Charging device
By combining the charging device with the temperature measuring sticker, it is possible to charge electronic devices and measure body temperature anytime and anywhere without increasing the burden on users. This solves the problem of inconvenience in using existing body temperature measuring equipment outdoors and improves the portability and flexibility of the equipment.
Patent Information
- Application Number
- CN202422543212.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing temperature measurement equipment is inconvenient to use outdoors, especially electronic temperature guns, which are large and difficult to carry, and it is difficult for users to take temperature checks anytime and anywhere when they are outdoors.
A charging device is designed, combining a charging box and a detachable temperature measuring patch. The charging box is provided with a charging slot and a display unit. The temperature measuring patch can be detachably installed in the charging slot and displays the temperature and power level through a wireless signal connection. The charging box charges the temperature measuring patch and obtains body temperature data at the same time.
It achieves the goal of charging electronic devices and measuring body temperature anytime and anywhere without increasing the burden on users, improving the portability and flexibility of the device and meeting users' temperature detection needs outdoors.
Smart Images

Figure CN223309615U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of chargers, in particular to charging equipment. Background Art
[0002] Currently, there are three commonly used instruments for measuring human body temperature. One is a mercury thermometer, which needs to be clamped under the armpit for a period of time during measurement, and then the temperature value is read with the naked eye; the other is an electronic thermometer, which also needs to be clamped under the armpit for a period of time during measurement, and the temperature value is directly displayed on the display screen; the last one is an electronic temperature gun, which is aimed at the forehead or back of the hand for measurement, and the temperature value is directly displayed on the display screen, but the electronic temperature gun has a certain size and is not convenient to carry.
[0003] When users go out, engage in outdoor activities or work, it is inconvenient to carry tools for measuring body temperature. The above three instruments cannot meet the user's body temperature detection needs. Utility Model Content
[0004] In view of the above problems, the embodiments of the present application are proposed. The purpose of the embodiments of the present application is to provide a charging device that can measure body temperature.
[0005] To achieve this goal, the present invention adopts the following technical solutions:
[0006] A charging device, comprising:
[0007] A charging box body having a universal charging interface, through which external electronic devices can be coupled to the charging box body for charging;
[0008] The temperature measuring patch is detachably arranged in the charging box body, and the charging box body can charge the temperature measuring patch and obtain the current power level of the temperature measuring patch; when the temperature measuring patch is in use, it can obtain body temperature by adhering to human skin. The temperature measuring patch is communicatively connected with the charging box body, and the charging box body can obtain the body temperature.
[0009] Optionally, the charging box body has two opposite sides, one of which is provided with a charging slot capable of accommodating the temperature measuring sticker and at least one display unit, and the display unit is used to display the temperature measured by the temperature measuring sticker or the current remaining power of the charging box body.
[0010] Optionally, the display unit has one for displaying relevant data of the temperature measuring sticker; or
[0011] There are two display units, one of which is a power display unit for displaying the remaining power of the charging box or the temperature measuring sticker, and the other is a temperature display unit for displaying the temperature measured by the temperature measuring sticker.
[0012] Optionally, when the temperature measuring sticker is in the charging compartment, the power display unit displays the remaining power of the charging box;
[0013] When the temperature measuring patch is measuring temperature, the power display unit displays the remaining power of the temperature measuring patch.
[0014] Optionally, a first positioning structure is provided on the inner groove wall of the charging accommodating groove, and a second positioning structure is provided on the temperature measuring sticker. The first positioning structure cooperates with the second positioning structure to limit the accommodating position of the temperature measuring sticker.
[0015] Optionally, a plurality of first fixing structures are provided at intervals on the inner groove wall of the charging groove in the circumferential direction, and a second fixing structure is provided on the circumference of the temperature measuring patch to cooperate with the first fixing structure. The first fixing structure and the second fixing structure can be locked or separated from each other to lock the temperature measuring patch in the charging groove or unlock it from the charging groove.
[0016] As an optional solution, the charging box body has a charging accommodating groove with an upward opening, and the bottom of the charging accommodating groove has a plurality of charging contacts;
[0017] The temperature measuring patch is accommodated in the charging accommodating slot and is electrically connected to the charging contact.
[0018] As an optional solution, the charging equipment also includes:
[0019] The cover body is pivotally connected to the charging box body and can at least cover the top of the charging accommodating groove to open or close the opening.
[0020] As an optional solution, the cover is made of a transparent material.
[0021] As an optional solution, the temperature measuring patch includes:
[0022] A temperature measuring probe, a temperature measuring host, and a temperature measuring wire having one end coupled to the temperature measuring probe and the other end coupled to the temperature measuring host;
[0023] in:
[0024] The temperature measuring probe is detachably accommodated on the temperature measuring host, and the temperature measuring probe is used to fit the object to be measured to measure the body temperature of the object;
[0025] The temperature measuring host transmits electrical energy to the temperature measuring probe through the temperature measuring line and obtains the body temperature;
[0026] The temperature measuring host is communicatively connected to the display unit and can transmit the body temperature to the display unit;
[0027] A back clip assembly is provided on one side of the temperature measuring host to clamp the temperature measuring host on the body of the measured object.
[0028] As an optional solution, a winding groove is provided on the circumference of the temperature measuring host, and the temperature measuring wire can be wound in the winding groove to change the length of the temperature measuring wire or accommodate the temperature measuring wire.
[0029] As an optional solution, the end portion of the temperature measuring wire coupled to the temperature measuring host can be detachably passed through the wall of the winding groove.
