CN118040361B - Interface device of electric power data processing system - Google Patents

Interface device of electric power data processing system Download PDF

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Publication number
CN118040361B
CN118040361B CN202410444130.8A CN202410444130A CN118040361B CN 118040361 B CN118040361 B CN 118040361B CN 202410444130 A CN202410444130 A CN 202410444130A CN 118040361 B CN118040361 B CN 118040361B
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China
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interface
control box
data
power data
processing system
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CN118040361A (en
Inventor
刘杰
刘树华
杨喆
崔栩辉
林芳
沈盛
林英俊
于浩明
吴长龙
王志明
宋蕙慧
邵华强
刘景余
殷德惠
任伟
贾乐刚
刘萌
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Yantai Power Supply Co of State Grid Shandong Electric Power Co Ltd
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Yantai Power Supply Co of State Grid Shandong Electric Power Co Ltd
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Publication of CN118040361A publication Critical patent/CN118040361A/en
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Abstract

The invention discloses an interface device of an electric power data processing system, which relates to the technical field of electric power data processing systems and comprises the following components: the power data processing system comprises a processor, an external interface, an execution unit interface and a storage unit interface, wherein the external interface is connected with a temperature sensing unit and an external power data monitoring unit which are used for monitoring the temperature of each component in the processor, the execution unit interface is connected with a heat radiating unit which is used for radiating each component, the corresponding operation of the processor is used for controlling the work of the heat radiating unit and the like connected with the execution unit interface, and the heat is radiated for the power data processing system, so that the purpose of high-efficiency operation of the power data processing system is realized.

Description

Interface device of electric power data processing system
Technical Field
The invention relates to the technical field of power data processing systems, in particular to an interface device of a power data processing system.
Background
The electric power data has the characteristics of large volume, high real-time performance, strong timeliness, high social value and the like, in the electric power data asset transaction process, the electric power data is usually required to be priced, in the prior art, the electric power data is usually priced by adopting a cost method, and the electric power data asset value is determined by counting the cost in the data acquisition and application process. However, for massive power data, the cost method is difficult to comprehensively reflect all data characteristics of the power data, so that the pricing of the power data assets is inaccurate in certain application scenes, and the application of the power data is further hindered.
Therefore, in the prior art, a corresponding system is also arranged for reflecting all data characteristics of the power data, but the whole system needs to be connected with an external mechanism, a corresponding execution unit and a storage unit, so that the load is high, a large amount of heat is easy to generate, and the problems of system delay and the like are easy to cause when the heat is not discharged timely; to this end we provide a power data processing system interface device that solves the above problems.
Disclosure of Invention
The invention provides an interface device of a power data processing system, which solves the problems that in the prior art, corresponding systems are arranged for reflecting all data characteristics of power data, but the whole system needs to be connected with an external mechanism, a corresponding execution unit and a storage unit, has higher load, is easy to generate a large amount of heat, and is easy to cause system delay when the heat is not discharged timely.
In order to achieve the above object, the present invention provides an interface device for a power data processing system, comprising:
The power data processing system comprises a processor, an external interface, an execution unit interface and a storage unit interface, wherein the external interface, the execution unit interface and the storage unit interface are all arranged on the processor, the external interface is connected with a temperature sensing unit and an external power data monitoring unit which are used for monitoring the temperature of each component in the processor, the storage unit interface is connected with a database and stores power data and the temperature of each component in the database, and the execution unit interface is connected with a heat dissipation unit which is used for dissipating heat for each component;
the hardware module comprises a control box, a circuit main board and a data interface slot are arranged in the control box, a data interface is arranged on the surface of the control box, the data interface corresponds to the data interface slot and is connected with a data connection end in an inserting mode, a dustproof mechanism is arranged on the surface of the control box and comprises an outer cover, a spring, an extending groove and a filter plate, the outer cover is fixedly connected to the surface of the control box and is arranged around the outer ring of the data interface, the filter plate is slidably connected to the inner portion of the outer cover, the filter plates are provided with two filter plates, the two filter plates are mutually attached, the spring is also provided with two springs, the two springs are respectively fixedly connected to one surfaces of the two filter plates, which are far away from each other, one end of each spring is fixedly connected to the inner wall of the outer cover, the extending groove is arranged in the middle of the outer cover and is used for the data connection end to penetrate through, and inclined planes are arranged on the upper surfaces of the two filter plates.
