CN219250925U - Massage silica gel sleeve and uterus warming belt - Google Patents

Massage silica gel sleeve and uterus warming belt Download PDF

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Publication number
CN219250925U
CN219250925U CN202222998179.7U CN202222998179U CN219250925U CN 219250925 U CN219250925 U CN 219250925U CN 202222998179 U CN202222998179 U CN 202222998179U CN 219250925 U CN219250925 U CN 219250925U
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China
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massage
field effect
electrically connected
effect tube
silica gel
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CN202222998179.7U
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Chinese (zh)
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陈凯伟
阳应该
高海峻
李享福
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Shenzhen Jisu Technology Co Ltd
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Shenzhen Jisu Technology Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model discloses a massage silica gel sleeve and a uterus warming belt; including mating portion, contact portion and connect mating portion and contact portion's connecting portion, mating portion is used for being fixed in other components with massage silica gel cover, and contact portion is used for acceping the massage oscillator, and the vibrations that the massage oscillator produced are massaged through contact portion conflict health, and connecting portion provides the buffering. According to the utility model, the vibration of the massage vibrator is transmitted to the body through the massage silica gel sleeve, so that partial vibration sense generated by the massage vibrator can be buffered, discomfort caused by strong vibration generated by the massage vibrator is avoided, and the massage is more comfortable.

Description

Massage silica gel sleeve and uterus warming belt
Technical Field
The utility model relates to the technical field of uterus warming belts, in particular to a massage silica gel sleeve and a uterus warming belt.
Background
The uterus warming belt refers to a waistband which can generate heat after being electrified, and the uterus warming belt on the market at present has the functions of acupoint massage, mugwort hot compress and the like besides the common hot compress function. The uterus warming belt can promote blood circulation and effectively improve the problems of cold uterus and the like.
Although some of the existing uterus warming belts have the massage function, the vibrator usually uses a simple spherical structure to massage, and the shock sensation is directly transmitted to the body without buffering, so that the comfort level is poor when the vibrator is used for massage.
Disclosure of Invention
The utility model mainly solves the technical problems of providing a massage silica gel sleeve and a uterus warming belt, and solving the problems that the shock sensation is directly transmitted to the body part during massage and is not buffered, so that the comfort degree is poor during massage use.
In order to solve the technical problems, the technical scheme adopted by the utility model is to provide the massage silica gel sleeve and the uterus warming belt, which comprise a matching part, a contact part and a connecting part for connecting the matching part and the contact part, wherein the matching part is used for fixing the massage silica gel sleeve on other elements, the contact part is used for accommodating a massage vibrator, vibration generated by the massage vibrator is contacted with a body for massage through the contact part, and the connecting part provides buffering.
Preferably, the cross section of the contact portion is larger than the cross section of the connection portion and smaller than the cross section of the mating portion.
Preferably, the contact end of the contact part is an inclined surface; the welding points of the massage vibrator and the lead are positioned on the surface of the massage vibrator opposite to the contact part.
The utility model also provides a uterus warming belt, which comprises the massage silica gel sleeve, and further comprises a fixing shell, wherein one side of the fixing shell is provided with a cover shell, the other side of the fixing shell is provided with a bottom shell, a circuit board is arranged between the fixing shell and the cover shell, a controller is arranged on the circuit board and is respectively connected with a storage battery, a massage vibrator and a heating film, the heating film is arranged on the outer side face of the bottom shell, a gasket is further arranged on the outer side of the heating film, and the massage silica gel sleeve penetrates through the bottom shell, the heating film and the gasket and is used for abutting against the outside of a body.
Preferably, an elastic telescopic piece is further arranged on one side of the uterine warming belt adjacent to the matching part.
