Wearable electronic device
By designing a movable second structure and multiple antenna types in wearable electronic devices, the problem of low antenna efficiency is solved, improving the efficiency of satellite communication and terrestrial network communication, and enhancing communication performance and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- MEDIATEK INC
- Filing Date
- 2025-10-23
- Publication Date
- 2026-04-28
AI Technical Summary
Wearable electronic devices face challenges such as low antenna efficiency, space constraints, and insufficient communication performance in satellite and terrestrial network communications, with the challenges being even more severe in non-terrestrial network satellite communications.
A wearable electronic device is designed, comprising a first structure and a movable second structure. The second structure is equipped with a second antenna module, which can be flipped, folded, slid, or rotated to adapt to different scenarios, increase the antenna surface area and the signal-to-ground distance, and adopt dipole, loop, monolithic, or circular polarized antenna arrays to improve communication efficiency.
It significantly enhances the communication capabilities of wearable electronic devices, especially in non-terrestrial satellite communications, improving communication efficiency and user experience, and extending standby time.
Smart Images

Figure CN121939152A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electronic device technology, and in particular to a wearable electronic device. Background Technology
[0002] The use of wireless mobile devices has grown significantly over the past few decades. Advances in algorithms and breakthroughs in antenna design have expanded wireless communication from handheld devices to wearable technologies, where the antenna area is crucial for efficiency. With the advent of the satellite communication era, tighter budget constraints necessitate higher efficiency, circular polarization, or the use of directional antennas, posing challenges to wearable electronics. Therefore, further improvements to wearable electronics are needed. Summary of the Invention
[0003] In view of this, the present invention provides a novel wearable electronic device that can be used for terrestrial network communication and non-terrestrial network (NTN) satellite communication, with stronger communication capabilities.
[0004] One embodiment of the present invention provides a wearable electronic device. The wearable electronic device includes a first structure and a second structure. The first structure includes a first antenna module embedded therein. The second structure is movably mounted on the first structure. The second structure includes a second antenna module disposed in or on the second structure.
[0005] Furthermore, the first structure further includes a housing and a display module disposed on the housing. This provides a mechanical support structure and display for the wearable electronic device to be used by the user.
[0006] Furthermore, the first structure further includes a watch face, and the second structure further includes a cover or display module movably mounted on the watch face, wherein the first antenna module is disposed in / on the watch face, and the second antenna module is disposed in / on the cover or the display module. This forms the structure of a smartwatch, thereby facilitating user operation. The second structure can also include the display module as an auxiliary display module, thereby increasing the visible area of the smartwatch and further enhancing user convenience.
[0007] Furthermore, the first antenna module includes a first antenna, the second antenna module includes a second antenna, and each of the first and second antennas includes a dipole antenna, a loop antenna, a monolithic antenna, or a circularly polarized antenna or an antenna array thereof. This allows for adaptation to different antenna structures, improving design flexibility and adaptability.
[0008] Furthermore, the second structure is flippable, foldable, slidable, or rotatable relative to the first structure, to suit different scenarios and improve design flexibility and adaptability.
[0009] Furthermore, the second structure is slidable or rotatable relative to the first structure and is covered by the first structure in the open configuration. This allows for adaptability to different scenarios, improving design flexibility and resilience.
[0010] Furthermore, when the second structure is flipped relative to the first structure, the second antenna module of the second structure is arranged in a closed configuration close to the surface of the second structure facing the first structure. This allows for adaptability to different scenarios, improving design flexibility and adaptability.
[0011] Furthermore, the second antenna is arranged along the edge of the second structure. This allows for adaptability to different scenarios, increasing design flexibility and resilience.
[0012] Furthermore, the second antenna module further includes a second ground (GND) component to enable the antenna to function normally.
[0013] Furthermore, in the closed configuration, the first distance between the second antenna and the second ground (GND) component is smaller than the second distance between the second antenna and the ground (GND) component in the open configuration. The second antenna can have an increased signal-to-ground distance in the open configuration, in which the communication function of the wearable electronic device is activated or enhanced, and the communication performance of the wearable electronic device can be improved and strengthened.
[0014] Furthermore, the second antenna and the second grounding (GND) assembly are arranged opposite to each other and along the first and second portions of the edge of the second structure. This separates the antenna and the grounding assembly, thereby ensuring antenna performance.
[0015] Furthermore, the second structure is hinged to the first structure. This allows for flexible operation of the second structure and facilitates its use.
[0016] Furthermore, the second structure has a circular, rectangular, or elliptical shape corresponding to the shape of the first structure. This allows it to be adapted to different scenarios, improving design flexibility and adaptability.
[0017] Furthermore, it includes a lens, mounted on or in the second structure, covering the second antenna module. This allows the user to view the device's display, facilitating use and also improving antenna performance.
[0018] Furthermore, it includes at least one wristband connected to the first structure, so that the user can wear the electronic device.
[0019] Furthermore, the second antenna module is made of either transparent or opaque material. This reduces obstruction and makes it easier to view the dial through the second structure.
[0020] Furthermore, this second structure is made of transparent or opaque material. This reduces obstruction and makes it easier to view the dial through the second structure.
[0021] The wearable electronic device of the present invention includes: a first structure comprising a first antenna module embedded therein; and a second structure movably mounted on the first structure, wherein the second structure includes a second antenna module disposed therein or on the second structure. Thus, the second structure can be used to arrange a corresponding second antenna module for non-terrestrial network satellite communication and / or terrestrial network communication, thereby improving communication efficiency. The additional antenna on the second structure can significantly enhance the communication capabilities of the wearable electronic device and improve the user experience. Attached Figure Description
[0022] Figure 1A This is a schematic perspective view of a wearable electronic device in a closed configuration according to some embodiments of the present invention;
[0023] Figure 1B This is a schematic perspective view of a wearable electronic device in an open configuration according to some embodiments of the present invention;
[0024] Figure 2 This is a schematic perspective view of a wearable electronic device in a closed configuration according to some embodiments of the present invention;
[0025] Figure 3 This is a schematic perspective view of a wearable electronic device in a closed configuration according to some embodiments of the present invention;
[0026] Figure 4A , 4B 4C and 4D are schematic perspective views of a second structure of a wearable electronic device in a closed configuration according to some embodiments of the present invention, showing the type of second antenna of the second structure;
[0027] Figure 5A This is a schematic perspective view of a wearable electronic device according to some embodiments of the present invention, showing the arrangement of lenses, a first structure, and a second structure;
[0028] Figure 5B This is shown in some embodiments of the present invention. Figure 5A Cross-sectional view of a wearable electronic device in China;
[0029] Figure 6A and 6B This is a schematic perspective view of a wearable electronic device in an open configuration according to some embodiments of the present invention, showing the relative positions between a first structure and a second structure;
[0030] Figure 7Aand 7B This is a schematic perspective view of a wearable electronic device in an open configuration according to some embodiments of the present invention, showing the relative positions between a first structure and a second structure;
[0031] Figure 8A and 8B This is a schematic perspective view of a wearable electronic device in an open configuration according to some embodiments of the present invention, showing the relative positions between a first structure and a second structure;
[0032] Figure 9 This is a schematic perspective view of a wearable electronic device in a closed configuration according to some embodiments of the present invention. Detailed Implementation
[0033] The following description is intended to illustrate the general principles of the invention and should not be considered as a limiting description. The scope of the invention is best determined by referring to the appended claims.