As a further optimization of the scheme, rubber sealing gaskets are fixedly arranged on the surfaces, close to each other, of the two filter plates.
As a further optimization of the scheme, the elastic metal sheets are fixedly arranged on the surfaces, close to each other, of the two filter plates, and are attached to the upper surface of the rubber sealing gasket.
As a further optimization of the above solution, the data interface is provided with at least six.
As a further optimization of the scheme, a heat dissipation assembly is further arranged in the control box, the heat dissipation assembly comprises a radiator shell, a plurality of metal radiating fins are fixedly arranged on the lower surface of the radiator shell, a fan for a radiator is arranged in the radiator shell, an air outlet and an air inlet are formed in the control box, and the air inlet corresponds to the upper portion of the fan for the radiator.
As a further optimization of the scheme, a plurality of metal cooling fins are inserted and provided with six metal ventilating ducts, two ends of each metal ventilating duct penetrate through two sides of each metal cooling fin respectively, one end of each metal ventilating duct is used for being connected with an air supply soft pipeline, the other end of each metal ventilating duct is intensively communicated with an air inlet box, filter cotton blocks are arranged in the air inlet box, an air inlet groove corresponding to the air inlet box is formed in the control box, a fan is arranged on the air inlet box, and the air inlet box is fixedly mounted on the inner wall of the control box through screws.
As a further optimization of the scheme, the data interface slot is provided with a heat dissipation inlet and a heat dissipation outlet, an electromagnetic valve is arranged in the heat dissipation inlet, and the heat dissipation inlet is connected with one end, far away from the metal ventilating duct, of the air supply hose.
As a further optimization of the scheme, a partition plate is arranged in the control box, the partition plate divides the control box into two cavities, the heat dissipation assembly and the circuit main board are distributed in the same cavity, the air outlet corresponds to one side of the circuit main board, a plurality of temperature sensors are arranged on the inner wall of the control box, and the temperature sensors are respectively arranged at positions corresponding to the circuit main board or the data interface.
As a further optimization of the scheme, the partition plate is provided with a reserved heat dissipation hole for the air supply soft pipeline to pass through and a reserved wire hole for the wire to pass through.
As a further optimization of the scheme, the filter screen is fixedly arranged on the air inlet through the screws, and the cotton filter layer is fixedly attached to the inner side of the filter screen.
The interface device of the power data processing system has the following beneficial effects:
According to the interface device of the power data processing system, the operation of the radiating unit and the like connected with the interface of the execution unit is controlled through the corresponding operation of the processor, so that the power data processing system is radiated, and the purpose of high-efficiency operation of the power data processing system is achieved;
According to the interface device of the electric power data processing system, the dustproof mechanism is arranged on the surface of the control box, and based on the arrangement of the dustproof mechanism, the data interface can be kept in a dustproof state when the data interface is not inserted into the data connection end, so that the problems of heat dissipation reduction and poor contact caused by dust in the air entering the data interface are avoided;
According to the interface device of the electric power data processing system, the filter plate adopts the plate body structure with the holes, so that hot air and dust accumulated in the data interface or the data interface slot can be discharged through the holes when the subsequent heat dissipation is performed; under the condition that the data connection end is not connected in the data interface slot, ventilation is carried out to the data interface slot, so that dust in the data interface slot is blown outwards, and the dust in the data interface slot easily passes through the plate body with the holes due to the power of wind power;
according to the interface device of the electric power data processing system, when the data connecting end is inserted into the data interface, the rubber sealing gasket is attached to the outer surface of the data connecting end, so that the waterproof sealing effect is achieved, when the data connecting end and the data interface are in a slot connection state, external water stains and the like cannot enter through a gap between the data connecting end and the data interface to cause short circuit and the like, and the safety of a use state is ensured;
According to the interface device of the electric power data processing system, the corners of the bottom of the base part are pressed on the surfaces of the elastic metal sheets, so that the elastic metal sheets are bent downwards to deform to press the rubber sealing gasket to deform, the rubber sealing gasket deforms to the side close to the filter plate to avoid, the phenomenon that the upper surface of the rubber sealing gasket is easily peeled off when being directly pressed by vertical pressing force is avoided, and the service life of the rubber sealing gasket is prolonged.
