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CN209856065U - Intelligent brushless fan driving system - Google Patents

Intelligent brushless fan driving system Download PDF

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Publication number
CN209856065U
CN209856065U CN201920189406.7U CN201920189406U CN209856065U CN 209856065 U CN209856065 U CN 209856065U CN 201920189406 U CN201920189406 U CN 201920189406U CN 209856065 U CN209856065 U CN 209856065U
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driver
control
connector
hall sensor
line
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CN201920189406.7U
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Chinese (zh)
Inventor
伍虫
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Taishan City Kexinte Motor Products Co Ltd
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Taishan City Kexinte Motor Products Co Ltd
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Abstract

The utility model belongs to brushless fan drive field specifically is an intelligence brushless fan actuating system, including driver, hall sensor, control box, mounting panel, the driver rear side is provided with hall sensor, the motor line sets up the driver with between the hall sensor the driver passes through the motor line connect in hall sensor, the motor line with be provided with the motor line joint between the driver, the motor line with motor line joint interference fit, the power cord sets up motor line one side, the power connection sets up the power cord with between the driver, the power cord with power connection interference fit. Through the utility model discloses rational in infrastructure, easy operation, convenient to use adopts full automatic processing mode, can effectively make reaction and warning when the problem appears in the improvement circuit, adopts wireless and effective two kinds of alarm forms, effectual alarm information that sends.

