SMART MIRROR DEVICE
20200348896 ยท 2020-11-05
Inventors
Cpc classification
F21V23/0485
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G06F3/041
PHYSICS
H04M1/0283
ELECTRICITY
G06F2200/1634
PHYSICS
H04M1/21
ELECTRICITY
A45C2011/002
HUMAN NECESSITIES
H04M1/22
ELECTRICITY
F21V33/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G06F3/14
PHYSICS
G06F1/1626
PHYSICS
International classification
G06F3/14
PHYSICS
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G06F3/041
PHYSICS
Abstract
A smart mirror device (10) includes a display device (1) and a mirror cover (2). The display device (1) has a screen (11); the mirror cover (2) is slidably mounted onto the display device (1) and slides between a covering position covering the screen (11) and an exposed position exposed form the screen (11); and a mirror (21) is installed outside the mirror cover (2). When the mirror cover (2) is situated at the exposed position, the mirror (21) is disposed on a side of the screen (11). Therefore, users may detect their skin, receive skincare and makeup tips, watch movies, or use applications (APP) while looking at the mirror (21). The smart mirror device (10) has the advantage of showing clear images in the mirror (21) and the screen (11).
Claims
1. A smart mirror device, comprising: a display device (1), having a screen (11), wherein the screen (11) has a message display area (111); and a mirror cover (2), slidably mounted onto the display device (1) and sliding between a covering position of the screen (11) and an exposed position of the screen (11), and having a mirror (21) installed outside the mirror cover (2), wherein the mirror (21) has a hollow area (211), the hollow area (211) is a light transmission opening or a light transmission area composed of unpainted mirrors; wherein, when the mirror cover (2) is situated at the exposed position, the mirror (21) is disposed parallelly on a side of the screen (11); when the mirror cover (2) is situated at the covering position, the hollow area (211) is overlapped with the message display area (111), such that the message display area (111) is able to be seen through the hollow area (211).
2. (canceled)
3. The smart mirror device according to claim 1, wherein the message display area (111) has a sensor (112), and when the mirror cover (2) is situated at the covering position, the position of the hollow area (211) is overlapped with the position of the sensor (112).
4. The smart mirror device according to claim 3, wherein the sensor (112) displays a prompt message (113) in the message display area (111) when receiving a user's operation.
5. The smart mirror device according to claim 3, wherein the display device (1) further has a first light emitting structure (12), and the mirror cover (2) further has a second light emitting structure (22), and both of the first light emitting structure (12) and the second light emitting structure (22) are installed on two opposite outer sides of the screen (11) and the mirror (21) respectively.
6. The smart mirror device according to claim 5, wherein the sensor (112) lights up the first light emitting structure (12) and the second light emitting structure (22) when receiving a user's operation.
7. The smart mirror device according to claim 5, wherein both of the display device (1) and the mirror cover (2) are disposed at the two rail structures (3) on the upper and lower sides of the screen (11) respectively, and the mirror cover (2) slides along the two rail structures (3).
8. The smart mirror device according to claim 7, wherein the first light emitting structure (12) comprises a first matte cover (121) and a first light emitting element (122) contained in the first matte cover (121), and the first matte cover (121) is installed between a side of the screen (11) and the two rail structures (3), and the second light emitting structure (22) comprises a second matte cover (221) and a second light emitting element (22) contained in the second matte cover (221), and the second matte cover (221) is installed between a side of the mirror (21) and the two rail structures (3).
9. The smart mirror device according to claim 7, wherein each rail structure (3) comprises a chute (31) formed on the display device (1) and a slider (32) extending from the mirror cover (2), and each slider (32) slides in each respective chute (31).
10. The smart mirror device according to claim 1, wherein the display device (1) has a front (13) and a back (14), and the screen (11) is installed at the front (13), and a hook (5) or a support base (6) is installed at the back (14).
11. The smart mirror device according to claim 1, further comprising a rotating support (4), a rotary head (41) of the rotating support (4), and a support (42) pivotally coupled to the rotary head (41), and the display device (1) having a front (13) and a back (14), and the screen (11) being installed at the front (13), and the back (14) having a snap slot (15), and the rotary head (41) being rotatably embedded into the snap slot (15) with 360 degrees.
12. The smart mirror device according to claim 3, wherein the display device (1) has two lighting assemblies (16) installed two opposite outer sides of the screen (11) respectively, and the sensor (112) lights up the two lighting assemblies (16) when receiving a user's operation.
13. The smart mirror device according to claim 12, wherein both of the display device (1) and the mirror cover (2) are disposed on two rail structures (3) on both left and right sides of the screen (11) respectively, and the mirror cover (2) slides along the two rail structures (3).
