A type of pop-up, quick-release AR glasses
By introducing an electronic control system and magnetic components into AR glasses, the AR waveguide lenses can be quickly popped up and removed, solving the problem of lenses not being able to be removed quickly in existing technologies, thus improving the user's wearing experience and the stability of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-13
AI Technical Summary
Existing AR waveguide lenses cannot be quickly removed when users experience discomfort while viewing, which can easily lead to damage and affect the wearing experience.
A pop-up quick-release AR glasses was designed. The AR waveguide lens can be quickly popped up and removed through an electronic control system and magnetic components. The interaction between permanent magnets and electromagnets, combined with a torsion spring, enables the lens to detach quickly.
It enables the quick and non-damaging removal of AR waveguide lenses when viewing is uncomfortable, improving the wearing experience and device stability.
Smart Images

Figure CN119511545B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of AR glasses, and more particularly to a pop-up, quick-release AR glasses. Background Technology
[0002] AR waveguide lenses are a key optical component in augmented reality (AR) glasses. Their main function is to transmit images from the display screen to the user's eyes through total internal reflection. Due to its advantages such as thinness, high light transmittance, and wide field of view, waveguide technology is the mainstream optical solution for future consumer-grade AR glasses. Existing AR waveguide lenses can be clipped onto the user's ordinary glasses in a split clip structure, achieving the effect of clipping and using immediately. However, when the user suddenly experiences discomfort due to being startled or feeling dizzy while wearing the AR waveguide lens, the user cannot quickly remove the AR waveguide lens from their ordinary glasses. Moreover, the AR waveguide lens is easily damaged by being bent during the quick removal process. Summary of the Invention
[0003] To overcome the drawback that users cannot quickly remove AR waveguide lenses from their ordinary glasses when experiencing viewing discomfort, which can easily lead to damage and seriously affect the wearing experience of AR waveguide lenses, this invention provides a pop-up quick-removal AR glasses.
[0004] This invention discloses a pop-up, quick-release AR glasses, comprising an integrated electronic control compartment, ear-hook headphones, a circuit integrated frame, a rotating shaft, a rotating rod, a torsion spring, a glasses frame, a permanent magnet, a circuit integrated rod, a switch board, an electromagnet, an AR waveguide lens, a connecting frame, and a U-shaped clip. The integrated electronic control compartment integrates a main circuit control module and a battery pack module. Two ear-hook headphones are electrically connected to the integrated electronic control compartment via two first connecting wires. The circuit integrated frame is electrically connected to the integrated electronic control compartment via a second connecting wire. A rotating shaft is rotatably connected to the circuit integrated frame. A rotating rod is fixedly connected to the rotating shaft. The rotating rod and the circuit integrated frame are jointly fixed. A torsion spring is attached; an eyeglass frame is fixed to the rotating rod; two AR waveguide lenses are fixed to the eyeglass frame; a permanent magnet is fixed to the rotating rod; a circuit integration rod is fixed to the circuit integration frame; the circuits in the circuit integration rod are electrically connected to the circuits in the circuit integration frame; an electromagnet corresponding to the number and position of the permanent magnet is fixed to the circuit integration rod; the electromagnet is electrically connected to a second connecting wire through the circuits in the circuit integration frame; a connecting frame is connected to the circuit integration frame; a U-shaped clip is fixed to the connecting frame; a switch plate for controlling the electromagnet is installed on the ear-hook headphones; and a binocular miniature depth camera for spatial calculation is installed on the circuit integration rod.
[0005] Furthermore, it is particularly preferred that the switch board uses a capacitive touchpad component.
[0006] In addition, it is particularly preferred that the U-shaped clip has several anti-slip clip structures inside.
[0007] Furthermore, it is particularly preferred that the circuit integration frame has two vertical slide rail structures; a connecting block is slidably connected to the vertical slide rail structure of the circuit integration frame; an eyeglass temple is rotatably connected to the connecting block, and the eyeglass temple uses a telescopic rod structure; the circuit integration frame has two longitudinal insertion block structures; the eyeglass temple has a longitudinal slot structure corresponding to the longitudinal insertion block structure; the longitudinal insertion block structure is inserted into the longitudinal slot structure on the corresponding eyeglass temple.
