HR50 intelligent controller for heat exchange station

By introducing a combination of temperature sensor and micro-cooler into the HR50 intelligent controller, the problem of untimely Joule heat dissipation is solved, achieving effective cooling and stable operation of the controller and extending its service life.

CN121531690APending Publication Date: 2026-02-13NANJING HORBON ENERGY TECH CO LTD
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Patent Information

Application Number
CN202610057069.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-16
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

The existing HR50 intelligent controller generates Joule heat during operation, but the cooling effect is poor as the heat flows away through the through holes. This can lead to the controller failing to function properly or even burning out during peak periods.

Method used

A structure comprising a display panel, a housing, a cooling unit, a connecting strip, and a micro-cooler was designed. The controller temperature is detected by a temperature sensor to control the operation of the micro-cooler. The cold air undergoes internal heat exchange through heat exchange tubes to achieve timely discharge of Joule heat.

Benefits of technology

It effectively reduces the internal temperature of the controller, avoids malfunctions caused by high temperatures, and ensures the normal operation and service life of the controller.

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Abstract

The invention provides an HR50 intelligent controller for a heat exchange station, and belongs to the technical field of heat exchange stations, the HR50 intelligent controller comprises a display panel, the back of the display panel is provided with a shell, the shell is provided with an assembly cavity, a cooling unit, a connecting scarf joint strip, a connecting cover and a scarf joint unit arranged on the outer side of the shell, and the assembly cavity is reserved in the shell; a cooling unit is arranged at the bottom of the assembly cavity, an embedding strip is arranged on the side of the cooling unit, and a connecting cover movably connected with the embedding strip is fixedly connected to the outer portion of the shell. The HR50 intelligent controller solves the problems that an existing HR50 intelligent controller for the heat exchange station is not provided with a cooling structure, Joule heat generated during the working period of the controller flows away automatically only through through holes in the two sides for cooling, the cooling effect is poor, the Joule heat generated by the controller cannot be discharged in time, and the service life of the controller is prolonged. And the problem that the controller cannot work normally or even is burnt during the working peak period is solved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of heat exchange stations, and particularly relates to an HR50 intelligent controller for a heat exchange station. BACKGROUND

[0002] The heat exchange station is the core hub for heat exchange and transmission in the central heating system, and is widely used in urban residential areas, commercial complexes and industrial areas, etc. The operation stability and control accuracy of the heat exchange station directly determine the heating quality, user comfort and energy utilization efficiency. In the current process of accelerating urbanization and the background of the "double carbon" target, the central heating system puts forward higher requirements for the intelligentization, energy saving and operation convenience of the heat exchange station controller. The HR50 intelligent controller is an intelligent controller for a heat exchange station, which is used to automatically control the normal operation of the heat exchange station.

[0003] The existing HR50 intelligent controller for a heat exchange station does not have a cooling structure, and the joule heat generated during the operation of the controller only flows away through the through holes on both sides for cooling, the cooling effect is poor, and the joule heat generated by the controller cannot be discharged in time, which may cause the controller to fail to work normally or even burn out during the peak period of operation. SUMMARY

[0004] The application provides an HR50 intelligent controller for a heat exchange station, which aims to solve the problem that the existing HR50 intelligent controller for a heat exchange station does not have a cooling structure, and the joule heat generated during the operation of the controller only flows away through the through holes on both sides for cooling, the cooling effect is poor, and the joule heat generated by the controller cannot be discharged in time, which may cause the controller to fail to work normally or even burn out during the peak period of operation.