[0030] As an optional solution, the back clamp assembly includes:
[0031] A back splint, with first support plates on both sides of the kneading end of the back splint facing the temperature measuring host;
[0032] A kneading plate is arranged on the circumference of the temperature measuring host, and a second support plate is provided on both sides of the kneading plate facing the back clamp, and the first support plate and the second support plate on the corresponding side are in contact with each other;
[0033] a connecting shaft, passing through the joints between the two sets of the first support plates and the second support plates; and
[0034] A torsion spring is sleeved on the connecting shaft between the two first support plates or the two second support plates, and one end of the torsion spring abuts against the kneading end, and the other end abuts against the kneading plate.
[0035] As an optional solution, a plurality of operation panels are evenly distributed around the circumference of the temperature measuring probe, and the operation panels are used for the user to take the temperature measuring probe.
[0036] As an optional solution, one of the operating panels may also be a clamping plate, and when the temperature measuring probe is accommodated on the temperature measuring host, the clamping plate is clamped on the back clamp assembly.
[0037] As an optional solution, the back splint is provided with a probe accommodating groove and a receiving groove, one end of the receiving groove passes through the clamping end of the back splint, and the other end is communicated with the receiving groove;
[0038] The width of the receiving groove is smaller than the width of the clamping plate, and the width of the clamping plate is smaller than the diameter of the temperature measuring probe;
[0039] When the temperature measuring probe is accommodated in the probe accommodating groove, the clamping plate is clamped between the back clamping plate and the temperature measuring host on both sides of the accommodating groove.
[0040] As an optional solution, the back splint is an arc surface that is bent in a direction away from the temperature measuring host, and the turning point of the arc surface is in contact with the temperature measuring host.
[0041] As an optional solution, the length of the temperature measuring wire is proportional to the circumference of the winding groove;
[0042] The end of the temperature measuring wire connected to the temperature measuring host is passed through the groove wall of the winding groove at the clamping opening of the clamping plate, and the end of the temperature measuring wire connected to the temperature measuring probe is located in the center of the clamping plate.
[0043] The technical solution provided by the embodiment of the present application is to configure the charging device to include a charging box body that can charge mobile electronic devices and a temperature measuring patch that can measure body temperature. The temperature measuring patch can be placed in the charging accommodating slot on the charging box body. The charging box body can not only obtain the body temperature measured by the temperature measuring patch, but also charge the temperature measuring patch. As a result, the charging device can not only charge mobile electronic devices but also measure body temperature. Since the charging device is a device that the user carries with him / her for a long time, the user does not need to carry a special thermometer to measure body temperature, and the portability and flexibility are high. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0045] Figure 1 A schematic diagram of the structure of a charging device provided in one embodiment of the present application;
[0046] Figure 2 A circuit schematic diagram of the display unit of the charging box provided in one embodiment of the present application;
[0047] Figure 3 A circuit diagram of a display unit of a charging box provided in one embodiment of the present application;
[0048] Figure 4 A schematic diagram of the display control principle of the charging box provided in one embodiment of the present application;
[0049] Figure 5 This is a top view of the temperature measuring sticker provided in one embodiment of the present application, not located inside the charging box;
[0050] Figure 6 This is a structural diagram of the temperature measuring patch provided in an embodiment of the present application in the released state;
[0051] Figure 7 This is a structural diagram of the temperature measuring patch in the housing state provided by one embodiment of the present application;
[0052] Figure 8 A circuit diagram of a temperature measuring patch provided in one embodiment of the present application;
[0053] Figure 9 A front view of a temperature measuring patch provided in one embodiment of the present application;
[0054] Figure 10 A schematic structural diagram of a charging device provided in another embodiment of the present application;
[0055] Figure 11 for Figure 2 A schematic diagram of the structure of the charging box body;
[0056] Figure 12 For Figure 2 Schematic diagram of the structure of the temperature measuring sticker.
[0057] In the picture:
[0058] 10. Temperature measuring stickers; 20. Charging equipment;
[0059] 11. Temperature measuring probe; 111. Temperature measuring body; 112. Operation panel; 113. Clamping plate;
[0060] 12. Temperature measuring host; 121. Body; 1211. Winding groove; 122. Back clamp assembly; 1221. Back clamp plate; 12211. Accommodation groove; 12212. Accommodation groove; 1222. Kneading plate; 1223. Connecting shaft; 1224. Torsion spring; 1225. Second support plate; 1226. First support plate;
[0061] 13. Temperature measuring line;
[0062] 21. Charging box body; 211. Charging accommodating slot; 212. Charging contacts; 213. First positioning structure; 214. First fixing structure; 22. Cover body; 23. Display unit. DETAILED DESCRIPTION
[0063] The inventors of this application have conducted a thorough study of commonly used temperature measurement devices and discovered that while mercury thermometers are widely used and offer high temperature measurement accuracy, they suffer from disadvantages such as long measurement times, restrictions on user movement during measurement, difficulty in temperature reading, and susceptibility to damage. Current electronic thermometers, on the other hand, replace the mercury in mercury thermometers with a temperature sensor to sense changes in the user's body temperature. The temperature sensor is coupled to a controller, which acquires the temperature measured by the temperature sensor and displays it to the user via a display unit. These devices not only measure quickly, are less prone to damage, and offer convenient readings, but existing electronic thermometers still rely on the subject being held under the armpit to measure temperature, which restricts user movement and is not suitable for outdoor use. Furthermore, when a user is in good health, they may not consider regularly carrying a temperature measurement device. However, when a user experiences sudden discomfort and needs to take a temperature measurement, they may not have a temperature measurement device available.