[0034] The following description is for illustrative purposes only and should not be construed as limiting. The scope of the invention is best determined by reference to the appended claims. In embodiments of the invention, when a component or layer is referred to as being “located,” “connected to,” or “coupled to” another component or layer, it may be directly located, connected to, or coupled to that other component or layer, or there may be intermediate components or layers. Conversely, when a component is referred to as being “directly located,” “directly connected to,” or “directly coupled to” another component or layer, there are no intermediate components or layers. The same numbers always refer to the same component. The term “and / or” as used herein includes any and all combinations of one or more of the associated listed items. “Directly above” or “directly below” may indicate that the projections of two or more of them at least partially overlap, while “not directly above” or “directly below” may indicate that the projections of two or more of them do not overlap at all. The same numbers refer to the same component throughout the document. The term “and / or” as used herein includes any and all combinations of one or more of the associated listed items.
[0035] The integration of screens, batteries, memory, power supplies, baseband, and radio frequency integrated circuits (RF ICs) with multiple antennas in wireless devices represents a significant technological advancement. Compared to handheld smartphones, the printed circuit board (PCB) area of wearable devices is significantly reduced. Therefore, the peak gain of L-band (1-2 GHz) wearable watch antennas is 3 to 5 dB lower than that of smartphone antennas. Due to the limited battery capacity of wearable devices, simply increasing transmission power cannot compensate for this reduction in antenna gain. Furthermore, the stringent link budget requirements of non-terrestrial network (NTN) satellite communications present new challenges.
[0036] On the other hand, the evolution of antenna architecture over the past century—from dipole antennas, monolithic antennas, loop antennas, lens antennas to their antenna arrays—demonstrates that different antenna characteristics are suitable for a variety of applications. At the physical level, a large antenna surface area and appropriate signal-to-ground spacing remain key determinants of antenna performance. Therefore, further improvements are needed to the antennas of wearable electronics to meet the requirements of terrestrial network communications and non-terrestrial network (NTN) satellite communications.
[0037] Figure 1A This is a schematic perspective view of a wearable electronic device 500 (including wearable electronic devices 500A, 500B, 500C, 500D, 500E, 500F, 500G, 500H, 500J-1, 500J-2, 500K-1, 500K-2, 500L-1, 500L-2 and 500M) in a closed configuration according to some embodiments of the present invention. Figure 1B According to some embodiments of the present invention Figure 1A A schematic perspective view of the open configuration of the wearable electronic device 500A. In some embodiments, the wearable electronic device 500 may include a smartwatch with terrestrial network communication and non-terrestrial network (NTN) satellite communication capabilities.
[0038] like Figure 1A and Figure 1B As shown, the wearable electronic device 500 (or wearable electronic device 500A) may include at least a first structure 100 and a second structure 200.
[0039] In some embodiments, the first structure 100 may be an electronic component with functions similar to those of a smartphone, such as communication, information, networking, sensor, or photography functions. Furthermore, the first structure 100 may be integrated and communicate with other mobile devices (e.g., smartphones) via software applications installed on the first structure 100.
[0040] The first structure 100 may also function as the primary display function of the wearable electronic device 500 (or wearable electronic device 500A). In some embodiments, the first structure 100 may be or include the watch face of a smartwatch (wearable electronic device 500), which can provide functions such as display, voice, and human-computer interaction. In some embodiments, the first structure 100 (or the watch face of the smartwatch) includes a display module 102 and a housing 104, the display module 102 being disposed on the housing 104. The display module 102 and the housing 104 may be part of the watch face. The smartwatch (or wearable electronic device 500) may also include other components, such as a watch strap or wristband. The display module 102, such as a touch screen module, can receive input from the user, such as touch input. Furthermore, the top surface 102T of the display module 102 may serve as the watch face (or primary watch face) (or dial surface or main dial surface) of the wearable electronic device 500 (or wearable electronic device 500A). The icon 150 of the software application installed in the first structure 100 can be displayed on the dial surface (top surface 102T) 102T.
[0041] The housing 104 can define a space to accommodate the display module 102. For example... Figure 1A and Figure 1B As shown, the display module 102 is disposed within the housing 104. The outer surface of the housing 104 can be substantially defined as a portion of the outer surface of the first structure 100.
[0042] In some embodiments, the first structure 100 may further include a first antenna module 110 embedded in the first structure 100 (e.g., in / on the housing 104). The first antenna module 110 may be disposed within or on the surface of the first structure 100, or within or on the surface of the housing 104. The first antenna module 110 of the first structure 100 may be used for terrestrial network communication and / or non-terrestrial network (NTN) satellite communication of the wearable electronic device 500 (or wearable electronic device 500A). In some embodiments, the first antenna module 110 may include a first antenna 106 and a first ground (GND) component 108. In some embodiments, the first antenna 106 may include a dipole antenna, a loop antenna, a monolithic antenna, a circularly polarized antenna, or other suitable antennas or antenna arrays thereof.
[0043] In some embodiments, the first structure 100 has a top view shape that includes a circle, rectangle, ellipse or other suitable shape.
[0044] The second structure 200 is located on the first structure 100. In some embodiments, the second structure 200 may be movably mounted on the first structure 100 or the dial of the wearable electronic device 500. In some embodiments, the second structure 200 may serve as a cover or auxiliary display for the wearable electronic device 500. In some embodiments, the second structure 200 serving as a cover may be made of transparent or opaque materials. In some embodiments, the second structure 200 used as a cover may be made of transparent materials, including glass, plastic, or other suitable transparent materials, so that when the second structure 200 of the wearable electronic device 500 is in a closed configuration with the first structure 100, the user can still see the content of the main display or dial, facilitating user use. In some embodiments, the second structure 200 with auxiliary display functionality may include a printed circuit board (PCB) and an auxiliary touchscreen, these components being made of opaque materials, such as organic and / or inorganic dielectric materials and metals.