[0005] The application provides an HR50 intelligent controller for a heat exchange station, which comprises a display panel, the back of the display panel is provided with an outer shell, the outer shell is provided with an assembly cavity, a cooling unit, a connecting embedded strip, a connecting cover and an embedded unit arranged on the outer side of the outer shell, the outer shell is provided with the assembly cavity, the bottom of the assembly cavity is provided with the cooling unit, the side of the cooling unit is provided with the embedded strip, and the outer side of the outer shell is fixedly connected with the connecting cover which is movably connected with the embedded strip. The cooling unit comprises a cover body clamped in the opening of the assembly cavity, a plurality of heat exchange pipes are fixedly connected in the inner cavity of the cover body, a micro refrigerator is arranged on the outer side of the cover body, the two sides of the micro refrigerator are connected with the two ends of the plurality of heat exchange pipes through connecting pipes, a plurality of through holes are reserved on one side of the cover body in the assembly cavity, the assembly cavity and the inner cavity of the cover body are connected through the through holes, and a temperature sensor is fixedly connected to one side of the cover body in the assembly cavity.

[0006] Further, the embedded unit comprises an extension part, a rotating part and a vertical variable part. The extension part comprises a movable table, a movable column and an elastic piece one, the movable table is movably connected to the outer surface of the adapter cover and the embedded strip, the side wall of the movable table is fixedly connected to the movable column of the adapter cover, the outer surface of the movable column is fixedly connected to the elastic piece one of the side wall of the adapter cover; The rotating part comprises a rotating strip and an adapter strip, the outer surface of the movable table is rotatably connected to the rotating strip, the other side of the rotating strip is rotatably connected to the adapter strip, the lower end of the adapter strip is fixedly connected to the elastic piece two of the bottom wall of the adapter cover; The vertical variation part comprises a pulling strip and an adapter seat, the outer surface of the adapter strip is fixedly connected to the movable pulling strip of the outer surface of the adapter cover, one side of the movable column is movably connected to the outer surface of the shell, the outer surface of the shell and the adapter seat are reserved as sliding channels, the outer surface of the adapter seat is fixedly connected to the movable variation seat of the outer surface of the embedded strip, and the outer surface of the embedded strip and the adapter seat are reserved as embedded interfaces; The shell is provided with an unlocking unit, the lower end of the pulling strip is provided with an extension unit, the unlocking unit comprises a lead screw one rotatably connected to the inner wall of the shell, one side of the lead screw one is fixedly connected to a rotating table, the outer side of the lead screw one is movably connected to the active strip of the inner surface of the shell, the adapter channel is reserved at the joint of the inner surface of the shell and the active strip, the end of the active strip is fixedly connected to a linkage piece, one side of the linkage piece is rotatably connected to the rotating disc of the inner surface of the shell, one side of the linkage piece and the outer surface of the rotating disc are reserved as a plurality of teeth and are movably connected through the teeth, the center of the rotating disc is fixedly connected to the lead screw two rotatably connected to the side wall of the shell, the outer surface of the lead screw two is movably connected to the vertical variation strip of the side wall of the shell, and the side wall of the shell and the vertical variation strip are reserved as constraint interfaces; The extension unit comprises an extension strip, an elastic piece three and an adapter interface, the lower end of the pulling strip is fixedly connected to the movable extension strip of the inner surface of the vertical variation strip, the lower end of the extension strip is fixedly connected to the elastic piece three of the inner surface of the vertical variation strip, and the inner surface of the vertical variation strip and the extension strip are reserved as the adapter interface.

[0007] Further, the other side of the elastic piece one is fixedly connected to the inner surface of the adapter cover, the outer surface of the pressing part of the embedded strip and the movable table is arc-shaped, and the movable table is mirror-connected to the two sides of the embedded strip.

[0008] Further, the movable column and the elastic piece one are provided with a pair of each, the pair of movable columns and the elastic piece one are mirror-connected to the two sides of the embedded strip, the rotating strip forms a rotating structure through the active table and the adapter strip, and the rotating strip is mirror-connected to the two sides of the adapter strip.

[0009] Further, the embedded strip and the adapter cover are provided with two pairs of each, the two pairs of embedded strips and the adapter covers are mirror-connected to the two sides of the cooling unit, the embedded interface is arranged on the active path of the variation seat, and the embedded interface and the variation seat are matched with each other.