[0008] Furthermore, it is particularly preferred that the ear-hook headphones have a slot structure for hanging eyeglass temples.
[0009] Furthermore, it is particularly preferred that the ear-hook headphone has a magnetic piece fixed in its slot structure, and that the temples of the glasses are made of stainless steel.
[0010] In addition, it is particularly preferred that the U-shaped clip is made of a skin-friendly rubber material.
[0011] Furthermore, it is particularly preferred that the bottom of the U-shaped clip is designed with an arc-shaped groove structure that conforms to the structure of the human nose.
[0012] Furthermore, it is particularly preferred that the vertical slide rail structure on the circuit integration frame is provided with a vertical insertion block structure; and the connecting block is provided with a vertical slot structure corresponding to the vertical insertion block structure.
[0013] Furthermore, it is particularly preferred that the connecting frame slides to the integrated circuit frame, and the integrated circuit frame is provided with a damping strip that provides sliding friction resistance to the connecting frame.
[0014] This invention discloses a pop-up quick-removal AR glasses. The glasses frame, equipped with an AR waveguide lens, is fixed to the rotation axis of a circuit integration frame via a rotating rod. The circuit integration frame and ear-hook headphones are connected to an electronic control integration compartment via a circuit system. The circuit integration frame is held in place by a U-shaped clip on the user's ordinary glasses. The ear-hook headphones and the AR waveguide lens together form an AR audio-visual synchronized viewing system. When the user experiences viewing discomfort, they only need to press a switch to control an electromagnet, permanent magnet, and torsion spring to quickly pop the AR waveguide lens from the user's line of sight, achieving a pop-up quick removal of the AR waveguide lens held in place on ordinary glasses.
[0015] The present invention provides a pop-up quick-release AR glasses that can be stably worn by the user when not wearing ordinary glasses, thanks to the temples on the integrated frame and the U-shaped clip, along with the ear-hook headphones. This also retains the pop-up quick-release function of the present invention.
[0016] The present invention provides a pop-up quick-remove AR glasses, which can adjust the vertical height of the U-shaped clip on the circuit integration frame to adapt to the shape of one's nose bridge structure, thereby improving the wearing stability of the pop-up quick-remove AR glasses of the present invention. Attached Figure Description
[0017] Figure 1 A three-dimensional structural schematic diagram of the present invention;
[0018] Figure 2 A three-dimensional structural diagram of the U-shaped clip of the present invention combined with ordinary glasses;
[0019] Figure 3 A three-dimensional structural diagram of the circuit integration frame of the present invention;
[0020] Figure 4 A schematic diagram of the three-dimensional structure of the rotating rod of the present invention;
[0021] Figure 5 A schematic diagram of the three-dimensional structure of the U-shaped clip of the present invention;
[0022] Figure 6 A three-dimensional structural diagram of the electromagnet of the present invention;
[0023] Figure 7 A three-dimensional structural diagram of the connecting block of the present invention;
[0024] Figure 8 A three-dimensional structural diagram of the temple of the eyeglasses of the present invention;
[0025] Figure 9 A three-dimensional structural diagram of the ear-hook earphone of the present invention;
[0026] Figure 10 A three-dimensional structural diagram of the combination of the eyeglass temples and the ear-hook headphones of the present invention.