Drawings
FIG. 1 is a schematic diagram of a power data processing system according to the present invention;
FIG. 2 is a schematic diagram of an interface device of a power data processing system according to the present invention;
FIG. 3 is a schematic diagram showing the wind direction flow during heat dissipation of the circuit board according to the present invention;
FIG. 4 is an enlarged schematic view of the structure A in FIG. 2 according to the present invention;
FIG. 5 is an enlarged schematic view of the structure of FIG. 2B according to the present invention;
FIG. 6 is a schematic diagram of the data connection and the data interface of the present invention when separated;
FIG. 7 is a schematic diagram of the structure of the data connection and the data interface of the present invention when they are inserted into each other;
FIG. 8 is an enlarged schematic view of the structure of FIG. 6C in accordance with the present invention;
Fig. 9 is a schematic structural diagram of a heat dissipating assembly according to the present invention.
In the figure: control box 1, data interface 2, data interface slot 3, data link 4, dustproof mechanism 5, radiator module 6, air intake 7, circuit board 8, baffle 9, reserved line hole 10, reserved louvre 11, temperature sensor 12, air supply soft duct 13, air outlet 14, filter screen 15, cotton filter layer 16, air inlet groove 17, air inlet box 18, filter cotton piece 19, metal ventilation duct 20, fan 21, heat dissipation outlet 22, dustcoat 23, spring 24, stretch-in groove 25, filter plate 26, heat dissipation inlet 27, solenoid valve 28, elastic metal sheet 29, rubber gasket 30, radiator housing 31, radiator fan 32, metal heat dissipation sheet 33.
Detailed Description
The present invention will be further described in detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent. It should be understood that the detailed description and specific examples, while indicating the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Referring to fig. 1-9 of the specification, the present invention provides a technical scheme: a power data processing system interface device, comprising: the power data processing system can conduct heat dissipation on various components in the hardware module in a targeted mode, and the purpose of efficient heat dissipation is achieved.
Specifically, the power data processing system comprises a processor, an external interface, an execution unit interface and a storage unit interface, wherein the external interface, the execution unit interface and the storage unit interface are all arranged on the processor, the external interface is connected with a temperature sensing unit and an external power data monitoring unit which are used for monitoring the temperature of each component in the processor, the storage unit interface is connected with a database and stores power data and the temperature of each component in the database, and the execution unit interface is connected with a heat dissipation unit which is used for dissipating heat for each component; when the external power data monitoring unit works, the external power data monitoring unit is used for monitoring all data characteristics of the power data, the external power data monitoring unit is used for transmitting the data to the database for storage after monitoring all data characteristics of the power data in real time after processing the data through the processor, and the operation of the heat radiating unit and the like connected with the interface of the execution unit is controlled through the corresponding operation of the processor, so that heat is radiated for the power data processing system, and the purpose of high-efficiency operation of the power data processing system is achieved.
The hardware module specifically comprises a control box 1, wherein at least six data interfaces 2 are arranged on the surface of the control box 1, and are respectively a main external interface, a standby external interface, an execution unit interface and a storage unit interface; considering the direct exposure type arrangement of the data interfaces 2 in the prior art, dust in the air easily enters each interface, so that the problem of poor heat dissipation at the interfaces is caused.