[0010] Further, the linkage piece mirror images are arranged on both sides of the movable strip, the central axis of the rotating disc and the central axis of the second screw are collinear, and the second screw passes through the linkage piece to form a rotating structure with the rotating disc and the shell.

[0011] Further, the adapter and the extension strip match each other.

[0012] The beneficial effects of the present application are: 1、The temperature sensor detects the temperature inside the controller, when the temperature inside the controller is detected to be high, the temperature sensor transmits a temperature signal to the chip, the chip controls the micro-refrigerator to work, the micro-refrigerator sends cold air to the heat exchange pipe through the connecting pipe, the heat exchange pipe exchanges heat, and the internal temperature is lowered, the gas after heat exchange returns to the micro-refrigerator through the connecting pipe on the other side to be refrigerated, so that the temperature inside the controller is controlled, the joule heat generated by the controller can be promptly removed, the internal temperature of the controller is prevented from being too high to cause the controller to work abnormally, and the service life of the controller is ensured.

[0013] 2、When the cooling unit needs to be assembled, in order to enhance the convenience of assembling the cooling unit between the shell, the embedded strip can be embedded into the adapter cover, and the cooling unit is embedded into the assembly cavity, after the embedded strip is embedded into the adapter cover, the pressure receiving part of the movable column and the elastic member one is arched, the movable column and the elastic member one are pressed and changed, and the rotating strip is driven to rotate, the rotation of the rotating strip drives the pulling strip to push up along the outer surface of the adapter cover through the arrangement of the elastic member two, until the embedded strip and the adapter of the movable column are flat, and the cooling unit and the shell are quickly embedded and assembled; When the embedded strip is embedded and assembled with the cooling unit, in order to enhance the firmness of the embedded strip after embedding, so as to prevent the elastic member from shaking due to shaking of the equipment during use, and moving the embedded strip, thereby enhancing the shaking degree of the cooling unit during use, when the movable column is pressed, the adapter seat is arranged to drive the moving seat to move along the inner surface of the slide at the same time, when the movable column moves back under the adapter of the elastic member one, the moving seat is driven to move back and forth, and the moving seat is embedded into the adapter after returning, so as to enhance the firmness of the embedded strip after embedding and assembling; When the maintenance is performed on the cooling unit, in order to achieve the unlocking of the embedded bars around the cooling unit, the rotating table is rotated through the rotation of the screw rod 1, the movable bar moves along the inner surface of the groove, the movement of the movable bar is achieved through the installation of the linkage piece, the rotating disc is rotated, the rotating disc drives the screw rod 2 to move along the side wall of the shell, and the vertical movement bar moves vertically along the inner surface of the restraint port, and under the cooperation of the extension bar, the pulling bar is pushed up, and the pushing up of the pulling bar drives the movable table and the movable column to move outward, so that the movable table and the embedded bar are separated, the unlocking of the cooling unit is achieved, and the unlocking of the two pairs of embedded bars is achieved at the same time. When the embedded bars are assembled on the cooling unit, in order to enhance the embedded bars and the movable table when the embedded bars are pressed, the pulling bar and the extension bar are pushed up through the installation of the elastic member 2, when the pulling bar is subjected to the pushing action through the installation of the rotating bar, the extension bar moves along the inner surface of the connecting port, and under the installation of the elastic member 3, the extension bar and the pulling bar are pushed up together, and the operation of the cooling unit during assembly is facilitated.

