CN218812752U - Ironing equipment - Google Patents

Ironing equipment Download PDF

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Publication number
CN218812752U
CN218812752U CN202223148917.5U CN202223148917U CN218812752U CN 218812752 U CN218812752 U CN 218812752U CN 202223148917 U CN202223148917 U CN 202223148917U CN 218812752 U CN218812752 U CN 218812752U
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CN
China
Prior art keywords
ironing
circuit board
lighting device
lighting
light
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Active
Application number
CN202223148917.5U
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Chinese (zh)
Inventor
王妙玉
李达球
陈南生
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Guangdong Hotata Technology Group Co Ltd
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Guangdong Hotata Technology Group Co Ltd
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Priority to CN202223148917.5U priority Critical patent/CN218812752U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

The application relates to electrical apparatus technical field especially relates to an ironing device, specifically includes: the illuminating device comprises an illuminating lamp and a signal acquisition unit; wherein, the signal acquisition unit controls the operating condition of light through gathering environmental information. The application provides an ironing device is provided with lighting device, and can gather environmental information through lighting device's signal acquisition unit to supply ironing device based on the operating condition of environmental information control light, realize the automation of light control, be favorable to improving ironing efficiency and ironing effect.

Description

Ironing equipment
Technical Field
The application relates to the technical field of electric appliances, in particular to ironing equipment.
Background
With the development of technology, people have higher and higher requirements on equipment adopted in living work and the experience degree is emphasized more and more. The existing ironing equipment does not generally have the lighting function, when a user uses the ironing equipment in a dark environment, the user is difficult to clearly see the position where the ironing object needs to be ironed or the effect generated by ironing, so that the user can easily iron the same position for multiple times or omit partial positions without ironing, the ironing efficiency of the operation is low, and the ironing effect is poor.
SUMMERY OF THE UTILITY MODEL
The present application aims to provide an ironing apparatus to solve at least one of the technical problems described above. The scheme provided by the embodiment of the application is as follows:
the application provides an ironing device, comprising:
a body;
the illuminating device is connected with the machine body and comprises an illuminating lamp and a signal acquisition unit; the signal acquisition unit is used for acquiring environmental information so that the ironing equipment can control the working state of the illuminating lamp.
In a possible embodiment, the lighting device further includes a first circuit board, and the lighting lamp and the signal acquisition unit are disposed on the first circuit board;
the first circuit board is connected with a second circuit board arranged in the machine body through a lead, and the second circuit board supplies power to the first circuit board; or the first circuit board is connected with a power supply unit arranged in the lighting device through a lead.
In a possible embodiment, the lighting device further comprises a first housing;
the lighting device is connected with the machine body through the first shell;
the first circuit board is arranged inside the first shell.
In a possible embodiment, the lighting device further comprises a second housing for covering the first housing;
the second shell is made of a light-transmitting material, so that light of the illuminating lamp penetrates through the second shell.
In a possible embodiment, the second housing defines a window, and the probe of the signal acquisition unit penetrates the second housing through the window to acquire the environmental information.
In a possible embodiment, the lighting device further includes a first control unit disposed on the first circuit board, and when the first circuit board is connected to the power supply unit, the first control unit controls the operating state of the lighting lamp based on the environmental information;
or the machine body further comprises a second control unit, the second control unit is arranged on the second circuit board, and when the first circuit board is connected with the second circuit board, the second control unit controls the working state of the illuminating lamp based on the environment information.
In a possible embodiment, the machine body includes a main body, an ironing head connected to one side of the main body, and a supporting unit connected to the other side of the main body;
the lighting device is detachably connected with or integrally formed with any one of the main body, the ironing head and the supporting unit;
wherein the lighting direction of the lighting device coincides with the steam spraying direction of the ironing head.
In a possible embodiment, the lighting device is connected to the body and comprises:
the lighting device is arranged along the outer contour of one side of the main body close to the ironing head.
In a possible embodiment, the machine body is provided with a first physical key for controlling the working state of the machine body and/or the lighting device;
or the like, or, alternatively,
the lighting device is provided with a second physical key used for controlling the working state of the lighting device.
In a possible embodiment, the signal acquisition unit comprises at least one of a distance sensor and a light sensor;
the distance sensor is used for acquiring the distance between the ironing equipment and an ironing object so that the ironing equipment can control the working state of the illuminating lamp based on the distance;
