WO2021135724A1 - 镜架、智能眼镜、镜腿、镜框和镜框总成 - Google Patents

镜架、智能眼镜、镜腿、镜框和镜框总成 Download PDF

Info

Publication number
WO2021135724A1
WO2021135724A1 PCT/CN2020/130881 CN2020130881W WO2021135724A1 WO 2021135724 A1 WO2021135724 A1 WO 2021135724A1 CN 2020130881 W CN2020130881 W CN 2020130881W WO 2021135724 A1 WO2021135724 A1 WO 2021135724A1
Authority
WO
WIPO (PCT)
Prior art keywords
electrical connection
temple
spectacle frame
electrical
electronic unit
Prior art date
Application number
PCT/CN2020/130881
Other languages
English (en)
French (fr)
Inventor
余林蔚
毛春静
王久兴
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2021135724A1 publication Critical patent/WO2021135724A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/02Bridges; Browbars; Intermediate bars
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B27/0176Head mounted characterised by mechanical features
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/10Electronic devices other than hearing aids
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B2027/0178Eyeglass type

Definitions

  • This application relates to the field of head-mounted display technology, and in particular to a spectacle frame, smart glasses, spectacle legs, spectacle frame and spectacle frame assembly.
  • Augmented reality technology is a new technology that “seamlessly” integrates real-world information and virtual world information. It combines physical information (visual information, sound, taste, Touch, etc.), through computer and other science and technology, simulation and then superimposed, the virtual information is applied to the real world, perceived by the human senses, so as to achieve a sensory experience beyond reality.
  • a cutting-edge application of augmented reality technology is augmented reality smart glasses. Using smart glasses as a carrier, combining a variety of virtual technical information with real operations, can produce a huge boost in many fields such as training, medical care, military, and industrial production, and is getting more and more attention and attention.
  • augmented reality smart glasses usually include a frame, lenses, and two temples.
  • the lenses are arranged in the frame.
  • One ends of the two temples are rotatably connected to the left and right ends of the frame through a connecting shaft, and the two temples and the frame There is a non-detachable connection between them.
  • the signal transmission between the electronic unit on the frame and the electronic unit on the temple is wired transmission, mainly by passing the cable through the connecting shaft to realize the electronic unit on the frame Electrical connection with the electronic unit on the temple.
  • the augmented reality smart glasses with this structure are non-detachable connection between the two temples and the frame, so that the frame or the temples cannot be replaced separately, resulting in a single style of the smart glasses, which is not compatible with different head shapes and head circumferences.
  • the user’s wearing comfort and aesthetics are optional; at the same time, the signal transmission is realized by passing the cable through the connecting shaft, so that when the temples are repeatedly switched between the unfolded state and the folded state, the The cable of the connecting shaft is bent many times, which is easy to cause it to break, which makes the use reliability of the smart glasses low, and the cable passing through the connecting shaft interferes with the rotation of the temples, thereby causing resistance to the rotation of the temples. Larger, causing inconvenience to use.
  • the purpose of this application is to solve the problems that the smart glasses in the prior art cannot be compatible with the wearing comfort and aesthetic selectivity requirements of users with different head shapes and head circumferences, low reliability in use, and inconvenience in use. Therefore, the embodiments of the present application provide a spectacle frame, smart glasses, temples, spectacle frame, and spectacle frame assembly, which can be compatible with the wearing comfort and aesthetic selectivity requirements of users of different head shapes and head circumferences, and the reliability of use is relatively high. High and easy to use.
  • the embodiment of the application provides a spectacle frame, which includes a spectacle leg and a spectacle frame, the spectacle leg is provided with a first electronic unit, the spectacle frame is provided with a second electronic unit, and one end of the spectacle leg can be connected through a connecting shaft Rotatingly connected to one end of the spectacle frame, so that the temple can be switched between the unfolded use state and the folded state, and one end of the spectacle leg is detachably connected to one end of the spectacle frame through the connecting shaft unit;
  • the electrical connection device includes a first electrical connection portion and a second electrical connection portion correspondingly provided.
  • the first electrical connection portion is provided at One end of the temples is electrically connected to the first electronic unit, and the second electrical connection part is provided at one end of the mirror frame and is electrically connected to the second electronic unit;
  • the first electrical connection part When the temple is in the unfolded use state, the first electrical connection part is electrically connected to the corresponding second electrical connection part; when the temple is in the folded and retracted state, the first electrical connection part is electrically connected to the second electrical connection part; An electrical connection part is electrically disconnected from the corresponding second electrical connection part.
  • the electrical signal conduction between the first electronic unit located in the temple and the second electronic unit located in the mirror frame can be realized without passing the cable through the connecting shaft, and the power signal can be realized. And the transmission of low-frequency signals. This reduces the design difficulty of the connecting shaft, increases design flexibility, and improves the reliability of the frame, avoiding the interference of the cable passing through the connecting shaft on the rotation of the temple, thereby improving the feel when the temple is rotating. It is more convenient to use.
  • the interchangeable design of the temple and the frame can be realized, and only the electrical connection device of the connection part and the signal of the internal wiring of the temple and the frame need to be shared and kept consistent.
  • the temples and frames of different sizes and different appearances are designed, so that users can choose the matching of temples and frames of different sizes and different appearances according to their head size and aesthetic preferences.
  • Any assembly between the temples and the frames can be realized, so as to assemble different styles and different sizes of frames, which can be compatible with the wearing comfort and aesthetic choice requirements of users with different head shapes and head circumferences.
  • users can prepare several commonly used temples and frames in advance when purchasing, so that when they need to be used, they can freely change different styles of temples or frames according to the actual needs of different occasions, so as to match different effects.
  • the replacement operation is convenient and quick. When it is damaged, it is convenient to replace the temple or frame separately, without replacing the entire frame.
  • the first electrical connection portion includes at least one first electrical sub-connection portion
  • the second electrical connection portion includes at least one second electrical sub-connection portion.
  • the second sub-electric connection part is correspondingly arranged.
  • the first electrical sub-connecting portion and the corresponding second electrical sub-connecting portion are elastically electrically connected and provided to the mirror at the same time.
  • the first sub-electric connection part and the corresponding second sub-electric connection part can still contact and be elastically electrically connected, and can be provided to
  • the temples have a resilience. Therefore, the holding force of the temples against the head of the user can be ensured when the smart glasses are worn, and the temples have a certain rotation margin, thereby increasing the wearing compatibility and comfort of the user.
  • one of the first electrical sub-connection portion and the corresponding second electrical sub-connection portion is an elastic electrical connection portion
  • the other is an elastic electrical connection portion or an inelastic electrical connection portion
  • the elastic electrical connection portion is an elastic electrical connection terminal or a conductive elastic sheet; and/or, the non-elastic electrical connection portion is an inelastic electrical connection terminal or a conductive sheet.
  • one end of the first electrical sub-connecting portion for electrical connection with the corresponding second electrical sub-connecting portion protrudes from the The end surface of one end of the temple, the end of the second electrical sub-connecting portion for electrical connection with the corresponding first electrical sub-connecting portion is recessed on the end surface of the one end of the mirror frame, or One end of the first electrical sub-connecting portion for electrical connection with the corresponding second electrical sub-connecting portion is recessed on the end surface of one end of the temple, and the second electrical sub-connecting portion is used to correspond to The one end of the first electrical sub-connection part that is electrically connected protrudes from the end surface of one end of the mirror frame.
  • the first electrical connection portion includes a plurality of the first electrical sub-connection portions
  • the second electrical connection portion includes a plurality of the second electrical sub-connection portions
  • a plurality of the first electrical sub-connection portions are arranged at intervals in a direction parallel to the axial direction of the connecting shaft
  • a plurality of the second electrical sub-connecting portions are also arranged at intervals in a direction parallel to the axial direction of the connecting shaft.
  • the connecting shaft is a screw.
  • the inner surface of one end of the mirror leg is provided with a protruding first boss; the inner surface of one end of the mirror frame is provided with two protruding second bosses, two The second bosses are arranged at intervals along the axial direction of the screw, and are formed with accommodating spaces;
  • Part of the first boss is accommodated in the accommodating space, and the screw penetrates the upper boss and the first boss of the two second bosses from top to bottom, and passes through the two bosses.
  • the screw is screwed into the threaded hole in the lower boss of the second boss.
  • the rotation of the temples can be realized very conveniently, and it is convenient for the temples and the frame to be disassembled or replaced separately.
  • the frame includes a processing device integrated in the temple to form a part of the first electronic unit located in the temple, or the processing device is integrated in the temple
  • the spectacle frame constitutes a part of the second electronic unit;
  • the first electronic unit includes an audio device, and the audio device is arranged at a position of the temple near the user's ear when worn;
  • the first electrical connection portion is electrically connected to the corresponding second electrical connection portion, and the processing device generates a control signal, Turn on the audio device;
  • the first electrical connection portion is electrically disconnected from the corresponding second electrical connection portion, and the processing device generates another control Signal to turn off the audio device or put the audio device in a standby state.
  • the user’s wearing state is judged by the conduction and disconnection between the first electrical connection part and the second electrical connection part of the electrical connection device, and the audio device is automatically shut down/standby and Turn on; you can cancel the distance sensor to save costs.
  • the spectacle frame includes two temples, one end of the two temples is respectively rotatably and detachably connected to the left and right ends of the spectacle frame through a connecting shaft,
  • the electrical connection device is provided at one end of each temple and the corresponding end of the spectacle frame.
  • a frame wiring is provided in the spectacle frame, and the second electronic unit is electrically connected to the spectacle frame wiring;
  • the connecting device is electrically connected to the wiring of the spectacle frame, and is electrically connected between the first electronic units of the two temples through the two electrical connecting devices and the wiring of the spectacle frame.
  • the signal conduction between the first electronic units of the two temples on the left and right can increase the stacking possibility and endurance of smart glasses (mainly for the two temples
  • the first electronic unit includes a battery module).
  • a temple wire is provided in each temple, the first electronic unit is electrically connected to the temple wire, and the first electrical connection portion of the electrical connection device is connected to One end of the corresponding temple wire is electrically connected, and the second electrical connection part of the electrical connection device is electrically connected with one end of the spectacle frame wire.
  • each of the temples is integrated with a battery module, and the battery module constitutes a part of the corresponding first electronic unit.
  • the first electronic unit is integrated in the temple, and the second electronic unit is integrated in the mirror frame.
  • the lens frame is integrated with a battery module, the battery module forms a part of the second electronic unit; the second electronic unit further includes a wireless charging coil, the wireless charging coil includes a first coil part And the second coil part, the first coil part and the second coil part are respectively arranged around the two lenses of the frame, and the first coil part and the second coil part are connected in series, so that the The voltage generated by the first coil part and the second coil part are connected in series to charge the battery module.
  • the two coil parts can be arranged to be charged at the same time, the charging efficiency is high, and the induction coil of the corresponding charging box has good positioning and compatibility.
  • the first electrical connection portion and the second electrical connection portion are both located outside the connection shaft;
  • the first electrical connection part when the temple is in the unfolded use state, the first electrical connection part is in contact with the corresponding second electrical connection part; when the temple is in the folded and retracted state, The first electrical connection part is disconnected from the corresponding second electrical connection part.
  • the embodiment of the present application provides a smart glasses, and the smart glasses include:
  • the lens is fixed to the frame of the frame.
  • the smart glasses using the frame can realize the first electronic unit on the temple and the second electronic device on the frame without passing a cable through the connecting shaft.
  • the electrical signals between the units are turned on to realize the transmission of power signals and low-frequency signals. This reduces the difficulty of connecting shaft design, increases design flexibility, and improves the reliability of smart glasses. It avoids the interference of the cable passing through the connecting shaft on the rotation of the temples, thereby improving the hand feel when the temples are rotating. It is more convenient to use.
  • the temples and frames of different sizes and different appearances are designed, so that users can choose different sizes and different appearances of the temples and frames according to their head size and aesthetic preferences. With matching, you can realize any assembly between the temples and the frames, so as to assemble smart glasses of different styles and sizes, which can be compatible with the wearing comfort and aesthetics of users with different head shapes and head circumferences. .
  • users can prepare several commonly used temples and frames in advance when purchasing, so that when they need to be used, they can freely change different styles of temples or frames according to the actual needs of different occasions, so as to match different effects.
  • the replacement operation is convenient and quick. When damaged, it is convenient to replace the temples or frames separately, without the need to replace the entire smart glasses.
  • the lens has a display unit capable of displaying images
  • the first electrical connection portion is electrically connected to the corresponding second electrical connection portion, and the processing device of the smart glasses generates a Control signal to turn on the display unit;
  • the first electrical connection portion is electrically disconnected from the corresponding second electrical connection portion, and the processing device generates another control Signal to turn off the display unit or put the display unit in a standby state.
  • the smart glasses are augmented reality smart glasses or virtual reality smart glasses.
  • the embodiment of the present application also provides a temple, integrated with an electronic unit, one end of the temple is rotatably connected and detachably connected to one end of the frame through a connecting shaft, so that the temple can be Switch between unfolded use state and folded retracted state;
  • One end of the temple is provided with an electrical connection part, the electrical connection part is electrically connected to the electronic unit, and the electrical connection part located on the temple is used for electrical connection with one end part of the mirror frame Ministry of cooperation;
  • the electrical connection part located on the temple When the temple is in the unfolded use state, the electrical connection part located on the temple is electrically connected to the corresponding electrical connection part located at one end of the mirror frame, so that it is integrated into the temple
  • the electronic unit is electrically connected to the electronic unit integrated in the spectacle frame; when the temple is in the folded and retracted state, the electrical connection part located on the spectacle leg and the corresponding one located in the spectacle frame
  • the electrical connection part at one end is electrically disconnected, so that the electronic unit integrated in the temple is electrically disconnected from the electronic unit integrated in the mirror frame.
  • the electrical connection portion located on the temple includes at least one sub-electric connection portion
  • the electrical connection portion located on the mirror frame includes at least one sub-electric connection portion located on all the temples.
  • the sub-electric connection part is used to correspond to the sub-electric connection part located at one end of the spectacle frame;
  • the electrical sub-connecting part located at the temples and the corresponding electrical sub-connecting part at one end of the spectacle frame are elastically electrically connected, and at the same time provide Give the temple a resilience.
  • the electrical sub-connecting portion located on the temple is an elastic electrical connecting portion.
  • the elastic electrical connection part is an elastic electrical connection terminal or a conductive elastic sheet.
  • one end of the electrical sub-connection part located on the temple protrudes from the end surface of one end of the temple.
  • the inner surface of one end of the temple is provided with a protruding boss, and the boss is used to rotate and detachably connect with one end of the corresponding mirror frame through the connecting shaft.
