Intelligent hair dryer with automatic hair care function
The intelligent hair dryer addresses the lack of advanced hair care functions by integrating a control module and detection modules to dynamically adjust drying parameters, ensuring effective and efficient hair care while protecting hair health and reducing energy consumption.
Patent Information
- Application Number
- JP2025003926U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-04-14
- Filing Date
- 2025-11-12
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-11-12
AI Technical Summary
Current hair dryers lack advanced automatic hair care functions, limiting their flexibility and effectiveness in optimizing hair care during use.
An intelligent hair dryer with a main control module, detection module, and output module that includes features like an intelligent vision unit, infrared temperature sensor, motor unit, ion output unit, and atomization unit, which dynamically adjusts airflow, temperature, and output parameters based on humidity and temperature conditions to enhance hair care.
The intelligent hair dryer provides precise control over drying parameters, preventing overheating, reducing user interaction, and improving hair health and energy efficiency, offering enhanced hair care and user convenience.
Smart Images

Figure 0003254332000001_ABST
Abstract
Description
[Technical Field]
[0001] The present application relates to the technical field of electronic products, and in particular to an intelligent hair dryer with automatic hair care function. [Background technology]
[0002] A hair dryer, also known as an electric hair dryer, is a household appliance that uses electricity to drive a fan to generate airflow and heat the air, thereby quickly drying hair or objects. Its core principle is that a motor rotates the fan, drawing in air, heating it with a heating element, and finally discharging hot air to achieve the purpose of drying or styling.
[0003] The technological development of dryers can be traced back to the end of the 19th century. Early dryers were simple in design, generally consisting of a motor and a heating element, but technical limitations made them large, heavy, and unsafe. With advances in electrical engineering and materials science, dryer designs were gradually optimized, becoming smaller and lighter, while at the same time significantly improving heating efficiency and safety.
[0004] Modern hair dryers typically consist of key components such as a motor, fan, heating element, housing, and control system. The motor is the main driving force behind the dryer and is generally available in two types: direct current (DC) and alternating current (AC). DC motors are highly efficient, quiet, and have a long lifespan, making them increasingly popular in high-end models. The fan is used to draw in and exhaust air, and its design directly affects the air volume and speed. The heating element is typically made of nichrome wire, allowing for rapid heating. The housing is often made of high-temperature resistant plastic or metal, ensuring safety and durability. The control system features temperature and air speed adjustment, overheat protection, and other functions, allowing users to adjust the temperature and air speed according to their needs.
[0005] In terms of related technologies, hair dryer technology has undergone further innovation, with the emergence of new features such as negative ion technology, constant temperature control, and intelligent sensing. Negative ion technology can reduce static electricity and make hair smoother. Constant temperature control uses sensors to monitor the temperature in real time, preventing damage to hair caused by overheating. Intelligent sensing technology automatically adjusts the dryer's operating conditions according to the ambient temperature and humidity, improving the user experience. As a common household appliance, hair dryers have evolved from simple structures to low-efficiency to high-efficiency. With technological advances, hair dryers have achieved significant improvements in performance, safety, and user experience, making them an indispensable product in modern life.
[0006] However, current hair dryers have the following technical problems: the mode of the conventional hair dryer is mechanical, and the hair care effect needs further optimization. Summary of the Invention
[0007] Based on this, there is a need to provide an intelligent hair dryer with automatic hair care functions that can improve the flexibility and hair care effect during use of the hair dryer.
[0008] The present application provides an intelligent hair dryer with automatic hair care function, the intelligent hair dryer with automatic hair care function comprising: a main control module for realizing function control of the intelligent dryer; a power supply module connected to the main control module for supplying power to the functional modules of the intelligent dryer; a detection module connected to the main control module for detecting the humidity and temperature conditions of an object; an output module connected to the main control module and controlled by the main control module for realizing the function output of the intelligent dryer; The main control module is configured to obtain humidity state information and temperature state information of the object detected by the detection module, and adjust output parameters of the output module based on the humidity state information and the temperature state information.
[0009] In one embodiment, the detection module comprises: an intelligent vision unit connected to the main control module for visually detecting the object and acquiring image data of the object; The main control module further determines the humidity status information of the object based on a preset detection algorithm using the image data as an input.
[0010] In one embodiment, the detection module comprises: an infrared temperature sensor unit connected to the main control module for detecting an infrared temperature of the object and obtaining infrared temperature detection data of the object; The main control module further determines the humidity status information and the temperature status information of the object based on the preset detection algorithm, using the image data and the infrared temperature detection data as inputs.
