CN209958086U - Display module and clothes treatment device - Google Patents

Display module and clothes treatment device Download PDF

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Publication number
CN209958086U
CN209958086U CN201920345727.1U CN201920345727U CN209958086U CN 209958086 U CN209958086 U CN 209958086U CN 201920345727 U CN201920345727 U CN 201920345727U CN 209958086 U CN209958086 U CN 209958086U
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China
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light
color
display
area
light source
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CN201920345727.1U
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Chinese (zh)
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牟秋启
王桑龙
巫志远
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Wuxi Little Swan Electric Co Ltd
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Wuxi Little Swan Electric Co Ltd
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Abstract

The utility model discloses a display module and clothing processing apparatus, the display module includes: the light source assembly comprises a first light source and a second light source, the first light source is used for emitting light rays with a first color, the second light source is used for emitting light rays with a second color, and at least one of the first light source and the second light source is also used for emitting white light rays; the display film piece shows that the film piece has first region, second region and third region, and first colour light can see through first region and can not see through the second region, and second colour light can see through the second region and can not see through first region, and first colour light and second colour light all are suitable for seeing through the third region. According to the utility model discloses a display module can show different demonstration patterns on same demonstration position, can increase display module's display state from this, makes it have the diversification.

Description

Display module and clothes treatment device
Technical Field
The utility model belongs to the technical field of life electrical apparatus technique and specifically relates to a display module and clothing processing apparatus are related to.
Background
The display of the washing machine is basically divided into a digital tube, an LED, a liquid crystal screen, a touch screen and the like. The most used at present are the LED and the nixie tube types, which are cheap, single display and no interaction with the user. The liquid crystal screen and the touch screen have rich display contents and can be used as a guide type interface, but the price is high, and the reduction of the product cost is not facilitated.
When the LED display is used on the washing machine, generally, only one content can be displayed in one position, and when the machine has more operation functions, the interface is very complicated, so that the operation of a user is not facilitated. In the related art, a display structure that displays a plurality of contents at one position requires a plurality of laminated filter layers, thereby resulting in a complicated display structure and high manufacturing cost.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least. Therefore, the utility model provides a display module, display module simple structure, the manifold advantage of display effect.
The utility model discloses still provide a clothing processing apparatus who has above-mentioned display module.
According to the utility model discloses display module of first aspect includes: a light source assembly comprising a first light source for emitting light of a first color and a second light source for emitting light of a second color, at least one of the first and second light sources further for emitting white light; the display film comprises a first area, a second area and a third area, the first color light can penetrate through the first area and cannot penetrate through the second area, the second color light can penetrate through the second area and cannot penetrate through the first area, and the first color light and the second color light are suitable for penetrating through the third area.
According to the utility model discloses a display module through utilizing the light that can send specific colour and set up the region that different colour light can see through on showing the diaphragm, can show different demonstration patterns on same demonstration position, not only can increase display module's display state from this, makes it have the diversification, can also simplify display module's structure, convenience of customers operation. And, according to the utility model discloses an embodiment sets up different light transmissivity through the subregion and realizes that many pattern display can show and simplify the display module structure, reduces the cost of manufacture through showing on the diaphragm.
In some embodiments, the first color light is orange light and the second color light is blue light.
In some embodiments, the second light source is configured to emit the blue light rays and the white light rays simultaneously.
In some embodiments, the first light source emits the first color light and the white light at the same time, and the brightness of the white light is lower than that of the first color light; and/or the second light source emits the second color light and the white light at the same time, and the brightness of the white light is lower than that of the second color light.
In some embodiments, the first light source is an LED lamp and the second light source is an LED lamp.
In some embodiments, the first color light and the white light are emitted by the same LED lamp, and/or the second color light and the white light are emitted by the same LED lamp.
In some embodiments, the display film further comprises a fourth region through which none of the first color light, the second color light, and the white light is transmitted.
In some embodiments, the display film includes a light-transmitting film layer and a coating layer, the coating layer is coated on the surface of the light-transmitting film layer, the light-transmitting film layer is coated with a first color coating layer in the first area, and the light-transmitting film layer is coated with a second color coating layer in the second area.
