Wearable Mobile Electronic Systems
The wearable mobile electronic system addresses power limitations in mobile devices by integrating adjustable battery sections and circuitry, improving user comfort and convenience.
Patent Information
- Application Number
- JP2023110540
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-01-04
- Filing Date
- 2023-07-05
- Publication Date
- 2025-09-22
- Estimated Expiration
- 2040-01-04
AI Technical Summary
Mobile electronic devices face challenges due to limited power source size, leading to reduced service life and cumbersome external battery packs that are inconvenient for users.
A wearable mobile electronic system with a flexible electronics package that includes adjustable battery sections and a circuit board, allowing for improved power management and connectivity, worn around the neck for enhanced user comfort and ease of use.
Extends device usage time and provides convenient power access without the bulkiness of traditional external battery packs, enhancing user experience and functionality.
Smart Images

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Abstract
Description
[Technical Field]
[0001] TECHNICAL FIELD The present disclosure relates to wearable mobile electronic systems, and more particularly to wearable mobile electronic systems having a power source capable of supplying a mobile electronic device. [Background technology]
[0002] Mobile electronic devices (including, but not limited to, smartphones, virtual and augmented reality smart eyeglasses (smart glasses), and head-mounted displays (HMDs)) all require a power source within them to power the electronic device. Limited space within the mobile electronic device limits the size of the power source therein, and therefore the power density of the power source. This space limitation creates problems with the service life of the mobile electronic device. Therefore, most mobile electronic devices include an integrated rechargeable battery.
[0003] In addition to the rechargeable battery within the mobile electronic device, a conventional external battery pack can be connected. Such a conventional external battery pack can be carried in a pocket or purse and can be connected by wire to the mobile electronic device to be powered. Placing such a conventional external battery pack in a pocket and / or purse can be cumbersome for a user. Therefore, it makes sense to redesign the mobile external power source to improve user comfort, ease of access, and ease of disconnection from the mobile electronic device. Summary of the Invention
[0004] The present disclosure provides a wearable mobile electronic system that includes a flexible electronics package. The flexible electronics package houses at least a battery, is worn around a user's neck, and is adjustable to fit the user. In addition to the battery, the flexible electronics package can include electronic elements such as a power regulator, a battery power level monitor, a charging means, a GPS receiver, a Wi-Fi integrated circuit chip, a Bluetooth integrated circuit, a magnetometer, a computer processing unit, and computer memory. An electrical connection port that provides a means for connecting to external electronic devices can be incorporated into the flexible electronics package.
[0005] In a second exemplary embodiment, the mobile electronic system includes a left battery section coupled to the left flexible section, a right battery section coupled to the right flexible section, and an electronics section coupled to the left flexible section on an opposite side to the left battery section and coupled to the right flexible section on an opposite side to the right battery section. The mobile electronic system further includes a circuit board disposed in the electronics section, a first battery disposed in the left battery section, and a left wire assembly disposed in the left flexible section. The left wire assembly electrically connects the first battery and the circuit board. The left and right flexible sections include flexible materials that can maintain a bent position. [Brief explanation of the drawings]
[0006] The accompanying drawings are incorporated herein as part of this specification. The drawings illustrate embodiments of the disclosed subject matter and illustrate selected principles and teachings of the present disclosure. However, the drawings do not depict every possible implementation of the disclosed subject matter and are not intended to limit the scope of the present disclosure in any way.
[0007] [Figure 1] FIG. 1 illustrates a wearable mobile electronic system according to one embodiment of the present disclosure.
[0008] [Figure 2A] FIG. 1 illustrates a cutaway view of a wearable mobile electronic system according to one embodiment of the present disclosure.
[0009] [Figure 2B] FIG. 1 is a perspective view of a wearable mobile electronic system according to one embodiment of the present disclosure.
[0010] [Figure 2C] FIG. 1 illustrates a wearable mobile electronic system according to another embodiment of the present disclosure.
[0011] [Figure 3] FIG. 1 illustrates a wearable mobile electronic system having a detachable cable coupled thereto, according to one embodiment of the present disclosure.
[0012] [Figure 4] FIG. 1 illustrates a wearable mobile electronic system with an additional cable to a power source.
[0013] [Figure 5] FIG. 1 is a rear view of a person wearing a wearable mobile electronic system connected to virtual reality glasses according to one embodiment of the present disclosure.
[0014] [Figure 6] FIG. 1 is a rear view of a person wearing a wearable mobile electronic system according to one embodiment of the present disclosure, the wearable mobile electronic system including an alternative connection to virtual reality glasses.
