CN209865043U - Multifunctional ultralow frequency resonance device - Google Patents

Multifunctional ultralow frequency resonance device Download PDF

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CN209865043U
CN209865043U CN201920415719.XU CN201920415719U CN209865043U CN 209865043 U CN209865043 U CN 209865043U CN 201920415719 U CN201920415719 U CN 201920415719U CN 209865043 U CN209865043 U CN 209865043U
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control chip
ultra
low frequency
resonance device
key
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崔梓华
黄楚宏
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Abstract

The utility model provides a multifunctional ultralow frequency resonance device, which comprises a shell with a containing cavity inside, a control chip installed in the shell and used for outputting ultralow frequency electromagnetic waves, an amplifier used for amplifying power, and a transmission antenna used for radiating and dispersing the amplified ultralow frequency electromagnetic waves, wherein the control chip is integrated with a storage module used for storing various ultralow frequency electromagnetic waves corresponding to different functional modes; the ultra-low frequency resonance device also comprises a first key for selecting the frequency of the ultra-low frequency electromagnetic wave output by the control chip, a second key for adjusting power amplification factor and a first display lamp for indicating the functional mode corresponding to the current ultra-low frequency electromagnetic wave, wherein the first key, the second key and the first display lamp are arranged on the shell. The utility model provides a multi-functional ultralow frequency resonance device possesses multiple functional mode, can be applied to different use scenes, and structural design is simple and practical, has good practicality and economic nature.

