Temperature measuring structure of beauty instrument
By installing an infrared temperature sensor inside the cylindrical working section of the Micron device, the problem of the lack of temperature detection in the Micron device has been solved, enabling real-time temperature detection and accurate temperature measurement, thereby improving user safety and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-03-24
AI Technical Summary
Existing microneedling devices lack temperature detection equipment, which makes them prone to burns during use and affects the user experience.
An infrared temperature sensor is installed inside the cylindrical working part of the Micron instrument. The cylindrical working part and mounting base, made of light-transmitting material, ensure the installation stability and temperature measurement accuracy of the infrared temperature sensor.
It enables real-time temperature detection, improves temperature measurement efficiency and accuracy, prevents burns, and enhances the user experience.
Smart Images

Figure CN224034775U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of beauty instrument, specifically relates to a temperature measurement structure of beauty instrument. BACKGROUND
[0002] With the continuous improvement of user's life quality and the increasing pursuit of beauty, the beauty and skin care market presents the vigorous development trend, and the beauty instrument as a kind of equipment that can assist people to realize better beauty effect gradually receives the widespread attention of consumers, the beauty instrument in the prior art will produce heat in the process of use, improves the beauty effect of beauty instrument, but the existing beauty instrument mostly does not have temperature detection device, cannot detect the temperature of beauty instrument in the process of use in real time, leads to the phenomenon that beauty instrument is easy to scald in the process of use, affects user's experience. SUMMARY
[0003] The utility model aims at above -mentioned problem, provides a temperature measurement structure of beauty instrument.
[0004] To achieve the above object, the utility model adopts the following technical scheme: the temperature measurement structure of the beauty instrument is arranged in the columnar working part of the beauty instrument, the columnar working part has a mounting seat and a circuit board in the mounting seat, the temperature measurement structure includes at least one infrared temperature measurement sensor arranged on the circuit board and connected with the circuit board, the infrared temperature measurement sensor is arranged in the temperature measurement hole on the outer side of the mounting seat, and the infrared temperature measurement sensor faces the inner side of the columnar working part, and the columnar working part is provided with a light transmission area corresponding to the infrared temperature measurement sensor or the columnar working part is made of light transmission material, the infrared temperature measurement sensor can be conveniently installed through the mounting seat, and the infrared temperature measurement sensor can be conveniently positioned and limited through the temperature measurement hole, the installation effect of the infrared temperature measurement sensor is ensured, and the infrared temperature measurement sensor can be controlled through the circuit board.
[0005] In the temperature measurement structure of the beauty instrument, the columnar working part is hollow and is made of light transmission material, one end of the columnar working part is closed, and the other end is open, the infrared temperature measurement effect of the infrared temperature measurement sensor is ensured through the light transmission material, and the temperature measurement accuracy is ensured.
[0006] In the temperature measurement structure of the beauty instrument, the mounting seat is in the form of a cylinder, and the mounting seat extends along the axis of the columnar working part, one end of the mounting seat extends to the inside of the closed end of the columnar working part, the other end of the mounting seat extends to the inside of the open end of the columnar working part and is connected to the open end of the columnar working part through interfitting, and the mounting stability of the mounting seat in the columnar working part is ensured.
[0007] In the temperature measuring structure of the above-mentioned beauty instrument, the number of the circuit boards is four and each is in a strip-shaped plate, the circuit boards are circumferentially surrounded and spliced to form a rectangular cylindrical mounting cylinder, the mounting cylinder is arranged in an axial direction of the mounting base and extends to both ends of the mounting base, the mounting cylinder can facilitate the mounting of the beauty instrument components on each surface and the control of the beauty instrument components.
[0008] In the temperature measuring structure of the above-mentioned beauty instrument, the number of the infrared temperature measuring sensors is one and the infrared temperature measuring sensor is arranged on any one of the circuit boards, which can facilitate the installation of the infrared temperature measuring sensor and improve the installation efficiency.
[0009] In the temperature measuring structure of the above-mentioned beauty instrument, the infrared temperature measuring sensor is fixedly arranged on one end of the circuit board close to the outside of the closed end of the columnar working part, and the temperature measuring hole is arranged on the circumferential outside of one end of the mounting base close to the closed end of the columnar working part, and the mounting base can be arranged in an extending manner towards the columnar working part through the temperature measuring hole.
