Portable temperature measuring device
By designing a portable temperature measurement device, display, adjustment, and data processing functions are integrated, solving the problems of traditional temperature measurement instruments that cannot automatically monitor the preset temperature range and lack portability, and achieving the effects of stable adsorption and convenient carrying.
Patent Information
- Application Number
- CN202520167080.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-24
AI Technical Summary
Traditional temperature measuring instruments are limited to basic temperature readings, cannot automatically monitor preset temperature ranges, and lack installation and portability.
A portable temperature measuring device was designed, integrating display, adjustment and data processing functions. It is equipped with an adsorption structure and a foldable support structure, which can be firmly adsorbed onto the wall for long-term monitoring, and can be folded and stored when not in use to save space and make it easy to carry.
It achieves simple operation and comprehensive functions. It can be firmly attached to the wall for long-term monitoring, and can be folded and stored when not in use, saving space, making it easy to carry, and improving the convenience and durability of use.
Smart Images

Figure CN223741769U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of temperature measurement, and in particular to a portable temperature measuring device. Background Technology
[0002] Temperature measuring instruments play a vital role in many fields such as scientific research, industry, and medicine. They can accurately monitor and record temperature data, ensuring stable experimental conditions, safe production processes, and accurate medical diagnoses. They are indispensable tools for ensuring equipment operating efficiency, product quality, and life safety.
[0003] However, traditional temperature measuring instruments have limited functionality, only providing basic temperature readings and unable to automatically monitor based on user-preset temperature ranges, thus limiting their applicability in specific application scenarios. In addition, traditional temperature measuring instruments also have many shortcomings in terms of installation and portability, lacking both a stable installation structure and being inconvenient for long-term carrying and use.
[0004] Therefore, in view of the limitations of traditional temperature measuring instruments, such as the inability to automatically monitor preset temperature ranges and insufficient installation and portability, a portable temperature measuring device can be designed. This device is not only easy to operate but also has comprehensive functions. It can be firmly attached to the wall for long-term monitoring and can be folded and stored when not in use, saving space and making it easy to carry. Utility Model Content
[0005] To overcome the limitations of traditional temperature measuring instruments, such as their inability to automatically monitor preset temperature ranges and their insufficient installation and portability.
[0006] The technical solution of this utility model is as follows: a portable temperature measuring device, including a measuring body, a display screen and a button for adjusting the temperature threshold are provided at the front end of the measuring body, the button is located below the display screen, a connection hole is provided at the side end of the measuring body, a data cable is inserted into the connection hole, a probe for measuring temperature is provided at the end of the data cable, the measuring body measures the temperature through the probe, an arc-shaped groove is provided at the rear end of the measuring body, a power switch and a temperature switching button are provided in the arc-shaped groove, button icons corresponding to the power switch and temperature switching button are provided on the upper side of the arc-shaped groove, a battery compartment is provided at the rear end of the measuring body, a door is provided at the upper end of the battery compartment, an adsorption structure is provided at the rear end of the measuring body, the measuring body is connected to the wall through the adsorption structure, and a foldable support structure is provided at the rear end of the measuring body.
[0007] Preferably, the rear end of the measuring body is provided with a groove, and the bottom of the groove is provided with heat dissipation holes.
[0008] Preferably, the adsorption structure includes protrusions, with columnar protrusions symmetrically arranged on the left and right rear ends of the measuring body. A through groove is opened in the protrusion, and a magnet is placed in the through groove.
[0009] Preferably, the support structure includes a storage groove, which is composed of a vertical part and a horizontal part. A fixed shaft is fixedly connected between the inner walls of the left and right sides of the vertical part, and a support leg adapted to the storage groove is rotatably connected to the outer wall of the fixed shaft.
[0010] Preferably, both the upper side of the battery compartment and the lower side of the storage slot are provided with opening slots.
[0011] Preferably, the surface of the storage door is provided with small raised particles.
[0012] The beneficial effects of this utility model are as follows: Compared with traditional temperature measurement tools, this solution integrates core functions such as display, adjustment, and data processing into one, which is not only easy to operate, but also has comprehensive functions. Through the design of adsorption structure and foldable support structure, the device can be firmly adsorbed on the wall for long-term monitoring, and can be folded and stored when not in use, saving space and making it easy to carry, further improving the ease of use and durability of the device. Attached Figure Description
[0013] Figure 1 The diagram shown is a first three-dimensional structural schematic of the portable temperature measuring device of this utility model.
[0014] Figure 2 The diagram shown is a second three-dimensional structural schematic of the portable temperature measuring device of this utility model.
