizer further includes rubber feet; the detection device includes a gravity sensor disposed at the rubber feet.
[0020] In one embodiment, the detection device is further configured to acquire second device parameters of the second sterilization device detected before the first sterilization mode ends;
[0021] The controller is further configured to: match a corresponding second sterilization mode according to the second device parameters; determine the sterilization mode with better sterilization effect among the first sterilization mode and the sterilization mode; and control the sterilization mechanism to perform sterilization treatment on the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect.
[0022] Secondly, this application provides a sterilization control method, the method comprising: acquiring first device parameters of a first sterilization device placed in a sterilization machine; matching a corresponding first sterilization mode according to the first device parameters; and sterilizing the first sterilization device according to the first sterilization mode.
[0023] In one embodiment, matching the corresponding first sterilization mode according to the first device parameters includes: obtaining a mapping relationship between the device parameters of the sterilization device and the sterilization mode; and matching the corresponding first sterilization mode according to the mapping relationship and the first device parameters.
[0024] In one embodiment, the method for constructing the mapping relationship between the instrument parameters of the sterilizing device and the sterilization mode includes: in response to a memory instruction, acquiring the instrument parameters of the sterilizing device placed in the sterilizing machine; and in response to an input instruction for the sterilization mode, obtaining the mapping relationship between the instrument parameters and the sterilization mode.
[0025] In one embodiment, matching the corresponding first sterilization mode according to the first device parameters includes: obtaining a mapping relationship between the type of sterilization device and the sterilization mode; identifying the type of the first sterilization device according to the first device parameters; and matching the corresponding first sterilization mode according to the mapping relationship and the type of the first sterilization device.
[0026] In one embodiment, the method for constructing the mapping relationship between the type of sterilizing device and the sterilization mode includes: in response to a memory instruction, acquiring the device parameters of the sterilizing device placed in the sterilizer, identifying the type of the sterilizing device based on the device parameters; and in response to an input instruction for the sterilization mode, obtaining the mapping relationship between the type of the sterilizing device and the sterilization mode.
[0027] In one embodiment, the device parameters of the sterilizing device include the weight of the sterilizing device; the method of identifying the type of the sterilizing device based on the device parameters includes: identifying the type of the sterilizing device based on the weight of the sterilizing device.
[0028] In one embodiment, the method further includes: acquiring second device parameters of a second sterilizing device detected before the first sterilization mode ends; determining a sterilization mode with better sterilization effect among the first sterilization mode and the sterilization mode; and sterilizing the first sterilizing device and the second sterilizing device according to the sterilization mode with better sterilization effect.
[0029] Thirdly, this application provides a sterilization control device, the device comprising: an instrument parameter acquisition module for acquiring first instrument parameters of a first sterilization instrument placed in a sterilization machine; a sterilization mode matching module for matching a corresponding first sterilization mode according to the first instrument parameters; and a sterilization treatment module for sterilizing the first sterilization instrument according to the first sterilization mode.
[0030] Fourthly, this application also provides a computer-readable storage medium. The computer-readable storage medium stores a computer program thereon, which, when executed by a processor, performs the following steps: obtaining first device parameters of a first sterilizing device placed in a sterilizing machine; matching a corresponding first sterilization mode according to the first device parameters; and sterilizing the first sterilizing device according to the first sterilization mode.
[0031] Fifthly, this application also provides a computer program product. The computer program product includes a computer program that, when executed by a processor, performs the following steps: acquiring first device parameters of a first sterilizing device placed in a sterilizing machine; matching a corresponding first sterilization mode according to the first device parameters; and sterilizing the first sterilizing device according to the first sterilization mode.
[0032] The aforementioned sterilizer, sterilization control method, device, computer-readable storage medium, and computer program products allow for the detection of sterilization equipment parameters by a detection device when the sterilizer's receiving component holds the sterilization equipment. This enables the sterilization of the equipment to be matched with a corresponding sterilization mode based on the equipment parameters, eliminating the need for manual operation of the sterilization process or adjustment of the sterilization mode, thus providing convenience and speed. Furthermore, using different sterilization modes for equipment with different parameters improves the sterilization effect, making the sterilizer more intelligent and user-friendly, and enhancing the user experience. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the structure of the sterilizer 100 in one embodiment;
[0034] Figure 2 This is a schematic diagram of the structure of the sterilizer 200 in another embodiment;
[0035] Figure 3 This is a schematic diagram of the bottom structure of the sterilizer 200 in one embodiment;
[0036] Figure 4 This is a schematic flowchart of a sterilization control method in one embodiment;
[0037] Figure 5 This is a flowchart illustrating the process of matching a first sterilization mode based on the parameters of a first device in one embodiment.
[0038] Figure 6 This is a flowchart illustrating how the mapping relationship between the instrument parameters and sterilization modes of a sterilization device is constructed in one embodiment.
[0039] Figure 7 This is a flowchart illustrating the process of matching a first sterilization mode based on the parameters of a first device in one embodiment.
[0040] Figure 8 This is a flowchart illustrating how the mapping relationship between the type of sterilization device and the sterilization mode is constructed in one embodiment.
[0041] Figure 9 This is a flowchart illustrating the sterilization control method in another embodiment;
[0042] Figure 10 This is a flowchart illustrating the sterilization control method in another embodiment;
[0043] Figure 11 This is a structural block diagram of a sterilization control device in one embodiment. Detailed Implementation
[0044] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0045] This application provides a sterilization machine for sterilizing users' kitchen utensils; specifically, in the first embodiment, as follows: Figure 1 As shown, the sterilizer 100 includes: a receiving component 101, a sterilization mechanism 102, a detection device 103, and a controller 104 connected to the sterilization mechanism 102. The receiving component is used to hold a first sterilization device. The sterilization mechanism is used to sterilize the first sterilization device in the receiving component. The detection device is used to acquire first device parameters of the first sterilization device. The controller is used to match a corresponding first sterilization mode according to the first device parameters and control the sterilization mechanism to sterilize the first sterilization device according to the first sterilization mode; wherein, the first sterilization mode may include sterilization time, etc.
[0046] Specifically, the detection device may include at least one of a gravity sensor, an image sensor, an infrared sensor, and an ultrasonic sensor. For example, when the detection device is a gravity sensor, the first instrument parameter is the weight of the first sterilization instrument. When the detection device is an image sensor, the first instrument parameter is the type of the first sterilization instrument.