[0045] In some embodiments, the second structure 200 may further include a transparent conductive film (e.g., indium tin oxide (ITO)) embedded therein. The transparent conductive film can be used as a conductive path or an antenna.
[0046] The second structure 200A may include a second antenna module 210 mounted in or on the second structure 200. In some embodiments, the second antenna module 210 may be used for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication of the wearable electronic device 500 (or wearable electronic device 500A). The second antenna module 210 may be mounted within or on the surface of the second structure 200. In some embodiments, the second antenna module 210 may include a second antenna 206 and a second grounding (GND) component 208. In some embodiments, the second antenna 206 may include a dipole antenna, a loop antenna, a monolithic antenna, a circularly polarized antenna, or other suitable antennas or their antenna arrays. In some embodiments, the first antenna 106 and the second antenna 206 may have the same or different antenna types. In some embodiments, the second grounding (GND) component 208 may be arranged along the edge 210AE of the second structure 210. It should be noted that the arrangement of the second antenna 206 and the second grounding (GND) component 208 is merely an example and does not constitute a limitation of the invention. In some embodiments, the second antenna module 210 may be made of a transparent material (including glass, plastic, or other suitable transparent materials) or an opaque material (including organic and / or inorganic dielectric materials and metals). In some embodiments, the first antenna module 110 is disposed in / on the dial of the wearable electronic device 500 (or the first structure 100), and the second antenna module 210 is disposed in / on the cover or in / on the second display module. The first antenna module 110 is disposed within or on the surface of the first structure 100 or the housing 104. When the second structure 200 is a cover, the second antenna module 210 is disposed within or on the surface (upper surface, lower surface, side surface, etc.) of the second structure 200. When the second structure 200 is an auxiliary display or a second display module, the second antenna module 210 is disposed within or on the surface (upper surface, lower surface, side surface, etc.) of the auxiliary display (or the second display module). In some embodiments, the second antenna module 210 is additionally added. Since the original first antenna module 110 in the wearable electronic device 500 is relatively small due to space constraints, including the second antenna module 210 significantly enhances the device's communication capabilities, including terrestrial network communication and non-terrestrial network (NTN) satellite communication.
[0047] like Figure 1A and Figure 1B As shown, the second structure 200 can be movably mounted on the first structure 100 via a hinge 280 connecting the first structure 100 and the second structure 200. In some embodiments, the second structure 200 can be flipped, folded, slid, or rotated relative to the first structure 100. For example, as Figure 1AAs shown, when the wearable electronic device 500 (or wearable electronic device 500A) is in a closed configuration, the second structure 200 can completely or partially cover the first structure 100.
[0048] In some embodiments, when the wearable electronics 500 (or wearable electronics 500A) is in an open configuration, the second structure 200 can be flipped, unfolded, slid, or rotated relative to the first structure 100. For example, as Figure 1B As shown, when the wearable electronic device 500A is in the open configuration, the second structure 200 can slide or rotate relative to the first structure 100 and is covered by the first structure 100 in the open configuration. In the open configuration, the second structure 200 can be located below the first structure 100, or it can be located in other positions, such as next to the first structure 100, when both the first structure 100 and the second structure 200 are in the open configuration. When both the first structure 100 and the second structure 200 are in the open configuration, the second antenna module 210 in the second structure 200 may exhibit higher gain. Conversely, when both structures are in the closed configuration, the second antenna module 210 may exhibit lower gain.
[0049] It should be noted that the first antenna module 110 for terrestrial network communication and / or non-terrestrial network (NTN) satellite communication for wearable electronic device 500 can operate in both the first structure 100 and the second structure 200 in open and closed configurations.
[0050] In some embodiments, the second structure 200 may have a top view shape including a circle, rectangle, ellipse, or other suitable shape, corresponding to the top view shape of the first structure 100. For example, the second structure 200 has a circular top view shape corresponding to the circular first structure 100. When the wearable electronic device 500 (or wearable electronic device 500A) is in a closed configuration, the first structure 100 may be completely or partially covered by the second structure 200.
[0051] In some embodiments, the wearable electronic device 500 (or wearable electronic device 500A) may further include at least one wristband 300 connected to the first structure 100. The wristband 300 may be adjustable to secure the wearable electronic device 500 to a user's wrist.
[0052] Figure 2 This is a schematic perspective view of a wearable electronic device 500B in a closed configuration according to some embodiments of the present invention, showing the arrangement of the second antenna module 210B of the second structure 200B. For simplicity, it is... Figure 1A and Figure 1B The same or similar embodiment components described previously in the references will not be repeated here.
[0053] like Figure 2 As shown, the second structure 200B of the wearable electronic device 500B can be a transparent cover. The second structure 200B may include a second antenna module 210B. Furthermore, the second antenna module 210B may include a second antenna 206B and a second ground (GND) component 208B. In this embodiment, the second antenna 206B may include a dipole antenna or other suitable antenna. In some embodiments, the second antenna 206B and the second ground (GND) component 208B are arranged opposite to each other. Furthermore, the second antenna 206B and the second ground (GND) component 208B are arranged along a first portion EP1 and a second portion EP2 of the edge 210BE of the second structure 210B. In some embodiments, the first portion EP1 and the second portion EP2 may be separated from each other by a hinge 280. With this arrangement of the second antenna 206B and the second ground (GND) component 208B, when the wearable electronic device 500B is in a closed configuration, the icons 150 of the software applications displayed on the dial surface 102T of the first structure 100 are not obscured by the second antenna 206B and the second ground (GND) component 208B, and the user can still see them.
[0054] Figure 3 This is a schematic perspective view of a wearable electronic device 500C in a closed configuration according to some embodiments of the present invention, showing the arrangement of the second antenna module 210C of the second structure 200C. For simplicity, it is... Figure 1A , Figure 1B and Figure 2 The same or similar embodiment components described previously in the references will not be repeated here.