[0015] Figure 3 The diagram shown is a front view of the portable temperature measuring device of this utility model.
[0016] Figure 4 The diagram shown is a rear view of the portable temperature measuring device of this utility model.
[0017] Figure 5 The diagram shown is a three-dimensional disassembled schematic of the portable temperature measuring device of this utility model.
[0018] Explanation of reference numerals in the attached diagram: 1. Measuring body; 2. Display screen; 3. Button; 4. Connection hole; 5. Data cable; 6. Probe; 7. Arc groove; 8. Power switch; 9. Temperature switch button; 10. Button icon; 11. Battery compartment; 12. Compartment door; 13. Groove; 14. Heat dissipation hole; 15. Protrusion; 16. Through groove; 17. Magnet; 18. Storage slot; 19. Fixed shaft; 20. Support leg; 21. Opening slot. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Please see Figure 1 - Figure 5 This utility model provides an embodiment: a portable temperature measuring device, including a measuring body 1. The front end of the measuring body 1 is provided with a display screen 2 and a button 3 for adjusting the temperature threshold. The button 3 is located below the display screen 2. A connection hole 4 is provided on the side of the measuring body 1, into which a data cable 5 is inserted. A probe 6 for measuring temperature is provided at the end of the data cable 5. The measuring body 1 measures temperature through the probe 6. An arc-shaped groove 7 is provided at the rear end of the measuring body 1, within which a power switch 8 and a temperature switching button 9 are provided. A button diagram corresponding to the power switch 8 and the temperature switching button 9 is provided on the upper side of the arc-shaped groove 7. Reference numeral 10: A battery compartment 11 is located at the rear end of the measuring body 1, and a door 12 is located at the top of the battery compartment 11. An adsorption structure is located at the rear end of the measuring body 1, through which the measuring body 1 is connected to the wall. A foldable support structure is located at the rear end of the measuring body 1. The measuring body 1 serves as the load-bearing structure of the device and integrates core functions such as display, adjustment, and data processing. The display screen 2 is used to display temperature data in real time. A button 3 for adjusting the temperature threshold is located on the lower side of the display screen 2. Users can set the upper or lower limit of the temperature through this button 3. When the measured temperature exceeds or falls below the set threshold, the device will issue an alarm. To meet temperature monitoring needs in specific scenarios, the measuring body 1 has a connection hole 4 on its side for connecting a data cable 5. The end of the data cable 5 is connected to a temperature probe 6, which accurately senses and measures temperature. Through the data cable 5, the measuring body 1 transmits the temperature data collected by the probe 6 to the display screen 2 for display. An on / off switch 8 and a temperature switching button 9 are located within the arc-shaped groove 7. The on / off switch 8 controls the power on / off operation of the device, while the temperature switching button 9 switches between the temperature types measured by the measuring body 1, such as Celsius or Fahrenheit. A [further details about the on / off switch are also missing from the original text.] There are button icons 10 corresponding to the power button 8 and temperature switching button 9, so that users can intuitively identify the function of the buttons. The battery compartment 11 is used to store batteries to provide the power required by the device. The battery compartment 11 is provided with a door 12 at the top. The door 12 is designed to be easy to open, so that users can easily replace the batteries. The adsorption structure can be firmly adsorbed onto the surface of the wall with iron material, so that users can fix the device at the location where temperature needs to be monitored. The support structure can provide users with a stable support surface. At the same time, the support structure also has a folding function, so users can fold it up to save space when not in use.
[0021] Please see Figure 2 - Figure 4In this embodiment, a groove 13 is provided at the rear end of the measuring body 1, and a heat dissipation hole 14 is provided parallel to the bottom of the groove 13. An opening groove 21 is provided on the upper side of the battery compartment 11 and the lower side of the storage slot 18. The surface of the compartment door 12 is provided with convex small particles. The heat dissipation hole 14 is provided parallel to the bottom of the groove 13. These heat dissipation holes 14 are used to help dissipate heat inside the device. The opening groove 21 is designed to facilitate the user to open the compartment door 12 or the support leg 20 in the storage slot 18 for battery replacement and device fixing. The surface of the compartment door 12 is provided with convex small particles. This design is mainly to increase the friction of the surface of the compartment door 12. When the user needs to open the compartment door 12, these convex small particles can provide additional friction, making it easier for the user to open the compartment door 12.