[0047] It is understood that the detection device consists of a gravity sensor and an infrared sensor. When the infrared sensor detects that the sterilization device is placed in the receiving component, the type of sterilization device can be obtained through the gravity sensor.
[0048] In the second embodiment, the controller can identify the type of the first sterilization device based on the first device parameters and match the first sterilization mode corresponding to the type of the first sterilization device. Specifically, the controller can obtain the first device parameters from a detection device, which may include at least one of a gravity sensor, an image sensor, an infrared sensor, and an ultrasonic sensor.
[0049] Specifically, the sterilization mode includes sterilization time. The detection device includes a gravity sensor, and the device parameters of the sterilization appliance include the weight of the sterilization appliance. In this embodiment, the controller can identify the type of the first sterilization appliance based on its weight; and then match the corresponding first sterilization mode according to the type of the first sterilization appliance.
[0050] It is understandable that the weight of a spatula for sterilization is different from that of a bowl for sterilization, and the sterilization time for the two is also different. By determining the type of sterilization tool based on its weight, the sterilization mode of the sterilization tool can be determined. This allows different sterilization modes to be used for different types of sterilization tools. Compared with using the same sterilization mode for different types of sterilization tools, this can improve the sterilization effect of different types of sterilization tools.
[0051] In the third embodiment, the controller, in response to a memory instruction, acquires the device parameters of the sterilizing device detected by the detection device; and in response to an input instruction for a sterilization mode, stores the mapping relationship between the device parameters and the sterilization mode. Thus, based on the mapping relationship between the device parameters and the sterilization mode, the controller can match the first sterilization mode corresponding to the first device parameters, thereby controlling the sterilization mechanism to sterilize the first sterilizing device according to the first sterilization mode, improving the user's health when using the first sterilizing device.
[0052] Specifically, the sterilizer has an application (APP). When the user places the sterilizing device in the receiving component, the user can activate the sterilizer's memory mode through the application. Responding to the memory command corresponding to the sterilizer's memory mode, the device's parameters can be obtained through a detection device. Simultaneously, by inputting the sterilization mode of the sterilizing device into the application, the controller responds to the input command for the sterilization mode and obtains the mapping relationship between the device's parameters and the sterilization mode.
[0053] The memory mode in the sterilizer allows users to set sterilization modes for different types of sterilizing appliances and store the corresponding sterilization modes. This makes it convenient and quick for users to automatically recognize the appliances and start the corresponding sterilization mode from the stored mode when they put them in the sterilizer next time.
[0054] Specifically, the sterilizer includes a display screen and a start button on the screen. When the user places the sterilizing appliance into the sterilizer, pressing and holding the start button for a preset time will activate the sterilizer's memory mode. Responding to the memory command corresponding to the memory mode, the detection device detects the sterilizing appliance and obtains its parameters. Simultaneously, the user can input the sterilization mode of the appliance on the display screen. The controller, responding to the input command for the sterilization mode, can obtain the mapping relationship between the appliance's parameters and the sterilization mode. The preset time can be 6 seconds or other values.
[0055] When the sterilization mode includes a sterilization time, the display screen can show the remaining sterilization time for the first sterilization device under the first sterilization mode, or the display screen can show the sterilization time already completed for the first sterilization device under the first sterilization mode.
[0056] In the fourth embodiment, the controller responds to the memory instruction, acquires the instrument parameters of the sterilization instrument detected by the detection device, and identifies the type of sterilization instrument based on the instrument parameters; responds to the input instruction of sterilization mode, and stores the mapping relationship between the type of sterilization instrument and the sterilization mode.
[0057] Specifically, the detection device includes a gravity sensor, and the instrument parameters for the sterilization device include its weight. The controller can identify the type of sterilization device based on its weight.
[0058] Specifically, the detection device includes a gravity sensor, which is located below the receiving component. Thus, when the first sterilization device is placed in the receiving component, the gravity sensor can obtain a first device parameter of the first sterilization device (i.e., the weight of the first sterilization device).
[0059] Specifically, the sterilization machine also includes rubber feet; the detection device includes a gravity sensor, which can be installed at the rubber feet. For example... Figure 2 As shown, a schematic diagram of a sterilizer 200 is provided, wherein the sterilizer includes rubber feet 201 and a display screen 202. Figure 2 Based on the diagram shown, as Figure 3 As shown, a schematic diagram of the bottom structure of a sterilizer 200 is provided. The sterilizer also includes a water receiving tank 301.
[0060] The rubber feet 201 maintain the balance of the sterilizer, and a gravity sensor is installed at the rubber feet 201. The water tank 301 collects liquid dripping from the sterilizing appliances. A start button is located on the display screen 202. When the user places the sterilizing appliance into the sterilizer, pressing and holding the start button for 6 seconds activates the sterilizer's memory mode. Simultaneously, the user inputs the sterilization mode (i.e., sterilization time) of the sterilizing appliance on the display screen. The controller responds to the input command for the sterilization mode and obtains the mapping relationship between the appliance's parameters and the sterilization mode.
[0061] Understandable. Figure 3 The number of rubber feet shown is just one example. While maintaining the balance of the sterilizer, the number of rubber feet can be set to other values, and a gravity sensor can be installed at at least one rubber foot. To improve the accuracy of instrument parameter detection for sterilizers, gravity sensors can be installed at all rubber feet.
[0062] Specifically, the controller responds to the memory command to acquire the instrument parameters of the sterilization instrument detected by the detection device; and the controller responds to the input command of the sterilization mode to store the mapping relationship between the type of sterilization instrument and the sterilization mode. For the implementation method of the controller obtaining the mapping relationship between the instrument parameters of the sterilization instrument and the sterilization mode described above, please refer to the relevant content of the controller obtaining the mapping relationship between the sterilization instrument parameters and the sterilization mode, which will not be repeated here.
[0063] In the fifth embodiment, the receiving component includes multiple receiving areas, each containing a different designated type of sterilizing appliance. The detection device is further configured to obtain a first appliance parameter based on detection results of the multiple receiving areas. The first appliance parameter includes the type of a first sterilizing appliance, which is determined based on the receiving area where the first sterilizing appliance is placed, as detected by the detection device.