[0027] Reference numerals in the drawings of this invention: 1-Electrical control integrated compartment, 11-First connecting wire, 12-Second connecting wire, 2-Ear-hook earphone, 201-Slot structure, 21-Magnetic piece, 3-Circuit integrated frame, 301-Vertical slide rail structure, 302-Vertical insertion block structure, 303-Longitudinal insertion block structure, 31-Rotating shaft, 32-Rotating rod, 33-Torsion spring, 34-Eyeglass frame, 35-Permanent magnet, 36-Circuit integrated rod, 37-Electromagnet, 38-Binocular miniature depth camera, 22-Switch board, 4-AR waveguide lens, 51-Connecting frame, 511-Wedge rod, 52-U-shaped clip, 5201-Anti-slip strip structure, 5202-Arc-shaped groove structure, 6-Ordinary glasses, 71-Connecting block, 7101-Vertical slot structure, 72-Eyeglass temple, 7201-Longitudinal slot structure. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments and the accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of the invention. Furthermore, descriptions of well-known structures and techniques are omitted in the following description to avoid unnecessarily obscuring the concept of the invention. Example 1
[0029] A type of pop-up, quick-release AR glasses, such as Figures 1-6As shown, the device includes an integrated electronic control compartment 1, ear-hook headphones 2, a circuit integration frame 3, a rotating shaft 31, a rotating rod 32, a torsion spring 33, an eyeglass frame 34, a permanent magnet 35, a circuit integration rod 36, an electromagnet 37, an AR waveguide lens 4, a connecting frame 51, and a U-shaped clip 52. The integrated electronic control compartment 1 integrates a main circuit control module and a battery pack module. Two ear-hook headphones, arranged symmetrically to each other, are electrically connected to the integrated electronic control compartment 1 via two first connecting wires 11. 2; A wiring integration frame 3 is electrically connected to the electrical control integration compartment 1 via a second connecting wire 12; a rotating shaft 31 is rotatably connected to the wiring integration frame 3; a rotating rod 32 is fixedly connected to the rotating shaft 31; two torsion springs 33 are fixedly connected between the rotating rod 32 and the wiring integration frame 3, and the torsion springs 33 are sleeved on the outer surface of the rotating shaft 31; an eyeglass frame 34 is fixedly connected to the rotating rod 32; two AR waveguide lenses 4 that are symmetrically arranged on the left and right sides are fixedly connected to the eyeglass frame 34; two... A permanent magnet 35; a circuit integration rod 36 is slidably connected to the circuit integration frame 3; the circuits in the circuit integration rod 36 are electrically connected to the circuits in the circuit integration frame 3; an electromagnet 37 corresponding to the number and position of the permanent magnets 35 is fixedly connected to the circuit integration rod 36; the electromagnet 37 is electrically connected to the second connecting wire 12 through the circuits in the circuit integration frame 3, and in the initial unpowered state, the permanent magnets 35 can firmly magnetically attract the iron core component in the electromagnet 37, and both torsion springs 33 are in a torsional state; a switch plate 22 for controlling the operation of the electromagnet 37 is fixedly connected to the ear-hook earphone 2, and the switch plate 22 uses a capacitive touch panel component; a connecting frame 51 is connected to the circuit integration frame 3; a U-shaped clip 52 for holding ordinary glasses 6 is fixedly connected to the connecting frame 51; the U-shaped clip 52 has several anti-slip clip structures 5201 inside; a binocular miniature depth camera 38 for spatial calculation is installed on the circuit integration rod 36.
[0030] When using the pop-up quick-release AR glasses of this invention, the user first puts the two ear-hook headphones 2 on the user's two ears respectively, and then clamps the U-shaped clip 52 on the circuit integration frame 3 onto the bridge of the user's ordinary glasses 6. At this time, the iron core component in the electromagnet 37 firmly magnetically attracts the permanent magnet 35, so that the two AR waveguide lenses 4 are aligned with the two ordinary lenses of the user's ordinary glasses 6 respectively, and the two torsion springs 33 are in a torsional state. The two AR waveguide lenses 4 and the two ear-hook headphones 2 together form an AR audio-visual synchronous viewing system.
