A wireless probe thermometer with wireless charging
The wireless charging system for temperature probes addresses contact deterioration by using aligned charging coils and a sliding design with secure locking mechanisms, enhancing efficiency and extending the device's lifespan.
Patent Information
- Application Number
- CN202510543908.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-04-28
AI Technical Summary
The problem of low charging efficiency due to poor metal contact during long-term use of traditional wireless temperature probes.
By adopting wireless charging, by setting probe placement components and batteries in the charging box, using the corresponding settings of the first and second charging coils, we ensure that the wireless probe thermometer is automatically aligned to charge when inserted, and through the elastic switch and movable sleeve design, we avoid mechanical wear and poor contact.
Improves charging efficiency, reduces wear and poor contact problems, extends the service life of the equipment, and improves convenience and safety of use.
Smart Images

Figure CN120063507B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of wireless charging, and in particular to a wireless probe thermometer with wireless charging. Background Art
[0002] Wireless temperature probes are widely used in medical and industrial testing, especially in situations where real-time monitoring of temperature changes is required. Traditional wireless temperature probes usually use metal contacts for charging. Although this method is low-cost and easy to implement, it has many problems in long-term use. With the development of technology, wireless charging has gradually attracted attention as an emerging charging method. It not only improves the reliability and service life of the equipment, but also simplifies the design and manufacturing process of the equipment.
[0003] A related wireless temperature probe is charged by directly contacting the metal contacts, that is, charging can be achieved by touching the wireless temperature probe with the metal contacts.
[0004] However, when the usage time is long and the usage frequency is high, the metal contacts may have poor contact, resulting in low charging efficiency. Summary of the invention
[0005] In order to reduce the problem of poor contact and low charging efficiency caused by metal electric shock, the present application provides a wireless probe thermometer with wireless charging.
[0006] The present application provides a wireless probe thermometer with wireless charging, which adopts the following technical solution:
[0007] A wireless probe thermometer with wireless charging, comprising:
[0008] Charging box;
[0009] A probe placement component, wherein the probe placement component is fixedly disposed in the charging box;
[0010] A battery, the battery is fixedly arranged in the charging box, and the battery is electrically connected to the probe placement component
[0011] A wireless probe thermometer, wherein the wireless probe thermometer is slidably disposed in the probe placement assembly;
[0012] a first charging coil, wherein the first charging coil is fixedly disposed on the probe placement assembly;
[0013] The second charging coil is fixedly arranged at one end of the wireless probe thermometer, and the positions of the first charging coil and the second charging coil are arranged correspondingly.
[0014] By adopting the above technical solutions, the probe placement component and the battery in the charging case ensure the stable power supply of the entire device. The positions of the first charging coil and the second charging coil are correspondingly set, so that the wireless probe thermometer can be automatically aligned and start charging when inserted into the probe placement component, improving the charging efficiency. The wireless probe thermometer is slidably arranged in the probe placement component, facilitating the user to quickly insert and remove it, enhancing the convenience of use. Thereby, the wear and poor contact problems caused by traditional metal contacts are reduced, and the service life of the device is extended.
[0015] Optionally, the probe placement component includes:
[0016] An elastic switch member, which is fixedly arranged at one end of the charging case far from the first charging coil;
[0017] Probe sleeves, which are fixedly arranged in the charging case. There are two probe sleeves, and the two probe sleeves are arranged in parallel;
[0018] A movable sleeve, which is slidably arranged at one end of the probe sleeve far from the first charging coil through a sliding member, and the movable sleeve corresponds to the probe sleeve one by one.
[0019] By adopting the above technical solutions, the probe placement component includes an elastic switch member, two parallel probe sleeves and a movable sleeve. This design can ensure that the wireless probe thermometer is more smooth during the insertion and removal process, avoiding the problem of poor contact caused by mechanical wear. At the same time, the elastic switch member can be automatically locked after the probe is fully inserted, improving the safety and stability of the device and extending the service life.