[0064] For example, multiple receiving areas include a first receiving area, a second receiving area, and a third receiving area. The first receiving area is designated for placing knives, the second receiving area for placing spatulas, and the third receiving area for placing rice scoops. Therefore, the type of the first sterilizing device can be determined based on the receiving area where it is placed. If the detection device detects that the first sterilizing device is placed in the first receiving area, then the type of the first sterilizing device can be determined to be a knife.
[0065] Specifically, the detection devices are respectively disposed below multiple receiving areas, and the detection devices may include at least one of gravity detection sensors, image sensors, infrared sensors, and ultrasonic sensors. The multiple receiving areas may include a target receiving area.
[0066] For example, if the detection device is a gravity sensor, and the gravity sensor detects the weight of the device in the target receiving area, it can be determined that the first sterilization device has been placed in the target receiving area. Then, the device parameters (i.e. the type of the first sterilization device) can be determined according to the device type specified in the target receiving area.
[0067] For example, if the detection device is an image sensor, and the image sensor captures an image of the device in the target receiving area, it can be determined that the first sterilization device has been placed in the target receiving area. Then, the device parameters (i.e., the type of the first sterilization device) of the first sterilization device can be determined according to the device type specified in the target receiving area.
[0068] For example, if the detection device is an infrared sensor, and the infrared sensor emits infrared light toward the target receiving area and receives the reflected signal, it can be determined that the first sterilization device has been placed in the target receiving area. Then, the device parameters (i.e. the type of the first sterilization device) can be determined according to the device type specified in the target receiving area.
[0069] For example, if the detection device is an ultrasonic sensor, and the ultrasonic sensor emits ultrasonic waves toward the target receiving area and receives the echo, it can be determined that the first sterilization device has been placed in the target receiving area. Then, the device parameters (i.e. the type of the first sterilization device) can be determined according to the device type specified in the target receiving area.
[0070] In the sixth embodiment, the detection device is further configured to acquire second device parameters of the second sterilization device detected before the first sterilization mode ends. The controller is further configured to match a corresponding second sterilization mode according to the second device parameters; determine the sterilization mode with better sterilization effect among the first sterilization mode and the sterilization mode; and control the sterilization mechanism to perform sterilization treatment on the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect.
[0071] Specifically, obtaining the second instrument parameters of the second sterilization device before the first sterilization mode ends includes the following two cases:
[0072] The first scenario is as follows: After the first sterilizing device has been sterilized according to the first sterilization mode, and before the first sterilization mode ends, if the second sterilizing device is placed in the receiving component of the sterilizer, the second sterilizing device is detected to obtain the second device parameters, and the sterilization process of the first sterilizing device is not stopped.
[0073] The second scenario is as follows: After the first sterilizing device has been sterilized according to the first sterilization mode, and before the first sterilization mode ends, if the second sterilizing device is placed in the receiving component of the sterilizer, the second sterilizing device is detected to obtain the second device parameters, and the sterilization process of the first sterilizing device is stopped.
[0074] Specifically, "better sterilization effect" refers to a longer sterilization time in the sterilization mode. For example, if the sterilization time in the first sterilization mode is 20 minutes and the sterilization time in the second sterilization mode is 30 minutes, then both the first and second sterilization appliances will be sterilized according to the second sterilization mode (i.e., sterilization time of 30 minutes). If the sterilization time in the first sterilization mode is 25 minutes and the sterilization time in the second sterilization mode is 20 minutes, then both the first and second sterilization appliances will be sterilized according to the first sterilization mode (i.e., sterilization time of 25 minutes).
[0075] It should be noted that if the controller performs sterilization based on the sterilization mode of the subsequently placed sterilization device (i.e., the second sterilization mode of the second sterilization device), then the time when the device is placed in the second sterilization device is the start time of sterilization. The sterilization process will only stop when the sterilization time reaches the sterilization time specified in the sterilization mode of the subsequently placed sterilization device. It can be understood that the actual sterilization time for the previously placed sterilization device is longer than the sterilization time specified in its corresponding sterilization mode.
[0076] It should be noted that if the controller performs sterilization according to the sterilization mode of the previously placed sterilization device (i.e., the first sterilization mode of the first sterilization device), then the time when the previously placed sterilization device is placed is the start time of sterilization, and the sterilization process of the sterilizer will stop only when the sterilization time reaches the sterilization time in the sterilization mode of the previously placed sterilization device.
[0077] It is understandable that when sterilizing previously placed sterilizing devices, the actual sterilization time for later placed sterilizing devices may be shorter, longer, or the same as the sterilization time in the corresponding sterilization mode. This depends on how long the user sterilizes the previously placed sterilizing devices before placing the later sterilizing devices into the sterilizer.
[0078] In conjunction with the content described in the above embodiments, in one embodiment, such as Figure 4 The diagram shows a flow chart of a sterilization control method, which is applied to... Figure 1 Taking controller 104 as an example, the steps include:
[0079] S402, Obtain the first appliance parameter of the first sterilization appliance placed in the sterilization machine.
[0080] Based on the above, the sterilizer includes a receiving component and a detection device. A user can place a first sterilization device into the receiving component, and the detection device can detect the first sterilization device to obtain its parameters. The detection device may include at least one of a gravity sensor, an image sensor, an infrared sensor, and an ultrasonic sensor.
[0081] In some embodiments, the sterilizer may further include rubber feet, and the detection device includes a gravity sensor disposed at the rubber feet. The gravity sensor operates based on the principle of resistance strain effect. When the first sterilizer is placed in the receiving component, pressure is generated, causing strain on the metal strain gauge mounted at the rubber feet, resulting in a change in resistance and generating an electrical signal. The gravity sensor can determine the weight of the first sterilizer based on this electrical signal.
[0082] In some embodiments, the receiving component may include multiple receiving areas for placing different designated types of sterilizing devices, and a detection device is disposed below the multiple receiving areas. When a first sterilizing device is placed in the receiving component, the detection device obtains a first device parameter based on the detection results of the multiple receiving areas, the first device parameter including the type of the first sterilizing device.
[0083] Specifically, the detection device is a gravity sensor. The gravity sensor determines whether a first sterilization device has been placed in a container area based on the weight detection results of multiple container areas (i.e., the detection results of multiple container areas). If the weight of the device is detected in the target container area among the multiple container areas, it can be determined that the first sterilization device has been placed in the target container area. Then, the type of the first sterilization device can be determined according to the type of device specified in the target container area.
