Physical cooling instrument and thermometer all-in-one machine
By designing a physical cooling meter and a thermometer integrated machine, using magnet connection and wireless temperature transmission technology, the problem of single functions of existing equipment is solved, and convenient integration of physical cooling and body temperature measurement is achieved, meeting the clinical needs of fever patients.
Patent Information
- Application Number
- CN202420713672.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-04-09
AI Technical Summary
The existing physical cooling meter and thermometer have a single function, and it is impossible to easily measure body temperature while physically cooling patients with fever, which cannot meet the needs of clinical medicine for timely understanding of body temperature.
Design a physical cooling meter and thermometer integrated machine to achieve non-integrated magnetic connection through magnet connection, combine Bluetooth chips, MESH chips or infrared devices to achieve wireless transmission of temperature signals, and set up circuit boards and chips on the device to achieve temperature regulation and temperature control functions.
It realizes the integration of physical cooling and intermittent body temperature measurement functions, provides convenient body temperature measurement and temperature display, meets the clinical medical application requirements of fever patients and improves the convenience of use.
Smart Images

Figure CN223169885U_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices for physical cooling and body temperature measurement of febrile patients, and in particular to an integrated physical cooling device and thermometer. Background Art
[0002] Existing physical cooling devices use semiconductor refrigeration technology and are clinically applied solely for physical cooling of febrile patients; existing thermometers use electronic temperature sensing technology, and the method for measuring body temperature is the intermittent body temperature measurement method, such as electronic thermometers using thermistor temperature sensors and forehead thermometers and ear thermometers using infrared temperature sensors, which are clinically applied solely for body temperature measurement of febrile patients.
[0003] From the clinical application functions of existing physical cooling devices and thermometers, it can be seen that their clinical application functions are both single, that is, the physical cooling device is only used for physical cooling of febrile patients; the thermometer is only used for body temperature measurement of febrile patients. However, in the actual clinical application of febrile patients, both physical cooling and body temperature measurement are required. It can be seen that whether it is the existing physical cooling device or the existing thermometer, due to their single clinical application functions, it will bring inconvenience to the clinical use of febrile patients. In addition, from the perspective of clinical medicine, while physically cooling febrile patients, it is more convenient to measure the body temperature of febrile patients in order to timely understand the body temperature of febrile patients, which will better meet the requirements of clinical medicine. Obviously, since the existing physical cooling device and the existing thermometer are used separately and not integrated into one device, it is not practical to conveniently measure the body temperature during the physical cooling process of febrile patients in order to timely understand the body temperature. Summary of the Invention
[0004] The purpose of the present invention is to provide an integrated physical cooling device and thermometer to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] A physical cooling device integrated with a thermometer, characterized by comprising a physical cooling device and a thermometer; the physical cooling device is a semiconductor refrigeration device, including a refrigeration module, a circuit board, a chip, an NTC, a button, a USB Type-C interface, a magnet, a bottom shell, a face shell, a soft rubber plate, a water bag, and a strap. The magnet is embedded in the top of the face shell; the thermometer is an electronic temperature sensing device, and its method of measuring body temperature is the intermittent body temperature measurement method, including a temperature sensing probe, a main control board, a display, a chip, a magnet, a button battery, a button, a buzzer, a bottom cover, a face cover, and a battery cover. The magnet is embedded in the bottom of the bottom cover; the physical cooling device and the thermometer are non-integrally magnetically connected through the magnet on the physical cooling device and the magnet on the thermometer respectively. When the thermometer is installed on the physical cooling device, the display shows the temperature of the physical cooling device. When measuring body temperature, the thermometer is removed and placed on a local part of the human body for body temperature measurement. At this time, the display shows the human body temperature.