[0014] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the present application. The objects and other advantages of the present application can be achieved and obtained by the structure particularly pointed out in the description and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0015] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, illustrate embodiments of the present application, and are used to explain the present application, and do not constitute a limitation on the present application. In the drawings: Figure 1 It is a front perspective structure schematic view of the embodiment of the present application; Figure 2 It is a schematic view of the internal structure of the shell of the embodiment of the present application; Figure 3 It is a schematic view of the structure of the controller of the embodiment of the present application when the embedded unit is not assembled; Figure 4 It is a schematic view of the structure of the embedded unit and the cooling unit of the embodiment of the present application; Figure 5 It is a schematic view of the assembly structure of the embedded bar and the movable table of the embodiment of the present application; Figure 6 It is a schematic view of the assembly structure of the movable bar and the embedded port of the embodiment of the present application; Figure 7 It is a schematic view of the assembly structure of the linkage piece and the rotating disc of the embodiment of the present application; Figure 8 It is a schematic view of the assembly structure of the screw rod 2 and the vertical movement bar of the embodiment of the present application; Figure 9 This is a schematic diagram of the assembly cross-sectional structure of the vertical variable strip and extension strip according to an embodiment of the present invention; Reference numerals: 1. Display panel; 2. Housing; 3. Assembly cavity; 4. Cooling unit; 41. Cover; 42. Heat exchange tube; 43. Miniature refrigerator; 44. Connecting pipe; 45. Temperature sensor; 5. Inserting strip; 6. Connecting cover; 7. Movable platform; 8. Movable column; 9. Elastic element one; 10. Rotating strip; 11. Connecting strip; 12. Elastic element two; 13. Pulling strip; 14. Connecting seat; 15. Slide rail; 16. Variable seat; 17. Inserting interface; 18. Unlocking unit; 181. Lead screw one; 182. Turntable; 183. Movable strip; 184. Groove; 185. Linkage plate; 186. Rotating disk; 187. Lead screw two; 188. Vertical variable strip; 189. Constraint port; 19. Extension unit; 191. Extension strip; 192. Elastic element three; 193. Connecting port. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The same reference numerals in the drawings represent the same components. It should be noted that the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the described embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0017] Reference Figures 1-9 This invention proposes an HR50 intelligent controller for a heat exchange station, comprising a display panel 1, a housing 2 mounted on the back of the display panel 1, an assembly cavity 3, a cooling unit 4, a connecting strip 5, a connecting cover 6, and a connecting unit mounted on the outside of the housing 2. The assembly cavity 3 is reserved in the housing 2, the cooling unit 4 is mounted at the bottom of the assembly cavity 3, the connecting strip 5 is mounted on the side of the cooling unit 4, and the connecting cover 6, which is fixedly connected to the outside of the housing 2 and movably connected to the connecting strip 5, is also provided. The cooling unit 4 includes a cover 41 that engages with the opening of the assembly cavity 3. Several heat exchange tubes 42 are fixedly connected to the inner cavity of the cover 41. A miniature cooler 43 is installed on the outer side of the cover 41. The two sides of the miniature cooler 43 are connected to the two ends of the heat exchange tubes 42 via connecting pipes 44. Several through holes are reserved on one side of the cover 41 inside the assembly cavity 3. The assembly cavity 3 and the inner cavity of the cover 41 are connected via the through holes. A temperature sensor 45 is fixedly connected to one side of the cover 41 inside the assembly cavity 3. The temperature sensor 45, the miniature cooler 43 and the chip inside the controller are electrically connected. These are all existing technologies and will not be described in detail here.

[0018] Temperature sensor 45 detects the internal temperature of the controller. When the internal temperature of the controller rises, temperature sensor 45 transmits the temperature signal to the chip. The chip controls the micro-cooler 43 to work. The micro-cooler 43 sends cold air through connecting pipe 44 to heat exchange tube 42. Heat exchange tube 42 performs heat exchange and cools the internal temperature. The gas after heat exchange returns to the micro-cooler 43 through connecting pipe 44 on the other side for cooling. This achieves control of the internal temperature of the controller, avoids the controller from malfunctioning due to excessive internal temperature, and ensures the service life of the controller.