[0084] Specifically, the detection device is an image sensor. The image sensor determines whether a first sterilization device has been placed in a container area based on the image detection results of multiple container areas (i.e., the detection results of multiple container areas). If an image of a device is captured in the target container area among the multiple container areas, it can be determined that the first sterilization device has been placed in the target container area. Then, the type of the first sterilization device can be determined according to the device type specified in the target container area.
[0085] Specifically, the detection device is an infrared sensor. The infrared sensor determines whether a first sterilization device has been placed in a container area based on the infrared emission of multiple container areas (i.e., the detection results of multiple container areas). If the infrared sensor emits infrared light into the target container area in the multiple container areas and receives the reflected signal, it can be determined that the first sterilization device has been placed in the target container area. Then, the type of the first sterilization device can be determined according to the device type specified in the target container area.
[0086] Specifically, the detection device is an ultrasonic sensor. The ultrasonic sensor determines whether a first sterilization device has been placed in a container area based on the signal echoes from multiple container areas (i.e., the detection results of multiple container areas). If the ultrasonic sensor emits ultrasonic waves to the target container area among the multiple container areas and receives the echo, it can be determined that the first sterilization device has been placed in the target container area. Then, the type of the first sterilization device can be determined according to the device type specified in the target container area.
[0087] S404, Match the corresponding first sterilization mode according to the first instrument parameters.
[0088] Specifically, the type of the first sterilization device can be identified based on the first device parameters, and then the corresponding first sterilization mode can be determined based on the type of the first sterilization device. Specifically, the controller can obtain the first device parameters from a detection device, which may include at least one of a gravity sensor, an image sensor, an infrared sensor, and an ultrasonic sensor.
[0089] Specifically, the sterilization mode includes sterilization time. The detection device includes a gravity sensor, and the device parameters of the sterilization appliance include the weight of the sterilization appliance. In this embodiment, the controller can identify the type of the first sterilization appliance based on its weight; and then match the corresponding first sterilization mode according to the type of the first sterilization appliance.
[0090] It is understandable that the weight of a spatula for sterilization is different from that of a bowl for sterilization, and the sterilization time for the two is also different. By determining the type of sterilization tool based on its weight, the sterilization mode of the sterilization tool can be determined. This allows different sterilization modes to be used for different types of sterilization tools. Compared with using the same sterilization mode for different types of sterilization tools, this can improve the sterilization effect of different types of sterilization tools.
[0091] S406, Sterilize the first sterilization device according to the first sterilization mode.
[0092] It is understandable that when the first sterilization mode is completed, the sterilizer can automatically shut down the sterilization process for the first sterilized appliance, so that the user does not need to manually shut down the sterilization process, which is convenient and simple.
[0093] In summary, based on Figure 4The method shown allows for the sterilization of appliances placed in the sterilizer by detecting their parameters. This enables the sterilization of the first appliance to be sterilized according to the matched sterilization mode, eliminating the need for manual operation of the sterilizer's sterilization process or adjustment of the sterilization mode. This is convenient and quick. Furthermore, using different sterilization modes for appliances with different parameters improves the sterilization effect compared to using the same mode for different types of appliances. This makes the sterilizer more intelligent and user-friendly, enhancing the user experience.
[0094] In one embodiment, such as Figure 5 As shown, a flowchart illustrating a method for matching a first sterilization mode based on first instrument parameters is provided. This method is applied to... Figure 1 Taking controller 104 as an example, the steps include:
[0095] S502, Obtain the mapping relationship between the instrument parameters and sterilization mode of the sterilization instrument.
[0096] There is a correspondence between the device parameters and sterilization modes of the sterilizing device. This mapping is based on the sterilization mode settings pre-set and stored by the user through the sterilizer's corresponding app or on the device's display screen. The sterilization mode can include sterilization time, and the device parameters can include the device's weight and / or type. Different device parameters correspond to different sterilization modes.
[0097] Specifically, the equipment parameters may include the weight of the equipment. The detection device is a gravity sensor, which can detect the weight of the sterilization equipment to obtain the weight of the sterilization equipment.
[0098] Specifically, the device parameters can include the type of device. For example, if the detection device is an image sensor, the image sensor can determine the type of the sterilization device based on the image it captures.
[0099] Specifically, the housing component includes multiple housing areas. When different types of sterilization appliances are placed in the multiple housing areas, the detection device can determine the appliance type of the sterilization appliance based on the detection results of the multiple housing areas. For details, please refer to the relevant content of S402, which will not be repeated here.
[0100] S504, Match the corresponding first sterilization mode according to the mapping relationship and the first instrument parameters.
[0101] Specifically, based on the first instrument parameters, the corresponding sterilization mode can be queried from the mapping relationship, and this sterilization mode can be determined as the first sterilization mode.
[0102] In summary, based on Figure 5 The method shown obtains the mapping relationship between the sterilization device parameters and the sterilization mode. In this way, when the first sterilization device is placed in the sterilizer, the matching first sterilization mode can be called from the mapping relationship according to the first sterilization device parameters, without the need for manual adjustment of the sterilization mode, which is convenient and quick.
[0103] In one embodiment, such as Figure 6 The diagram illustrates a process for constructing a mapping relationship between the parameters of a sterilization device and its sterilization mode. This method is then applied to... Figure 1 Taking controller 104 as an example, the steps include:
[0104] S602, in response to a memory instruction, retrieves the appliance parameters of the sterilizing appliance placed in the sterilizer.
[0105] Specifically, the sterilizer has an application (APP). When the user places the sterilizing device into the receiving part of the sterilizer, the user can activate the sterilizer's memory mode through the application. By inputting the sterilization mode of the sterilizing device in the application, the controller responds to the memory command corresponding to the sterilizer's memory mode and obtains the device parameters through the detection device.
[0106] Specifically, the sterilizer includes a display screen and a start button on the screen. When the user places the sterilizing appliance into the receiving component of the sterilizer, pressing and holding the start button for a preset time will activate the sterilizer's memory mode. The user inputs the sterilization mode of the appliance on the display screen, and the controller responds to the memory command corresponding to the memory mode, obtaining the appliance's parameters through a detection device. The preset time can be 6 seconds or other values.