Preferably, the massage vibrator is provided with two, and transverse arrangement is provided with the fixed part of fixed massage silica gel cover at the outer wall of fixed shell, and the outer wall protrusion of fixed shell is provided with the fixed part of fixed massage silica gel cover, and the fixed part is cyclic annular, and the cooperation portion of massage silica gel cover wears to establish to be fixed in the fixed part, and the outer end of fixed part is provided with a plurality of archs, is provided with the draw-in groove with protruding adaptation on the cooperation portion of massage silica gel cover, through protruding and draw-in groove's location cooperation to with the fixed part of massage silica gel cover location installation.
Preferably, the controller is electrically connected with a massage vibrator driving circuit for controlling the operation of the massage vibrator, the massage vibrator driving circuit comprises a field effect tube, the grid electrode of the field effect tube is electrically connected with a resistor and then connected with the controller, and the grid electrode of the field effect tube is also electrically connected with a resistor and then grounded; the source electrode of the field effect tube is grounded, and the drain electrode of the field effect tube is electrically connected with a first pin and a second pin of a horizontal patch; the other two pins of the horizontal patch are grounded, and a diode and a capacitor which are connected in parallel are also connected between the second pin and the field effect transistor.
Preferably, the controller is further electrically connected with a heating film driving circuit for controlling the operation of the heating film, the heating film driving circuit comprises a field effect tube group, a first grid electrode of the field effect tube group is electrically connected with a resistor and then is electrically connected with a programmable input end of the controller, the first grid electrode of the field effect tube group is connected with a resistor and then is grounded, the first grid electrode of the field effect tube group is further electrically connected with a second grid electrode of the field effect tube group, a drain electrode of the field effect tube group is electrically connected with a second pin of a vertical patch, the vertical patch is connected with an output power supply, and a first source electrode and a second source electrode of the field effect tube group are grounded.
Preferably, the controller is also connected with a voltage stabilizer, the voltage stabilizer is used for reducing the voltage of the output power supply of the storage battery, the voltage stabilizer is also connected with a circuit for charging at the same time, and the circuit for charging at the same time is used for controlling the uterus warming belt to perform stable work while charging; the circuit for charging at the same time comprises a field effect tube, wherein the grid electrode of the field effect tube is electrically connected with a resistor and then grounded, and is also electrically connected with a resistor and then connected with a charging power supply; the drain electrode of the field effect tube is electrically connected with the anode of the storage battery, and the source electrode of the field effect tube outputs the output power of the storage battery.
Preferably, the controller is connected with a charging circuit, and the charging circuit is used for converting an external input voltage into a voltage matched with the storage battery; the charging circuit comprises a charging chip, wherein the positive input end of the input voltage of the charging chip is electrically connected with a resistor and then connected with the reset end of the controller; the chip initial energy input end of the charging chip is connected with a programmable input end of the controller, and the charging completion indicating end of the charging chip is connected with another programmable input end of the controller.
The beneficial effects of the utility model are as follows: according to the utility model, the vibration of the massage vibrator is transmitted to the body through the massage silica gel sleeve, and the connection part provides buffering, so that partial vibration sense generated by the massage vibrator can be buffered, discomfort caused by strong vibration generated by the massage vibrator is avoided, and the massage is more comfortable.
