A method and an implementation device for improving the viewing position of a mobile phone and a tablet by using optical reflection principles

By placing reflective mirrors in front of and opposite the phone screen, a mirror image is formed using the principle of optical reflection. Adjusting the position of the mirrors improves the viewing experience when holding a phone or tablet, solving the fatigue problem caused by holding the device and providing a more comfortable viewing method.

CN122307928APending Publication Date: 2026-06-30宋学成

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
宋学成
Filing Date
2026-03-12
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing technologies struggle to improve the viewing experience when holding a mobile phone or tablet, leading to hand, neck, and eye fatigue, and the experience is diminished when the phone is out of hand.

Method used

Using the principle of optical reflection, mirrors are placed in front of and opposite the phone screen to form a mirror image. The position and relative relationship of the mirrors can be adjusted to obtain a suitable viewing posture.

Benefits of technology

It reduces the burden on the neck, arms, wrists and other body parts, providing a physiologically friendly viewing method and improving viewing comfort and user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This invention discloses a method and apparatus for improving viewing posture on mobile phones and tablets using the principle of optical reflection. It belongs to the field of assistive use of electronic products in daily life. The invention provides a method for improving viewing posture on mobile phones and tablets using the principle of optical reflection. A reflector 1 is placed at a suitable position (including distance and angle) in front of the mobile phone screen. The reflector 1 displays a mirror image of the mobile phone screen. A reflector 2 is placed at a suitable position (including distance and angle) opposite reflector 1. The reflector 2 displays a mirror image of reflector 1. The mobile phone screen can be viewed by looking at the mirror image in reflector 2. In exceptional circumstances, the number of reflectors can be increased to obtain a suitable viewing posture for the user. Three implementation devices are provided. This invention, by changing the positional relationship between the hands, neck, eyes, etc., and the screen of the mobile phone or tablet, can alleviate fatigue and improve the daily user experience to some extent when the mobile phone is in hand.
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Description

Technical Field

[0001] A method and device for improving the viewing experience of mobile phones and tablets in daily life. Background Technology

[0002] When holding a mobile phone or tablet, people adjust the position of their arms, wrists, hands, and necks to better view the screen and maintain a habitual viewing or gaming experience. This inevitably leads to fatigue and even injury to the hands, neck, and eyes. While various types of phone stands on the market can change the viewing angle, they rarely improve the user experience when holding the phone, and operating the phone without holding it significantly reduces the user experience. To alleviate fatigue and improve the daily user experience, changing the positional relationship between the hands, neck, eyes, and the screen of the phone or tablet is a viable approach, and using the principle of optical reflection to achieve this is one feasible method. Summary of the Invention

[0003] This application provides a method and apparatus for improving the viewing posture of mobile phones and tablets using the principle of optical reflection.

[0004] Firstly, this invention provides a method for improving viewing posture on mobile phones and tablets using the principle of optical reflection.

[0005] Place a reflector 1 at a suitable position in front of the phone screen (position includes distance, height and angle, etc.), and the phone screen will be reflected in the reflector 1;

[0006] Place a mirror 2 at a suitable position opposite to mirror 1 (position includes distance, height and angle, etc.), and mirror 2 will reflect the image of mirror 1.

[0007] The phone screen can be seen by looking at the reflection in mirror 2.

[0008] By adjusting the relative positions of reflectors 1 and 2, as well as the relative position of reflector 1 and the phone screen, a viewing posture suitable for the viewer's habits can be obtained. At the same time, this viewing method places less strain on the viewer's neck, arms, wrists, and other body parts, making it a physiologically friendly viewing method.

[0009] In addition, two mirror reflections occur between the mobile phone and mirrors 1 and 2. Generally speaking, the image in mirror 2 can provide a suitable viewing posture for the viewer. However, in exceptional cases, the number of mirrors can be increased to obtain a posture suitable for the viewer.

[0010] Secondly, based on the above method, the present invention provides three implementation devices.

[0011] The device 1 consists of four parts: a reflector 1, a fixed joint 1, a reflector 2, and a fixed joint 2.

[0012] Preferably, the reflector 1 is located directly in front of the user's line of sight or at a position that the user is accustomed to, and is fixed to the fixing joint 1.

[0013] Preferably, the fixing joint 1 is characterized in that one end is connected to the reflector 1 and can be used to fix the reflector 1, and the other end is connected to the user's head, neck or other body parts to determine the relative position of the user and the reflector 1. At the same time, the fixing joint 1 also has a telescopic and bending function, thereby providing the user with a more suitable viewing posture for the reflector 1.

[0014] Preferably, the reflector 2 is characterized in that it is located in the direction in which the light from the screen of the mobile phone or tablet is projected, so that the complete screen content of the mobile phone or tablet can be seen in the reflector 2, and at the same time, it is fixed to the fixing joint 2.

[0015] Preferably, the fixing joint 2 is characterized in that one end is connected to the reflector 2 and can be used to fix the reflector 2, and the other end is connected to the user's head, neck or other body parts to maintain a suitable positional relationship between the reflector 2 and the mobile phone or tablet screen. In particular, the other end can be connected and fixed to the mobile phone or tablet to better maintain the relative positional relationship with the mobile phone or tablet (this will be explained in the accompanying drawings in the specific embodiment). At the same time, the fixing joint 2 can also have a telescopic bending function to adjust the position and posture of the reflector 2.