[0055] like Figure 3As shown, the second structure 200C of the wearable electronic device 500C can be a transparent cover. The second structure 200C may include a second antenna module 210C and a second ground (GND) component 208. Furthermore, the second antenna module 210C may include a second antenna 206C. In this embodiment, the second antenna 206C may include a loop antenna. In some embodiments, the second antenna 206C is arranged along the edge 210CE of the second structure 210C. In some embodiments, a hinge 280 may connect opposite ends of the second antenna 206C. Furthermore, the second ground (GND) component 208 may be disposed in the first structure 100 and coupled to the second antenna 206C. For example, the first ground (GND) component 108 and the second ground (GND) component 208 may be disposed at the same location in the first structure 100. With this second antenna 206C arrangement, when the wearable electronic device 500C is in a closed configuration, the icons 150 of the software applications displayed on the dial 102T of the first structure 100 will not be blocked by the second antenna 206C, and the user can still see them.
[0056] The wearable electronic devices 500A, 500B, and 500C offer the following advantages. In some embodiments, since the second structures 200A, 200B, and 200C are provided as covers for the wearable electronic devices 500A, 500B, and 500C, these second structures 200A, 200B, and 200C can provide a larger surface area for the arrangement of the corresponding second antennas 206A, 206B, and 206C for non-terrestrial network (NTN) satellite communications and / or terrestrial network communications. Therefore, the second antennas 206A, 206B, and 206C can have increased surface areas and various antenna types to improve communication efficiency (e.g., dual polarization or high gain).
[0057] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of the wearable electronic devices 500A, 500B, and 500C may be activated only in the open configuration. Therefore, the standby time of the wearable electronic devices 500A, 500B, and 500C can be further increased.
[0058] Furthermore, in the wearable electronic device 500C, the distance between the second antenna 206C and the second ground (GND) component 208 in the closed configuration is smaller than the distance between the second antenna 206C and the ground (GND) component 208 in the open configuration. Therefore, the second antenna 206C can have an increased signal-to-ground distance in the open configuration, in which the non-terrestrial network (NTN) communication and / or terrestrial network communication functions of the wearable electronic device 500C are activated or enhanced, and the performance of the second antenna 206C of the wearable electronic device 500C can be improved.
[0059] Figure 4A , 4B Figures 4C and 4D are schematic perspective views of wearable electronic devices 500D, 500E, 500F, and 500G in a closed configuration according to some embodiments of the present invention, showing the types of second antennas 206D, 206E, 206F, and 206G of the second antenna modules 210D, 210E, 210F, and 210G of the second structures 200D, 200E, 200F, and 200G. For simplicity, references are used. Figure 1A , 1B Components of the same or similar embodiments described previously in 2 and 3 will not be repeated here. Second antennas 206D, 206E, 206F, and 206G are drawn with solid lines for ease of illustration. Furthermore, Figure 4A , 4B The icons for the software applications displayed on the dial surface 102T of the first structure 100 are omitted in 4C and 4D.
[0060] like Figure 4A , 4B As shown in 4C and 4D, in some embodiments, the second structure 200D of the wearable electronic device 500D, the second structure 200E of the wearable electronic device 500E, the second structure 200F of the wearable electronic device 500F, and the second structure 200G of the wearable electronic device 500G can be a cover (e.g., a transparent cover).
[0061] In some embodiments, such as Figure 4A , 4B As shown in 4C and 4D, the second antenna 206D (e.g., a monolithic antenna), the second antenna 206E (e.g., a circularly polarized antenna), and the second antennas 206F and 206G (e.g., an antenna array composed of monolithic antennas or circularly polarized antennas) are disposed or disposed in the second structure 200D, 200E, 200F, and 200G.
[0062] Furthermore, the second antennas 206D, 206E, 206F, and 206G can be coupled to the corresponding grounding (GND) components (not shown) of the second antenna modules 210D, 210E, 210F, and 210G. In some embodiments, the grounding (GND) components (not shown) of the second antenna modules 210D, 210E, 210F, and 210G can be arranged along the edges 210DE, 210EE, 210FE, and 210GE of the second structures 200D, 200E, 200F, and 200G. Alternatively, the grounding (GND) components (not shown) of the second antenna modules 210D, 210E, 210F, and 210G can be provided in the first structure 100 via conductive paths (not shown) extending from the second structures 200D, 200E, 200F, and 200G to the first structure 100. For example, the second grounding (GND) component (not shown) may be located in the same position as the first grounding (GND) component 108 in the first structure 100.
[0063] In some embodiments, since the second structures 200D, 200E, 200F, and 200G are provided as covers for the wearable electronic devices 500D, 500E, 500F, and 500G, the entire surface area of the second structures 200D, 200E, 200F, and 200G can be used for the arrangement of the corresponding second antennas 206D, 206E, 206F, and 206G for non-terrestrial network (NTN) satellite communications and / or terrestrial network communications. Therefore, the second antennas 206D, 206E, 206F, and 206G can have increased surface areas and various antenna types to improve communication efficiency (e.g., dual polarization or high gain).
[0064] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of the wearable electronic devices 500D, 500E, 500F, and 500G may be activated or enhanced only in an open configuration. Therefore, the standby time of the wearable electronic devices 500D, 500E, 500F, and 500G can be further increased.
[0065] In some embodiments, when the ground (GND) components (not shown) of the second antenna modules 210D, 210E, 210F, and 210G are disposed in the first structure 100 of the wearable electronic devices 500D, 500E, 500F, and 500G, the distance between the second antennas 206D, 206E, 206F, and 206G and their respective second ground (GND) components is smaller in the closed configuration than in the open configuration. Therefore, the second antennas 206D, 206E, 206F, and 206G can have an increased signal-to-ground spacing in the open configuration, in which the communication functions of the wearable electronic devices 500D, 500E, 500F, and 500G are activated or enhanced, and the performance of the second antennas 206D, 206E, 206F, and 206G of the wearable electronic devices 500D, 500E, 500F, and 500G can be improved.
[0066] Figure 5A This is a schematic perspective view of a wearable electronic device 500H according to some embodiments of the present invention, showing the arrangement of lens 282, first structure 100 and second structure 200H. Figure 5B This is shown in some embodiments according to the present invention. Figure 5A A cross-sectional view of the wearable electronic device 500H. For simplicity, refer to the reference. Figure 1A , Figure 1B , Figure 2 , Figure 3 and Figures 4A-4D The same or similar embodiment components described previously will not be repeated here.