[0010] In the temperature measuring structure of the above-mentioned beauty instrument, one end of the infrared temperature measuring sensor passes through the temperature measuring hole and extends to the outside of the temperature measuring hole, and the one end of the infrared temperature measuring sensor does not contact the circumferential inner wall of the columnar working part, which can reduce the temperature measuring distance, ensure the temperature measuring effect, and prevent the columnar working part from damaging the infrared temperature measuring sensor.
[0011] In the temperature measuring structure of the above-mentioned beauty instrument, the circuit board has a wide rectangular part and a narrow rectangular part, and the wide rectangular part of one of the two adjacent circuit boards is inserted into the narrow rectangular part of the other circuit board, which can improve the insertion efficiency between the circuit boards and ensure.
[0012] In the temperature measuring structure of the above-mentioned beauty instrument, the mounting base has four right-angled notches arranged uniformly in a circumferential direction, and the right-angled notches are arranged in an axial direction of the mounting base, each corner of the mounting cylinder corresponds to one of the right-angled notches, the mounting base is composed of two semicircular plate-shaped halves and connected by an insertion column passing through the mounting cylinder in a radial direction, the mounting cylinder can be stably placed in the mounting base through the right-angled notches, the mounting base can be mounted and dismounted through the halves, the insertion efficiency of the two halves is ensured through the insertion column, and the structural strength of the mounting base is ensured.
[0013] In the temperature measuring structure of the above-mentioned beauty instrument, the open end of the columnar working part is connected with a handle body, the handle body is provided with a control switch connected with a circuit board, the control switch and the circuit board are connected with a battery body in the handle body respectively, the handle body can be conveniently held by a user, the circuit board can be supplied with power through the battery body, and the infrared temperature measuring sensor can be controlled through the control switch and the circuit board.
[0014] Compared with the prior art, the beauty instrument has the advantages that:
[0015] 1. The infrared temperature measuring sensor can measure temperature through infrared rays, improve temperature measuring efficiency and ensure temperature measuring precision.
[0016] 2. The right-angle notch ensures the installation stability of the installation cylinder in the mounting seat, thereby ensuring the temperature measuring effect of the infrared temperature measuring sensor on the installation cylinder.
[0017] 3. The columnar working part is made of light-transmitting material, the infrared temperature measuring sensor can conveniently measure temperature through the columnar working part, and temperature measuring precision is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a structural schematic view of the utility model.
[0019] Figure 2 is a structural sectional view of the utility model.
[0020] Figure 3 is an exploded view of the structure of the utility model.
[0021] Figure 4 is an exploded view of the structure of the utility model from another perspective.
[0022] In the drawing: beauty instrument 1, columnar working part 2, mounting seat 3, temperature measuring hole 31, right-angle notch 32, half body 33, plug-in column 34, circuit board 4, wide rectangular part 41, narrow rectangular part 42, infrared temperature measuring sensor 5, installation cylinder 6, handle body 7, control switch 71, battery body 72. DETAILED DESCRIPTION
[0023] The utility model will be explained in further detail below in combination with the drawings and specific embodiments.
[0024] As Figure 1 , Figure 2 , Figure 3As shown, the temperature measuring structure of the present application is arranged in the columnar working part 2 of the beauty instrument 1, the columnar working part 2 has a mounting seat 3 and a circuit board 4 arranged in the mounting seat 3, the temperature measuring structure comprises at least one infrared temperature measuring sensor 5 arranged on the circuit board 4 and connected with the circuit board 4, the infrared temperature measuring sensor 5 is arranged in the temperature measuring hole 31 on the outer side of the mounting seat 3 and faces the inner side of the columnar working part 2, the columnar working part 2 has a light transmission area corresponding to the infrared temperature measuring sensor 5 or is made of light transmission material, the infrared temperature measuring sensor 5 can be conveniently installed through the mounting seat 3, the infrared temperature measuring sensor 5 can be conveniently positioned and limited through the temperature measuring hole 31, the installation effect of the infrared temperature measuring sensor 5 is ensured, and the infrared temperature measuring sensor 5 can be controlled through the circuit board 4.