[0020] Optionally, the elastic switch member includes:
[0021] A fixed block, which is fixedly arranged at one end of the charging case far from the first charging coil, and a moving cavity is horizontally arranged in the fixed block;
[0022] A moving plate, which is fixedly connected to one end of the movable sleeve close to the fixed block. The moving plate slides in the moving cavity, and an installation groove is horizontally arranged on the moving plate;
[0023] A clamping plate, which is fixedly arranged at one end of the fixed block close to the moving plate;
[0024] A first spring, one end of which is fixedly arranged at the bottom of the moving cavity, and the other end of the spring is fixedly arranged at the end of the moving plate far from the movable sleeve;
[0025] A guide plate, which is fixedly arranged at the bottom of the installation groove, and one side of the guide plate is fixedly connected to the side wall of the installation groove;
[0026] A matching plate, which is fixedly arranged at the bottom of the installation groove, and there is an inclined gap between the matching plate and the guide plate;
[0027] A guide post, which is fixedly arranged at one end of the installation groove close to the movable sleeve;
[0028] A clamping post, one end of which is fixedly arranged on the fixed block;
[0029] Wherein, a clamping groove is arranged at one end of the matching plate close to the guide post, and the end of the clamping post far from the fixed block is embedded in the clamping groove.
[0030] By adopting the above technical solution, through the fixed connection and sliding cooperation of components such as the fixed block, the moving plate, and the clamping plate, the stable installation of the switch part in the charging box is ensured. The sliding arrangement of the moving plate in the moving cavity makes the connection between the movable sleeve and the fixed block more flexible and stable. The setting of the first spring enables the moving plate to automatically return to the initial position when no external force acts. The operation process is simplified, and the user experience is also improved. When an external force (such as the movement of the movable sleeve) acts on the moving plate, the moving plate will compress the spring and move. Once the external force disappears, the elastic force of the spring will make the moving plate automatically return to its original position. The coordinated action of components such as the guide plate, the matching plate, the guide post, and the clamping post realizes the precise control of the switch state. Especially the inclined gap between the matching plate and the guide plate and the cooperation between the clamping post and the clamping groove enable the clamping post to smoothly enter or exit the clamping groove under specific conditions (such as when the movable sleeve moves to a certain position), thereby changing the switch state.
[0031] Optionally, a sliding groove is horizontally arranged at one end of the probe sleeve far from the first charging coil, the sliding part is a key shaft, the key shaft is fixedly arranged on the periphery of the movable sleeve, and the key shaft is slidably arranged in the sliding groove.
[0032] By adopting the above technical solution, a sliding groove is horizontally arranged at one end of the probe sleeve far from the first charging coil, the sliding part is a key shaft, the key shaft is fixedly arranged on the periphery of the movable sleeve, and the key shaft is slidably arranged in the sliding groove. This design enables the movable sleeve to slide stably in the probe sleeve, thereby ensuring the smoothness of the wireless probe thermometer during insertion and extraction, avoiding the misalignment between the first charging coil and the second charging coil caused by the looseness of the movable sleeve, and improving the charging efficiency.
[0033] Optionally, it further includes a charging display part. A display groove is arranged on one side of the charging box, and the charging display part includes:
[0034] The PCBA main board is fixedly arranged at the upper end of the probe sleeve;
[0035] The tactile button is fixedly arranged at the upper end of the PCBA main board.
[0036] The connection button is slidably arranged in the display slot, and the connection button abuts against the tactile button;
[0037] The second spring, one end of the second spring is fixedly arranged on the periphery of the tactile button, and the other end of the second spring is fixedly arranged at the bottom of the connection button;
[0038] The light aperture is sleeved on the periphery of the connection button through the clamping block;
[0039] The LED lamp is fixedly arranged at the upper end of the PCBA main board, and a plurality of LED lamps are axially spaced;
[0040] Wherein, the connection button is fixedly connected with the elastic switch part through the fitting part.