[0067] like Figure 5A and Figure 5B As shown, in some embodiments, the second structure 200H of the wearable electronic device 500H may be a cover (e.g., a transparent cover). The second antenna 206H of the second antenna module 210H of the second structure 200H is mounted within the second structure 200H. In some embodiments, the second antenna 206H may include a dipole antenna, a loop antenna, a monolithic antenna, a circularly polarized antenna, or other suitable antennas or antenna arrays thereof. For example, the type of the second antenna 206H may be the same as or similar to any of the second antennas 206D, 206E, 206F, and 206G. In some embodiments, the number, arrangement, and type of the second antenna 206H are not limited to embodiments of the present invention.
[0068] Furthermore, the second antenna 206H can be coupled to a corresponding ground (GND) component (not shown) of the second antenna module 210H. In some embodiments, the ground (GND) component (not shown) of the second antenna module 210H can be arranged along the edge 210HE of the second structure 200H. Alternatively, the ground (GND) component (not shown) of the second antenna module 210H can be disposed in the first structure 100 via a conductive path (not shown) extending from the second structure 200H to the first structure 100. For example, the second ground (GND) component (not shown) can be disposed at the same location as the first ground (GND) component 108 in the first structure 100.
[0069] In some embodiments, the wearable electronic device 500H may further include a lens 282 mounted on the second structure 200H and covering the second antenna module 210H. For example... Figure 5B As shown, in this embodiment, the lens 282 can be a convex lens, such as a plano-convex lens. The plano-convex lens 282 can have a flat bottom surface 282B and an outwardly curved top surface 282T. The bottom surface 282B can be disposed on and in contact with the top surface 200HT of the second structure 200H. Furthermore, the focal point of the lens 282 can be directly located on the second antenna 206H of the second antenna module 210H. In some embodiments, the lens 282 can be mounted in the second structure 200H, ensuring that the upper surface of the second structure 200H remains flat and without protrusions.
[0070] In some embodiments, since the second structure 200H is provided as a cover for the wearable electronic device 500H, the entire surface area of the second structure 200H can be used to arrange a corresponding second antenna 206H for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Therefore, the second antenna 206H can have an increased surface area and various antenna type designs to improve communication efficiency (e.g., dual polarization or high gain).
[0071] In addition, lens 282 can help concentrate and focus electromagnetic (EM) waves, thereby increasing the directivity and gain of the second antenna 206H of the second antenna module 210H.
[0072] Furthermore, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of the wearable electronic device 500H may only be activated in the open configuration. Therefore, the standby time of the wearable electronic device 500H can be further increased.
[0073] In some embodiments, when the ground (GND) component (not shown) of the second antenna module 210H is disposed in the first structure 100 of the wearable electronic device 500H, the distance between the second antenna 206H and the corresponding second ground (GND) component in the closed configuration is less than the distance in the open configuration. Therefore, the second antenna 206H can have an increased signal-to-ground spacing in the open configuration, in which the non-terrestrial network (NTN) communication and / or terrestrial network communication functions of the wearable electronic device 500H are activated or enhanced, and the performance of the second antenna 206H of the wearable electronic device 500H can be improved.
[0074] Figure 6A and Figure 6B This is a schematic perspective view of wearable electronic devices 500J-1 and 500J-2 in an open configuration according to some embodiments of the present invention, showing the relative positions between the first structure 100 and the second structure 200 of each wearable electronic device 500J-1 and 500J-2. For simplicity, it is referred to as a reference. Figure 1A , Figure 1B , Figure 2 , Figure 3 , Figures 4A-4D , Figure 5A and Figure 5B The same or similar embodiment components described previously will not be repeated here.
[0075] like Figure 6A and Figure 6B As shown, in some embodiments, the second structure 200 of each wearable electronic device 500J-1 and 500J-2 may function as a cover or auxiliary display. The second structure 200 is movably mounted on the first structure 100 via a hinge 280. The second structure 200 can be flipped open from the first structure 100 in an open configuration.
[0076] In some embodiments, the hinge 280 may be located between the 9 o'clock and 3 o'clock positions on the dial face 102T of the first structure 100 to facilitate the user to open the second structure 200 from the first structure 100 in an open configuration. For example, as Figure 6A As shown, the hinge 280 of the wearable electronic device 500J-1 can be located at the 9 o'clock position on the dial surface 102T of the first structure 100. For example... Figure 6B As shown, the hinge 280 of the wearable electronic device 500J-2 can be located at the 1 o'clock position on the dial surface 102T of the first structure 100.
[0077] In wearable electronic devices 500J-1 and 500J-2, when the second structure 200 is flipped relative to the first structure 100, the second antenna 206 of the second antenna module 210 of the second structure 200 can be arranged near the bottom surface 200BS of the second structure 200 in a closed configuration facing the first structure 100. Using this arrangement of the second antenna 206 in wearable electronic devices 500J-1 and 500J-2, when the second structure 200 is flipped relative to the first structure 100, the second antenna 206 of the second antenna module 210 of the second structure 200 can face inward in a closed configuration and outward in an open configuration.
[0078] In some embodiments, the second grounding (GND) component 208 of the second antenna module 210 may be disposed in the first structure 100 and coupled to the second antenna 206. For example, the first grounding (GND) component 108 and the second grounding (GND) component 208 may be arranged in the same location in the first structure 100. The first grounding (GND) component 108 and the second grounding (GND) component 208 may be coupled to each other.
[0079] In some embodiments, since the second structure 200 of wearable electronic devices 500J-1 and 500J-2 is provided as a cover for wearable electronic devices 500J-1 and 500J-2, the entire surface area of the second structure 200 of wearable electronic devices 500J-1 and 500J-2 can be used to arrange the respective second antenna 206 of wearable electronic devices 500J-1 and 500J-2 for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Therefore, the second antenna 206 of each wearable electronic device 500J-1 and 500J-2 can have an increased surface area and various antenna types to improve communication efficiency (e.g., dual polarization or high gain).
[0080] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of wearable electronic devices 500J-1 and 500J-2 may be activated only in the open configuration. Therefore, the standby time of wearable electronic devices 500J-1 and 500J-2 can be further increased.
[0081] In wearable electronic devices 500J-1 and 500J-2, the distance between the second antenna 206 and the second ground (GND) component 208 in the closed configuration is smaller than the distance between the second antenna 206 and the ground (GND) component 208 in the open configuration. Therefore, the second antenna 206 can have an increased signal-to-ground distance in the open configuration, in which the non-terrestrial network (NTN) communication and / or terrestrial network communication functions of wearable electronic devices 500J-1 and 500J-2 are activated or enhanced, and the performance of the second antenna 206 of wearable electronic devices 500J-1 and 500J-2 can be improved.