[0064] Based on this, the inventor of this application attempted to integrate the temperature measuring sticker with the electronic devices commonly used by users. Since the commonly used electronic devices are definitely carried by users, this not only allows users to use the commonly used electronic devices normally, but also allows users to take out the temperature measuring sticker at any time to measure their body temperature when they need to.
[0065] In view of this, the inventors of the present application have designed the solutions of the various embodiments of the present application.
[0066] The present application will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are intended only to illustrate the present application and are not intended to limit the present application. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions of the present application, not all of the structures.
[0067] In the description of this application, unless otherwise specified or limited, the terms "connected," "connect," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and can refer to internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0068] In this application, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0069] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meanings.
[0070] Please refer to Figure 1 and Figure 10 As shown, this embodiment provides a charging device 20, which includes a charging box 21 and a temperature measuring patch 10, wherein the charging box has a universal charging port. The user can use a mobile data cable to electrically plug one end of the mobile data cable into the universal charging port and the other end into the mobile electronic device, so that the mobile electronic device is coupled to the charging box 21, and the mobile electronic device can be charged. The temperature measuring patch 10 is detachably arranged in the charging box 21. When the temperature measuring patch 10 is in the charging box 21, it is in a storage state. When the temperature measuring patch 10 is taken out of the charging box 21, it is in a working state. It can be understood that under normal circumstances, the user takes the temperature measuring patch 10 out of the charging box 21 to measure body temperature, so taking the temperature measuring patch 10 out of the charging box 21 is defined as the working state. When the temperature measuring patch 10 is in the storage state, it can not only be charged, but the display unit 23 also displays the current remaining power of the charging box 21. When the temperature measuring patch 10 is in use, it can communicate with the charging box 21 via wireless signals, and the display unit 23 can display the temperature measured by the temperature measuring patch 10. Since the charging device 20 has the function of a mobile power bank, and mobile power banks are electronic devices commonly used by users, users will carry the charging device 20 with them. Therefore, when the user needs to measure the body temperature, the temperature measuring patch can be taken out of the charging container 211 at any time for temperature measurement, which is relatively portable and flexible.
[0071] In some embodiments of the present application, Figure 5 and Figure 11As shown, the temperature measuring patch 10 can be detachable in the charging box body 21 by providing a charging accommodating groove 211 on the side of the charging box body 21, and the temperature measuring patch 10 can be inserted into the charging accommodating groove 211 to achieve charging; or the upper end surface of the charging box body 21 has a charging accommodating groove 211 with an opening facing upward on one side, and a display unit 23 on the other side. The bottom of the charging accommodating groove 211 has a plurality of charging contacts 212, and the corresponding bottom of the temperature measuring patch 10 is provided with a plurality of conductive pins. When the temperature measuring patch 10 is in the storage state, the temperature measuring patch 10 is accommodated in the charging accommodating groove 211, and the conductive pins abut against the charging contacts 212, so that the temperature measuring patch 10 is coupled to the charging box body 21; or the temperature measuring patch 10 can be adsorbed on the charging box body 21 by magnetic attraction. As long as the temperature measuring patch 10 can be detachably connected in the charging box body 21, this embodiment is not specifically limited.
[0072] In other embodiments of the present application, Figure 5 and Figure 11 As shown, the charging box body 21 has two opposite sides, one of which is a functional side and the other is a charging side. A charging accommodating groove 211 is provided on the functional side, and a plurality of charging contacts 212 are provided in the charging accommodating groove 211. A plurality of conductive thimbles are provided at the bottom of the temperature measuring patch 10. The temperature measuring patch 10 can be detachably accommodated in the charging accommodating groove 211 for charging. Two display units 23 are also provided on the functional side, as shown in FIG. Figure 5 As shown, the two display units 23 can be located on one side of the charging container 211 at the same time. Figure 11 As shown, the two display units 23 can also be located on both sides of the charging slot 211, for example, both display units 23 are located on the left side of the charging slot 211, or there is a display unit 23 on each side of the left and right sides of the charging slot 211. This application does not make any specific restrictions on this. One of the two display units 23 can display the current remaining power of the charging box 21 or the temperature measuring patch 10 in real time as a power display unit, and the other display unit 23 is used to display the temperature measured by the temperature measuring patch 10 as a temperature display unit. For example, when the temperature measuring patch 10 is placed in the charging slot 211, the power display unit displays the remaining power of the charging box 21. When the temperature measuring patch 10 is in working state, the power display unit displays the current remaining power of the temperature measuring patch 10, and the temperature display unit displays the temperature measured by the temperature measuring patch 10.
[0073] For further information, please refer to Figure 5 and Figure 11The charging box 21 includes a rechargeable battery, a box controller, and a display unit 23, wherein the display unit 23 is arranged on the other side of the charging box 21. The box controller, charging contacts 212, and display unit 23 are all coupled to the rechargeable battery. The rechargeable battery can supply power to the box controller, charging contacts 212, and display unit 23 to ensure the normal operation of the charging box 21, and charge the temperature measuring patch 10 when the temperature measuring patch 10 is accommodated in the charging compartment 211. At this time, the box controller can be coupled with the controller of the temperature measuring patch 10 through the charging contacts 212 so that the controller of the temperature measuring patch 10 can transmit the power information of the host battery to the box controller. The box controller controls the display unit 23 to display the current power of the temperature measuring patch 10 and controls the box battery to charge the host battery. Therefore, when the temperature measuring patch 10 is in the storage state, the display unit 23 can display the current power of the temperature measuring patch 10. When the temperature measuring patch 10 is measuring the body temperature of the object being measured, that is, when the temperature measuring patch 10 is in working state, the controller of the temperature measuring patch 10 can be connected to the box controller via Bluetooth or wireless WiFi wireless signal, and the box controller can obtain the body temperature signal sent by the controller of the temperature measuring patch 10 to the box controller. After obtaining the body temperature signal, the box controller controls the display unit 23 to display the body temperature for the user to view. Therefore, when the temperature measuring patch 10 is in use, the display unit 23 displays the temperature measured by the temperature measuring patch 10.