[0041] By adopting the above technical scheme, the PCBA main board serves as the control core to ensure the normal operation of each component. The combined use of the tactile button and the connection button enables the user to trigger the tactile button by pressing the connection button, thereby realizing the query of the charging status. The function of the second spring is to reset the connection button to ensure stable recovery after each press. The combined design of the light aperture and the LED lamp can intuitively prompt the user about the current charging situation; the setting of the fitting part enables the movement of the wireless probe temperature measuring instrument to control the display of the light ring.
[0042] Optionally, the PCBA main board is vertically provided with a through slot, and the fitting part includes:
[0043] The fitting rod, one end of the fitting rod passes through the through slot and is fixedly arranged on the periphery of the connection button, and the other end of the fitting rod is fixedly connected with one of the movable sleeves. A moving slot is arranged on the periphery of the fitting rod;
[0044] The first push rod, one end of the first push rod is fixedly arranged at one end of the other movable sleeve, and the other end of the first push rod is slidably arranged in the moving slot.
[0045] By adopting the above technical solution, the cooperation rod passes through the through slot on the PCBA main board and is fixedly connected to the connection button and a movable sleeve, ensuring the stability of the connection structure. The design of the moving slot enables the first push rod to slide therein, thereby realizing the linkage between the two movable sleeves and ensuring the smoothness and stability when the wireless probe thermometer is inserted or removed. This not only improves the operation convenience of the device but also enhances the overall stability of the system, avoiding the problem of poor charging caused by position deviation.
[0046] Optionally, a limiting plate is arranged inside the movable sleeve. One end of the limiting plate is fixedly arranged on the inner side wall of the movable sleeve, and the other side of the limiting plate contacts one end of the wireless probe thermometer.
[0047] By adopting the above technical solution, the limiting plate can effectively prevent the wireless probe thermometer from sliding excessively or falling off inside the movable sleeve, ensuring the stability and safety of the probe. At the same time, the design of the limiting plate can also ensure the precise alignment between the first charging coil and the second charging coil, improving the charging efficiency.
[0048] Optionally, a ceramic handle is welded to one end of the wireless probe thermometer close to the second charging coil.
[0049] By adopting the above technical solution, a ceramic handle is welded to one end of the wireless probe thermometer close to the second charging coil. Since the ceramic material has good insulation performance and high-temperature resistance characteristics, it can effectively prevent the risk of electric shock to the user during the operation process and can maintain a stable working state in a high-temperature environment. At the same time, the ceramic handle also has good mechanical strength and wear resistance, extending the service life of the probe thermometer.
[0050] In summary, the embodiments of the present invention provide a wireless probe thermometer with wireless charging, including at least one of the following beneficial technical effects:
[0051] 1. Through the fixed connection and sliding cooperation of components such as the fixed block, the moving plate, and the clamping plate, the stable installation of the switch member in the charging box is ensured. The sliding setting of the moving plate in the moving cavity makes the connection between the movable sleeve and the fixed block more flexible and stable. The setting of the first spring enables the moving plate to automatically return to the initial position when no external force acts. This simplifies the operation process and also improves the user experience. When an external force (such as the movement of the movable sleeve) acts on the moving plate, the moving plate will compress the spring and move. Once the external force disappears, the elastic force of the spring will make the moving plate automatically return to its original position. The coordinated action of components such as the guiding plate, the mating plate, the guiding column, and the clamping column realizes the precise control of the switch state. Especially the inclined gap between the mating plate and the guiding plate and the cooperation between the clamping column and the clamping groove enable the clamping column to smoothly enter or exit the clamping groove under specific conditions (such as when the movable sleeve moves to a certain position), thereby changing the switch state.