[0025] Specifically, the columnar working part 2 is hollow and is made of light transmission material, one end of the columnar working part 2 is closed and the other end is open, the infrared temperature measuring effect of the infrared temperature measuring sensor 5 is ensured through the light transmission material, and the temperature measuring accuracy is ensured.
[0026] The mounting seat 3 is cylindrical and extends along the axis of the columnar working part 2, one end of the mounting seat 3 extends to the inner side of the closed end of the columnar working part 2, the other end of the mounting seat 3 extends to the inner side of the open end of the columnar working part 2 and is connected with the open end of the columnar working part 2 through interfitting, and the installation stability of the mounting seat 3 in the columnar working part 2 is ensured.
[0027] As shown in Figure 2 , Figure 3 , Figure 4 The number of the circuit boards 4 is four and each is a strip-shaped plate, the circuit boards 4 are circumferentially surrounded and spliced to form a rectangular cylindrical mounting cylinder 6, the mounting cylinder 6 extends along the axis of the mounting seat 3 and extends to the two ends of the mounting seat 3, the beauty components can be conveniently installed on each surface through the mounting cylinder 6, and the beauty components can be conveniently controlled.
[0028] Further, the number of the infrared temperature measuring sensor 5 is one and the infrared temperature measuring sensor 5 is arranged on any one of the circuit boards 4, the infrared temperature measuring sensor 5 can be conveniently installed and placed, and the installation efficiency is improved.
[0029] The infrared temperature measuring sensor 5 is fixedly arranged on the outer side of one end of the circuit board 4 close to the closed end of the columnar working part 2, the temperature measuring hole 31 is arranged on the outer side of one end of the mounting seat 3 close to the closed end of the columnar working part 2, and the mounting seat 3 can be conveniently arranged to extend towards the columnar working part 2 through the temperature measuring hole 31.
[0030] In combination with Figure 2 , Figure 3 , Figure 4As shown, one end of the infrared temperature measuring sensor 5 passes through the temperature measuring hole 31 and extends to the outside of the temperature measuring hole 31, and the one end of the infrared temperature measuring sensor 5 does not contact the circumferential inner wall of the columnar working part 2, which can reduce the temperature measuring distance, ensure the temperature measuring effect, and prevent the columnar working part 2 from damaging the infrared temperature measuring sensor 5.
[0031] The circuit board 4 has a wide rectangular portion 41 and a narrow rectangular portion 42, and the wide rectangular portion 41 of one of the two adjacent circuit boards 4 is inserted with the narrow rectangular portion 42 of the other circuit board 4, which can improve the insertion efficiency between the circuit boards 4 and ensure that.
[0032] Specifically, the mounting seat 3 has four straight corner notches 32 uniformly distributed on the circumferential inner side, and the straight corner notches 32 are respectively arranged along the axial direction of the mounting seat 3. Each corner of the mounting cylinder 6 corresponds to one of the straight corner notches 32. The mounting seat 3 is composed of two arc-shaped plate-shaped halves 33 and connected by an insertion column 34 that penetrates the mounting cylinder 6 radially. The straight corner notches 32 can facilitate the stable placement of the mounting cylinder 6 in the mounting seat 3. The halves 33 can facilitate the mounting and dismounting of the mounting seat 3, improving the efficiency of mounting and dismounting. The insertion column 34 can ensure the insertion effect of the two halves 33 and the structural strength of the mounting seat 3.
[0033] In combination Figure 2 , Figure 3 , Figure 4 As shown, the open end of the columnar working part 2 is connected with a handle body 7, and the handle body 7 is provided with a control switch 71 connected with the circuit board 4. The control switch 71 and the circuit board 4 are respectively connected with a battery body 72 located in the handle body 7. The handle body 7 can be easily held by the user, and the battery body 72 can provide power to the circuit board 4. The control switch 71 can control the operation of the infrared temperature measuring sensor 5 through the circuit board 4.
[0034] The principle of the present embodiment is that the columnar working part 2 is made of light-transmitting material, and the infrared temperature measuring sensor 5 can measure the temperature through the columnar working part 2, ensuring the temperature measuring effect. The columnar working part 2 can protect the infrared temperature measuring sensor 5. The mounting seat 3 can facilitate the installation of the infrared temperature measuring sensor 5, ensuring the installation stability of the infrared temperature measuring sensor 5 and the temperature measuring effect.