Drawings
FIG. 1 is a schematic view of an embodiment of a massage silica gel cover according to the present utility model;
FIG. 2 is a schematic cross-sectional view of one embodiment of a massage silica gel cover according to the present utility model;
fig. 3 is a schematic view of the structure of the rear portion of an embodiment of a warming belt according to the present utility model;
fig. 4 is a schematic view of the front portion of an embodiment of a warming belt according to the present utility model;
FIG. 5 is a schematic cross-sectional view of the structure according to the V-V direction in FIG. 3;
fig. 6 is a schematic diagram of an exploded view of one embodiment of a warming belt according to the present utility model;
fig. 7 is a schematic view of the structure of the rear side of the fixing case according to an embodiment of the uterine warming belt of the present utility model;
fig. 8 is a schematic view of the structure of the front side of the fixing case according to an embodiment of the uterine warming belt of the present utility model;
fig. 9 is a schematic view of the structure of the front part of the fixing case according to an embodiment of the uterine warming belt of the present utility model;
fig. 10 is a schematic diagram of the connection of a controller according to an embodiment of the present utility model;
fig. 11 is a schematic diagram of the connection of a voltage regulator according to an embodiment of the present utility model;
fig. 12 is a schematic diagram of the connection of a circuit for charging while warming a uterus according to an embodiment of the present utility model;
fig. 13 is a schematic diagram of the connection of a charging circuit according to an embodiment of the warming belt of the present utility model;
fig. 14 is a schematic diagram of the connection of one embodiment of a warming belt battery detection circuit according to the present utility model;
fig. 15 is a schematic diagram of the connection of one embodiment of a drive circuit for a uterine warming tape display according to the present utility model;
fig. 16 is a schematic diagram showing connection of a first massage vibrator driving circuit according to an embodiment of the uterine warming belt of the present utility model;
fig. 17 is a schematic diagram showing connection of a heating film driving circuit according to an embodiment of the uterine warming belt of the present utility model;
fig. 18 is a schematic view of the attachment of a vertical patch according to one embodiment of a warming belt of the present utility model.
Detailed Description
In order that the utility model may be readily understood, a more particular description thereof will be rendered by reference to specific embodiments that are illustrated in the appended drawings. Preferred embodiments of the present utility model are shown in the drawings. This utility model may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The term "and/or" as used in this specification includes any and all combinations of one or more of the associated listed items.
As shown in fig. 3-9, the utility model provides a uterus warming belt, which comprises a fixed shell 1, wherein one side of the fixed shell 1 is provided with a cover shell 2, the other side of the fixed shell is provided with a bottom shell 3, a circuit board 4 is arranged between the fixed shell 1 and the cover shell 2, a controller 41 is arranged on the circuit board 4, the controller 41 is connected with a storage battery 5, a massage vibrator 6 and a heating film 7, a massage silica gel sleeve 10 is arranged on the fixed shell 1, the massage vibrator 6 is arranged in the massage silica gel sleeve 10, the heating film 7 is arranged on the outer side surface of the bottom shell 3, a gasket 8 is further arranged on the outer side of the heating film 7, and the massage silica gel sleeve 10 penetrates through the bottom shell 3, the heating film 7 and the gasket 8 and is used for abutting against the outside of a body. In this embodiment, the massage silica gel cover 10 protrudes outwards from the pad 8, so that the massage silica gel cover 10 better clings to the massage part. Of course, in other embodiments, a wrapping cloth is further provided, and the wrapping cloth is wrapped outside the pad 8 and the massage silica gel sleeve 10, so that the overall uterine warming belt is more attractive. As shown in fig. 5 and 6, the uterus warming belt is arc-shaped, and the arc-shaped surface is beneficial to being attached to the abdomen.
Fig. 1 and 2 show an embodiment of a massage silica gel cover 10 according to the present utility model, which includes a mating portion 101, a contact portion 103, and a connecting portion 102 connecting the mating portion 101 and the contact portion 103, wherein the mating portion 101 is used for fixing the massage silica gel cover to a uterine warming belt, the contact portion 103 is used for accommodating a massage vibrator 6, and vibration generated by the massage vibrator 6 is massaged by abutting the contact portion 103 against a body, and the connecting portion 102 provides buffering.
In the utility model, the vibration of the massage vibrator 6 is transmitted to the body through the massage silica gel sleeve 10, and the connecting part 102 provides buffering, so that partial vibration sense generated by the massage vibrator 6 can be buffered, discomfort caused by strong vibration generated by the massage vibrator 6 is avoided, and the massage is more comfortable.
Preferably, the cross section of the contact portion 103 is larger than the cross section of the connection portion 102 and smaller than the cross section of the mating portion 101. That is, the connecting portion 102 has the smallest cross section, so that the fitting portion 101 can be conveniently accommodated in the massage vibrator 6, the connecting portion 102 is more convenient for vibration conduction, and the contact portion 103 has a good contact range with the body, so that the comfort level of the massage silica gel sleeve 10 during massage can be improved.