[0074] For details, please refer to Figures 2 and 3The charging box 21 also has a charging chip, which is coupled to the rechargeable battery and the box controller to jointly manage charging. When the temperature measuring patch 10 is in the storage state, the conductive pin and the conductive contact are electrically connected, so that the temperature measuring patch 10 is coupled to the box controller. The box controller issues a command to the charging chip to charge the temperature measuring patch 10. The charging chip uses the power of the rechargeable battery to charge the temperature measuring patch 10. If charging is successful, it means that the temperature measuring patch 10 is located in the receiving groove 12211. If charging is unsuccessful, it means that the temperature measuring patch 10 is not located in the receiving groove 12211. The charging chip transmits the above information back to the box controller. If the temperature measuring patch 10 is charged successfully, the box controller controls the display unit 23 to display the current power of the charging patch. If the temperature measuring patch 10 is charged successfully, the box controller controls the display unit 23 to display the current temperature measured by the temperature measuring patch 10. When other external electronic devices are connected to the charging box 21 through the universal interface, the box controller senses the external electronic device that needs to be charged, and the box controller sends an instruction to charge the external electronic device to the charging chip. The charging chip controls the lithium battery to charge the external electronic device. Usually, external electronic devices, such as mobile phones, have the function of displaying the current remaining power. Therefore, if the temperature measuring patch 10 is located in the charging box 21, the display unit 23 still displays the current remaining power of the temperature measuring patch 10. If the temperature measuring patch 10 is not located in the charging box 21, the temperature measured by the temperature measuring patch 10 is displayed.
[0075] In order to ensure that the conductive pin can fit with the charging contact 212 when the temperature measuring patch 10 is placed in the charging accommodating slot 211, in some embodiments of the present application, please refer to Figure 5 One possible configuration for the charging slot 211 is to have a first positioning structure 213 disposed on the inner circumferential wall of the charging slot 211, and a second positioning structure disposed on the temperature measuring patch 10. The first positioning structure 213 and the second positioning structure cooperate to define the placement of the temperature measuring patch 10. One of the first positioning structure 213 and the second positioning structure can be a positioning post, and the other can be a positioning slot. Only when the positioning slot aligns with the positioning post can the temperature measuring patch 10 be accommodated within the charging slot 211, resulting in a simple structure.
[0076] In order to ensure that the temperature measuring patch 10 will not fall out of the charging container 211 when it is placed in the charging container 211, please refer to Figure 5In some embodiments of the present application, a plurality of first fixing structures 214 are provided at intervals along the inner groove wall of the circumferential direction of the charging groove 211, and a second fixing structure cooperating with the first fixing structure 214 is provided along the circumference of the temperature measuring patch 10. The first fixing structure 214 and the second fixing structure can be locked or separated with each other to lock the temperature measuring patch 10 into the charging groove 211 or unlock it from the charging groove 211. One of the first fixing structure 214 and the second fixing structure is a protrusion and the other is a groove. The first structure can be a groove and the second structure can be a protrusion, or the first structure can be a protrusion and the second structure can be a groove. The entrance of the groove has an arc-shaped guide surface, and the longitudinal cross-section of the protrusion is also arc-shaped, so that the protrusion can enter the groove or detach from the groove under the action of an external force, thereby achieving the locking and unlocking of the temperature measuring patch 10.
[0077] When the temperature measuring patch 10 is accommodated in the charging container 211, in order to prevent the temperature measuring patch 10 from being scratched by external objects and to prevent the temperature measuring patch 10 from being separated from the charging container 211, in some embodiments of the present application, the charging device 20 also includes a cover 22, which is pivotally connected to the charging box 21 and can be at least covered above the charging container 211 to isolate the temperature measuring patch 10 from the outside world; or opened to facilitate taking out or putting in the temperature measuring patch 10. The cover 22 can be only covered above the charging container 211, or it can be covered on the entire side of the charging box 21. At this time, in order to facilitate the display unit 23 to display the information of the temperature measuring patch 10 to the user, the cover 22 is made of a transparent material so that the user can see the display information of the display unit 23 through the cover 22.