Description

Multifunctional ultralow frequency resonance device
Technical Field
The utility model relates to an instrument that can produce specific frequency fluctuation especially relates to a multi-functional ultralow frequency resonance device.
Background
The schumann wave is an ultra-low frequency electromagnetic wave existing in the electromagnetic field of the earth, and has a frequency of 7.83 hz, which is exactly the same as the frequency of the mammalian brain-sea lima. In the process of the long-term evolution and development of human beings, the schumann wave is always in contact with the human beings as an environmental wave, so that the schumann wave is considered to have a certain influence on the human beings. According to the existing application mode, a user generates Schumann waves for the human body to contact by the Schumann wave generator so as to assist the user to achieve the effects of stabilizing the mood, helping sleep and the like. However, the conventional schumann wave generator can only generate the schumann wave of a single frequency, and cannot provide other ultra-low frequency electromagnetic waves to enhance the effect of the device, and the conventional schumann wave generator is not humanized in structural design, poor in operation experience, and needs to be improved in various defects.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to current schumann wave generator can only produce the schumann wave of single frequency, the problem of the use limitation of bringing provides a multi-functional ultralow frequency resonance device, and the exportable multiple ultralow frequency electromagnetic wave that is used for different functional modes can be applied to the consumer crowd who uses scene and different constitutions of difference.
The utility model is used for solve above technical problem's technical scheme and do: the multifunctional ultralow frequency resonance device comprises a shell, a control chip, an amplifier and a transmission antenna, wherein the shell is internally provided with a containing cavity, the control chip is arranged in the containing cavity and used for outputting ultralow frequency electromagnetic waves, the amplifier is used for amplifying the power of the ultralow frequency electromagnetic waves, the transmission antenna is used for radiating and dispersing the amplified ultralow frequency electromagnetic waves, the amplifier is connected with the control chip, the transmission antenna is connected with the amplifier, and a storage module used for storing various ultralow frequency electromagnetic waves corresponding to different functional modes is integrated on the control chip;
the ultra-low frequency resonance device also comprises a first key used for selecting the frequency of the ultra-low frequency electromagnetic wave output by the control chip according to a functional mode, a second key used for adjusting the power amplification factor of the amplifier and a first display lamp used for indicating the functional mode corresponding to the current ultra-low frequency electromagnetic wave, wherein the first key, the second key and the first display lamp are connected with the control chip, and the first key, the second key and the first display lamp are arranged on the shell.
Preferably, the ultra low frequency resonance device further comprises a plurality of second display lamps for indicating the power amplification factor of the current ultra low frequency electromagnetic wave, the second display lamps are connected with the control chip, and the plurality of second display lamps are mounted on the housing side by side.
Preferably, the ultra-low frequency resonance device further comprises a battery and a charging interface, the battery is connected with the control chip, and the charging interface is connected with the battery and arranged on the shell.
Preferably, the first display lamp is arranged in an arc sheet shape and is mounted at the peripheral corner of the shell in a wrapping mode.
Preferably, the first key is connected to a connection loop of the battery and the control chip, and is used for controlling the on-off of a power supply.
Preferably, the first display lamp is an RGB LED lamp; the second display lamp is an LED lamp.
Preferably, a timer is further integrated on the control chip, the control chip is further connected with a third key for setting the running time of each functional mode and sending the running time to the timer for storage, and the third key is mounted on the housing.
Preferably, a wireless communication module for performing communication connection with an intelligent terminal is further integrated on the control chip.
Implement the utility model provides a technical scheme has following beneficial effect:
(1) the multifunctional ultralow frequency resonance device can output ultralow frequency electromagnetic waves smaller than 300 Hz after the control chip, the amplifier and the transmission antenna are sequentially acted, and can directly act on a human body to generate resonance so as to achieve the aim of conditioning the human body;
(2) the control chip is integrated with a storage module which is used for storing various ultralow frequency electromagnetic waves corresponding to different functional modes, the ultralow frequency electromagnetic waves can be selected through the first key, and the amplification factor of power is adjusted through the second key, so that the device can be applied to consumer groups with different use scenes and different physiques, and the problem of use limitation caused by the fact that the existing Schumann wave control chip only outputs single frequency is solved;
(3) the ultralow frequency resonance device can prompt the functional mode corresponding to the current ultralow frequency electromagnetic wave through the first display lamp, is simple and practical in structural design, and has good practicability and economy.
Drawings
The invention will be further explained with reference to the drawings and examples, wherein:
fig. 1 is a schematic structural diagram of an ultra-low frequency resonance device provided by the present invention;
fig. 2 is a schematic circuit connection diagram of the ultra-low frequency resonance device provided by the present invention;
fig. 3 is another schematic structural diagram of the ultra-low frequency resonance device provided by the present invention.
Detailed Description
In order to make the present invention more clearly understood by those skilled in the art, the present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1 and 2, the embodiment of the present disclosure provides a multifunctional ultra-low frequency resonance device, which includes a housing 10 having a receiving cavity therein, and a control chip 20, an amplifier 30 and a transmission antenna 40 mounted in the receiving cavity; the control chip 20 is used for outputting ultralow frequency electromagnetic waves; the amplifier 30 is connected with the control chip 20 and is used for amplifying the power of the ultralow frequency electromagnetic wave; the transmission antenna 40 is connected with the amplifier 30 and is used for radiating and dispersing the amplified ultralow frequency electromagnetic wave, the ultralow frequency electromagnetic wave can act on a human body, resonance is generated through the electromagnetic wave and endogenous vibration of the human body, and the ultralow frequency electromagnetic wave can be used for physical and mental treatment, decompression and relaxation, and meridian dredging, so that the aim of overall treatment of the human body is fulfilled.
