Highly-intelligent movable heating equipment
By combining a laser ranging module and a wireless temperature sensor with an automatic height adjustment mechanism, the problems of uneven heat distribution and inaccurate temperature monitoring in traditional heating equipment are solved. This enables adaptive height adjustment and precise temperature control of the electric heater, improving the intelligence of the heating equipment and user comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2026-03-13
AI Technical Summary
Traditional portable heating equipment suffers from uneven heat distribution and inaccurate temperature monitoring, leading to energy waste and poor user comfort.
By combining a laser ranging module and a wireless temperature sensor with an automatic height adjustment mechanism, the electric heater can achieve adaptive height adjustment and precise temperature monitoring, while a worm gear mechanism and an electric push rod provide stable support.
It achieves uniform heat distribution and precise temperature control, improving heating efficiency and comfort while reducing energy waste and temperature fluctuations.
Smart Images

Figure CN223992293U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heating equipment technology, specifically a highly intelligent mobile heating device. Background Technology
[0002] Traditional portable heating devices, such as electric heaters, are often simply designed with only basic heating functions. In actual use, because electric heaters are usually fixed at a certain height, the distribution and diffusion of heat are uneven, making it impossible to precisely heat spaces at different heights. For example, when the heater is too high, the air above it is overheated, while the space below remains cold, resulting in energy waste and poor heating effect. Conversely, if the heater is too low, it will cause uneven room temperature, affecting people's comfort. In addition, existing heating devices also have shortcomings in temperature monitoring. Temperature sensors are usually fixed to the heater, so the temperature data they monitor often only reflects the temperature in a small area around the heater, failing to accurately reflect the true temperature of the entire heated space. When the heater is working, the temperature measured by the sensor will be much higher than the actual ambient temperature. This can cause the control module to misjudge and adjust the heater's heating power, resulting in large fluctuations in indoor temperature and a poor heating experience for users. Utility Model Content
[0003] In view of the problems existing in the prior art, this utility model discloses a highly intelligent mobile heating device. The technical solution adopted is that it includes a base and an electric heater. A control module is fixedly installed at the bottom of the base. An automatic height adjustment mechanism is installed in the base. An electric heater and a sensor storage mechanism are installed on the automatic height adjustment mechanism. Universal wheels are fixedly installed at the four corners of the bottom of the base.
[0004] The automatic height adjustment mechanism includes a worm gear, a worm, a fixed plate, a gear, a rack, a motor, a laser ranging module, and a lifting seat. The lifting seat is slidably installed inside the base. The fixed plate is fixedly installed in the middle of the bottom of the base. The side of the upper end of the fixed plate is rotatably connected to the end face of the worm gear. The motor is fixedly installed on one side of the bottom of the base. The output shaft of the motor is fixedly connected to one end of the worm. The worm meshes with the worm gear. The gear is rotatably installed on the other side of the upper end of the fixed plate. The shaft of the gear end face passes through a through hole on the side of the upper end of the fixed plate and is fixedly connected to the middle of the end face of the worm gear. The upper end of the rack is fixedly connected to the top of the lifting seat. The rack meshes with the gear. An electric heater is fixedly installed in the middle of the top of the lifting seat. The laser ranging module is fixedly installed on the top of the electric heater.
[0005] The sensor storage mechanism includes a fixing block, a top cover, wireless temperature sensors, and a storage slot. The storage slot is located on one side of the top of the lifting seat. The fixing block is fixedly installed on the top of the lifting seat. The protruding portions at both ends of the top cover are rotatably connected to the sides of the fixing block. The top cover cooperates with the storage slot. At least three wireless temperature sensors are placed in the storage slot. The wireless temperature sensors are signal-connected to the control module. The electric heater, motor, and laser ranging module are electrically connected to the control module. In a preferred embodiment, a magnet is fixedly installed in the groove at the bottom of the storage slot, and a patch that cooperates with the magnet is fixedly installed at the bottom of the wireless temperature sensor. In another preferred embodiment, the side of the lower end of the rack is fixedly connected to one end of a support plate, and the other end of the support plate is fixedly connected to the top of the lifting seat.
[0006] As a preferred embodiment of this utility model, the bottom of the base is rotatably connected to the side of one end of the four rotating plates, the side of the other end of the four rotating plates is fixedly connected to the side of the upper end of the support column, the bottom of both ends of the base is rotatably connected to one end of the four electric push rods, the other end of the four electric push rods is rotatably connected to the side of the four rotating plates near the support column, and the four electric push rods are electrically connected to the control module.
