CN212163672U - Human response bluetooth headset - Google Patents

Human response bluetooth headset Download PDF

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Publication number
CN212163672U
CN212163672U CN202021195449.5U CN202021195449U CN212163672U CN 212163672 U CN212163672 U CN 212163672U CN 202021195449 U CN202021195449 U CN 202021195449U CN 212163672 U CN212163672 U CN 212163672U
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China
Prior art keywords
earphone
human body
led
bluetooth headset
cabin
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CN202021195449.5U
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Chinese (zh)
Inventor
曾奇杰
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Guangzhou Havit Technology Co ltd
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Shenzhen Duolaimi Electronic Co ltd
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Priority to CN202021195449.5U priority Critical patent/CN212163672U/en
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Abstract

The utility model provides a human body induction Bluetooth earphone, which comprises an earphone and an earphone chamber; the earphone and the earphone cabin are provided with LED light sources and/or UV lamps, the earphone, a PCB circuit board and a power supply are arranged in the earphone cabin, the power supply supplies power to the LED light sources and/or the UV lamps, and the PCB circuit board is connected with the human body sensor, the LED light sources and/or the UV lamps; human sensor auto-induction human infrared opens switch to LED lamp plate and LED shot-light and/or UV lamp are opened in the circular telegram, and the LED shot-light is used for clearly taking the earphone, and the LED lamp plate glimmers, and the lithium cell in ear cabin can charge the interface simultaneously and charge or wirelessly, realizes in the dark or conveniently look for and take the earphone, and the UV lamp has the effect of disinfection, uses more portably nimble convenience, more sanitary.

