CN218446421U - Control circuit of skin makeup instrument - Google Patents
Control circuit of skin makeup instrument Download PDFInfo
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- CN218446421U CN218446421U CN202221713842.8U CN202221713842U CN218446421U CN 218446421 U CN218446421 U CN 218446421U CN 202221713842 U CN202221713842 U CN 202221713842U CN 218446421 U CN218446421 U CN 218446421U
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Abstract
The utility model discloses a control circuit of skin makeup appearance, including controller, signal control circuit, ruddiness control circuit, green glow control circuit, blue light control circuit and RGB port, the signal output part of controller is connected with signal control circuit's input, red light control circuit's input, green glow control circuit's input and blue light control circuit's input respectively, red light control circuit's output, green glow control circuit's output, blue light control circuit's output all are connected with the RGB port. The utility model discloses a controller output signal vibrates to the original vibrator of signal processing circuit control, adds red light control circuit, green glow control circuit and blue light control circuit simultaneously and sends the RGB light of different wavelengths, realizes the skin makeup effect to skin, the utility model has the advantages of simple structure, stable performance and life are longer.
Description
Technical Field
The utility model relates to a skin makeup appearance technical field, concretely relates to control circuit of skin makeup appearance.
Background
With the development of society, the living standard of people is continuously improved. For women, beauty treatment has become a part of life. Most women wash and care the facial skin with various skin care products. The skin makeup instrument is a device which takes physical therapeutics as a reference to enable skin to be relaxed, better cleaned and absorbed, and mainly comprises a skin makeup instrument for a large yard line and a handheld household skin makeup instrument, and the handheld household skin makeup instrument is more convenient for women to use.
In the prior art, the skin beautifying instrument can clean facial skin only by one mode of vibration or micro current. The skin makeup appearance further drives facial skin shake through the vibrations of instrument, cleans facial skin. When the face is smeared with the skin care product, the skin care instrument can enable the face skin to absorb more skin care products through vibration. The skin care instrument can separate out negative ion stains in facial skin from pores of the skin through micro current, so that the effects of cleaning and maintaining are achieved.
SUMMERY OF THE UTILITY MODEL
In view of this, the main object of the present invention is to provide a control circuit for a skin makeup instrument.
In order to achieve the above purpose, the technical scheme of the utility model is realized like this:
the embodiment of the utility model provides a control circuit of skin makeup appearance, including controller, signal control circuit, ruddiness control circuit, green glow control circuit, blue light control circuit and RGB port, the signal output part of controller is connected with signal control circuit's input, red light control circuit's input, green glow control circuit's input and blue light control circuit's input respectively, red light control circuit's output, green glow control circuit's output, blue light control circuit's output all are connected with the RGB port.
Preferably, the signal control circuit includes a first resistor, a second resistor, a third resistor, a fourth resistor, a fifth resistor, a sixth resistor, a seventh resistor, an eighth resistor, a ninth resistor, a tenth resistor, an eleventh resistor, a twelfth resistor, a thirteenth resistor, a first transistor, a second transistor, a third transistor, a fourth transistor, a fifth transistor, a sixth transistor, a first capacitor, a second capacitor, a third capacitor, a fourth capacitor, and a fifth capacitor, a first end of the first resistor is connected to the 5V power source, a second end of the first resistor is connected to the RF _ PWM1 terminal of the controller, a first end of the second resistor, and a first end of the first capacitor, respectively, a second end of the second resistor is connected to the second end of the first capacitor and the base of the first transistor, respectively, the collector of the first triode is respectively connected with the collector of the second triode, the first end of the fourth capacitor, the first end of the fifth resistor, the first end of the sixth resistor and the first end of the third capacitor, the second end of the sixth resistor is respectively connected with the second end of the fifth resistor, the first end of the second capacitor and the first end of the fourth resistor, the second end of the fourth resistor is connected with the 12V power supply, the base of the second triode is connected with the controller RF _ PWM2 end after being connected with the third resistor in series, the second end of the third capacitor is respectively connected with the first end of the seventh resistor, the base of the third triode and the base of the fifth triode, the emitter of the third triode is connected with the ninth resistor in series and then is respectively connected with the emitter of the fifth triode and the first end of the tenth resistor, and the second end of the tenth resistor is respectively connected with the first end of the twelfth resistor and the first end of the thirteenth resistor One end of the second capacitor is connected with the emitter of the first triode, the emitter of the second triode, the collector of the fifth triode, the collector of the sixth triode and the second end of the thirteenth resistor, the second end of the eleventh resistor is connected with the emitter of the fourth triode, the pole electrode of the third triode is connected with the pole electrode of the fourth triode and the 12V power supply, the second end of the seventh resistor is connected with the first end of the eighth resistor and then grounded, the second end of the eighth resistor is connected with the second end of the fourth capacitor, the base of the fourth triode and the base of the sixth triode, and the second end of the second capacitor, the emitter of the first triode, the emitter of the second triode, the collector of the fifth triode, the collector of the sixth triode and the second end of the thirteenth resistor are grounded.