  • the embodiment of the present application also provides a spectacle frame integrated with an electronic unit.
  • the two ends of the spectacle frame are respectively rotatably and detachably connected to one end of the two temples through a connecting shaft, so that the two temples are rotatably and detachably connected. Both can be switched between the unfolded and used state and the folded and retracted state;
  • Both ends of the spectacle frame are provided with electrical connection portions, the electrical connection portions are electrically connected to the electronic unit, and the electrical connection portions located at both ends of the spectacle frame are used to connect to the two The electrical connection parts of the temples are matched;
  • the electrical connection parts located at both ends of the temples are electrically connected to the electrical connection parts at the two temples, so that the parts integrated in the temples
  • the electronic unit is electrically connected to the electronic unit integrated in each of the temples; when the temples are in the folded and retracted state, the electrical connection parts located at the two ends of the mirror frame are connected to the two
  • the electrical connection part of each of the temples is electrically disconnected, so that the electronic unit integrated in the mirror frame is disconnected from the electrical signal of the electronic unit integrated in each of the temples.
  • the electrical connection part located in the mirror frame includes at least one sub-electric connection part
  • the electrical connection part located in the temple includes at least one sub-electric connection part located at both ends of the mirror frame.
  • the electrical sub-connecting parts of the part are used to respectively correspond to the electrical sub-connecting parts located on the two temples;
  • the electrical sub-connecting part located at the temples and the corresponding electrical sub-connecting part at one end of the spectacle frame are elastically electrically connected, and at the same time provide Give the temple a resilience.
  • the electrical sub-connecting portion located in the lens frame is an inelastic electrical connecting portion
  • the inelastic electrical connecting portion is an inelastic electrical connecting terminal or a conductive sheet.
  • one end of each of the electrical sub-connecting parts of the mirror frame is recessed from the end surface of the corresponding end of the mirror frame.
  • the connecting shafts are arranged at intervals in a direction parallel to the axial direction.
  • each end of the lens frame is provided with two protruding bosses, and the two bosses are spaced apart along the axial direction of the connecting shaft, and an accommodation space is formed;
  • the connecting shaft penetrates the upper boss of the two bosses of the mirror frame and the boss of the temple from top to bottom. And screw into the connecting shaft through the threaded holes in the lower boss of the two bosses of the mirror frame.
  • the spectacle frame is integrated with a battery module, and the battery module forms a part of the electronic unit integrated in the spectacle frame;
  • the electronic unit integrated in the spectacle frame includes a wireless charging coil, and the wireless
  • the charging coil includes a first coil part and a second coil part, the first coil part and the second coil part are respectively arranged around two lenses, and the first coil part and the second coil part are connected in series Connected so that the voltage generated by the first coil part and the second coil part are connected in series to charge the battery module.
  • the embodiment of the present application also provides a spectacle frame assembly, the spectacle frame assembly includes:
  • the spectacle frame provided by any one of the above embodiments.
  • the lens, the lens is fixed to the frame.
  • the spectacle frame assembly of the spectacle frame provided in the above embodiments is adopted.
  • the spectacle frame assembly of different sizes and different appearances is designed, so that the user can according to his own head choose different sizes and different appearance frame assemblies according to the size and aesthetic preferences, you can realize the arbitrary assembly between the temples and each frame assembly, so as to assemble smart glasses of different styles and different sizes, which can be compatible with different Users of head shape and head circumference have optional requirements for wearing comfort and aesthetics.
  • the user can prepare the commonly used temples and several frame assemblies in advance when purchasing, so that when they need to be used, they can freely change different styles of temples or frames according to the actual needs of different occasions, so as to match different types of temples or frames.
  • the effect, the replacement operation is convenient and quick. When damaged, it is convenient to replace the temple or the frame assembly separately, without the need to replace the entire smart glasses.
  • FIG. 1 is a schematic diagram (1) of a three-dimensional structure of an implementation of smart glasses according to an embodiment of the application, in which two temples are in an unfolded use state;
  • FIG. 2 is a schematic diagram of an exploded structure of the smart glasses in FIG. 1;
  • FIG. 3 is a schematic diagram (2) of a three-dimensional structure of an implementation of smart glasses according to an embodiment of the application, in which two temples are in a folded state;
  • FIG. 4 is a schematic diagram of a top view structure of an implementation of smart glasses according to an embodiment of the application, in which two temples are in an unfolded use state, and the figure shows the wiring of the spectacle frame and the wiring of the temples;
  • FIG. 5 is a schematic structural diagram of an implementation of smart glasses according to an embodiment of the application, in which the two temples are in an unfolded use state, and the viewing angle is viewed from the front of the lens, and the wireless charging coil is shown in the figure;
  • Fig. 6 is a schematic diagram of an enlarged structure of part A in Fig. 3;
  • FIG. 7 is a schematic diagram of the internal structure of an embodiment of the electrical connection device part of the smart glasses according to the embodiment of the application, which shows the first electrical connection portion and the first electrical connection portion provided on the temple when the temple is in an unfolded use state.
  • a matching structure provided between the second electrical connection parts of the spectacle frame, and the first electrical connection part adopts an elastic probe structure;
  • FIG. 8 is a schematic diagram of a top view structure of an embodiment of the smart glasses according to an embodiment of the application, in which one of the temples is in an unfolded state of use, and the other temple is in a folded state;
  • Fig. 9 is a schematic diagram of an enlarged structure of part B in Fig. 8;
  • FIG. 10 is a schematic diagram of the internal structure of another embodiment of the electrical connection device portion of the smart glasses according to the embodiment of the application, which shows the first electrical connection portion provided on the temple and the second electrical connection portion provided on the frame
  • the mating structure between the two, and the first electrical connection part adopts a shrapnel structure
  • FIG. 11 is a schematic top view of the structure of the electrical connection device in FIG. 10, in which the first electrical connection portion provided on the temple and the second electrical connection portion provided on the mirror frame are in a disengaged state.
  • 200 mirror frame; 210: one end; 211: inner side surface; 212: end surface; 220: second boss; 230: mirror frame wiring; 240: circuit board;
  • 300 temple; 310: one end; 311: inner side; 312: end face; 320: first boss; 330: mirror leg wiring; 340: circuit board;
  • 500 electrical connection device; 510: first electrical connection part; 511: first sub-electric connection part; 512: needle; 513: needle tube; 514: spring; 520: second electrical connection part; 521: second sub-electric connection unit;
  • 600 wireless charging coil
  • 610 first coil part
  • 620 second coil part
  • L1 The length direction of one end of the temple
  • L2 The length direction of one end of the frame.
  • connection should be understood in a broad sense, unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • connection should be understood in a broad sense, unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • the specific meanings of the above terms in this application can be understood under specific circumstances.
  • FIG. 1 shows a schematic diagram of a three-dimensional structure of an implementation of the smart glasses 100 according to an embodiment of the present application, in which two temples 300 are in an unfolded use state.
  • the smart glasses 100 can be normally worn on the user's head.
  • Fig. 2 shows a schematic diagram of an exploded structure of an embodiment of the smart eyeglass 100 according to the embodiment of the present application, in which two temples 300 are in an unfolded use state.
  • FIG. 3 shows a schematic diagram of a three-dimensional structure of an implementation of the smart glasses 100 according to an embodiment of the present application, in which two temples 300 are in a folded state. When the two temples 300 are in the folded and retracted state, the two temples 300 are stacked on the frame 200, and the smart glasses 100 can be stored in the glasses case.
  • the smart glasses 100 When the smart glasses 100 are worn on the user's head, the user can see the images presented by the display unit (not shown in the figure) of the smart glasses 100.
  • the smart glasses 100 are augmented reality smart glasses (AR smart glasses), which can display virtual images for the user while watching the real world scene, and the user can also interact with the virtual images to achieve the effect of augmented reality. .
  • AR smart glasses augmented reality smart glasses
  • the embodiments of the present application take the smart glasses 100 as augmented reality smart glasses as an example for introduction, but some implementations of the embodiments of the present application are not limited to augmented reality smart glasses, and may also be other smart glasses.
  • VR smart glasses virtual reality smart glasses
  • MR mixed reality
  • the smart glasses 100 includes a frame and lenses 700.
  • the spectacle frame includes spectacle legs 300 and spectacle frame 200.
  • the lens 700 is fixed to the lens frame 200 and constitutes a lens frame assembly.
  • each temple 300 is provided with an electronic unit (not shown in the figure).
  • the electronic unit integrated in one of the temples 300 is defined as the first electronic unit, and the electronic unit integrated in the other temple 300 is defined as the third electronic unit.
  • the mirror frame 200 is also provided with an electronic unit (not shown in the figure).
  • the electronic unit integrated in the mirror frame 200 is defined as the second electronic unit.
  • the structural composition of the third electronic unit can be the structural composition of the first electronic unit described in any of the embodiments of the present application, and the third electronic unit is integrated with the third electronic unit.
  • the matching structure of the temple 300 of the unit may adopt the matching structure of the first electronic unit and the temple 300 integrated with the first electronic unit described in any of the embodiments of the present application.
  • the structural composition of the third electronic unit may be the same as or different from the structural composition of the first electronic unit.
  • the mating structure of the third electronic unit and the temple 300 integrated with the third electronic unit may be the same as or different from the mating structure of the first electronic unit and the temple 300 integrated with the first electronic unit.
  • only one of the two temples 300 may be provided with an electronic unit.
  • the definition of the electronic unit integrated in this temple 300 is Is the first electronic unit, and the structural composition of the first electronic unit may adopt the structural composition of the first electronic unit described in any of the embodiments of the present application, and the first electronic unit and the temple integrated with the first electronic unit
  • the mating structure of 300 can adopt the mating structure of the first electronic unit and the temple 300 integrated with the first electronic unit described in any of the embodiments of the present application.
  • the electronic unit integrated in this temple 300 is also defined as the first electronic unit.
  • the structural composition of the first electronic unit can adopt the structural composition of the first electronic unit described in any of the embodiments of the present application, and the matching structure of the first electronic unit and the temple 300 integrated with the first electronic unit can be adopted The matching structure of the first electronic unit and the temple 300 integrated with the first electronic unit described in any of the embodiments of the present application.
  • the matching structure refers to the interaction between the components and the components that cooperate with each other (or between the electronic unit and the electronic unit that cooperate with each other, or between the components and the electronic unit that cooperate with each other).
  • the position relationship, the connection relationship, the position relationship may be a position relationship on a mechanical structure, or a position relationship on a circuit, and the connection relationship may be a mechanical connection relationship or an electrical connection relationship.
  • the specific meaning of the matching structure in the present application can be understood under specific circumstances.
  • one end 310 of one of the temples 300 is rotatably connected to one end 210 of the frame 200 through a connecting shaft 400, so that one of the temples 300 can be used in the unfolded state and folded and retracted. Switch between states.
  • One end 310 of one of the temples 300 is detachably connected to one end 210 of the spectacle frame 200 through a connecting shaft 400.
  • An electrical connection device 500 is provided between one end 310 of one of the temples 300 and one end 210 of the spectacle frame 200.
  • the electrical connection device 500 includes a first electrical connection portion 510 and a second electrical connection portion 520 provided correspondingly.
  • the first electrical connection part 510 is disposed at one end 310 of one of the temples 300 and is electrically connected to the first electronic unit.
  • the second electrical connection part 520 is disposed at one end 210 of the spectacle frame 200 and is electrically connected to the second electronic unit.
  • the first electrical connection portion 510 and the second electrical connection portion 520 are both located outside the connection shaft 400 and are provided separately from the connection shaft 400. It should be noted that in this embodiment, the first electrical connection portion 510 does not belong to a part of the first electronic unit, and the second electrical connection portion 520 does not belong to a part of the second electronic unit.
  • the first electrical connection portion 510 is electrically connected to the corresponding second electrical connection portion 520, so that the first electronic unit located in the one of the temples 300 and the first electronic unit located in the mirror frame 200 The two electronic units are electrically connected to realize signal transmission between the first electronic unit and the second electronic unit.
  • one of the temples 300 is expanded relative to the spectacle frame 200 and can be worn on the user's ears.
  • the first electrical connection portion 510 is electrically disconnected from the corresponding second electrical connection portion 520, so that the first electronic unit located on the one of the temples 300 is in the mirror frame 200
  • the electrical signal of the second electronic unit is disconnected, and the signal transmission between the first electronic unit and the second electronic unit cannot be realized.
  • one of the temples 300 is folded relative to the spectacle frame 200.
  • the first electrical connection portion 510 and the corresponding second electrical connection portion 520 are in contact, so that the first electrical connection portion 510 and the second electrical connection portion 520 are in contact with each other. Electric connection.
  • the first electrical connection portion 510 and the corresponding second electrical connection portion 520 are disconnected, so that the electrical signals of the first electrical connection portion 510 and the second electrical connection portion 520 are disconnected.
  • the first electrical connection portion 510 and the corresponding second electrical connection portion 520 can also be connected in other ways to achieve electrical signal connection, for example, by providing photoelectric
  • the sensor (not shown in the figure) detects the relative arrangement of the first electrical connection portion 510 and the second electrical connection portion 520, and the processing device (not shown in the figure) of the smart glasses 100 according to the detected first electrical connection portion 510
  • the relative position with the second electrical connection portion 520 makes the electrical signals of the first electrical connection portion 510 and the second electrical connection portion 520 connected or disconnected, for example, when one of the temples 300 rotates in the unfolding direction relative to the frame 200
  • the photoelectric sensor sends a sensing signal to the processing device, which makes the first electrical connection portion 510 and the second electrical connection portion
  • the electrical signal of 520 is connected; when one of the temples 300 is rotated relative to the frame 200 in the folding direction (the folding direction is
  • the present application realizes the mechanical connection of one of the temples 300 and the frame 200 through the connecting shaft 400, so that one of the temples 300 can rotate relative to the frame 200, and realizes that one of the temples 300 is between the unfolded use state and the folded and retracted state.
  • One of the temples 300 can be detachably connected to the frame 200, so that one of the temples 300 and the frame 200 can be detached or replaced respectively.
  • the first electrical connection portion 510 and the corresponding The second electrical connection portion 520 is electrically connected to realize the electrical signal conduction between the first electronic unit located in one of the temples 300 and the second electronic unit located in the mirror frame 200, when one of the temples 300 is in folded use state ,
  • the first electrical connection portion 510 and the corresponding second electrical connection portion 520 are electrically disconnected, so that the electrical signal between the first electronic unit located in one of the temples 300 and the second electronic unit located in the mirror frame 200 is disconnected, thereby
  • the electrical signal conduction between the first electronic unit located in one of the temples 300 and the second electronic unit located in the mirror frame 200 can be realized without passing a cable through the connecting shaft 400, and the power signal and low-frequency signal (such as Audio signal, etc.).
  • temples 300 and the frame 200 can be realized, and only the structure and the electrical connection mode of the first electrical connection portion 510 and the second electrical connection portion 520 of the electrical connection device 500 of the connection part need to be consistent.
  • temples 300 and frames 200 of different sizes and different appearances are designed, so that users can choose temples 300 of different sizes and appearances according to their head size and aesthetic preferences