the light sensation sensor is used for collecting light sensation information of the environment where the ironing equipment is located, so that the ironing equipment can control the working state of the distance sensor and/or the illuminating lamp based on the light sensation information.
Compared with the prior art, the scheme of the application has the following advantages:
the ironing equipment that this application embodiment provided disposes the lighting device who is connected with the organism, and this lighting device includes light and signal acquisition unit, and the operating condition of signal acquisition unit can be through the environmental information control light of gathering, if the opening and closing of control light. On one hand, the ironing equipment is provided with the lighting device, so that the ironing efficiency and the ironing effect of the ironing equipment used by a user in a dark environment can be improved; on the other hand, the working state of the illuminating lamp is controlled by collecting the environmental information through the signal collecting unit, the automation of the control of the illuminating lamp can be realized, the switch of the illuminating lamp is not required to be manually controlled by a user, the electric energy consumed by the illuminating lamp can be effectively saved, and the improvement of the ironing efficiency and the user experience are facilitated.
Additional aspects and advantages of the present application will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the present application.
Drawings
The foregoing and/or additional aspects and advantages of the present application will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic perspective view of an ironing apparatus provided in an embodiment of the present application;
fig. 2 is a side view of an ironing apparatus provided in an embodiment of the present application;
fig. 3 is a schematic perspective view of another perspective view of an ironing apparatus provided in an embodiment of the present application;
FIG. 4 is an enlarged view of a portion of FIG. 3A;
fig. 5 is a schematic diagram of a layout structure of a first circuit board according to an embodiment of the present disclosure;
fig. 6 is a schematic view of another layout structure of a first circuit board according to an embodiment of the present application;
fig. 7 is a schematic view of a layout structure of another first circuit board according to an embodiment of the present application.
The reference numbers illustrate:
1-machine body, 11-main body, 12-ironing head, 121-steam hole, 13-supporting unit, 13 a-handle, 13 b-base, 14-first physical key;
2-lighting device, 21-lighting lamp, 22-signal acquisition unit, 22 a-distance sensor, 22 b-light sensor, 23-first circuit board, 24 first shell, 25-second shell and 251-window.
Detailed Description
Reference will now be made in detail to embodiments of the present application, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present application and are not to be construed as limiting the present application.
An embodiment of the present application provides an ironing apparatus, as shown in fig. 1-3, which includes a machine body 1 and a lighting device 2.
Specifically, as shown in fig. 4, the lighting device 2 includes a lighting lamp 21 and a signal acquisition unit 22. The signal collecting unit 22 can collect environmental information of the environment where the ironing device is located, so as to control the working state of the illuminating lamp 21 through the environmental information.
The illuminating lamp 21 is an illuminating element, and the operating state thereof may include an on state and an off state, and the illuminating lamp is in the on state when being powered on and has a light emitting effect. In one example, the illumination lamp 21 can be broadly understood as an electric lamp. Considering that the ironing device belongs to a relatively small household appliance, and the overall size of the lighting device arranged on the ironing device is relatively small, therefore, the LED lamp can be adopted as the lighting lamp 21 in the embodiment of the present application.
The signal acquisition unit 22 may be formed of one or more sensors. In an example, the signal acquisition unit 22 may include at least one of a distance sensor 22a and a light-sensitive sensor 22 b.
The distance sensor 22a, also called displacement sensor, is used for sensing the distance between it and the ironing object, so that the ironing apparatus can control the working state of the illumination lamp 21 by the distance.
The photo sensor 22b can generate a photoelectric effect after being irradiated by visible light in an environment, and can convert the generated optical signal into an electrical signal for outputting. In the present embodiment, the light sensor 22b may be used to measure the intensity of light (light information) for the ironing device to control the operation state of the illumination lamp 21 and/or the distance sensor 22a through the measurement result of light.
The following describes a specific configuration of the lighting device 2.
In a possible example, as shown in fig. 4, the lighting device 2 further includes a first circuit board 23, and the lighting lamp 21 and the signal collecting unit 22 may be disposed on the first circuit board 23. Alternatively, fig. 5-7 show three possible layout structures of the first circuit board 23, and it is understood that the layout structures shown in the drawings are only some possible layout examples, which can also be adjusted according to different requirements, and the embodiment of the present application is not limited thereto.
From the perspective of power supply and signal processing, the embodiment of the present application provides the following two ways for the implementation content of the first circuit board 23:
the first method is as follows: the first circuit board 23 is connected to a second circuit board (not shown) provided in the body 1 by a wire, and supplies power to the first circuit board 23 through the second circuit board.