[0052] 2. The probe placement component and the battery inside the charging case ensure the stable power supply of the entire device. The positions of the first charging coil and the second charging coil are correspondingly set, so that when the wireless probe thermometer is inserted into the probe placement component, it can be automatically aligned and start charging, improving the charging efficiency. The wireless probe thermometer is slidably arranged in the probe placement component, facilitating the user to quickly insert and remove, enhancing the convenience of use. Thus, it reduces the wear and poor contact problems caused by traditional metal contacts and extends the service life of the device. Description of the Drawings
[0053] Figure 1 It is a schematic structural diagram of a wireless probe thermometer with wireless charging provided by an embodiment of the present invention;
[0054] Figure 2 It is a cross-sectional view of the probe placement component in a wireless probe thermometer with wireless charging provided by an embodiment of the present invention;
[0055] Figure 3 For Figure 2 the enlarged view of part A in
[0056] Figure 4 It is a cross-sectional view of the ceramic handle in a wireless probe thermometer with wireless charging provided by an embodiment of the present invention;
[0057] Figure 5 It is a schematic structural diagram of a wireless probe thermometer with wireless charging provided by an embodiment of the present invention;
[0058] Figure 6 It is a cross-sectional view of the charging display component in a wireless probe thermometer with wireless charging provided by an embodiment of the present invention;
[0059] Figure 7 It is an exploded view of a wireless probe thermometer with wireless charging provided by an embodiment of the present invention.
[0060] Explanation of the reference numerals in the figures:
[0061] Charging case; 11. Battery; 12. Wireless probe thermometer; 13. First charging coil; 14. Second charging coil; 21. Probe sleeve; 22. Movable sleeve; 231. Fixed block; 232. Moving plate; 233. Clamping plate; 234. First spring; 235. Guide plate; 236. Fitting plate; 237. Guide post; 238. Clamping post; 24. Clamping groove; 25. Installation groove; 26. Moving cavity; 27. Tilt gap; 31. Key shaft; 32. Slide groove; 41. PCBA main board; 42. Tactile button; 43. Connecting button; 44. Second spring; 45. Aperture; 46. LED lamp; 51. Fitting rod; 52. First push rod; 53. Moving groove; 54. Penetration groove; 61. Limiting plate; 62. Ceramic handle. Detailed implementation mode
[0062] The following will Figure 1-7 make a further detailed description of this application.
[0063] Combined with Figure 1 , Figure 2 and Figure 3 , an embodiment of this application discloses a wireless probe thermometer 12 for wireless charging, including: a charging case 1, a probe placement assembly, a battery 11, a wireless probe thermometer 12, a first charging coil 13, and a second charging coil 14. The probe placement assembly is fixedly arranged in the charging case 1; the battery 11 is fixedly arranged in the charging case 1, the battery 11 is electrically connected to the probe placement assembly, and the wireless probe thermometer 12 is slidably arranged in the probe placement assembly; the first charging coil 13 is fixedly arranged on the probe placement assembly; the second charging coil is fixedly arranged at one end of the wireless probe thermometer 12, and the positions of the first charging coil 13 and the second charging coil 14 are correspondingly arranged.
[0064] In the embodiment of the present application, the charging case 1 is rectangular. The charging case 1 is formed by buckling two shells. The material of the charging case 1 can be plastic or metal, which is specifically set according to the usage situation. The battery 11 can be a lithium battery 11, a nickel-metal hydride battery 11, a lead-acid battery 11, or a nickel-zinc battery 11, which is specifically set according to the usage situation. The first charging coil 13 is wound around the probe placement assembly, and the second charging coil 14 is wound around the periphery of the wireless probe temperature measuring instrument 12. When the wireless probe temperature measuring instrument 12 is placed in the probe placement assembly, the first charging coil 13 and the second charging coil 14 are sleeved with each other. That is, when charging is required, the first charging coil 13 is electrically connected to the battery 11. When the power is turned on, the first charging coil 13 will generate high-frequency electric energy, and then generate a changing magnetic field. Since the second charging coil 14 is sleeved with the first charging coil 13, the second charging coil 14 will be in the magnetic field of the first charging coil 13 and will sense the change of the magnetic field, thereby generating an induced current. According to Faraday's law of electromagnetic induction, a changing magnetic field will generate an induced electromotive force in the receiving coil, and then generate an induced current. This induced current is used to power the wireless probe temperature measuring instrument 12.