  • Matching with the frame 200 can realize the arbitrary assembly between the temples 300 and the frames 200, so as to assemble different styles and sizes of frames and smart glasses 100, which can be compatible with users of different head shapes and head circumferences. Selective requirements for wearing comfort and aesthetics.
  • the user can prepare several commonly used temples 300 and frames 200 in advance, so that when they need to be used, they can freely change different styles of temples 300 or frames 200 according to the actual needs of different occasions, so as to match Different effects are produced, and the replacement operation is convenient and quick. When damaged, it is convenient to replace the temple 300 or the frame 200 separately, without the need to replace the entire frame or the smart glasses 100.
  • This application is mainly applied to user-customized size and appearance, and scenes where the temple 300 and the frame 200 have electrical connection requirements.
  • the structure of the other temple 300 may adopt the structure of one of the temples 300 described in any of the embodiments of the present application.
  • An electrical connection device 500 is also provided between the other temple 300 and the spectacle frame 200, and the matching structure between the other temple 300 and the spectacle frame 200 can adopt one of the temples 300 and the spectacle frame 200 described in any of the embodiments of the present application.
  • the matching structure between the spectacle frames 200 is also provided between the other temple 300 and the spectacle frame 200, and the matching structure between the other temple 300 and the spectacle frame 200 can adopt one of the temples 300 and the spectacle frame 200 described in any of the embodiments of the present application.
  • the other temple 300 and one of the temples 300 adopt a symmetrical design and structure. And use basically the same weight and weight distribution to maximize comfort.
  • An electrical connection device 500 is also provided between the other temple 300 and the frame 200.
  • the matching structure between the other temple 300 and the mirror frame 200 is the same as the matching structure between one of the temples 300 and the mirror frame 200.
  • the structure of the two temples 300 is generally symmetrical, and can be the same or different in mirror image; the matching structure between the two temples 300 and the frame 200 can be the same or different, that is, In other words, the structure of the two electrical connection devices 500 may be the same or different.
  • one end 310 of the two temples 300 is respectively rotatably and detachably connected to the left and right end 210 of the spectacle frame 200 via a connecting shaft 400. That is, one end 310 of the temple 300 on the left side of the smart glasses 100 is rotatable and detachably connected to the end of the left side of the glasses frame 200 through a connecting shaft 400, and the end 310 of the temple 300 on the right side of the smart glasses 100 The one end 310 is also rotatably and detachably connected to the end 210 on the right side of the lens frame 200 through a connecting shaft 400.
  • the left side of the smart glasses 100 is the side of the smart glasses 100 close to the left side of the user's head
  • the right side of the smart glasses 100 is The side of the smart glasses 100 close to the right side of the user’s head
  • the end 210 on the left side of the frame 200 is the end of the frame 200 close to the left side of the user’s head
  • the end 210 on the right side of the frame 200 is the end of the frame 200 Near the end on the right side of the user's head.
  • an electrical connection device 500 is provided between one end 310 of each temple 300 and the corresponding end 210 of the spectacle frame 200.
  • the electrical connection device 500 between the two temples 300 and the frame 200 is defined as a left electrical connection device and a right electrical connection device, respectively. That is, the electrical connection device 500 between the end 310 of the temple 300 on the left side of the smart glasses 100 and the end 210 of the left side of the frame 200 is defined as the left electrical connection device, and the electrical connection device 500 is located on the right side of the smart glasses 100.
  • the electrical connection device 500 between the one end 310 and the right end 210 of the spectacle frame 200 is defined as a right electrical connection device.
  • the temples 300 and the frame 200 are usually made of lightweight materials, such as composite materials, lightweight alloys, carbon fiber composite materials, and so on.
  • the smart glasses 100 includes a pair of temples 300, that is, two temples 300, as an example for introduction, but the implementation of the embodiment of the present application is not limited to the use of two spectacles.
  • the smart glasses 100 with the legs 300 may also be the smart glasses 100 with one temple 300.
  • FIG. 4 is a schematic top view of an embodiment of the smart glasses 100 according to an embodiment of the application, in which the two temples 300 are in an unfolded use state, and the figure shows the frame wiring 230 and the temples Route 330.
  • a frame wiring 230 is provided in the spectacle frame 200, and the second electronic unit is electrically connected to the spectacle frame wiring 230.
  • the first electronic unit integrated in one of the temples 300 and the second electronic unit integrated in the frame 200, and the third electronic unit integrated in the other temple 300 are electrically connected through the corresponding electrical connection device 500 and the mirror frame wiring 230.
  • the first electronic unit integrated in one of the temples 300 and the third electronic unit integrated in the other temple 300 are electrically connected by two electrical connection devices 500 and the frame wiring 230. That is, the first electronic unit integrated in one of the temples 300 and the third electronic unit integrated in the other temple 300 are electrically connected through the left electrical connection device, the frame wiring 230 and the right electrical connection device.
  • each temple 300 is provided with a temple wiring 330.
  • the first electronic unit located in one of the temples 300 is electrically connected to the corresponding temple wiring 330
  • the third electronic unit located in the other temple 300 is electrically connected to the corresponding temple wiring 330
  • the corresponding electrical connection The first electrical connection part 510 of the device 500 is electrically connected to the temple wiring 330
  • the second electrical connection part 520 is electrically connected to the spectacle frame wiring 230.
  • the second electronic units of 200 are electrically connected by the corresponding temple wiring 330, the electrical connection device 500 and the spectacle frame wiring 230.
  • the first electronic unit located in one of the temples 300 and the third electronic unit located in the other temple 300 are electrically connected.
  • the electronic units are electrically connected through the temple wires 330 located on the two temples 300, the two electrical connection devices 500 and the mirror frame wires 230.
  • the signals of the two left and right temples 300 are turned on, which increases the stacking possibility and endurance of the smart glasses 100 (mainly for the case where the first electronic unit and the third electronic unit located on the two temples 300 both include battery modules).
  • the temple wires 330 in the two temples 300 are respectively defined as the left temple wire and the right temple wire
  • the first electrical connection part 510 of the left electrical connection device is wired with the left temple
  • the second electrical connection portion 520 of the left electrical connection device is electrically connected to the left end portion of the frame wiring 230
  • the first electrical connection portion 510 of the right electrical connection device is electrically connected to one end of the right temple wiring
  • the second electrical connection portion 520 of the right electrical connection device is electrically connected to the right end portion of the frame wiring 230.
  • the first electronic unit (or third electronic unit) of the temple 300 on the left and the second electronic unit of the mirror frame 200 are routed through the left temple
  • the left electrical connection device is electrically connected to the mirror frame wiring 230
  • the third electronic unit (or the first electronic unit) of the temple 300 on the right and the second electronic unit of the mirror frame 200 are routed through the right temple.
  • the electrical connection device is electrically connected to the spectacle frame wiring 230, and is located between the first electronic units of the two temples 300 through the left spectacle leg wiring, the left electrical connection device, the spectacle frame wiring 230, the right electrical connection device and the right temple. Wire the electrical connection.
  • both the frame wiring 230 and the temple wiring 330 use flexible circuit boards.
  • the frame wiring 230 is located in the frame 200 and is formed in the frame 200 by in-mold injection or ultrasonic welding.
  • the temple wiring 330 is located in the corresponding temple 300, and is formed in the temple 300 by in-mold injection or ultrasonic welding.
  • the frame wiring 230 and the temple wiring 330 may also be in the form of cables, and are not limited to flexible circuit boards. The scope of protection has a limiting effect.
  • the first electronic unit is integrated into the corresponding temple 300 as a whole.
  • the entire first electronic unit may also be integrated on the corresponding temple 300, or a part of the first electronic unit may be integrated in the corresponding temple 300 , The other part is integrated on the corresponding temple 300.
  • the second electronic unit is integrated in the mirror frame 200, and a small part is integrated on the mirror frame 200.
  • the second electronic unit as a whole may also be integrated in the mirror frame 200, or the second electronic unit as a whole may also be integrated in the mirror frame 200, which is not here. It has a limiting effect on the scope of protection of this application.
  • the structural composition, arrangement, and electrical connection of the first electronic unit and the second electronic unit can adopt the arrangement of the electronic units in the smart glasses 100 in the prior art, which will not be done here. Go into details.
  • the smart glasses 100 has a processing device not shown in the figure.
  • the processing device is integrated in one of the temples 300, that is, the processing device constitutes a part of the first electronic unit located in the corresponding temple 300.
  • the processing device may also be integrated in the mirror frame 200. In this case, the processing device constitutes a part of the second electronic unit located in the mirror frame 200.
  • the display unit (not shown in the figure) of the smart glasses is used to display pictures or videos taken by the camera device, or display video information stored in the smart glasses 100.
  • the display unit can be integrated in the frame 200 or the temple 300 of the smart glasses 100, and can also be integrated in the lens 700.
  • Those skilled in the art can understand that the structure and the location of the display unit can adopt structures known in the prior art, which will not be repeated here.
  • the lens 700 may use a lens that can display the image output by the display unit in the prior art, for example, an optical waveguide lens.
  • the lenses can be ordinary lenses that cannot display images in the prior art. Smart glasses do not have a display unit. At this time, smart glasses cannot display images. With audio function.
  • the first electrical connection portion 510 When the temple 300 is switched from the folded and retracted state to the unfolded use state, the first electrical connection portion 510 is electrically connected to the corresponding second electrical connection portion 520, and the processing device generates a control signal to turn on the display unit.
  • the first electrical connection portion 510 When the temple 300 is switched from the unfolded use state to the folded and retracted state, the first electrical connection portion 510 is electrically disconnected from the corresponding second electrical connection portion 520, and the processing device generates another control signal to turn off the display unit or enable the display unit In the standby state.
  • the first electrical connection portion 510 when the temple 300 is switched from the folded and retracted state to the unfolded use state, the first electrical connection portion 510 is electrically connected to the corresponding second electrical connection portion 520, and the processing device generates a control signal to turn on the display unit or enable The display unit is in a standby state.
  • the first electrical connection portion 510 When the temple 300 is switched from the unfolded and used state to the folded and retracted state, the first electrical connection portion 510 is electrically disconnected from the corresponding second electrical connection portion 520, and the processing device generates another control signal to turn off the display unit.
  • the wearing state of the user is judged by the on and off of the electrical connection device 500, so as to realize automatic shutdown/standby and power on; the sensor for wearing detection can be eliminated, which saves costs.
  • the sensor for wearing detection may be a distance sensor, a proximity light sensor, or a capacitive touch sensor. Among them, the distance sensor can turn off the screen and brighten the screen according to the distance during a call.
  • the processing device include, but are not limited to, a processor, an application specific integrated circuit (ASIC), etc., and/or any combination thereof.
  • the processor may be a microprocessor, a digital signal processor, a microcontroller, etc., and/or any combination thereof.
  • the processor may be a single-core processor, a multi-core processor, etc., and/or any combination thereof.
  • the processor may include one or more processing units.
  • the processor may include an application processor, a modem processor, a graphics processor, an image signal processor, a video processing unit, a controller, a memory, a video codec, Digital signal processor, baseband processor, and/or neural network processor, etc.
  • the different processing units may be independent devices or integrated in one or more processors.
  • the processor may be the nerve center and command center of the smart glasses 100.
  • the processor can generate operation control signals according to the instruction operation code and timing signals to complete the control of fetching and executing instructions.
  • the image information receiving end of the processor is connected to the image information output end of the camera device, and the audio information receiving end of the processor is connected to the audio information output end of the microphone.
  • the data transmission line is connected, and the data receiving end of the data transmission line is connected with the data output end of the processor.
  • a memory can also be provided in the processor to store instructions and data.
  • the memory in the processor is a cache memory.
  • the memory can store instructions or data that the processor has just used or recycled. If the processor needs to use the instruction or data again, it can be called directly from the memory. It avoids repeated access and reduces the waiting time of the processor, thus improving the efficiency of the system.
  • the smart glasses 100 further has an audio device not shown in the figure, and the audio device is provided on the temple 300 close to the user's ears when the smart glasses 100 are worn.
  • the audio device uses a speaker or a bone conduction device.
  • the audio device can independently play the audio information stored in the smart glasses 100, and the smart glasses can also be connected to other electronic devices, such as mobile phones, in a wired or wireless manner, so that the audio device of the smart glasses can play other electronic devices (such as mobile phones). Audio information.
  • the speaker can be integrated in the temple 300, so that the user can clearly hear the sound even in a noisy environment.
  • the audio device uses a bone conduction device, the generated sound can be transmitted to the inner ear through the bones on the side of the user's head, so that the user can hear the sound.
  • the audio device is integrated in the two temples 300.
  • the audio device integrated in one of the temples 300 constitutes a part of the first electronic unit, and the audio device is integrated in the other temple. It forms part of the third electronic unit.
  • the first electrical connection portion 510 When the temple 300 is switched from the folded and retracted state to the unfolded use state, the first electrical connection portion 510 is electrically connected to the corresponding second electrical connection portion 520, and the processing device generates a control signal to turn on the audio device.
  • the first electrical connection portion 510 When the temple 300 is switched from the unfolded use state to the folded and retracted state, the first electrical connection portion 510 is electrically disconnected from the corresponding second electrical connection portion 520, and the processing device generates another control signal to turn off the audio device or enable the audio device In the standby state.
  • the processing device when the temple 300 is switched from the folded and retracted state to the unfolded state, the first electrical connection portion 510 and the corresponding second electrical connection portion 520 are electrically connected. When connected, the processing device generates a control signal, and it can also turn on the audio device or put the audio device in a standby state. When the temple 300 is switched from the unfolded use state to the folded and retracted state, the first electrical connection portion 510 is electrically disconnected from the corresponding second electrical connection portion 520, and the processing device generates another control signal to turn off the audio device.
  • the smart glasses 100 also have a microphone not shown in the figure.
  • the microphone is arranged on the temple 300 and is used to collect audio information. At this time, the microphone constitutes a part of the first electronic unit.
  • the microphone may also be integrated into the spectacle frame 200. At this time, the microphone constitutes a part of the second electronic unit.
  • the smart glasses 100 also have a camera device not shown in the figure.
  • the camera device is arranged at the front of the spectacle frame 200 and is used to collect image information.
  • the imaging device constitutes a part of the second electronic unit.
  • the communication circuits between the camera device, the display unit, the audio device, and the processing device adopt circuits known in the prior art, which will not be repeated here.
  • the processing device and the camera device communicate through a CSI interface (ie, a camera serial interface, which is called “Camera Serial Interface” in English) to realize the shooting function of the smart glasses 100.
  • the processing device and the display unit communicate through a DSI interface (that is, a display serial interface, which is called “Display Serial Interface” in English) to realize the display function of the smart glasses 100.
  • the smart glasses 100 also have a battery module not shown in the figure, and the battery module is arranged in the temple 300.
  • battery modules are integrated in both temples 300.
  • the battery module integrated in one of the temples 300 constitutes a part of the corresponding first electronic unit.
  • the battery module integrated in the other temple 300 constitutes a part of the third electronic unit. It can be understood that the dike, the battery module can also be arranged in a mirror leg.