Preferably, the contact end of the contact portion 103 has an inclined surface 104, and abuts against the body through the inclined surface 104. Thereby, when the contact part 103 vibrates, the fluctuation vibration amplitude of the contact part 103 can be increased, and the massage comfort level is improved. Referring to fig. 5, two axisymmetric massage silica gel sleeves 10 are arranged on the left and right sides of the uterine warming belt, and inclined surfaces 104 of the two massage silica gel sleeves 10 are adapted to the radian of the pad 8, so that the massage silica gel sleeves 10 can be better attached to the massage part and better conduct vibration.
Preferably, referring to fig. 2, the welding points 62 of the massage vibrator 6 and the wires 61 are located on the surface of the massage vibrator 6 opposite to the contact portion 103, and the wires 61 are led out directly from the surface of the massage vibrator 6 via the connection portion 102 and the matching portion 101, so that the problem that the wires 61 are located on the side surface and are easily damaged by buckling can be avoided.
Preferably, an elastic telescopic member (not shown in the figure) is further arranged on one side of the uterus warming belt adjacent to the matching part 101, and the elastic telescopic member can be an air bag or a spring. The elastic telescopic piece can further provide buffering, so that the comfort level of massage of the massage silica gel sleeve 10 is enhanced.
According to the uterus warming belt, the massage vibrator 6 is arranged to be abutted against the outside of a body through the massage silica gel sleeve 10, so that hot compress can be performed through heating of the heating film 7, vibration of the massage vibrator 6 is also performed, and massage is performed through the massage silica gel sleeve 10, and therefore comfort of the uterus warming belt in use can be improved.
Preferably, as shown in fig. 1, 7 and 9, the massage vibrator 6 is provided with two fixing portions 11 which are transversely arranged on the outer wall of the fixing shell 1, the outer wall of the fixing shell 1 is transversely provided with a fixing portion 11 for fixing the massage silica gel sleeve 10, the fixing portion 11 is annular, a connecting portion 102 of the massage silica gel sleeve 10 is arranged in the fixing portion 11 in a penetrating mode, a plurality of protrusions 12 are arranged at the outer end of the fixing portion 11, a clamping groove 105 matched with the protrusions 12 is formed in a matching portion 101 of the massage silica gel sleeve 10, and the fixing portion 11 is used for fixing the massage silica gel sleeve 10 through positioning matching of the protrusions 12 and the clamping groove 105.
Preferably, the front side and the rear side of the fixed shell 1 are also provided with connecting buckles 9 for connecting the binding bands.
Preferably, the middle part of the cover closing shell 2 is also provided with a cover plate 21, the cover plate 21 is transparent, an atmosphere lamp can be arranged between the cover closing shell 2 and the cover plate 21, IP images, letters, lamplight and the like can be displayed on the atmosphere lamp, a display window is increased, and the interestingness and interactive feeling of the uterus warming belt are enhanced.
The controller can be a singlechip or a PLC and the like. Preferably, as shown in FIG. 10, the controller is a 9103QFN20-3X3 chip.
The VDD terminal (supply voltage input pin) of the controller is connected to a 3V power supply. Preferably, the VDD terminal of the controller is further electrically connected to a capacitor and then grounded.
Preferably, as shown in fig. 11, the controller is further connected with a voltage stabilizer, the voltage stabilizer is used for reducing the voltage of the power supply, the VIN end (power input end) of the voltage stabilizer is connected with the storage battery, and the VOUT end (power output end) outputs the 3V power supply. The VIN end and the VOUT end of the voltage stabilizer are both connected with a capacitor and then grounded. The GND terminal (ground terminal) is directly grounded.