[0007] Preferably, the structure of the physical cooling device: the refrigeration module is a combination, including a cold conduction block, a refrigeration sheet, a radiator, a fan, the NTC, and a nut. The cold conduction block is a combination, which is integrally formed by a metal block and plastic injection. On the cold conduction block, there are respectively a through hole for installing the bottom shell, an inlay hole for embedding the nut, a snap groove for installing the soft rubber plate, and a blind hole for installing the NTC. The refrigeration sheet is installed on the cold conduction block, the radiator is installed on the refrigeration sheet, and the fan is installed on the radiator. The fan is a blower fan. The cold conduction block and the radiator are connected by screws. The refrigeration module is installed on the bottom shell; on the circuit board, there are respectively connection devices for connecting the NTC, the refrigeration sheet, and the fan, as well as the chip, a touch switch, and the USB Type-C interface. The touch switch is used for turning on and off the physical cooling device and adjusting the temperature. The USB Type-C interface is used for connecting a DC 5V power supply. The circuit board is installed on the bottom shell; on the bottom shell, there are respectively a square hole and a through hole for inlaying and installing the refrigeration module, screw posts for installing the circuit board and the face shell, and several air inlets for the fan to intake air; on the face shell, there are respectively an air outlet for the fan to exhaust air, a USB Type-C interface socket, the button, and a blind hole for inlaying the magnet. The magnet is used for non-integral magnetic connection between the physical cooling device and the thermometer; the soft rubber plate is a combination, which is integrally formed by a hard plastic frame and soft plastic injection. On the hard plastic frame, there are buckle positions, and the buckle positions are used for snap connection between the soft rubber plate and the refrigeration module; the water bag is a plastic film product pre-filled with water, and there are sleeve belts on its left and right sides, and it is non-integrally sleeved and connected with the soft rubber plate through the sleeve belts; the strap is connected to the soft rubber plate.
[0008] Preferably, a water injection device is provided on the water bag for the user to fill the water bag. The water in the water bag is pure water, and the water bag can be reused.
[0009] Preferably, no water injection device is provided on the water bag. The water in the water bag is not filled by the user himself / herself. The water in the water bag is pure water, and the water bag is for single use.
[0010] Preferably, the structure of the thermometer is as follows: on the main control board, there are respectively wire connection holes connected to the temperature sensing probe and the buzzer, as well as the display, the chip, the touch switch, and the positive and negative electrode plates of the button battery. The touch switch is used for switching between the two working modes of turning the thermometer on and off and physical cooling and body temperature measurement. When the thermometer is installed on the physical cooling device, the display shows the temperature of the physical cooling device. When the thermometer is removed and placed on a local part of the human body, the display shows the local body temperature of the human body. The main control board is installed on the bottom cover; the battery cover is embedded in the bottom cover and is rotatably connected to the bottom cover by buckling; the magnet and the buzzer are respectively embedded in the bottom cover. The magnet is used for non-integrated magnetic connection between the thermometer and the physical cooling device; the bottom cover and the face cover are connected by buckling.
[0011] Preferably, the thermometer adopts the thermistor temperature sensing method. The temperature sensing probe is a thermistor temperature sensor, including NTC and a metal shell. The temperature sensing probe is embedded at the bottom of the thermometer and is in direct contact with the human body. The thermometer is used for placing under the armpit to measure axillary temperature.
[0012] Preferably, the thermometer adopts the thermistor temperature sensing method. The temperature sensing probe is a thermistor temperature sensor, including NTC and a metal shell. The temperature sensing probe is embedded on one side of the thermometer and is in direct contact with the human body. The thermometer is respectively used for placing under the armpit to measure axillary temperature or placing in the mouth to measure oral temperature.
[0013] Preferably, the thermometer adopts the infrared temperature sensing method. The temperature sensing probe is an infrared temperature sensor, including an infrared temperature sensor and a transparent cover. The temperature sensing probe is embedded on one side of the thermometer and is not in direct contact with the human body. The thermometer is used for placing at the ear to measure ear temperature.
[0014] Preferably, the chips on the physical cooling device and the thermometer are both Bluetooth chips. The digital signal of the temperature of the physical cooling device is wirelessly transmitted to the thermometer through the Bluetooth chip and is displayed by the display.
[0015] Preferably, the chips on the physical cooling device and the chips on the thermometer are both MESH chips. The digital temperature signals of the physical cooling device are wirelessly transmitted to the thermometer through the MESH chips and displayed by the display.