[0078] like Figure 6 and Figure 12As shown, in some embodiments of the present application, the temperature measuring patch 10 includes a temperature measuring probe 11, a temperature measuring host 12, and a temperature measuring wire 13 coupled to the temperature measuring probe 11 at one end and to the temperature measuring host 12 at the other end. The temperature measuring probe 11 is used to fit the object to be measured to measure the body temperature of the object to be measured. The temperature measuring host 12 transmits electrical energy to the temperature measuring probe 11 through the temperature measuring wire 13 and obtains the body temperature. The body temperature host is communicatively connected to the display unit 23 and can transmit the body temperature to the display unit 23. The display unit 23 displays the body temperature to the user, making it easier for the user to read the body temperature value. The communication connection here can be a wireless signal connection between the temperature measuring host 12 and the display unit 23 using wireless wifi or Bluetooth. The display unit 23 can be a display unit 23 dedicated to the temperature measuring patch 10, such as a dedicated charging box for the temperature measuring patch 10, or it can be an electronic device such as a tablet, mobile phone or computer that has Bluetooth or wireless functions and can display information to the user. The setting of separating the temperature measuring host 12 from the temperature measuring probe 11 not only ensures that the heat emitted by the temperature measuring host 12 does not affect the temperature measuring probe 11, but also makes the volume of the temperature measuring probe 11 more compact. When the temperature measuring probe 11 is attached to the skin of the temperature measuring part to be measured, the user's foreign body sensation is weak, thereby improving the user's wearing experience. When the temperature measuring patch 10 is working, the temperature measuring probe 11 can be attached to the temperature measuring part. The attachment method can be to provide an adhesive on the contact surface of the temperature measuring probe 11 and directly attach the temperature measuring probe 11 to the temperature measuring part; preferably, the temperature measuring probe 11 can be attached to the temperature measuring part by using adhesive tape, so that the temperature measuring probe 11 can directly contact the temperature measuring part, and there will be no other material layer, such as an adhesive layer, between the temperature measuring probe 11 and the temperature measuring part. The temperature can be directly transmitted to the temperature measuring probe 11, thereby increasing the accuracy of body temperature measurement. The temperature probe 11 and the temperature measuring host 12 are separated so that the temperature probe 11 is more compact and lighter, which increases the comfort of the temperature measurement object during the temperature measurement and increases the reliability of the adhesion, ensuring that the temperature probe 11 will not fall off the measurement site. Figure 6 The temperature measuring probe 11 can be detachably placed on the temperature measuring host 12 to reduce the volume of the temperature measuring patch 10 when it is not working, making it easier to store and carry.
[0079] Furthermore, a temperature sensor is provided on the temperature measuring probe 11. When the temperature measuring probe 11 is attached to the object being measured, the temperature sensor can measure the body temperature of the object being measured. The temperature measuring host 12 is provided with a host battery, a controller coupled to the host battery, and a wireless transmission unit. The temperature sensor is coupled to the controller and the host battery through a temperature measuring line 13. The host battery can provide power to the temperature sensor and the controller to ensure the normal operation of the temperature measuring patch 10. The controller can obtain the temperature measured by the temperature sensor and transmit the signal to the display unit 23. Specifically, as Figure 8As shown, the controller includes a signal analog conversion unit, a signal acquisition unit, a signal processing unit, and a wireless management unit. The signal analog conversion unit can obtain the temperature signal measured by the temperature sensor and convert the temperature signal into an analog signal that can be recognized by the signal acquisition unit. The signal acquisition unit converts the acquired analog signal into a digital signal. The signal processing unit can filter and perform algorithm processing on the digital signal to organize it into recognizable temperature data. The temperature data is then verified and packaged and transmitted to the display unit 23 by the wireless management unit through the wireless transmission unit. The controller can be a common microcontroller unit (MCU) on the market. As long as it can perform data processing and control functions, this embodiment does not make specific limitations.
[0080] Under normal circumstances, axillary temperature is the most accurate temperature to reflect human body temperature, so the measurement position of the measured object is usually the armpit. However, since the armpit is relatively hidden, it is blocked by the arm or clothing, which hinders the temperature measurement host 12 from receiving and sending wireless signals. Therefore, please continue to refer to Figure 6 、 Figure 7 、 Figure 9 In some embodiments of the present application, a back clip assembly 122 is provided on one side of the temperature measuring host 12 to clip the temperature measuring host 12 to the body of the measured object, such as the collar. This not only makes the temperature measuring host 12 easy to carry, but also prevents the temperature measuring host 12 from being blocked, thereby ensuring good wireless communication function.
[0081] The object being measured can be an adult or a child, so the distance between the armpit and the collar is different, or when the object being measured wears a short-sleeved shirt in summer, it is also possible to clip the temperature measuring host 12 at the cuff of the short sleeve. In order to make the temperature measuring patch 10 applicable to various scenarios and ensure the reasonable length of the temperature measuring line 13, please continue to refer to Figure 7 In some embodiments of the present application, Figure 7 、 Figure 9 As shown, a winding groove 1211 is provided on the circumference of the temperature measuring main unit 12, and the temperature measuring wire 13 can be wound in the winding groove 1211. When it is necessary to shorten the length of the temperature measuring wire 13 between the temperature measuring main unit 12 and the temperature measuring probe 11, part of the temperature measuring wire 13 can be wound in the winding groove 1211; when it is necessary to increase the length of the temperature measuring wire 13 between the temperature measuring main unit 12 and the temperature measuring probe 11, part of the temperature measuring wire 13 accommodated in the winding groove 1211 can be unfolded. Thereby, the purpose of adjusting the length of the temperature measuring wire 13 between the temperature measuring main unit 12 and the temperature measuring probe 11 is achieved. In addition, when the temperature measuring patch 10 is not working, the entire temperature measuring wire 13 can be wound in the winding groove 1211 to achieve the overall storage of the temperature measuring wire 13, making the structure of the entire temperature measuring patch 10 more compact and the volume more compact, making it easier to store.