Description

Intelligent brushless fan driving system
Technical Field
The utility model belongs to brushless fan drive field specifically is a relate to a brushless fan actuating system of intelligence.
Background
The main kinetic energy of the brushless fan comes from the brushless motor, and the brushless direct current motor consists of a motor main body and a driver, and is a typical electromechanical integrated product. Because the brushless DC motor is operated in a self-control mode, a starting winding is not additionally arranged on a rotor like a synchronous motor which is started under the condition of heavy load under the condition of frequency conversion and speed regulation, and oscillation and step-out can not be generated when the load suddenly changes. The permanent magnet of the brushless DC motor with medium and small capacity is mostly made of rare earth neodymium iron boron material with high magnetic energy level. Therefore, the volume of the rare earth permanent magnet brushless motor is reduced by one machine seat number compared with that of a same-capacity three-phase asynchronous motor.
However, the existing brushless fan driving system is controlled by a driver and a controller, when the brushless fan generates current abnormal motion or dynamic instability, the brushless fan can only be simply powered off, effective alarming and reminding cannot be performed, and if the driver is damaged at the same time, the situation that the fan cannot stop working continuously to cause motor damage is possible.
Disclosure of Invention
An object of the utility model is to provide an intelligence brushless fan actuating system.
The utility model discloses the technical scheme who adopts as follows:
an intelligent brushless fan driving system comprises a driver, a Hall sensor, a control box and a mounting plate, wherein the Hall sensor is arranged on the rear side of the driver;
the motor line is arranged between the driver and the Hall sensor, the model of the driver is DBL-4820R, the model of the Hall sensor is DHR200C5, the driver is connected to the Hall sensor through the motor line, a motor line connector is arranged between the motor line and the driver, the motor line is in interference fit with the motor line connector, a power line is arranged on one side of the motor line, a power connector is arranged between the power line and the driver, the power line is in interference fit with the power connector, a second control connector is arranged on one side of the motor line connector, a control line is arranged at the rear end of the motor line connector, a second signal connector is arranged on one side of the second control connector, the LED state lamp is arranged on one side of the second signal connector, and the signal line is arranged at the rear end of the second signal connector;
the rear end of the Hall sensor is provided with a brushless fan, the Hall sensor is connected with the Hall sensor through a screw, an encoder is arranged on one side of the brushless fan, the type of the encoder is OVW2-25-2MHC, the encoder is connected with the brushless fan through a screw, one side of the control line is provided with the control box, a control panel is arranged on the control box, three state display screens are arranged on one side of the control panel, a buzzer is arranged on the front side of the state display screens, a first control joint is arranged between the control line and the control box, a first signal joint is arranged between the signal line and the control box, the mounting plate is arranged in the control box, a single chip microcomputer is arranged at the upper end of the mounting plate, the type of the single chip microcomputer is SH79F1615, and a wireless communicator is arranged on one side of the single chip, the wireless communicator model is S0805C, and the treater sets up the singlechip front end, the treater model is BGA548, and the memory is installed the treater front end, the memory model is HY5DU561622ETP-D43, the control box passes through the control line signal line connect in the driver.
Preferably: the storage, the treater the wireless communicator the singlechip pass through the screw connection in the mounting panel, the material of mounting panel is polyethylene.
So set up, the mounting panel plays fixed and installation effect, has guaranteed connection stability through screwed connection.
Preferably: the mounting plate is connected to the control box through screws, and the specification of the control box is 30cm 15cm 5 cm.
So set up, the control box plays the guard action, has guaranteed connection stability through screwed connection.
Preferably: the control panel the state display screen is inlaid in the control box, and the buzzer is connected with the control box through screws.
So set up, control panel plays demonstration and control action, inlays the connection and has guaranteed the leakproofness.
Preferably: the control line and the first control connector are in interference fit, and the signal line and the first signal connector are in interference fit.
So set up, the control line the signal line plays transmission signal effect, and interference fit guarantees connection stability.
Preferably: the LED state lamp is embedded in the driver, and the power supply connector, the motor wire connector, the second control connector and the second signal connector are connected to the driver through screws.
So set up, the LED status light plays the prompt action, power connection the motor line joint the second control connects the second signal joint plays the connection effect, has guaranteed joint strength through the screw connection.
Preferably: the processor is connected with the singlechip, the wireless communicator, the memory, the control panel and the driver through wires, the singlechip is connected with the state display screen, the buzzer and the driver through wires, the driver is connected with the Hall sensor and the encoder through wires, and the Hall sensor is connected with the brushless fan through wires.
So set up, the treater plays control and processing effect, connects in each electrical components through the wire, has guaranteed information processing's ageing nature.
The utility model has the advantages that:
1. the structure is reasonable, the operation is simple, and the use is convenient;
2. a full-automatic processing mode is adopted, so that the effect of effectively making a response and giving an alarm when a problem occurs in a circuit is improved;
3. adopt wireless and effective two kinds of alarm forms, effectual alarm information that sends.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic structural diagram of an intelligent brushless fan driving system according to the present invention;
fig. 2 is a schematic diagram of an internal structure of a control box of an intelligent brushless fan driving system according to the present invention;
fig. 3 is a schematic structural diagram of a driver of an intelligent brushless fan driving system according to the present invention;
fig. 4 is a block diagram of a circuit structure of an intelligent brushless fan driving system according to the present invention.
The reference numerals are explained below:
1. a driver; 2. a Hall sensor; 3. a brushless fan; 4. an encoder; 5. a control box; 6. a control panel; 7. a buzzer; 8. a status display screen; 9. a power line; 10. a motor wire; 11. a control line; 12. a signal line; 13. a first control joint; 14. a first signal connector; 15. mounting a plate; 16. a single chip microcomputer; 17. a wireless communicator; 18. a processor; 19. a memory; 20. a power supply connector; 21. a motor wire connector; 22. a second control joint; 23. a second signal connector; 24. an LED status light.
Detailed Description
The present invention will be further described with reference to the following examples and drawings.
Example 1
As shown in fig. 1-4, an intelligent brushless fan driving system includes a driver 1, a hall sensor 2, a control box 5, and a mounting plate 15, where the hall sensor 2 is disposed at the rear side of the driver 1, the driver 1 plays a driving role, and the hall sensor 2 plays a control role;
the motor wire 10 is arranged between the driver 1 and the Hall sensor 2, the motor wire 10 plays a role of signal transmission, the driver 1 is connected with the Hall sensor 2 through the motor wire 10, a motor wire connector 21 is arranged between the motor wire 10 and the driver 1, the motor wire connector 21 plays a role of connection, the motor wire 10 is in interference fit with the motor wire connector 21, the power wire 9 is arranged at one side of the motor wire 10, the power wire 9 plays a role of electric power transmission, the power connector 20 is arranged between the power wire 9 and the driver 1, the power connector 20 plays a role of connection, the power wire 9 is in interference fit with the power connector 20, the second control connector 22 is arranged at one side of the motor wire connector 21, the second control connector 22 plays a role of connection, the control wire 11 is arranged at the rear end of the motor wire connector 21, the control wire 11 plays a role of signal transmission, the second signal connector 23 is arranged at one side of the second control connector, the LED status light 24 plays a role in reminding, and the signal wire 12 is arranged at the rear end of the second signal connector 23;
the rear end of the Hall sensor 2 is provided with a brushless fan 3, the brushless fan 3 works, the Hall sensor 2 is connected with the Hall sensor 2 through screws, an encoder 4 is arranged on one side of the brushless fan 3, the encoder 4 performs detection, the encoder 4 is connected with the brushless fan 3 through screws, one side of a control line 11 is provided with a control box 5, the control box 5 performs protection, a control panel 6 is arranged on the control box 5, three state display screens 8 are arranged on one side of the control panel 6, the state display screens 8 perform display, a buzzer 7 is arranged on the front side of the state display screens 8, the buzzer 7 performs alarm, a first control joint 13 is arranged between the control line 11 and the control box 5, a first signal joint 14 is arranged between a signal line 12 and the control box 5, a mounting plate 15 is arranged inside the control box 5, a single chip microcomputer 16 is arranged on the upper end of the mounting plate 15, a wireless communicator 17 is arranged, the processor 18 is arranged at the front end of the singlechip 16, the memory 19 is arranged at the front end of the processor 18, and the control box 5 is connected to the driver 1 through the control line 11 and the signal line 12.
The working principle is as follows: the device is powered on, programs are written into a processor 18 by an external control panel 6, the processor 18 controls a singlechip 16, the singlechip 16 transmits electric signals to a driver 1 through a control line 11, the driver 1 transmits signals to a Hall sensor 2 through a motor line 10, so that a brushless fan 3 is started, after the brushless fan 3 is started, an encoder 4 feeds back the motion state of the brushless fan 3 to the driver 1 in real time, the driver 1 feeds back signals to the singlechip 16 and the processor 18 through the control line 11 and a signal line 12, the singlechip 16 displays the real-time state on a state display screen 8, when the Hall sensor 2 and the encoder 4 detect abnormal signals, the driver 1 transmits alarm signals to the singlechip 16, the singlechip 16 transmits the signals to a buzzer 7 and the processor 18, the processor 18 controls a wireless communicator 17 to transmit the signals to a user terminal, meanwhile, the alarm signal and the data are stored in the memory 19, the singlechip 16 and the processor 18 both adopt the existing electronic equipment, the singlechip 16 is used for transmitting the control signal output by the processor 18 to the driver 1, and the driver 1 is used for receiving signals fed back by the hall sensor 2 and the encoder 4, wherein the driver 1 can be an existing conventional terminal device, the signal transmitting and receiving principles of the processor 18 and the single chip microcomputer 16 are in the prior art, and therefore, will not be described in detail herein, in the present invention, the processor 18 and the single chip microcomputer 16 control the signal processing according to a preset program, and as long as there is an input signal, the corresponding output signal can be obtained, and then the output signal is sent out through the driver 1 to complete the operation, when the models of the processor 18 and the single chip microcomputer 16 are definite, the operation programs are determined.
Example 2
This example differs from example 1 in that:
memory 19, treater 18, wireless communicator 17, singlechip 16 pass through screw connection in mounting panel 15, and the material of mounting panel 15 is polyethylene, and mounting panel 15 plays fixed and installation effect, has guaranteed connection stability through screwed connection.
The preferred embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the knowledge of those skilled in the art.