[0015] [Figure 7] FIG. 1 is a perspective view of a person wearing a wearable mobile electronic system according to one embodiment of the present disclosure, the wearable mobile electronic system including an alternative connection to virtual reality glasses.
[0016] [Figure 8]FIG. 1 is a perspective view of a person wearing a wearable mobile electronic system connected to virtual reality glasses and earphones according to one embodiment of the present disclosure.
[0017] [Figure 9] FIG. 1 is a perspective view of a wearable mobile electronic system according to another embodiment of the present disclosure.
[0018] [Figure 10A] 1 shows a schematic diagram of a portion of a wearable mobile electronic system according to one embodiment of the present disclosure.
[0019] [Figure 10B] 1 shows a schematic diagram of a portion of a wearable mobile electronic system according to another embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0020] It should be understood that the present invention may assume various alternative forms unless expressly specified. It should also be understood that the specific assemblies and systems illustrated in the accompanying drawings and described in the following specification are merely exemplary embodiments of the inventive concepts defined herein. Accordingly, specific dimensions, orientations, or other physical characteristics described in connection with the disclosed embodiments are not to be considered limiting, unless expressly stated. Also, although not always the case, like elements in the various embodiments described herein will be referred to herein with like reference numerals.
[0021] Wearable mobile electronic systems can be used to extend the usage time of mobile electronic devices, such as, but not limited to, virtual / augmented reality glasses and near-eye displays. The systems can be used before the mobile electronic device's built-in battery is recharged via a stationary power source. In one embodiment, the wearable mobile electronic system includes an electronic talk system 10, 200 (torc system), as shown in FIGS. 1 and 2C. In another embodiment, the wearable mobile electronic system includes an electronic yoke system 140 (yoke system), as shown in FIG. 9. The electronic talk system 10 may also be referred to herein as an electronic collar system. The electronic yoke system 140 may also be referred to herein as an electronic harness system.
[0022] As shown in FIG. 1 , in one embodiment, electronic talk system 10 includes a left battery section 16, a right battery section 18, a left flexible section 12, a right flexible section 14, and an electronics section 22. The left and right flexible sections 12, 14 allow electronic talk system 10 to be adjusted to fit a particular wearer of electronic talk system 10. In one embodiment, the left and right flexible sections 12, 14 include flexible gooseneck tubes, which facilitate maintaining the electronic talk system 10 in its position after adjustment. As shown in FIGS. 5-8 , electronic talk system 10 is operable to be positioned at least partially around the wearer's neck and at least partially on the wearer's left and right shoulders. In other words, electronic talk system 10 is operable to be positioned at least partially on and around the wearer's left and right trapezius muscles. The wearer's head may be generally positioned through a semicircular opening 20 defined by electronic talk system 10.
[0023] In one embodiment, as shown in FIG. 2A , the left battery compartment 16 includes one or more rechargeable batteries 30, and the right battery compartment 18 includes one or more rechargeable batteries 30. In one embodiment, the batteries 30 are fixedly integrated into the electronic talk system 10 and are not intended to be removed except for maintenance, repair, or replacement. In another embodiment, the batteries 30 are removable from the electronic talk system 10 for recharging or replacement. The left battery compartment 16 may include a removable cap 24 selectively coupled to its outer end. Similarly, the right battery compartment 18 may include a removable cap 26 selectively coupled to its outer end. In one embodiment, the left and right removable caps 24, 26 have external threads that mate with internal threads located on the outer ends of the left and right battery compartments 16, 18. In another embodiment, the left and right removable caps 24, 26 may include one or more resilient members (e.g., but not limited to, flexible tabs) that engage lips and / or recesses located on the outer ends of the left and right battery compartments 16, 18.
[0024] The left and right removable caps 24, 26 can be used to access and / or remove the rechargeable battery 30. The left and right battery compartments 16, 18 can also include lighting means. In one embodiment, the lighting means can be attached to a radially outer surface of the left and right battery compartments 16, 18. In another embodiment, the lighting means can be located on the left and right removable caps 24, 26. The lighting means can be, but is not limited to, one or more light emitting diodes (LEDs) and can aid the wearer's perception of their surroundings and / or provide safety identification lighting.
[0025] The flexible sections 12, 14 provide a means for electrically connecting the batteries 30 in the left and right battery sections 16, 18 with the electronics section 22. In one embodiment, the flexible sections 12, 14 include one or more electrical wires 32 and / or cable assemblies at least partially disposed within the left and right flexible sections 12, 14 to electrically connect the batteries 30 with the electronics section 22.