In some embodiments, the display film is transparent in the third area, and the light-transmissive film layer is coated with a transparent coating layer in the third area.
In some embodiments, the light transmissive film layer is coated with an opaque coating in the fourth region.
In some embodiments, the display assembly further comprises a controller connected to the light source assembly to control whether the light source assembly emits the first color light, the second color light, or the white light.
In some embodiments, the display assembly further comprises a circuit board, and the light source assembly and the controller are both disposed on the circuit board.
In some embodiments, the display assembly is provided with a key, the key being non-overlapping with both the first region and the second region.
In some embodiments, the display assembly is provided with a key, the key overlapping the display membrane.
In some embodiments, the display assembly further comprises: and the light shielding plate is arranged on one side of the display diaphragm, which deviates from the light source component.
According to the utility model discloses clothing processing apparatus includes: a housing having a laundry treating chamber therein; the display assembly is embedded in the shell and is the display assembly.
According to the utility model discloses clothing processing apparatus through utilizing the light that can send specific colour and set up the region that different colour light can see through on showing the diaphragm, can show different demonstration patterns on same display position, not only can increase display module's display state from this, makes it have the diversification, can also simplify display module's structure, convenience of customers operation.
Additional aspects and advantages of the invention 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 invention.
Drawings
Fig. 1 is a schematic structural diagram of a display module according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a display membrane of a display module according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a display membrane of a display module according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a display membrane of a display module according to an embodiment of the present invention;
fig. 5 is a pattern of a display area of a display assembly according to an embodiment of the present invention;
fig. 6 is a pattern of a display area of a display assembly according to an embodiment of the present invention;
fig. 7 is a schematic structural diagram of a display module according to an embodiment of the present invention.
Reference numerals:
the display module (100) is shown,
a circuit board 110, a first light source 111, a second light source 112,
the display membrane 120, the first area 121, the second area 122, the third area 123, the fourth area 129,
a key 126, a first graphic 127, a second graphic 128,
the light shielding plate 130.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like 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 and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
A laundry treating apparatus and a display assembly 100 of the laundry treating apparatus according to embodiments of the present invention will be described with reference to fig. 1 to 7. It should be noted that the laundry treating apparatus may be a washing machine, a dryer, a washing and drying machine, or the like for cleaning or drying laundry.
As shown in fig. 1, the display assembly 100 of the laundry treating apparatus according to the embodiment of the present invention includes a light source assembly and a display membrane 120.
Specifically, the light source assembly includes a first light source 111 and a second light source 112, the first light source 111 is configured to emit light of a first color, the second light source 112 is configured to emit light of a second color, and at least one of the first light source 111 and the second light source 112 is further configured to emit white light. That is, the first light source 111 may emit only the first color light, and the first light source 111 may also emit the first color light and the white light; likewise, the second light source 112 may emit only the second color light, and the second light source 112 may also emit the second color light and the white light.
The display film 120 has a first area 121, a second area 122 and a third area 123, the first color light can penetrate the first area 121 and cannot penetrate the second area 122, the second color light can penetrate the second area 122 and cannot penetrate the first area 121, the first color light and the second color light are both suitable for penetrating the third area 123, the first color light in the white light can penetrate the first area 121, the second color light in the white light can penetrate the second area 122, and the white light can penetrate the third area 123. That is, the white light ray passes through the first region and leaves only the first color light, the white light ray passes through the second region and leaves only the second color light, and then the white light ray can completely pass through the third region.
The first light source 111 emits a first color light with a wavelength within a first range, the first color light can transmit the first area 121, the first area 121 is illuminated at the time, and a user can recognize an operation state of the laundry treatment apparatus through the color of the first area 121, whether the first area is illuminated, the shape of the illuminated area, and the brightness of the first area 121.