[0016] Preferably, the chips on the physical cooling device and the chips on the thermometer are both MCU chips. An infrared transmitter is provided on the physical cooling device and an infrared receiver is provided on the thermometer. Through holes are respectively provided corresponding to the positions of the infrared transmitter and the infrared receiver, so that the digital temperature signals of the physical cooling device are wirelessly transmitted to the thermometer and displayed by the display. The infrared transmitter is installed on a flexible circuit board, and the flexible circuit board is connected to the circuit board on the physical cooling device.
[0017] Preferably, the physical cooling device is connected to an external DC5V power supply and powered by the external DC5V.
[0018] Preferably, the physical cooling device is connected to an internal DC5V polymer lithium battery and powered by the internal DC5V polymer lithium battery.
[0019] Preferably, to facilitate the storage and protection of the integrated physical cooling device and thermometer and prevent it from being contaminated, a plastic packaging box is provided separately. The plastic packaging box includes an upper cover and a lower cover.
[0020] Preferably, the upper cover and the lower cover are connected in a push-pull non-integrated manner.
[0021] Preferably, the upper cover and the lower cover are connected in a flip integrated manner.
[0022] Preferably, the upper cover and the lower cover are connected in a set non-integrated manner.
[0023] The beneficial effects of the present invention are as follows:
[0024] The present invention first uses the physical cooling device and the thermometer respectively, so that the present invention has two major clinical application functions of physical cooling and intermittent body temperature measurement in terms of functions. On this basis, on the one hand, the present invention takes the measure of respectively arranging the magnets on the physical cooling device and the thermometer, and realizes the non-integral connection between the physical cooling device and the thermometer of the present invention through the magnets, which not only achieves the integration of the physical cooling device and the thermometer into one, realizes the integration of the two major clinical application functions of physical cooling and intermittent body temperature measurement on one machine, but also achieves the convenient use effect of allowing the thermometer to be quickly installed and removed from the physical cooling device and measuring the body temperature at any time to understand the body temperature change; on the other hand, the present invention also takes the measure of respectively arranging the Bluetooth chip, or arranging the MESH chip, or arranging the infrared device and the MCU chip on the physical cooling device and the thermometer, so as to transmit the temperature digital signal of the physical cooling device to the thermometer through a wireless transmission method and display it by the display. In addition, the present invention also takes the measure of respectively arranging the circuit board, the chip, the NTC, and the button on the physical cooling device, realizing the functions of temperature adjustment and temperature control.
[0025] Obviously, the present invention combines the physical cooling device and the thermometer into one, which is equivalent to integrating the two major clinical application functions of physical cooling and intermittent body temperature measurement on one machine. Compared with the existing physical cooling device and the existing thermometer that only have the functions of simple physical cooling and simple intermittent body temperature measurement, the present invention will more meet the clinical application requirements of fever patients and also bring great convenience to fever patients. Brief Description of the Drawings
[0026] Figure 1 are the explosion structure schematic diagrams of the present invention.
[0027] Figure 2 are the explosion structure schematic diagrams of the physical cooling device 1 of the present invention.
[0028] Figure 3 are the explosion structure schematic diagrams of the refrigeration module 1-2 of the present invention.
[0029] Figure 4 are the explosion structure schematic diagrams of the heat conduction block 1-2-1 of the present invention.
[0030] Figure 5 are the three-dimensional structure schematic diagrams of the other side surface 1-2-1 of the surface shell of the present invention.
[0031] Figure 6 are the explosion structure schematic diagrams of the soft rubber plate 1-2-1 of the present invention.
[0032] Figure 7 are the three-dimensional structure schematic diagrams of the second embodiment of the water bag 1-11 of the present invention.
[0033] Figure 8 is a schematic diagram of the explosion structure of the thermometer 2-1 according to the present invention.
[0034] Figure 9 is a three-dimensional schematic diagram of the back of the main control board 2-1 according to the present invention.