[0026] 2A is a perspective view of the electronic talk system 10, showing the electronics section 22, the left flexible section 12, and the left battery section 16 cut away. The left battery section 16 houses a battery 30. In one embodiment, the battery 30 may be a rechargeable battery. In another embodiment, the battery 30 may be a disposable battery. The battery 30 is removable from the left battery section 16 by removing the removable left cap 24 from the left battery section 16. The left flexible section 12 includes an electrical wire 32 for electrically connecting the battery 30 to a connector 34 on a circuit board 36. Furthermore, the left flexible section 12 and the electrical wire 32 are flexible, allowing and facilitating adjustment of the shape of the electronic talk system 10.
[0027] In one embodiment, electronics section 22 includes a circuit board 36. Circuit board 36 may include one or more electronic modules. For example, circuit board 36 may include a WiFi module, a Bluetooth module, a battery recharging induction coil, a power monitoring and regulation module, a computer programming unit (CPU) module, a computer memory module, a GPS module, a magnetometer module, a tilt-tip orientation sensor module, etc. (e.g., inclinometer), accelerometer module, temperature sensor module, humidity sensor module The circuit board 36 may include a power supply, a power module, and an ambient light detection module. These modules may also be referred to as integrated circuits or integrated circuit chips. In one embodiment, the circuit board 36 includes a controller 36A (e.g., an MCU). The controller 36A is operable to send and receive signals to and from other components of the circuit board 36. The controller 36A is operable to control charging of the battery 30. The circuit board 36 may further include one or more electrical connection ports, such as, but not limited to, an external power port 60, an external electronic device (e.g., virtual reality smart glasses) connection port 40, and an external audio connection port 50. In one embodiment, the external audio connection port 50 is located approximately at the top of the talk system electronics portion 22. For example, the external audio connection port 50 is used with headphones and / or one or more earphones. In one embodiment, the audio connection port 50 utilizes an audio jack-type connector. In another embodiment, the audio connection port 50 utilizes a Lightning (8-pin) type connector. In yet another embodiment, the audio connection port 50 utilizes a USB-C type connector. An external electronics connection port 40 may also be located on top of the talk system electronics section 22. The circuit board 36 and electronics section 22 may be provided with additional electrical connection ports for, but not limited to, computer memory expansion and / or a subscriber identity module (SIM) card.
[0028] It should be understood that the right flexible portion 14 and the right battery portion 18 may include similar components as the left flexible portion 12 and the left battery portion 16 described above. Additionally, the circuit board 36 includes electrical connections to the wires in the right flexible portion 14 and provides electrical connections to the one or more batteries 30 in the right battery portion 18.
[0029] As shown in FIG. 2B , in one embodiment, the right battery compartment 18 includes a touchpad 46 and / or one or more buttons 48. The touchpad 46 and / or navigation buttons 48 are operable to control functions and features of the electronic talk system 10. In one embodiment, the touchpad 46 and / or navigation buttons 48 are operable to control functions of an electronic device (e.g., electronic eyeglasses) coupled thereto. The electronic talk system 10 also includes a light-emitting diode (LED) indicator 56 operable to visually indicate the charge level of the battery 30. The LED indicator 56 includes three vertically aligned LEDs that indicate the charge level of the battery 30 when the button 58 is pressed.
[0030] 2C, in one embodiment, electronic talk system 200 can include audio speakers 234, 236 integrated into left and right flexible sections 202, 204, respectively. Additionally, left and right battery sections 206, 208 of electronic talk system 200 can include one or more integrated microphones 230, 232 integrated into them. In another embodiment, audio speakers 234, 236 can be integrated into left and right battery sections 206, 208, respectively. In yet another embodiment, audio speakers 234, 236 can be integrated into electronic section 212.
[0031] FIG. 3 is a rear view of the electronic talk system 10 equipped with a wire assembly 42 connected to the external electronic device connection port 40 of the circuit board 36. The wire assembly 42 includes an electrical connector 44 for connecting to the external electronic device. In one embodiment, the electrical connector 44 can be a USB connector or a mini-USB connector. In another embodiment, the electrical connector 44 can be a USB Type-C connector. The wire assembly 42 includes an electrical connector 44. The wire assembly 42 may be used to transmit power and / or electronic data and / or commands to and from an external device that engages the external electronic device connection port 44. In one embodiment, the wire assembly 42 is detachable and selectively coupled / uncoupled to the circuit board 36 via the external electronic device connection port 40, thereby, for example, allowing wire assemblies having different electrical connectors to be interchangeably used with the electronic talk system 10 to facilitate cooperation with multiple external devices. In another embodiment, the wire assembly 42 may be permanently coupled to the circuit board 36 via the external electronic device connection port 40. With further reference to FIG. 3 , in one embodiment, the wire assembly 52 is detachably connected to the audio connection port 50. In one embodiment, as shown in FIG. 3 , the wire assembly 52 includes one or more earphones 54 through which a wearer can receive audio signals converted into sound.
