Remote temperature control module additional installation structure
The remote temperature control module installation structure, designed with a combination of steel strap clamps and movable plates, solves the problems of damage to the tank and signal transmission during remote temperature control module installation, achieving stable installation and heat dissipation.
Patent Information
- Application Number
- CN202520192846.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-07
AI Technical Summary
The existing technology for installing remote temperature control modules can damage the airtightness of the tank, and the signal transmission lines are too long and affect the signal transmission effect.
A remote temperature control module installation structure is adopted, which uses steel strap clamps on the outer periphery of the tank and a combination of multiple screws and movable plates to achieve a stable installation, shorten the length of the connection line, and avoid direct contact with the tank wall to promote heat dissipation.
This ensures the secure installation of the remote temperature control module, preventing damage to the tank, shortening the signal transmission line, and improving signal transmission efficiency.
Smart Images

Figure CN223770588U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of biopharmaceutical preparation technology, and in particular to a remote temperature control module installation structure. Background Technology
[0002] The remote temperature control module connects to the heating wire and thermocouple. The thermocouple senses the temperature inside the pharmaceutical container and transmits the data to the remote temperature control module. The module then adjusts the heating wire's operation according to the set temperature and simultaneously transmits temperature adjustment parameters to a remote control computer in real time. This facilitates pharmaceutical automation. However, this type of remote temperature control module is added during upgrades to pharmaceutical production lines. Directly installing the module using screws or welding could damage the container's airtightness. Fixing it to the container support frame results in longer signal transmission lines and could negatively impact signal transmission quality. Utility Model Content
[0003] This utility model provides a remote temperature control module installation structure to overcome the shortcomings of the prior art and solve the impact on the tank and other components during the installation of the remote temperature control module, thus having strong practicality.
[0004] In order to achieve the purpose of this utility model, the following technology is proposed to be adopted:
[0005] A remote temperature control module mounting structure is provided, which is installed on a tank body for mounting and securing the remote temperature control module. The tank body has a lid at the top and a drain pipe at the bottom. A heating wire is installed inside the tank, and a thermocouple is mounted on the top of the tank body. The thermocouple is connected to the remote temperature control module via a connecting wire, and the remote temperature control module is connected to the control module of the heating wire via a connecting wire. The mounting structure includes an inner plate on the tank body, with a concave seat welded to the outer wall of the inner plate. The remote temperature control module is mounted on the concave seat with multiple screws. A steel band is mounted on one side of the concave seat with fixing screws. The steel band clamps onto the tank body, and its position can be adjusted as needed. The steel band prevents the high temperature of the tank wall from affecting the clamping effect. The other end of the steel strip is fitted with a movable plate via a pair of connecting screws. The upper end of the movable plate is rotatably mounted on a shaft, on which a spreading wheel is mounted. A pair of through rods are mounted on the other side of the concave seat, and movable side plates are fitted onto the through rods. Vertical grooves are formed on the movable side plates, and the through rods pass through the vertical grooves. The outer ends of the through rods are threaded to a limit nut, which is located on the outer side of the movable side plate. A top-tightening plate is provided on the movable side plate, and the outer wall of the top-tightening plate is formed with a slope. The lower end of the slope extends inward. The outer circumference of the spreading wheel is in close contact with the outer wall of the top-tightening plate. When the top-tightening plate moves downward, it acts on the spreading wheel through the slope, causing the spreading wheel to move outward. This causes the steel strip to clamp onto the outer circumference of the tank, thereby improving the stability after fixing. In addition, this fixing method is beneficial for heat dissipation because the remote temperature control module does not contact the tank wall, and it can also shorten the length of the connection lines between the remote temperature control module and thermocouples.
[0006] The lower end of the movable side plate is equipped with a pull-down plate, on which a push screw is rotatably mounted. The lower end of the push screw has an end cap, and a positioning nut is mounted on the push screw. The positioning nut is located on the upper side of the pull-down plate, and the end cap is located on the lower side of the pull-down plate. The upper end of the push screw is threadedly connected to a lower plate, which is installed at the lower end of the concave seat. Rotation of the push screw allows the tensioning plate to move, thus securing the steel strip to the tank body and offering the advantage of convenient operation.
[0007] Furthermore, the inner panel has an arc-shaped structure to increase the contact area, and the friction of the contact surface can be improved by setting anti-slip patterns on its inner wall.
