CN219179814U - Cabinet temperature control device and monitoring system - Google Patents
Cabinet temperature control device and monitoring system Download PDFInfo
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- CN219179814U CN219179814U CN202223144020.5U CN202223144020U CN219179814U CN 219179814 U CN219179814 U CN 219179814U CN 202223144020 U CN202223144020 U CN 202223144020U CN 219179814 U CN219179814 U CN 219179814U
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Abstract
The utility model discloses a cabinet temperature control device and a monitoring system, comprising: the temperature control box comprises a cabinet body, a refrigerating device arranged in the cabinet body and a temperature control box arranged outside the cabinet body, wherein a temperature sensor, a temperature controller and a central processing unit are sequentially connected in the box body of the temperature control box, a display and a temperature control probe are arranged outside the box body, and the temperature control probe is electrically connected with the temperature sensor; the temperature control box is connected to the cabinet body through an assembly part, the assembly part comprises a fixed rod and a lifting rod arranged on the fixed rod, a data transmission line is arranged in the fixed rod, the fixed rod can fix the temperature control box on the cabinet body and penetrates through the cabinet body to be connected to the refrigerating device, the lifting rod is arranged in the cabinet body, and the temperature control probe is arranged on the lifting rod; the lifting rod comprises a lifting part and a rotating part, the temperature control probe is controlled to conduct omnibearing monitoring in the cabinet body through the lifting part and the rotating part, and temperature data monitored by the temperature control probe are returned to the temperature sensor and displayed on the display.
Description
Technical Field
The utility model relates to the field of cabinet heat dissipation, in particular to a cabinet temperature control device and a monitoring system.
Background
The general area of base station computer lab is less, and the space is airtight relatively, and communication exchange equipment calorific capacity is great in the computer lab, and sensible heat ratio is very high in the base station computer lab, generally needs refrigeration all the year round, and the heat dissipation problem of high heat density computer lab air conditioner rack generally exists at present, and the refrigerating unit only dispels the heat to whole computer lab, can not dispel the heat to specific rack, can not adapt to the different heat density of rack yet, and intelligent adjustment each terminal capacity becomes difficult problem, leads to the unit power consumption big, and unit operation control adaptability is relatively poor, can't realize automatic control.
Bulletin number: CN204119711U discloses an integrated cabinet of machine room and refrigerating device, and specifically discloses the following features: the back wall of the first shell is provided with a first temperature sensor for detecting the temperature of air flow, the outlet end of the copper pipe is provided with a second temperature sensor, under the action of the fan in the second shell, the air flow of the hot channel passes through the air flow inlet arranged on the back wall of the first shell, the first temperature sensor measures the temperature of the air flow passing through the first shell, and the running speed of the fan is regulated according to the temperature displayed by the first temperature sensor, so that the problem of automatic control and heat dissipation of the cabinet is solved, but an external worker still cannot learn the internal condition of the cabinet, and the problem that the cabinet cannot work normally due to the fact that the temperature in the cabinet is too high can still exist in time in the use process.
So a cabinet temperature control device and a monitoring system are provided at present to solve the technical problem.
Disclosure of Invention
The utility model overcomes the defects of the prior art and provides a cabinet temperature control device and a monitoring system.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a cabinet temperature control device and monitoring system, comprising: the temperature control box comprises a box body, a temperature sensor, a temperature controller and a central processing unit, wherein the temperature sensor, the temperature controller and the central processing unit are arranged in the box body and are sequentially connected, a display and a temperature control probe are arranged outside the box body, and the temperature control probe is electrically connected with the temperature sensor;
the temperature control box is connected to the cabinet body through an assembly part, the assembly part comprises a fixed rod and a lifting rod arranged on the fixed rod, a data transmission line is arranged in the fixed rod, the fixed rod can fix the temperature control box to the cabinet body and is connected to the refrigerating device through the cabinet body, the lifting rod is arranged in the cabinet body, and the temperature control probe is arranged on the lifting rod;
the lifting rod comprises a lifting part and a rotating part, the temperature control probe is controlled to conduct omnibearing monitoring in the cabinet body through the lifting part and the rotating part, and temperature data monitored by the temperature control probe are returned to the temperature sensor and displayed on the display.
In a preferred embodiment of the utility model, the lifting part comprises a micro motor and a primary lifting rod which is connected with the micro motor in a matching way, a spring is arranged in the primary lifting rod, a secondary lifting rod is connected to the spring, and the temperature control probe is arranged on the secondary lifting rod.
In a preferred embodiment of the present utility model, a rotating ball is disposed on the secondary lifting rod, and an annular plate is disposed on the temperature control probe, and the annular plate can be coated on the rotating ball and rotate along the rotating ball.