[0007] As a preferred technical solution of this utility model, a rotating ball (13) is rotatably installed in the spherical groove at the bottom of the support column (12).
[0008] The beneficial effects of this utility model are:
[0009] 1. This utility model uses a laser ranging module to measure the distance between the top of the electric heater and the ceiling. After measurement, a motor drives a worm gear to rotate, which in turn drives a worm wheel and a gear to rotate. This causes the gear to move a rack upward, raising the electric heater a certain distance so that it is at a suitable height for heating. This ensures that heat is evenly distributed throughout the heating space, improving heating efficiency and comfort. Furthermore, the design separates the wireless temperature sensor from the heater, allowing it to be placed in different locations to improve the accuracy and flexibility of temperature monitoring. Since the wireless temperature sensor is connected to the control module, it can provide real-time temperature data feedback for more precise temperature control. A storage slot and cover are provided to store the wireless temperature sensor and prevent loss. Throughout the heating process, the heater's height and power are automatically adjusted, resulting in a high degree of intelligence, comfortable heating, and convenient use during winter.
[0010] 2. The wireless temperature sensor can be adsorbed in the storage tank by the combination of magnetic and iron plates, which prevents the wireless temperature sensor from falling off and being lost when not in use. The support plate can provide support for the rack and prevent the rack from deforming.
[0011] 3. The rotating plate can be driven to rotate by the electric push rod, so that the support column can be rotated to the outside to provide support for the electric heater that has been moved to a high place, improving the stability during use. The rotating ball can reduce the friction between the support column and the ground, making it easier for the rotating plate and the support column to rotate. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the sensor storage mechanism of this utility model;
[0014] Figure 3 This is a schematic diagram of the internal structure of the storage tank of this utility model;
[0015] Figure 4 This is a schematic diagram of the structure of the wireless temperature sensor of this utility model;
[0016] Figure 5 This is a schematic diagram of the bottom structure of this utility model;
[0017] Figure 6 This is a schematic diagram of the height automatic adjustment structure of this utility model.
[0018] In the diagram: 1. Base, 2. Control module, 3. Electric heater, 4. Automatic height adjustment mechanism, 41. Worm gear, 42. Worm, 43. Fixing plate, 44. Gear, 45. Rack, 46. Motor, 47. Laser ranging module, 48. Lifting seat, 5. Sensor storage mechanism, 51. Fixing block, 52. Top cover, 53. Wireless temperature sensor, 54. Storage slot, 6. Magnet, 7. Iron sheet, 8. Casters, 9. Support plate, 10. Rotating plate, 11. Electric push rod, 12. Support column, 13. Rotating ball. Detailed Implementation
[0019] Example 1
[0020] like Figures 1 to 6As shown, this utility model discloses a highly intelligent mobile heating device. The technical solution includes a base 1 and an electric heater 3. A control module 2 is fixedly installed at the bottom of the base 1. An automatic height adjustment mechanism 4 is installed inside the base 1. The electric heater 3 and a sensor storage mechanism 5 are installed on the automatic height adjustment mechanism 4. Universal wheels 8 are fixedly installed at the four corners of the bottom of the base 1. The bottom of the base 1 is rotatably connected to the side of one end of four rotating plates 10. The side of the other end of the four rotating plates 10 is fixedly connected to the side of the upper end of a support column 12. The bottom of both ends of the base 1 is respectively connected to four... One end of the electric push rod 11 is rotatably connected, and the other ends of the four electric push rods 11 are respectively rotatably connected to the side of the four rotating plates 10 near the support column 12. The four electric push rods 11 are electrically connected to the control module 2. A rotating ball 13 is rotatably installed in the spherical groove at the bottom of the support column 12. The electric push rods 11 can push the rotating plate 10 to rotate, so that the support column 12 can rotate to the outside to provide support for the electric heater 3 moved to a high position, improving the stability during use. The rotating ball 13 can reduce the friction between the support column 12 and the ground, making it easier for the rotating plate 10 and the support column 12 to rotate.