[0107] Specifically, when a user places a sterilizing device into the receiving component of the sterilizer, the user can also activate the sterilizer's memory mode via voice; for example, the user's voice can include preset words such as "start" or "memory mode". Responding to the memory command corresponding to the memory mode, the user inputs the sterilization mode of the sterilizing device on the display screen. The controller, responding to the memory command, can obtain the device parameters through the detection device.
[0108] S604, in response to the input command for sterilization mode, obtains the mapping relationship between appliance parameters and sterilization mode.
[0109] Specifically, in this embodiment, the mapping relationship between the sterilization device parameters and the sterilization mode can refer to the mapping relationship between the weight of the sterilization device and the sterilization mode.
[0110] In some embodiments, after a user activates the memory mode through the application corresponding to the sterilizer, the user can input the sterilization mode of the sterilizer in the application. The controller, in response to the input command for the sterilization mode, can obtain the mapping relationship between the sterilizer's parameters and the sterilization mode.
[0111] In some embodiments, after a user activates the memory mode via the start button on the display screen of the sterilizer, the user can input the sterilization mode of the sterilizing device on the display screen. In response to the input command for the sterilization mode, the controller can obtain the mapping relationship between the device parameters and the sterilization mode.
[0112] In summary, based on Figure 6 The method shown allows the device to respond to a memory command and acquire the device parameters of the sterilizing instrument detected by the detection device; in response to an input command for a sterilization mode, it can obtain the mapping relationship between the device parameters and the sterilization mode. Furthermore, through this mapping relationship, when the first sterilizing instrument is placed in the sterilizer, the matching first sterilization mode can be retrieved from this mapping relationship based on the first instrument parameters of the first sterilizing instrument, eliminating the need for manual adjustment of the sterilization mode and providing convenience and speed.
[0113] In one embodiment, such as Figure 7 As shown, a flowchart illustrating a method for matching a first sterilization mode based on first instrument parameters is provided. This method is applied to... Figure 1 Taking the controller in the example, the following steps may be included:
[0114] S702, Obtain the mapping relationship between the type of sterilization device and the sterilization mode.
[0115] There is a correspondence between the types of sterilizing appliances and their sterilization modes. This mapping is based on the user's pre-set sterilization mode settings via the corresponding app or the display screen on the sterilizer. Different types of sterilizing appliances correspond to different sterilization modes. For example, sterilization modes may include sterilization time, which differs between knives and tableware.
[0116] S704, Identify the type of the first sterilization device based on the first device parameters.
[0117] Specifically, the first device parameter may include the weight of the first sterilization device, and the type of the first sterilization device can be determined based on its weight. Specifically, in this embodiment, the controller can determine the type of the first sterilization device based on the weight detected by the detection device.
[0118] The detection device may include a gravity sensor, which can be positioned below a receiving component in the sterilizer, the receiving component being used to hold the first sterilization device. Alternatively, the gravity sensor can be positioned at the rubber feet in the sterilizer, the position of which can be determined by reference to... Figure 2 and Figure 3 The diagram shown is shown in the image.
[0119] Specifically, the first device parameter may also include the shape of the first sterilization device, and the type of the first sterilization device can be determined based on its shape. In this embodiment, the controller can obtain the shape of the first sterilization device based on the shape measurement sensor.
[0120] S706, Match the corresponding first sterilization mode according to the mapping relationship and the type of the first sterilization device.
[0121] Specifically, based on the type of the first sterilization device, the corresponding sterilization mode can be queried from the mapping relationship between the type of sterilization device and the sterilization mode, and this sterilization mode can be determined as the first sterilization mode.
[0122] In summary, based on Figure 7 The method shown obtains the mapping relationship between the type of sterilizing device and the sterilization mode. Thus, when the first sterilizing device is placed in the sterilizer, its type is identified based on its first device parameters. Then, based on the type of the first sterilizing device, the matching first sterilization mode is retrieved from the mapping relationship between the device type and the sterilization mode. This eliminates the need for manual activation of the sterilization mode via a sterilization button or manual adjustment of the sterilization mode, making it convenient and quick.
[0123] In one embodiment, such as Figure 8 The diagram illustrates a flowchart of a method for constructing a mapping relationship between the type of sterilization device and its sterilization mode. This method is then applied to... Figure 1 Taking the controller in the example, the following steps may be included:
[0124] S802, in response to a memory instruction, obtains the appliance parameters of the sterilizing appliance placed in the sterilizer, and identifies the type of sterilizing appliance based on the appliance parameters.
[0125] In some embodiments, the sterilizer has an application (APP). When a user places a sterilizing device into the receiving component of the sterilizer, the user can activate the sterilizer's memory mode through the application. In response to the memory command corresponding to the sterilizer's memory mode, the controller can obtain the device parameters of the sterilizing device through a detection device.
[0126] In some embodiments, the sterilizer includes a display screen and a start button on the display screen. When a user places a sterilizing device into the receiving component of the sterilizer, the user can activate the sterilizer's memory mode by pressing and holding the start button for a preset time. In response to the memory command corresponding to the memory mode, the controller can obtain the device parameters of the sterilizing device through a detection device. The preset time can be 6 seconds or other values.
[0127] Specifically, the detection device includes a gravity sensor, which detects the weight of the sterilizing appliance. The weight is a parameter of the sterilizing appliance. The controller identifies the type of sterilizing appliance based on its weight.
[0128] S804, in response to the input command for sterilization mode, obtains the mapping relationship between the type of sterilization appliance and the sterilization mode.
[0129] Specifically, in this embodiment, the sterilization mode may include sterilization time, and the mapping relationship between the type of sterilization device and the sterilization mode may refer to the mapping relationship between the type of sterilization device and the sterilization time.
[0130] In some embodiments, after a user activates the sterilizer's memory mode through the corresponding application, the user can input the sterilization mode of the sterilizing device in the application. The controller, responding to the input command for the sterilization mode, can obtain the mapping relationship between the device parameters and the sterilization mode.
[0131] In some embodiments, after a user activates the sterilizer's memory mode via the start button on the display screen, the user can input the sterilization mode of the sterilizing device on the display screen. In response to the input command for the sterilization mode, the controller can obtain the mapping relationship between the device parameters and the sterilization mode.