[0082] Figure 7A and Figure 7B This is a schematic perspective view of wearable electronic devices 500K-1 and 500K-2 in an open configuration according to some embodiments of the present invention, showing the relative positions between the first structure 100 and the second structure 200 of each wearable electronic device 500K-1 and 500K-2. For the sake of brevity, references are not repeated here. Figure 1A , Figure 1B , Figure 2 , Figure 3 , Figures 4A-4D , Figure 5A , Figure 5B , Figure 6A and Figure 6B Elements of the same or similar embodiments described.
[0083] In some embodiments, such as Figure 7A and Figure 7B As shown, the second structure 200 of each wearable electronic device 500K-1 and 500K-2 can function as a cover. The second structure 200 is mounted on the first structure 100 via a hinge 280. The second structure 200 can be rotated open from the first structure 100 in an open configuration.
[0084] In some embodiments, the hinge 280 may be located between the 9 o'clock and 3 o'clock positions on the dial face 102T of the first structure 100 to allow the user to rotate the second structure 200 away from the first structure 100 in an open configuration. For example, as Figure 7A As shown, the hinge 280 of the wearable electronic device 500K-1 can be located at the 12 o'clock position on the dial surface 102T of the first structure 100. For example... Figure 7B As shown, the hinge 280 of the wearable electronic device 500K-2 can be located at the 9 o'clock position on the dial surface 102T of the first structure 100.
[0085] In wearable electronic devices 500K-1 and 500K-2, when the second structure 200 rotates relative to the first structure 100, the second antenna 206 of the second antenna module 210 of the second structure 200 can be arranged near the top surface 200T of the second structure 200 in a closed configuration away from the first structure 100. Using this arrangement of the second antenna 206 in wearable electronic devices 500K-1 and 500K-2, when the second structure 200 rotates relative to the first structure 100, the second antenna 206 of the second antenna module 210 of the second structure 200 can always face outwards in both closed and open configurations.
[0086] In some embodiments, the second grounding (GND) component 208 of the second antenna module 210 may be disposed in the first structure 100 and coupled to the second antenna 206. For example, the first grounding (GND) component 108 and the second grounding (GND) component 208 may be arranged in the same location in the first structure 100. The first grounding (GND) component 108 and the second grounding (GND) component 208 may be coupled to each other.
[0087] In some embodiments, since the second structure 200 of wearable electronic devices 500K-1 and 500K-2 is provided as a cover for wearable electronic devices 500K-1 and 500K-2, the entire surface area of the second structure 200 of wearable electronic devices 500K-1 and 500K-2 can be used to arrange the respective second antenna 206 of wearable electronic devices 500K-1 and 500K-2 for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Therefore, the second antenna 206 of each wearable electronic device 500K-1 and 500K-2 can have an increased surface area and various antenna types to improve communication efficiency (e.g., dual polarization or high gain).
[0088] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication capabilities of wearable electronic devices 500K-1 and 500K-2 may be activated only in the open configuration. Therefore, the standby time of wearable electronic devices 500K-1 and 500K-2 may be further increased.
[0089] In wearable electronic devices 500K-1 and 500K-2, the distance between the second antenna 206 and the second ground (GND) component 208 in the closed configuration is smaller than the distance between the second antenna 206 and the ground (GND) component 208 in the open configuration. Therefore, in the open configuration that enables non-terrestrial network (NTN) communication and / or terrestrial network communication functions of wearable electronic devices 500K-1 and 500K-2, the second antenna 206 can have an increased signal-to-ground distance, and the performance of the second antenna 206 of wearable electronic devices 500K-1 and 500K-2 can be improved.
[0090] Figure 8A and 8B This is a schematic perspective view of wearable electronic devices 500L-1 and 500L-2 in an open configuration according to some embodiments of the present invention, showing the relative positions between the first structure 100 and the second structure 200 of each wearable electronic device 500L-1 and 500L-2. For simplicity, ... Figure 1A , 1B The same or similar embodiment components previously described in 1, 2, 3, 4A-4D, 5A, 5B, 6A, 6B, 7A and 7B will not be repeated here.
[0091] exist Figure 8A and 8B In some embodiments shown, the second structure 200 of each wearable electronic device 500L-1 and 500L-2 may have an auxiliary display function. The second structure 200L of each wearable electronic device 500L-1 and 500L-2 may include a display module 202L and a housing 204L. The display module 202L may be coupled to the display module 102 of the first structure 100. Furthermore, the display module 202L, such as a touch screen module, may receive input from the user, such as touch input. In some embodiments, the display module 202L may be controlled by the first structure 100. Additionally, the top surface 202LT of the display module 202L may serve as another dial surface (or auxiliary dial surface) for each wearable electronic device 500L-1 and 500L-2.
[0092] exist Figure 8A and 8B In some embodiments shown, when the wearable electronic device 500L-1 (or 500L-2) is in an open configuration (i.e., when the first structure 100 is exposed from the second structure 200), the second structure 200 can serve as an auxiliary display. In this case, the wearable electronic device 500L-1 (or 500L-2) has two displays: a main display located on the top surface of the first structure 100, and an auxiliary display located on the bottom surface of the second structure 200 (the side facing the first structure 100 in the closed configuration).
[0093] The housing 204L can define a space to accommodate the display module 202L. For example... Figure 8A and 8B As shown, the display module 202L is disposed within the housing 204L. The outer surface of the housing 204L can be substantially defined as at least a portion of the outer surface of the second structure 200.
[0094] like Figure 8A and 8B As shown, the second structure 200L is mounted on the first structure 100 via a hinge 280. In the open configuration, the second structure 200L can be rotated open from the first structure 100.
[0095] In some embodiments, the hinge 280 may be located between the 9 o'clock and 3 o'clock positions on the dial face 102T of the first structure 100, so that in the open configuration, the user can rotate the second structure 200L away from the first structure 100. For example, as Figure 8A As shown, the hinge 280 of the wearable electronic device 500L-1 can be located at the 12 o'clock position on the dial surface 102T of the first structure 100. For example... Figure 8B As shown, the hinge 280 of the wearable electronic device 500L-2 can be located at the 9 o'clock position on the dial surface 102T of the first structure 100.