[0021] The automatic height adjustment mechanism 4 includes a worm gear 41, a worm 42, a fixed plate 43, a gear 44, a rack 45, a motor 46, a laser ranging module 47, and a lifting seat 48. The lifting seat 48 is slidably installed inside the base 1. The fixed plate 43 is fixedly installed in the middle of the bottom of the base 1. The upper side of the fixed plate 43 is rotatably connected to the end face of the worm gear 41. The motor 46 is fixedly installed on one side of the bottom of the base 1. The output shaft of the motor 46 is fixedly connected to one end of the worm 42. The worm 42 meshes with the worm gear 41. The gear 44 is rotatably installed on the other side of the upper end of the fixed plate 43. The shaft of the gear 44 passes through the through hole on the upper side of the fixed plate 43 and is fixedly connected to the middle of the end face of the worm gear 41. The upper end of the rack 45 is fixedly connected to the top of the lifting seat 48. The rack 45 and the gear 44... The rack 45 is meshed, and the side of the lower end of the rack 45 is fixedly connected to one end of the support plate 9. The other end of the support plate 9 is fixedly connected to the top of the lifting seat 48. The support plate 9 can provide support for the rack 45 to prevent deformation of the rack 45. An electric heater 3 is fixedly installed in the middle of the top of the lifting seat 48. A laser ranging module 47 is fixedly installed on the top of the electric heater 3. The laser ranging module 47 can measure the distance between the top of the electric heater 3 and the ceiling. After measurement, the motor 46 can drive the worm gear 42 to rotate, which in turn drives the worm wheel 41 and the gear 44 to rotate. The gear 44 drives the rack 45 to move upward, so that the electric heater 3 moves upward a certain distance, so that the electric heater 3 can be at a suitable height for heating. This allows the heat to be evenly distributed throughout the heating space, improving heating efficiency and comfort.
[0022] The sensor storage mechanism 5 includes a fixing block 51, a top cover 52, wireless temperature sensors 53, and a storage slot 54. The storage slot 54 is located on one side of the top of the lifting base 48. The fixing block 51 is fixedly installed on the top of the lifting base 48. The protruding parts at both ends of the top cover 52 are rotatably connected to the sides at both ends of the fixing block 51. The top cover 52 cooperates with the storage slot 54. At least three wireless temperature sensors 53 are placed in the storage slot 54. A magnet 6 is fixedly installed in the groove at the bottom of the storage slot 54. A patch 7 that cooperates with the magnet 6 is fixedly installed on the bottom of the wireless temperature sensor 53. The wireless temperature sensor can be attracted to the storage slot 54 by the cooperation of the magnet 6 and the patch 7, avoiding the loss of the sensor. The wireless temperature sensor 53 is designed to be detached and lost when not in use. The wireless temperature sensor 53 is connected to the control module 2 via a signal. The electric heater 3, motor 46, and laser ranging module 47 are electrically connected to the control module 2. The wireless temperature sensor 53 and the electric heater 3 are designed to be separate units. During use, the wireless temperature sensor 53 can be placed in different locations to improve the accuracy and flexibility of temperature monitoring. Since the wireless temperature sensor 53 is connected to the control module 2 via a signal, it can feed back temperature data to the control module 2 in real time, thereby achieving more precise temperature control. A storage slot 54 and a top cover 52 are provided to store the wireless temperature sensor 53 and prevent it from being lost. The working principle of this utility model is as follows: When the external power supply is connected and the heating equipment is in use, the top cover 52 is opened, the wireless temperature sensor 53 is taken out from the storage slot 54, and the wireless temperature sensor 53 is evenly placed in the room. The laser ranging module 47 will automatically measure the distance between the top of the heater 3 and the ceiling. At the same time, the wireless temperature sensor 53 will monitor the temperature in the room. When the room temperature is low, the control module 2 will automatically control the motor 46 to work, so that the output shaft of the motor 46 drives the worm gear 42 to rotate, so that the worm gear 42 drives the worm wheel 41 to rotate, so that the worm wheel 41 drives the gear 44 to rotate, so that the gear 44 drives the rack 45 to move upward, so that the rack 45 drives the lifting seat 48 to move upward, so that the lifting seat 48 moves upward to a higher position. The control module 2 automatically controls the electric heater 3 to work, so that the electric heater 3... The heater 3 heats the indoor air evenly at a suitable height. Since the wireless temperature sensor 53 is placed in the room, it measures the temperature of the air in the room, not the temperature near the heater 3. The control module 2 adjusts the heating power of the heater 3 in real time according to the temperature monitored by the wireless temperature sensor 53. This prevents the heater 3 from automatically reducing its power or stopping heating when the room temperature is not reached, thus improving people's heating experience. During the process of the heater 3 rising, the control module 2 automatically controls the electric push rod 11 to work, so that the electric push rod 11 pushes the rotating plate 10 to rotate, which drives the support column 12 to rotate to the outside of the base 1. The support column 12 rotated to the outside increases the support area of the base 1, improving the stability of the base. It has a high degree of intelligence, provides comfortable heating, and is convenient for people to use for heating in winter.