[0008] Furthermore, pressure plates are provided at both ends of the inner plate, the steel strip is located inside the pressure plate, and a rectangular hole is provided on the pressure plate. The steel strip passes through the rectangular hole, and the pressure plate can make the steel strip stick tightly to the outer wall of the tank.
[0009] Furthermore, in order to improve the contact effect between the steel strip connection and the outer wall of the tank, the inner wall of the pressure plate has an arc-shaped structure.
[0010] Furthermore, in order to guide the tightening of the steel strip when it is tensioned, a guide recess is provided on the through rod, the steel strip passes through the guide recess, and a tightening nut is also connected to the through rod by thread, with the inner end of the tightening nut pressing against the outer wall of the guide recess.
[0011] The advantages of the above technical solution are:
[0012] This invention facilitates the installation of a remote temperature control module without affecting the tank body, and provides high stability after installation. Attached Figure Description
[0013] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will provide a further detailed description of this utility model in conjunction with the accompanying drawings.
[0014] Figure 1 A three-dimensional structure of one embodiment is shown. Figure 1 .
[0015] Figure 2 A magnified view of point A is shown.
[0016] Figure 3 A three-dimensional structure of one embodiment is shown. Figure 2 . Detailed Implementation
[0017] like Figures 1-3 As shown, a remote temperature control module with an added installation structure is installed on a tank 1 for the installation and fixation of a remote temperature control module 32. The upper end of the tank 1 is provided with a tank cover 12, and the lower end of the tank 1 is provided with a drain pipe 10. A heating wire is provided inside the tank 1. A thermocouple 11 is installed on the upper end of the tank 1, and the thermocouple 11 is connected to the remote temperature control module 32 through a connecting wire. The remote temperature control module 32 is connected to the control module of the heating wire through a connecting wire. The added installation structure includes an inner plate 3 on the tank 1. The inner plate 3 has an arc-shaped structure, and a concave seat 31 is welded on the outer wall of the inner plate 3. The remote temperature control module 32 is installed on the concave seat 31 by multiple screws.
[0018] A steel strip 2 is installed on one side of the concave seat 31 by fixing screws 6. Pressure plates 30 are provided at both ends of the inner plate 3. The steel strip 2 is located inside the pressure plate 30, and a rectangular hole is opened on the pressure plate 30. The steel strip 2 passes through the rectangular hole. The inner wall of the pressure plate 30 has an arc-shaped structure. The other end of the steel strip 2 is fitted with a movable plate 20 via a pair of connecting screws 21. The upper end of the movable plate 20 is rotatably equipped with a rotating shaft 22, and a spreading wheel 23 is provided on the rotating shaft 22. A pair of through rods 34 are installed on the other side of the concave seat 31. A movable side plate 36 is fitted on the through rod 34. A vertical groove 37 is provided on the movable side plate 36. The through rod 34 passes through the vertical groove 37. The outer end of the through rod 34 is connected to a limit nut 35 by a thread. The limit nut 35 is located on the outer side of the movable side plate 36. A top plate 38 is provided on the movable side plate 36. The outer wall of the top plate 38 is formed with a slope 39. The lower end of the slope 39 extends inward at an incline. The outer periphery of the spreading wheel 23 is tightly attached to the outer wall of the top plate 38.
[0019] The lower end of the movable side plate 36 is provided with a pull-down plate 40, and a push screw 41 is rotatably mounted on the pull-down plate 40. The lower end of the push screw 41 is provided with an end cap 43, and a positioning nut 42 is provided on the push screw 41. The positioning nut 42 is located on the upper side of the pull-down plate 40, and the end cap 43 is located on the lower side of the pull-down plate 40. The upper end of the push screw 41 is connected to a lower plate 44 by a thread, and the lower plate 44 is installed on the lower end of the concave seat 31. A guide recess 33 is sleeved on the through rod 34, and the steel strip 2 passes through the guide recess 33. A tightening nut is also connected to the through rod 34 by a thread, and the inner end of the tightening nut is pressed against the outer wall of the guide recess 33.
[0020] In this embodiment, when installing the remote temperature control module 32:
[0021] First, attach the inner plate 3 tightly to the tank body 1, and then place the inner plate 3 in a suitable position.