In a preferred embodiment of the present utility model, the refrigerating device includes a fan and a driver for driving the fan to operate, and the fixing rod is connected to the driver, so that a data transmission line of the fixing rod is electrically connected with the driver.
In a preferred embodiment of the present utility model, a temperature adjusting key is further disposed on the outer surface of the temperature control box, the temperature adjusting key is disposed below the display, and the temperature adjusting key can be used for setting a temperature.
In a preferred embodiment of the present utility model, a cabinet door is disposed at one side of the cabinet body, and a handle is disposed on the cabinet door.
In a preferred embodiment of the present utility model, one side of the display is provided with two indicator lamps, which are respectively yellow and red.
In a preferred embodiment of the utility model, a monitoring system formed by a cabinet temperature control device, the temperature control probe is in signal connection with a data transmission line arranged in a fixed rod through a cable arranged in a lifting rod, the temperature control probe transmits temperature data to the temperature sensor, the temperature sensor transmits the data to a central processing unit, the central processing unit analyzes the data and controls the temperature controller to work, and the temperature controller receives an instruction to control a fan driver to work through the data transmission line.
In a preferred embodiment of the present utility model, a fixed value of temperature can be input into the cpu through a temperature adjustment key, and when the temperature in the cabinet body exceeds the fixed value, the temperature controller increases the operating power of the driver.
In a preferred embodiment of the present utility model, the indicator light is electrically connected to the temperature sensor, and the yellow light is turned on when the temperature exceeds the fixed temperature value by less than 20 ℃, and the red light is turned on when the temperature exceeds the fixed temperature value by 20 ℃.
The utility model solves the defects existing in the background technology and has the following advantages
The beneficial effects are that:
(1) According to the utility model, the temperature control box is arranged outside the cabinet body, and the temperature control probe outside the temperature control box is connected with the temperature sensor in the temperature control box, so that the temperature in the cabinet can be monitored in real time, and the temperature is displayed in a digital mode through the display, so that an operator can master the temperature information in the cabinet at any time, and the problem that the cabinet cannot work normally due to the fact that the temperature in the cabinet is too high and cannot be processed in time is avoided.
(2) The temperature control device is also provided with a temperature control key, the temperature of the cabinet is set through the temperature control key, when the temperature information acquired by the temperature control probe is compared with the set temperature range and exceeds the set temperature range, the temperature controller adjusts the running speed of the fan of the refrigerating device through the data transmission line, so that the temperature in the cabinet is reduced, the stability of the temperature of the cabinet is ensured, and the safety performance of the cabinet is improved.
Drawings
The utility model is further described below with reference to the drawings and examples;
FIG. 1 is a perspective view of a cabinet in accordance with a preferred embodiment of the present utility model;
fig. 2 is a diagram showing a connection structure of a temperature control box and a refrigerating device according to a preferred embodiment of the present utility model;
FIG. 3 is a diagram showing the construction of the connection between the lifter and the temperature control probe according to the preferred embodiment of the present utility model;
fig. 4 is a structural diagram of a monitoring system of a preferred embodiment of the present utility model.
In the figure: 1. a cabinet body; 2. a refrigerating device; 3. a temperature control box; 31. a display; 32. a temperature control probe; 33. a fixed rod; 34. a lifting rod; 340. a primary lifting rod; 341. a second-stage lifting rod; 342. a spring; 343. a rotating ball; 344. an annular plate; 35. a temperature adjusting key; 36. an indicator light; 4. a cabinet door; 5. a handle; 6. a blower.
Detailed Description
The utility model will now be described in further detail with reference to the drawings and examples, which are simplified schematic illustrations of the basic structure of the utility model, which are presented only by way of illustration, and thus show only the structures that are relevant to the utility model.
As shown in fig. 1-2, a cabinet temperature control device and a monitoring system, comprising: the cabinet body 1 and set up the refrigerating plant 2 and set up the control by temperature change box 3 outside cabinet body 1 in cabinet body 1, a serial communication port, control by temperature change box 3 includes the box body and sets up temperature sensor, temperature controller, the central processing unit that connects gradually in the box body, be provided with display 31 and temperature control probe 32 outside the box body, temperature control probe 32 and temperature sensor electricity are connected, control by temperature change box 3 passes through the assembly part and connects on cabinet body 1, the assembly part includes dead lever 33 and lifter 34 of setting on dead lever 33, be provided with the data transmission line in the dead lever 33, the dead lever 33 can fix control by temperature change box 3 on cabinet body 1, and pass cabinet body 1 and connect on refrigerating plant 2, lifter 34 sets up in cabinet body 1, temperature control probe 32 sets up on lifter 34, temperature data that temperature control probe 32 monitored returns in the temperature sensor and shows on display 31 simultaneously.