[0065] Combined with Figure 3 , Figure 4 and Figure 5 , in a specific embodiment of the application, the probe placement assembly includes an elastic switch member, a probe sleeve 21, and a movable sleeve 22. The elastic switch member is fixedly arranged at one end of the charging case 1 away from the first charging coil 13; the probe sleeve 21 is fixedly arranged in the charging case 1, and there are two probe sleeves 21, and the two probe sleeves 21 are arranged in parallel; the movable sleeve 22 is slidably arranged at one end of the probe sleeve 21 away from the first charging coil 13 through a sliding member, and the movable sleeve 22 is arranged in one-to-one correspondence with the probe sleeve 21.
[0066] Specifically, the elastic switch member includes a fixed block 231, a moving plate 232, a clamping plate 233, a first spring 234, a guiding plate 235, a mating plate 236, a guiding post 237, and a clamping post 238. The fixed block 231 is fixedly arranged at one end of the charging case 1 away from the first charging coil 13. A moving cavity 26 is horizontally arranged in the fixed block 231. The moving plate 232 is fixedly connected to one end of the movable sleeve 22 close to the fixed block 231. The moving plate 232 slides in the moving cavity 26. An installation groove 25 is horizontally arranged on the moving plate 232. The clamping plate 233 is fixedly arranged at one end of the fixed block 231 close to the moving plate 232. One end of the first spring 234 is fixedly arranged at the bottom of the moving cavity 26, and the other end of the spring is fixedly arranged at the end of the moving plate 232 away from the movable sleeve 22. The guiding plate 235 is fixedly arranged at the bottom of the installation groove 25, and one side of the guiding plate 235 is fixedly connected to the side wall of the installation groove 25. The mating plate 236 is fixedly arranged at the bottom of the installation groove 25, and there is an inclined gap 27 between the mating plate 236 and the guiding plate 235. The guiding post 237 is fixedly arranged at one end of the installation groove 25 close to the movable sleeve 22. One end of the clamping post 238 is fixedly arranged at the fixed block 231. Wherein, a clamping groove 24 is arranged at one end of the mating plate 236 close to the guiding post 237, and the end of the clamping post 238 away from the fixed block 231 is embedded in the clamping groove 24.
[0067] In the embodiment of the present application, both the probe sleeve 21 and the movable sleeve 22 are arranged in a cylindrical shape. The movable sleeve 22 is slidably arranged in the probe sleeve 21 through a key shaft 31, that is, the probe sleeve 21 can be used to push the movable sleeve 22 to slide under the action of the wireless probe temperature measuring instrument 12. The fixed block 231 is fixedly arranged at one end of the charging case 1 away from the first charging coil 13 through bolts, screws or other fasteners. The moving plate 232 is fixedly connected to one end of the movable sleeve 22 close to the fixed block 231 by welding, bolt connection or integral molding. The clamping plate 233 is made of an elastic material, that is, when the movable sleeve 22 moves, it will push the moving block, that is, the clamping plate 233 limits the moving block. One end of the first spring 234 is fixedly arranged at the bottom of the moving cavity 26, and the other end is fixedly arranged at the end of the moving plate 232 away from the movable sleeve 22 to provide an elastic restoring force. Both the guiding plate 235 and the mating plate 236 can be integrally formed, or fixed in the installation groove 25 by welding or bolting. The length of the guiding post 237 is set according to specific use conditions, and it is sufficient to fix the moving plate 232.
[0068] During specific use, when the wireless probe thermometer 12 is inserted into the movable sleeve 22 through the probe sleeve 21, when the wireless probe thermometer 12 pushes the movable probe to move, during the movement of the movable probe, the moving plate 232 is clamped by the clamping plate 233. At the same time, the moving plate 232 moves in the moving cavity 26, compressing the first spring 234. Under the action of the guide plate 235 and the mating plate 236, the clamping post 238 moves to the upper end of the mating plate 236. Furthermore, due to the arrangement of the guide post 237, when the clamping post 238 moves, it drives the clamping post 238 to move closer to the clamping groove 24, that is, the clamping post 238 is inserted into the clamping groove 24, thus realizing the fixation of the moving plate 232, that is, the wireless probe thermometer 12 is fixed in the probe sleeve 21. When the probe sleeve 21 needs to be pulled out, push the probe sleeve 21 in the direction of the fixed block 231. The probe sleeve 21 pushes the moving plate 232 to move. That is, the arrangement of the guide post 237 causes the clamping block to disengage from the clamping groove 24. That is, the moving plate 232 returns to its original state under the elastic action of the first spring 234, enabling the probe sleeve 21 to push the wireless probe thermometer 12 out of the charging box 1, facilitating the pulling out of the wireless probe thermometer 12.