[0019] The interlocking unit includes an extension part, a rotating part, and a vertically variable part; The extension section includes a movable platform 7, a movable column 8, and an elastic element 9. The outer surface of the connecting strip 5 is movably installed in the connecting cover 6 and is in close contact with the movable platform 7. The movable column 8, which is movably connected to the connecting cover 6, is fixed to the side wall of the movable platform 7. The elastic element 9, which is fixed to the side wall of the connecting cover 6, is clamped to the outer surface of the movable column 8. The rotating part includes a rotating bar 10 and a connecting bar 11. The rotating bar 10 is screwed onto the outer surface of the movable table 7, and the connecting bar 11 is screwed onto the other side of the rotating bar 10. The lower end of the connecting bar 11 is fixedly connected to an elastic member 2 12 that is fixedly connected to the bottom wall of the connecting cover 6. The vertically variable part includes a pull bar 13 and a connecting seat 14. The pull bar 13 is fixedly connected to the outer surface of the connecting bar 11 and is movably connected to the outer surface of the connecting cover 6. One side of the movable column 8 is fixedly connected to the connecting seat 14, which is movably connected to the outer surface of the outer shell 2. A slide 15 is reserved at the connection between the outer surface of the outer shell 2 and the connecting seat 14. A variable seat 16 is fixedly connected to the outer surface of the connecting seat 14 and is movably connected to the outer surface of the inserting bar 5. An inserting interface 17 is reserved at the connection between the outer surface of the inserting bar 5 and the variable seat 16.

[0020] An unlocking unit 18 is installed in the outer casing 2, and an extension unit 19 is installed at the lower end of the pull bar 13. This allows for the rapid disassembly and assembly of the cooling unit 4 by installing the unlocking unit 18 inside the outer casing 2, and ensures the firmness of the cooling unit 4 after assembly. The extension unit 19 at the lower end of the pull bar 13 allows for the simultaneous disassembly of the cooling unit 4.

[0021] The other side of the elastic element 9 is fixed to the inner surface of the connecting cover 6. The outer surface of the pressing part of the interlocking strip 5 and the movable platform 7 is arched. The movable platform 7 is mirror-mounted on both sides of the interlocking strip 5 so that the connection is executed through the other side of the elastic element 9 and the inner surface of the connecting cover 6, thereby driving the movable column 8 to move back and forth under pressure along the inner surface of the connecting cover 6.

[0022] The movable column 8 and the elastic piece 1 are provided with a pair of mirror image on both sides of the embedded strip 5, the rotating strip 10 is connected between the movable table 7 and the connecting strip 11 to form a rotating structure, the rotating strip 10 is provided with a pair of mirror image on both sides of the connecting strip 11, the movable column 8 is connected between the embedded strip 5 and the movable table 7 and the connecting cover 6 to form a back and forth moving structure, so that when the embedded strip 5 presses the movable table 7, the movable column 8 moves along the connecting cover 6, and the moving seat 16 moves back and forth.

[0023] The embedded strip 5 and the connecting cover 6 are provided with two pairs of mirror image on both sides of the cooling unit 4, the embedded port 17 is provided on the moving path of the moving seat 16, the embedded port 17 and the moving seat 16 are matched with each other, the cooling unit 4 is connected between the embedded strip 5 and the movable table 7 and the shell 2 to form an embedded structure, so that when the embedded strip 5 is embedded with the movable table 7, the cooling unit 4 and the shell 2 are quickly assembled, and the cooling unit 4 is quickly assembled.