[0023] It is worth noting that the electric heater 3 in this utility model is a common electric heater on the market, such as a fast-heating furnace or a fan heater. It is existing technology, and its working principle will not be described here. The wireless temperature sensor 53 has a built-in battery and does not require an additional power supply.
[0024] The circuit connection involved in this utility model is a common method used by those skilled in the art, and technical inspiration can be obtained through a limited number of experiments. It belongs to the widely used prior art.
[0025] Components not described in detail in this article are existing technologies.
[0026] While the specific embodiments of this utility model have been described in detail above, this utility model 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 this utility model. Modifications or variations that do not involve creative labor are still within the protection scope of this utility model.
Claims
1. A high-intelligent mobile heating device, comprising a base (1) and an electric heater (3), characterized in that, The bottom of the base (1) is fixedly provided with a control module (2), the base (1) is provided with a height automatic adjusting mechanism (4), the height automatic adjusting mechanism (4) is provided with an electric heater (3) and a sensor storage mechanism (5), and the four corners of the bottom of the base (1) are fixedly provided with universal wheels (8). The height automatic adjusting mechanism (4) comprises a worm gear (41), a worm shaft (42), a fixed plate (43), a gear (44), a rack (45), a motor (46), a laser ranging module (47) and a lifting seat (48), the lifting seat (48) is slidingly installed in the inside of the base (1), the fixed plate (43) is fixedly installed at the middle of the bottom of the base (1), the side surface of the upper end of the fixed plate (43) is rotatably connected with the end surface of the worm gear (41), the motor (46) is fixedly installed on one side of the bottom of the base (1), the output shaft of the motor (46) is fixedly connected with one end of the worm shaft (42), the worm shaft (42) is engaged with the worm gear (41), the gear (44) is rotatably installed on the other side surface of the upper end of the fixed plate (43), the shaft of the end surface of the gear (44) penetrates through the through hole in the upper end side surface of the fixed plate (43) and is fixedly connected with the middle part of the end surface of the worm gear (41), the upper end of the rack (45) is fixedly connected with the top of the lifting seat (48), the rack (45) is engaged with the gear (44), and the top of the lifting seat (48) is fixedly provided with the electric heater (3). The sensor storage mechanism (5) comprises a fixed block (51), an upper cover (52), a wireless temperature sensor (53) and a storage groove (54), the storage groove (54) is formed in one side of the top of the lifting seat (48), the fixed block (51) is fixedly installed on the top of the lifting seat (48), the protruding portions of the two ends of the upper cover (52) are rotatably connected with the side surfaces of the two ends of the fixed block (51), the upper cover (52) is matched with the storage groove (54), and the storage groove (54) is provided with not less than three wireless temperature sensors (53); the wireless temperature sensor (53) is signal connected with the control module (2), and the electric heater (3), the motor (46) and the laser ranging module (47) are electrically connected with the control module (2).
2. The high-intelligent mobile heating device according to claim 1, characterized in that: The bottom of the base (1) is fixedly provided with a control module (2), the base (1) is provided with a height automatic adjusting mechanism (4), the height automatic adjusting mechanism (4) is provided with an electric heater (3) and a sensor storage mechanism (5), and the four corners of the bottom of the base (1) are fixedly provided with universal wheels (8).
3. The high-intelligent mobile heating device according to claim 1, characterized in that: The bottom of the base (1) is fixedly provided with a control module (2), the base (1) is provided with a height automatic adjusting mechanism (4), the height automatic adjusting mechanism (4) is provided with an electric heater (3) and a sensor storage mechanism (5), and the four corners of the bottom of the base (1) are fixedly provided with universal wheels (8). The side surface of the lower end of the rack (45) is fixedly connected with one end of a supporting plate (9), and the other end of the supporting plate (9) is fixedly connected with the top in the lifting seat (48).
4. The high-intelligent mobile heating device according to claim 1, characterized in that: The bottom of the base (1) is rotatably connected with one end of the side surface of four rotating plates (10), the side surface of the other end of the four rotating plates (10) is fixedly connected with the side surface of the upper end of the supporting column (12), the bottom of the two ends of the base (1) is rotatably connected with one end of the four electric push rods (11) respectively, the other end of the four electric push rods (11) is rotatably connected with the side surface of the other end of the four rotating plates (10) respectively, and the four electric push rods (11) are electrically connected with the control module (2).
5. The high-intelligent mobile heating device according to claim 4, characterized in that: The rotating ball (13) is rotatably installed in the spherical groove at the bottom of the supporting column (12).