[0082] like Figure 6 As shown, if the end of the temperature measuring wire 13 coupled to the temperature measuring host 12 (hereinafter referred to as the host end) is located outside the winding groove 1211, then the host end needs to be wound into the winding groove first before the temperature measuring wire 13 can be wound along the winding groove 1211. Since the host end is blocked by the groove wall of the winding groove 1211 and there is no limit, the temperature measuring wire 13 at the host end can easily slip out of the winding groove 1211, resulting in the failure of the temperature measuring wire 13 to be accommodated. Therefore, please continue to refer to Figure 7 In some embodiments of the present application, the host end is inserted into the wall of the winding groove 1211, so that the host end is located in the winding groove 1211. At this time, the temperature measuring wire 13 can be directly wound around the winding groove 1211. Similarly, the wall of the winding groove 1211 is provided with an outlet for leading out the temperature measuring wire 13, so that the end of the temperature measuring wire 13 coupled to the temperature measuring probe 11 (hereinafter referred to as the probe end) can be led out from the outlet. The probe end will not fall out due to the restriction of the outlet wall, thereby ensuring that the temperature measuring wire 13 will not fall out of the winding groove 1211. When part of the temperature measuring wire 13 is wound in the winding groove 1211, the other part of the temperature measuring wire 13 also leaves the winding groove 1211 along the outlet. The outlet can limit the position of the temperature measuring wire 13, so that the part of the temperature measuring wire 13 wound in the winding groove 1211 will not fall out of the winding groove 1211.
[0083] Under normal circumstances, the subject will only measure body temperature when he is physically uncomfortable, and the cause of physical discomfort may be an external virus. Then, when measuring body temperature, due to the direct contact between the temperature measuring patch 10 and the human body of the subject, there is a high probability that there will be virus attachment. In order to avoid cross infection of viruses between different subjects, the host end is detachable. After the body temperature measurement is completed, the temperature measuring wire 13 can be removed from the temperature measuring host 12, and a new temperature measuring wire 13 and temperature measuring probe 11 can be replaced when measuring body temperature next time, or the temperature measuring wire 13 and temperature measuring probe 11 after disassembly can be disinfected. It is understandable that the structure of the split type of the temperature measuring probe 11 and the temperature measuring host 12 can greatly reduce the cost of the temperature measuring probe 11, so the temperature measuring probe 11 and the temperature measuring wire 13 can be replaced in time as disposable items, thereby avoiding cross infection between different subjects or when the same subject is measuring body temperature at different times.
[0084] In some embodiments of the present application, Figure 9As shown, one possible structure of the back clamp assembly 122 is that the back clamp assembly 122 includes a back clamp plate 1221, a kneading plate 1222, a connecting shaft 1223, and a torsion spring 1224. First support plates 1226 are provided on both sides of the kneading end of the back clamp plate 1221, facing the temperature measuring host 12. The kneading plate 1222 is arranged circumferentially around the temperature measuring host 12, and second support plates 1225 are provided on both sides of the kneading plate 1222, facing the back clamp, with the first support plates 1226 and the second support plates 1225 on the corresponding sides being in contact with each other. The distance between the outer sides of the two second support plates 1225 can be equal to the distance between the inner sides of the two first support plates 1226, the second support plate 1225 is located on the inner side of the first support plate 1226 on the corresponding side, and the outer side plate of the second support plate 1225 abuts against the inner side plate of the first support plate 1226; the distance between the outer sides of the two first support plates 1226 can be equal to the distance between the inner sides of the two second support plates 1225, the first support plate 1226 is located on the outer side of the second support plate 1225 on the corresponding side, and the inner side plate of the first support plate 1226 abuts against the outer side plate of the second support plate 1225; or the distance between the two first support plates 1226 is equal to the distance between the two second support plates 1225, the inner side plate of one first support plate 1226 is in contact with the outer side plate of the second support plate 1225 on the corresponding side, and the outer side plate of the other first support plate 1226 is in contact with the inner side plate of the second support plate 1225 on the corresponding side. As long as the two groups of first support plates 1226 can be fitted with the second support plates 1225 on the corresponding sides, this embodiment does not make any specific restrictions. The connecting shaft 1223 runs through the fitting of the two groups of first support plates 1226 and the second support plates 1225 to limit the position between the back splint 1221 and the temperature measuring host 12, thereby preventing the back splint 1221 from being separated from the temperature measuring host 12. The torsion spring 1224 is sleeved on the connecting shaft 1223 between the two first support plates 1226 or the two second support plates 1225, and one end of the torsion spring 1224 abuts against the kneading end, and the other end abuts against the kneading plate 1222. At this time, the two ends of the torsion spring 1224 are in a slightly compressed state, and the end of the torsion spring 1224 gives elastic force to the kneading end and the kneading plate 1222, so that the back splint 1221 uses the connecting shaft 1223 as a fulcrum, and the clamping end of the back splint 1221 abuts against the temperature measuring host 12.When the temperature measuring host 12 needs to be clamped on an object such as clothing, the index finger and thumb are respectively located on the side where the kneading plate 1222 and the kneading end are away from each other, and force is applied toward each other, so that the kneading plate 1222 and the meshing end of the back clamping plate 1221 move toward each other, thereby compressing the torsion spring 1224. With the connecting shaft 1223 as the fulcrum, the clamping end of the back clamping plate 1221 moves toward the direction away from the temperature measuring host 12, so that the clamping end of the back clamping assembly 122 opens, and the temperature measuring host 12 is moved to the clothing. The edge of the clothing is clamped in the clamping opening, and the index finger and thumb remove the external force at the same time. The torsion spring 1224 gives the kneading end of the back clamping plate 1221 the power to rotate around the connecting shaft 1223 under the action of its own elastic force, so that the kneading end and the kneading plate 1222 are separated. The clamping end of the back clamping plate 1221 clamps the edge of the clothing between the clamping end and the temperature measuring host 12, thereby realizing that the back clamping assembly 122 clamps the temperature measuring host 12 on the body of the object being measured, with a simple structure and easy operation.