[0011] In one embodiment, the detection module comprises: an infrared distance sensor unit connected to the main control module for performing infrared distance detection on the object and obtaining infrared distance data between the object and a target device; The main control module further adjusts output parameters of the output module based on the infrared ranging data.
[0012] In one embodiment, the output module comprises: a motor unit connected to the main control module and controlled by the main control module for outputting an airflow conforming to the output parameters; a temperature control unit connected to the main control module and controlled by the main control module for outputting thermal energy conforming to the output parameters.
[0013] In one embodiment, the output module comprises: The device further includes an ion output unit connected to the main control module and controlled by the main control module for generating high-pressure negative ions that meet the output parameters.
[0014] In one embodiment, the output module comprises: The device further includes a light therapy unit connected to and controlled by the main control module for outputting light conforming to the output parameters.
[0015] In one embodiment, the output module comprises: The apparatus further includes an atomization unit connected to and controlled by the main control module for generating atomized gas conforming to the output parameters.
[0016] In one embodiment, the atomization unit comprises: The atomization unit further includes a liquid level detection unit provided in the consumable storage device for detecting the remaining amount of consumables in the consumable storage device.
[0017] In one embodiment, the atomization unit comprises: The resonating unit is connected to the main control module and controls the vibration of the atomizer based on a preset pulse frequency to achieve atomization. [Effects of the Invention]
[0018] The intelligent hair dryer with automatic hair care function is derived from the technical features in the utility model claims and can achieve the following beneficial effects that address the technical problems raised in the background art. That is, the present application provides an intelligent hair dryer with automatic hair care function, which includes a main control module, a power supply module, a detection module, and an output module. The main control module is used to realize function control of the intelligent hair dryer. The power supply module is connected to the main control module and is used to supply power to the function modules of the intelligent hair dryer. The detection module is connected to the main control module and is used to detect the humidity and temperature states of an object. The output module is connected to the main control module and is used to realize function output of the intelligent hair dryer, and the output module is controlled by the main control module, and the main control module is configured to obtain humidity state information and temperature state information of the object detected by the detection module, and adjust output parameters of the output module based on the humidity state information and the temperature state information. During operation, the detection module first monitors the humidity and temperature conditions of the object in real time, providing accurate data to the main control module. Based on this data, the main control module dynamically adjusts parameters such as airflow and temperature of the output module, ensuring fast drying while avoiding hair damage caused by overheating and effectively protecting hair health. Second, intelligent control reduces the user's need to manually adjust settings, improving user convenience. Furthermore, the power supply module ensures a stable power supply, ensuring stable operation for extended periods of time and improving the user experience. The overall design not only improves drying performance, but also reduces energy consumption through precise control.In short, the intelligent hair dryer offers significant improvements in hair care effectiveness, ease of operation and energy efficiency, meeting the needs of modern consumers for efficient, intelligent and healthy hair care devices. In order to more clearly explain the embodiments of the present invention or the technical solutions of the prior art, the drawings necessary for describing the embodiments or the prior art will be briefly described. The drawings described below are only shown in the embodiments of the present invention, and it is clear that those skilled in the art can obtain drawings of other embodiments based on these drawings without any creative efforts. [Brief explanation of the drawings]
[0019] [Figure 1] 1 is a schematic diagram of the configuration of an intelligent dryer with automatic hair care functions in an embodiment of the present application. [Figure 2] FIG. 2 is a connection schematic diagram of an intelligent dryer with automatic hair care functions in an embodiment of the present application. [Figure 3] FIG. 2 is a circuit diagram of the atomization unit in the embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION
[0020] To facilitate understanding of the present application, the present application will now be described more fully with reference to the associated drawings, in which examples of the present application are shown. However, the present application may be embodied in many different forms and is not limited to the examples set forth herein. Rather, the purpose of providing these examples is to provide a more thorough and complete disclosure of the present application.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular examples only and is not intended to be limiting of the application.
[0022] As can be understood, terms such as "first," "second," and the like may be used herein to describe various elements, but these elements are not limited by these terms. These terms are used only to distinguish a first element from another element. For example, a first resistor can be referred to as a second resistor, and similarly, a second resistor can be referred to as a first resistor, without departing from the scope of the present application. The first resistor and the second resistor are both resistors, but are not the same resistor.
[0023] As can be understood, "connection" in the following examples should be understood as "electrical connection", "communication connection", etc. when the connected circuits, modules, units, etc. have electrical signal or data transmission with each other.
[0024] As will be understood, "at least one" means one or more, and "plurality" means two or more. "At least some of the elements" means some or all of the elements.