14. The smart mirror device according to claim 13, wherein each lighting assembly (16) comprises a matte cover (161) and a light emitting element contained in the matte cover (161), and the two rail structures (3) are installed between the outer side of the screen (11) and the inner side of the two matte covers (161), and each rail structure (3) comprises a chute (31) formed on the display device (1) and a slider (32) extending from the mirror cover (2), and each slider (32) slides in each respective chute (31).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0023] The technical contents of this disclosure will become apparent with the detailed description of preferred embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
[0024] With reference to
[0025] In
[0026] In
[0027] In addition, the mirror 21 has a hollow area 211, and when the mirror cover 2 is situated at the exposed position, the mirror 21 is disposed parallelly on a side of the screen 11, and when the mirror cover 2 is situated at the covering position, the position of the hollow area 211 is overlapped with the message display area 111 and the position of the sensor 112.
[0028] In addition, the display device 1 further has a first light emitting structure 12, and the mirror cover 2 further has a second light emitting structure 22, and both of the first light emitting module 12 and the second light emitting module 22 are disposed on both opposite outer sides of the screen 11 and the mirror 21.
[0029] In
[0030] In addition, when the sensor 112 receives a user's operation, a prompt message 113 is displayed on the message display area 111, or the first light emitting module 12 and the second light emitting module 22 are lit.
[0031] Further, the sensor 112 of this disclosure has three ways of receiving the user's operation as follows: 1. When the sensor 112 is a resistive touch sensor, and the hollow area 211 is a light transmission opening, a user may press the sensor 112 directly, or press the sensor 112 through the hollow area 211, and the sensor 112 is pressed by an external force to generate an output signal. 2. When the sensor 112 is a capacitive touch sensor, and the hollow area 211 is a light transmission opening, the user may touch the sensor 112 directly or touch the sensor 112 through the hollow area 211, and the sensor 112 will generate an output signal when a change of capacitance is detected. 3. When the sensor 112 is a wave-motion touch sensor and the hollow area 211 is a light transmission opening or a light transmission area composed of unpainted mirrors, the user may touch the sensor 112 directly or approaches to the sensor through the hollow area 211, and the sensor 112 will generate an output signal after detecting that an infrared light is blocked. After receiving the output signal, a controller (not shown in the figure) installed in the display device 1 will control the message display area 111 to display the prompt message 113, or light up the first light emitting module 12 and the second light emitting module 22.
[0032] Wherein, when the position of the hollow area 211 is overlapped with the position of the message display area 111, the user can view the prompt message 113 through the hollow area 211, and the form of the prompt message 113 is not limited to that of this embodiment only, but it can be any text or pattern.
[0033] In
[0034] In
[0035] In
[0036] With reference to
[0037] Compared with the conventional smart mirror with the problem of unclear screen and mirror, the mirror 21 and the screen 11 of this disclosure are two separate structures, so that the reflection of the mirror 21 and the refraction of the screen 11 will not affect each other, and the mirror 21 and the screen 11 of the smart mirror device 10 of this disclosure have the feature of showing clear images.
[0038] In addition, when the mirror cover 2 is situated at the covering position, the mirror cover 2 covers the screen 11, and the position of the hollow area 211 is overlapped with the message display area 111 and the position of the sensor 112. After receiving a user's operation through the hollow area 211, the sensor 112 displays the prompt message 113 in the message display area 111 without sliding the mirror cover 2 away from the screen 11, and allows the user to view the prompt message 113 from the hollow area 211, so as to improve the convenience of use of the smart mirror device 10.
[0039] With reference to
[0040] In
[0041] With reference to
[0042] In
[0043] With reference to
[0044] In
[0045] In addition, the display device 1 further has two lighting assemblies 16 installed on both opposite outer sides of the screen 11 respectively. When receiving a user's operation, the sensor 112 will generate an output signal, and controller (not shown in the figure) installed in a display device 1 will light up the two lighting assemblies 16 when receiving the output signal.
[0046] Wherein, both of the display device 1 and the mirror cover 2 are disposed at two rail structures 3 on both left and right sides of the screen 11 respectively, and the mirror cover 2 slides along the two rail structures 3.
[0047] Specifically, each lighting assembly 16 comprises a matte cover 161 and a light emitting element contained in the matte cover 161, and the two rail structures 3 are installed between the outer side of the screen 11 and the inner sides of the two matte covers 161, and each rail structure 3 comprises a chute 31 formed on the display device 1 and a slider 32 extending from the mirror cover 2, and each slider 32 slides in each respective chute 31, so that the mirror cover 2 can slide up and down with respect to the two lighting assemblies 16.
[0048] In summation of the description above, the smart mirror device of this disclosure can achieve the expected purpose of use and overcome the drawbacks of the prior art. In addition, this disclosure complies with the patent application requirements, and is thus duly filed for patent application.