[0132] In summary, based on Figure 8 The method shown allows users to activate the sterilizer's memory mode via the corresponding application or the sterilizer's display screen. The controller, responding to the memory command, retrieves the appliance parameters placed in the sterilizer and identifies the appliance type based on these parameters. Upon receiving a sterilization mode input command, the controller obtains the mapping relationship between the appliance type and the sterilization mode. Furthermore, by leveraging this mapping, when the first appliance is placed in the sterilizer, its type is identified based on its first appliance parameters. The matching first sterilization mode is then retrieved from this mapping relationship based on the appliance type, eliminating the need for manual adjustment and offering convenience and speed.
[0133] Combination Figure 6 or Figure 8Regarding the content, it should be noted that users can input the sterilization mode of the sterilizing device through the corresponding application or the display screen on the sterilizing device. The sterilization mode includes the sterilization time. If the input sterilization time exceeds the preset sterilization time range corresponding to the sterilizing device, a prompt message will be issued to prompt the user to modify the set sterilization time. This process continues until the input sterilization time does not exceed the preset sterilization time range corresponding to the sterilizing device, at which point the controller obtains the sterilization mode (i.e., sterilization time) of the sterilizing device.
[0134] The calibrated sterilization time range is a range consisting of a first preset value and a second preset value. For example, the first preset value can be 20 minutes, and the second preset value can be 40 minutes. The preset sterilization time range corresponding to different types of sterilization devices is within or equal to the calibrated sterilization time range, and can be set according to the actual application scenario. This embodiment does not impose any limitations on this.
[0135] In one embodiment, such as Figure 9 As shown, a sterilization control method is provided, which is applied to... Figure 1 Taking the controller in the example, the following steps may be included:
[0136] S902, acquire the second device parameter of the second sterilization device detected before the first sterilization mode ends.
[0137] Specifically, in this embodiment, obtaining the second device parameters of the second sterilization device before the first sterilization mode ends includes the following two cases:
[0138] The first scenario is as follows: After the first sterilizing device has been sterilized according to the first sterilization mode, and before the first sterilization mode ends, if the second sterilizing device is placed in the receiving component of the sterilizer, the second sterilizing device is detected to obtain the second device parameters, and the sterilization process of the first sterilizing device is not stopped.
[0139] The second scenario is as follows: After the first sterilizing device has been sterilized according to the first sterilization mode, and before the first sterilization mode ends, if the second sterilizing device is placed in the receiving component of the sterilizer, the second sterilizing device is detected to obtain the second device parameters, and the sterilization process of the first sterilizing device is stopped.
[0140] Combining the two scenarios above, before the first sterilization device is sterilized and the first sterilization mode ends, the user may place another sterilization device (i.e., a second sterilization device) in the receiving component. The sterilizer can acquire the second device parameters of the second sterilization device after stopping the sterilization process of the first sterilization device; or, the sterilizer can acquire the second device parameters of the second sterilization device without stopping the sterilization process of the first sterilization device.
[0141] S904, determine the first sterilization mode and the sterilization mode with better sterilization effect among the sterilization modes.
[0142] Specifically, "better sterilization effect" refers to a longer sterilization time in the sterilization mode. For example, if the sterilization time in the first sterilization mode is 20 minutes and the sterilization time in the second sterilization mode is 30 minutes, then both the first and second sterilization appliances will be sterilized according to the second sterilization mode (i.e., sterilization time of 30 minutes). If the sterilization time in the first sterilization mode is 25 minutes and the sterilization time in the second sterilization mode is 20 minutes, then both the first and second sterilization appliances will be sterilized according to the first sterilization mode (i.e., sterilization time of 25 minutes).
[0143] It should be noted that if the controller performs sterilization based on the sterilization mode of the subsequently placed sterilization device, then the time the device is placed in the sterilization process begins at that point. The sterilization process will only stop when the sterilization time reaches the sterilization time specified in the sterilization mode of the subsequently placed device. In other words, the actual sterilization time for the previously placed sterilization device is longer than the sterilization time specified in its corresponding sterilization mode.
[0144] It should be noted that if the controller performs sterilization according to the sterilization mode of the previously placed sterilization device, the time when the previously placed sterilization device is placed is the start time of sterilization, and the sterilization process will stop only when the sterilization time reaches the sterilization time in the sterilization mode of the previously placed sterilization device.
[0145] It is understandable that when a previously placed sterilizing device is sterilized, the actual sterilization time of a later placed sterilizing device may be shorter, longer, or the same as the sterilization time in the corresponding sterilization mode. This depends on how long the user sterilizes the first sterilizing device before placing the second sterilizing device.
[0146] S906, sterilizes the first and second sterilizing devices according to a sterilization mode with better sterilization effect.
[0147] Specifically, the first and second sterilization devices are sterilized according to the sterilization mode with the longer sterilization time. Better sterilization corresponds to a longer sterilization time within the sterilization mode.
[0148] In summary, based on Figure 9 The method shown allows for the sterilization of two sterilization devices simultaneously. If the user inserts another sterilization device (i.e., a later-inserted sterilization device) while the user is sterilizing the previously inserted sterilization device, the method determines the sterilization mode with better sterilization effect among the two sterilization modes. This enables the sterilization of both sterilization devices to be sterilized, avoiding confusion in the sterilization logic and improving the accuracy of sterilization logic control.
[0149] In one embodiment, such as Figure 10 As shown, a sterilization control method is provided, which is applied to... Figure 1 Taking the controller in the example, the following steps may be included:
[0150] S1002, Obtain the first device parameter of the first sterilization device placed in the sterilization machine.
[0151] Specifically, the first sterilization device parameters are obtained by detecting the first sterilization device through a gravity detection device. The first sterilization device parameters include the weight of the first sterilization device.
[0152] Furthermore, the implementation method of matching the corresponding first sterilization mode based on the first instrument parameters differs depending on the mapping relationship used. If the obtained data is the mapping relationship between the instrument parameters and the sterilization mode of the sterilization instrument, the implementation method of matching the corresponding first sterilization mode based on the first instrument parameters includes S1004-S1008. If the obtained data is the type of sterilization instrument and the sterilization mode, the implementation method of matching the corresponding first sterilization mode based on the first instrument parameters includes S1010-S1018.