Description

Human response bluetooth headset
Technical Field
The utility model relates to an earphone stereo set technical field, more specifically say and indicate a human response bluetooth headset.
Background
With the development of the existing earphone sound technology, the Bluetooth earphone is popular, but at present, the Bluetooth earphone is placed in an earphone cabin, the surface Bluetooth earphone and the earphone cabin are not luminous, when people need to use the earphone in the dark, people cannot find out the earphone cabin and the earphone, or open the earphone cabin of accomodating the earphone when, but can not take very fast and find the earphone, must use external light source, can just find the earphone cabin where, take the earphone smoothly, present when people are close the earphone, can not sense the place at earphone place rapidly, can not take safe use earphone of relaxing at will anytime and anywhere, can not indicate the place at earphone place according to human automatic light, many earphones and earphone cabin do not all have light-emitting structure mostly, lead to in the dark or look for and use the earphone difficulty, and do not have the disinfection function of UV lamp.
Also there is the earphone to have luminous decorative effect at present, but structural design is unreasonable, and the light source can not the auto-induction human body to do not have the disinfection function of UV lamp, the position of automatic seeking earphone, and the power can not automatic wireless charging, troublesome poeration, the earphone is accomodate luminous can not the auto-induction human body, does not have under the condition of light simultaneously, takes in the use earphone in the difficult earphone cabin.
Therefore, there is a need for a human body induction bluetooth headset.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art's defect, a human response bluetooth headset is provided, earphone cabin internal is fixed respectively and is controlled the earphone, and the earphone cabin is equipped with human body sensor, LED light source, PCB circuit board and power, and human body sensor auto-induction is human and open LED shot-light and LED lamp plate, and the disinfection function of UV lamp in addition realizes in the dark or conveniently seeks and take the earphone, for realizing above-mentioned purpose, the utility model discloses a following technical scheme:
a human body induction Bluetooth headset comprises a headset body and an earphone cabin; the earphone and the earphone cabin are provided with LED light sources and/or UV lamps, the earphone cabin is internally provided with earphones, a PCB circuit board and a power supply, the power supply is supplied with the LED light sources and/or the UV lamps, the PCB circuit board is connected with a human body sensor and the LED light sources and/or the UV lamps.
Through power lithium cell power supply LED light source in the earphone cabin, when the human body sensor in earphone cabin senses someone infrared, switch opens, and LED light source is glistened, conveniently seeks the position in earphone cabin and earphone, seeks or takes the use earphone in the convenient dark.
Preferably, the human body sensor is provided with a human body infrared sensing switch, and when the human body infrared sensing switch senses the human body infrared, the power switch is connected and turned on.
Human body infrared inductive switch and the power of human body sensor are connected, and when sensing human infrared someone, switch on switch, LED light source circular telegram is glistened, seeks the position of finding the earphone through light to conveniently take and use the earphone.
Preferably, the human body sensor is positioned in front of a bottom shell of the earphone cabin, and the surface of the human body sensor is provided with a light-transmitting lens.
The human body sensor is arranged in front of the outside of the bottom shell, and a light-transmitting lens is arranged outside the human body sensor, so that infrared rays of a human body can be sensed at any time, and a power switch is switched on.
Preferably, one end of the human body sensor is provided with a direct-insertion connector which is inserted into the PCB for power-on.
The human body sensor is fixed in and is connected the direct plug connector, pegs graft with the PCB circuit board, and simple to operate is swift to be located the outside the place ahead of drain pan, can sensitively sense people's infrared, control switch, switch on the LED power.
Preferably, the LED light source includes LED shot-light and LED lamp plate, the LED lamp plate set up in the center below in otic cabin room, the center is transparent leaded light ya keli plastics, belongs to the diffuse reflection.
The LED light source comprises an LED spotlight and an LED lamp panel, the LED lamp panel is provided with a plurality of LED lamp beads, light is reflected diffusely, the position of an ear cabin can be found by people more easily, and the LED lamp panel has a decorative effect.
Preferably, the LED spotlight and/or UV lamp is arranged on the surface of the upper cover of the ear cabin.
The LED spotlight is bright in light, so that the earphone cabin can be clearly taken and opened by people, and the earphones can be conveniently taken. The UV lamp is an ultraviolet lamp and has the functions of disinfection and sterilization.
Preferably, a bottom shell of the earphone cabin is provided with a charging interface for charging the battery.
Preferably, the battery is a lithium battery, and a wireless charging coil is arranged below the battery and used for wireless charging.
But the outward appearance interface that charges in earphone cabin is connected with the power, for lithium cell charging, also can be through wireless charging coil for lithium cell charging.
Preferably, the upper cover and the bottom shell of the earphone house are respectively provided with two magnets for corresponding adsorption and are rotatably connected through a rotating shaft.
The upper cover and the bottom shell of the earphone chamber are adsorbed to close the earphone chamber through the corresponding adsorbed batteries, so that the earphone chamber has the storage effect, and meanwhile, the upper cover is flexibly and conveniently opened to take the earphones.
Preferably, a bottom shell of the earphone cabin is provided with a hanging rope.
The hanging rope is convenient to carry with the ear cabin, the ear cabin is easy to take, and the hanging rope is flexible to place and carry.