[0032] 4 is a rear view of the electronic talk system 10 equipped with an electrical wire 62 connected to an external power port 60 via an electrical connector, which may be, but is not limited to, a USB, mini-USB, USB Type-C, or magnetic connector. The electrical wire 62 connects to a power transformer 64. The electronic talk system 10 may include a power transformer 64 connected to an electrical plug 68 via an electrical wire 66. The internal rechargeable battery 30 is charged via the electrical wire 62, the power transformer 64, the electrical wire 66, and the electrical plug 68. Alternatively, power for charging the internal rechargeable battery 30 may be transmitted to the electronic talk system 10 via an external electronic device, such as, but not limited to, a laptop, a smartphone, a charging station, or a portable power bank. Power for recharging the internal rechargeable battery may also be transmitted to the electronic talk system 10 via an electromagnetic induction coil, which may be a module on the internal circuit board 36 (see FIG. 2A).
[0033] 5 is a rear view of the electronic talk system 10 worn by a person 70. The electronic talk system 10 is draped over a left neck / shoulder 74 and a right neck / shoulder 76 and positioned at least partially around the neck 72 of the person 70. In one embodiment, the weight of the left and right battery sections 16, 18 of the electronic talk system 10 maintains the electronic talk system 10 positioned around the neck of the person 70. The weight of the left and right battery sections 16, 18 can pull at least a portion of the electronic section 22 of the electronic talk system 10 toward the person 70. The left and right battery sections 16, 18 can be heavier than the electronic section 22 due to the weight of the battery 30, the weight of the materials forming the left and right battery sections 16, 18, or additional materials added to the left and right battery sections 16, 18.
[0034] With further reference to FIG. 5 , a person 70 may wear electronic eyeglasses having a left temple 80 and a right temple 82. The temples 80, 82 of the electronic eyeglasses may also be referred to as arms or temple arms. The electronic eyeglasses may be virtual reality eyewear and / or augmented reality smart glasses that include internal electronic components, such as, but not limited to, an image projector for generating virtual images, a computer (e.g., a central processing unit, volatile and non-volatile memory, data storage, etc.), and a Wi-Fi and / or Bluetooth communication module that requires power. A cable 86 connects to the electrical port 40 of the electronic talk system 10 to transmit power to the electronic eyeglasses and / or to transmit and receive data to and from the electronic eyeglasses. The electronic eyeglasses may connect to the electronic talk system 10 via a Wi-Fi and / or Bluetooth connection to transmit and receive data and / or commands to and from the electronic talk system 10. The cable 86 branches at a wire junction 96 to provide a left electrical wire 90 and a right electrical wire 88. The left electrical wire 90 and the right electrical wire 88 are connected to the left temple arm 80 and the right temple arm 82 via a left electrical connection 92 and a right electrical connection 94, respectively. In one embodiment, the electrical connections 92, 94 include coupling means for selectively coupling / decoupling to the cable 86.
[0035] FIG. 6 is a rear view of electronic talk system 10 worn by person 70. Electronic talk system 10 is positioned on left neck / shoulder 74, right neck / shoulder 76, and at least partially around neck 72 of person 70. Electrical cable 102 connects to electronic talk system 10 via electrical port 40 and to left temple 100 of the electronic eyeglasses at connection 106. Electrical cable 102 can transmit power from electronic talk system 10 to the electronic eyeglasses. Electrical cable 102 can transmit data from electronic talk system 10 to the electronic eyeglasses. Electrical cable 102 can transmit data from the electronic eyeglasses to electronic talk system 10. As shown in FIG. 10A, in one embodiment, electronics section 22 of electronic talk system 10 includes all of the computer hardware 300 necessary to operate the electronic eyeglasses, including, but not limited to, a central processing unit (CPU) 302, volatile and non-volatile memory 304, and data storage 306. 10B, in one embodiment, the CPU 302, memory 304, and data storage device 306 of the electronic glasses are integrated with the circuit board 36. In an embodiment in which the CPU 302, memory 304, and data storage device 306 of the electronic glasses are located in the electronic talk system 10, the electronic glasses can be connected to the electronic talk system 10 via a local area network such as Wi-Fi.