[0096] In wearable electronic devices 500L-1 and 500L-2, when the second structure 200L rotates relative to the first structure 100 and has an auxiliary display function, the second antenna 206L of the second antenna module 210L of the second structure 200L can be embedded in the second structure 200L. For example, the second antenna 206L of the second antenna module 210L can be positioned near the edge 210LE of the second structure 200L or below the second display module 202L (or near the bottom surface 200LB of the second structure 200L). Using this arrangement of the second antenna 206L in wearable electronic devices 500L-1 and 500L-2, when the second structure 200L rotates relative to the first structure 100, the second antenna 206L of the second antenna module 210L of the second structure 200L can face outwards in an open configuration.
[0097] In some embodiments, a second grounding (GND) component 208 of the second antenna module 210L may be disposed in the first structure 100 and coupled to the second antenna 206. For example, the first grounding (GND) component 108 and the second grounding (GND) component 208 may be arranged in the same location in the first structure 100. The first grounding (GND) component 108 and the second grounding (GND) component 208 may be coupled to each other.
[0098] In some embodiments, since the display module 202L can be controlled by the first structure 100, the second structure 200 can have a larger space to accommodate the second antenna module 210 disposed thereon or therein. The second antenna 206L of the second antenna module 210L can be designed to have a larger surface area than the first antenna 106 of the first structure 100, thereby improving the efficiency of non-terrestrial network (NTN) satellite communication and / or terrestrial network communication of the wearable electronic devices 500L-1 and 500L-2. Therefore, the second antenna 206 of each wearable electronic device 500L-1 and 500L-2 can have an increased surface area and various antenna types to improve communication efficiency (e.g., dual polarization or high gain).
[0099] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication capabilities of wearable electronic devices 500L-1 and 500L-2 can be activated only in the open configuration. Therefore, the standby time of wearable electronic devices 500K-1 and 500K-2 can be further increased.
[0100] In wearable electronic devices 500L-1 and 500L-2, the distance between the second antenna 20L6 and the second ground (GND) component 208 in the closed configuration is smaller than the distance between the second antenna 206L and the ground (GND) component 208 in the open configuration. Therefore, the second antenna 206L can have an increased signal-to-ground distance in the open configuration, in which the non-terrestrial network (NTN) communication and / or terrestrial network communication functions of wearable electronic devices 500L-1 and 500L-2 are activated, and the performance of the second antenna 206L of wearable electronic devices 500L-1 and 500L-2 can be improved.
[0101] Figure 9 This is a schematic perspective view of a wearable electronic device 500M in a closed configuration according to some embodiments of the present invention. For simplicity, it is... Figure 1A , Figure 1B , Figure 2 , Figure 3 , Figures 4A-4D , Figure 5A , Figure 5B , Figure 6A , Figure 6B , Figure 7A and Figure 7B Components of the same or similar embodiments described previously will not be repeated here. Figure 1A and Figure 9As shown, the difference between wearable electronic device 500A and wearable electronic device 500M includes at least the following: wearable electronic device 500M includes a first structure 100M and a second structure 200M movably mounted on the first structure 100M. Furthermore, both the first structure 100M and the second structure 200M are rectangular.
[0102] In some embodiments, the second structure 200M is mounted on the first structure 100M via a hinge 280. The second antenna 206M of the second structure 200M is mounted in or on the second structure 200H. The first structures 100 and 100M may have the same or similar functions and include the same or similar components. The second structures 200A and 200M may have the same or similar functions and include the same or similar components. Furthermore, the number, arrangement, and type of the second antenna 206M may be the same as or similar to any second antenna disclosed in the previous embodiments.
[0103] In some embodiments, the second structure 200M can be flipped, folded, slid, or rotated relative to the first structure 100M. For example, as Figure 9 As shown, when the wearable electronic device 500M is in a closed configuration, the second structure 200M can completely or partially cover the first structure 100M.
[0104] In some embodiments, when the wearable electronic device 500M is in an open configuration, the second structure 200M can be flipped, unfolded, slid, or rotated relative to the first structure 100M. Furthermore, the relative position between the first structure 100M and the second structure 200M of the wearable electronic device 500M in the open configuration can be the same as or similar to the relative position between the first and second structures of any wearable electronic device 500A-500H, 500J-1, 500J-2, 500K-1, 500K-2, 500L-1, and 500L-2. The non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of the wearable electronic device 500M provided by the second structure 200M can be activated only when the first structure 100M and the second structure 200M are in the open configuration.
[0105] In some embodiments, when the second structure 200M is provided as a cover for the wearable electronic device 500M, the entire surface area of the second structure 200M can be used to arrange a corresponding second antenna 206M for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Therefore, the second antenna 206M can have an increased surface area to improve the efficiency of non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Consequently, the second antenna 206M of the wearable electronic device 500M can have an increased surface area and various antenna types designed to improve communication efficiency (e.g., dual polarization or high gain).
[0106] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication capabilities of the wearable electronic device 500M can be activated only in the open configuration. Therefore, the standby time of the wearable electronic device 500M can be further increased.
[0107] Alternatively, when the second structure 200M serves as an auxiliary display controlled by the first structure 100M, the second structure 200M can have more space to accommodate the second antenna module 210M disposed on or within it. The second antenna 206M of the second antenna module 210M can be designed to have a larger surface area than the first antenna 106 of the first structure 100M, thereby improving the efficiency of non-terrestrial network (NTN) satellite communication and / or terrestrial network communication of the wearable electronic device 500M.
[0108] In some embodiments, when the second ground (GND) component (not shown) of the second antenna module 210M is disposed in the first structure 100 of the wearable electronic device 500M (e.g., the second ground (GND) component may be disposed in the first structure 100 at the same location as the first ground (GND) component 108 of the first structure 100M), the distance between the second antenna 206M and the corresponding second ground (GND) component in the closed configuration is less than the distance between the second antenna 206M and the corresponding second ground (GND) component in the open configuration. Therefore, the second antenna 206M can have an increased signal-to-ground spacing in the open configuration, in which the non-terrestrial network (NTN) communication and / or terrestrial network communication functions of the wearable electronic device 500M are activated, and the performance of the second antenna 206M of the wearable electronic device 500M can be improved.
[0109] This invention provides a wearable electronic device. The wearable electronic device includes a first structure and a second structure. The first structure includes a first antenna module embedded therein. The second structure is movably mounted on the first structure. The second structure includes a second antenna module disposed therein or on the first structure.
[0110] In some embodiments, the first antenna module and the second antenna module are used for terrestrial network communication and / or non-terrestrial network (NTN) satellite communication.