[0031] When a user experiences discomfort while viewing the AR audio-visual content in the AR waveguide lens 4, the user only needs to quickly touch the capacitive touchpad component, which acts as a switch 22. At this time, the switch 22 controls the electromagnet 37 to quickly generate the same magnetic field as the permanent magnet 35, causing the permanent magnet 35 to generate a repulsive force on the electromagnet 37. Simultaneously, the torsion spring 33, which is in a torsional state, drives the rotating rod 32 and the connected eyeglass frame 34 to rotate upward under its own reset torque. This causes the rotating rod 32 to move the permanent magnet 35 away from the electromagnet 37, and the eyeglass frame 34 to quickly lift the two AR waveguide lenses 4 upward and out of the user's line of sight. The user does not need to remove the AR waveguide lenses 4 from the ordinary glasses 6 or directly remove the ordinary glasses 6. The quick removal action of the AR waveguide lenses 4 can be completed without the user having to remove them. The user can stop watching the AR audio-visual content immediately when they experience discomfort. Example 2
[0032] like Figures 1-9 As shown, based on Embodiment 1, this embodiment has a vertical slide rail structure 301 on the left and right sides of the circuit integration frame 3; a connecting block 71 is slidably connected to each of the two vertical slide rail structures 301 of the circuit integration frame 3; a temple 72 is rotatably connected to each of the two connecting blocks 71. The temple 72 uses a telescopic rod structure, and the length of the temple 72 can be adjusted by the telescopic rod structure so that users with different head circumferences can wear it comfortably; the circuit integration frame 3 has two vertical insertion block structures 303; a vertical slot structure 7201 corresponding to the vertical insertion block structure 303 is opened on each of the two temples 72; the two vertical insertion block structures 303 are respectively inserted into the vertical slot structures 7201 on the two temples 72, so that the two temples 72 are initially in a folded and stored state fixed on the circuit integration frame 3.
[0033] like Figure 5 and Figure 9 As shown, each of the two ear-hook headphones 2 has a slot structure 201; a magnet 21 is fixedly connected to each of the slot structures 201 of the two ear-hook headphones 2; both temples 72 are made of stainless steel; the U-shaped clip 52 is made of skin-friendly rubber; the bottom of the U-shaped clip 52 is designed with an arc-shaped groove structure 5202 that conforms to the structure of the human nose bridge; each of the two vertical slide rail structures 301 on the circuit integration frame 3 has a vertical insertion block structure 302 at its bottom; each of the two connecting blocks 71 has a vertical slot structure 7101 corresponding to the vertical insertion block structure 302.
[0034] When the user is not wearing ordinary glasses 6, the user first detaches the two temples 72 from the vertical insert structure 303 of the circuit integration frame 3, allowing the two temples 72 to rotate open towards the two ear-hook headphones 2. Then, the user pulls the two connecting blocks 71 downwards along the two vertical slide rail structures 301 of the circuit integration frame 3 until the vertical insert structure 302 in the vertical slide rail structure 301 of the circuit integration frame 3 is firmly inserted into the vertical slot structure 7101 of the connecting block 71. This allows the connecting block 71 to adjust the height of the temples 72 on the circuit integration frame 3. After the user puts the ear-hook headphones 2 on their ears, the user removes the two glasses from the circuit integration frame 3. The temples 72 are respectively secured in the slot structures 201 of the two ear-hook headphones 2, and the magnetic pieces 21 on the two ear-hook headphones 2 respectively magnetically fix the two temples 72, so that the temples 72 are firmly fixed to the ears with the help of the ear-hook headphones 2. The U-shaped clip 52 on the circuit integration frame 3 acts as a nose bridge and is firmly supported on the user's nose by the arc-shaped groove structure 5202. This allows the user to wear the AR glasses of the present invention stably without wearing ordinary glasses 6, relying on the temples 72 and the U-shaped clip 52 on the circuit integration frame 3 in conjunction with the ear-hook headphones 2. At the same time, the pop-up quick-removal function of the AR glasses of the present invention is retained.
[0035] In summary, when a user wears the pop-up quick-remove AR glasses of the present invention, since the temple 72 is firmly magnetically fixed in the slot structure 201 of the ear-hook earphone 2 by the magnet 21, the temple 72 will not detach from the slot structure 201 and the magnet 21 of the ear-hook earphone 2 due to rapid head shaking. Furthermore, the user only needs to press the switch plate 22 to complete the pop-up quick-remove action of the AR waveguide lens 4, thus avoiding damage to the AR waveguide lens 4. Example 3
[0036] like Figures 1-10 As shown, based on embodiment 2, the connecting frame 51 of this embodiment is slidably connected to the circuit integration frame 3, and the circuit integration frame 3 is provided with a damping strip that provides sliding friction resistance to the connecting frame 51. When the user moves the connecting frame 51 vertically along the damping strip on the circuit integration frame 3, the connecting frame 51 can adjust the vertical height of the U-shaped clamp 52 on the circuit integration frame 3.