The data interface 2 is used for inserting the data connection end 4, a data interface slot 3 corresponding to the data interface 2 is arranged in the inner wall of the control box 1, and when the data connection end 4 is inserted in the data interface 2, the data connection end 4 is connected with the data interface slot 3, so that data transmission is realized.
Therefore, in the invention, the dustproof mechanism 5 is arranged on the surface of the control box 1, and the dustproof state can be kept at the data interface 2 when the data connection end 4 is not inserted at the data interface 2 based on the arrangement of the dustproof mechanism 5, so that the problems of poor heat dissipation and poor contact caused by the fact that dust in the air enters the data interface 2 are avoided.
When in actual use, the heating part on the control box 1 is mainly provided with the heat radiation assembly 6, the circuit main board 8 and the connection part of the data interface 2, therefore, the dustproof mechanism 5 is arranged at the position of the data interface 2, and the heat radiation effect of the data interface 2 can be fully ensured, so that the electric power data processing system works in a proper temperature range, and the phenomena of blocking, delay and the like are avoided.
The circuit board 8 is disposed in the control box 1, and the circuit board 8 is mainly an integrated circuit control element, and controls data transmission connected to the data interface 2, and the heat dissipation assembly 6 inside the control box 1 works.
The specific structure of the dustproof mechanism 5 comprises an outer cover 23, springs 24, extending grooves 25 and filter plates 26, wherein the outer cover 23 is fixedly connected to the surface of the control box 1 and is arranged around the outer ring of the data interface 2, the filter plates 26 are slidably connected inside the outer cover 23, the two filter plates 26 are mutually attached, the springs 24 are also arranged in two, the two springs 24 are respectively and fixedly connected to one surface of the two filter plates 26, which is far away from each other, one end of each spring 24, which is far away from each filter plate 26, is fixedly connected to the inner wall of the outer cover 23, the extending grooves 25 are arranged in the middle of the outer cover 23 and are used for the data connection ends 4 to pass through, and inclined surfaces are arranged on the upper surfaces of the two filter plates 26; when the data connection terminal 4 is inserted into the data interface 2, the data connection terminal 4 is abutted against the filter plates 26 to move, so that the two filter plates 26 shrink towards the inside of the outer cover 23, and the insertion of the data connection terminal 4 into the data interface 2 is not affected; when the data connection end 4 moves out of the data interface 2, the elastic force of the spring 24 drives the two filter plates 26 to be mutually adhered and blocked at the opening of the data interface 2, the aperture on the filter plates 26 is smaller, dust in air is prevented from entering the data interface 2, the dustproof effect is achieved, and the phenomenon that poor contact or reduced heat dissipation performance is caused by the influence of the dust when the data connection end 4 is inserted into the data interface 2 is avoided.
It should be noted that, the filter plate 26 may also be a filter cotton plate, so as to better filter dust and prevent water, and may be used according to actual requirements.
The filter plate 26 of the invention adopts a plate body structure with holes, so that hot air and dust accumulated in the data interface 2 or the data interface slot 3 can be discharged through the holes when the heat is dissipated later; under the condition that the data connecting end 4 is not connected in the data interface slot 3, ventilation is carried out in the data interface slot 3, so that dust in the data interface slot 3 is blown outwards, the dust in the data interface slot 3 easily passes through the plate body with the holes due to the power of wind power, the holes in the plate body can be arranged in a conical shape, the dust in the data interface slot 3 is discharged, and external dust is not easy to enter.
Further, the rubber sealing gasket 30 is fixedly arranged on one surfaces of the two filter plates 26, which are close to each other, and when the data connecting end 4 is inserted into the data interface 2, the rubber sealing gasket 30 is attached to the outer surface of the data connecting end 4, so that the waterproof sealing effect is achieved, and when the data connecting end 4 and the data interface slot 3 are in a connecting state, external water stains and the like cannot enter through a gap between the data connecting end 4 and the data interface 2 to cause short circuit and other problems, so that the safety of a using state is ensured.