[0085] Please refer to Figure 6 、 Figure 7 and Figure 9 In some embodiments of the present application, the back clamping plate 1221 is a curved surface that curves away from the temperature measuring main unit 12, with the curved surface's turning point contacting the temperature measuring main unit 12. This increases the distance between the two ends of the back clamping plate 1221 and the temperature measuring main unit 12, thereby increasing the distance between the two ends of the torsion spring 1224 at the pinching end. This not only allows the use of a torsion spring 1224 with greater elastic restoring force, but also facilitates user operation to open the clamping jaws. It is understood that if a torsion spring 1224 with equal restoring force is used, when the two ends of the torsion spring 1224 are respectively abutted against two plates that are closer together, the elastic force exerted by the torsion spring 1224 on the two plates will be greater, and the operable compression distance between the two ends of the torsion spring 1224 will also be smaller. This results in a greater clamping force on the back clamping assembly 122, requiring the user to apply greater force to open the clamping jaws of the back clamping assembly 122, which is inconvenient to operate. Furthermore, the curved surface of the back clamping plate 1221 allows the clamping jaws to open wider, making it easier for the temperature measuring main unit 12 to be clamped onto thick winter clothing.
[0086] In order to avoid the temperature of the hand affecting the accuracy of the temperature measured by the temperature probe 11 when taking the temperature probe 11, Figures 6 and 7 As shown, in some embodiments of the present application, multiple operating panels 112 are evenly distributed around the circumference of the temperature probe 11, and the user uses the operating panels 112 to pick up the temperature probe 11. Furthermore, there can be three operating panels 112, with the thumb, index finger, and middle finger corresponding to each operating panel 112 respectively, and applying force toward the temperature probe 11 to the operating panels 112 to form a stable triangular force, which can ensure the stability of the temperature probe 11 during the picking and moving process.
[0087] In order to ensure that the temperature measuring probe 11 does not separate from the temperature measuring host 12 when it is accommodated in the temperature measuring host 12, in some embodiments of the present application, such as Figures 6 and 7 As shown, one of the operating panels 112 can be a clamping plate 113 (112). When the temperature measuring probe 11 is accommodated on the temperature measuring host 12, the clamping plate 113 (112) is clamped on the back clamp assembly 122, which not only fixes the temperature measuring probe 11 on the temperature measuring host 12, but also makes full use of the structure of the temperature measuring probe 11 itself.
[0088] If a receiving groove 12211 for receiving the temperature probe 11 is directly provided on the temperature measuring host 12, the volume of the forehead temperature measuring host will increase, which is not convenient for wearing. However, if there is no receiving groove 12211, although the temperature probe 11 can be fixed on the temperature measuring host 12 by clamping the operating panel 112 on the clamping assembly, the temperature probe 11 will protrude from the peripheral side of the temperature measuring host 12, increasing the volume of the temperature measuring patch 10. Therefore, in some embodiments of the present application, such as Figure 9 As shown, the back clamp 1221 is provided with a probe accommodating groove 12211 and a receiving groove 12212 that pass through the back clamp 1221. The temperature probe 11 can be accommodated in the probe accommodating groove 12211. One end of the receiving groove 12212 passes through the clamping end of the back clamp 1221, and the other end is connected to the receiving groove 12212. The width of the receiving groove 12212 is smaller than the width of the clamping plate 113 (112), and the width of the clamping plate 113 (112) is smaller than the diameter of the temperature probe 11. When the temperature probe 11 is accommodated in the probe accommodating groove 12211, the clamping plate 113 (112) is clamped between the back clamp 1221 and the temperature measuring host 12 on both sides of the receiving groove 12212, so that the temperature probe 11 is fixed in the probe accommodating groove 12211. When the temperature probe 11 is removed from the body of the object being measured, the temperature measuring wire 13 is first wound into the winding groove 1211, and finally the probe end of the temperature measuring wire 13 drives the temperature probe 11 to leave the winding groove 1211 along the outlet. At this time, the back clamp assembly 122 is operated to open the clamping mouth, and the temperature probe 11 is placed on the clamping side of the temperature measuring host 12 and aligned with the probe receiving groove 12211. The clamping mouth of the back clamp assembly 122 is operated to close. Since the width of the receiving groove 12212 is smaller than the width of the clamping plate 113 (112), the parts of the back clamping plate 1221 located on both sides of the receiving groove 12212 clamp the clamping plate 113 (112) on the temperature measuring host 12, thereby completing the accommodation of the temperature probe 11. Since the temperature probe 11 and the temperature measuring host 12 are in an upper and lower stacking arrangement, there is no overlap in the horizontal direction and they are in the smallest size, so that the space occupied by the temperature measuring patch 10 is relatively small, which is convenient for storage and carrying.
[0089] Please continue to refer to Figure 6In some embodiments of the present application, the length of the temperature measuring wire 13 is proportional to the circumference of the winding groove 1211, and the end of the temperature measuring wire 13 connected to the temperature measuring host 12 is passed through the groove wall of the winding groove 1211 at the clamping mouth of the clamping plate 113 (112). When the temperature measuring wire 13 is accommodated in the winding groove 1211, the temperature measuring probe 11 at the probe end of the temperature measuring wire 13 can be aligned with the clamping mouth end of the back clamping plate 1221, so that the temperature measuring probe 11 can be accommodated in the probe accommodating groove 12211. The end of the temperature measuring wire 13 connected to the temperature measuring probe 11 is located in the center of the clamping plate 113 (112), so that when the temperature measuring probe 11 is accommodated in the probe accommodating groove 12211, the clamping plate 113 (112) can be clamped on the temperature measuring host 12 by the back clamping plate 1221.