In this way, the body 1 may further include a second control unit disposed on the second circuit board. Specifically, signal transmission can be performed between the first circuit board 23 and the second circuit board, the environmental information collected by the signal collection unit 22 on the first circuit board 23 can be transmitted to the second circuit board, and a second control unit arranged on the second circuit board generates an instruction for the environmental information and sends the instruction to the first circuit board 23, so as to control the working state of the illumination lamp 21. The second control Unit may include an MCU (micro controller Unit).
The second method comprises the following steps: the lighting device 2 further includes a power supply unit (not shown), and the first circuit board 23 is connected to the power supply unit provided in the lighting device 2 through a wire.
In this way, the lighting device 2 may further include a first control unit disposed on the first circuit board 23, and the environmental information collected by the signal collection unit 22 may be transmitted to the first control unit, processed by the first control unit, and generate an instruction for controlling the operating state of the lighting lamp 21.
Optionally, the first control unit may comprise an MCU. The power supply unit may be composed of a battery (e.g., a button cell).
In the embodiment of the present application, implementation of the first mode may involve interaction between the machine body 1 and the lighting device 2, that is, control of the lighting lamp 21 is implemented depending on the machine body 1; the second embodiment may be implemented by the lighting device 2 independently, that is, the lighting device 2 may be a lighting component existing independently of the body 1. The first Circuit Board 23 and the second Circuit Board may be PCB boards (Printed Circuit boards).
In a possible embodiment, as shown in fig. 4, the lighting device 2 further includes a first housing 24, and the first housing 24 may be used for loading the first circuit board 23, that is, the first circuit board 23 may be disposed inside the first housing 24. The lighting device 2 may be connected to the body 1 through the first housing 24.
Accordingly, the lighting device 2 may further include a second housing 25 for covering the first housing 24, and the lighting device 2 may be as shown in fig. 1-3 as a whole when covered. The second housing 25 can be made of a light-transmitting material, so that light of the illumination lamp 21 arranged in the first housing 24 can transmit through the second housing 25. Alternatively, the light transmissive material may be glass, plexiglass, acrylic, a solar panel, or the like. Alternatively, the first housing 24 and the second housing 25 may be detachably connected by a snap, a thread, a screw, or the like.
In addition, in order to improve the accuracy and sensitivity of the environmental signal collected by the signal collecting unit 22, a window 251 may be formed on the second housing 25, and the window 251 is matched with the probe of the signal collecting unit 22, so that the probe can pass through the second housing 25 through the window 251 to collect the environmental information. As shown in fig. 4, assuming that the signal collecting unit 22 only includes the distance sensor 22a at this time, the probe of the distance sensor 22a can collect the environmental information (the distance between the ironing apparatus and the ironing object) through the window 251 through the second housing 25.
Optionally, the lighting device 2 may be provided with a second physical key (not shown) for controlling the working state of the lighting device 2, for example, if the user can manually turn on the lighting device 2 through the second physical key, when the lighting device 2 is in the on state, the signal collecting unit 22 may collect the environmental information; the user may also manually turn off the lighting device 2 through the second physical key, and when the lighting device 2 is in the off state, the signal collecting unit 22 cannot collect the environmental information. The setting of this second physical button can keep the operation of user's manual control lighting device 2 on the basis of automated control light 21, improves ironing device's user experience.
The following describes a specific structure of the machine body 1.
In a possible embodiment, the machine body 1 can comprise, in addition to the second circuit board described above, a main body 11, an ironing head 12 and a supporting unit 13.
Wherein, one side of the main body 11 is connected with an ironing head 12, a steam hole 121 is arranged on the ironing head 12, and steam generated by the ironing device can be sprayed outwards through the steam hole 121.
Wherein the other side of the main body 11 is connected with a supporting unit 13. It is understood that the shape of the main body 11 is not limited in the present embodiment, and the main body 11 may include a plurality of sides, another side being defined herein to indicate a position where the supporting unit 13 is arranged differently from the ironing head 12.
When the ironing device is a hand-held device, as shown in fig. 1-3, the supporting unit 13 may comprise a handle 13a and a base 13b, the handle 13a being directly connected with the main body 11, and the base 13b being indirectly connected with the main body 11 via the handle 13 a.
When the ironing device is a vertical ironing device, the supporting unit 13 may include a hanging assembly and a hand-held assembly, which may be laid out with reference to the related art, which is not limited in this application.
It will be appreciated that the ironing device body 1 is also provided with a steam generator and a water tank, wherein the steam generator can be internally provided on the main body 11, the water tank can be provided inside the main body 11 and/or the supporting unit 13, or the water tank can be connected to the other end of the main body 11 remote from the ironing head 12. Regarding the arrangement structure of the steam generator and the water tank, reference may be made to the related art, and the present application does not limit this.