[0024] The unlocking unit 18 comprises a lead screw 181 rotatably connected in the inner wall of the shell 2, one side of the lead screw 181 is fixedly connected with a rotating table 182, the outer side of the lead screw 181 is movably connected with a movable strip 183 through screwing, the connecting position between the inner surface of the shell 2 and the movable strip 183 is provided with a groove 184, the end of the movable strip 183 is fixedly connected with a linkage piece 185, one side of the linkage piece 185 is provided with a rotating disc 186 rotatably connected with the inner surface of the shell 2, one side of the linkage piece 185 and the outer surface of the rotating disc 186 are provided with a plurality of toothed openings and are movably connected through the toothed openings, the center of the rotating disc 186 is fixedly connected with a lead screw 187 rotatably connected with the side wall of the shell 2, the outer surface of the lead screw 187 is movably connected with a vertical moving strip 188, the connecting position between the side wall of the shell 2 and the vertical moving strip 188 is provided with a constraint port 189, the vertical moving strip 188 is provided to ensure that the embedded strip 5 around the cooling unit 4 can be unlocked at the same time when the internal electronic elements of the cooling unit 4 or the controller are maintained, the rotating table 182 can be rotated, the lead screw 181 is driven to rotate, the movable strip 183 is driven to move along the inner surface of the groove 184, the linkage piece 185 is provided to drive the rotating disc 186 to rotate, the rotating disc 186 is driven to move along the side wall of the shell 2, the lead screw 187 is driven to move at the same time, the vertical moving strip 188 is driven to move vertically along the inner surface of the constraint port 189, and under the cooperation of the extending strip 191, the pulling strip 13 is driven to perform the upward pushing action, the upward pushing action of the pulling strip 13 drives the movable table 7 and the movable column 8 to move outward through the provision of the rotating strip 10, so that the movable table 7 and the embedded strip 5 are separated, the cooling unit 4 is quickly disassembled, and the two pairs of embedded strips 5 are unlocked at the same time.

[0025] The linkage piece 185 is symmetrically arranged on both sides of the movable strip 183, the central axis of the rotating disc 186 and the central axis of the screw rod 187 are collinear, the screw rod 187 passes through the linkage piece 185 and the rotating disc 186 and the shell 2 to form a rotating structure, the movable strip 183 passes through the screw rod 181 and the groove 184 to form a movable structure, through the rotation of the screw rod 181, the movable strip 183 is driven to move along the inner surface of the groove 184, the linkage piece 185 is driven to move simultaneously in extension or contraction, and then the screw rod 187 is simultaneously driven to rotate, so that the cooling unit 4 is quickly unlocked, and the two pairs of embedded strips 5 are simultaneously unlocked.

[0026] The extension unit 19 comprises an extension strip 191, an elastic member 192 and an abutment 193, the lower end of the pulling strip 13 is fixedly connected with the movable extension strip 191 on the inner surface of the vertical movable strip 188, the lower end of the extension strip 191 is fixedly connected with the elastic member 192 on the inner surface of the vertical movable strip 188, and the abutment 193 is reserved at the abutment position of the inner surface of the vertical movable strip 188 and the extension strip 191, the extension strip 191 is arranged so as to enhance the upward pushing of the pulling strip 13 and the extension strip 191 through the arrangement of the elastic member 192 when the embedded strip 5 is pressed against the embedded strip 5 and the movable table 7 during assembly of the cooling unit 4, when the pulling strip 13 is pushed upward through the abutment of the rotating strip 10, the extension strip 191 is driven to move along the inner surface of the abutment 193, and the arrangement of the elastic member 192 drives the extension strip 191 and the pulling strip 13 to move upward together, achieving the purpose of assisting the assembly of the cooling unit 4.

[0027] The abutment 193 and the extension strip 191 match each other, through the matching design of the abutment 193 and the extension strip 191, the purpose of assisting the assembly of the cooling unit 4 is achieved.