Compared with the prior art, the utility model beneficial effect be: this human response bluetooth headset, earphone cabin is the fixed left and right sides earphone respectively, the earphone cabin is equipped with human body sensor, LED light source and/or UV lamp, PCB circuit board and power, human body sensor auto-induction is human infrared, turn on switch, and switch on and open LED shot-light and LED lamp plate, the LED shot-light is used for clearly taking the earphone, the LED lamp plate glimmers, the lithium cell in earphone cabin can charge the interface or wirelessly charge simultaneously, realize in the dark or conveniently look for and take the earphone, the disinfection function of UV lamp in addition, it is more simple and convenient nimble convenient to use, it is more sanitary.
Drawings
FIG. 1 is an exploded view of an embodiment of the present invention;
fig. 2 is a schematic view of an assembly structure according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of opening the upper cover according to the embodiment of the present invention.
Reference numerals
1. An upper cover; 2. an LED spotlight; 3. a magnet; 4. an upper cover liner; 5. a lamp shade; 6. a UV lamp; 7. an earphone; 8. an LED lamp panel; 9. a middle frame; 10. a battery; 11. a wireless charging ring; 12. a charging interface; 13. a PCB circuit board; 14. a lens; 15. a body sensor; 16. a direct-insertion connector; 17. a bottom case; 18. hanging a rope; 19. a rotating shaft.
Detailed Description
In order to more fully understand the technical content of the present invention, the technical solution of the present invention will be further described and illustrated with reference to the drawings and the specific embodiments, but not limited thereto.
As shown in fig. 1 to 3, a specific embodiment of the present invention is a human body induction bluetooth headset, which includes a headset 7 and an earphone chamber; the earphone 7 and the earphone cabin are provided with an LED light source and/or a UV lamp 6, the earphone 7, a PCB circuit board and a power supply are arranged in the earphone cabin, the power supply supplies power to the LED light source and/or the UV lamp 6, and the PCB circuit board 13 is connected with a human body sensor 15 and the LED light source and/or the UV lamp 6.
Through the power lithium cell 10 power supply LED light source in the earphone cabin, when the human body sensor 15 in earphone cabin senses someone's infrared, switch opens, and the LED light source is glittering, conveniently seeks the position in earphone cabin and earphone 7, seeks or takes in convenient dark and uses earphone 7.
Further, the human body sensor 15 is provided with a human body infrared sensing switch, and when sensing the human body infrared, the power switch is connected and turned on.
Human infrared inductive switch and the power of human body sensor 15 are connected, and when sensing human infrared someone, switch on switch, LED light source circular telegram is glistened, seeks the position of finding earphone 7 through light to conveniently take and use earphone 7.
Further, the body sensor 15 is located in front of a bottom case 17 of the ear-room, and a surface thereof is provided with a light-transmitting lens 14.
The human body sensor 15 is arranged in front of the outside of the bottom shell 17, and the light-transmitting lens 14 is arranged outside the human body sensor 15 and can sense infrared rays of a human body at any time and switch on a power switch.
Further, one end of the human body sensor 15 is provided with a direct plug connector 16, which is plugged and electrified with the PCB circuit board 13.
The human body sensor 15 is fixed on the direct-plug connector 16 and is connected with the PCB 13 in an inserting mode, installation is convenient and rapid, the human body sensor is located in front of the outer portion of the bottom shell 17, infrared of a person can be sensed sensitively, a power switch is controlled, and an LED power source is switched on.
Further, the LED light source includes LED shot-light 2 and LED lamp plate 8, and LED lamp plate 8 sets up in the center 9 below in otic cabin room, and center 9 is transparent leaded light ya keli plastics, belongs to the diffuse reflection.
The LED light source is including LED shot-light 2 and LED lamp plate 8, and LED lamp plate 8 is many LED lamp pearls, and light diffuse reflection is making people seek the position in ear cabin more easily, has the effect of decorating.
Further, the LED spot lights 2 and/or the UV lamps 6 are provided on the surface of the upper cover 1 of the ear room, i.e., the surface of the upper cover liner 4.
The LED spotlight 2 is bright, and a lampshade 5 is arranged in front of the LED spotlight for people to clearly take and open the earphone chamber, so that the earphones 7 are convenient to take. The UV lamp 6 is an ultraviolet lamp and has the functions of disinfection and sterilization.
Further, a bottom shell 17 of the earphone cabin is provided with a charging interface 12 for charging the battery 10.
Further, the battery 10 is a lithium battery 10, and a wireless charging ring 11 is arranged below the battery 10 and used for wireless charging.
But the appearance interface 12 that charges in the earphone cabin is connected with the power, charges for lithium cell 10, also can charge for lithium cell 10 through wireless charging coil.
Further, the upper cover 1 and the bottom shell 17 of the earphone cabin are respectively provided with two magnets 3 which are correspondingly attracted and rotatably connected through a rotating shaft 19.
The upper cover 1 and the bottom shell 17 of the earphone chamber are adsorbed by the batteries 10 which are adsorbed correspondingly to each other to close the earphone chamber, so that the earphone chamber has the function of storage, and meanwhile, the upper cover 1 is also flexibly and conveniently opened to take the earphones 7.
Further, the bottom shell 17 of the earphone house is provided with a lanyard 18.
The hanging rope 18 is convenient to carry with the ear cabin, the ear cabin can be easily taken, and the carrying is flexible.
The utility model discloses an earphone 7 about human response bluetooth headset's earphone under-deck is fixed respectively, the earphone cabin is equipped with human body sensor 15, LED light source and/or UV lamp, PCB circuit board and power, human body sensor 15 auto-induction is human infrared, power switch is opened, and LED shot-light 2 and LED lamp plate 8 are opened in the circular telegram, LED shot-light 2 is used for clearly taking the earphone, LED lamp plate 8 scintillation, the lithium cell 10 in earphone cabin can charge interface 12 simultaneously and charge or wirelessly, realize in the dark or conveniently look for and take earphone 7, the disinfection function of UV lamp 6 in addition, it is more simple and convenient nimble convenient to use, it is more sanitary.
It should be understood that the above examples are only for clarity of illustration and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications can be made without departing from the scope of the invention.