Optionally, the machine body 1 may also be provided with a first physical button 14, and the first physical button 14 may be used to control the overall working state of the ironing apparatus, that is, to synchronously control the working states of the machine body 1 and the lighting device 2; it may be used only for controlling the operating state of the machine body 1, or may be used only for controlling the operating state of the lighting device 2.
The connection relationship between the main body 1 and the lighting device 2 will be described below.
In a possible embodiment, the lighting device 2 may be detachably connected or integrally formed with any one of the main body 11, the ironing head 12 and the supporting unit 13 on the machine body 1 through the first housing 24. The detachable connection mode can be a buckle connection mode, a threaded connection mode, a screw connection mode and the like. It will be appreciated that the direction of illumination of the lighting means 2 coincides with the steam injection direction of the ironing head 12.
Alternatively, in the way in which the lighting means 2 are connected to the main body 11, as shown in fig. 1-3, the lighting means 2 may be arranged along the outer contour of the main body 11 on the side close to the ironing head 12.
The following is a description of the working principle of the ironing device provided in the embodiment of the present application.
In a possible embodiment, if the signal collecting unit 22 includes the distance sensor 22a, the operation state of the illumination lamp 21 controlled by the distance may include: if the distance is less than or equal to a preset first threshold value, the lighting lamp 21 is powered on, and the lighting lamp 21 is controlled to be in an on state; if the illumination lamp 21 is in the on state and the distance is greater than the preset second threshold, the power supply of the illumination lamp 21 is cut off after the preset first duration, and the illumination lamp 21 is controlled to be in the off state after the preset first duration.
The first threshold and the second threshold may be the same or different, and when the first threshold and the second threshold are the same, the distance indicated by the preset threshold is a control critical point of the switch of the illumination lamp 21.
In a possible embodiment, if the signal collecting unit 22 includes the light sensor 22b, the controlling the operation state of the illumination lamp 21 by the light information may include: if the brightness indicated by the light sensation information is less than or equal to a preset third threshold value, the illuminating lamp 21 is powered on, and the illuminating lamp 21 is controlled to be in an on state; if the illumination lamp 21 is in the on state and the brightness indicated by the light sensation information is greater than the preset fourth threshold, the power supply of the illumination lamp 21 is cut off after the preset second time period, and the illumination lamp 21 is controlled to be in the off state after the preset second time period.
The third threshold and the fourth threshold may be the same or different, and when the third threshold and the fourth threshold are the same, the brightness indicated by the preset threshold is a control critical point of the switch of the illumination lamp 21.
The controlling the operating state of the distance sensor 22a by the light sensation information may include: if the brightness indicated by the light sensation information is less than or equal to a preset fifth threshold value, controlling the distance sensor 22a to acquire the distance between the ironing equipment and the ironing object; and if the brightness indicated by the light sensation information is greater than the preset sixth threshold, controlling the distance sensor 22a to stop acquiring the information after a preset third time.
The fifth threshold and the sixth threshold may be the same or different, and when the fifth threshold and the sixth threshold are the same, the brightness indicated by the preset threshold is a control critical point of the switch of the distance sensor 22 a.
Optionally, in the above embodiment, the preset first time period, the preset second time period, and the preset third time period may all be time periods greater than or equal to 0min, that is, when the preset time period is 0min, no processing of delaying power down is performed.
In the embodiment of the present application, considering that the side of the ironing apparatus facing the ironing object is generally in a non-planar structure, the distance collected by the distance sensor 22a is essentially the distance between the probe of the distance sensor 22a and the ironing object, and on this basis, considering that the lighting device 2 may be arranged at various positions of the machine body 1, the distance difference obtained by subtracting the original distance from the distance actually collected by the distance sensor 22a can be used as the distance between the ironing apparatus and the ironing object. Wherein the original distance is the distance between the probe of the distance sensor 22a and the ironing head 12; as shown in fig. 1, when the lighting arrangement 2 is arranged along the outer contour of the main body 11 on the side close to the ironing head 12, the original distance may be determined based on the thickness of the ironing head 12.
The embodiment of the application sets up the outage of postponing and can effectively avoid cutting off the power supply to illumination lamp 21 at once, avoids ironing the closing of illumination lamp 21 that the object leads to because of the conversion among the user operation process ironing direction or removal, avoids carrying out frequent power supply and outage to illumination lamp 21, can effectively prolong illumination lamp 21's life-span to and avoid the light scintillation problem that the frequent switch of illumination lamp 21 brought, be favorable to improving user experience.