The utility model discloses preferred, the model of controller is 74HC595.
The utility model discloses it is preferred, red light control circuit includes first diode, fourteenth resistor and first field effect transistor, the negative pole and the 12V power of first diode are connected, the positive pole of first diode is connected with the third end of first field effect transistor and the RF _ LED _ R end of RGB port respectively, the first end of first field effect transistor is connected with the RF _ LED _ R _ EN end of controller behind the fourteenth resistor of series connection.
The utility model discloses it is preferred, blue light control circuit includes second diode, fifteenth resistor and second field effect transistor, the negative pole and the 12V power of second diode are connected, the positive pole of second diode is connected with the third end of second field effect transistor and the RF _ LED _ G end of RGB port respectively, the first end of second field effect transistor is connected with the RF _ LED _ G _ EN end of controller behind the fifteenth resistor of series connection of fifteenth resistor.
The utility model discloses it is preferred, green light control circuit includes third diode, sixteenth resistor and third field effect transistor, the negative pole and the 12V power of third diode are connected, the positive pole of third diode is connected with the third end of third field effect transistor and the RF _ LED _ B end of RGB port respectively, the first end of third field effect transistor is connected with the RF _ LED _ B _ EN end of controller behind the sixteenth resistor of series connection.
Compared with the prior art, the utility model discloses a controller output signal vibrates to the original vibrator of signal processing circuit control, adds red light control circuit, green glow control circuit and blue light control circuit simultaneously and sends the RGB light of different wavelengths, realizes the skin makeup effect to skin, the utility model has the advantages of simple structure, stable performance and life are longer.
Drawings
Fig. 1 is a circuit diagram of a signal control circuit in a control circuit of a skin makeup instrument according to an embodiment of the present invention;
fig. 2 is a schematic circuit structure diagram of a controller in a control circuit of the skin makeup instrument according to an embodiment of the present invention;
fig. 3 is a schematic diagram of a circuit structure of a red light control circuit in a control circuit of the skin makeup instrument according to the embodiment of the present invention;
fig. 4 is a schematic circuit structure diagram of a green light control circuit in a control circuit of the skin makeup instrument according to the embodiment of the present invention;
fig. 5 is a schematic circuit structure diagram of a blue light control circuit in a control circuit of the skin makeup instrument according to an embodiment of the present invention;
fig. 6 is a schematic diagram of a circuit structure of an RGB port in a control circuit of the skin makeup instrument according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The embodiment of the utility model provides a control circuit of skin makeup appearance, as shown in fig. 1-6, including controller U1, signal control circuit, ruddiness control circuit, green glow control circuit, blue light control circuit and RGB port, controller U1's signal output part is connected with signal control circuit's input, red light control circuit's input, green glow control circuit's input and blue light control circuit's input respectively, red light control circuit's output, green glow control circuit's output, blue light control circuit's output all are connected with the RGB port.