Preferably, as shown in fig. 12, the voltage stabilizer is further connected with a charging-while-charging circuit for enabling the uterine warming belt to perform stable operation while charging. The circuit for charging and charging comprises a field effect tube, wherein the G end (grid electrode) of the field effect tube is electrically connected with a resistor and then grounded, and is also electrically connected with a resistor and then connected with Vin (charging power supply). The D end (drain electrode) of the field effect tube is electrically connected with B+ (anode of the battery) and the S end (source electrode) of the field effect tube is output to VDD (output power supply of the storage battery), and the S end is also electrically connected with a capacitor and then grounded. The S terminal is also electrically connected with a diode and then connected with Vin.
Preferably, as shown in fig. 13, the controller is connected with a charging circuit for converting an external input voltage into a voltage adapted to the storage battery. The charging circuit comprises a charging chip, and the model of the charging chip is preferably TP4056SOP-8-EP. The VCC end (input voltage positive input end) of the charging chip is electrically connected with a resistor and then connected with the RST end (reset end) of the controller. The CE end (chip initial energy input end) of the charging chip is connected with the RA4 end (programmable input end) of the resistor and then is electrically connected with the RC2 end (programmable input end) of the resistor and then is electrically connected with the STDBY end (charging completion indication end) of the charging chip.
The PROG end (constant current charging current setting and charging current monitoring end) of the charging chip is connected with a resistor and then grounded, and the TEMP end (battery temperature detection input end), the GND end (power ground) and the CHRG end (charge state indication end of open drain output) of the charging chip are all grounded. The BAT end (battery connection end) of the charging chip is electrically connected with a horizontal patch. The horizontal patch is used for connecting a storage battery.
Preferably, as shown in fig. 14, the controller is further connected to a battery detection circuit, which is used to detect the operation condition of the storage battery, and the battery detection circuit includes a resistor and a capacitor connected in parallel, and the resistor and the capacitor connected in parallel are electrically connected to the RA7 terminal (programmable input terminal) of the controller.
Preferably, as shown in fig. 10, the controller is connected with a display screen, the display screen is used for displaying the working state of the uterus warming belt, and the display screen is an LED lamp panel. The SDA end (data pin end), the SCL end (clock pin end), the MISO end (master control data input end), the T0CKI end (external clock input end) and the SCK end (clock pin end) of the controller are respectively connected with five pins of the LED lamp panel.
Preferably, as shown in fig. 15, the PWMC2 end (pulse output end) of the controller is electrically connected with an atmosphere lamp driving circuit, where the atmosphere lamp driving circuit is used for driving the operation of the atmosphere lamp, and the atmosphere lamp driving circuit includes a triode, and the base electrode of the triode is connected with a resistor and then electrically connected with the PWMC2 end of the controller. The emitter of the triode is grounded. The collector electrode of the triode is electrically connected with a contact point TS19, the output power supply VDD is connected with a resistor and then connected with another contact point TS18, the resistor is also connected with a capacitor and then grounded, and a shrapnel is arranged between the contact point TS19 and the contact point TS18 and used for being connected with an atmosphere lamp.
Preferably, an RX end (serial port receiving end) of the controller is electrically connected with a vibration function key for controlling the operation of the massage vibrator. And selecting a vibration mode of the massage vibrator through a vibration function key.
Preferably, the RA0 terminal (programmable input terminal) of the controller is electrically connected with a heating function key for controlling the operation of the heating film. The heating mode of the heating film is selected by the heating function key.
Preferably, the RA1 end (programmable input end) of the controller is electrically connected to the second massage vibrator driving circuit, the RA2 end (programmable input end) is electrically connected to the first massage vibrator driving circuit, and the AN3 end (analog digital input end) is electrically connected to the heating film driving circuit.