[0035] Figure 10 is a schematic diagram of the explosion structure of the second embodiment of the thermometer 2-1 according to the present invention.
[0036] Figure 11 is a schematic diagram of the explosion structure of the third embodiment of the thermometer 1-11 according to the present invention.
[0037] Figure 12 is a schematic diagram of the explosion structure of the second embodiment of the plastic packaging box 3-1 according to the present invention.
[0038] Figure 13 is a schematic diagram of the explosion structure of the third embodiment of the plastic packaging box 3-2 according to the present invention.
[0039] In the figure, 1. Physical cooling device, 1-1. Water bag, 1-1-1. Strapping, 1-1-2. Water injection device, 1-2. Binding strap, 1-3. Soft rubber plate, 1-3-1. Soft plastic, 1-3-2. Rigid plastic frame, 1-3-2-1. Buckling position, 1-4. Bottom shell, 1-4-1. Screw post, 1-4-2. Screw post, 1-4-3. Air inlet, 1-4-4. Through hole, 1-4-5. Square hole, 1-5. Refrigeration module, 1-5-1. Nut, 1-5-2. Heat conduction block, 1-5-2-1. Inlay hole, 1-5-2-2. Buckle groove, 1-5-2-3. Through hole, 1-5-2-4. Blind hole, 1-5-2-5. Metal block, 1-5-3. Refrigeration chip, 1-5-4. Radiator, 1-5-5. Fan, 1-6. Circuit board, 1-6-1. USB Type-C interface, 1-6-2. Tactile switch, 1-6-3. Connecting device, 1-6-4. Chip, 1-7. Front shell, 1-7-1. Type c socket, 1-7-2. Button, 1-7-3. Blind hole, 1-7-4. Air outlet, 1-7-5. Through hole, 1-8. Magnet, 1-9. NTC, 1-10. Flexible circuit board, 1-11. Infrared emitter, 2. Thermometer, 2-1. Battery cover, 2-2. Button battery, 2-3. Bottom cover, 2-3-1. Through hole, 2-4. Buzzer, 2-5. Button, 2-6. Temperature sensing probe, 2-6-1. NTC, 2-6-2. Metal shell, 2-6-3. Infrared temperature sensor, 2-6-4. Transparent cover, 2-7. Magnet, 2-8. Main control board, 2-8-1. Display, 2-8-2. Chip, 2-8-3. Wiring hole, 2-8-4. Wiring hole, 2-8-5. Tactile switch, 2-8-6. Positive electrode plate, 2-8-7. Negative electrode plate, 2-8-8. Infrared receiver, 2-9. Front cover. Detailed implementation mode
[0040] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0041] As Figure 1 , 2, as shown in Figures 3 and 8, an integrated device of a physical cooling device 1 and a thermometer 2, characterized in that it includes a physical cooling device 1 and a thermometer 2; the physical cooling device 1 is a semiconductor refrigeration device, including a refrigeration module 1-5, a circuit board 1-6, a chip 1-6-4, an NTC 1-9, a button 1-7-2, a USB Type-C interface 1-6-1, a magnet 1-8, a bottom case 1-4, a face case 1-7, a soft rubber plate 1-3, a water bag 1-1, and a strap 1-2. The magnet 1-8 is embedded in the top of the face case 1-7; the thermometer 2 is an electronic temperature sensing device, and its method of measuring body temperature is the intermittent body temperature measurement method, including a temperature sensing probe 2-6, a main control board 2-8, a display 2-8-1, a chip 2-8-2, a magnet 2-7, a button battery 2-2, a button 2-5, a buzzer 2-4, a bottom cover 2-3, a face cover 2-9, and a battery cover 2-1. The magnet 2-7 is embedded in the bottom of the bottom cover 2-3; the physical cooling device 1 and the thermometer 2 are non-integrally magnetically connected through the magnet 1-8 on the physical cooling device 1 and the magnet 2-7 on the thermometer 2 respectively. When the thermometer 2 is installed on the physical cooling device 1, the display 2-8-1 displays the temperature of the physical cooling device 1. When measuring body temperature, the thermometer 2 is removed and placed on a local part of the human body for body temperature measurement. At this time, the display 2-8-1 displays the human body temperature.