Claims (10)

1. The utility model provides a human response bluetooth headset which characterized in that: comprises an earphone and an earphone chamber; the earphone and the earphone cabin are provided with LED light sources and/or UV lamps, the earphone cabin is internally provided with earphones, a PCB circuit board and a power supply, the power supply is supplied with the LED light sources and/or the UV lamps, and the PCB circuit board is connected with a human body sensor and is provided with the LED light sources and/or the UV lamps.
2. The body-inductive bluetooth headset of claim 1, wherein: the human body sensor is provided with a human body infrared sensing switch, and when the human body infrared sensing switch senses the human body infrared, the power switch is connected and turned on.
3. The body-inductive bluetooth headset of claim 1, wherein: the human body sensor is positioned in front of a bottom shell of the earphone chamber, and a light-transmitting lens is arranged on the surface of the human body sensor.
4. The body-inductive bluetooth headset of claim 1, wherein: one end of the human body sensor is provided with a direct-insertion connector which is connected with the PCB in an inserting mode.
5. The body-inductive bluetooth headset of claim 1, wherein: the LED light source comprises an LED spotlight and an LED lamp panel, wherein the LED lamp panel is arranged below a middle frame of the earphone cabin, and the middle frame is made of transparent light-guide acrylic plastic and belongs to diffuse reflection.
6. The body-inductive bluetooth headset of claim 5, wherein: the LED spotlight and/or the UV lamp are arranged on the surface of the upper cover of the earphone cabin.
7. The body-inductive bluetooth headset of claim 6, wherein: the upper cover and the bottom shell are respectively provided with two magnets for corresponding adsorption and are rotatably connected through a rotating shaft.
8. The body-inductive bluetooth headset of claim 7, wherein: the drain pan is equipped with the interface that charges, for the battery charging of power.
9. The body-inductive bluetooth headset of claim 8, wherein: the battery is the lithium cell, and its below is equipped with wireless charging coil for wireless charging.
10. The body-inductive bluetooth headset of claim 1, wherein: and a hanging rope is arranged on the bottom shell of the earphone cabin.
CN202021195449.5U 2020-06-24 2020-06-24 Human response bluetooth headset Active CN212163672U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021195449.5U CN212163672U (en) 2020-06-24 2020-06-24 Human response bluetooth headset

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021195449.5U CN212163672U (en) 2020-06-24 2020-06-24 Human response bluetooth headset

Publications (1)

Publication Number Publication Date
CN212163672U true CN212163672U (en) 2020-12-15

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ID=73701278

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021195449.5U Active CN212163672U (en) 2020-06-24 2020-06-24 Human response bluetooth headset

Country Status (1)

Country Link
CN (1) CN212163672U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4272768A3 (en) * 2022-02-22 2024-02-07 LG Electronics, Inc. Electronic device
WO2024105440A1 (en) * 2022-11-18 2024-05-23 Reshma Kheraj Charging case for earbuds

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4272768A3 (en) * 2022-02-22 2024-02-07 LG Electronics, Inc. Electronic device
WO2024105440A1 (en) * 2022-11-18 2024-05-23 Reshma Kheraj Charging case for earbuds

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20220614

Address after: Room 1307, 13 / F, poly World Trade Center Phase II (Building B and C), 1000 Xingang East Road, Haizhu District, Guangzhou, Guangdong 510000

Patentee after: GUANGZHOU HAVIT TECHNOLOGY Co.,Ltd.

Address before: 518101 b501a, floor 5, China Zhenhua Industrial Park building, No. 64, Heping Road, Qinghua community, Longhua street, Longhua District, Shenzhen City, Guangdong Province

Patentee before: Shenzhen Duolaimi Electronic Co.,Ltd.

TR01 Transfer of patent right