[0022] Please see Figure 2 and Figure 5 In this embodiment, the adsorption structure includes protrusions 15. Columnar protrusions 15 are symmetrically arranged on the left and right rear ends of the measuring body 1. A through groove 16 is formed within the protrusion 15, and a magnet 17 is disposed within the through groove 16. The support structure includes a receiving groove 18, which consists of a vertical part and a horizontal part. A fixing shaft 19 is fixedly connected between the inner walls of the left and right sides of the vertical part. A support leg 20 adapted to the receiving groove 18 is rotatably connected to the outer wall of the fixing shaft 19. Magnets 17 are disposed within the through groove 16. These magnets 17 have strong adsorption force, enabling them to firmly adsorb the measuring body 1 onto a metal surface or a surface made of ferrous material. The wall surface ensures that the device remains stable at the location where temperature monitoring is required. The storage slot 18 consists of a vertical part and a horizontal part. The vertical part serves as the fixed base for the support leg 20. A fixed shaft 19 is fixedly connected between the inner walls on the left and right sides. This fixed shaft 19 not only provides support but also provides a stable center point for the rotation of the support leg 20. When the support leg 20 is fully extended, it can provide a stable support surface for the user, allowing the measuring body 1 to maintain an inclined state for temperature measurement. When not in use, the support leg 20 can be easily folded and stored in the storage slot 18, saving space and making it easy to carry.
[0023] When working, first open the compartment door 12 and install the battery into the battery compartment 11. Then, insert the data cable 5 connected to the probe 6 into the connection hole 4 of the measuring body 1. Next, use the button 3 to set the upper and lower limit thresholds of the required temperature. After that, install the measuring body 1 according to the actual needs.
[0024] If wall mounting is required, the magnet 17 at the rear end of the measuring body 1 will attract the iron material on the wall, ensuring that the measuring body 1 is securely hung on the wall.
[0025] If the measuring body 1 needs to be fixed on a flat surface, the support leg 20 can be fully unfolded through the opening slot 21, which provides a stable support surface, allowing the measuring body 1 to measure temperature in an inclined state. When the measuring body 1 is not in use, the support leg 20 can be easily folded back into the storage slot 18, which saves storage space and is easy to carry.
[0026] Through the above steps, this solution integrates core functions such as display, adjustment, and data processing into one unit, compared to traditional temperature measurement tools. It is not only easy to operate but also comprehensive in function. Through the design of the adsorption structure and foldable support structure, the device can be firmly adsorbed onto the wall for long-term monitoring, and can also be folded and stored when not in use, saving space and making it easy to carry. This further improves the ease of use and durability of the device, and solves the problems of the functional limitations of traditional temperature measurement instruments, such as the inability to automatically monitor the preset temperature range and insufficient installation and portability.
[0027] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A portable temperature measuring device comprising a measuring body (1), characterized in that: The front end of the measuring body (1) is provided with a display screen (2) and a button (3) for adjusting temperature threshold, the button (3) is located below the display screen (2), the side end of the measuring body (1) is provided with a connecting hole (4), the connecting hole (4) is inserted with a data line (5), the end of the data line (5) is provided with a probe (6) for measuring temperature, the measuring body (1) measures temperature through the probe (6), the rear end of the measuring body (1) is provided with an arc-shaped groove (7), the arc-shaped groove (7) is provided with an on-off key (8) and a temperature switching key (9), the upper side of the arc-shaped groove (7) is provided with a key icon (10) corresponding to the on-off key (8) and the temperature switching key (9), the rear end of the measuring body (1) is provided with a battery compartment (11), the upper end of the battery compartment (11) is provided with a compartment door (12), the rear end of the measuring body (1) is provided with an adsorption structure, the measuring body (1) is connected with the wall through the adsorption structure, and the rear end of the measuring body (1) is provided with a folding support structure.
2. The portable temperature measuring device of claim 1, wherein: The rear end of the measuring body (1) is provided with a recess (13), and the bottom of the recess (13) is provided in parallel with a heat dissipation hole (14).
3. The portable temperature measuring device of claim 2, wherein: The adsorption structure includes a protrusion (15), the rear end of the measuring body (1) is provided with a columnar protrusion (15) symmetrically left and right, a through groove (16) is formed in the protrusion (15), and a magnet (17) is arranged in the through groove (16).
4. The portable temperature measuring device of claim 3, wherein: The support structure includes a receiving groove (18), the receiving groove (18) is composed of a vertical part and a horizontal part, the inner walls of the left and right sides of the vertical part are fixedly connected with a fixed shaft (19), and the outer wall of the fixed shaft (19) is rotatably connected with a support leg (20) matched with the receiving groove (18).
5. The portable temperature measuring device of claim 4, wherein: The upper side of the battery compartment (11) and the lower side of the receiving groove (18) are both provided with an opening groove (21).
6. The portable temperature measuring device of claim 5, wherein: The surface of the compartment door (12) is provided with convex small particles.