In practical application, the control chip 20 may adopt an ultra-low frequency signal generator, the amplifier 30 may adopt a power amplifier, the transmission antenna 40 may adopt a coil antenna arranged in a planar spiral shape, and the control chip 20, the amplifier 30 and the transmission antenna 40 may be integrated on the same circuit board, so that the ultra-low frequency resonance device has the advantages of adjustable frequency, higher amplification factor, longer communication distance, less power consumption and the like.
Further, a storage module 21 is integrated on the control chip 20 and is used for storing a plurality of ultra-low frequency electromagnetic waves corresponding to different functional modes, and the storage module 21 can also be used for storing the working state of the ultra-low frequency resonance device before shutdown, so that the device can be used without resetting when the device is started next time, and the operation experience is optimized.
In the embodiment of the present disclosure, the storage module 21 stores four different function modes, including a health preserving mode, a concentration mode, a sleep mode, and an amusement mode, the health preserving mode correspondingly outputs a schumann wave of 7.83 hz, the other function modes correspond to the ultra-low frequency electromagnetic waves of different frequencies one by one, and the specific size can be determined by referring to related research, which is not limited specifically herein.
The ultra-low frequency resonance device further comprises a first key 11, a second key 12 and a first display lamp 13, the control chip 20 is respectively connected with the first key 11, the second key 12 and the first display lamp 13, the first key 11 and the second key 12 are installed on the shell 10, and the first display lamp 13 is arranged in an arc sheet shape and is installed at the peripheral corner of the shell 10 in a coating mode.
The first key 11 is used for selecting the frequency of the ultra-low frequency electromagnetic wave output by the control chip 20 according to the set function mode, if the first key 11 is pressed after the computer is started, the ultra-low frequency electromagnetic wave for the health preserving mode can be output, and the ultra-low frequency electromagnetic wave for the concentration mode can be output after two pressing; the first display lamp 13 is used for indicating the functional mode corresponding to the current ultra-low frequency electromagnetic wave.
The second button 12 is used to adjust the power amplification factor of the amplifier 30, for example, the power amplification factor can be set to 5 times by pressing the second button 12, and the power amplification factor can be set to 10 times by pressing two times.
Further, the ultra low frequency resonance device further comprises a plurality of second indicator lamps 14 mounted on the housing 10 side by side, and each second indicator lamp 14 is connected to the control chip 20 for indicating the power amplification factor of the current ultra low frequency electromagnetic wave.
In the embodiment of the present disclosure, the first display lamp 13 adopts RGB LED display lamps, and indicates different working modes by displaying different colors, which is clear; the first display lamp 13 can also be replaced by a display screen, and the current working functional mode is directly displayed through characters;
the second display lamps 14 are four LED lamps arranged side by side and correspond to four power amplification factors; if a lamp is on, the current power amplification factor is 5 times; both lamps are lit, representing the current power amplification factor of 10, and so on.
Further, the ultra-low frequency resonance device further comprises a battery 51 and a charging interface 52, wherein the battery 51 is connected with the control chip 20 and is used for providing power; the charging interface 52 is connected with the battery 51 and arranged on the shell 10 to charge the battery;
the first button 11 is connected to a connection loop of the battery 51 and the control chip 20, and is used for controlling the on/off of the power supply, that is, the first button 11 integrates two functions of power supply and function mode selection, so that the structural design is simpler.
Further, a timer 60 is further integrated on the control chip 20, the control chip 20 is further connected with a third key 61 installed on the housing 10, and the third key 61 is used for setting the running time of each function mode and sending the running time to the timer 60 for storage, so that automatic control of the device is increased, and operation experience is optimized.
The control chip 20 is further integrated with a wireless communication module 80 for establishing wireless communication connection with the intelligent terminal, in practical application, the ultra-low frequency resonance device can be controlled by the intelligent terminal, and meanwhile, related data of the ultra-low frequency resonance device can be uploaded to the cloud end through the intelligent terminal for big data use.
Fig. 3 is another schematic structural diagram of the ultra-low frequency resonance device provided in the embodiment of the present disclosure, and as shown in fig. 3, a light-gathering cavity 71 with an opening gradually expanding outward is formed on a side wall of the housing 10, a far-infrared emitter 70 is installed at the bottom of the light-gathering cavity 71, and the far-infrared emitter 70 is connected to the control chip 20, is used for emitting far-infrared rays, and can act on a human body to perform a medical care function, so as to further increase the functions of the device and meet diversified demands of consumers.
The control chip 20 is further connected with a sliding switch 72 installed in the casing 10, a sliding groove 73 located on the upper side and the lower side of the light-gathering cavity 71 is formed in the side wall of the casing 10, a sliding handle of the sliding switch 72 extends out of the casing 10 through the sliding groove 73 and is connected with a sliding plate 74, the sliding plate 74 is used for sliding to open or close the far-infrared emitter 70, meanwhile, the sliding plate 74 is arranged outside the light-gathering cavity 71, the light-gathering cavity 71 can be opened or closed while the far-infrared emitter 70 is opened or closed, and the structural design is simple and practical.
In summary, the multifunctional ultralow frequency resonance device provided by this embodiment can output ultralow frequency electromagnetic waves smaller than 300 hz after the sequential actions of the control chip, the amplifier and the transmission antenna, and can select ultralow frequency electromagnetic waves with different frequencies through the first key, and adjust the power amplification factor through the second key, so that the device can be applied to consumer groups with different use scenes and different physiques, and the problem of use limitation caused by the fact that the existing schumann wave control chip only outputs a single frequency is solved; meanwhile, the ultralow frequency resonance device can prompt the functional mode corresponding to the current ultralow frequency electromagnetic wave through the first display lamp, is simple and practical in structural design, and has good practicability and economy.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (8)