  • the battery module can be arranged at the middle end of the temple 300 close to the fulcrum of the ear during wearing, so that the weight distribution of the whole glasses is more balanced, which is beneficial to reduce the weight of the front end of the smart glasses 100 and the pressure exerted by the nose pads on the bridge of the nose is reduced, and the feeling of pressure is reduced, especially Comfort for long-term wearing.
  • the battery modules are symmetrically on the two temples 300.
  • the battery module provides power to smart components such as lenses 700, audio devices, and camera devices provided on the smart glasses 100.
  • the battery module can also be integrated in the mirror frame 200.
  • the battery module forms a part of the second electronic unit; it can also be integrated in only one mirror leg 300.
  • Battery module; the battery module can also be integrated on the temple 300.
  • FIG. 5 is a schematic structural diagram of an embodiment of the smart glasses 100 according to an embodiment of the application, in which the two temples 300 are in an unfolded use state, and the viewing angle is viewed from the front of the lens 700, as shown in the figure
  • the wireless charging coil 600 is shown.
  • the battery module is integrated into the mirror frame 200, and the battery module constitutes a part of the second electronic unit.
  • the second electronic unit further includes a wireless charging coil 600, and the wireless charging coil 600 is disposed in the mirror frame 200.
  • the wireless charging coil 600 includes a first coil part 610 and a second coil part 620, and the first coil part 610 and the second coil part 620 are respectively arranged around the two lenses 700 of the smart glasses 100. And the first coil part 610 and the second coil part 620 are connected in series, so that the voltage generated by the first coil part 610 and the second coil part 620 is connected in series to charge the battery module.
  • the two coil parts can be arranged to be charged at the same time, the charging efficiency is high, and the induction coil of the corresponding charging box has good positioning and compatibility.
  • the mirror box in which the smart glasses 100 are placed can be used as a charging device.
  • the wireless charging coil 600 of the smart glasses 100 is induced by the induction coil set on the inner wall of the cavity of the lens box, thereby supplying power to the battery module of the temple 300 through the lens box , Realize charging.
  • the smart glasses 100 also have memory, sensor modules, communication modules, etc. that are not shown in the figure. These electronic devices can be integrated in the temples to form a part of the first electronic unit, or can be integrated in the mirror frame to form the second electronic unit. a part of.
  • the sensor module may include a focal length detection optical sensor, and the focal length detection optical sensor is used to detect the focal length of the eyeball of the user's eye.
  • the sensor module may also include other sensors, such as sound detectors, proximity light sensors, distance sensors, gyroscope sensors, ambient light sensors, acceleration sensors, and temperature sensors.
  • the temple 300 also has a circuit board 340 (see FIG. 7 ), and the circuit board 340 is fixed in the corresponding temple 300.
  • the electronic devices for example, processing device, audio device, battery, etc. located in the corresponding temple 300 are integrated on the corresponding circuit board 340.
  • a circuit board 340 is integrated in the two temples 300 (see FIG. 7). At this time, the circuit board 340 integrated in one of the temples 300 constitutes a part of the corresponding first electronic unit, and the circuit board integrated in the other temple 300 constitutes a part of the third electronic unit.
  • a circuit board 240 may also be integrated in the left and right end portions 210 of the lens frame 200. At this time, the circuit board 240 constitutes a part of the second electronic unit. The circuit board 240 is fixed in the mirror frame 200.
  • the circuit board design can adopt HDI board (High Density Interconnect Board, full name, High Density Interconnector) design, thereby minimizing the volume of the circuit board.
  • HDI board High Density Interconnect Board, full name, High Density Interconnector
  • control buttons can be provided on the two temples 300 respectively, so as to control the content displayed by the lens 700 uniformly or individually.
  • the control buttons can also be arranged on the spectacle frame 200, preferably arranged in pairs to balance the weight distribution.
  • a multi-function button can also be provided on the temple 300.
  • the button is a customizable button, which can customize the button function in the user setting interface according to the user's needs, thereby greatly expanding the application range of the smart glasses 100 according to the present application .
  • the smart glasses 100 may include a wireless communication function.
  • the communication module may include a wireless communication module and a mobile communication module.
  • the wireless communication function can be realized by an antenna (not shown), a mobile communication module (not shown), a modem processor (not shown), a baseband processor (not shown), and the like.
  • FIG. 6 is an enlarged schematic diagram of part A in FIG. 3, which mainly shows the structure of the mating part between the temple 300 and the end 210 of the spectacle frame 200 in the folded and retracted state.
  • FIG. 7 is a schematic diagram of the internal structure of an embodiment of the electrical connection device 500 of the smart glasses 100 according to an embodiment of the application. The mating structure between the first electrical connection portion 510 and the second electrical connection portion 520 provided in the spectacle frame 200.
  • FIG. 8 is a schematic top view of an embodiment of the smart glasses 100 according to an embodiment of the present application, in which one temple 300 is in an unfolded use state, and the other temple 300 is in a folded and retracted state.
  • 9 is a schematic diagram of an enlarged structure of part B in FIG. 8, which mainly shows the first electrical connection of the electrical connection device 500 when the temple 300 rotates to the end 210 of the mirror frame 200 and there is still a gap 800
  • the part 510 and the second electrical connection part 520 can still be contacted and electrically connected elastically, and can provide a resilient force to the temple 300.
  • the connecting shaft 400 is a screw.
  • the inner surface 311 of one end 310 of the temple 300 is provided with a protruding first boss 320.
  • the inner side surface 211 of one end 210 of the lens frame 200 is provided with two protruding second bosses 220.
  • the two second bosses 220 are spaced apart along the screw axis direction O1 and form a receiving space. Part of the first boss 320 is accommodated in the accommodation space.
  • the screw penetrates through the upper boss and the first boss 320 of the two second bosses 220 from top to bottom, and is screwed into the screw through the threaded holes in the lower boss of the two second bosses 220. In this way, the rotation of the temple 300 can be realized very conveniently, and it is convenient for the temple 300 and the mirror frame 200 to be disassembled or replaced separately.
  • the upper boss of the two second bosses 220 is the boss that is located at the uppermost position along the screw axis direction O1 among the two second bosses 220, and the lower boss of the two second bosses 220 The boss is the lowermost boss of the two second bosses 220 along the screw axis direction O1.
  • the relevant structural design of the rotatably connected and detachable connection of the end 310 of the temple 300 and the end 210 of the frame 200 can also be exchanged.
  • the first boss 320 can also be provided on the end surface 312 of the one end 310 of the temple 300
  • the second boss 220 can also be provided on the end surface 212 of the one end 210 of the mirror frame 200.
  • first boss 320 is integrally formed with the one end 310 of the temple 300
  • second boss 220 is integrally formed with the one end 210 of the mirror frame 200.
  • first boss 320 and one end 310 of the temple 300 may also adopt a split structure
  • second boss 220 and one end 210 of the mirror frame 200 Split structure can also be used.
  • the first electrical connection portion 510 includes at least one first sub-electric connection portion 511
  • the second electrical connection portion 520 includes at least one second sub-electric connection portion 521
  • at least one first sub-electric connection portion The portion 511 is provided corresponding to the at least one second electrical sub-connection portion 521.
  • each of the first electrical sub-connection portion 511 and the second electrical sub-connection portion 521 has a plurality.
  • the plurality of first electrical sub-connection parts 511 are arranged at intervals in a direction parallel to the axial direction of the connecting shaft 400, and the plurality of second electrical sub-connecting parts 521 are also arranged at intervals in a direction parallel to the axial direction of the connecting shaft 400.
  • the plurality of first electrical sub-connection portions 511 may also be spaced apart in other directions, and the plurality of second electrical sub-connection portions 521 may also be spaced apart in other directions.
  • the arrangement only needs to ensure that the arrangement direction of the plurality of first electrical sub-connection parts 511 and the arrangement direction of the plurality of second electrical sub-connection parts 521 are substantially the same.
  • the temple 300 when the temple 300 is in an unfolded use state, the first electrical sub-connecting portion 511 and the corresponding second electrical sub-connecting portion 521 are elastically electrically connected, and at the same time, the temple 300 is provided with a resilient force.
  • the first electrical connection part 511 of the first electrical connection part 510 is elastically electrically connected to the corresponding second electrical connection part 521 of the second electrical connection part 520, and is simultaneously provided to
  • the temple 300 has a resilience between the two in the longitudinal direction L1 of one end of the temple or roughly parallel to the longitudinal direction L1 of the end of the temple, it has a certain floating displacement and can Eliminate the generated squeezing force, avoid hard damage to the first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521, and ensure that the first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521 The stability of the electrical contact between.
  • the temple 300 rotates to a position where there is still a gap 800 between the end 210 of the mirror frame 200, the first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521 It can still be contacted and electrically connected elastically, and can provide a resilient force to the temple 300. Therefore, it is possible to ensure the gripping force of the temple 300 against the user's head when wearing the smart glasses 100, and the temple 300 has a certain rotation margin, thereby increasing the wearing compatibility and comfort of the user.
  • the other is an elastic electrical connection portion or an inelastic electrical connection portion.
  • at least one of the first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521 is an elastic electrical connection portion.
  • the first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521 may both be elastic electrical connection portions; or, the first electrical sub-connection portion 511 is an elastic electrical connection portion, and the corresponding second electrical sub-connection portion 521 It is a non-elastic electrical connection part; or, the first sub-electric connection part 511 is a non-elastic electrical connection part, and the corresponding second sub-electric connection part 521 is an elastic electrical connection part.
  • the elastic electrical connection part is an elastic electrical connection terminal or a conductive elastic sheet.
  • the non-elastic electrical connection part is a non-elastic electrical connection terminal or a conductive sheet.
  • the first electrical sub-connection portion 511 is an elastic electrical connection portion
  • the corresponding second electrical sub-connection portion 521 is also an inelastic electrical connection portion.
  • first electrical sub-connection portion 511 and the corresponding second electrical sub-connection portion 521 may also both adopt inelastic electrical connection portions, that is, in the temple 300 In the unfolded state of use, a hard contact may also be adopted between the first electrical sub-connection portion 511 of the first electrical connection portion 510 and the corresponding second electrical sub-connection portion 521 of the second electrical connection portion 520.
  • one end of the first electrical sub-connecting portion 511 for electrical connection with the corresponding second electrical sub-connecting portion 521 protrudes from one end 310 of the temple 300
  • the end surface 312 of the second sub-electrical connection part 521 for electrical connection with the corresponding first sub-electrical connection part 511 is recessed on the end surface 212 of the one end 210 of the spectacle frame 200.
  • one end of the first electrical sub-connecting portion 511 for electrical connection with the corresponding second electrical sub-connecting portion 521 may be recessed in the temple 300.
  • the end surface 312 of the one end portion 310 and the end of the second electrical sub-connection portion 521 for electrical connection with the corresponding first electrical sub-connection portion 511 protrude from the end surface 212 of the one end portion 210 of the spectacle frame 200.
  • the plurality of first electrical sub-connection portions 511 are all spring-type probes, and the plurality of second electrical sub-connection portions 521 are all conductive sheets.
  • the first electrical sub-connection portion 511 and the second electrical sub-connection portion 521 may also be other types of electrical connection terminals, as long as the signal can be connected through contact, and the signal can be disconnected through disconnection.
  • the structures of the multiple first electrical sub-connection portions 511 may be the same or different.
  • some of the first electrical sub-connection portions 511 of the multiple first electrical sub-connection portions 511 adopt springs.
  • Type probe another part of the first sub-electric connection part 511 adopts a conductive sheet;
  • the structure of the plurality of second sub-electric connection parts 521 can be the same or different, for example, a part of the first sub-electric connection part 521
  • the second electrical connection part 521 adopts a conductive sheet, and the other part of the second electrical connection part 521 adopts a spring-type probe, which does not limit the protection scope of the present application here.
  • one end of the plurality of first electrical sub-connecting portions 511 located on each temple 300 away from the corresponding second electrical sub-connecting portion 521 is fixed to the circuit board 340 and electrically connected to the circuit board 340.
  • the circuit board 340 is electrically connected to the corresponding temple wiring 330.
  • the ends of the plurality of second electrical sub-connection portions 521 respectively located at the left and right end portions 210 of the lens frame 200 away from the corresponding first electrical sub-connection portion 511 are all fixed to the circuit board 240 and electrically connected to the circuit board 240.
  • the circuit board 240 is electrically connected to the wiring 230 of the spectacle frame.
  • the spring-type probe can adopt a structure known in the prior art, which will not be repeated here.
  • the spring-type probe may include a needle 512, a needle tube 513, and a spring 514.
  • the needle 512 is slidably disposed in the needle tube 513 along the axis of the needle tube 513, the spring 514 is located in the needle tube 513, and one end of the spring 514 abuts against the needle tube 513. At the bottom, the other end abuts against the bottom end of the needle 512.
  • the bottom end of the needle 512 is a bevel structure, which can ensure that the needle 512 is kept in contact with the inner wall of the needle tube 513 during operation, and the current is mainly passed through the gold-plated needle 512 and the needle tube 513 to ensure the stability and low impedance of the spring-type probe .
  • the tip of the needle 512 is used to contact the conductive sheet (ie, the second electrical connection part 521).
  • the bottom end of the needle tube 513 is fixed to the circuit board 340 and is electrically connected to the circuit board 340.
  • FIG. 10 is a schematic diagram of the internal structure of another embodiment of the electrical connection device 500 of the smart glasses 100 according to the embodiment of the application, in which the first electrical connection provided on the temple 300 is shown.
  • the mating structure between the portion 510 and the second electrical connection portion 520 provided in the lens frame 200, and the first sub-electric connection portion 511 adopts an elastic sheet structure.
  • FIG. 11 is a schematic top view of the structure of the electrical connection device in FIG. 10, in which the first electrical connection portion provided on the temple and the second electrical connection portion provided on the mirror frame are in a disengaged state.
  • the electrical connection device 500, the mating structure of the first electrical connection portion 510 and the temple 300 of the electrical connection device 500, and the mating structure of the second electrical connection portion 520 and the spectacle frame 200 are basically the same as those described above.
  • the structure described in the manner is the same, and the difference is that the plurality of first electrical sub-connection portions 511 are all elastic pieces, and the multiple second sub-electric connection portions 521 are all conductive pieces.
  • the shrapnel has a 2-shaped structure.
  • the structures of the plurality of first electrical sub-connection portions 511 may be the same or different.
  • a part of the first electrical sub-connection portions 511 of the plurality of first electrical sub-connection portions 511 adopts elastic pieces.
  • Another part of the first sub-electric connection part 511 adopts a conductive sheet;
  • the structure of the plurality of second sub-electric connection parts 521 may be the same or different.
  • a part of the second sub-electric connection parts 521 of the plurality of second sub-electric connection parts 521 The connecting portion 521 adopts a conductive sheet, and the other part of the second sub-electric connecting portion 521 adopts an elastic sheet, which does not limit the protection scope of the present application here.
  • one end of the plurality of elastic pieces located on each temple 300 away from the corresponding conductive piece is fixed to the circuit board 340 and electrically connected to the circuit board 340.
  • the circuit board 340 is electrically connected to the corresponding temple wiring 330.
  • the plurality of conductive sheets respectively located at the left and right end portions 210 of the lens frame 200 are fixed to the circuit board 240 and electrically connected to the circuit board 240 at one end away from the corresponding elastic sheet.
  • the circuit board 240 is electrically connected to the wiring 230 of the spectacle frame.
  • One end of the multiple elastic pieces located on each temple 300 facing the corresponding conductive piece is used to realize the electrical connection between the two when it is in contact with the conductive piece, and to realize the elastic piece and the corresponding conductive piece when it is separated from the conductive piece.
  • the electrical signal between the slices is disconnected.