[0035] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or use similar ways to replace them, without deviating from the spirit of the present application or exceeding the scope defined by the appended claims.
[0036] Although the terms such as the light meter 1, the columnar working part 2, the mounting seat 3, the temperature measuring hole 31, the right-angle notch 32, the half body 33, the plug-in column 34, the circuit board 4, the wide rectangular part 41, the narrow rectangular part 42, the infrared temperature measuring sensor 5, the mounting cylinder 6, the handle body 7, the control switch 71, the battery body 72 are used more in the present application, the possibility of using other terms is not excluded. The use of these terms is only for the convenience of describing and explaining the essence of the present application; it is against the spirit of the present application to interpret them as any kind of additional limitation.
Claims
1. A temperature measuring structure for a microneedling device, disposed within a cylindrical working part (2) of the microneedling device (1), wherein the cylindrical working part (2) has a mounting base (3) and a circuit board (4) is disposed within the mounting base (3), characterized in that, This temperature measurement structure includes at least one infrared temperature sensor (5) disposed on and connected to the circuit board (4). The infrared temperature sensor (5) is inserted into the temperature measurement hole (31) on the outer side of the mounting base (3) and faces the inner side of the columnar working part (2). The columnar working part (2) is provided with a light-transmitting area corresponding to the infrared temperature sensor (5) or the columnar working part (2) is made of light-transmitting material.
2. The temperature measurement structure of a melanometer according to claim 1, characterized in that, The columnar working part (2) is hollow and made entirely of light-transmitting material. One end of the columnar working part (2) is closed and the other end is open.
3. The temperature measurement structure of a metronome according to claim 1, characterized in that, The mounting base (3) is cylindrical and extends axially along the columnar working part (2). One end of the mounting base (3) extends to the inside of the closed end of the columnar working part (2), and the other end of the mounting base (3) extends to the inside of the open end of the columnar working part (2) and is inserted and connected to the open end of the columnar working part (2).
4. The temperature measurement structure of a metronidazole device according to claim 1, 2, or 3, characterized in that, The number of circuit boards (4) is four, and all of them are strip-shaped. The circuit boards (4) are circumferentially assembled to form a rectangular cylindrical mounting body (6). The mounting body (6) extends axially along the mounting base (3), and both ends of the mounting body (6) extend to both ends of the mounting base (3).
5. The temperature measurement structure of a melanometer according to claim 4, characterized in that, The number of infrared temperature sensors (5) is one, and the infrared temperature sensors (5) are set on any one of the circuit boards (4).
6. The temperature measurement structure of a metronome according to claim 4, characterized in that, The infrared temperature sensor (5) is fixedly installed on the outer side of one end of the circuit board (4) near the closed end of the columnar working part (2), and the temperature measuring hole (31) is located on the outer side of one end of the mounting base (3) near the closed end of the columnar working part (2).
7. The temperature measurement structure of a metronome according to claim 1, characterized in that, One end of the infrared temperature sensor (5) passes through the temperature measuring hole (31) and extends to the outside of the temperature measuring hole (31), and one end of the infrared temperature sensor (5) does not contact the circumferential inner wall of the columnar working part (2).
8. The temperature measurement structure of a metronome according to claim 1, characterized in that, The circuit board (4) has a wide rectangular portion (41) and a narrow rectangular portion (42), and the wide rectangular portion (41) of one of the two adjacent circuit boards (4) is inserted into the narrow rectangular portion (42) of the other circuit board (4).
9. The temperature measurement structure of a metronome according to claim 4, characterized in that, The mounting base (3) has four right-angled notches (32) evenly distributed in the circumferential direction on its inner side, and the right-angled notches (32) extend along the axial direction of the mounting base (3). Each corner of the mounting cylinder (6) corresponds to the right-angled notch (32). The mounting base (3) is formed by radially splicing two arc-shaped half-body (33) and the two half-body (33) are connected by a plug post (34) that penetrates the mounting cylinder (6) radially.
10. The temperature measurement structure of a metronome according to claim 1, characterized in that, The open end of the columnar working part (2) is connected to a handle body (7). The handle body (7) is provided with a control switch (71) connected to the circuit board (4), and the control switch (71) and the circuit board (4) are respectively connected to the battery body (72) located inside the handle body (7).