[0090] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A charging device, characterized in that: include: A charging box body having a universal charging interface, through which a mobile electronic device can be coupled to the charging box body for charging; The temperature measuring patch is detachably arranged in the charging box body, and the charging box body can charge the temperature measuring patch and obtain the current power level of the temperature measuring patch; when the temperature measuring patch is in use, it can obtain body temperature by adhering to human skin. The temperature measuring patch is communicatively connected to the charging box body, and the charging box body can obtain the body temperature.
2. The charging device according to claim 1, characterized in that The charging box body has two opposite sides, one of which is provided with a charging slot capable of accommodating the temperature measuring sticker and at least one display unit, and the display unit is used to display the temperature measured by the temperature measuring sticker or the current remaining power of the charging box body.
3. The charging device according to claim 2, characterized in that: The display unit has one for displaying the temperature measured by the temperature measuring sticker; or There are two display units, one of which is a power display unit for displaying the remaining power of the charging box or the temperature measuring sticker, and the other is a temperature display unit for displaying the temperature measured by the temperature measuring sticker.
4. The charging device according to claim 3, characterized in that: When the temperature measuring patch is in the charging compartment, the power display unit displays the remaining power of the charging box; When the temperature measuring patch is measuring temperature, the power display unit displays the remaining power of the temperature measuring patch.
5. The charging device according to claim 2, characterized in that: A first positioning structure is provided on the inner groove wall of the charging accommodating groove in the circumferential direction, and a second positioning structure is provided on the temperature measuring sticker. The first positioning structure cooperates with the second positioning structure to limit the accommodating position of the temperature measuring sticker.
6. The charging device according to claim 2, characterized in that: A plurality of first fixing structures are provided at intervals on the inner groove wall of the charging groove in the circumferential direction, and a second fixing structure is provided on the circumference of the temperature measuring patch to cooperate with the first fixing structure. The first fixing structure and the second fixing structure can be locked or separated with each other to lock the temperature measuring patch in the charging groove or unlock it from the charging groove.
7. The charging device according to any one of claims 2 to 6, characterized in that: The charging box body has a charging accommodating groove with an opening facing upward, and the bottom of the charging accommodating groove has a plurality of charging contacts; The temperature measuring patch is accommodated in the charging accommodating slot and is electrically connected to the charging contact.
8. The charging device according to claim 7, characterized in that: The charging device further includes: The cover body is pivotally connected to the charging box body and can at least cover the top of the charging accommodating groove to open or close the opening.
9. The charging device according to claim 8, characterized in that: The cover is made of transparent material.
10. The charging device according to any one of claims 1 to 6, characterized in that: The temperature measuring patch includes: A temperature measuring probe, a temperature measuring host, and a temperature measuring wire having one end coupled to the temperature measuring probe and the other end coupled to the temperature measuring host; in: The temperature measuring probe is detachably accommodated on the temperature measuring host, and the temperature measuring probe is used to fit the object to be measured to measure the body temperature of the object; The temperature measuring host transmits electrical energy to the temperature measuring probe through the temperature measuring line and obtains the body temperature; The temperature measuring host is communicatively connected to the display unit and can transmit the body temperature to the display unit; A back clip assembly is provided on one side of the temperature measuring host to clamp the temperature measuring host on the body of the measured object.
11. The charging device according to claim 10, characterized in that: A winding groove is provided on the circumference of the temperature measuring host, and the temperature measuring wire can be wound in the winding groove to change the length of the temperature measuring wire or accommodate the temperature measuring wire.
12. The charging device according to claim 11, characterized in that: The end portion of the temperature measuring wire coupled to the temperature measuring host is detachably inserted into the groove wall of the winding groove.
13. The charging device according to claim 11, characterized in that The back clip assembly includes: A back splint, with first support plates on both sides of the kneading end of the back splint facing the temperature measuring host; A kneading plate is arranged on the circumference of the temperature measuring host, and a second support plate is provided on both sides of the kneading plate facing the back clamp, and the first support plate and the second support plate on the corresponding side are in contact with each other; a connecting shaft, passing through the joints between the two sets of the first support plates and the second support plates; and A torsion spring is sleeved on the connecting shaft between the two first support plates or the two second support plates, and one end of the torsion spring abuts against the kneading end, and the other end abuts against the kneading plate.
14. The charging device according to claim 13, characterized in that: A plurality of operation panels are evenly distributed around the circumference of the temperature measuring probe, and the operation panels are used for users to take the temperature measuring probe.
15. The charging device according to claim 14, characterized in that: One of the operating panels may also be a clamping plate. When the temperature measuring probe is accommodated on the temperature measuring host, the clamping plate is clamped on the back clamp assembly.
16. The charging device according to claim 15, characterized in that The back splint is provided with a probe accommodating groove and a receiving groove, one end of the receiving groove passes through the clamping end of the back splint, and the other end is communicated with the receiving groove; The width of the receiving groove is smaller than the width of the clamping plate, and the width of the clamping plate is smaller than the diameter of the temperature measuring probe; When the temperature measuring probe is accommodated in the probe accommodating groove, the clamping plate is clamped between the back clamping plate and the temperature measuring host on both sides of the accommodating groove.
17. The charging device according to claim 13, characterized in that The back clamping plate is an arc surface that is bent in a direction away from the temperature measuring host, and the turning point of the arc surface is in contact with the temperature measuring host.
18. The charging device according to claim 15, characterized in that The length of the temperature measuring wire is proportional to the circumference of the winding groove; The end of the temperature measuring wire connected to the temperature measuring host is passed through the groove wall of the winding groove at the clamping opening of the clamping plate, and the end of the temperature measuring wire connected to the temperature measuring probe is located in the center of the clamping plate.