[0028] The specific implementation is that when the cooling unit 4 is assembled, in order to enhance the convenience of assembly of the cooling unit 4 and the shell 2, the embedded strip 5 is embedded into the abutment cover 6, and the cooling unit 4 is embedded into the assembly cavity 3, after the embedded strip 5 is embedded into the abutment cover 6, the pressure receiving part of the embedded strip 5 and the movable table 7 is arched, the movable column 8 and the elastic member 9 are pressed, and the rotating strip 10 is driven to rotate, through the arrangement of the elastic member 192, the pulling strip 13 is driven to move upward along the outer surface of the abutment cover 6, until the abutment part of the embedded strip 5 and the movable table 7 is flat, the cooling unit 4 and the shell 2 are quickly and embeddedly assembled. When the interlocking strip 5 is used to assemble the cooling unit 4, in order to enhance the firmness of the interlocking strip 5 after interlocking, and to prevent the elastic element from shaking due to the shaking of the equipment during use, causing the interlocking strip 5 to move together, thereby increasing the degree of shaking of the cooling unit 4 during use, when the movable column 8 is pressed, through the installation of the connecting seat 14, the movable seat 16 is driven to move along the inner surface of the slide 15 at the same time. When the movable column 8 returns to its original position under the connection of the elastic element 9, the movable seat 16 is driven to move back and forth together, and after returning to its original position, the movable seat 16 is interlocked into the interlocking interface 17, thereby enhancing the firmness of the connection of the interlocking strip 5 after interlocking assembly. When maintenance is required on the cooling unit 4, in order to unlock the interlocking strips 5 around the cooling unit 4, the rotating turntable 182 is rotated via the first screw 181, which pulls the movable strip 183 to move along the inner surface of the groove 184. The movement of the movable strip 183 is driven by the installation of the linkage plate 185, which pulls the rotating disk 186 to rotate. The rotation of the rotating disk 186 drives the second screw 187 to move along the side wall of the outer shell 2, and pulls the vertical moving strip 188 to move vertically along the inner surface of the constraint opening 189. With the cooperation of the extension strip 191, the pulling strip 13 is pulled to move upward. The upward movement of the pulling strip 13, through the installation of the rotating strip 10, drives the movable table 7 and the movable column 8 to move outward, so that the movable table 7 and the interlocking strips 5 are separated, thereby unlocking the cooling unit 4, so that both pairs of interlocking strips 5 can be unlocked at the same time. When the cooling unit 4 is assembled by the interlocking strip 5, in order to enhance the interlocking strip 5 and the movable table 7 during the compression interlocking, the installation of the elastic element 2 12 pushes the pulling strip 13 and the extension strip 191 together upward. When the pulling strip 13 is pushed upward by the installation of the rotating strip 10, the extension strip 191 moves along the inner surface of the joint 193. Furthermore, the installation of the elastic element 3 192 drives the extension strip 191 and the pulling strip 13 to push upward together, thereby assisting the cooling unit 4 during assembly. When the controller is working, the temperature sensor 45 detects the internal temperature of the controller. When the internal temperature of the controller rises, the temperature sensor 45 transmits the temperature signal to the chip. The chip controls the micro-cooler 43 to work. The micro-cooler 43 sends the cold air through the connecting pipe 44 to the heat exchange tube 42. The heat exchange tube 42 performs heat exchange and cools the internal temperature. The gas after heat exchange returns to the micro-cooler 43 through the connecting pipe 44 on the other side for cooling, thereby achieving the control of the internal temperature of the controller.

[0029] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. An HR50 intelligent controller for a heat exchange station, comprising a display panel, with a housing mounted on the back of the display panel, characterized in that, The outer shell is equipped with an assembly cavity, a cooling unit, a connecting strip, a connecting cover, and a connecting unit installed on the outside of the outer shell. An assembly cavity is reserved in the outer shell. A cooling unit is installed at the bottom of the assembly cavity. A connecting strip is installed on the side of the cooling unit. A connecting cover is fixed to the outside of the outer shell and movably connected to the connecting strip. The cooling unit includes a cover that snaps into the opening of the assembly cavity. Several heat exchange tubes are fixedly connected to the inner cavity of the cover. A miniature cooler is installed on the outer side of the cover. The two sides of the miniature cooler are connected to the two ends of several heat exchange tubes through connecting pipes. Several through holes are reserved on the side of the cover inside the assembly cavity. The assembly cavity and the inner cavity of the cover are connected through the through holes. A temperature sensor is fixedly connected to the side of the cover inside the assembly cavity.