Landscapes

  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Ophthalmology & Optometry (AREA)
  • Acoustics & Sound (AREA)
  • General Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)
  • Eyeglasses (AREA)

Abstract

一种镜架、智能眼镜(100)、镜腿(300)、镜框(200)和镜框总成。镜架包括镜腿(300)和镜框(200),镜腿(300)设有第一电子单元,镜框(200)设有第二电子单元,镜腿(300)的一端部(310)通过一连接轴(400)可转动并可拆卸连接于镜框(200)的一端部(320);镜腿(300)的一端部(310)与镜框(200)的一端部(210)设置有电连接装置(500),电连接装置(500)包括第一电连接部(510)和第二电连接部(520),第一电连接部(510)设置于镜腿(300),并与第一电子单元电连接,第二电连接部(520)设置于镜框(200),并与第二电子单元电连接;当镜腿(300)处于展开使用状态时,第一电连接部(510)与对应的第二电连接部(520)电连接;当镜腿(300)处于折叠收放状态时,第一电连接部(510)与对应的第二电连接部(520)电断开。能够兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求,使用可靠以及使用方便。

Description

镜架、智能眼镜、镜腿、镜框和镜框总成
本申请要求2019年12月31日递交的申请号为CN201911408309.3、发明名称为“镜架、智能眼镜、镜腿、镜框和镜框总成”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及头戴显示技术领域,尤其是涉及一种镜架、智能眼镜、镜腿、镜框和镜框总成。
背景技术
增强现实技术是一种将真实世界信息和虚拟世界信息“无缝”集成的新技术,是把原本在现实世界的一定时间空间范围内很难体验到的实体信息(视觉信息、声音、味道、触觉等),通过电脑等科学技术,模拟仿真后再叠加,将虚拟的信息应用到真实世界,被人类感官所感知,从而达到超越现实的感官体验。增强现实技术的一项前沿应用,就是增强现实智能眼镜。以智能眼镜为载体,将多种虚拟技术信息与现实操作相结合,在培训、医疗、军事、工业生产等诸多领域,能够产生巨大的推动作用,正在得到越来越多的关注和重视。
目前,增强现实智能眼镜通常包括镜框、镜片和两条镜腿,镜片设置于镜框,两条镜腿的一端部分别通过连接轴可转动连接于镜框的左右端部,且两条镜腿和镜框之间为不可拆卸连接,同时,镜框上的电子单元和镜腿上的电子单元之间的讯号传输方式为有线传输,主要是通过在连接轴内穿过线缆的方式实现镜框上的电子单元和镜腿上的电子单元之间的电连接。
采用这种结构形式的增强现实智能眼镜,因两条镜腿和镜框之间为不可拆卸连接,从而使得镜框或镜腿不能单独更换,导致该智能眼镜款式单一,无法兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求;同时,通过在连接轴内穿过线缆的方式实现讯号传输,使得在镜腿多次实现展开状态与折叠状态之间切换的情况下,穿过连接轴的线缆多次弯折,易导致其断裂,从而使得该智能眼镜的使用可靠性较低,且穿过连接轴的线缆对镜腿的旋转产生干涉,从而使得镜腿转动的阻力较大,导致使用不方便。
发明内容
本申请的目的在于解决现有技术中的智能眼镜无法兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求、使用可靠性较低以及使用不方便的问题。因此,本申请实施例提供了一种镜架、智能眼镜、镜腿、镜框和镜框总成,其能够兼容不同头型和头围 用户的佩戴舒适性和美观选择性的需求,使用可靠性较高以及使用方便。
本申请实施例提供了一种镜架,包括镜腿和镜框,所述镜腿设有第一电子单元,所述镜框设有第二电子单元,所述镜腿的一端部通过一连接轴可转动连接于所述镜框的一端部,使得所述镜腿能够在展开使用状态和折叠收放状态之间切换,所述镜腿的一端部通过所述连接轴可拆卸连接于所述镜框的一端部;
所述镜腿的一端部与所述镜框的一端部设置有电连接装置,所述电连接装置包括对应设置的第一电连接部和第二电连接部,所述第一电连接部设置于所述镜腿的一端部,并与所述第一电子单元电连接,所述第二电连接部设置于所述镜框的一端部,并与所述第二电子单元电连接;
当所述镜腿处于所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接;当所述镜腿处于所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开。
在本实施例采用的技术方案中,无需通过在连接轴内穿过线缆便能实现位于镜腿的第一电子单元和位于镜框的第二电子单元之间的电信号导通,实现电源信号和低频信号的传递。这样降低了连接轴设计难度,增加设计灵活性,且提高了镜架的使用可靠性,避免了穿过连接轴的线缆对镜腿的转动产生干涉,从而提升了镜腿转动时的手感,使用更加方便。
并且,可以实现镜腿和镜框的可更换设计,只需要连接部分的电连接装置和镜腿、镜框的内部走线的信号共用,保持一致即可。通过将镜腿和镜框采用模块化设计,设计有不同尺寸和不同外观的镜腿以及镜框,从而用户可以根据自己头围大小和审美喜好来选择不同尺寸和不同外观的镜腿和镜框的搭配,即可实现各镜腿与各镜框之间的任意组装,以此组装出不同款式和不同尺寸的镜架,进而能够兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求。同时,用户在购买时可事先配齐常用的几款镜腿和镜框,这样,当需要使用时,可根据不同场合的实际需要,自由更换不同款式的镜腿或镜框,从而搭配出不同效果,更换操作方便快捷。损坏时方便单独更换镜腿或镜框,无需更换整个镜架。
在一些实施例中,所述第一电连接部包括至少一个第一子电连接部,所述第二电连接部包括至少一个第二子电连接部,所述第一子电连接部与所述第二子电连接部对应设置。
在一些实施例中,当所述镜腿处于所述展开使用状态时,所述第一子电连接部与对应的所述第二子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
在本实施例采用的技术方案中,在第一电连接部和对应的第二电连接部之间具有沿其轴线方向的挤压时,具有一定的浮动位移,能够消除所产生的挤压力,避免第一子电连接部与对应的第二子电连接部产生硬性损伤,且能够保证第一子电连接部与对应的第二子电连接部之间的电接触的稳定性。
并且,镜腿旋转至与镜框的一端部之间还留有间隙的位置时,第一子电连接部和对应的第二子电连接部之间仍然能够接触并弹性电连接,且能够提供给镜腿一回弹力。从而能够确保佩戴该智能眼镜时镜腿对用户头部夹持力,且该镜腿具有一定的旋转余量,从而增加了用户佩戴兼容性和舒适度。
在一些实施例中,当所述第一子电连接部和对应的所述第二子电连接部中的一个为弹性电连接部时,另一个为弹性电连接部或非弹性电连接部。
在一些实施例中,所述弹性电连接部为弹性电连接端子或导电弹片;和/或,所述非弹性电连接部为非弹性电连接端子或导电片。
在一些实施例中,当所述镜腿处于所述折叠收放状态时,所述第一子电连接部的用于与对应的所述第二子电连接部电连接的一端突出于所述镜腿的一端部的端面,所述第二子电连接部的用于与对应的所述第一子电连接部电连接的一端凹设于所述镜框的一端部的端面,或者,所述第一子电连接部的用于与对应的所述第二子电连接部电连接的一端凹设于所述镜腿的一端部的端面,所述第二子电连接部的用于与对应的所述第一子电连接部电连接的一端突出于所述镜框的一端部的端面。
在一些实施例中,所述第一电连接部包括多个所述第一子电连接部,所述第二电连接部包括多个所述第二子电连接部,多个所述第一子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置,多个所述第二子电连接部也沿与所述连接轴的轴线方向平行的方向间隔设置。
在本实施例采用的技术方案中,能够确保多个第一子电连接部和多个第二子电连接部之间同时导通或同时断开,避免某些第一子电连接部和对应的第二子电连接部先导通导致短路,从而提高了使用的可靠性。
在一些实施例中,所述连接轴为螺丝。
在一些实施例中,所述镜腿的一端部的内侧面设有突出的一第一凸台;所述镜框的一端部的内侧面设有突出的两个第二凸台,两个所述第二凸台沿所述螺丝的轴线方向间隔设置,并形成有容纳空间;
所述第一凸台的部分容纳于所述容纳空间内,所述螺丝从上至下贯穿于两个所述第二凸台中的上凸台和所述第一凸台,并通过两个所述第二凸台中的下凸台中的螺纹孔拧入所述螺丝。
在本实施例采用的技术方案中,能够非常方便地实现镜腿的转动,且方便镜腿和镜框单独拆卸或更换。
在一些实施例中,所述镜架包括处理装置,所述处理装置集成于所述镜腿,以构成位于所述镜腿的所述第一电子单元的一部分,或者,所述处理装置集成于所述镜框,以构成所述第二电子单元的一部分;所述第一电子单元包括音频装置,所述音频装置设置于所述镜腿的在佩戴时靠近用户耳部的位置处;
当所述镜腿从所述折叠收放状态切换到所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接,所述处理装置产生一控制信号,开启所述音频装置;
当所述镜腿从所述展开使用状态切换到所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开,所述处理装置产生另一控制信号,关闭所述音频装置或使所述音频装置处于待机状态。
在本实施例采用的技术方案中,通过电连接装置的第一电连接部和第二电连接部之间的导通和断开,来判断用户的佩戴状态,实现音频装置自动关机/待机和开机;可以取消距离传感器,节约成本。
在一些实施例中,所述镜架包括两个所述镜腿,两个所述镜腿的一端部分别通过一 所述连接轴可转动并可拆卸连接于所述镜框的左右的一端部,且每一所述镜腿的一端部与所述镜框的对应的一端部均设置有所述电连接装置。
在一些实施例中,所述镜框内设置有镜框走线,所述第二电子单元与所述镜框走线电连接;
当两个所述镜腿均处于所述展开使用状态时,位于每一所述镜腿的所述第一电子单元与位于所述镜框的所述第二电子单元之间通过对应的所述电连接装置和所述镜框走线电连接,分别位于两个所述镜腿的所述第一电子单元之间通过两个所述电连接装置以及所述镜框走线电连接。
在本实施例采用的技术方案中,分别位于左右的两个镜腿的第一电子单元之间的信号导通,能够增加智能眼镜的堆叠可能性和续航能力(主要针对位于两条镜腿的第一电子单元均包括电池模块的情况)。
在一些实施例中,每一所述镜腿内设置有镜腿走线,所述第一电子单元与所述镜腿走线电连接,所述电连接装置的所述第一电连接部与对应的所述镜腿走线的一端部电连接,所述电连接装置的所述第二电连接部与所述镜框走线的一端部电连接。
在一些实施例中,每一所述镜腿集成有电池模块,所述电池模块构成对应的所述第一电子单元的一部分。
在一些实施例中,所述第一电子单元集成于所述镜腿内,所述第二电子单元集成于所述镜框内。
在一些实施例中,所述镜框集成有电池模块,所述电池模块构成所述第二电子单元的一部分;所述第二电子单元还包括无线充电线圈,所述无线充电线圈包括第一线圈部分和第二线圈部分,所述第一线圈部分和所述第二线圈部分分别环绕所述镜架的两个镜片设置,且所述第一线圈部分与所述第二线圈部分串联连接,使得所述第一线圈部分和所述第二线圈部分产生的电压串联对电池模块充电。
在本实施例采用的技术方案中,无需考虑用户对镜腿的折叠的随机性问题,布置两个线圈部分可以同时充电,充电效率高,对应的充电盒的感应线圈定位性和兼容性好。
在一些实施例中,所述第一电连接部和所述第二电连接部均位于所述连接轴外;
和/或,当所述镜腿处于所述展开使用状态时,所述第一电连接部和对应的所述第二电连接部接触;当所述镜腿处于所述折叠收放状态时,所述第一电连接部和对应的所述第二电连接部脱离。
本申请实施例提供了一种智能眼镜,所述智能眼镜包括:
以上任意一种实施例所提供的镜架;
镜片,所述镜片固定于所述镜架的镜框。
在本申请采用的技术方案中,采用以上实施例所提供的镜架的智能眼镜,无需通过在连接轴内穿过线缆便能实现位于镜腿的第一电子单元和位于镜框的第二电子单元之间的电信号导通,实现电源信号和低频信号的传递。这样降低了连接轴设计难度,增加设计灵活性,且提高了智能眼镜的使用可靠性,避免了穿过连接轴的线缆对镜腿的转动产生干涉,从而提升了镜腿转动时的手感,使用更加方便。
并且,通过将镜腿和镜框采用模块化设计,设计有不同尺寸和不同外观的镜腿以及镜框,从而用户可以根据自己头围大小和审美喜好来选择不同尺寸和不同外观的镜腿和 镜框的搭配,即可实现各镜腿与各镜框之间的任意组装,以此组装出不同款式和不同尺寸的智能眼镜,进而能够兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求。同时,用户在购买时可事先配齐常用的几款镜腿和镜框,这样,当需要使用时,可根据不同场合的实际需要,自由更换不同款式的镜腿或镜框,从而搭配出不同效果,更换操作方便快捷。损坏时方便单独更换镜腿或镜框,无需更换整个智能眼镜。
在一些实施例中,所述镜片具有能够显示图像的显示单元;
当所述镜腿从所述折叠收放状态切换到所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接,所述智能眼镜的处理装置产生一控制信号,开启所述显示单元;
当所述镜腿从所述展开使用状态切换到所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开,所述处理装置产生另一控制信号,关闭所述显示单元或使所述显示单元处于待机状态。
在一些实施例中,所述智能眼镜为增强现实智能眼镜或虚拟现实智能眼镜。
本申请实施例还提供了一种镜腿,集成有电子单元,所述镜腿的一端部用于通过一连接轴可转动连接并可拆卸连接于镜框的一端部,使得所述镜腿能够在展开使用状态和折叠收放状态之间切换;
所述镜腿的一端部设有电连接部,所述电连接部与所述电子单元电连接,位于所述镜腿的所述电连接部用于与位于所述镜框的一端部的电连接部配合;
当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述电连接部与对应的位于所述镜框的一端部的所述电连接部电连接,使得集成于所述镜腿的所述电子单元与集成于所述镜框的电子单元电连接;当所述镜腿处于所述折叠收放状态时,位于所述镜腿的所述电连接部与对应的位于所述镜框的一端部的所述电连接部电断开,使得集成于所述镜腿的所述电子单元与集成于所述镜框的所述电子单元电信号断开。
在一些实施例中,位于所述镜腿的所述电连接部包括至少一个子电连接部,位于所述镜框的所述电连接部包括至少一个子电连接部,位于所述镜腿的所述子电连接部用于与位于所述镜框的一端部的所述子电连接部对应设置;
当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述子电连接部与对应的位于所述镜框的一端部的所述子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
在一些实施例中,位于所述镜腿的所述子电连接部为弹性电连接部。
在一些实施例中,所述弹性电连接部为弹性电连接端子或导电弹片。
在一些实施例中,当所述镜腿处于所述折叠收放状态时,位于所述镜腿的所述子电连接部的一端突出于所述镜腿的一端部的端面。
在一些实施例中,位于所述镜腿的所述电连接部的所述子电连接部具有多个,位于所述镜腿的多个所述子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置。
在一些实施例中,所述镜腿的一端部的内侧面设有突出的一凸台,所述凸台用于通过所述连接轴与对应的所述镜框的一端部转动并可拆卸连接。
本申请实施例还提供了一种镜框,集成有电子单元,所述镜框的两端部分别通过一连接轴与两条镜腿的一端部可转动并可拆卸连接,使得两条所述镜腿均能够在展开使用状态和折叠收放状态之间切换;
所述镜框的两端部均设有电连接部,所述电连接部与所述电子单元电连接,位于所述镜框的两端部的所述电连接部用于分别与位于两条所述镜腿的电连接部配合;
当所述镜腿处于所述展开使用状态时,位于所述镜框的两端部的所述电连接部分别与位于两条所述镜腿的电连接部电连接,使得集成于所述镜框的所述电子单元与集成于各所述镜腿的电子单元电连接;当所述镜腿处于所述折叠收放状态时,位于所述镜框的两端部的所述电连接部分别与位于两条所述镜腿的电连接部电断开,使得集成于所述镜框的所述电子单元与集成于各所述镜腿的所述电子单元电信号断开。
在一些实施例中,位于所述镜框的所述电连接部包括至少一个子电连接部,位于所述镜腿的所述电连接部包括至少一个子电连接部,位于所述镜框的两端部的所述子电连接部用于分别与位于两条所述镜腿的所述子电连接部对应设置;
当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述子电连接部与对应的位于所述镜框的一端部的所述子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
在一些实施例中,位于所述镜框的所述子电连接部为非弹性电连接部,所述非弹性电连接部为非弹性电连接端子或导电片。
在一些实施例中,位于所述镜框的各所述子电连接部的一端凹出于所述镜框的对应的端部的端面。
在一些实施例中,位于所述镜框的各端部的所述电连接部的所述子电连接部具有多个,位于所述镜框的各端部的多个所述子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置。
在一些实施例中,所述镜框的各端部的内侧面设有突出的两个凸台,两个所述凸台沿所述连接轴的轴线方向间隔设置,并形成有容纳空间;
所述镜腿的凸台的部分容纳于所述容纳空间内,所述连接轴从上至下贯穿于所述镜框的两个所述凸台中的上凸台和所述镜腿的所述凸台,并通过所述镜框的两个所述凸台中的下凸台中的螺纹孔拧入所述连接轴。
在一些实施例中,所述镜框集成有电池模块,所述电池模块构成集成于所述镜框的所述电子单元的一部分;集成于所述镜框的所述电子单元包括无线充电线圈,所述无线充电线圈包括第一线圈部分和第二线圈部分,所述第一线圈部分和所述第二线圈部分用于分别环绕两个镜片设置,且所述第一线圈部分与所述第二线圈部分串联连接,使得所述第一线圈部分和所述第二线圈部分产生的电压串联对电池模块充电。
本申请实施例还提供了一种镜框总成,所述镜框总成包括:
以上任意一种实施例所提供所述的镜框;
镜片,所述镜片固定于所述镜框。
在本申请采用的技术方案中,采用以上实施例所提供的镜框的镜框总成,通过将镜框总成采用模块化设计,设计有不同尺寸和不同外观的镜框总成,从而用户可以根据自己头围大小和审美喜好来选择不同尺寸和不同外观的镜框总成,即可实现镜腿与各镜框总成之间的任意组装,以此组装出不同款式和不同尺寸的智能眼镜,进而能够兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求。同时,用户在购买时可事先配齐常用的镜腿和几款镜框总成,这样,当需要使用时,可根据不同场合的实际需要,自由更换不同款式的镜腿或镜框,从而搭配出不同效果,更换操作方便快捷。损坏时方便单独 更换镜腿或镜框总成,无需更换整个智能眼镜。
附图说明
为了更清楚地说明本申请具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例的智能眼镜的一实施方式的立体结构示意图(一),其中,两条镜腿处于展开使用状态;