Considering that the main body of the data connection terminal 4 in the prior art is generally provided with a metal connection part and a base part, and the width of the base part is larger than that of the metal connection part, when the data connection terminal 4 is inserted into the data interface 2, the bottom of the base part is not stopped until the bottom of the base part is attached to the surface of the control box 1, and because the width of the bottom of the data connection terminal 4 is larger, when the bottom corner of the data connection terminal 4 pushes the filter plate 26, the rubber gasket 30 is pressed against the end part of the filter plate 26, so that the rubber gasket 30 is easily peeled off from the end part of the filter plate 26, and the rubber gasket 30 is easily damaged, therefore, an elastic metal sheet 29 is fixedly arranged on the surface of the rubber gasket 30 on the surface of the two filter plates 26, and the elastic metal sheet 29 is attached to the upper surface of the rubber gasket 30.
In the invention, the heat dissipation component 6 is also arranged in the control box 1, and the heat dissipation component 6 is mainly used for dissipating heat at the circuit main board 8 and the data interface 2. The invention is based on improving the structure of the heat dissipation assembly 6, so that the heat dissipation assembly 6 has two heat dissipation modes, namely, the first heat dissipation mode: the heat dissipation device mainly carries out targeted heat dissipation for the circuit main board 8 with high heat generation, and the heat around the circuit main board 8 is isolated in an independent cavity by the partition board 9 arranged in the control box 1, so that the heat in the independent cavity can be rapidly discharged through the heat dissipation component 6, and the heat generated by the circuit main board 8 can not be enabled to act on the periphery of the data interface 2, so that a good heat dissipation effect can be achieved even if a low-power fan 32 for a radiator is used in the heat dissipation component 6.
The heat dissipation assembly 6 comprises a heat dissipation shell 31, a plurality of metal heat dissipation fins 33 are fixedly arranged on the lower surface of the heat dissipation shell 31, a fan 32 for a heat dissipation is arranged in the heat dissipation shell 31, an air outlet 14 and an air inlet 7 are arranged on the control box 1, and the air inlet 7 is correspondingly arranged above the fan 32 for the heat dissipation; during operation, the fan 32 for the radiator is started, external cold air enters gaps among the metal cooling fins 33 through the air inlet 7, heat in the cold air is absorbed by the metal cooling fins 33, so that the cold air is cooler, then the cold air enters the periphery of the circuit main board 8, heat around the circuit main board 8 is taken away from the air outlet 14, and a better heat dissipation effect is achieved.
The air outlet 14 is provided with a one-way valve to prevent external dust from entering the control box 1.
The second heat dissipation mode of the heat dissipation assembly 6 is realized based on the structural improvement of the data interface slot 3 and the heat dissipation assembly 6, and the specific improvement is as follows: the metal cooling fins 33 are inserted with metal ventilating ducts 20, the number of the metal ventilating ducts 20 is six, two ends of the metal ventilating ducts 20 respectively penetrate through two sides of the metal cooling fins 33, one end of each metal ventilating duct 20 is used for being connected with an air supply soft pipeline 13, the other ends of the metal ventilating ducts 20 are intensively communicated and arranged on an air inlet box 18, a filter cotton block 19 is arranged in the air inlet box 18, an air inlet groove 17 corresponding to the air inlet box 18 is arranged on the control box 1, a fan 21 is arranged on the air inlet box 18, and the air inlet box 18 is fixedly arranged on the inner wall of the control box 1 through screws; a heat radiation inlet 27 and a heat radiation outlet 22 are arranged on the data interface slot 3, an electromagnetic valve 28 is arranged in the heat radiation inlet 27, and the heat radiation inlet 27 is connected with one end of the air supply soft pipeline 13 far away from the metal ventilating pipeline 20; when the air conditioner works, the fan 21 is started, external cold air enters the metal ventilating duct 20 after being filtered by the filter cotton block 19 in the air inlet box 18, and heat in the cold air is sucked away by the plurality of metal cooling fins 33 and the metal ventilating duct 20, so that the cooled cold air is transferred to the corresponding data interface slot 3 for heat dissipation; when the data connection end 4 is inserted into the data interface slot 3, a certain heat dissipation gap is further formed between the bottom of the data interface slot 3 and the end part of the data connection end 4, and the cold air takes away heat in the heat dissipation gap and then is discharged through the heat dissipation outlet 22, so that the purpose of dissipating heat around the data interface 2 is achieved.