[0036] FIG. 7 is a perspective view of electronic talk system 10 worn by person 70. Person 70 is wearing electronic glasses 122. Electronic glasses 122 may be virtual reality glasses, augmented reality glasses, and / or near-eye displays, and include at least an image projector 124 and a right temple arm 120 having electrical connections 118. In one embodiment, image projector 124 is operable to generate a full range of angularly encoded beams to generate a virtual image. Electrical connections 118 are connected to electrical wire assembly 126. Wire assembly 126 is comprised of at least flexible wire portion 116, optional strain relief 114, and wire portion 112. Wire assembly 126 is electrically connected to electronic talk system 10 by electrical connector 110.
[0037] 8, a person 70 can wear an audio earphone 54 in their right ear 136. The earphone 54 is connected to an electrical wire assembly 52. The electrical wire assembly 52 is connected to the electronic talk system 10 by an electrical connector 130 and an external audio connection port 50.
[0038] FIG. 9 is a perspective view of electronic yoke system 140. Electronic yoke system 140 includes right front section 142, left front section 144, right rear section 146, left rear section 148, and connecting neck 156. Right front section 142 is mechanically connected to right rear section 146 by right flexible section 150. Left front section 144 is mechanically connected to left rear section 148 by left flexible section 152. Right front section 142, left front section 144, and connecting neck 156 define a space 158 for a user's neck when worn. Right front section 142, left front section 144, right rear section 146, and left rear section 148 may include rechargeable batteries therein. Connecting neck 156 may include one or more electronic circuit boards therein. Connecting neck 156 may further include one or more electrical connection ports (see FIG. 2A ) for connecting to external electronic devices (e.g., electronic eyeglasses).
[0039] The front right section 142, front left section 144, rear right section 146, rear left section 148, and connecting neck section 156 may be generally flat so that electronic yoke system 140 can be worn under clothing (e.g., a coat).
[0040] One or more features of the above-described embodiments can be combined to create additional embodiments not shown. While various embodiments have been described in detail, it should be understood that they are presented by way of example and not limitation. It will be apparent to those skilled in the art that the disclosed subject matter may be embodied in other specific forms, variations, and modifications without departing from the scope, spirit, or essential characteristics thereof. The above-described embodiments are therefore to be considered in all respects as illustrative and not restrictive. The scope of the present invention is indicated by the appended claims, and all changes that come within the meaning and range of equivalents thereof are intended to be embraced therein.
Claims
1. a left battery portion coupled to the left flexible portion; a right battery portion coupled to the right flexible portion; an electronics unit coupled to the left flexible part on a side opposite the left battery part and coupled to the right flexible part on a side opposite the right battery part; a battery disposed within the left battery compartment; a circuit board disposed within the electronics section and including a controller; a left wire assembly disposed within the left flexible portion and electrically connecting the battery to the circuit board; the left flexible portion and the right flexible portion include a flexible material that can maintain a bent posture after posture adjustment of the left flexible portion and the right flexible portion, and the flexible material of the left flexible portion and the right flexible portion includes a gooseneck tube; each of the left and right battery compartments includes a removable cap, the cap including an illumination means; A mobile electronic system configured to be placed at least partially around the neck of a wearer.
2. 2. The mobile electronic system of claim 1, wherein the battery is a first battery and a second battery is disposed in the right battery compartment, the first battery being detachable from the left battery compartment, and the second battery being detachable from the right battery compartment.
3. The mobile electronic system of claim 2 , wherein the circuit board comprises an electromagnetic induction coil operable to charge the first battery and the second battery.
4. The circuit board has one or more connectors operable to connect with external electronic equipment. The mobile electronic system of claim 1 including a port.
5. 10. The mobile electronic system of claim 1, wherein the circuit board includes one or more integrated circuits providing memory, wireless networking, or a global positioning system receiver.
6. a touchpad disposed on the right battery portion; The mobile electronic system of claim 1 , further comprising a microphone located in one of the right and left battery compartments.
7. 5. The mobile electronic system of claim 4, wherein the circuit board is operable to send signals to the external electronics, the external electronics being a near-eye display, and the circuit board includes a central processing unit operable to control the near-eye display.
8. The mobile electronic system of claim 1 , wherein the circuit board includes an audio connection port.
9. The mobile electronic system of claim 1 , wherein the illumination means comprises one or more light emitting diodes.
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