[0069] Combined with Figure 6 , in a specific application embodiment, it further includes a charging display member. A display groove is provided on one side of the charging box 1. The charging display member includes a PCBA main board 41, a touch button 42, a connection button 43, a second spring 44, an aperture 45, and an LED lamp 46. The PCBA main board 41 is fixedly arranged at the upper end of the probe sleeve 21; the touch button 42 is fixedly arranged at the upper end of the PCBA main board 41; the connection button 43 is slidably arranged in the display groove, and the connection button 43 abuts against the touch button 42; one end of the second spring 44 is fixedly arranged on the periphery of the touch button 42, and the other end of the second spring 44 is fixedly arranged at the bottom of the connection button 43; the aperture 45 is sleeved on the periphery of the connection button 43 through a clamping block; the LED lamp 46 is fixedly arranged at the upper end of the PCBA main board 41, and a plurality of LED lamps 46 are axially spaced; wherein, the connection button 43 is fixedly connected with an elastic switch member through a fitting member.
[0070] In the embodiment of the present application, the display groove is arranged in a circular ring shape. The touch button 42 and the connection button 43 are both arranged in a cylindrical shape. The aperture 45 is also arranged in a cylindrical shape, and the aperture 45 is sleeved on the outer periphery of the connection button 43. When the connection button 43 moves, the aperture 45 will also move along with it. It should be noted that when the connection button 43 moves to the bottom end, the connection button 43 abuts against the touch button 42. Since the touch button 42 is on the PCBA main board 41, when the connection button 43 moves to the bottom end, the aperture 45 contacts the LED lamp 46, and the aperture 45 lights up, thereby being used to display the charging state of the wireless probe thermometer 12.
[0071] Combined with Figure 7, the PCBA main board 41 is vertically provided with a through slot 54. The fitting includes a fitting rod 51 and a first push rod 52. One end of the fitting rod 51 passes through the through slot 54 and is fixedly arranged on the periphery of the connection button 43, and the other end of the fitting rod 51 is fixedly connected to one of the movable sleeves 22. A moving slot 53 is arranged on the periphery of the fitting rod 51; one end of the first push rod 52 is fixedly arranged at one end of the other movable sleeve 22, and the other end of the first push rod 52 is slidably arranged in the moving slot 53.
[0072] In the embodiment of the present application, the fitting rod 51 can be cylindrical or rectangular, as long as it can be connected to the connection button 43 and the movable sleeve 22. The moving slot 53 is rectangularly arranged, and the moving slot 53 allows the first push rod 52 to slide.
[0073] During specific use, one of the wireless probe thermometers 12 is placed into the movable sleeve 22. The movable sleeve 22 will push the moving plate 232 to move, and then the moving plate 232 drives the first push rod 52 to move. Since the first push rod 52 is slidably arranged in the moving slot 53, when the moving plate 232 moves, the moving plate 232 drives the first push rod 52 to slide in the moving slot 53. When the other wireless probe thermometer 12 is placed into the other movable sleeve 22, the movable sleeve 22 will push the corresponding moving plate 232 to move, and then the moving plate 232 drives the fitting rod 51 to move. Since the fitting rod 51 is fixedly connected to the movable sleeve 22, when the moving plate 232 drives the fitting rod 51 to move, the fitting rod 51 drives the movable sleeve 22 to move towards the end close to the touch button 42, so that the touch button 42 on the PCBA main board 41 is opened, that is, the LED lamp 46 contacts the aperture 45, and the aperture 45 lights up under the action of the LED lamp 46, thereby indicating that the wireless probe thermometer 12 is in a charging state. When the wireless probe thermometer 12 is pulled out from the probe sleeve 21, the first push rod 52 and the fitting rod 51 return to their original positions, so that the aperture 45 is disconnected from the LED lamp 46, and the aperture 45 does not light up, thereby indicating that the wireless probe thermometer 12 is not in a charging state.