The second massage vibrator driving circuit is the same as the first massage vibrator driving circuit and is used for driving the second massage vibrator and the first massage vibrator to operate respectively. The first massage vibrator driving circuit will be described as an example. As shown in fig. 16, the first massage vibrator driving circuit includes a field effect transistor, and may be: EV2300SOT-23-3L, the G end (grid) of the field effect tube is electrically connected with a resistor and then connected with the RA2 end (programmable input end) of the controller, and the G end of the field effect tube is also electrically connected with a resistor and then grounded. The S terminal (source) of the field effect transistor is grounded. The D end (drain electrode) of the field effect transistor is electrically connected with a first pin and a second pin of a horizontal patch. The other two pins of the horizontal patch are grounded, and a diode and a capacitor which are connected in parallel are also connected between the second pin and the field effect tube.
As shown in fig. 17, the heating film driving circuit is used for driving the heating film to operate, and the heating film driving circuit includes a field effect tube group, and the model can be: 8205A SOT-23-6, the G1 end (first grid) of the field effect tube group is electrically connected with AN AN3 end (programmable input end) of the controller after being connected with a resistor, the G1 end of the field effect tube group is grounded after being connected with a resistor, and the G1 end of the field effect tube group is electrically connected with the G2 end (second grid) of the field effect tube group. The D end (drain electrode) of the field effect tube group is electrically connected with a second pin of the vertical patch. The D end of the field effect tube group is electrically connected with a diode, a first pin of the vertical patch is connected with VDD, and a third pin and a fourth pin of the vertical patch are grounded. The vertical patch is a connector for connecting the heating film. The S1 end (first source) and the S2 end (second source) of the field effect tube group are grounded.
Preferably, as shown in fig. 18, the controller is further connected to a vertical patch, and a temperature probe is provided on the vertical patch for detecting the temperature of the heating film. The first pin of the vertical patch is connected with the RA5 end (programmable input end) of the controller, and the first pin of the vertical patch is also electrically connected with a resistor and then connected with a 3V power supply. The second pin of the vertical patch is grounded, the second pin of the vertical patch is also electrically connected with a capacitor and then connected with the first pin, and the third pin and the fourth pin of the vertical patch are grounded.
Through the above circuit, the following functions can be realized by programming.
Preferably, the controller has a memory function, and the heating/massaging mode is switched off each time to memorize the current gear, and the heating/massaging mode is switched on next time to directly use the last memorized gear, so that the default heating/massaging mode is the first gear.
Preferably, the controller has a safety protection function, the continuous working time of any mode is 60min without any key operation to force shutdown, all light is turned off, and the controller goes to sleep.
Preferably, the massage vibrator comprises six-gear massage modes, and the vibration frequency of each gear massage mode is different.
The six-gear massage modes are respectively as follows:
massage mode 1: the massage vibrator continuously vibrates at low frequency for 0.4s, and stops 0.4s circulation.
Massage mode 2: the massage vibrator continuously vibrates at high frequency for 0.1s, and stops 0.1s circulation.
Massage mode 3: the massage vibrator is crossed (left and right) to vibrate at low frequency, vibrate for 0.4s left and stop right; stopping at about 0.4s, vibrating right, and circulating.
Massage mode 4: the massage vibrator is crossed (left and right) to vibrate at high frequency, vibrate for 0.25s left and right, and stop; stopping at about 0.25s, vibrating right, and cycling.
Massage mode 5: the massage vibrator is vibrated intermittently for 1s and the circulation is stopped for 1 s.
Massage mode 6: the massage mode 1 circulates 5 times, the massage mode 2 circulates 5 times, the massage mode 1 circulates 10 times, and the massage mode 2 circulates 10 times; the 4 modes are one cycle and cycle switching.
Preferably, the functions of the massage function key include: the massage mode memorized last time is started by long pressing, the vibration mode 1, the vibration mode 2, the vibration mode 3, the vibration mode 4, the vibration mode 5, the vibration mode 6 and the vibration mode are switched in a circulating way, and the massage mode is closed by long pressing again. Double-click massage function key: atmosphere lamp on/off (default on state does not start atmosphere lamp)
Preferably, the heating film comprises a three-gear heating mode, and the temperatures of 1 gear, 2 gear and 3 gear are respectively: 65 °, 55 °, and 45 °.