[0025] As used herein, the singular forms "a," "an," and "said" can also include the plural forms unless the context clearly dictates otherwise. It should be understood that terms such as "comprise," "include," or "have" specify the presence of stated features, wholes, steps, operations, components, parts, or combinations thereof, but do not exclude the possible presence or addition of one or more other features, wholes, steps, operations, components, parts, or combinations thereof. Also, as used herein, the term "and / or" includes any and all combinations of the associated listed items.
[0026] In terms of related technologies, hair dryer technology has undergone further innovation, with the emergence of new features such as negative ion technology, constant temperature control, and intelligent sensing. Negative ion technology can reduce static electricity and make hair smoother. Constant temperature control uses sensors to monitor the temperature in real time, preventing damage to hair caused by overheating. Intelligent sensing technology automatically adjusts the dryer's operating conditions according to the ambient temperature and humidity, improving the user experience. As a common household appliance, hair dryers have evolved from simple structures to low-efficiency to high-efficiency. With technological advances, hair dryers have achieved significant improvements in performance, safety, and user experience, making them an indispensable product in modern life.
[0027] However, current hair dryers have the following technical problems: the mode of the conventional hair dryer is mechanical, and the hair care effect needs further optimization.
[0028] Based on the above problem, an embodiment of the present application provides an intelligent hair dryer with automatic hair care function, as shown in Figures 1 and 2. The embodiment of the present application provides an intelligent hair dryer with automatic hair care function, including a main control module 100, a power supply module 200, a detection module 300 and an output module 400.
[0029] The main control module 100 is used to realize the function control of the intelligent dryer.
[0030] A power supply module 200 is connected to the main control module 100 and is used to supply power to the functional modules of the intelligent dryer.
[0031] The detection module 300 is connected to the main control module 100 and is used to detect the humidity and temperature conditions of an object.
[0032] The output module 400 is connected to the main control module 100, and is used to realize the function output of the intelligent dryer. The output module 400 is controlled by the main control module 100, and the main control module 100 is configured to obtain humidity state information and temperature state information of the object detected by the detection module 300, and adjust the output parameters of the output module 400 according to the humidity state information and the temperature state information.
[0033] By providing the intelligent hair dryer with automatic hair care function, the following beneficial effects can be achieved. That is, the present application provides an intelligent hair dryer with automatic hair care function, which includes a main control module 100, a power supply module 200, a detection module 300, and an output module 400. The main control module 100 is used to realize function control of the intelligent hair dryer. The power supply module 200 is connected to the main control module 100 and is used to supply power to the function modules of the intelligent hair dryer. The detection module 300 is connected to the main control module 100 and is used to detect the humidity and temperature conditions of an object. The output module 400 is connected to the main control module 100 and is used to realize the functional output of the intelligent hair dryer. The output module 400 is controlled by the main control module 100, which is configured to obtain humidity and temperature status information of the object detected by the detection module 300 and adjust the output parameters of the output module 400 based on the humidity and temperature status information. During implementation, the detection module 300 first monitors the humidity and temperature status of the object in real time, providing accurate data to the main control module 100. Based on this data, the main control module 100 dynamically adjusts parameters such as airflow and temperature of the output module 400 to ensure fast drying of hair while avoiding hair damage caused by overheating and effectively protecting hair health. Second, intelligent control reduces the user's need to manually adjust settings, improving user convenience. Furthermore, the power supply module 200 ensures stable power supply, ensuring stable operation of the device over long periods of time and improving the user experience. The overall design not only improves dry performance, but also reduces energy consumption through precise control.In short, the intelligent hair dryer offers significant improvements in hair care effectiveness, ease of operation and energy efficiency, meeting the needs of modern consumers for efficient, intelligent and healthy hair care devices.
[0034] In one embodiment, the detection module 300 includes an intelligent video unit; The intelligent imaging unit is connected to the main control module 100 and is used to visually detect the object and obtain image data of the object, and the main control module 100 is further used to determine the humidity status information of the object based on a preset detection algorithm with the image data as an input.
[0035] In this embodiment, the detection module 300 includes an intelligent imaging unit, which visually detects hair, obtains image data, and realizes intelligent analysis of dryness and humidity, which helps to improve the matching degree between the output mode of the hair dryer and the actual dryness and humidity, and helps to improve the hair care effect of the hair dryer.
[0036] In one embodiment, the detection module 300 includes an infrared temperature sensor unit; The infrared temperature sensor unit is connected to the main control module 100 and is used to detect the infrared temperature of the object and obtain the infrared temperature detection data of the object, and the main control module 100 is further used to determine the humidity status information and the temperature status information of the object based on the preset detection algorithm with the image data and the infrared temperature detection data as inputs.