When the first light source 111 emits the white light and the first color light at the same time, the color of the light emitted by the first light source 111 is the mixed color of the first color light and the white light, that is, the mixing of the white light changes the original color of the first color light, and at this time, the first area 121 illuminated by the light can present a color different from the first color light, so that not only the variety of the display assembly 100 can be increased, but also the displayed pattern can be beautified.
Likewise, the second light source 112 may emit light having a second color with a wavelength within a second range of values, the second region 122 may be illuminated when the light having the second color passes through the second region 122, and a user may recognize an operation state of the laundry treating apparatus through the color of the second region 122, whether the light is illuminated, the shape of the illuminated region, and the brightness of the second region 122.
When the second light source 112 emits the white light and the second color light at the same time, the color of the light emitted by the second light source 112 is the mixed color of the second color light and the white light, that is, the mixing of the white light changes the original color of the second color light, and at this time, the second area 122 illuminated by the light may present a color different from the second color light, so that not only the variety of the display assembly 100 may be increased, but also the displayed pattern may be beautified.
It is understood that the present invention is not limited thereto, and the first light source 111 and the second light source 112 may be a same light source, which has the function of emitting the first color light, the second color light and the white light, for example, the light source assembly includes a light source and a light modulator, and the light modulator is used for adjusting the color of the light source, i.e. the light modulator can be used for adjusting the color of the light emitted by the light source.
By disposing different color regions on the same display film 120, light beams with different wavelength bands can pass through the corresponding color regions, and then the display assembly 100 can have more display patterns by using the combination and matching of the different color regions. Therefore, on the basis of not increasing the parts of the display assembly 100, the display diversity of the display assembly 100 is increased, so that the structure of the display assembly 100 is simpler and more reasonable.
In addition, at least one of the first region 121 and the second region 122 may cooperate with the third region 123 and configure a different display pattern, so that the display assembly 100 may display more patterns. It is understood that, compared with the related art, the display assembly 100 of the embodiment of the present application may present more colors, and the different light-transmitting regions cooperate with the third region 123 to form more pattern combinations than the display assembly 100 having a single color or a single light source, so that the display diversity of the display assembly 100 may be increased.
For convenience of understanding, as shown in fig. 2 to fig. 5, the display state of the display device 100 is described by taking the first color light as an orange light, the second color light as a blue light, the first region 121 as a region capable of transmitting the orange light, the second region 122 as a region capable of transmitting the blue light, and both the orange light and the blue light as examples.
When the light source emits orange light and does not emit blue light and white light, as shown in fig. 3 and 5, the orange light can transmit the first area 121 and the third area 123 (as the area circled by the solid line in fig. 5), and the display assembly 100 can display a first graphic 127 similar to an "i" character pattern; when the light source emits blue light and does not emit orange light and white light, as shown in fig. 2 and 6, the blue light can transmit the second region 122 and the third region 123 (as the region circled by the solid line in fig. 6), and the display assembly 100 can display a second graphic 128 similar to a "soil" pattern.
When the light source emits blue light and white light, but does not emit orange light, referring to fig. 2 and 6, the blue light can transmit the second region 122 and the third region 123 (as the region circled by the solid line in fig. 6), the white light can transmit the third region 123, and the blue light of the white light can transmit the second region 122 and the third region 123, at this time, the display assembly 100 can display the second pattern 128, which is similar to the pattern of the "earth" word, and at this time, the color displayed by the display assembly 100 is a mixed color of white and blue (e.g., ice blue).
It is understood that when the relative brightness of the white light and the blue light is different, the color presented by the mixed white light and blue light is also different, and therefore, the relative brightness between the white light and the blue light can be adjusted according to actual needs.
According to the utility model discloses clothes treatment device's display module 100 through utilizing the light that can send specific colour and set up the region that different colour light can see through on showing diaphragm 120, can show different display pattern on same display position, not only can increase display module 100's display state from this, makes it have the diversification, can also simplify display module 100's structure, convenience of customers operation. Furthermore, according to the embodiment of the present invention, the display module 100 structure can be significantly simplified and the manufacturing cost can be reduced by displaying the different light transmission properties of the display film 120 through the partitions.