Through set up temperature control box 3 outside cabinet body 1, through being connected the temperature control probe 32 outside the temperature control box 3 with the temperature sensor in the temperature control box 3, can carry out real-time monitoring to the temperature in the rack to show the temperature through display 31 with the mode of digit, can make operating personnel grasp the temperature information in the rack constantly, avoided the too high unable timely processing of temperature in the rack, lead to the unable normal work's of rack problem.
In a preferred embodiment of the present utility model, the refrigerating apparatus 2 includes a fan 6 and a driver for driving the fan 6 to operate, the fixing rod 33 is connected to the driver to electrically connect a data transmission line thereof with the driver, and the temperature control box 3 is further provided with a temperature adjusting key 35 on an outer surface thereof, the temperature adjusting key 35 is disposed below the display 31, and the temperature adjusting key 35 can be used for setting a temperature.
Temperature setting is carried out on the cabinet through the temperature regulating key 35, when temperature information acquired by the temperature control probe 32 is compared with a set temperature range, and when the temperature exceeds the set temperature range, the temperature controller adjusts the running speed of the fan 6 of the refrigerating device 2 through the data transmission line, so that the temperature in the cabinet is reduced, the stability of the temperature of the cabinet is ensured, and the safety performance of the cabinet is improved.
In a preferred embodiment of the utility model, a cabinet door 4 is arranged at one side of the cabinet body, and a handle 5 is arranged on the cabinet door 4, so that the inside of the cabinet can be maintained conveniently.
As shown in fig. 3, the temperature control probe 32 is disposed on the lifting rod 34, the lifting rod 34 includes a lifting portion and a rotating portion, the lifting portion includes a micro motor and a primary lifting rod 340 connected with the micro motor in a matching manner, a spring 342 is disposed in the primary lifting rod 340, a secondary lifting rod 341 is connected to the spring 342, the temperature control probe 32 is disposed on the secondary lifting rod 341, a rotating ball 342 is disposed on the secondary lifting rod 341, an annular plate 344 is disposed on the temperature control probe 32, the annular plate 344 can be coated on the rotating ball 342 and rotate along the rotating ball 342, the temperature control probe 32 is controlled to perform omnibearing monitoring in the cabinet body 1 through the lifting portion and the rotating portion, and a temperature detection effect is enhanced.
As shown in fig. 4, the temperature control probe 32 is connected with a data transmission line formed in the fixed rod 33 through a cable arranged in the lifting rod 34, the temperature control probe 32 transmits temperature data to a temperature sensor, the temperature sensor transmits the data to a central processing unit, the central processing unit analyzes the data and controls the temperature controller to work, the temperature controller receives an instruction to control the fan 6 driver to work through a data transmission line, a fixed value temperature value can be input into the central processing unit through a temperature adjusting key 35, and when the temperature in the cabinet body 1 exceeds the fixed value, the temperature controller increases the working power of the driver.
Through using temperature control device cooperation refrigerating plant 2, not only can monitor the warning immediately when the temperature anomaly appears in the rack, prevent abnormal conditions, can adjust the inside temperature of rack immediately moreover, avoid the too high influence rack performance of rack temperature.
In a preferred embodiment of the present utility model, one side of the display 31 is provided with two indication lamps 36, wherein the indication lamps 36 are respectively yellow and red, the indication lamps 36 are electrically connected with the temperature sensor, when the fixed temperature value is less than 20 ℃ and exceeded, the yellow lamp is turned on, and when the temperature value is 20 ℃ and exceeded, the red lamp is turned on, so that the most visual warning of the temperature in the cabinet is facilitated.
When the temperature control probe 32 monitors that the temperature is higher than a set value, the temperature control probe 32 automatically rises through the primary lifting rod 340, the miniature motor drives the compression spring 342 in the primary lifting rod 340 to spring, meanwhile, the secondary lifting rod 341 is jacked to drive the temperature control probe 32 to further detect data in the cabinet, the temperature control probe 32 rotates towards all directions under the action of the rotating ball 342 in the detection process, so that the temperature in the cabinet is detected more comprehensively, the detected data are transmitted back to the temperature sensor, the temperature sensor transmits the data to the central processor, the central processor compares the acquired data with the set data, the temperature controller is controlled to work according to the range value, and the temperature controller receives instructions to control the fan 6 to work through the data transmission line.
When the temperature in the cabinet is smaller than the set range value, the temperature control probe 32 monitors at the initial position, the temperature controller does not work, the refrigerating device 2 works normally according to the original set value, so that energy consumption is reduced, when the temperature exceeds the fixed temperature value and is smaller than 20 ℃, the yellow lamp is lighted, when the temperature exceeds the temperature value and is 20 ℃, the red lamp is lighted, a worker closes the power supply in the cabinet, and opens the cabinet door 4 to check the interior of the cabinet, and in the use process of the cabinet, the display 31 always displays the temperature value in the cabinet.