[0022] Next, one end of the steel strip 2 is fixed to the concave seat 31 by the fixing screw 6.
[0023] Then, the steel strip 2 is wrapped around the outer periphery of the tank body 1, and the other end of the steel strip 2 is threaded through the rectangular hole.
[0024] Next, install the movable plate 20 using a pair of connecting screws 21. During installation, ensure that the spreading wheel 23 is at the top.
[0025] Next, the guide recess 33 is installed. After installation, the guide recess 33 is fixed by tightening the nut, and at this time the steel strip 2 is inserted into the guide recess 33.
[0026] Next, the movable side plate 36 is fitted onto the through rod 34, and the outer side is limited by the limiting nut 35.
[0027] Next, the operator rotates the end cap 43 to rotate the push screw 41. When the push screw 41 rotates, it will cause the pull plate 40 and the lower plate 44 to move away from each other. When the movable side plate 36 moves downward, it will cause the outer wall of the clamping plate 38 to act on the spreading wheel 23, so that the steel belt 2 will eventually wrap around the outer periphery of the tank body 1.
[0028] Finally, the operator uses screws to install the remote temperature control module 32 onto the concave base 31 and performs the connection operation of each wire.
[0029] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A remote temperature control module installation structure is installed on the tank body (1), which is used for the installation and fixation of the remote temperature control module (32). The upper end of the tank body (1) is provided with a tank cover (12), the lower end of the tank body (1) is provided with a liquid discharge pipe (10), the tank body (1) is provided with a heating wire, the upper end of the tank body (1) is provided with a thermocouple (11), and the thermocouple (11) is connected to the remote temperature control module (32) through a connecting line, and the remote temperature control module (32) is connected to the control module of the heating wire through a connecting line, characterized in that, The inner plate (3) is provided on the tank body (1), and a concave seat (31) is welded on the outer wall of the inner plate (3), and a remote temperature control module (32) is installed on the concave seat (31) through a plurality of screws; One side of the concave seat (31) is provided with a steel belt (2) through a fixing screw (6), and the other end of the steel belt (2) is provided with a movable plate (20) through a pair of connecting screws (21), the upper end of the movable plate (20) is rotatably provided with a rotating shaft (22), the rotating shaft (22) is provided with a supporting wheel (23), the other side of the concave seat (31) is provided with a pair of penetrating rods (34), the penetrating rods (34) are provided with movable side plates (36), the movable side plates (36) are provided with vertical grooves (37), the penetrating rods (34) are provided in the vertical grooves (37), the outer side of the penetrating rods (34) is provided with a limiting nut (35) through a threaded connection, the limiting nut (35) is located on the outer side of the movable side plate (36), the movable side plate (36) is provided with a clamping plate (38), the outer wall of the clamping plate (38) is formed with an inclined surface (39), the lower end of the inclined surface (39) extends inwardly and downwardly, and the outer wall of the clamping plate (38) is tightly attached to the outer wall of the supporting wheel (23); The lower end of the movable side plate (36) is provided with a lower pull plate (40), the lower pull plate (40) is rotatably provided with a pushing screw rod (41), the lower end of the pushing screw rod (41) is provided with an end cap (43), the pushing screw rod (41) is provided with a limiting nut (42), the limiting nut (42) is located on the upper side of the lower pull plate (40), the end cap (43) is located on the lower side of the lower pull plate (40), the upper end of the pushing screw rod (41) is provided with a lower plate (44) through a threaded connection, and the lower plate (44) is installed on the lower end of the concave seat (31).
2. The remote temperature control module add-on mounting structure of claim 1, wherein, The inner plate (3) is in an arc shape.
3. The remote temperature control module add-on mounting structure of claim 1, wherein, The two ends of the inner plate (3) are provided with pressing plates (30), the steel belt (2) is located on the inner side of the pressing plates (30), and the pressing plates (30) are provided with rectangular holes.
4. The remote thermostatic module add-on mounting structure of claim 3, wherein, The inner wall of the pressing plate (30) is in an arc shape.
5. The remote thermostatic module add-on mounting structure of claim 1, wherein, The penetrating rods (34) are provided with guide concave parts (33), the steel belt (2) is provided in the guide concave parts (33), and the penetrating rods (34) are further provided with clamping nuts through a threaded connection, and the inner side of the clamping nuts is tightly clamped to the outer wall of the guide concave parts (33).