[0074] Combined with Figure 7 , in a specific embodiment of the application, a limiting plate 61 is arranged inside the movable sleeve 22. One end of the limiting plate 61 is fixedly arranged on the inner side wall of the movable sleeve 22, and the other side of the limiting plate 61 contacts one end of the wireless probe thermometer 12. A ceramic handle 62 is welded to one end of the wireless probe thermometer 12 close to the second charging coil 14.
[0075] In the embodiment of the present application, the limiting plate 61 is arranged in an arc shape, that is, the radian of the limiting plate 61 is consistent with the tip of the wireless probe thermometer 12. When the wireless probe thermometer 12 enters the movable sleeve 22, the position of the wireless probe thermometer 12 can be restricted to prevent it from shaking when entering the movable sleeve 22, which affects the charging efficiency. The setting of the ceramic handle 62 can effectively prevent the risk of electric shock to the user during the operation process and can maintain a stable working state in a high-temperature environment. At the same time, the ceramic handle 62 also has good mechanical strength and wear resistance, extending the service life of the probe thermometer.
[0076] The implementation principle of the embodiment of the present application is as follows: When the wireless probe thermometer 12 is placed into the movable sleeve 22 through the probe sleeve 21, when the wireless probe thermometer 12 pushes the movable probe to move, during the movement of the movable probe, the moving plate 232 is clamped by the clamping plate 233. At the same time, the moving plate 232 moves in the moving cavity 26, compressing the first spring 234. Under the action of the guiding plate 235 and the mating plate 236, the clamping post 238 moves to the upper end of the mating plate 236. Furthermore, due to the setting of the guiding post 237, when the clamping post 238 moves, it drives the clamping post 238 to move closer to the clamping groove 24, that is, the clamping post 238 is embedded into the clamping groove 24, realizing the fixation of the moving plate 232, that is, the wireless probe thermometer 12 is fixed in the probe sleeve 21. When the probe sleeve 21 needs to be pulled out, push the probe sleeve 21 in the direction of the fixed block 231. The probe sleeve 21 pushes the moving plate 232 to move. That is, the setting of the guiding post 237 causes the clamping block to disengage from the clamping groove 24. That is, the moving plate 232 returns to its original state under the elastic action of the first spring 234, enabling the probe sleeve 21 to push the wireless probe thermometer 12 out of the charging box 1, facilitating the removal of the wireless probe thermometer 12.
[0077] This specific embodiment is only an interpretation of the present application and does not limit the present application. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as it is within the scope of the claims of the present application, it is protected by the patent law.