In order to better illustrate the ironing device provided in the embodiments of the present application, some possible application examples are given below.
Application example one
The implementation foundation is as follows: the signal acquisition unit 22 comprises a distance sensor 22a, the first circuit board 23 is powered by the second circuit board, and the working state of the machine body 1 is controlled through the first physical key 14.
When a user uses an ironing device to iron a shirt in a dark environment, the first physical button 14 is used to control the machine body 1 to be in an open state, and at this time, the second circuit board arranged in the machine body 1 starts to supply power to the first circuit board 23, so that the distance sensor 22a starts to acquire the distance between the ironing device and the shirt.
When the user holds the ironing device to gradually approach the shirt, if the distance sensor 22a detects that the distance between the ironing device and the shirt is smaller than the preset first threshold value, the distance sensor 22a feeds the distance back to the second control unit of the second circuit board, and the second control unit of the second circuit board sends an instruction according to the distance to energize the illuminating lamp 21, so that the illuminating lamp 21 is started. On this basis, when the user holds the ironing device and gradually gets away from the shirt, if the distance sensor 22a detects that the distance between the ironing device and the shirt is greater than the preset second threshold value, the distance sensor 22a feeds the distance back to the second control unit of the second circuit board, and the second control unit of the second circuit board sends an instruction according to the distance to delay the power-off of the illuminating lamp 21, so that the illuminating lamp 21 is turned off in a delayed manner.
Application example two
The implementation foundation is as follows: the signal acquisition unit 22 includes a light sensor 22b, the first circuit board 23 is powered by a power supply unit arranged in the lighting device 2, and the working state of the lighting device 2 is controlled by the second physical key.
When a user senses that the environment is dark when using the ironing device, the lighting device 2 can be controlled to be in the on state through the second physical key, and the power supply unit arranged in the lighting device 2 supplies power to the first circuit board 23 at the moment, so that the light sensor 22b starts to acquire light sensing information of the environment.
If the light sensor 22b detects that the brightness of the environment (which may use lumens as a measure of brightness, the brighter the light source, the more lumens corresponding to the brighter the light source) is less than the preset third threshold, the brightness may be fed back to the first control unit of the first circuit board 23, and the first control unit of the first circuit board 23 sends an instruction to instruct the illumination lamp 21 to be powered, where the illumination lamp 21 is in an on state.
When the user finishes using the ironing apparatus and the lighting lamp 21 is not controlled to be turned off by the light sensor 22b, the user can control the whole of the lighting device 2 to be in a turned-off state by the second physical key.
Application example three
The implementation foundation is as follows: the signal acquisition unit 22 comprises a distance sensor 22a and a light sensor 22b, the first circuit board 23 is powered by the second circuit board, and the working state of the lighting device 2 is controlled through the first physical key 14.
When a user finds that the ironing effect cannot be clearly seen due to the fact that the natural color is gradually dark in the process that the user uses the ironing device, the user can control the lighting device 2 to be in the on state through the first physical key 14, and at the moment, the second circuit board arranged in the machine body 1 supplies power to the first circuit board 23, so that the light sensation sensor 22b starts to collect light sensation information of the environment where the user is located.
If the light sensor 22b detects that the brightness of the environment is smaller than the preset fifth threshold, the light sensor 22b feeds the brightness back to the second control unit of the second circuit board, and the second control unit of the second circuit board sends an instruction according to the brightness to control the distance sensor 22a to start to collect the distance between the ironing equipment and the ironing object.
If the distance sensor 22a detects that the distance between the ironing device and the ironing device is smaller than a preset first threshold value, the distance sensor 22a feeds the distance back to the second control unit of the second circuit board, and the second control unit of the second circuit board sends an instruction according to the distance to energize the illuminating lamp 21, so that the illuminating lamp 21 is started. On this basis, if the distance sensor 22a detects that the distance between the ironing device and the ironing object is greater than a preset second threshold value, the distance sensor 22a feeds the distance back to the second control unit of the second circuit board, and the second control unit of the second circuit board sends an instruction according to the distance to delay the power off of the illuminating lamp 21, so that the illuminating lamp 21 is turned off in a delayed manner.
The foregoing is only a partial embodiment of the present application, and it should be noted that, for those skilled in the art, several modifications and decorations can be made without departing from the principle of the present application, and these modifications and decorations should also be regarded as the protection scope of the present application.