The above-described preferred embodiments according to the present utility model are intended to suggest that, from the above description, various changes and modifications can be made by the person skilled in the art without departing from the scope of the technical idea of the present utility model. The technical scope of the present utility model is not limited to the description, but must be determined according to the scope of claims.
Claims (10)
1. A cabinet temperature control device comprising: the cabinet body, the refrigerating device arranged in the cabinet body and the temperature control box arranged outside the cabinet body are characterized in that,
the temperature control box comprises a box body, a temperature sensor, a temperature controller and a central processing unit, wherein the temperature sensor, the temperature controller and the central processing unit are arranged in the box body and are sequentially connected, a display and a temperature control probe are arranged outside the box body, and the temperature control probe is electrically connected with the temperature sensor;
the temperature control box is connected to the cabinet body through an assembly part, the assembly part comprises a fixed rod and a lifting rod arranged on the fixed rod, a data transmission line is arranged in the fixed rod, the fixed rod can fix the temperature control box to the cabinet body, the fixed rod penetrates through the cabinet body and is connected to the refrigerating device, the lifting rod is arranged in the cabinet body, and the temperature control probe is arranged on the lifting rod;
the lifting rod comprises a lifting part and a rotating part, the temperature control probe is controlled to conduct omnibearing monitoring in the cabinet body through the lifting part and the rotating part, and temperature data monitored by the temperature control probe are returned to the temperature sensor and displayed on the display.
2. The cabinet temperature control device of claim 1, wherein: the lifting part comprises a micro motor and a primary lifting rod matched and connected with the micro motor, a spring is arranged in the primary lifting rod, a secondary lifting rod is connected to the spring, and the temperature control probe is arranged on the secondary lifting rod.
3. The cabinet temperature control device of claim 2, wherein: be provided with the rotating ball on the second grade lifter, be provided with the annular plate on the temperature control probe, the annular plate can cladding in on the rotating ball and follow the rotating ball rotates.
4. The cabinet temperature control device of claim 1, wherein: the refrigerating device comprises a fan and a driver for driving the fan to work, and the fixed rod is connected with
The data transmission line is electrically connected to the driver.
5. The cabinet temperature control device of claim 1, wherein: the outer surface of the temperature control box is also provided with a temperature regulating key, the temperature regulating key is arranged below the display, and the temperature regulating key can be used for setting temperature.
6. The cabinet temperature control device of claim 1, wherein: the cabinet is characterized in that a cabinet door is arranged on one side of the cabinet body, and a handle is arranged on the cabinet door.
7. The cabinet temperature control device of claim 1, wherein: one side of the display is provided with two indicating lamps which are respectively yellow and red.
8. The cabinet temperature control device of claim 7, wherein: the indicator light is electrically connected with the temperature sensor, and when the temperature exceeds a fixed temperature value and is smaller than 20 ℃, the yellow light is turned on, and when the temperature exceeds the fixed temperature value and is 20 ℃, the red light is turned on.
9. A monitoring system formed by a cabinet temperature control device according to any one of claims 1-8, wherein: the temperature control probe is in signal connection with a data transmission line arranged in the fixed rod through a cable arranged in the lifting rod, the temperature control probe transmits temperature data to the temperature sensor, the temperature sensor transmits the data to the central processing unit, the central processing unit analyzes the data and controls the temperature controller to work, and the temperature controller receives an instruction to control the fan driver to work through the data transmission line.
10. The monitoring system formed by a cabinet temperature control device of claim 9, wherein: and a fixed value temperature value can be input into the central processing unit through a temperature regulating key, and when the temperature in the cabinet body exceeds the fixed value temperature, the temperature controller increases the working power of the driver.
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CN202223144020.5U CN219179814U (en) | 2022-11-25 | 2022-11-25 | Cabinet temperature control device and monitoring system |
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CN202223144020.5U CN219179814U (en) | 2022-11-25 | 2022-11-25 | Cabinet temperature control device and monitoring system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117215350A (en) * | 2023-11-07 | 2023-12-12 | 四川旌峰新材料有限公司 | Intelligent temperature control system and temperature control method for reaction kettle |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN117215350A (en) * | 2023-11-07 | 2023-12-12 | 四川旌峰新材料有限公司 | Intelligent temperature control system and temperature control method for reaction kettle |
CN117215350B (en) * | 2023-11-07 | 2024-01-23 | 四川旌峰新材料有限公司 | Intelligent temperature control system and temperature control method for reaction kettle |
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