In an optional embodiment of the present invention, the first color light is orange light, and the second color light is blue light. Further, the second light source 112 is configured to emit blue light and white light at the same time, for example, as shown in fig. 4, the second light source 112 emits blue light and white light at the same time so that the mixed light emitted by the second light source 112 is iced blue. Therefore, the color of the pattern displayed on the display film 120 can be clearer and more beautiful.
In some examples, the first light source 111 may emit the first color light and the white light at the same time, and the luminance of the white light is lower than the luminance of the first color light; and/or, the second light source 112 may emit the second color light and the white light at the same time, and the brightness of the white light is lower than that of the second color light. In this way, the white light can be used to adjust the color of either the first color light or the second color light without excessively masking the color of both the first color light and the second color light. That is, the first color light and the second color light can be made to remain colored light after the white light is mixed, and do not become nearly white.
In some embodiments, the first light source 11111 may be an LED lamp. For example, the first light source 11111 may be an LED lamp of a first color. To facilitate installation of the first light source 111, in some embodiments, the LED lamp of the first light source 111 may be a tab LED lamp. According to some embodiments of the present invention, the second light source 112 may be an LED lamp. For example, second light source 112 may be a second color LED lamp. Likewise, to facilitate installation of second light source 112, in some embodiments, the LED lamp of second light source 112 may be a tab LED lamp.
In some examples, when the first light source 111 is used to emit first color light and white light, the first color light and the white light may be emitted by the same LED lamp. In other words, the LED lamp of the first light source 111 is an LED lamp that emits the first color light and the white light at the same time, and the brightness of the white light may be lower than that of the first color light. Of course, the present invention is not limited thereto, and the first light source 111 may also include two LED lamps, one of which is used for emitting the first color light and the other is used for emitting the white light.
Likewise, when second light source 112 is used to emit light of a second color and white light, the light of the second color and the white light may be emitted by the same LED lamp. In other words, the LED lamp of the second light source 112 is an LED lamp that emits the second color light and the white light at the same time, and the brightness of the white light may be lower than that of the second color light. Of course, the present invention is not limited thereto, and the second light source 112 may also include two LED lamps, one of which is used for emitting the second color light and the other is used for emitting the white light.
According to some embodiments of the invention, the first color light wavelength is within a first numerical range; the second color light wavelength is within a second range of values. In other words, light with a wavelength within a first range of values is suitable to transmit through the first region 121; light having a wavelength within a second range of values is adapted to be transmitted through the second region 122. The wavelength range of the light can be used to define the color of the display pattern presented by the display assembly 100, and the color can be used to distinguish different display states. Further, the first range of values does not overlap with the second range of values. Therefore, the color of light emitted by the light source component can be controlled by utilizing the wavelength, so that the misjudgment of a user caused by the similarity or similarity of the two colors can be avoided, and the user can conveniently identify the color and judge the display pattern.
For example, the first light source 111 is an orange lamp capable of emitting orange light, the second light source 112 is a blue lamp capable of emitting blue light, the wavelength of the orange light is within a first numerical range, the wavelength of the blue light is within a second numerical range, and since the first numerical range and the second numerical range are not overlapped and the wavelength interval of the light of the two colors is large, the color distinction is obvious, thereby facilitating the user to distinguish colors. It should be noted that the light color of the first light source 111 and the light color of the second light source 112 are not limited to this, for example, the light color of the first light source 111 may also be red, the light color of the second light source 112 may be blue, and for example, the light color of the first light source 111 may also be red, and the light color of the second light source 112 may be green.
According to some embodiments of the present invention, the display film 120 further comprises a fourth area 129, and the fourth area 129 is not penetrated by the first color light, the second color light and the white light. Thereby facilitating control of the shape of the figure presented by the first 121, second 122 and third 123 regions.
According to some embodiments of the present invention, the first area 121 may be coated with a first color ink layer. According to some embodiments of the present invention, second region 122 may be coated with a second color ink layer. The coating of the ink material has the advantages of low cost, simple coating process and high stability.