[0037] In this embodiment, the detection module 300 includes an infrared temperature sensor unit, which detects the infrared temperature of the hair, so that the output power of the heating function of the hair dryer can meet the actual temperature needs, thereby contributing to improving the hair care effect of the hair dryer.
[0038] In one embodiment, the detection module 300 includes an infrared distance sensor unit; The infrared distance sensor unit is connected to the main control module 100 and is used to perform infrared distance detection on the object and obtain infrared distance data between the object and the target device, and the main control module 100 is further used to adjust the output parameters of the output module 400 based on the infrared distance data.
[0039] In this embodiment, the detection module 300 includes an infrared distance sensor unit, which helps determine the usage distance between the dryer and the user through infrared distance measurement of the hair, thereby realizing control of the usage mode of the dryer, improving the hair care effect of the dryer, and improving the safety of using the dryer.
[0040] In one embodiment, the output module 400 includes a motor unit and a temperature control unit; The motor unit is connected to the main control module 100, and the motor unit is controlled by the main control module 100 and is used to output an airflow that conforms to the output parameters; The temperature control unit is connected to the main control module 100, and is controlled by the main control module 100 and is used to output thermal energy that meets the output parameters.
[0041] In one embodiment, the output module 400 further includes an ion output unit, The ion output unit is connected to the main control module 100, and is controlled by the main control module 100 and is used to generate high-pressure negative ions that meet the output parameters.
[0042] In this embodiment, the output module 400 of the dryer includes an ion output unit, which helps the dryer realize the function of outputting high-pressure negative ions, thereby improving the hair care effect of the dryer.
[0043] In one embodiment, the output module 400 further comprises a phototherapy unit; The light therapy unit is connected to the main control module 100, and the light therapy unit is controlled by the main control module 100 and is used to output light that conforms to the output parameters.
[0044] In this embodiment, the output module 400 of the dryer includes a phototherapy unit, which helps the dryer output controllable light to achieve the purpose of phototherapy, thereby improving the hair care effect of the dryer.
[0045] In one embodiment, the output module 400 further includes an atomization unit; The atomization unit is connected to the main control module 100, and the atomization unit is controlled by the main control module 100 and is used to generate atomized gas that meets the output parameters.
[0046] In this embodiment, the output module 400 of the dryer includes an atomization unit, which helps the dryer achieve the purpose of outputting atomized essential oil and improves the hair care effect of the dryer.
[0047] In one embodiment, as shown in FIG. 3, the atomization unit includes a liquid level detection unit; The liquid level detection unit is provided in a consumable supply storage device of the atomization unit and is used to detect the remaining amount of consumables in the consumable supply storage device.
[0048] In this embodiment, the atomization unit is provided with a liquid level detection unit, which contributes to realizing intelligent consumable management of the atomization unit and improving the user experience of the dryer.
[0049] In one embodiment, as shown in FIG. 3, the atomization unit includes a resonance unit, The resonating unit is connected to the main control module 100 and is used to control the vibration of the atomizer based on a preset pulse frequency to achieve atomization.
[0050] In this embodiment, a resonance unit is provided in the atomization unit, which contributes to realizing controllable essential oil atomization control by the resonance unit, and contributes to improving the flexibility and intelligence of dryer control.
[0051] In the most specific embodiment, the intelligent hair dryer with automatic hair care function provided by the present application is as shown in Figure 2. In the implementation process, after starting up, the AI camera and infrared distance sensor work simultaneously to obtain the current dry / wet state of the hair through an algorithm. At this time, the hair dryer works to blow hot air and simultaneously adjusts the air speed to the maximum, so as to quickly dry the hair. When the algorithm determines that the hair moisture content has fallen below 60% of its original level, it will release ions to care for the hair, while intelligently adjusting the temperature to maintain the hair temperature at 55-58°C and turning on the LED light function. When it detects that the hair moisture content has fallen below 30% of its original level, the dryer will begin to reduce the air speed, and at the same time, the intelligent constant temperature function will detect the hair temperature in real time, maintain it at 55°C, and release ions. At the same time, based on current AI data feedback, it will turn on two functions: different LED light irradiation and essential oil atomization. The high-speed vibration of the ceramic sheet will convert the essential oils into small molecules that are easily absorbed by the hair, providing hair care. When the algorithm identifies and detects that there is no damage to the hair, it will make a voice announcement that the function has ended and turn off the dryer.