Claims
1. A wireless probe thermometer for wireless charging, characterized in that, Comprising: A charging case (1); A probe placement assembly fixedly arranged inside the charging case (1); A battery (11) fixedly arranged inside the charging case (1), and the battery (11) is electrically connected to the probe placement assembly; A wireless probe thermometer (12) slidably arranged inside the probe placement assembly; A first charging coil (13) fixedly arranged on the probe placement assembly; A second charging coil (14) fixedly arranged at one end of the wireless probe thermometer (12), and the positions of the first charging coil (13) and the second charging coil (14) are correspondingly arranged; The probe placement assembly includes: An elastic switch member fixedly arranged at one end of the charging case (1) far from the first charging coil (13); Probe sleeves (21) fixedly arranged inside the charging case (1), there are two probe sleeves (21), and the two probe sleeves (21) are arranged in parallel; A movable sleeve (22) slidably arranged at one end of the probe sleeve (21) far from the first charging coil (13) through a sliding member, and the movable sleeve (22) and the probe sleeve (21) are correspondingly arranged one by one; The elastic switch member includes: A fixed block (231) fixedly arranged at one end of the charging case (1) far from the first charging coil (13), and a moving cavity (26) is horizontally arranged inside the fixed block (231); A moving plate (232) fixedly connected to one end of the movable sleeve (22) close to the fixed block (231), the moving plate (232) slides inside the moving cavity (26), and a mounting groove (25) is horizontally arranged on the moving plate (232); A clamping plate (233) fixedly arranged at one end of the fixed block (231) close to the moving plate (232); A first spring (234) with one end fixedly arranged at the bottom of the moving cavity (26) and the other end of the spring fixedly arranged at one end of the moving plate (232) far from the movable sleeve (22); A guide plate (235) fixedly arranged at the bottom of the mounting groove (25), and one side of the guide plate (235) is fixedly connected to the side wall of the mounting groove (25); A mating plate (236) fixedly arranged at the bottom of the mounting groove (25), and there is an inclined gap (27) between the mating plate (236) and the guide plate (235); A guide post (237) fixedly arranged at one end of the mounting groove (25) close to the movable sleeve (22); A clamping post (238) with one end fixedly arranged on the fixed block (231); Wherein, a clamping groove (24) is provided at one end of the mating plate (236) close to the guiding column (237), and one end of the clamping column (238) away from the fixed block (231) is embedded in the clamping groove (24).
2. The wireless probe thermometer for wireless charging according to claim 1, wherein A sliding groove (32) is horizontally provided at one end of the probe sleeve (21) away from the first charging coil (13). The sliding member is a key shaft (31), and the key shaft (31) is fixedly arranged on the periphery of the movable sleeve (22). The key shaft (31) is slidably arranged in the sliding groove (32).
3. The wireless probe thermometer for wireless charging according to claim 1, characterized in that, It further includes a charging display member. A display groove is provided on one side of the charging box (1). The charging display member includes: A PCBA main board (41), and the PCBA main board (41) is fixedly arranged at the upper end of the probe sleeve (21); A touch key (42), and the touch key (42) is fixedly arranged at the upper end of the PCBA main board (41). A connection key (43), and the connection key (43) is slidably arranged in the display groove. The connection key (43) abuts against the touch key (42). A second spring (44), one end of the second spring (44) is fixedly arranged on the periphery of the touch key (42), and the other end of the second spring (44) is fixedly arranged at the bottom of the connection key (43). An aperture (45), and the aperture (45) is sleeved on the periphery of the connection key (43) through a clamping block; An LED lamp (46), and the LED lamp (46) is fixedly arranged at the upper end of the PCBA main board (41). A plurality of LED lamps (46) are axially spaced apart; Wherein, the connection key (43) is fixedly connected to the elastic switch member through a fitting member.
4. The wireless probe thermometer for wireless charging according to claim 3, characterized in that: A through slot (54) is vertically provided on the PCBA main board (41). The fitting member includes: A fitting rod (51), one end of the fitting rod (51) passes through the through slot (54) and is fixedly arranged on the periphery of the connection key (43), and the other end of the fitting rod (51) is fixedly connected to one of the movable sleeves (22); a moving groove (53) is provided on the periphery of the fitting rod (51). A first push rod (52), one end of the first push rod (52) is fixedly arranged at one end of the other movable sleeve (22), and the other end of the first push rod (52) is slidably arranged in the moving groove (53).
5. A wireless probe thermometer for wireless charging according to claim 1, characterized in that: A limiting plate (61) is arranged inside the movable sleeve (22). One end of the limiting plate (61) is fixedly arranged on the inner side wall of the movable sleeve (22), and the other side of the limiting plate (61) contacts one end of the wireless probe temperature measuring instrument (12).
6. The wireless probe thermometer for wireless charging according to claim 1, wherein: A ceramic handle (62) is welded to one end of the wireless probe temperature measuring instrument (12) close to the second charging coil (14).
Citation Information
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