图2为图1中的智能眼镜的分解结构示意图;
图3为本申请实施例的智能眼镜的一实施方式的立体结构示意图(二),其中,两条镜腿处于折叠收放状态;
图4为本申请实施例的智能眼镜的一实施方式的俯视结构示意图,其中,两条镜腿处于展开使用状态,且图中示出了镜框走线和镜腿走线;
图5为本申请实施例的智能眼镜的一实施方式的结构示意图,其中,两条镜腿处于展开使用状态,且该视角为从镜片的正面观看,图中示出了无线充电线圈;
图6为图3中A部分的放大结构示意图;
图7为本申请实施例的智能眼镜的电连接装置部分的一实施方式的内部结构示意图,其中,示出了在镜腿处于展开使用状态下,设置于该镜腿的第一电连接部与设置于镜框的第二电连接部之间的配合结构,且第一电连接部采用弹性式探针结构;
图8为本申请实施例的智能眼镜的一实施方式的俯视结构示意图,其中,其中一条镜腿处于展开使用状态,另一条镜腿处于折叠收放状态;
图9为图8中B部分的放大结构示意图;
图10为本申请实施例的智能眼镜的电连接装置部分的另一实施方式的内部结构示意图,其中,示出了设置于镜腿的第一电连接部与设置于镜框的第二电连接部之间的配合结构,且第一电连接部采用弹片结构;
图11为图10中电连接装置部分的俯视结构示意图,其中,设置于镜腿的第一电连接部与设置于镜框的第二电连接部之间处于脱离状态。
附图标记说明:
100:智能眼镜;
200:镜框;210:一端部;211:内侧面;212:端面;220:第二凸台;230:镜框走线;240:电路板;
300:镜腿;310:一端部;311:内侧面;312:端面;320:第一凸台;330:镜腿走线;340:电路板;
400:连接轴;
500:电连接装置;510:第一电连接部;511:第一子电连接部;512:针头;513:针管;514:弹簧;520:第二电连接部;521:第二子电连接部;
600:无线充电线圈;610:第一线圈部分;620:第二线圈部分;
700:镜片;
800:间隙;
O1:螺丝的轴线方向;
L1:镜腿的一端部的长度方向;
L2:镜框的一端部的长度方向。
具体实施方式
以下由特定的具体实施例说明本申请的实施方式,本领域技术人员可由本说明书所揭示的内容轻易地了解本申请的其他优点及功效。虽然本申请的描述将结合较佳实施例一起介绍,但这并不代表此申请的特征仅限于该实施方式。恰恰相反,结合实施方式作申请介绍的目的是为了覆盖基于本申请的权利要求而有可能延伸出的其它选择或改造。为了提供对本申请的深度了解,以下描述中将包含许多具体的细节。本申请也可以不使用这些细节实施。此外,为了避免混乱或模糊本申请的重点,有些具体细节将在描述中被省略。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
应注意的是,在本说明书中,相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步定义和解释。
下面将结合附图对本申请的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在本申请的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
为使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请的实施方式作进一步地详细描述。
请参见图1-图3,图1示出了本申请实施例的智能眼镜100的一实施方式的立体结构示意图,其中,两条镜腿300处于展开使用状态。当两条镜腿300处于该展开使用状态时,该智能眼镜100能够正常佩戴在用户的头部。图2示出了本申请实施例的智能眼 镜100的一实施方式的分解结构示意图,其中,两条镜腿300处于展开使用状态。图3示出了本申请实施例的智能眼镜100的一实施方式的立体结构示意图,其中,两条镜腿300处于折叠收放状态。当两条镜腿300处于该折叠收放状态时,两条镜腿300均与镜框200层叠,该智能眼镜100能够收纳于眼镜盒中。
当智能眼镜100佩戴在用户的头部时,用户可以看到智能眼镜100的显示单元(图中未示出)呈现的图像。在本实施方式中,智能眼镜100为增强现实智能眼镜(AR智能眼镜),可以在用户观看现实世界场景的同时,为用户显示虚拟图像,用户还可以与虚拟图像进行交互来实现增强现实的效果。
本领域技术人员可以理解的,本申请实施例以智能眼镜100为增强现实智能眼镜为例进行介绍,但是本申请实施例的某些实施方式并不限于增强现实智能眼镜,还可以是其他智能眼镜,比如实现虚拟现实(VR)效果的虚拟现实智能眼镜(VR智能眼镜)或实现混合现实(MR)效果的智能眼镜,比如,不带显示功能的智能眼镜(例如,只带音频功能的智能眼镜等)。
如图1-图3所示,智能眼镜100包括镜架和镜片700。镜架包括镜腿300和镜框200。镜片700固定于镜框200,并构成镜框总成。
在本实施方式中,镜腿300具有两条,每一条镜腿300均设有电子单元(图中未示出)。集成于其中一条镜腿300的电子单元定义为第一电子单元,集成于另一条镜腿300的电子单元定义为第三电子单元。镜框200也设有电子单元(图中未示出)。集成于镜框200的电子单元定义为第二电子单元。
其中,本领域技术人员可以理解的是,第三电子单元的结构组成可以采用本申请任一种实施方式所描述的第一电子单元的结构组成,且第三电子单元与集成有该第三电子单元的镜腿300的配合结构可以采用本申请任一种实施方式所描述的第一电子单元与集成有该第一电子单元的镜腿300的配合结构。第三电子单元的结构组成可以与第一电子单元的结构组成相同,也可以不同。第三电子单元与集成有该第三电子单元的镜腿300的配合结构可以和第一电子单元与集成有该第一电子单元的镜腿300的配合结构相同,也可以不同。
本领域技术人员可以理解,在可替代的其它实施方式中,也可以是两条镜腿300中的仅一条镜腿300设有电子单元,此时,集成于这一条镜腿300的电子单元定义为第一电子单元,该第一电子单元的结构组成可以采用本申请任一种实施方式所描述的第一电子单元的结构组成,该第一电子单元与集成有该第一电子单元的镜腿300的配合结构可以采用本申请任一种实施方式所描述的第一电子单元与集成有该第一电子单元的镜腿300的配合结构。
当然,本领域技术人员可以理解的是,在可替代的其它实施方式中,镜腿300也可以仅为一条,此时,集成于这条镜腿300的电子单元也定义为第一电子单元,该第一电子单元的结构组成可以采用本申请任一种实施方式所描述的第一电子单元的结构组成,该第一电子单元与集成有该第一电子单元的镜腿300的配合结构可以采用本申请任一种实施方式所描述的第一电子单元与集成有该第一电子单元的镜腿300的配合结构。
在本申请的描述中,需要说明的是,配合结构指的是相互配合的部件与部件之间(或相互配合的电子单元与电子单元之间,或相互配合的部件与电子单元之间)的位置关系、 连接关系,位置关系可以是机械结构上的位置关系,也可以是电路上的位置关系,连接关系可以是机械连接关系,也可以是电连接关系。对于本领域的普通技术人员而言,可以具体情况理解配合结构在本申请中的具体含义。
如图1-图3所示,其中一条镜腿300的一端部310通过一连接轴400可转动连接于镜框200的一端部210,使得该其中一条镜腿300能够在展开使用状态和折叠收放状态之间切换。该其中一条镜腿300的一端部310通过连接轴400可拆卸连接于镜框200的一端部210。
该其中一条镜腿300的一端部310与镜框200的一端部210之间设置有电连接装置500。电连接装置500包括对应设置的第一电连接部510和第二电连接部520。第一电连接部510设置于该其中一条镜腿300的一端部310,并与第一电子单元电连接。第二电连接部520设置于镜框200的一端部210,并与第二电子单元电连接。在本实施方式中,第一电连接部510和第二电连接部520均位于连接轴400外,并与连接轴400分开设置。需要说明的是,在本实施方式中,第一电连接部510不属于第一电子单元的一部分,第二电连接部520也不属于第二电子单元的一部分。
当该其中一条镜腿300处于展开使用状态时,第一电连接部510与对应的第二电连接部520电连接,使得位于该其中一条镜腿300的第一电子单元和位于镜框200的第二电子单元电连接,能够实现该第一电子单元和第二电子单元之间的信号传输。此时,该其中一条镜腿300相对于镜框200展开,能够佩戴在用户的耳部。
当该其中一条镜腿300处于折叠收放状态时,第一电连接部510与对应的第二电连接部520电断开,使得位于该其中一条镜腿300的第一电子单元和位于镜框200的第二电子单元电信号断开,不能实现该第一电子单元和第二电子单元之间的信号传输。此时,该其中一条镜腿300相对于镜框200折叠。
在本实施方式中,当该其中一条镜腿300处于展开使用状态时,第一电连接部510和对应的第二电连接部520接触,使得第一电连接部510和第二电连接部520电连接。当该其中一条镜腿300处于折叠收放状态时,第一电连接部510和对应的第二电连接部520脱离,实现第一电连接部510和第二电连接部520电信号断开。本领域技术人员可以理解的是,在可替代的其它实施方式中,第一电连接部510和对应的第二电连接部520也可以采用其它方式实现电信号的连接,比如,可以通过设置光电传感器(图中未示出)检测第一电连接部510和第二电连接部520的相对设置,且智能眼镜100的处理装置(图中未示出)根据检测到的第一电连接部510和第二电连接部520的相对位置,使得第一电连接部510和第二电连接部520的电信号连通或断开,例如,当该其中一条镜腿300相对于镜框200沿展开方向旋转至第一电连接部510靠近第二电连接部520的某一位置处时,所述光电传感器将一感应信号发给处理装置,该处理装置使第一电连接部510和第二电连接部520的电信号连通;当该其中一条镜腿300相对于镜框200沿折叠方向(该折叠方向与该展开方向的方向相反)旋转至第一电连接部510远离第二电连接部520的某一位置处时,所述光电传感器将另一感应信号发给处理装置,该处理装置使第一电连接部510和第二电连接部520的电信号断开。
本申请通过连接轴400来实现其中一条镜腿300与镜框200的机械连接,使得其中一条镜腿300相对于镜框200能够转动,实现其中一条镜腿300在展开使用状态和折叠 收放状态之间的切换,且其中一条镜腿300可拆卸连接于镜框200,使得其中一条镜腿300和镜框200能够分别拆卸或更换。同时,通过设置于其中一条镜腿300的第一电连接部510和设置于镜框200的第二电连接部520,在其中一条镜腿300处于展开使用状态时,第一电连接部510和对应的第二电连接部520电连接,实现位于其中一条镜腿300的第一电子单元和位于镜框200的第二电子单元之间的电信号导通,在其中一条镜腿300处于折叠使用状态时,第一电连接部510和对应的第二电连接部520电断开,实现位于其中一条镜腿300的第一电子单元和位于镜框200的第二电子单元之间的电信号断开,从而无需通过在连接轴400内穿过线缆便能实现位于其中一条镜腿300的第一电子单元和位于镜框200的第二电子单元之间的电信号导通,实现电源信号和低频信号(比如音频信号等)的传递。这样降低了连接轴400设计难度,增加设计灵活性,且提高了镜架以及该智能眼镜100的使用可靠性,避免了穿过连接轴400的线缆对镜腿300的转动产生干涉,从而提升了其中一条镜腿300转动时的手感,使用更加方便。
并且,可以实现其中一条镜腿300和镜框200的可更换设计,只需要连接部分的电连接装置500的第一电连接部510和第二电连接部520的结构以及电连接方式保持一致即可。通过将镜腿300和镜框200采用模块化设计,设计有不同尺寸和不同外观的镜腿300以及镜框200,从而用户可以根据自己头围大小和审美喜好来选择不同尺寸和不同外观的镜腿300和镜框200的搭配,即可实现各镜腿300与各镜框200之间的任意组装,以此组装出不同款式和不同尺寸的镜架以及智能眼镜100,进而能够兼容不同头型和头围用户的佩戴舒适性和美观选择性的需求。同时,用户在购买时可事先配齐常用的几款镜腿300和镜框200,这样,当需要使用时,可根据不同场合的实际需要,自由更换不同款式的镜腿300或镜框200,从而搭配出不同效果,更换操作方便快捷。损坏时方便单独更换镜腿300或镜框200,无需更换整个镜架或智能眼镜100。
本申请主要应用在用户定制化尺寸和外观,以及镜腿300和镜框200有电连接需求的场景。
在本实施方式中,如图1-图3所示,另一条镜腿300的结构可以采用本申请任一种实施方式所描述的其中一条镜腿300的结构。另一条镜腿300与镜框200之间也设有电连接装置500,且另一条镜腿300与镜框200之间的配合结构可以采用本申请任一种实施方式所描述的其中一条镜腿300与镜框200之间的配合结构。
进一步地,另一条镜腿300与其中一条镜腿300采用对称的设计和构造。并且采用基本相同的重量和重量分布,以最大程度增加舒适感。另一条镜腿300与镜框200之间也设有电连接装置500。且另一条镜腿300与镜框200之间的配合结构和其中一条镜腿300与镜框200之间的配合结构相同。
本领域技术人员可以理解的是,两条镜腿300的结构大体对称设计,可以镜像相同,也可以不同;两条镜腿300与镜框200之间的配合结构可以相同,也可以不同,也就是说,两个电连接装置500的结构可以相同,也可以不同。
更进一步地,两条镜腿300的一端部310分别通过一连接轴400可转动并可拆卸连接于镜框200的左右的一端部210。也就是说,位于智能眼镜100左侧的镜腿300的一端部310通过一连接轴400可转动并可拆卸连接于镜框200的左侧的一端部,位于智能眼镜100右侧的镜腿300的一端部310也通过一连接轴400可转动并可拆卸连接于镜框200 的右侧的一端部210。
本领域技术人员可以理解的是,在该智能眼镜100佩戴在用户的头部时,智能眼镜100的左侧为智能眼镜100的靠近用户头部左侧的一侧,智能眼镜100的右侧为智能眼镜100的靠近用户头部右侧的一侧,镜框200的左侧的一端部210为镜框200的靠近用户头部左侧的一端部,镜框200的右侧的一端部210为镜框200的靠近用户头部右侧的一端部。
并且,每一镜腿300的一端部310与镜框200的对应的一端部210之间均设置有电连接装置500。且两条镜腿300与镜框200之间的电连接装置500分别定义为左电连接装置和右电连接装置。即位于智能眼镜100左侧的镜腿300的一端部310与镜框200的左侧的一端部210之间的电连接装置500定义为左电连接装置,位于智能眼镜100右侧的镜腿300的一端部310与镜框200的右侧的一端部210之间的电连接装置500定义为右电连接装置。
为了进一步减小本申请智能眼镜100的总重量,镜腿300和镜框200通常采用轻质材料制成,例如复合材料,轻质合金,碳纤维复合材料,等等。
本领域技术人员可以理解,本申请实施例中以智能眼镜100包括一对镜腿300,即两条镜腿300为例来进行介绍,但是本申请实施例的实施方式并不限于采用两条镜腿300的智能眼镜100,还可以是采用一条镜腿300的智能眼镜100。
请参见图4,图4为本申请实施例的智能眼镜100的一实施方式的俯视结构示意图,其中,两条镜腿300处于展开使用状态,且图中示出了镜框走线230和镜腿走线330。
如图4所示,镜框200内设置有镜框走线230,第二电子单元与镜框走线230电连接。当两条镜腿300均处于展开使用状态时,集成于其中一条镜腿300的第一电子单元和集成于镜框200的第二电子单元之间、以及集成于另一条镜腿300的第三电子单元和集成于镜框200的第二电子单元之间通过对应的电连接装置500和镜框走线230电连接。同时,集成于其中一条镜腿300的第一电子单元和集成于另一条镜腿300的第三电子单元之间通过两个电连接装置500、镜框走线230电连接。即集成于其中一条镜腿300的第一电子单元和集成于另一条镜腿300的第三电子单元之间通过左电连接装置、镜框走线230和右电连接装置电连接。
具体地,每一条镜腿300内设置有镜腿走线330。位于其中一条镜腿300的第一电子单元与对应的镜腿走线330电连接,位于另一条镜腿300的第三电子单元与对应的镜腿走线330电连接,且所对应的电连接装置500的第一电连接部510与该镜腿走线330电连接,第二电连接部520与镜框走线230电连接。当两条镜腿300均处于展开使用状态时,位于其中一条镜腿300的第一电子单元与位于镜框200的第二电子单元之间、位于另一条镜腿300的第三电子单元与位于镜框200的第二电子单元之间通过对应的镜腿走线330、电连接装置500和镜框走线230电连接,位于其中一条镜腿300的第一电子单元和位于另一条镜腿300的第三电子单元之间通过位于两条镜腿300的镜腿走线330、两个电连接装置500和镜框走线230电连接。左右的两条镜腿300的信号导通,增加智能眼镜100的堆叠可能性和续航能力(主要针对位于两条镜腿300的第一电子单元和第三电子单元均包括电池模块的情况)。
也就是说,若将两条镜腿300内的镜腿走线330分别定义为左镜腿走线和右镜腿走 线,左电连接装置的第一电连接部510与左镜腿走线的一端部电连接,左电连接装置的第二电连接部520与镜框走线230的左端部电连接;右电连接装置的第一电连接部510与右镜腿走线的一端部电连接,右电连接装置的第二电连接部520与镜框走线230的右端部电连接。
当两条镜腿300均处于展开使用状态时,位于左侧的镜腿300的第一电子单元(或第三电子单元)与位于镜框200的第二电子单元之间通过左镜腿走线、左电连接装置和镜框走线230电连接,位于右侧的镜腿300的第三电子单元(或第一电子单元)与位于镜框200的第二电子单元之间通过右镜腿走线、右电连接装置和镜框走线230电连接,分别位于两条镜腿300的第一电子单元之间通过左镜腿走线、左电连接装置、镜框走线230、右电连接装置和右镜腿走线电连接。
在本实施方式中,镜框走线230和镜腿走线330均采用柔性电路板。镜框走线230位于镜框200内,并通过模内注塑或超声波焊接等方式形成于镜框200内。镜腿走线330位于相应的镜腿300内,并通过模内注塑或超声波焊接等方式形成于镜腿300内。本领域技术人员可以理解的是,在可替代的其它实施方式中,镜框走线230和镜腿走线330也可以采用线缆的形式,并不局限于柔性电路板,在此并不对本申请的保护范围产生限定作用。
在本实施方式中,第一电子单元整体集成于相应的镜腿300内。本领域技术人员可以理解的是,在可替代的其它实施方式中,第一电子单元整体也可以集成于相应的镜腿300上,或者,第一电子单元的一部分集成于相应的镜腿300内,另一部分集成于相应的镜腿300上。
在本实施方式中,第二电子单元的大部分集成于镜框200内,小部分集成于镜框200上。本领域技术人员可以理解的是,在可替代的其它实施方式中,第二电子单元整体也可以集成于镜框200上,或者,第二电子单元整体也可以集成于镜框200内,在此并不对本申请的保护范围产生限定作用。
在本实施方式中,第一电子单元和第二电子单元的结构组成以及布置方式、电连接方式等可采用现有技术中已有的智能眼镜100中电子单元的布置方式,在此不做过多赘述。
进一步地,智能眼镜100具有图中未示出的处理装置。在本实施方式中,处理装置集成于其中一个镜腿300内,也就是说,该处理装置构成位于对应的镜腿300的第一电子单元的一部分。本领域技术人员可以理解的是,在可替代的其它实施方式中,处理装置也可以集成于镜框200内,此时,该处理装置构成位于镜框200的第二电子单元的一部分。
在本实施方式中,智能眼镜的显示单元(图中未示出)用于显示摄像装置拍摄的画面或视频,或者显示智能眼镜100中存储的视频信息。该显示单元可以集成于智能眼镜100的镜框200或镜腿300,也可以集成于镜片700。本领域技术人员可以理解的是,该显示单元的结构以及设置位置可以采用现有技术中已知的结构,在此不做过多的赘述。