In the invention, the partition board 9 partitions the inside of the control box 1 into two cavities, the heat dissipation component 6 and the circuit main board 8 are distributed in the same cavity, and the air outlet 14 is corresponding to one side of the circuit main board 8.
Further, a plurality of temperature sensors 12 are installed on the inner wall of the control box 1, and the plurality of temperature sensors 12 are respectively installed at positions corresponding to the circuit main board 8 or the data interface 2; the temperature sensors 12 are temperature sensing units in the power data processing system, the temperature sensors 12 are respectively used for monitoring heat around the circuit main board 8 and each data interface 2, and transmitting the heat data information to the processor in real time, and after the heat data information acquired by the processor exceeds a set threshold value, the heat radiating unit is controlled: the radiator is started by the fan 32 or the fan 21 to radiate heat for the corresponding data interface 2 or the circuit main board 8, thereby achieving the purpose of accurate heat radiation and fully saving energy; and a mode of directly using a fan to radiate heat for the whole internal components of the control box 1 in the prior art is replaced.
Opening the corresponding solenoid valve 28 allows cold air to be delivered around the corresponding data interface 2.
Different problems can occur when fans are directly used for integrally radiating the components in the control box 1: firstly, enough wind power is needed to ensure the heat dissipation effect; secondly, heat can be uniformly spread to different components, so that the surface temperature of the components which are not easy to generate heat is high; therefore, based on the precise heat dissipation mode in the invention, the temperature use conditions and the energy saving effect of each component in the control box 1 are fully considered.
It should be noted that, the partition plate 9 is provided with a reserved heat dissipation hole 11 through which the air supply soft pipe 13 passes and a reserved wire hole 10 through which the wire passes, the number of the reserved wire holes 10 and the reserved heat dissipation holes 11 is adjusted according to actual requirements, in order to avoid the heat transfer between the two chambers, the partition plate 9 can use a heat insulation plate, and sealing rings are arranged in the reserved heat dissipation holes 11 and the reserved wire holes 10 for isolating the two chambers.
The air inlet 7 is fixedly provided with a filter screen 15 through bolts, and the inner side of the filter screen 15 is fixedly attached with a cotton filter layer 16; the wind power entering from the air inlet 7 can be filtered by the filter screen 15 and the cotton filter layer 16, dust can not be brought into the control box 1, the whole power data processing system is ensured to be used under the working condition of proper temperature, and the working efficiency of the system is improved.
It should be understood that the invention is not limited to the preferred embodiments, but is intended to cover modifications, equivalents, or alternatives falling within the spirit and principles of the invention.