[0111] In some embodiments, the first structure further includes a housing and a display module disposed on the housing.
[0112] In some embodiments, the first structure further includes a dial, and the second structure further includes a cover or display module movably mounted on the dial, wherein the first antenna module is disposed in / on the dial, and the second antenna module is disposed in / on the cover or the display module.
[0113] In some embodiments, the first antenna module includes a first antenna, the second antenna module includes a second antenna, and each of the first and second antennas includes a dipole antenna, a loop antenna, a monolithic antenna, or a circularly polarized antenna or an antenna array thereof.
[0114] In some embodiments, the first structure has a circular, rectangular, or elliptical shape.
[0115] In some embodiments, the second structure may be flipped, folded, slid, or rotated relative to the first structure.
[0116] In some embodiments, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions of the wearable electronic device are activated only when the first structure and the second structure are in an open configuration, in which the second structure is flipped, unfolded, slid, or rotated relative to the first structure.
[0117] In some embodiments, the second structure is slidable or rotatable relative to the first structure and is covered by the first structure in an open configuration.
[0118] In some embodiments, when the second structure is flipped relative to the first structure, the second antenna module of the second structure is arranged in a closed configuration close to the surface of the second structure facing the first structure.
[0119] In some embodiments, the second antenna is arranged along the edge of the second structure.
[0120] In some embodiments, the second antenna module further includes a second ground (GND) component.
[0121] In some embodiments, in a closed configuration, the first distance between the second antenna and the second ground (GND) component is less than the second distance between the second antenna and the ground (GND) component in an open configuration.
[0122] In some embodiments, the second antenna and the second ground (GND) component are arranged opposite to each other and along the first and second portions of the edge of the second structure.
[0123] In some embodiments, the second structure is mounted on the first structure via a hinge.
[0124] In some embodiments, the second structure has a circular, rectangular, or elliptical shape corresponding to the shape of the first structure.
[0125] In some embodiments, the wearable electronics further includes a lens mounted on or in the second structure and covering the second antenna module.
[0126] In some embodiments, the wearable electronics further includes at least one wristband connected to the first structure.
[0127] In some embodiments, the second antenna module is made of transparent or opaque material.
[0128] In some embodiments, the second structure is made of a transparent or opaque material.
[0129] This wearable electronic device has the following advantages: In some embodiments, when the second structure of the wearable electronic device is provided as a cover, the entire surface area of the second structure can be used to arrange a corresponding second antenna for non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Therefore, the second antenna can have an increased surface area to improve the efficiency of non-terrestrial network (NTN) satellite communication and / or terrestrial network communication. Thus, each second antenna of the wearable electronic device can have an increased surface area and various antenna type designs to improve communication efficiency (e.g., dual polarization or high gain).
[0130] Furthermore, the non-terrestrial network (NTN) satellite communication and / or terrestrial network communication functions provided by the second antenna of this wearable electronic device can be activated only in the on configuration. Therefore, the standby time of this wearable electronic device can be further increased.
[0131] In some embodiments, when the second structure is provided as an auxiliary display controlled by the first structure, the second structure may have a larger space for a second antenna module disposed thereon or therein. The second antenna of the second antenna module may be designed to have a larger surface area than the first antenna of the first structure (for terrestrial network communication and / or non-terrestrial network (NTN) satellite communication), thereby improving the efficiency of non-terrestrial network (NTN) satellite communication and / or terrestrial network communication of the wearable electronic device.
[0132] In some embodiments, when the second grounding (GND) component (not shown) of the second antenna module is arranged in the first structure of the wearable electronic device (e.g., the first and second grounding (GND) components may be arranged in the same location in the first structure), the distance between the second antenna and the corresponding second grounding (GND) component is smaller in the closed configuration than in the open configuration. Therefore, the second antenna can have an increased signal-to-ground spacing in the open configuration, in which the non-terrestrial network (NTN) and / or terrestrial network communication functions of the wearable electronic device are activated, and the performance of the second antenna of the wearable electronic device can be improved.
[0133] While the invention has been described by way of example and according to preferred embodiments, it should be understood that the invention is not limited to the disclosed embodiments. Rather, it is intended to cover various modifications and similar arrangements (as will be apparent to those skilled in the art). Therefore, the scope of the appended claims should be given the broadest interpretation to cover all such modifications and similar arrangements.
Claims
1. A wearable electronic device, characterized in that, include: The first structure includes a first antenna module embedded in the first structure; as well as A second structure is movably mounted on the first structure, wherein the second structure includes a second antenna module disposed in or on the second structure.
2. The wearable electronic device as described in claim 1, characterized in that, The first structure further includes a housing and a display module disposed on the housing.
3. The wearable electronic device as described in claim 1, characterized in that, The first structure further includes a dial, and the second structure further includes a cover or display module movably mounted on the dial, wherein the first antenna module is disposed in / on the dial, and the second antenna module is disposed in / on the cover or the display module.
4. The wearable electronic device as claimed in claim 1, characterized in that, The first antenna module includes a first antenna, the second antenna module includes a second antenna, and each of the first and second antennas includes a dipole antenna, a loop antenna, a monolithic antenna, or a circularly polarized antenna or an antenna array thereof.
5. The wearable electronic device as claimed in claim 1, characterized in that, The second structure is flip-flopable, foldable, slideable or rotatable relative to the first structure; or the second structure is mounted on the first structure via a hinge.
6. The wearable electronic device as claimed in claim 5, characterized in that, The second structure is slidable or rotatable relative to the first structure and is covered by the first structure in the open configuration.
7. The wearable electronic device as claimed in claim 5, characterized in that, When the second structure is flipped relative to the first structure, the second antenna module of the second structure is arranged in a closed configuration close to the surface of the second structure facing the first structure.
8. The wearable electronic device as claimed in claim 4, characterized in that, The second line is arranged along the edge of the second structure.
9. The wearable electronic device as claimed in claim 5, characterized in that, The second antenna module further includes a second grounding component.
10. The wearable electronic device as claimed in claim 9, characterized in that, In the closed configuration, the first distance between the second antenna and the second grounding component is less than the second distance between the second antenna and the grounding component in the open configuration.
11. The wearable electronic device as claimed in claim 9, characterized in that, The second antenna and the second grounding assembly are arranged opposite each other and along the first and second portions of the edge of the second structure.
12. The wearable electronic device as claimed in claim 1, characterized in that, Further includes: The lens is mounted on or in the second structure and covers the second antenna module.