[0042] As Figure 1 , 2, as shown in Figures 3, 4, 5, and 6, the structure of the physical cooling device 1: The refrigeration module 1-5 is an assembly, including a heat conduction block 1-5-2, a refrigeration chip 1-5-3, a radiator 1-5-4, a fan 1-5-5, the NTC 1-9, and a nut 1-5-1. The heat conduction block 1-5-2 is an assembly, which is integrally formed by a metal block 1-5-2-5 and plastic injection. On the heat conduction block 1-5-2, there are respectively a through hole 1-5-2-3 for installing the bottom shell 1-4, an inlay hole 1-5-2-1 for embedding the nut 1-5-1, a snap groove 1-5-2-2 for installing the soft rubber plate 1-3, and a blind hole 1-5-2-4 for installing the NTC 1-9. The refrigeration chip 1-5-3 is installed on the heat conduction block 1-5-2, the radiator 1-5-4 is installed on the refrigeration chip 1-5-3, and the fan 1-5-5 is installed on the radiator 1-5-4. The fan 1-5-5 is a blower fan. The heat conduction block 1-5-2 and the radiator 1-5-4 are connected by screws. The refrigeration module 1-5 is installed on the bottom shell 1-4. On the circuit board 1-6, there are respectively connection devices 1-6-3 for connecting the NTC 1-9, the refrigeration chip 1-5-3, and the fan 1-5-5, as well as the chip 1-6-4, a touch switch 1-6-2, and the USB Type-C interface 1-6-1. The touch switch 1-6-2 is used for turning on and off the physical cooling device 1 and adjusting the temperature. The USB Type-C interface 1-6-1 is used for connecting a DC 5V power supply. The circuit board 1-6 is installed on the bottom shell 1-4. On the bottom shell 1-4, there are respectively a square hole 1-4-5 and a through hole 1-4-4 for inlaying and installing the refrigeration module 1-5, screw posts 1-4-1 and 1-4-2 for installing the circuit board 1-6 and the front shell 1-7, and several air inlets 1-4-3 for the fan 1-5-5 to intake air. On the front shell 1-7, there are respectively an air outlet 1-7-4 for the fan 1-5-5 to exhaust air, a socket 1-7-1 for the USB Type-C interface 1-6-1, a button 1-7-2, and a blind hole 1-7-3 for inlaying the magnet 1-8. The magnet 1-8 is used for non-integral magnetic connection between the physical cooling device 1 and the thermometer 2. The soft rubber plate 1-3 is an assembly, which is integrally formed by a hard plastic frame 1-3-2 and soft plastic 1-3-1. On the hard plastic frame 1-3-2, there is a buckle 1-3-2-1, and the buckle 1-3-2-1 is used for snap connection between the soft rubber plate 1-3 and the refrigeration module 1-5. The water bag 1-1 is a plastic film product pre-filled with water, and there are strap sleeves 1-1-1 on its left and right sides. It is non-integrally sleeved with the soft rubber plate through the strap sleeves 1-1-1. The strap 1-2 is connected to the soft rubber plate 1-3.
[0043] AsFigure 2 As shown, on the water bag 1-1, a water injection device 1-1-2 is provided for the user to fill the water bag 1-1 with water. The water in the water bag 1-1 is pure water, and the water bag 1-1 can be reused.
[0044] As Figure 7 shown, on the water bag 1-1, no water injection device 1-1-2 is provided. The water in the water bag 1-1 is not filled by the user himself / herself. The water in the water bag 1-1 is pure water, and the water bag 1-1 is for single use.