As shown in fig. 1 and 2, the signal control circuit includes a first resistor R1, a second resistor R2, a third resistor R3, a fourth resistor R4, a fifth resistor R5, a sixth resistor R6, a seventh resistor R7, an eighth resistor R8, a ninth resistor R9, a tenth resistor R10, an eleventh resistor R11, a twelfth resistor R12, a thirteenth resistor R13, a first transistor Q1, a second transistor Q2, a third transistor Q3, a fourth transistor Q4, a fifth transistor Q5, a sixth transistor Q6, a first capacitor C1, a second capacitor C2, a third capacitor C3, a fourth capacitor C4, and a fifth capacitor C5, the first end of the first resistor R1 is connected to the 5V power supply, the second end of the first resistor R1 is connected to the RF _ PWM1 terminal of the controller U1, the first end of the second resistor R2 and the first end of the first capacitor C1 is connected to the collector of the third resistor R2, the second end of the fourth resistor R2 is connected to the collector terminal of the third resistor R2, the fourth resistor R2 is connected to the collector terminal of the fourth resistor R3, the fourth resistor R2 is connected to the collector terminal of the fourth resistor R2, the collector terminal of the fourth resistor R2 and the fourth resistor R3, the collector terminal of the fourth resistor R2 is connected to the collector terminal of the fourth resistor R2 and the fourth resistor R3 respectively, the collector terminal of the fourth resistor R2 is connected to the fourth resistor R3 respectively, the second terminal of the fourth resistor R2 and the fourth resistor R3, an emitter of the third transistor Q3 is connected in series with a ninth resistor R9 and then respectively connected to an emitter of the fifth transistor Q5 and a first end of a tenth resistor R10, a second end of the tenth resistor R10 is connected to a first end of a twelfth resistor R12 and a first end of a thirteenth resistor R13, a second end of the twelfth resistor R12 is connected to an emitter of the sixth transistor Q6 and a first end of an eleventh resistor R11, a second end of the eleventh resistor R11 is connected to an emitter of the fourth transistor Q4, a pole electrode of the third transistor Q3 is connected to a pole electrode of the fourth transistor Q4 and a 12V power supply, a second end of the seventh resistor R7 is connected to a first end of an eighth resistor R8 and then grounded, a second end of the eighth resistor R8 is connected to a second end of the fourth capacitor C4, a base of the fourth transistor Q4 and a base of the sixth transistor Q6, and a second end of the second capacitor C2, an emitter of the first resistor Q1, a second end of the second resistor R2, a collector of the fifth transistor Q5 and a collector of the sixth transistor Q6 are grounded.
As shown in fig. 2, the controller U1 is model 74HC595.
As shown in fig. 2, 5 and 6, the red light control circuit includes a first diode D1, a fourteenth resistor R14 and a first field effect transistor P1, a cathode of the first diode D1 is connected to a 12V power supply, an anode of the first diode D1 is connected to a third terminal of the first field effect transistor P1 and an RF _ LED _ R terminal of the RGB port, respectively, and a first terminal of the first field effect transistor P1 is connected to an RF _ LED _ R _ EN terminal of the controller U1 after being connected to the fourteenth resistor R14 in series.
As shown in fig. 2, 5 and 6, the blue light control circuit includes a second diode D2, a fifteenth resistor R15 and a second field effect transistor P2, a cathode of the second diode D2 is connected to the 12V power supply, an anode of the second diode D2 is connected to the third terminal of the second field effect transistor P2 and the RF _ LED _ G terminal of the RGB port, respectively, and a first terminal of the second field effect transistor P2 is connected to the RF _ LED _ G _ EN terminal of the controller U1 after being connected to the fifteenth resistor R15 in series.
As shown in fig. 2, 5 and 6, the green light control circuit includes a third diode D3, a sixteenth resistor R16 and a third field effect transistor P3, a cathode of the third diode D3 is connected to the 12V power supply, an anode of the third diode D3 is connected to the third terminal of the third field effect transistor P3 and the RF _ LED _ B terminal of the RGB port, respectively, and a first terminal of the third field effect transistor P3 is connected to the RF _ LED _ B _ EN terminal of the controller U1 after being connected to the sixteenth resistor R16 in series.
The working principle of the utility model is as follows:
as shown in fig. 1-5, a control signal is output to a signal processing circuit through a controller U1, the signal processing circuit controls the vibration of the existing vibrator, a red light control circuit, a green light control circuit and a blue light control circuit are added at the same time, the red light control circuit, the green light control circuit and the blue light control circuit are controlled through the controller U1 to control the wavelengths of red light, green light and blue light, and the effect of lasers with different wavelengths on skin is realized, so that the effects of simultaneously beautifying the skin by vibration and lasers are realized.
To sum up, the utility model discloses a controller output signal vibrates to the original vibrator of signal processing circuit control, adds red light control circuit, green glow control circuit and blue light control circuit simultaneously and sends the RGB light of different wavelengths, realizes the skin makeup effect to skin, the utility model has the advantages of simple structure, stable performance and life are longer.
The same or similar reference numerals in the drawings of the present embodiment correspond to the same or similar components; in the description of the present invention, it is to be understood that the terms "upper", "lower", "left", "right", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, the terms describing the positional relationships in the drawings are only for illustrative purposes and are not to be construed as limitations of the present patent, and specific meanings of the terms may be understood by those skilled in the art according to specific situations.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, article, or apparatus. Without further limitation, an element defined by the phrase "comprising a … …" does not exclude the presence of another identical element in a process, article, or apparatus that comprises the element.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the scope of the present invention.
Claims (6)
1. A control circuit of a skin makeup instrument is characterized by comprising a controller, a signal control circuit, a red light control circuit, a green light control circuit, a blue light control circuit and RGB ports, wherein a signal output end of the controller is respectively connected with an input end of the signal control circuit, an input end of the red light control circuit, an input end of the green light control circuit and an input end of the blue light control circuit, and an output end of the red light control circuit, an output end of the green light control circuit and an output end of the blue light control circuit are connected with the RGB ports.