Preferably, the functions of the heating function key include: the heating mode memorized last time is started by long pressing, 1 grade 65 degrees, 2 grade 55 degrees and 3 grade 45 degrees are switched by short pressing, the cycle is switched, and the long pressing is closed again; in order to prevent low-temperature scalding, the temperature is automatically lowered to 3 gear after 1 gear for 15 minutes, is automatically lowered to 3 gear after 2 gear for 30 minutes, and is automatically turned off after 3 gear is heated for 60 minutes.
Double-click heating function key: when standby, jumping to a current electric quantity interface, displaying real-time electric quantity, and when 5S is in misoperation, turning off the screen to enter a standby state; when the electric quantity control device works, the electric quantity control device jumps to the current electric quantity interface, displays the real-time electric quantity, and jumps to the heating interface when 5S is not operated.
Preferably, the mode of the uterine warming belt in use is switched to:
1. when the heating is started and the massage is closed, the heating function key is pressed for a short time, the gear and the display are switched, the screens 188 are respectively displayed with corresponding 65, 55 and 45, the heating icons are always on, and the circulation is switched.
2. When the heating is turned off and the massage is turned on, the heating function key is pressed for a short time, and the massage is invalid. Starting a heating mode, namely starting by long-time pressing of a heating function key, and switching an interface to a heating setting interface; the heating function key is pressed for a short time again, and the heating gear can be circularly switched.
3. When the heating is closed and the massage is started, the massage function key is pressed for a short time, the gear and the display are switched, and the screens 188 are respectively displayed corresponding to 01, 02, 03, 04, 05 and 06 and are switched circularly.
4. When the heating is started and the massage is closed, the massage function key is pressed for a short time, and the massage is invalid. Starting a massage mode, namely starting the massage mode by long-time pressing of a massage function key, and switching the interface to a massage setting interface; the massage function key is pressed for a short time again, so that the massage gear can be circularly switched; and when the 5S is not operated, jumping to the heating interface.
By the mode, heating and massaging of the uterine warming belt can be conveniently controlled, and convenience of the uterine warming belt in use is improved.
The foregoing is only illustrative of the present utility model and is not to be construed as limiting the scope of the utility model, and all equivalent structural changes made by the present utility model and the accompanying drawings, or direct or indirect application in other related technical fields, are included in the scope of the present utility model.

Claims (10)

1. The utility model provides a massage silica gel cover, its characterized in that includes cooperation portion, contact portion, and connects cooperation portion and contact portion's connecting portion, cooperation portion is used for with the massage silica gel cover is fixed in other components, contact portion is used for acceping the massage vibrator, the vibrations that the massage vibrator produced are passed through contact portion conflict health is massaged, connecting portion provides the buffering.
2. The massage silica gel cover according to claim 1, wherein a cross section of the contact portion is larger than a cross section of the connection portion and smaller than a cross section of the fitting portion.
3. The massage silica gel cover according to claim 1, wherein the contact end of the contact part is an inclined surface; the welding points of the massage vibrator and the wires are positioned on the surface of the massage vibrator, which is opposite to the contact part.
4. The uterus warming belt is characterized by comprising the massage silica gel sleeve according to any one of claims 1-3, and further comprising a fixing shell, wherein a cover shell is arranged on one side of the fixing shell, a bottom shell is arranged on the other side of the fixing shell, a circuit board is arranged between the fixing shell and the cover shell, a controller is arranged on the circuit board, the controller is respectively connected with a storage battery, the massage vibrator and a heating film, the heating film is arranged on the outer side face of the bottom shell, a gasket is further arranged on the outer side of the heating film, and the massage silica gel sleeve penetrates through the bottom shell, the heating film and the gasket and is used for abutting against the body.
5. The uterine warming belt according to claim 4, characterized in that a side of the uterine warming belt adjacent to the mating part is further provided with an elastic expansion piece.