[0016] The device 2 consists of three parts: mirror 1, mirror 2, and mirror connection adjustment and handheld fixing part.

[0017] Preferably, the mirror 1 is located on the front of the mobile phone or tablet screen, capable of displaying a mirror image of the screen, and the size of the mirror 1 is capable of mirroring the part of the screen image that the user is viewing.

[0018] Preferably, the mirror 2 is characterized in that it is located on the back of the mobile phone or tablet screen, and can display the mirror image of the mirror 1. The size of the mirror 2 is such that it can mirror the part of the screen image that the user is viewing. The mirror image of the mirror 2 is the image that the user actually sees when using the device.

[0019] Preferably, the mirror connection adjustment and handheld fixing part is characterized in that, on the one hand, its handheld fixing part is used to fix the positional relationship between the user and the mirror, and on the other hand, it fixes the relative position of the two mirrors by connecting mirror 1 and mirror 2, while it can adjust the relative distance, vertical height and tilt angle of mirror 1 and mirror 2 to obtain a suitable viewing image.

[0020] In particular, the device 2 can be placed on a support platform such as a desktop, and when viewing the mirror image of the mirror 2, the distance between the eyes and the image can be appropriately increased when the posture is appropriate.

[0021] The device 3 consists of three parts: mirror 1, mirror 2, and mirror connection adjustment and mobile phone clamping part.

[0022] Preferably, the mirror 1 is located on the front of the mobile phone or tablet screen, capable of displaying a mirror image of the screen, and the size of the mirror 1 is capable of mirroring the part of the screen image that the user is viewing.

[0023] Preferably, the mirror 2 is characterized in that it is located on the back of the mobile phone or tablet screen, and can display the mirror image of the mirror 1. The size of the mirror 2 is such that it can mirror the part of the screen image that the user is viewing. The mirror image of the mirror 2 is the image that the user actually sees when using the device.

[0024] Preferably, the mirror connection adjustment and mobile phone clamping part is characterized in that, on the one hand, it not only connects, fixes and adjusts mirror 1 and mirror 2, but also has a mobile phone clamping part for fixing the mobile phone. When the user holds the mobile phone, mirror 1 and mirror 2 can be fixed, making it more convenient to use. Similarly, it can adjust the relative distance, vertical height and tilt angle of mirror 1 and mirror 2 to obtain a suitable viewing image.

[0025] In particular, the device 3 can be connected and fixed to the wrist. The advantage is that it reduces the force on the palm, while the disadvantage is that it increases the force on the wrist.

[0026] A comparison of implementation device 1 with implementation devices 2 and 3 reveals that the three devices are essentially the same, differing only in their external structure. Specifically, in implementation device 1, the fixing joint of reflector 1 is connected and fixed to the human body, and the fixing joint of reflector 2 is connected and fixed to the mobile phone. In implementation device 2, reflector 1 and reflector 2 are connected via the same fixing joint and then fixed to the human body. In implementation device 3, reflector 1 and reflector 2 are connected via the same fixing joint, then connected and fixed to the mobile phone, and finally fixed to the human body. Therefore, the different fixing methods and positions result in different appearances of the implementation devices, but in essence, they do not exceed the scope of application of this invention. Attached Figure Description

[0027] Appendix Figure 1 This is a flowchart illustrating a method for improving viewing posture on mobile phones and tablets using the principle of reflection, according to the present invention.

[0028] Appendix Figure 2 This is a schematic diagram of the implementation device 1 of the present invention. In the figure, [1] is a reflector 1, [2] is a fixing joint 1, [3] is a reflector 2, [4] is a fixing joint 2, and [5] is a mobile phone.

[0029] Appendix Figure 3 This is a schematic diagram of the implementation device 2 of the present invention. In the figure, [6] is mirror 1, [7] is mirror 2, [8] is the mirror connection adjustment and handheld fixing part, and [9] is a mobile phone.

[0030] Appendix Figure 4 This is a schematic diagram of the implementation device 3 of the present invention. In the figure,

[10] is mirror 1,

[11] is mirror 2,

[12] is the mirror connection adjustment and mobile phone clamping part, and

[13] is the mobile phone. Detailed Implementation

[0031] To enable those who wish to better understand the present invention, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings.

[0032] Combined with appendix Figure 1 The following is an explanation of a method that uses the principle of reflection to improve the viewing posture of mobile phones and tablets.

[0033] Step 101: Hold your phone and place it in a comfortable position;

[0034] Step 102: Place a reflector 1 at a suitable position (position including distance and angle) in front of the phone screen. The reflector 1 will display a mirror image of the phone screen.

[0035] Step 103: Place a mirror 2 at a suitable position (position including distance and angle) opposite to mirror 1. Mirror 2 will reflect the image of mirror 1.

[0036] Step 104: You can see the phone screen by looking at the reflection in mirror 2.