[0052] During the hair drying process, users can adjust the wind speed and temperature by voice or button based on their needs. The voice also provides real-time alerts on the temperature of the user's hair based on the data transmitted and returned by the AI, preventing damage to the hair caused by excessive heat.
[0053] The main control module 100 is the core of this collection, and is connected to the external camera module, audio module, and WIFI module. It performs its own data processing on the data captured by the external camera and the infrared temperature and ranging data, and works with the AI model to adjust the real-time status of each operating module, acting as the core of intelligent adjustment.
[0054] As can be understood, the intelligent hair dryer with automatic hair care functions is not limited to the forms described in the above embodiments, and may have other forms, and any form that can achieve the function of intelligently improving hair care effects is included in the present application.
[0055] In the description herein, the terms "some embodiments," "other embodiments," and the like, mean that a particular feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present application. Note that these terms do not necessarily refer to the same embodiment or example, even if used in different contexts.
[0056] The technical features of the above-described embodiments can be combined in any manner. For the sake of brevity, not all combinations of the technical features in the above-described embodiments are described, but any combination of these technical features should be considered within the scope of the present specification unless there is a contradiction.
[0057] The above examples merely illustrate some embodiments of the present application, and although the descriptions are specific and detailed, they should not be construed as limiting the scope of protection of the invention. Those skilled in the art may make minor modifications and improvements without departing from the spirit of the present application, and all of these modifications and improvements are within the scope of protection of the invention. Therefore, the scope of protection of the invention should conform to the scope of the utility model registration claims. [Explanation of symbols]
[0058] 100···Main control module, 200···Power supply module, 300···Detection module, 400···Output module.
Claims
1. An intelligent hair dryer with an automatic hair care function, a main control module for realizing function control of the intelligent dryer; a power supply module connected to the main control module for supplying power to the functional modules of the intelligent dryer; a detection module connected to the main control module for detecting the humidity and temperature conditions of an object; an output module connected to the main control module and controlled by the main control module for realizing the function output of the intelligent dryer; The intelligent dryer with automatic hair care function is characterized in that the main control module is configured to obtain humidity state information and temperature state information of the object detected by the detection module, and adjust output parameters of the output module based on the humidity state information and the temperature state information.
2. The detection module includes: an intelligent vision unit connected to said main control module for visually detecting said object and acquiring image data of said object; 2. The intelligent hair dryer with automatic hair care function according to claim 1, wherein the main control module further determines the humidity status information of the object based on a preset detection algorithm with the image data as input.
3. The detection module includes: an infrared temperature sensor unit connected to the main control module for detecting an infrared temperature of the object and obtaining infrared temperature detection data of the object; 3. The intelligent hair dryer with automatic hair care function according to claim 2, wherein the main control module further determines the humidity status information and the temperature status information of the object based on the preset detection algorithm by inputting the image data and the infrared temperature detection data.
4. The detection module includes: an infrared distance sensor unit connected to the main control module for performing infrared distance detection on the object and obtaining infrared distance data between the object and a target device; The intelligent hair dryer with automatic hair care functions according to claim 1 , wherein the main control module further adjusts the output parameters of the output module according to the infrared ranging data.
5. The output module includes: a motor unit connected to the main control module and controlled by the main control module for outputting an airflow conforming to the output parameters; 2. The intelligent dryer with automatic hair care function according to claim 1, further comprising: a temperature control unit connected to the main control module and controlled by the main control module for outputting heat energy conforming to the output parameters.
6. The output module includes:
6. The intelligent hair dryer with automatic hair care functions as claimed in claim 5, further comprising an ion output unit connected to the main control module and controlled by the main control module for generating high-pressure negative ions conforming to the output parameters.
7. The output module includes: The intelligent dryer with automatic hair care function according to claim 5, further comprising a phototherapy unit connected to the main control module and controlled by the main control module for outputting light conforming to the output parameters.
8. The output module includes:
6. The intelligent hair dryer with automatic hair care functions according to claim 5, further comprising an atomization unit connected to the main control module and controlled by the main control module for generating atomized gas conforming to the output parameters.
9. The atomization unit includes:
9. The intelligent hair dryer with automatic hair care functions according to claim 8, further comprising a liquid level detection unit provided in the consumable storage device of the atomization unit for detecting the remaining amount of consumables in the consumable storage device.
10. The atomization unit includes: The intelligent hair dryer with automatic hair care function as claimed in claim 8, further comprising a resonance unit connected to the main control module for controlling the vibration of the atomizer based on a preset pulse frequency to achieve atomization.