[0045] As Figure 1 、 8 、9 shown, the structure of the thermometer 2 is as follows: on the main control board 2-8, wire connection holes 2-8-3 and 2-8-4 connected to the temperature sensing probe 2-6 and the buzzer 2-4 are respectively provided, as well as the display 2-8-1, the chip 2-8-2, and the touch switch 2-8-5. The positive and negative electrode plates 2-8-6 and 2-8-7 of the button battery 2-2 are also provided. The touch switch 2-8-5 is used for switching between the on and off states of the thermometer 2 and two working modes of physical cooling and body temperature measurement. When the thermometer 2 is installed on the physical cooling device 1, the display 2-8-1 shows the temperature of the physical cooling device 1. When the thermometer 2 is removed and placed on a local part of the human body, it shows the local body temperature of the human body. The main control board 2-8 is installed on the bottom cover 2-3; the battery cover 2-1 is embedded in the bottom cover 2-3 and is rotatably connected to the bottom cover 2-3 by snap connection; the magnet 2-7 and the buzzer 2-4 are respectively embedded in the bottom cover 2-3. The magnet 2-7 is used for non-integral magnetic connection between the thermometer 2 and the physical cooling device 1; the bottom cover 2-3 and the face cover 2-9 are connected by snap connection.
[0046] As Figure 1 、 8 、9 shown, the thermometer 2 uses the thermistor temperature sensing method. The temperature sensing probe 2-6 is a thermistor temperature sensor, including an NTC 2-6-1 and a metal shell 2-6-2. The temperature sensing probe 2-6 is embedded at the bottom of the thermometer 2 and directly contacts the human body. The thermometer 2 is used to measure the armpit temperature when placed under the armpit.
[0047] As Figure 1 、 9 、10 shown, the thermometer 2 uses the thermistor temperature sensing method. The temperature sensing probe 2-6 is a thermistor temperature sensor, including an NTC 2-6-1 and a metal shell 2-6-2. The temperature sensing probe 2-6 is embedded on one side of the thermometer 2 and directly contacts the human body. The thermometer 2 is respectively used to measure the armpit temperature when placed under the armpit or measure the oral temperature when placed in the mouth.
[0048] AsFigure 1 , 9 As shown in Fig. 11, the thermometer 2 is of the infrared temperature sensing type, and its temperature sensing probe 2-6 is an infrared temperature sensor, including an infrared temperature sensor 2-6-3 and a transparent cover 2-6-4. The temperature sensing probe 2-6 is embedded in one side of the thermometer 2 and does not directly contact the human body. The thermometer 2 is used to measure the ear temperature when placed at the ear.
[0049] As Figure 1 , 2 As shown in Fig. 8, the chips 1-6-4 on the physical cooling device 1 and the chip 2-8-2 on the thermometer 2 are both Bluetooth chips. The temperature digital signal of the physical cooling device 1 is wirelessly transmitted to the thermometer 2 through the Bluetooth chip and is displayed by the display 2-8-1.
[0050] As Figure 1 , 2 As shown in Fig. 8, the chips 1-6-4 on the physical cooling device 1 and the chip 2-8-2 on the thermometer 2 are both MESH chips. The temperature digital signal of the physical cooling device 1 is wirelessly transmitted to the thermometer 2 through the MESH chip and is displayed by the display 2-8-1.
[0051] As Figure 1 , 2 As shown in Figs. 3, 5, 8, and 9, the chips 1-6-4 on the physical cooling device 1 and the chip 2-8-2 on the thermometer are both MCU chips. An infrared emitter 1-11 is provided on the physical cooling device 1 and an infrared receiver 2-8-8 is provided on the thermometer 2. Corresponding to the positions of the infrared emitter 1-11 and the infrared receiver 2-8-8, through holes 1-7-5 and 2-3-1 are respectively provided to wirelessly transmit the temperature digital signal of the physical cooling device 1 to the thermometer 2 and is displayed by the display 2-8-1. The infrared emitter 1-11 is mounted on the flexible circuit board 1-10, and the flexible circuit board 1-10 is connected to the circuit board 1-6 on the physical cooling device 1.
[0052] As Figure 1 , 2 As shown in Fig. 31, the physical cooling device 1 is connected to an external DC5V power supply and is powered by the external DC5V.
[0053] As Figure 1 , 2 As shown in Fig. 37, the physical cooling device 1 is connected to an internal DC5V polymer lithium battery and is powered by the internal DC5V polymer lithium battery.