在本实施方式中,镜片具有两个。本领域技术人员可以理解的是,在可替代的其它实施方式中,镜片也可以仅具有一个。在本实施方式中,镜片700可以采用现有技术中已有的能够显示该显示单元输出的图像的镜片,比如,光波导镜片。本领域技术人员可 以理解的是,在可替代的其它实施方式中,镜片可以采用现有技术中不能够显示图像的普通镜片,智能眼镜不具有显示单元,此时智能眼镜并不能显示图像,仅具有音频功能。
当镜腿300从折叠收放状态切换到展开使用状态时,第一电连接部510与对应的第二电连接部520电连接,处理装置产生一控制信号,开启显示单元。当镜腿300从展开使用状态切换到折叠收放状态时,第一电连接部510与对应的第二电连接部520电断开,处理装置产生另一控制信号,关闭显示单元或使显示单元处于待机状态。
可选地,当镜腿300从折叠收放状态切换到展开使用状态时,第一电连接部510与对应的第二电连接部520电连接,处理装置产生一控制信号,开启显示单元或使显示单元处于待机状态。当镜腿300从展开使用状态切换到折叠收放状态时,第一电连接部510与对应的第二电连接部520电断开,处理装置产生另一控制信号,关闭显示单元。
通过电连接装置500的导通和断开,来判断用户的佩戴状态,实现自动关机/待机和开机;可以取消佩戴检测的传感器,节约成本。该佩戴检测的传感器可以为距离传感器、接近光传感器或电容触摸传感器。其中,距离传感器在通话时候能根据距离远近来灭屏亮屏。
需要说明的是,处理装置的例子包括,但是不局限于,处理器、专用集成电路(ASIC)等,和/或其任何组合。根据一个方面,处理器可以是微处理器、数字信号处理器、微控制器等,和/或其任何组合。根据另一个方面,处理器可以是单核处理器,多核处理器等,和/或其任何组合。
处理器可以包括一个或多个处理单元,例如:处理器可以包括应用处理器、调制解调处理器、图形处理器、图像信号处理器、视频处理单元、控制器、存储器、视频编解码器、数字信号处理器、基带处理器、和/或神经网络处理器等。其中,不同的处理单元可以是独立的器件,也可以集成在一个或多个处理器中。
其中,处理器可以是智能眼镜100的神经中枢和指挥中心。处理器可以根据指令操作码和时序信号,产生操作控制信号,完成取指令和执行指令的控制。处理器的图像信息接收端与摄像装置的图像信息输出端连接,处理器的音频信息接收端与麦克风的音频信息输出端连接,还包括一端设置有Type-C数据接口,另一端与处理器电连接的数据传输线,数据传输线的数据接收端与处理器的数据输出端连接。
处理器中还可以设置存储器,用于存储指令和数据。在一些实施例中,处理器中的存储器为高速缓冲存储器。该存储器可以保存处理器刚用过或循环使用的指令或数据。如果处理器需要再次使用该指令或数据,可从存储器中直接调用。避免了重复存取,减少了处理器的等待时间,因而提高了系统的效率。
更进一步地,智能眼镜100还具有图中未示出的音频装置,音频装置设置于镜腿300的在智能眼镜100佩戴时靠近用户耳部的位置处。音频装置采用扬声器或骨传导装置。该音频装置可以单独播放智能眼镜100中存储的音频信息,智能眼镜也可以通过有线或无线的方式连接其他电子设备,例如手机,从而智能眼镜的音频装置可以播放其他电子设备(如手机)中的音频信息。
当音频装置采用扬声器时,扬声器可以集成于镜腿300内,即便在嘈杂的环境下,也能够使用户清楚地听到声音。当音频装置采用骨传导装置时,产生的声音能够通过用户头部侧面的骨头传递到内耳,这样用户就可以听到声音了。
在本实施方式中,在两条镜腿300内均集成有该音频装置,此时,集成于其中一条镜腿300的音频装置构成第一电子单元的一部分,集成于另一条镜腿的音频装置构成第三电子单元的一部分。
当镜腿300从折叠收放状态切换到展开使用状态时,第一电连接部510与对应的第二电连接部520电连接,处理装置产生一控制信号,开启音频装置。当镜腿300从展开使用状态切换到折叠收放状态时,第一电连接部510与对应的第二电连接部520电断开,处理装置产生另一控制信号,关闭音频装置或使音频装置处于待机状态。
本领域技术人员可以理解的是,在可替代的其它实施方式中,当镜腿300从折叠收放状态切换到展开使用状态时,第一电连接部510与对应的第二电连接部520电连接,处理装置产生一控制信号,也可以开启音频装置或使音频装置处于待机状态。当镜腿300从展开使用状态切换到折叠收放状态时,第一电连接部510与对应的第二电连接部520电断开,处理装置产生另一控制信号,关闭音频装置。
更进一步地,智能眼镜100还具有图中未示出的麦克风。该麦克风设置于镜腿300,用于采集音频信息。此时,麦克风构成第一电子单元的一部分。
本领域技术人员可以理解的是,在可替代的其它实施方式中,麦克风也可以集成于镜框200。此时,麦克风构成第二电子单元的一部分。
智能眼镜100还具有图中未示出的摄像装置。摄像装置设置于镜框200的前部,并用于采集图像信息。此时,摄像装置构成第二电子单元的一部分。
其中,摄像装置、显示单元、音频装置和处理装置之间的通信电路采用现有技术中已知的电路,在此不做过多赘述。
在一些实施方式中,处理装置和摄像装置通过CSI接口(即相机串行接口,英文全称为“Camera Serial Interface”)通信,实现智能眼镜100的拍摄功能。处理装置和显示单元通过DSI接口(即显示器串行接口,英文全称为“Display Serial Interface”)通信,实现智能眼镜100的显示功能。
智能眼镜100还具有图中未示出的电池模块,电池模块设置于镜腿300内。在本实施方式中,两个镜腿300内均集成有电池模块。此时,集成于其中一条镜腿300的电池模块构成相应的第一电子单元的一部分。集成于另一条镜腿300的电池模块构成第三电子单元的一部分。可以理解堤,电池模块也可以设置在一条镜腿中。
可将电池模块布置于镜腿300中端靠近佩戴时耳朵支点,使得整个眼镜的重量分布更加均衡,有利于减轻智能眼镜100前端重量通过鼻托对鼻梁施加的压力,减轻压迫感,增加特别是长时间佩戴的舒适性。
在本实施方式中,电池模块对称地在两条镜腿300。电池模块为智能眼镜100上设置的镜片700、音频装置、摄像装置等智能部件来提供电能。
本领域技术人员可以理解的是,在可替代的其它实施方式中,也可以将电池模块集成于镜框200,此时,电池模块构成第二电子单元的一部分;也可以仅在一条镜腿300集成电池模块;也可以将电池模块集成于镜腿300上。
请参见图5,图5为本申请实施例的智能眼镜100的一实施方式的结构示意图,其中,两条镜腿300处于展开使用状态,且该视角为从镜片700的正面观看,图中示出了无线充电线圈600。在本实施方式中,电池模块集成于镜框200,该电池模块构成第二电子单 元的一部分。
如图5所示,第二电子单元还包括无线充电线圈600,无线充电线圈600设置于镜框200。且无线充电线圈600包括第一线圈部分610和第二线圈部分620,第一线圈部分610和第二线圈部分620分别环绕智能眼镜100的两个镜片700设置。且第一线圈部分610与第二线圈部分620串联连接,使得第一线圈部分610和第二线圈部分620产生的电压串联对电池模块充电。这样无需考虑用户对镜腿300的折叠的随机性问题,布置两个线圈部分可以同时充电,充电效率高,对应的充电盒的感应线圈定位性和兼容性好。
在一种可选实施例中,可以将放置智能眼镜100的镜盒作为充电设备。智能眼镜100放置于镜盒内的空腔后,上述智能眼镜100的无线充电线圈600与镜盒空腔的内壁上设置的感应线圈感应,从而通过镜盒将电源供向镜腿300的电池模块,实现充电。
智能眼镜100还具有图中未示出的存储器、传感器模块、通信模块等,这些电子器件可以集成于镜腿内,构成第一电子单元的一部分,也可以集成于镜框内,构成第二电子单元的一部分。其中传感器模块可以包括焦距检测光学传感器,焦距检测光学传感器用于检测用户的眼部的眼球的焦距。传感器模块还可以包含其他传感器,例如声音探测器、接近光传感器、距离传感器、陀螺仪传感器、环境光传感器、加速度传感器和温度传感器等。
镜腿300内还具有电路板340(参见图7),电路板340固定于对应的镜腿300内。位于对应的镜腿300内的电子器件(比如,处理装置、音频装置、电池等)集成于对应的该电路板340。在本实施方式中,两个镜腿300内均集成有电路板340(参见图7)。此时,集成于其中一条镜腿300的电路板340构成相应的第一电子单元的一部分,集成于另一条镜腿300的电路板构成第三电子单元的一部分。
镜框200的左右的一端部210内也可以集成有电路板240(参见图7),此时,电路板240构成第二电子单元的一部分。电路板240固定于镜框200内。
为了进一步降低智能眼镜100的能耗,减小增强现实智能眼镜100的电路部分的体积和重量,增加佩戴的舒适感,电路板设计可采用HDI板(高密度互连板,全称为,High Density Interconnector)的设计,从而最大限度地减小了电路板的体积。
在一些实施方式中,在两条镜腿300上可各自设置控制按钮(图中未示出),以便对镜片700所显示的内容进行统一控制或者单独控制。控制按钮也可以设置在镜框200上,优选成对设置以平衡重量分布。
在镜腿300上也可设置多功能按键,该按键是可自定义按键,其能够根据用户的使用需求在用户设置界面中自定义按键功能,从而极大地扩展根据本申请智能眼镜100的应用范围。
另外,智能眼镜100可以包含无线通信功能。通信模块可以包含无线通信模块和移动通信模块。无线通信功能可以通过天线(未示出)、移动通信模块(未示出),调制解调处理器(未示出)以及基带处理器(未示出)等实现。
需要说明的是,上述硬件和软件均可以采用现有技术中已知的,在此不做过多赘述。
以下结合图6-图9主要对智能眼镜100的镜架的其中一条镜腿300与镜框200配合部分的一实施方式的结构作介绍。
请参见图6-图9,图6为图3中A部分的放大结构示意图,主要示出了镜腿300在 折叠收放状态下与镜框200的一端部210之间配合部分的结构。图7为本申请实施例的智能眼镜100的电连接装置500部分的一实施方式的内部结构示意图,其中,该图示出了在镜腿300处于展开使用状态下,设置于该镜腿300的第一电连接部510与设置于镜框200的第二电连接部520之间的配合结构。
图8为本申请实施例的智能眼镜100的一实施方式的俯视结构示意图,其中,其中一条镜腿300处于展开使用状态,另一条镜腿300处于折叠收放状态。图9为图8中B部分的放大结构示意图,该图主要示出了镜腿300旋转至与镜框200的一端部210之间还留有间隙800时,该电连接装置500的第一电连接部510和第二电连接部520仍然能够接触并弹性电连接,且能够提供给镜腿300一回弹力。
如图6所示,连接轴400为螺丝。镜腿300的一端部310的内侧面311设有突出的一第一凸台320。镜框200的一端部210的内侧面211设有突出的两个第二凸台220,两个第二凸台220沿螺丝的轴线方向O1间隔设置,并形成有容纳空间。第一凸台320的部分容纳于容纳空间内。螺丝从上至下贯穿于两个第二凸台220中的上凸台和第一凸台320,并通过两个第二凸台220中的下凸台中的螺纹孔拧入螺丝。这样能够非常方便地实现镜腿300的转动,且方便镜腿300和镜框200单独拆卸或更换。
需要说明的是,两个第二凸台220中的上凸台为两个第二凸台220中沿螺丝的轴线方向O1位于最上方的凸台,两个第二凸台220中的下凸台为两个第二凸台220中沿螺丝的轴线方向O1位于最下方的凸台。
本领域技术人员可以理解的是,在可替代的其它实施方式中,也可以将镜腿300的一端部310和镜框200的一端部210的可转动连接且可拆卸连接的相关结构设计对换,比如,第一凸台320也可以设置于镜腿300的一端部310的端面312,第二凸台220也可以设置于镜框200的一端部210的端面212。
进一步地,在本实施方式中,第一凸台320与镜腿300的一端部310一体成型,第二凸台220与镜框200的一端部210一体成型。本领域技术人员可以理解的是,在可替代的其它实施方式中,第一凸台320与镜腿300的一端部310也可以采用分体式结构,第二凸台220与镜框200的一端部210也可以采用分体式结构。
如图6-图7所示,第一电连接部510包括至少一个第一子电连接部511,第二电连接部520包括至少一个第二子电连接部521,至少一个第一子电连接部511与至少一个第二子电连接部521对应设置。
在本实施方式中,第一子电连接部511和第二子电连接部521均具有多个。多个第一子电连接部511沿与连接轴400的轴线方向平行的方向间隔设置,多个第二子电连接部521也沿与连接轴400的轴线方向平行的方向间隔设置。这样能够确保多个第一子电连接部511和多个第二子电连接部521之间同时导通或同时断开,避免某些第一子电连接部511和对应的第二子电连接部521先导通导致短路,从而提高了使用的可靠性。
本领域技术人员可以理解的是,在可替代的其它实施方式中,多个第一子电连接部511也可以沿其它方向间隔设置,多个第二子电连接部521也可以沿其它方向间隔设置,只需保证多个第一子电连接部511的排列方向和多个第二子电连接部521的排列方向大致相同即可。
如图7所示,当镜腿300处于展开使用状态时,第一子电连接部511与对应的第二 子电连接部521之间弹性电连接,同时提供给镜腿300一回弹力。
当镜腿300处于展开使用状态时,第一电连接部510的第一子电连接部511与第二电连接部520的对应的第二子电连接部521之间弹性电连接,同时提供给镜腿300一回弹力,在两者之间具有沿镜腿的一端部的长度方向L1或大致与镜腿的一端部的长度方向L1平行的方向的挤压时,具有一定的浮动位移,能够消除所产生的挤压力,避免第一子电连接部511与对应的第二子电连接部521产生硬性损伤,且能够保证第一子电连接部511与对应的第二子电连接部521之间的电接触的稳定性。
如图8-9所示,镜腿300旋转至与镜框200的一端部210之间还留有间隙800的位置时,第一子电连接部511和对应的第二子电连接部521之间仍然能够接触并弹性电连接,且能够提供给镜腿300一回弹力。从而能够确保佩戴该智能眼镜100时镜腿300对用户头部夹持力,且该镜腿300具有一定的旋转余量,从而增加了用户佩戴兼容性和舒适度。
如图7所示,当第一子电连接部511和对应的第二子电连接部521中的一个为弹性电连接部时,另一个为弹性电连接部或非弹性电连接部。也就是说,第一子电连接部511和对应的第二子电连接部521中的至少一个是弹性电连接部。即第一子电连接部511和对应的第二子电连接部521可以均为弹性电连接部;或者,第一子电连接部511为弹性电连接部,对应的第二子电连接部521为非弹性电连接部;或者,第一子电连接部511为非弹性电连接部,对应的第二子电连接部521为弹性电连接部。弹性电连接部为弹性电连接端子或导电弹片。和/或,非弹性电连接部为非弹性电连接端子或导电片。
在本实施方式中,第一子电连接部511为弹性电连接部,对应的第二子电连接部521也为非弹性电连接部。
本领域技术人员可以理解的是,在可替代的其它实施方式中,第一子电连接部511和对应的第二子电连接部521也可以均采用非弹性电连接部,即在镜腿300处于展开使用状态时,第一电连接部510的第一子电连接部511与第二电连接部520的对应的第二子电连接部521之间也可以采用硬接触。
如图7所示,当镜腿300处于折叠收放状态时,第一子电连接部511的用于与对应的第二子电连接部521电连接的一端突出于镜腿300的一端部310的端面312,第二子电连接部521的用于与对应的第一子电连接部511电连接的一端凹设于镜框200的一端部210的端面212。
本领域技术人员可以理解的是,在可替代的其它实施方式中,第一子电连接部511的用于与对应的第二子电连接部521电连接的一端可以凹设于镜腿300的一端部310的端面312,第二子电连接部521的用于与对应的第一子电连接部511电连接的一端突出于镜框200的一端部210的端面212。
在本实施方式中,多个第一子电连接部511均为弹簧式探针,多个第二子电连接部521均为导电片。本领域技术人员可以理解,第一子电连接部511和第二子电连接部521也可以为其他类型的电连接端子,只要能够通过接触实现信号导通,通过脱离实现信号断开即可。
本领域技术人员可以理解的是,多个第一子电连接部511的结构可以相同,也可以不同,比如,多个第一子电连接部511中的一部分第一子电连接部511采用弹簧式探针, 另一部分第一子电连接部511采用导电片;多个第二子电连接部521的结构可以相同,也可以不同,比如,多个第二子电连接部521中的一部分第二子电连接部521采用导电片,另一部分第二子电连接部521采用弹簧式探针,在此并不对本申请的保护范围产生限定作用。
进一步地,位于每一个镜腿300的多个第一子电连接部511背离对应的第二子电连接部521的一端均固定于电路板340,并与电路板340电连接。该电路板340和对应的镜腿走线330电连接。
分别位于镜框200的左右的一端部210的多个第二子电连接部521背离对应的第一子电连接部511的一端均固定于电路板240,并与电路板240电连接。该电路板240与镜框走线230电连接。
在本实施方式中,弹簧式探针可采用现有技术已知的结构,在此不做过多赘述。
比如,该弹簧式探针可以包括针头512、针管513和弹簧514,针头512沿针管513的轴线方向滑设于针管513内,弹簧514位于针管513内,弹簧514的一端抵靠于针管513的底部,另一端抵靠于针头512的底端。且针头512的底端为斜面结构,这样能够确保在工作时保持针头512与针管513的内壁接触,让电流主要通过镀金的针头512和针管513,以确保该弹簧式探针的稳定及低阻抗。针头512的顶端用于与导电片(即第二子电连接部521)接触。其中,针管513的底端固定于电路板340,并与电路板340电连接。本领域技术人员可以理解的是,在可替代的其它实施方式中,在弹簧式探针处于工作状态(即电信号导通状态)时,电流也可以主要通过针头经过弹簧向针管传导。
请参见图10-图11,图10为本申请实施例的智能眼镜100的电连接装置500部分的另一实施方式的内部结构示意图,其中,示出了设置于镜腿300的第一电连接部510与设置于镜框200的第二电连接部520之间的配合结构,且第一子电连接部511采用弹片结构。图11为图10中电连接装置部分的俯视结构示意图,其中,设置于镜腿的第一电连接部与设置于镜框的第二电连接部之间处于脱离状态。
如图10-图11所示,该电连接装置500以及电连接装置500的第一电连接部510和镜腿300的配合结构、第二电连接部520和镜框200的配合结构基本与上述实施方式所描述的结构相同,其不同之处在于,多个第一子电连接部511均为弹片,多个第二子电连接部521均为导电片。在本实施方式中,该弹片为2字形结构。
本领域技术人员可以理解的是,多个第一子电连接部511的结构可以相同,也可以不同,比如,多个第一子电连接部511中的一部分第一子电连接部511采用弹片,另一部分第一子电连接部511采用导电片;多个第二子电连接部521的结构可以相同,也可以不同,比如,多个第二子电连接部521中的一部分第二子电连接部521采用导电片,另一部分第二子电连接部521采用弹片,在此并不对本申请的保护范围产生限定作用。
具体地,位于每一个镜腿300的多个弹片背离对应的导电片的一端均固定于电路板340,并与电路板340电连接。该电路板340和对应的镜腿走线330电连接。
分别位于镜框200的左右的一端部210的多个导电片背离对应的弹片的一端均固定于电路板240,并与电路板240电连接。该电路板240与镜框走线230电连接。
位于每一个镜腿300的多个弹片面向对应的导电片的一端用于在与导电片相接触时实现两者之间的电连接,并在与导电片相脱离时,实现弹片与对应的导电片之间的电信 号断开。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。