[0037] Step 105: Generally speaking, the image in mirror 2 at this time can provide a suitable viewing posture for the viewer. However, in exceptional cases, the number of mirrors can be increased to obtain a suitable posture for the viewer.

[0038] It should be added that, on the one hand, by adjusting the relative positions of reflector 1 and reflector 2, as well as the relative position of reflector 1 and the mobile phone screen, a viewing posture suitable for the viewer's habits can be obtained. On the other hand, this viewing method puts less strain on the viewer's neck, arms, wrists, and other body parts, making it a physiologically friendly viewing method.

[0039] Combined with appendix Figure 2 Taking mobile phone viewing as an example, the implementation device 1 is explained as follows.

[0040] Step 201, fix the joint 2 to the mobile phone. (Place the [5] mobile phone on the clamp of the [4] fixed joint 2. After it is firmly placed, hold the [5] mobile phone and the clamp to view it. Therefore, it can be considered that the [4] fixed joint 2 is indirectly fixed to the palm.) The end of the [4] fixed joint 2 that is connected to the [5] mobile phone can be a clamp or other forms. Since the user needs to hold the [5] mobile phone, the [4] fixed joint 2 can be considered to be indirectly fixed to the palm.

[0041] Step 202, adjust the position of reflector 2. Adjust the angle and distance of reflector 2 [3] to initially obtain the image of the mobile phone [5] in reflector 2 [3].

[0042] Step 203, attach the head fixation joint 1. Adjust the tightness of the end of the fixation joint 1 connected to the head to stably fix the fixation joint 1 to the head.

[0043] Step 204, adjust the position of reflector 1. Adjust the position of reflector 1 by extending, bending and twisting the fixed joint 1 [2] so that the image of reflector 2 [3] at a suitable angle is presented in reflector 1.

[0044] Step 205: The viewing experience can be optimized by repeatedly adjusting the position of the phone held [5], the angle, height and distance of the reflector 2 and the reflector 1 [3], etc.

[0045] Step 206: By changing the mirror material of [1] reflector 1 and [3] reflector 2, the brightness, grayscale and sharpness of the image can be changed, which may further optimize the visual experience.

[0046] Combined with appendix Figure 3 Taking mobile phone viewing as an example, the implementation device 2 is explained as follows.

[0047] Step 301, hold and fix. Hold the [9] phone, use both arms to clamp the arc-shaped notch of the [8] mirror connection adjustment and hand-held fixing part, and hold your arms in front of your chest or a suitable position in front of your chest to initially fix the positions of [6] mirror 1 and [7] mirror 2, confirm the [9] phone imaging effect, and facilitate subsequent adjustments.

[0048] Step 302, adjust the relative distance, height and angle of mirror 1 and mirror 2 [6]. As mentioned above, the mirror connection adjustment and handheld fixing part [8] has a connection adjustment function for mirror 1 and mirror 2 [6]. The attached figure shows that mirror 1 and mirror 2 [6] can rotate around the axis and adjust the pitch state. At the same time, the relative distance and height of mirror 1 and mirror 2 [6] can also be adjusted by the mirror connection adjustment and handheld fixing part [8] to obtain a suitable screen mirror.

[0049] Step 303: Generally speaking, users have a habitual posture. Therefore, after adjusting the position of their arms in front of their chest, clamping their arms between the mirror connection adjustment and the hand-held fixing part [8], it will be easier to determine the relative position of [6] mirror 1 and [7] mirror 2, and thus conveniently use the device.

[0050] Combined with appendix Figure 4 Taking mobile phone viewing as an example, the implementation device 3 is explained as follows.

[0051] Step 401, clamp the phone. Place the phone

[13] on the mirror connection adjustment and phone clamping part

[12] to fix the phone position.

[0052] Step 402, hold the phone and adjust the mirror. Hold the phone

[13] and adjust the relative distance, height and angle of mirror 1

[10] and mirror 2

[11] to obtain a suitable screen mirror.

[0053] The above is a detailed description of the preferred embodiments of the present invention. However, the present invention is not limited to the embodiments described. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.

Claims

1. A method for improving viewing posture on mobile phones and tablets using the principle of optical reflection, characterized in that, The process includes the following steps: 1) Place a reflector 1 at a suitable position in front of the phone screen (position including distance, height, and angle, etc.), and the reflector 1 will display a mirror image of the phone screen; 2) Place a reflector 2 at a suitable position opposite to reflector 1 (position including distance, height, and angle, etc.), and the reflector 2 will display a mirror image of reflector 1; 3) The phone screen image can be seen by viewing the mirror image in reflector 2; 4) In exceptional circumstances, the number of reflectors can be increased to obtain a suitable pose for the viewer.

2. The three implementation devices include implementation device 1, implementation device 2 and implementation device 3.

3. The implementing device 1 consists of four parts, namely a reflector 1, a fixing joint 1, a reflector 2, and a fixing joint 2.

4. The implementing device 2 consists of three parts: mirror 1, mirror 2, and mirror connection adjustment and hand-held fixing part.

5. The implementing device 3 consists of three parts: mirror 1, mirror 2, and mirror connection adjustment and mobile phone clamping part.