1. A multifunctional ultralow frequency resonance device comprises a shell with an accommodating cavity inside, a control chip installed in the accommodating cavity and used for outputting ultralow frequency electromagnetic waves, an amplifier used for amplifying the power of the ultralow frequency electromagnetic waves and a transmission antenna used for radiating and dispersing the amplified ultralow frequency electromagnetic waves, wherein the amplifier is connected with the control chip, the transmission antenna is connected with the amplifier, and the multifunctional ultralow frequency resonance device is characterized in that a storage module used for storing various ultralow frequency electromagnetic waves corresponding to different functional modes is integrated on the control chip;
the ultra-low frequency resonance device also comprises a first key used for selecting the ultra-low frequency electromagnetic wave output by the control chip according to a functional mode, a second key used for adjusting the power amplification factor of the amplifier and a first display lamp used for indicating the functional mode corresponding to the current ultra-low frequency electromagnetic wave, wherein the first key, the second key and the first display lamp are connected with the control chip, and the first key, the second key and the first display lamp are arranged on the shell.
2. The ultra low frequency resonance device according to claim 1, further comprising a plurality of second display lamps for indicating power amplification of the current ultra low frequency electromagnetic wave, the second display lamps being connected to the control chip, and a plurality of the second display lamps being mounted side by side on the housing.
3. The ultra-low frequency resonance device according to claim 1, further comprising a battery connected to the control chip and a charging interface connected to the battery and provided on the housing.
4. The ultra low frequency resonance device according to claim 1, wherein the first display lamp is provided in an arc-shaped sheet shape and is installed to be wrapped at a peripheral corner of the housing.
5. The ultra-low frequency resonance device as claimed in claim 3, wherein the first button is connected to a connection loop of the battery and the control chip for controlling the power supply to be turned on or off.
6. The ultra low frequency resonance device according to claim 2, wherein said first display lamp is an RGB LED lamp; the second display lamp is an LED lamp.
7. The ultra low frequency resonance device according to claim 1, wherein a timer is further integrated on the control chip, and a third button for setting an operation time of each function mode and transmitting the operation time to the timer for storage is further connected to the control chip, and the third button is mounted on the housing.
8. The ultra-low frequency resonance device as claimed in claim 1, wherein a wireless communication module for communication connection with an intelligent terminal is further integrated on the control chip.
CN201920415719.XU 2019-03-29 2019-03-29 Multifunctional ultralow frequency resonance device Active CN209865043U (en)

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Application Number Priority Date Filing Date Title
CN201920415719.XU CN209865043U (en) 2019-03-29 2019-03-29 Multifunctional ultralow frequency resonance device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920415719.XU CN209865043U (en) 2019-03-29 2019-03-29 Multifunctional ultralow frequency resonance device

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CN209865043U true CN209865043U (en) 2019-12-31

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112587801A (en) * 2020-11-30 2021-04-02 新绎健康科技有限公司 Schumann wave sleep-aiding equipment
CN113181503A (en) * 2021-05-10 2021-07-30 江苏云骢科技有限公司 Floating sleeping cabin capable of deeply relaxing people

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112587801A (en) * 2020-11-30 2021-04-02 新绎健康科技有限公司 Schumann wave sleep-aiding equipment
CN113181503A (en) * 2021-05-10 2021-07-30 江苏云骢科技有限公司 Floating sleeping cabin capable of deeply relaxing people

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