According to some embodiments of the present invention, the third area 123 may be a transparent area, so that the transmittance of the third area 123 may be improved, and the display module 100 may clearly display the pattern. According to some embodiments of the present invention, the fourth area 129 is coated with a fourth color coating layer, and the fourth color coating layer can be an opaque ink layer, so that the light of the fourth area 129 can be prevented from interfering with the display of other areas, thereby facilitating the control of the shapes of the patterns presented by the first area 121, the second area 122 and the third area 123.
According to some embodiments of the present invention, the display film 120 may include a transparent film layer and a coating layer, the coating layer is coated on the surface of the transparent film layer, the transparent film layer is coated with a first color coating layer in the first area 121, and the transparent film layer is coated with a second color coating layer in the second area 122. In some embodiments, the coating layer may be an ink layer, the first color coating layer may be an ink layer having a shielding effect on the first color light, and the second color coating layer may be an ink layer having a shielding effect on the second color light.
In some embodiments, the display membrane 120 is transparent within said third area 123. For example, in some embodiments, the third area 123 may be coated with a third color coating layer, which may be a transparent ink, so that light may be softened and the display effect of the display assembly 100 may be improved. In some embodiments, the light transmissive film layer is coated with a transparent coating layer within the third region 123. Of course, the present invention is not limited thereto, and the third area 123 may also be coated with the first color coating layer and the second color coating layer in an overlapping manner, and the first color coating layer and the second color coating layer are suitable for reacting and generating the transparent coating layer.
In some embodiments, the transparent film layer is coated with an opaque coating in the fourth region 129, for example, the opaque coating may be a black ink layer.
Referring to fig. 5-7, in some embodiments of the invention, the display assembly 100 is used to display a first graphic 127 and a second graphic 128. Further, referring to fig. 7, the display film 120 divides the first area 121, the second area 122, the third area 123 and the fourth area 129 according to the first graphic 127 and the second graphic 128. Further, in some embodiments of the present invention, the area where the first pattern 127 is located is set as the first area 121 except the area where the first pattern overlaps the second pattern 128; the area where the second pattern 128 is located is set as the second area 122 except the area where the second pattern overlaps the first pattern 127; an area where the first graphic 127 and the second graphic 128 overlap is set as the third area 123; the region other than the first pattern 127 and the second pattern 128 is set as a fourth region 129. In some further embodiments of the present invention, the first region 121 is coated with a first color ink layer, the second region 122 is coated with a second color ink layer, the third region 123 is not coated with ink, and the fourth region 129 is coated with black ink (i.e., an opaque ink layer). When the first light source 111 is turned on and the second light source 112 is turned off, the display assembly 100 displays the first graphic 127, and when the second light source 112 is turned on and the first light source 111 is turned off, the display assembly 100 displays the second graphic 128.
According to some embodiments of the present invention, the display assembly 100 further comprises a controller connected to the light source assembly to control whether the light source assembly emits the first color light, the second color light, or the white light. According to some embodiments of the present invention, the display assembly 100 may further include a circuit board 110, and both the light source assembly and the controller may be disposed on the circuit board 110.
According to some embodiments of the present invention, the display assembly 100 further comprises a circuit board 110, and the first light source 111, the second light source 112 and the controller are all disposed on the circuit board 110. The controller is connected to both the first light source 111 and the second light source 112 to control the brightness of the first light source 111 and the second light source 112 respectively. For example, in order to distinguish the state of the operating part from the candidate state, the light sources may be made to exhibit different brightness levels, when a display pattern for displaying the state in which the laundry treatment apparatus is operating is displayed by a part of the first light sources 111, and other candidate states of the laundry treatment apparatus may be displayed by another part of the first light sources 111, the brightness of the display pattern of the operating state is greater than that of the candidate state, thereby facilitating the user to know the operating state and the candidate state of the laundry treatment apparatus.
According to some embodiments of the present invention, a key 126 may be disposed on the display assembly 100, and the user may control the on or off of the first light source 111 and the on or off of the second light source 112 through the key 126. For example, two buttons 126 may be disposed on the display membrane 120, wherein one button 126 is used for controlling the first light source 111 to be turned on and the second light source 112 to be turned off, and the other button 126 is used for controlling the second light source 112 to be turned on and the first light source 111 to be turned off.