Claims (4)

1. An electrical data processing system interface device, comprising:
The power data processing system comprises a processor, an external interface, an execution unit interface and a storage unit interface, wherein the external interface, the execution unit interface and the storage unit interface are all arranged on the processor, the external interface is connected with a temperature sensing unit and an external power data monitoring unit which are used for monitoring the temperature of each component in the processor, the storage unit interface is connected with a database and stores power data and the temperature of each component in the database, and the execution unit interface is connected with a heat dissipation unit which is used for dissipating heat for each component;
The hardware module comprises a control box (1), wherein a circuit main board (8) and a data interface slot (3) are arranged in the control box (1), a data interface (2) is arranged on the surface of the control box (1), the data interface (2) corresponds to the data interface slot (3) and is connected with a data connection end (4) in an inserting mode, a dustproof mechanism (5) is arranged on the surface of the control box (1), the dustproof mechanism (5) comprises an outer cover (23), a spring (24) and a stretching-in groove (25) and a filter plate (26), the outer cover (23) is fixedly connected to the surface of the control box (1) and is arranged around the outer ring of the data interface (2), the filter plate (26) is connected inside the outer cover (23) in a sliding mode, the two filter plates (26) are mutually attached, the two springs (24) are also arranged on one surfaces of the two filter plates (26) which are far away from each other, one end of each other, which is fixedly connected to the inner wall of the outer cover (23), and the two ends of each filter plate (24) which are extended into the groove (23) are fixedly connected with the inner wall of the filter plate (23), and the two filter plates (4) which are connected with the middle surfaces which are arranged through the inclined surfaces;
Rubber sealing gaskets (30) are fixedly arranged on the surfaces, close to each other, of the two filter plates (26);
An elastic metal sheet (29) is fixedly arranged on one surface of each filter plate (26) close to each other, and the elastic metal sheet (29) is attached to the upper surface of the rubber sealing gasket (30);
The control box (1) is also provided with a heat radiation assembly (6), the heat radiation assembly (6) comprises a radiator shell (31), a plurality of metal radiating fins (33) are fixedly arranged on the lower surface of the radiator shell (31), a fan (32) for a radiator is arranged in the radiator shell (31), the control box (1) is provided with an air outlet (14) and an air inlet (7), and the air inlet (7) is correspondingly arranged above the fan (32) for the radiator;
The novel air conditioner comprises a plurality of metal cooling fins (33), wherein metal ventilation pipelines (20) are inserted in the metal cooling fins (33), six metal ventilation pipelines (20) are arranged, two ends of each metal ventilation pipeline (20) penetrate through two sides of each metal cooling fin (33) respectively, one end of each metal ventilation pipeline (20) is used for being connected with an air supply soft pipeline (13), the other ends of the metal ventilation pipelines (20) are arranged on an air inlet box (18) in a concentrated and communicated mode, filter cotton blocks (19) are arranged in the air inlet box (18), an air inlet groove (17) corresponding to the air inlet box (18) is formed in the control box (1), a fan (21) is arranged on the air inlet box (18), and the air inlet box (18) is fixedly arranged on the inner wall of the control box (1) through screws;
a heat radiation inlet (27) and a heat radiation outlet (22) are arranged on the data interface slot (3), an electromagnetic valve (28) is arranged in the heat radiation inlet (27), and the heat radiation inlet (27) is connected with one end, far away from the metal ventilation pipeline (20), of the air supply soft pipeline (13);
the inside of control box (1) is provided with baffle (9), the inside of baffle (9) with control box (1) separates into two cavitys, radiator unit (6) and circuit board (8) distribute in same cavity, air outlet (14) correspond in one side of circuit board (8), install a plurality of temperature sensor (12) on the inner wall of control box (1), a plurality of temperature sensor (12) are installed respectively in the position that corresponds circuit board (8) or data interface (2).
2. A power data processing system interface device as claimed in claim 1, wherein: the data interface (2) is provided with at least six.
3. A power data processing system interface device as claimed in claim 1, wherein: the partition plate (9) is provided with a reserved heat dissipation hole (11) for passing through an air supply soft pipeline (13) and a reserved wire hole (10) for passing through a wire.
4. A power data processing system interface device as claimed in claim 1, wherein: the air inlet (7) is fixedly provided with a filter screen (15) through a screw, and a cotton filter layer (16) is fixedly attached to the inner side of the filter screen (15).
CN202410444130.8A 2024-04-15 2024-04-15 Interface device of electric power data processing system Active CN118040361B (en)

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