[0153] S1004, in response to the memory instruction, retrieves the appliance parameters of the sterilization appliance placed in the sterilization machine.
[0154] S1006, in response to the input command for sterilization mode, obtains the mapping relationship between the appliance parameters and the sterilization mode.
[0155] S1008, Match the corresponding first sterilization mode according to the first instrument parameters and the mapping relationship between the instrument parameters and sterilization modes.
[0156] S1010, in response to a memory instruction, obtains the weight of the sterilizing appliance placed in the sterilizer; appliance parameters include the weight of the appliance.
[0157] S1012, Identify the type of sterilization equipment based on its weight.
[0158] S1014, in response to the input command for sterilization mode, obtains the mapping relationship between the type of sterilization device and the sterilization mode.
[0159] S1016, Identify the type of the first sterilization device based on the first device parameters.
[0160] S1018, Match the corresponding first sterilization mode according to the type of the first sterilization device and the mapping relationship between the type of sterilization device and the sterilization mode.
[0161] S1020, the first sterilization device is sterilized according to the first sterilization mode.
[0162] S1022, Obtain the second device parameter of the second sterilization device detected before the first sterilization mode ends.
[0163] S1024, determine the first sterilization mode and the sterilization mode with a longer sterilization time among the sterilization modes, the sterilization mode including the sterilization time.
[0164] S1026, The first sterilizing device and the second sterilizing device are sterilized according to the sterilization mode with a longer sterilization time.
[0165] The specific contents of S1002-S1026 can be found in the aforementioned description and will not be repeated here.
[0166] It should be understood that although the steps in the flowcharts of the embodiments described above are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the embodiments described above may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.
[0167] Based on the same inventive concept, this application also provides a sterilization control device for implementing the sterilization control method described above. The solution provided by this device is similar to the solution described in the above method; therefore, the specific limitations in one or more embodiments of the sterilization control device provided below can be found in the limitations of the sterilization control method described above, and will not be repeated here.
[0168] In one embodiment, such as Figure 11 As shown, a sterilization control device is provided, comprising: an instrument parameter acquisition module 1102, a sterilization mode matching module 1104, and a sterilization processing module 1106, wherein:
[0169] The instrument parameter acquisition module 1102 is used to acquire the first instrument parameters of the first sterilization instrument placed in the sterilization machine.
[0170] The sterilization mode matching module 1104 is used to match the corresponding first sterilization mode according to the first instrument parameters.
[0171] The sterilization module 1106 is used to sterilize the first sterilization device according to the first sterilization mode.
[0172] In one embodiment, the sterilization mode matching module 1104 is further configured to: obtain the mapping relationship between the instrument parameters of the sterilization device and the sterilization mode; and match the corresponding first sterilization mode according to the mapping relationship and the first instrument parameters.
[0173] In one embodiment, the sterilization mode matching module 1104 is further configured to: in response to a memory instruction, obtain the instrument parameters of the sterilization instrument placed in the sterilization machine; and in response to an input instruction for the sterilization mode, obtain the mapping relationship between the instrument parameters and the sterilization mode.
[0174] In one embodiment, the sterilization mode matching module 1104 is further configured to: obtain the mapping relationship between the type of sterilization device and the sterilization mode; identify the type of the first sterilization device according to the first device parameters; and match the corresponding first sterilization mode according to the mapping relationship and the type of the first sterilization device.
[0175] In one embodiment, the sterilization mode matching module 1104 is further configured to: in response to a memory instruction, obtain the instrument parameters of the sterilization instrument placed in the sterilization machine, and identify the type of the sterilization instrument based on the instrument parameters; in response to an input instruction for a sterilization mode, obtain the mapping relationship between the type of sterilization instrument and the sterilization mode.
[0176] In one embodiment, the device parameters of the sterilization device include the weight of the sterilization device; the sterilization mode matching module 1104 is further configured to: identify the type of sterilization device based on the weight of the sterilization device.
[0177] In one embodiment, the sterilization processing module 1106 is further configured to: acquire second device parameters of the second sterilization device detected before the first sterilization mode ends; determine the first sterilization mode and the sterilization mode with better sterilization effect; and perform sterilization processing on the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect.
[0178] Each module in the aforementioned sterilization control device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in the processor of the sterilizer in hardware form or independent of it, or stored in the sterilizer's memory in software form, so that the processor can call and execute the corresponding operations of each module.
[0179] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, the computer program performing the following steps when executed by a processor:
[0180] Obtain the first instrument parameters of the first sterilization instrument placed in the sterilizer; match the corresponding first sterilization mode according to the first instrument parameters; and perform sterilization treatment on the first sterilization instrument according to the first sterilization mode.
[0181] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the mapping relationship between the instrument parameters of the sterilization device and the sterilization mode; and matching the corresponding first sterilization mode according to the mapping relationship and the first instrument parameters.
[0182] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: in response to a memory instruction, acquiring the instrument parameters of the sterilizing device placed in the sterilizer; in response to an input instruction for a sterilization mode, acquiring the mapping relationship between the instrument parameters and the sterilization mode.
[0183] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining a mapping relationship between the type of sterilization device and the sterilization mode; identifying the type of the first sterilization device according to the first device parameters; and matching the corresponding first sterilization mode according to the mapping relationship and the type of the first sterilization device.
[0184] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: in response to a memory instruction, it acquires the instrument parameters of the sterilizing device placed in the sterilizer, and identifies the type of the sterilizing device based on the instrument parameters; in response to an input instruction for a sterilization mode, it obtains the mapping relationship between the type of sterilizing device and the sterilization mode.
[0185] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the weight of the sterilizing appliance placed in the sterilizer; appliance parameters including the weight of the sterilizing appliance; and identifying the type of sterilizing appliance based on the weight.
[0186] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: acquiring second device parameters of the second sterilization device detected before the first sterilization mode ends; determining the first sterilization mode and the sterilization mode with better sterilization effect; and sterilizing the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect.
[0187] In one embodiment, a computer program product is provided, including a computer program that, when executed by a processor, performs the following steps:
[0188] Obtain the first instrument parameters of the first sterilization instrument placed in the sterilizer; match the corresponding first sterilization mode according to the first instrument parameters; and perform sterilization treatment on the first sterilization instrument according to the first sterilization mode.