Claims (35)

  1. 一种镜架,包括镜腿和镜框,所述镜腿设有第一电子单元,所述镜框设有第二电子单元,所述镜腿的一端部通过一连接轴可转动连接于所述镜框的一端部,使得所述镜腿能够在展开使用状态和折叠收放状态之间切换,其特征在于,所述镜腿的一端部通过所述连接轴可拆卸连接于所述镜框的一端部;
    所述镜腿的一端部与所述镜框的一端部设置有电连接装置,所述电连接装置包括对应设置的第一电连接部和第二电连接部,所述第一电连接部设置于所述镜腿的一端部,并与所述第一电子单元电连接,所述第二电连接部设置于所述镜框的一端部,并与所述第二电子单元电连接;
    当所述镜腿处于所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接;当所述镜腿处于所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开。
  2. 如权利要求1所述的镜架,其特征在于,所述第一电连接部包括至少一个第一子电连接部,所述第二电连接部包括至少一个第二子电连接部,所述第一子电连接部与所述第二子电连接部对应设置。
  3. 如权利要求2所述的镜架,其特征在于,当所述镜腿处于所述展开使用状态时,所述第一子电连接部与对应的所述第二子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
  4. 如权利要求3所述的镜架,其特征在于,当所述第一子电连接部和对应的所述第二子电连接部中的一个为弹性电连接部时,另一个为弹性电连接部或非弹性电连接部。
  5. 如权利要求4所述的镜架,其特征在于,所述弹性电连接部为弹性电连接端子或导电弹片;和/或,所述非弹性电连接部为非弹性电连接端子或导电片。
  6. 如权利要求2-5中任一项所述的镜架,其特征在于,当所述镜腿处于所述折叠收放状态时,所述第一子电连接部的用于与对应的所述第二子电连接部电连接的一端突出于所述镜腿的一端部的端面,所述第二子电连接部的用于与对应的所述第一子电连接部电连接的一端凹设于所述镜框的一端部的端面,或者,所述第一子电连接部的用于与对应的所述第二子电连接部电连接的一端凹设于所述镜腿的一端部的端面,所述第二子电连接部的用于与对应的所述第一子电连接部电连接的一端突出于所述镜框的一端部的端面。
  7. 如权利要求2-6中任一项所述的镜架,其特征在于,所述第一电连接部包括多个所述第一子电连接部,所述第二电连接部包括多个所述第二子电连接部,多个所述第一子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置,多个所述第二子电连接部也沿与所述连接轴的轴线方向平行的方向间隔设置。
  8. 如权利要求1-7中任一项所述的镜架,其特征在于,所述连接轴为螺丝。
  9. 如权利要求8所述的镜架,其特征在于,所述镜腿的一端部的内侧面设有突出的一第一凸台;所述镜框的一端部的内侧面设有突出的两个第二凸台,两个所述第二凸台沿所述螺丝的轴线方向间隔设置,并形成有容纳空间;
    所述第一凸台的部分容纳于所述容纳空间内,所述螺丝从上至下贯穿于两个所述第二凸台中的上凸台和所述第一凸台,并通过两个所述第二凸台中的下凸台中的螺纹孔拧入所述螺丝。
  10. 如权利要求1-9中任一项所述的镜架,其特征在于,所述镜架包括处理装置,所述处理装置集成于所述镜腿,以构成位于所述镜腿的所述第一电子单元的一部分,或者,所述处理装置集成于所述镜框,以构成所述第二电子单元的一部分;所述第一电子单元包括音频装置,所述音频装置设置于所述镜腿的在佩戴时靠近用户耳部的位置处;
    当所述镜腿从所述折叠收放状态切换到所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接,所述处理装置产生一控制信号,开启所述音频装置;
    当所述镜腿从所述展开使用状态切换到所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开,所述处理装置产生另一控制信号,关闭所述音频装置或使所述音频装置处于待机状态。
  11. 如权利要求1-10中任一项所述的镜架,其特征在于,所述镜架包括两个所述镜腿,两个所述镜腿的一端部分别通过一所述连接轴可转动并可拆卸连接于所述镜框的左右的一端部,且每一所述镜腿的一端部与所述镜框的对应的一端部均设置有所述电连接装置。
  12. 如权利要求11所述的镜架,其特征在于,所述镜框内设置有镜框走线,所述第二电子单元与所述镜框走线电连接;
    当两个所述镜腿均处于所述展开使用状态时,位于每一所述镜腿的所述第一电子单元与位于所述镜框的所述第二电子单元之间通过对应的所述电连接装置和所述镜框走线电连接,分别位于两个所述镜腿的所述第一电子单元之间通过两个所述电连接装置以及所述镜框走线电连接。
  13. 如权利要求12所述的镜架,其特征在于,每一所述镜腿内设置有镜腿走线,所述第一电子单元与所述镜腿走线电连接,所述电连接装置的所述第一电连接部与对应的所述镜腿走线的一端部电连接,所述电连接装置的所述第二电连接部与所述镜框走线的一端部电连接。
  14. 如权利要求12或13所述的镜架,其特征在于,每一所述镜腿集成有电池模块,所述电池模块构成对应的所述第一电子单元的一部分。
  15. 如权利要求1-14中任一项所述的镜架,其特征在于,所述第一电子单元集成于所述镜腿内,所述第二电子单元集成于所述镜框内。
  16. 如权利要求1-13中任一项所述的镜架,其特征在于,所述镜框集成有电池模块,所述电池模块构成所述第二电子单元的一部分;
    所述第二电子单元还包括无线充电线圈,所述无线充电线圈包括第一线圈部分和第二线圈部分,所述第一线圈部分和所述第二线圈部分分别环绕所述镜架的两个镜片设置,且所述第一线圈部分与所述第二线圈部分串联连接,使得所述第一线圈部分和所述第二线圈部分产生的电压串联对所述电池模块充电。
  17. 如权利要求1-16中任一项所述的镜架,其特征在于,所述第一电连接部和所述第二电连接部均位于所述连接轴外;
    和/或,当所述镜腿处于所述展开使用状态时,所述第一电连接部和对应的所述第二电连接部接触;当所述镜腿处于所述折叠收放状态时,所述第一电连接部和对应的所述第二电连接部脱离。
  18. 一种智能眼镜,其特征在于,所述智能眼镜包括:
    如权利要求1-17中任一项所述的镜架;
    镜片,所述镜片固定于所述镜架的镜框。
  19. 如权利要求18所述的智能眼镜,其特征在于,所述智能眼镜还包括能够显示图像的显示单元;
    当所述镜腿从所述折叠收放状态切换到所述展开使用状态时,所述第一电连接部与对应的所述第二电连接部电连接,所述智能眼镜的处理装置产生一控制信号,开启所述显示单元;
    当所述镜腿从所述展开使用状态切换到所述折叠收放状态时,所述第一电连接部与对应的所述第二电连接部电断开,所述处理装置产生另一控制信号,关闭所述显示单元或使所述显示单元处于待机状态。
  20. 如权利要求18或19所述的智能眼镜,其特征在于,所述智能眼镜为增强现实智能眼镜或虚拟现实智能眼镜。
  21. 一种镜腿,集成有电子单元,其特征在于,所述镜腿的一端部用于通过一连接轴可转动连接并可拆卸连接于镜框的一端部,使得所述镜腿能够在展开使用状态和折叠收放状态之间切换;
    所述镜腿的一端部设有电连接部,所述电连接部与所述电子单元电连接,位于所述镜腿的所述电连接部用于与位于所述镜框的一端部的电连接部配合;
    当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述电连接部与对应的位于所述镜框的一端部的所述电连接部电连接,使得集成于所述镜腿的所述电子单元与集成 于所述镜框的电子单元电连接;当所述镜腿处于所述折叠收放状态时,位于所述镜腿的所述电连接部与对应的位于所述镜框的一端部的所述电连接部电断开,使得集成于所述镜腿的所述电子单元与集成于所述镜框的所述电子单元电信号断开。
  22. 如权利要求21所述的镜腿,其特征在于,位于所述镜腿的所述电连接部包括至少一个子电连接部,位于所述镜框的所述电连接部包括至少一个子电连接部,位于所述镜腿的所述子电连接部用于与位于所述镜框的一端部的所述子电连接部对应设置;
    当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述子电连接部与对应的位于所述镜框的一端部的所述子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
  23. 如权利要求22所述的镜腿,其特征在于,位于所述镜腿的所述子电连接部为弹性电连接部。
  24. 如权利要求23所述的镜腿,其特征在于,所述弹性电连接部为弹性电连接端子或导电弹片。
  25. 如权利要求22-24中任一项所述的镜腿,其特征在于,当所述镜腿处于所述折叠收放状态时,位于所述镜腿的所述子电连接部的一端突出于所述镜腿的一端部的端面。
  26. 如权利要求22-25中任一项所述的镜腿,其特征在于,位于所述镜腿的所述电连接部的所述子电连接部具有多个,位于所述镜腿的多个所述子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置。
  27. 如权利要求21-26中任一项所述的镜腿,其特征在于,所述镜腿的一端部的内侧面设有突出的一凸台,所述凸台用于通过所述连接轴与对应的所述镜框的一端部转动并可拆卸连接。
  28. 一种镜框,集成有电子单元,其特征在于,所述镜框的两端部分别通过一连接轴与两条镜腿的一端部可转动并可拆卸连接,使得两条所述镜腿均能够在展开使用状态和折叠收放状态之间切换;
    所述镜框的两端部均设有电连接部,所述电连接部与所述电子单元电连接,位于所述镜框的两端部的所述电连接部用于分别与位于两条所述镜腿的电连接部配合;
    当所述镜腿处于所述展开使用状态时,位于所述镜框的两端部的所述电连接部分别与位于两条所述镜腿的电连接部电连接,使得集成于所述镜框的所述电子单元与集成于各所述镜腿的电子单元电连接;当所述镜腿处于所述折叠收放状态时,位于所述镜框的两端部的所述电连接部分别与位于两条所述镜腿的电连接部电断开,使得集成于所述镜框的所述电子单元与集成于各所述镜腿的所述电子单元电信号断开。
  29. 如权利要求28所述的镜框,其特征在于,位于所述镜框的所述电连接部包括至 少一个子电连接部,位于所述镜腿的所述电连接部包括至少一个子电连接部,位于所述镜框的两端部的所述子电连接部用于分别与位于两条所述镜腿的所述子电连接部对应设置;
    当所述镜腿处于所述展开使用状态时,位于所述镜腿的所述子电连接部与对应的位于所述镜框的一端部的所述子电连接部之间弹性电连接,同时提供给所述镜腿一回弹力。
  30. 如权利要求29所述的镜框,其特征在于,位于所述镜框的所述子电连接部为非弹性电连接部,所述非弹性电连接部为非弹性电连接端子或导电片。
  31. 如权利要求29或30所述的镜框,其特征在于,位于所述镜框的各所述子电连接部的一端凹出于所述镜框的对应的端部的端面。
  32. 如权利要求29-31中任一项所述的镜框,其特征在于,位于所述镜框的各端部的所述电连接部的所述子电连接部具有多个,位于所述镜框的各端部的多个所述子电连接部沿与所述连接轴的轴线方向平行的方向间隔设置。
  33. 如权利要求28-32中任一项所述的镜框,其特征在于,所述镜框的各端部的内侧面设有突出的两个凸台,两个所述凸台沿所述连接轴的轴线方向间隔设置,并形成有容纳空间;
    所述镜腿的凸台的部分容纳于所述容纳空间内,所述连接轴从上至下贯穿于所述镜框的两个所述凸台中的上凸台和所述镜腿的所述凸台,并通过所述镜框的两个所述凸台中的下凸台中的螺纹孔拧入所述连接轴。
  34. 如权利要求28-33中任一项所述的镜框,其特征在于,所述镜框集成有电池模块,所述电池模块构成集成于所述镜框的所述电子单元的一部分;集成于所述镜框的所述电子单元包括无线充电线圈,所述无线充电线圈包括第一线圈部分和第二线圈部分,所述第一线圈部分和所述第二线圈部分用于分别环绕两个镜片设置,且所述第一线圈部分与所述第二线圈部分串联连接,使得所述第一线圈部分和所述第二线圈部分产生的电压串联对电池模块充电。
  35. 一种镜框总成,其特征在于,所述镜框总成包括:
    如权利要求28-34中任一项所述的镜框;
    镜片,所述镜片固定于所述镜框。
PCT/CN2020/130881 2019-12-31 2020-11-23 镜架、智能眼镜、镜腿、镜框和镜框总成 WO2021135724A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201911408309.3A CN111025679A (zh) 2019-12-31 2019-12-31 镜架、智能眼镜、镜腿、镜框和镜框总成
CN201911408309.3 2019-12-31

Publications (1)

Publication Number Publication Date
WO2021135724A1 true WO2021135724A1 (zh) 2021-07-08

Family

ID=70197424

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/130881 WO2021135724A1 (zh) 2019-12-31 2020-11-23 镜架、智能眼镜、镜腿、镜框和镜框总成

Country Status (2)

Country Link
CN (1) CN111025679A (zh)
WO (1) WO2021135724A1 (zh)

Families Citing this family (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111025679A (zh) * 2019-12-31 2020-04-17 华为技术有限公司 镜架、智能眼镜、镜腿、镜框和镜框总成
CN111596471B (zh) * 2020-05-11 2023-01-31 维沃移动通信有限公司 可穿戴设备
CN113671694A (zh) * 2020-05-13 2021-11-19 宇龙计算机通信科技(深圳)有限公司 头戴式显示设备
CN111679433A (zh) * 2020-06-02 2020-09-18 维沃移动通信有限公司 一种智能头戴设备
CN112260336B (zh) * 2020-09-18 2022-11-22 深圳市创想数维科技有限公司 一种无线充电眼镜及系统
DE102020212392A1 (de) 2020-09-30 2022-03-31 tooz technologies GmbH Grundsteuerung eines head-mounted display durch steuern der stellung eines bügels eines brillenrahmens
CN114384709B (zh) * 2020-10-21 2023-05-05 华为技术有限公司 智能眼镜、镜腿鼻托总成、镜框、镜框总成及镜架
CN112379525B (zh) * 2020-11-25 2022-05-27 歌尔光学科技有限公司 一种连接结构及头戴设备
TWI817252B (zh) * 2020-11-26 2023-10-01 仁寶電腦工業股份有限公司 頭戴顯示裝置
CN112526752A (zh) * 2020-12-07 2021-03-19 歌尔光学科技有限公司 可穿戴显示设备
CN112526765B (zh) * 2020-12-08 2023-08-18 歌尔科技有限公司 一种眼镜
CN112462525B (zh) * 2021-01-23 2021-04-20 北京佳珥医学科技有限公司 无线充电式ar眼镜
CN112887703A (zh) * 2021-03-26 2021-06-01 歌尔股份有限公司 头戴式显示设备的控制方法、头戴式显示设备及存储介质
CN114326934A (zh) * 2021-04-26 2022-04-12 闪耀现实(无锡)科技有限公司 计算单元组件
CN113189797A (zh) * 2021-05-11 2021-07-30 Tcl通讯(宁波)有限公司 智能眼镜
CN113359302A (zh) * 2021-06-29 2021-09-07 歌尔科技有限公司 智能眼镜腿的控制方法及装置、计算机可读存储介质
CN113820861B (zh) * 2021-09-03 2023-04-25 歌尔科技有限公司 智能眼镜及控制系统
CN113985609A (zh) * 2021-10-29 2022-01-28 歌尔光学科技有限公司 一种头戴式显示设备及其镜腿部件、镜架部件和控制方法
CN115047625A (zh) * 2022-06-06 2022-09-13 湖北星纪时代科技有限公司 一种智能眼镜
CN117826446A (zh) * 2022-09-27 2024-04-05 歌尔微电子股份有限公司 一种智能眼镜
CN219225244U (zh) * 2022-10-21 2023-06-20 沈奇凡 照明眼镜

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202159184U (zh) * 2011-06-01 2012-03-07 深圳Tcl新技术有限公司 无线充电3d眼镜结构及装置
CN104285438A (zh) * 2012-05-21 2015-01-14 奥林巴斯株式会社 眼镜型可佩戴装置、眼镜型可佩戴装置的前方部和镜腿部
CN104756482A (zh) * 2012-10-24 2015-07-01 奥林巴斯株式会社 眼镜型可佩戴装置以及眼镜型可佩戴装置的前方部
CN106291985A (zh) * 2016-10-20 2017-01-04 广州初曲科技有限公司 一种基于增强现实技术的高续航企业级智能协作眼镜
US20170060252A1 (en) * 2015-09-01 2017-03-02 Kabushiki Kaisha Toshiba Eyeglasses-type wearable device and method using the same
CN207133527U (zh) * 2017-09-15 2018-03-23 广州知途鸟智能科技有限公司 智能眼镜与镜盒
CN209373266U (zh) * 2018-01-22 2019-09-10 深圳市贝利视通智能科技有限公司 一种骨传导眼镜
CN110383151A (zh) * 2017-03-13 2019-10-25 斯库嘉科技有限公司 带有无线充电装置的眼镜
CN110460129A (zh) * 2019-08-23 2019-11-15 Oppo(重庆)智能科技有限公司 智能眼镜、智能眼镜盒及无线充电系统
CN209821503U (zh) * 2019-03-12 2019-12-20 杭州历历信息科技有限公司 智能眼镜及其镜腿、镜架与智能眼镜系统
CN111025679A (zh) * 2019-12-31 2020-04-17 华为技术有限公司 镜架、智能眼镜、镜腿、镜框和镜框总成

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN204576008U (zh) * 2015-04-09 2015-08-19 郁树胜 可拆卸式运动眼镜
CN206378641U (zh) * 2016-12-14 2017-08-04 潍坊歌尔电子有限公司 一种眼镜显示装置的按键连接结构

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202159184U (zh) * 2011-06-01 2012-03-07 深圳Tcl新技术有限公司 无线充电3d眼镜结构及装置
CN104285438A (zh) * 2012-05-21 2015-01-14 奥林巴斯株式会社 眼镜型可佩戴装置、眼镜型可佩戴装置的前方部和镜腿部
CN104756482A (zh) * 2012-10-24 2015-07-01 奥林巴斯株式会社 眼镜型可佩戴装置以及眼镜型可佩戴装置的前方部
US20170060252A1 (en) * 2015-09-01 2017-03-02 Kabushiki Kaisha Toshiba Eyeglasses-type wearable device and method using the same
CN106291985A (zh) * 2016-10-20 2017-01-04 广州初曲科技有限公司 一种基于增强现实技术的高续航企业级智能协作眼镜
CN110383151A (zh) * 2017-03-13 2019-10-25 斯库嘉科技有限公司 带有无线充电装置的眼镜
CN207133527U (zh) * 2017-09-15 2018-03-23 广州知途鸟智能科技有限公司 智能眼镜与镜盒
CN209373266U (zh) * 2018-01-22 2019-09-10 深圳市贝利视通智能科技有限公司 一种骨传导眼镜
CN209821503U (zh) * 2019-03-12 2019-12-20 杭州历历信息科技有限公司 智能眼镜及其镜腿、镜架与智能眼镜系统
CN110460129A (zh) * 2019-08-23 2019-11-15 Oppo(重庆)智能科技有限公司 智能眼镜、智能眼镜盒及无线充电系统
CN111025679A (zh) * 2019-12-31 2020-04-17 华为技术有限公司 镜架、智能眼镜、镜腿、镜框和镜框总成

Also Published As

Publication number Publication date
CN111025679A (zh) 2020-04-17

Similar Documents

Publication Publication Date Title
WO2021135724A1 (zh) 镜架、智能眼镜、镜腿、镜框和镜框总成
JP6573593B2 (ja) 入出力構造を有する着用可能な装置
JP6083880B2 (ja) 入出力機構を有する着用可能な装置
JP2015509209A (ja) 入出力機構を有する着用可能な装置
JP2018530230A (ja) ヘッドマウントディスプレイデバイス
CN202735594U (zh) 显示装置
JP2015515801A (ja) 入力及び出力構造を有するウェアラブル・デバイス
AU2013209578A1 (en) Wearable device with input and output structures
WO2018149267A1 (zh) 一种基于增强现实的显示方法及设备
CN106842565A (zh) 一种分离式可穿戴智能视觉增强设备
CN208766396U (zh) 一种可穿戴ar设备和ar显示系统
CN108445630A (zh) 一种基于增强现实技术应用于儿童场景的穿戴设备
CN201278050Y (zh) 一种具有vga接口的电脑立体眼镜显示器
US20230305301A1 (en) Head-mountable device with connectable accessories
CN207650484U (zh) 一种ar增强现实眼镜
US20220291478A1 (en) Head mounted display
CN112558306B (zh) 颈戴式设备和可穿戴设备
CN210666194U (zh) 简化镜架结构的ar眼镜设备
CN108333759B (zh) 电子设备
CN210605244U (zh) 一种具有绕曲oled柔性屏的眼镜
CN210666195U (zh) 具有多视角的ar眼镜设备
CN219039493U (zh) 眼镜
KR102616113B1 (ko) 이어폰 독립형 vr 헤드셋 장치
CN212302094U (zh) 一种头戴式感知和显示系统
CN117980805A (zh) 模块化组件

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20909074

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20909074

Country of ref document: EP

Kind code of ref document: A1