According to some embodiments of the present invention, the key 126 is not overlapped with the first area 121 and the second area 122. In other words, the key 126 is spaced apart from both the first area 121 and the second color 122 area. It should be noted that the key 126 may be a touch key or a mechanical key, when a user presses or touches the key 126, a finger of the user may contact the display device 100, and the key 126 is separated from the first area 121 and the second area 122, so that the finger of the user may be prevented from touching or pressing the first area 121 and the second area 122, thereby protecting the first area 121 and the second area 122, reducing the possibility that the first area 121 and the second area 122 are worn, and further improving the wear resistance of the display device 100 and improving the display effect.
According to some embodiments of the present invention, the display assembly 100 is provided with a key 126, the key 126 overlapping with the display membrane 120, thereby facilitating user operation.
According to some embodiments of the present invention, as shown in fig. 1, the display module 100 further includes a light shielding plate 130, and the light shielding plate 130 is disposed on one side of the display membrane 120 away from the light source assembly. The light shielding plate 130 can make the light emitted by the light source assembly softer and the display effect better.
A display module 100 according to an embodiment of the present invention is described below with reference to the drawings.
The display assembly 100 includes a circuit board 110, a display film 120, and a light shielding plate 130, wherein the circuit board 110 is provided with a light source assembly, and the light source assembly and the light shielding plate 130 are respectively located at two sides of the display film 120 along a thickness direction.
The light source assembly includes a first light source 111 emitting orange light and a second light source 112 emitting blue light and white light at the same time. The display film 120 has a first area 121, a second area 122, a third area 123 and a fourth area 129, orange light is transmitted through the first area 121, blue light is transmitted through the second area 122, blue and orange light is transmitted through the third area 123, white light is transmitted through the first to third areas 123, and neither orange, blue or white light is transmitted through the fourth area 129.
The display film 120 includes a light-transmitting film layer and an ink coating layer, and specifically, opaque ink is coated on a place (a fourth region 129) outside the film pattern, ink which can only transmit orange light is coated on a single orange pattern portion (a first region 121), ink which can only transmit blue light is coated on a single blue pattern portion (a second region 122), two inks are coated on a portion (a third region 123) where two patterns overlap, and the two inks react with each other to transmit light of which color, so that different patterns at the same position can be realized.
The display module 100 is further provided with an orange button 126 and an ice blue button 126, when the orange display button 126 is pressed, the orange light is turned on, the orange light is displayed by coating the direct orange light ink (the first area 121) and the overlapped part of the 2 kinds of ink (the third area 123), and is filtered by the light shielding plate 130 to present an orange font (i).
When the ice blue display key 126 is pressed, the ice blue lamp is turned on (or the white and blue lamps are turned on simultaneously), the ice blue lamp is formed by combining blue and white lights emitted from the same lamp, the blue light is displayed through the overlapping portion (the third region 123) of the blue ink which is directly transparent to the blue light (the second region 122) and the 2 inks, the white light is displayed through the overlapping portion (the third region 123) of the 2 inks, the blue light of the white light and the light having a wavelength near the blue light are displayed through the overlapping portion (the second region 122) of the blue ink which is directly transparent to the blue light, the orange light of the white light and the light having a wavelength near the orange light are displayed through the overlapping portion (the first region 121) of the orange ink which is directly transparent to the light, and then filtered by the light shielding plate, since the white light has a small orange portion content, it is difficult to be seen by naked eyes after being filtered by the light shielding plate 130, and people can see the ice blue characters (soil).
According to the utility model discloses display module 100, the user is when using, when pressing orange display button 126, and orange interface is whole to be shown, and accessible touch orange typeface selects the function, presses washing machine start key again, and washing machine will carry out this function operation. Similarly, when the user presses the ice blue display key 126 during use, the ice blue interface is displayed completely, the function can be selected by touching the ice blue font, and then the washing machine start key is pressed, so that the washing machine can operate the function.