[0189] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the mapping relationship between the instrument parameters of the sterilization device and the sterilization mode; and matching the corresponding first sterilization mode according to the mapping relationship and the first instrument parameters.
[0190] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: in response to a memory instruction, acquiring the instrument parameters of the sterilizing device placed in the sterilizer; in response to an input instruction for a sterilization mode, acquiring the mapping relationship between the instrument parameters and the sterilization mode.
[0191] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining a mapping relationship between the type of sterilization device and the sterilization mode; identifying the type of the first sterilization device according to the first device parameters; and matching the corresponding first sterilization mode according to the mapping relationship and the type of the first sterilization device.
[0192] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: in response to a memory instruction, it acquires the instrument parameters of the sterilizing device placed in the sterilizer, and identifies the type of the sterilizing device based on the instrument parameters; in response to an input instruction for a sterilization mode, it obtains the mapping relationship between the type of sterilizing device and the sterilization mode.
[0193] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the weight of the sterilizing appliance placed in the sterilizer; appliance parameters including the weight of the sterilizing appliance; and identifying the type of sterilizing appliance based on the weight.
[0194] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: acquiring second device parameters of the second sterilization device detected before the first sterilization mode ends; determining the first sterilization mode and the sterilization mode with better sterilization effect; and sterilizing the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect.
[0195] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties.
[0196] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.
[0197] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0198] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A sterilization machine, characterized in that, The sterilization machine includes: A receiving component for holding a first sterilizing device; the receiving component includes multiple receiving areas; the multiple receiving areas hold different specified types of sterilizing devices; A sterilization mechanism is used to sterilize the first sterilization device in the receiving component; A detection device is used to obtain first device parameters of the first sterilization device based on the detection results of the plurality of containment areas; wherein, the first device parameters include the type of the first sterilization device, the detection device includes a gravity detection sensor, the plurality of containment areas include a target containment area, and if the gravity detection sensor detects the weight of the device in the target containment area, the type of the first sterilization device is determined according to the device type specified in the target containment area; A controller connected to the sterilization mechanism is configured to match a corresponding first sterilization mode according to the type of the first sterilization device, and control the sterilization mechanism to perform sterilization treatment on the first sterilization device according to the first sterilization mode. The detection device is also used to acquire second device parameters of the second sterilization device detected before the first sterilization mode ends; The controller is further configured to match a corresponding second sterilization mode according to the second device parameters, determine the sterilization mode with better sterilization effect between the first sterilization mode and the second sterilization mode, and control the sterilization mechanism to perform sterilization treatment on the first sterilization device and the second sterilization device according to the sterilization mode with better sterilization effect; The controller is further configured to, in response to a memory instruction, acquire the instrument parameters of the sterilizing instrument detected by the detection device, identify the type of the sterilizing instrument based on the instrument parameters; in response to an input instruction for a sterilization mode, store the mapping relationship between the type of the sterilizing instrument and the sterilization mode; and match the corresponding first sterilization mode based on the mapping relationship between the type of the sterilizing instrument and the sterilization mode and the type of the first sterilizing instrument.
2. The sterilizer according to claim 1, characterized in that, The detection device further includes at least one of an image sensor, an infrared sensor, and an ultrasonic sensor.
3. The sterilizer according to claim 1, characterized in that, The controller is also used to identify the type of sterilization device based on its weight.
4. The sterilizer according to claim 1, characterized in that, The gravity sensor is located below the housing component.
5. The sterilizer according to claim 1, characterized in that, The sterilization machine also includes rubber feet; the gravity detection sensor is located at the rubber feet.
6. The sterilizer according to claim 1, characterized in that, The sterilizer includes a display screen and a start button on the display screen; The controller is also used to, in response to the memory instruction corresponding to the memory mode, acquire the instrument parameters of the sterilizing instrument detected by the detection device when the user puts the sterilizing instrument into the sterilizing machine and the user presses and holds the start button for a preset time to activate the memory mode of the sterilizing machine.
7. The sterilizer according to claim 6, characterized in that, The controller is also used for: The display screen is controlled to show the remaining sterilization time when the first sterilization device is sterilized according to the first sterilization mode. Alternatively, the display screen can be controlled to show the sterilization time of the first sterilization device according to the first sterilization mode.
8. The sterilizer according to claim 1, characterized in that, The sterilization machine has a corresponding application program; The controller is also configured to, in response to the memory instruction corresponding to the memory mode, acquire the instrument parameters of the sterilizing device detected by the detection device when the user activates the memory mode of the sterilizing machine through the application.
9. A sterilization control method, characterized in that, The method includes: Based on the detection results of multiple containment areas in the sterilizer, first device parameters of the first sterilizing device placed in the sterilizer are obtained; wherein, the first device parameters include the type of the first sterilizing device; the multiple containment areas include a target containment area, and when the weight of the device is detected in the target containment area, the type of the first sterilizing device is determined according to the device type specified in the target containment area; Match the corresponding first sterilization mode according to the type of the first sterilization device; The first sterilization device is sterilized according to the first sterilization mode; Obtain the second device parameters of the second sterilization device detected before the first sterilization mode ends; Based on the second instrument parameters, match the corresponding second sterilization mode, and determine the sterilization mode with better sterilization effect between the first sterilization mode and the second sterilization mode. The first sterilizing device and the second sterilizing device are sterilized according to the sterilization mode with better sterilization effect; The step of matching the corresponding first sterilization mode according to the type of the first sterilization device includes: in response to a memory instruction, acquiring the device parameters of the sterilization device placed in the sterilization machine, and identifying the type of the sterilization device according to the device parameters; in response to an input instruction for a sterilization mode, obtaining the mapping relationship between the type of the sterilization device and the sterilization mode; and matching the corresponding first sterilization mode according to the mapping relationship between the type of the sterilization device and the sterilization mode and the type of the first sterilization device.
10. The method according to claim 9, characterized in that, The instrument parameters of the sterilization device include the weight of the sterilization device; The method of identifying the type of sterilization device based on the device parameters includes: The type of sterilization device is identified based on its weight.
Citation Information
Patent Citations
UVC ultraviolet disinfection device
CN113559293A
Degerming system, control method and refrigerator
CN115823816A
Mobile terminal capable of conveniently disinfecting outside, and disinfection method and device
CN116115790A