Claims (10)

1. Ironing apparatus, characterized in that it comprises:
a body;
the illuminating device is connected with the machine body and comprises an illuminating lamp and a signal acquisition unit; the signal acquisition unit is used for acquiring environmental information so that the ironing equipment can control the working state of the illuminating lamp.
2. The ironing device according to claim 1, characterized in that said lighting means further comprise a first circuit board, said lighting lamp and said signal acquisition unit being arranged on said first circuit board;
the first circuit board is connected with a second circuit board arranged in the machine body through a lead, and power is supplied to the first circuit board through the second circuit board; or the first circuit board is connected with a power supply unit arranged in the lighting device through a lead.
3. The ironing appliance according to claim 2, characterized in that said lighting means further comprise a first housing;
the lighting device is connected with the machine body through the first shell;
the first circuit board is arranged inside the first shell.
4. The ironing apparatus according to claim 3, characterized in that said lighting means further comprise a second housing for covering said first housing;
the second shell is made of a light-transmitting material, so that light of the illuminating lamp penetrates through the second shell.
5. The ironing device according to claim 4, characterized in that the second housing is provided with a window, and the probe of the signal acquisition unit passes through the second housing through the window to acquire environmental information.
6. Ironing device according to any one of the claims 2-4,
the lighting device also comprises a first control unit, the first control unit is arranged on the first circuit board, and when the first circuit board is connected with the power supply unit, the first control unit controls the working state of the lighting lamp based on the environmental information;
or the machine body further comprises a second control unit, the second control unit is arranged on the second circuit board, and when the first circuit board is connected with the second circuit board, the second control unit controls the working state of the illuminating lamp based on the environment information.
7. The ironing apparatus of claim 1, wherein the machine body comprises a main body, an ironing head connected to one side of the main body, and a supporting unit connected to the other side of the main body;
the lighting device is detachably connected with or integrally formed with any one of the main body, the ironing head and the supporting unit;
wherein the lighting direction of the lighting device coincides with the steam spraying direction of the ironing head.
8. Ironing apparatus according to claim 7, characterised in that said lighting means are associated with said main body and comprise:
the lighting device is arranged along the outer contour of one side of the main body close to the ironing head.
9. Ironing device according to claim 1,
the machine body is provided with a first physical key used for controlling the working state of the machine body and/or the lighting device;
or the like, or, alternatively,
the lighting device is provided with a second physical key used for controlling the working state of the lighting device.
10. The ironing apparatus according to claim 1, characterized in that said signal acquisition unit comprises at least one of a distance sensor and a light-sensitive sensor;
the distance sensor is used for acquiring the distance between the ironing equipment and an ironing object so that the ironing equipment can control the working state of the illuminating lamp based on the distance;
the light sensation sensor is used for collecting light sensation information of the environment where the ironing equipment is located, so that the ironing equipment can control the working state of the distance sensor and/or the illuminating lamp based on the light sensation information.
CN202223148917.5U 2022-11-25 2022-11-25 Ironing equipment Active CN218812752U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223148917.5U CN218812752U (en) 2022-11-25 2022-11-25 Ironing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223148917.5U CN218812752U (en) 2022-11-25 2022-11-25 Ironing equipment

Publications (1)

Publication Number Publication Date
CN218812752U true CN218812752U (en) 2023-04-07

Family

ID=87262394

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223148917.5U Active CN218812752U (en) 2022-11-25 2022-11-25 Ironing equipment

Country Status (1)

Country Link
CN (1) CN218812752U (en)

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