2. The HR50 intelligent controller for a heat exchange station according to claim 1, characterized in that: The interlocking unit includes an extension section, a rotating section, and a vertically movable section; The extension section includes a movable platform, a movable column, and an elastic element. The outer surface of the connecting strip is movably installed in the connecting cover and is in close contact with the movable platform. The movable column, which is movably connected to the connecting cover, is fixed to the side wall of the movable platform. An elastic element, which is fixed to the side wall of the connecting cover, is clamped to the outer surface of the movable column. The rotating part includes a rotating bar and a connecting bar. The rotating bar is screwed onto the outer surface of the movable table, and the connecting bar is screwed onto the other side of the rotating bar. The lower end of the connecting bar is fixedly connected to an elastic element two that is fixedly connected to the bottom wall of the connecting cover. The vertical variable part includes a drag bar and a connecting seat. The drag bar is fixedly connected to the outer surface of the connecting bar and is movably connected to the outer surface of the connecting cover. One side of the movable column is fixedly connected to the connecting seat and is movably connected to the outer surface of the outer shell. A slide is reserved at the connection between the outer surface of the outer shell and the connecting seat. A variable seat is fixedly connected to the outer surface of the connecting seat and is movably connected to the outer surface of the inserting bar. An inserting interface is reserved at the connection between the outer surface of the inserting bar and the variable seat. An unlocking unit is installed inside the outer casing, and an extension unit is installed at the lower end of the pull bar. The unlocking unit includes a lead screw 1 screwed into the inner wall of the outer casing. One side of the lead screw 1 is fixed to a turntable. The outer side of the lead screw 1 is screwed to a movable bar that is movably connected to the inner surface of the outer casing. A groove is reserved at the connection between the inner surface of the outer casing and the movable bar. A linkage plate is fixed to the end of the movable bar. A rotating disk that is screwed to the inner surface of the outer casing is installed on the side of the linkage plate. Several teeth are reserved on one side of the linkage plate and the outer surface of the rotating disk and they are connected to each other through the teeth. A lead screw 2 screw that is rotatably connected to the side wall of the outer casing is fixed to the center of the rotating disk. A vertical moving bar that is movably connected to the side wall of the outer casing is connected to the outer surface of the lead screw 2 screw. A constraint opening is reserved at the connection between the side wall of the outer casing and the vertical moving bar. The extension unit includes an extension strip, an elastic element, and a connecting port. The lower end of the pulling strip is fixedly connected to the extension strip, which is movably connected to the inner surface of the vertical moving strip. The lower end of the extension strip is fixedly connected to the elastic element, which is fixedly connected to the inner surface of the vertical moving strip. A connecting port is reserved at the junction of the inner surface of the vertical moving strip and the extension strip.

3. The HR50 intelligent controller for a heat exchange station according to claim 2, characterized in that: The other side of the elastic element is fixed to the inner surface of the connecting cover. The outer surface of the joint where the insert strip presses against the movable table is arched. The movable table is mirror-mounted on both sides of the insert strip.

4. The HR50 intelligent controller for a heat exchange station according to claim 2, characterized in that: Each movable column and elastic element is installed in a pair, and the pair of movable columns and elastic elements are mirror images of each other on both sides of the connecting strip. The rotating strip forms a rotating structure through the movable table and the connecting strip, and the rotating strip is mirror images of each other on both sides of the connecting strip.

5. The HR50 intelligent controller for a heat exchange station according to claim 2, characterized in that: Two pairs of interlocking strips and connecting covers are installed, and the two pairs of interlocking strips and connecting covers are mirror images installed on both sides of the cooling unit. The interlocking interface is installed on the moving path of the variable seat, and the interlocking interface and the variable seat are matched with each other.

6. The HR50 intelligent controller for a heat exchange station according to claim 2, characterized in that: The linkage plate is mirror-mounted on both sides of the movable strip. The central axis of the rotating disk and the central axis of the lead screw are collinear. The lead screw, through the linkage plate, forms a rotating structure with the rotating disk and the outer shell.

7. The HR50 intelligent controller for a heat exchange station according to claim 2, characterized in that: The connector and extension strip match each other.

Citation Information

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