2. The control circuit of claim 1, wherein the signal control circuit comprises a first resistor, a second resistor, a third resistor, a fourth resistor, a fifth resistor, a sixth resistor, a seventh resistor, an eighth resistor, a ninth resistor, a tenth resistor, an eleventh resistor, a twelfth resistor, a thirteenth resistor, a first transistor, a second transistor, a third transistor, a fourth transistor, a fifth transistor, a sixth transistor, a first capacitor, a second capacitor, a third capacitor, a fourth capacitor, and a fifth capacitor, wherein a first end of the first resistor is connected to the 5V power supply, a second end of the first resistor is connected to the RF _ PWM1 terminal of the controller, a first end of the second resistor, and a first end of the first capacitor, and a second end of the second resistor is connected to a second end of the first capacitor and a base of the first transistor, the collector of the first triode is respectively connected with the collector of the second triode, the first end of the fourth capacitor, the first end of the fifth resistor, the first end of the sixth resistor and the first end of the third capacitor, the second end of the sixth resistor is respectively connected with the second end of the fifth resistor, the first end of the second capacitor and the first end of the fourth resistor, the second end of the fourth resistor is connected with the 12V power supply, the base of the second triode is connected with the controller RF _ PWM2 end after being connected with the third resistor in series, the second end of the third capacitor is respectively connected with the first end of the seventh resistor, the base of the third triode and the base of the fifth triode, the emitter of the third triode is connected with the ninth resistor in series and then is respectively connected with the emitter of the fifth triode and the first end of the tenth resistor, the second end of the tenth resistor is respectively connected with the first end of a twelfth resistor and the first end of a thirteenth resistor, the second end of the twelfth resistor is respectively connected with the emitter of a sixth triode and the first end of an eleventh resistor, the second end of the eleventh resistor is connected with the emitter of a fourth triode, the pole electrode of the third triode is respectively connected with the pole electrode of the fourth triode and a 12V power supply, the second end of the seventh resistor is connected with the first end of an eighth resistor and then grounded, the second end of the eighth resistor is respectively connected with the second end of a fourth capacitor, the base of the fourth triode and the base of the sixth triode, and the second end of the second capacitor, the emitter of the first triode, the emitter of the second triode, the collector of the fifth triode, the collector of the sixth triode and the second end of the thirteenth resistor are all grounded.
3. The control circuit of claim 2, wherein the controller is of type 74HC595.
4. The control circuit of a skin makeup instrument according to claim 2 or 3, wherein said red light control circuit comprises a first diode, a fourteenth resistor and a first field effect transistor, the cathode of said first diode is connected to a 12V power supply, the anode of said first diode is connected to the third terminal of said first field effect transistor and the RF _ LED _ R terminal of the RGB port, respectively, and the first terminal of said first field effect transistor is connected to the RF _ LED _ R _ EN terminal of the controller after being connected to the fourteenth resistor in series.
5. The control circuit of the skin makeup instrument according to claim 4, wherein said blue light control circuit includes a second diode, a fifteenth resistor and a second field effect transistor, a cathode of said second diode is connected to a 12V power supply, an anode of said second diode is respectively connected to a third terminal of said second field effect transistor and an RF _ LED _ G terminal of said RGB port, a first terminal of said second field effect transistor is connected to an RF _ LED _ G _ EN terminal of said controller after being connected to said fifteenth resistor in series.
6. The control circuit of claim 5, wherein the green light control circuit comprises a third diode, a sixteenth resistor and a third field effect transistor, a cathode of the third diode is connected to the 12V power supply, an anode of the third diode is respectively connected to the third terminal of the third field effect transistor and the RF _ LED _ B terminal of the RGB port, and a first terminal of the third field effect transistor is connected in series with the sixteenth resistor and then connected to the RF _ LED _ B _ EN terminal of the controller.
Priority Applications (1)
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CN202221713842.8U CN218446421U (en) | 2022-07-05 | 2022-07-05 | Control circuit of skin makeup instrument |
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CN202221713842.8U CN218446421U (en) | 2022-07-05 | 2022-07-05 | Control circuit of skin makeup instrument |
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CN218446421U true CN218446421U (en) | 2023-02-03 |
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CN202221713842.8U Active CN218446421U (en) | 2022-07-05 | 2022-07-05 | Control circuit of skin makeup instrument |
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- 2022-07-05 CN CN202221713842.8U patent/CN218446421U/en active Active
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