[0054] As Figure 1As shown in the figure, for the convenience of collecting and storing the integrated physical cooling device 1 and the thermometer 2 and preventing them from being contaminated, a plastic packaging box 3 is separately provided. The plastic packaging box 3 includes an upper cover 3-1 and a lower cover 3-2.
[0055] As Figure 1 shown, a push-pull non-integrated connection is adopted between the upper cover 3-1 and the lower cover 3-2.
[0056] As Figure 12 shown, a flip-top integrated connection is adopted between the upper cover 3-1 and the lower cover 3-2.
[0057] As Figure 13 shown, a nested non-integrated connection is adopted between the upper cover 3-1 and the lower cover 3-2.
[0058] The above embodiments are only several preferred embodiments of the present invention. Based on the technical solution of the present invention and the relevant revelations of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. A physical cooling device and thermometer integrated machine, characterized in that, It includes a physical cooling device and a thermometer; the physical cooling device is a semiconductor refrigeration device, including a refrigeration module, a circuit board, a chip, an NTC, a button, a USB Type-C interface, a magnet, a bottom case, a face case, a soft rubber plate, a water bag, and a strap. The magnet is embedded in the top of the face case; the thermometer is an electronic temperature-sensing device, and its temperature measurement method is an intermittent temperature measurement method, including a temperature-sensing probe, a main control board, a display, a chip, a magnet, a button battery, a button, a buzzer, a bottom cover, a face cover, and a battery cover. The magnet is embedded in the bottom of the bottom cover; the physical cooling device and the thermometer are non-integrally magnetically connected through the magnet on the physical cooling device and the magnet on the thermometer respectively. When the thermometer is installed on the physical cooling device, the display shows the temperature of the physical cooling device. When measuring body temperature, the thermometer is removed and placed on a local part of the human body for temperature measurement, and at this time the display shows the human body temperature.
2. The physical cooling device and thermometer integrated machine according to claim 1, wherein The structure of the physical cooling device: The refrigeration module is a combination, including a cold conduction block, a refrigeration chip, a radiator, a fan, the NTC, and a nut. The cold conduction block is a combination, which is integrally formed by a metal block and plastic injection. On the cold conduction block, there are respectively a through hole for installing the bottom case, an embedding hole for embedding the nut, a snap groove for installing the soft rubber plate, and a blind hole for installing the NTC. The refrigeration chip is installed on the cold conduction block, the radiator is installed on the refrigeration chip, and the fan is installed on the radiator. The fan is a blower fan. The cold conduction block and the radiator are connected by screws. The refrigeration module is installed on the bottom case; on the circuit board, there are respectively connection devices for connecting the NTC, the refrigeration chip, and the fan, as well as the chip, a touch switch, and the USB Type-C interface. The touch switch is used to turn on and off the physical cooling device and adjust the temperature. The USB Type-C interface is used to connect a DC 5V power supply. The circuit board is installed on the bottom case; on the bottom case, there are respectively a square hole and a through hole for embedding and installing the refrigeration module, screw posts for installing the circuit board and the face case, and several air inlets for the fan to intake air; on the face case, there are respectively an air outlet for the fan to exhaust air, the USB Type-C interface, the button, and a blind hole for embedding the magnet. The magnet is used for non-integral magnetic connection between the physical cooling device and the thermometer; the soft rubber plate is a combination, which is integrally formed by a hard plastic frame and soft plastic injection. On the hard plastic frame, there are buckle positions, and the buckle positions are used for snap connection between the soft rubber plate and the refrigeration module; the water bag is a plastic film product pre-filled with water, and there are sleeve belts on its left and right sides, and it is non-integrally sleeved and connected with the soft rubber plate through the sleeve belts; the strap is connected to the soft rubber plate.
3. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, On the water bag, there is a water injection device for the user to inject water into the water bag. The water in the water bag is pure water, and the water bag can be reused.
4. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, On the water bag, there is no water injection device. The water in the water bag is not filled by the user himself / herself. The water in the water bag is pure water, and the water bag is for single use.