[0037] When a user wears the pop-up quick-removal AR glasses of this invention directly without wearing ordinary glasses 6, they can adjust the height of the U-shaped clip 52 on the circuit integration frame 3 according to the above steps to adapt to their nose bridge structure shape, thereby improving the wearing stability of the pop-up quick-removal AR glasses of this invention.
[0038] Although the invention has been described with reference to exemplary embodiments, it should be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims should be given the broadest interpretation so as to cover all variations and equivalent structures and functions.
Claims
1. A pop-up, quick-release AR glasses, comprising an electronic control integrated compartment; the electronic control integrated compartment integrates a main circuit control module and a battery pack module; two ear-hook headphones are electrically connected to the electronic control integrated compartment via two first connecting wires; a wiring integrated frame is electrically connected to the electronic control integrated compartment via a second connecting wire; characterized in that... Also includes a rotating shaft; the line integrated frame is rotatably connected with the rotating shaft; the rotating shaft is fixedly connected with a rotating rod; the torsion spring is fixedly connected between the rotating rod and the line integrated frame; the rotating rod is fixedly connected with the glasses frame; the glasses frame is fixedly connected with two AR optical waveguide lenses; the rotating rod is fixedly connected with a permanent magnet; the line integrated frame is fixedly connected with a line integrated rod; the lines in the line integrated rod are electrically connected with the lines in the line integrated frame; the line integrated rod is fixedly connected with electromagnets corresponding in number and position to the permanent magnet; the electromagnets are electrically connected with the second connecting wire through the lines in the line integrated frame; the line integrated frame is connected with a connecting frame; the connecting frame is fixedly connected with a U-shaped clamp; the over-ear earphone is provided with a switch board for controlling the electromagnets, and the line integrated rod is provided with a binocular micro depth camera for spatial calculation; Two vertical slide rail structures are formed in the line integrated frame; the line integrated frame is slidably connected with a connecting block; the connecting block is rotatably connected with a glasses leg; the line integrated frame is provided with two longitudinal block structures; the glasses leg is provided with a longitudinal slot structure corresponding to the longitudinal block structure; the longitudinal block structure is inserted into the longitudinal slot structure on the corresponding glasses leg; The over-ear earphone is provided with a clamping groove structure for hanging the glasses leg; The switch board uses a capacitive touch panel component; After the user wears the over-ear earphone on both ears, the user clamps the two glasses legs on the line integrated frame into the clamping groove structures of the two over-ear earphones respectively, and magnetically fixes the two glasses legs with the two magnet pieces on the two over-ear earphones respectively, so that the glasses legs are fixed on the ears with the help of the over-ear earphones, and the U-shaped clamp on the line integrated frame is firmly arranged on the user's nose as a nose bridge, realizing that the user can wear the AR glasses stably by cooperating the over-ear earphone with the glasses legs and the U-shaped clamp on the line integrated frame without wearing ordinary glasses, while retaining the pop-up quick removal function of the AR glasses.
2. The snap-on quick release AR glasses as claimed in claim 1, wherein, The U-shaped clamp is provided with a plurality of anti-slip clamping strip structures.
3. The snap-on quick release AR glasses of claim 1, wherein, The clamping groove structure of the over-ear earphone is fixedly connected with a magnet piece, and the glasses leg uses stainless steel material.
4. The snap-on quick release AR glasses of claim 1, wherein, The U-shaped clamp uses rubber material with skin-friendly effect.
5. The snap-on quick release AR glasses of claim 1, wherein, The bottom of the U-shaped clamp is provided with an arc-shaped groove structure adapted to the human nose bridge structure.
6. The snap-on quick release AR glasses of claim 1, wherein, The vertical slide rail structure on the line integrated frame is provided with a vertical block structure; the connecting block is provided with a vertical slot structure corresponding to the vertical block structure.
7. A snap-on AR eyewear according to any one of claims 1-6, characterized in that, The connecting frame is slidably connected with the line integrated frame, and the line integrated frame is provided with a damping strip providing sliding friction resistance to the connecting frame.
Citation Information
Patent Citations
Multi-functional glasses
CN103091857A
AR (Augmented Reality) device adaptive to common glasses
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