According to a second aspect of the present invention, a clothes treating apparatus comprises a housing and a display assembly 100 according to the first aspect of the present invention.
Specifically, the housing has a clothes treatment cavity therein, the display assembly 100 is embedded in the housing, and the display assembly 100 is the display assembly 100 of the clothes treatment device as described above. In some embodiments, the case includes a body, a laundry treatment chamber located in the body, an upper end of the laundry treatment chamber being open, and a cover connected to the body to open or close the laundry treatment chamber. The display module 100 may be disposed on the upper end surface of the body or on the cover.
According to the utility model discloses clothes treatment device through utilizing the light source that can send specific colour and set up the region that different colour light can see through on showing diaphragm 120, can show different display pattern on same display position, not only can increase display module 100's display state from this, makes it have the diversification, can also simplify display module 100's structure, convenience of customers operation.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplification of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
While embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (16)

1. A display assembly for a laundry treatment apparatus, comprising:
a light source assembly comprising a first light source for emitting light of a first color and a second light source for emitting light of a second color, at least one of the first and second light sources further for emitting white light;
the display film comprises a first area, a second area and a third area, the first color light can penetrate through the first area and cannot penetrate through the second area, the second color light can penetrate through the second area and cannot penetrate through the first area, and the first color light and the second color light are suitable for penetrating through the third area.
2. The display assembly of claim 1, wherein the first color light is orange light and the second color light is blue light.
3. The display assembly of claim 2, wherein the second light source is configured to emit the blue light and the white light simultaneously.
4. The display assembly of claim 1, wherein the first light source emits the first color light and the white light simultaneously, and the brightness of the white light is lower than that of the first color light; and/or
The second light source emits the second color light and the white light at the same time, and the brightness of the white light is lower than that of the second color light.
5. The display assembly of claim 1, wherein the first light source is an LED lamp and the second light source is an LED lamp.
6. The display assembly of claim 5, wherein the first color light and the white light are emitted by the same LED lamp, and/or wherein the second color light and the white light are emitted by the same LED lamp.
7. The display assembly of claim 1, wherein the display film further comprises a fourth region through which none of the first color light, the second color light, and the white light is transmitted.
8. The display assembly of claim 7, wherein the display film comprises a light transmissive film layer and a coating layer, the coating layer being applied to a surface of the light transmissive film layer, the light transmissive film layer being coated with a first color coating layer in the first region, the light transmissive film layer being coated with a second color coating layer in the second region.
9. The display assembly of claim 8, wherein the display film is transparent in the third area, and the light transmissive film layer is coated with a transparent coating layer in the third area.
10. The display assembly of claim 8, wherein the light transmissive film layer is coated with an opaque coating in the fourth region.
11. The display assembly according to any one of claims 1-10, further comprising a controller coupled to the light source assembly to control whether the light source assembly emits the first color light, the second color light, or the white light.
12. The display assembly of claim 11, further comprising a circuit board, wherein the light source assembly and the controller are disposed on the circuit board.
13. A display assembly according to any of claims 1-10, wherein the display assembly is provided with a key, which key does not overlap with the first area and the second area.
14. A display assembly according to any of claims 1-10, wherein the display assembly is provided with keys, the keys overlapping the display membrane.
15. The display assembly of any one of claims 1-10, further comprising: and the light shielding plate is arranged on one side of the display diaphragm, which deviates from the light source component.
16. A laundry treating apparatus, comprising:
a housing having a laundry treating chamber therein;
the display assembly is embedded in the shell, and the display assembly is according to any one of claims 1-15.
CN201920345727.1U 2019-03-18 2019-03-18 Display module and clothes treatment device Active CN209958086U (en)

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CN201920345727.1U CN209958086U (en) 2019-03-18 2019-03-18 Display module and clothes treatment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920345727.1U CN209958086U (en) 2019-03-18 2019-03-18 Display module and clothes treatment device

Publications (1)

Publication Number Publication Date
CN209958086U true CN209958086U (en) 2020-01-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Link
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