5. The integrated physical cooling device and thermometer according to claim 1, characterized in that The structure of the thermometer: On the main control board, there are wire connection holes respectively connected to the temperature sensing probe and the buzzer, as well as the display, the chip, the touch switch, and the positive and negative electrode plates of the button battery. The touch switch is used for switching between the two working modes of turning the thermometer on and off and physical cooling and body temperature measurement. When the thermometer is installed on the physical cooling device, the display shows the temperature of the physical cooling device. When the thermometer is taken off and placed on a local part of the human body, the display shows the local body temperature of the human body. The main control board is installed on the bottom cover; the battery cover is embedded in the bottom cover and is rotatably connected to the bottom cover by buckling; the magnet and the buzzer are both embedded in the bottom cover respectively. The magnet is used for non-integral magnetic connection between the thermometer and the physical cooling device; the bottom cover and the face cover are connected by buckling.
6. The integrated physical cooling device and thermometer according to claim 1, wherein, The thermometer uses the thermistor temperature sensing method. The temperature sensing probe is a thermistor temperature sensor, including NTC and a metal shell. The temperature sensing probe is embedded at the bottom of the thermometer and is in direct contact with the human body. The thermometer is used for placing under the armpit to measure the armpit temperature.
7. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, The thermometer uses the thermistor temperature sensing method. The temperature sensing probe is a thermistor temperature sensor, including NTC and a metal shell. The temperature sensing probe is embedded on one side of the thermometer and is in direct contact with the human body. The thermometer is respectively used for placing under the armpit to measure the armpit temperature or placing in the mouth to measure the oral temperature.
8. The integrated physical cooling device and thermometer according to claim 1, wherein, The thermometer uses the infrared temperature sensing method. The temperature sensing probe is an infrared temperature sensor, including an infrared temperature sensor and a transparent cover. The temperature sensing probe is embedded on one side of the thermometer and is not in direct contact with the human body. The thermometer is used for placing near the ear to measure the ear temperature.
9. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, The chips on the physical cooling device and the chips on the thermometer are both Bluetooth chips. The digital signal of the temperature of the physical cooling device is wirelessly transmitted to the thermometer through the Bluetooth chips and is displayed by the display.
10. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, The chips on the physical cooling device and the chips on the thermometer are both MESH chips. The digital signal of the temperature of the physical cooling device is wirelessly transmitted to the thermometer through the MESH chips and is displayed by the display.
11. The physical cooling device and thermometer integrated machine according to claim 1, wherein, The chips on the physical cooling device and the chips on the thermometer are both MCU chips. An infrared transmitter is set on the physical cooling device and an infrared receiver is set on the thermometer respectively. And corresponding to the positions of the infrared transmitter and the infrared receiver, through holes are respectively set to wirelessly transmit the digital signal of the temperature of the physical cooling device to the thermometer and be displayed by the display. The infrared transmitter is installed on a flexible circuit board, and the flexible circuit board is connected to the circuit board on the physical cooling device.
12. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, The physical cooling device is connected to an external DC5V power supply and is powered by the external DC5V.
13. The integrated physical cooling device and thermometer according to claim 1, wherein The physical cooling device is connected to a built-in DC5V polymer lithium battery, and is powered by the built-in DC5V polymer lithium battery.
14. The physical cooling device and thermometer integrated machine according to claim 1, characterized in that, To facilitate the integrated storage and preservation of the physical cooling device and the thermometer and prevent it from being contaminated, a plastic packaging box is separately provided, and the plastic packaging box includes an upper cover and a lower cover.
15. The integrated physical cooling device and thermometer according to claim 14, characterized in that, A push-pull non-integrated connection is adopted between the upper cover and the lower cover.
16. The physical cooling device and thermometer integrated machine according to claim 14, characterized in that, A flip-top integrated connection is adopted between the upper cover and the lower cover.
17. The physical cooling device and thermometer integrated machine according to claim 14, characterized in that, A set-type non-integrated connection is adopted between the upper cover and the lower cover.