6. The uterine warming belt according to claim 4, wherein two massage vibrators are arranged on the outer wall of the fixing shell in a transverse arrangement mode, fixing parts for fixing the massage silica gel sleeve are arranged on the outer wall of the fixing shell in a protruding mode, the fixing parts are annular, the matching parts of the massage silica gel sleeve are fixedly arranged on the fixing parts in a penetrating mode, a plurality of protrusions are arranged at the outer ends of the fixing parts, clamping grooves matched with the protrusions are formed in the matching parts of the massage silica gel sleeve, and the massage silica gel sleeve is installed on the fixing parts in a positioning mode through positioning matching of the protrusions and the clamping grooves.
7. The uterine warming belt according to claim 4, wherein the controller is electrically connected with a massage vibrator driving circuit for controlling the operation of the massage vibrator, the massage vibrator driving circuit comprises a field effect tube, a grid electrode of the field effect tube is electrically connected with a resistor and then is connected with the controller, and a grid electrode of the field effect tube is also electrically connected with a resistor and then is grounded; the source electrode of the field effect tube is grounded, and the drain electrode of the field effect tube is electrically connected with a first pin and a second pin of a horizontal patch; the other two pins of the horizontal patch are grounded, and a diode and a capacitor which are connected in parallel are also connected between the second pin and the field effect transistor.
8. The uterine warming belt according to claim 4, wherein the controller is further electrically connected to a heating film driving circuit for controlling the operation of the heating film, the heating film driving circuit comprises a field effect tube group, a first grid electrode of the field effect tube group is electrically connected with a resistor and then is electrically connected with a programmable input end of the controller, the first grid electrode of the field effect tube group is connected with a resistor and then is grounded, the first grid electrode of the field effect tube group is further electrically connected with a second grid electrode of the field effect tube group, a drain electrode of the field effect tube group is electrically connected with a second pin of a vertical patch, the vertical patch is connected with an output power supply, and a first source electrode and a second source electrode of the field effect tube group are grounded.
9. The uterine warming belt according to claim 4, wherein the controller is further connected with a voltage stabilizer, the voltage stabilizer is used for reducing the voltage of the output power supply of the storage battery, the voltage stabilizer is further connected with a circuit for charging at the same time, and the circuit for charging at the same time is used for controlling the uterine warming belt to perform stable operation while charging; the circuit for charging and charging comprises a field effect tube, wherein the grid electrode of the field effect tube is electrically connected with a resistor and then grounded, and is also electrically connected with a resistor and then connected with a charging power supply; the drain electrode of the field effect tube is electrically connected with the anode of the storage battery, and the source electrode of the field effect tube outputs the output power of the storage battery.
10. The uterine warming belt according to claim 4, characterized in that the controller is connected with a charging circuit for converting an external input voltage into a voltage adapted to the battery; the charging circuit comprises a charging chip, wherein an input voltage positive input end of the charging chip is electrically connected with a resistor and then connected with a reset end of the controller; the chip initial energy input end of the charging chip is electrically connected with a programmable input end of the controller after being connected with a resistor, and the charging completion indicating end of the charging chip is electrically connected with the other programmable input end of the controller after being connected with a resistor.
CN202222998179.7U 2022-11-09 2022-11-09 Massage silica gel sleeve and uterus warming belt Active CN219250925U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222998179.7U CN219250925U (en) 2022-11-09 2022-11-09 Massage silica gel sleeve and uterus warming belt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222998179.7U CN219250925U (en) 2022-11-09 2022-11-09 Massage silica gel sleeve and uterus warming belt

Publications (1)

Publication Number Publication Date
CN219250925U true CN219250925U (en) 2023-06-27

Family

ID=86871908

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222998179.7U Active CN219250925U (en) 2022-11-09 2022-11-09 Massage silica gel sleeve and uterus warming belt

Country Status (1)

Country Link
CN (1) CN219250925U (en)

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