Claims (7)

1. The utility model provides an intelligence brushless fan actuating system which characterized in that: the device comprises a driver (1), a Hall sensor (2), a control box (5) and a mounting plate (15), wherein the Hall sensor (2) is arranged on the rear side of the driver (1);
the motor line (10) is arranged between the driver (1) and the Hall sensor (2), the driver (1) is connected with the Hall sensor (2) through the motor line (10), a motor line connector (21) is arranged between the motor line (10) and the driver (1), the motor line (10) and the motor line connector (21) are in interference fit, a power line (9) is arranged on one side of the motor line (10), a power connector (20) is arranged between the power line (9) and the driver (1), the power line (9) and the power connector (20) are in interference fit, a second control connector (22) is arranged on one side of the motor line connector (21), a control line (11) is arranged at the rear end of the motor line connector (21), and a second signal connector (23) is arranged on one side of the second control connector (22), the LED state lamp (24) is arranged on one side of the second signal connector (23), and the signal wire (12) is arranged at the rear end of the second signal connector (23);
the rear end of the Hall sensor (2) is provided with a brushless fan (3), the Hall sensor (2) is connected with the Hall sensor (2) through a screw, an encoder (4) is arranged on one side of the brushless fan (3), the encoder (4) is connected with the brushless fan (3) through a screw, one side of a control line (11) is provided with the control box (5), a control panel (6) is installed on the control box (5), three state display screens (8) are arranged on one side of the control panel (6), a buzzer (7) is installed on the front side of the state display screens (8), a first control joint (13) is arranged between the control line (11) and the control box (5), a first signal joint (14) is arranged between the signal line (12) and the control box (5), and the installation plate (15) is arranged inside the control box (5), installing panel (15) upper end is provided with singlechip (16), and wireless communicator (17) set up singlechip (16) one side, and treater (18) set up singlechip (16) front end, memory (19) are installed treater (18) front end, control box (5) pass through control line (11) signal line (12) connect in driver (1).
2. The intelligent brushless fan drive system of claim 1, wherein: the storage (19), the processor (18), the wireless communicator (17) and the single chip microcomputer (16) are connected to the mounting plate (15) through screws, and the mounting plate (15) is made of polyethylene.
3. The intelligent brushless fan drive system of claim 2, wherein: the mounting plate (15) is connected to the control box (5) through screws, and the specification of the control box (5) is 30cm by 15cm by 5 cm.
4. The intelligent brushless fan drive system of claim 3, wherein: control panel (6) state display screen (8) inlay in control box (5), buzzer (7) through the screw connection in control box (5).
5. The intelligent brushless fan drive system of claim 4, wherein: the control wire (11) is in interference fit with the first control joint (13), and the signal wire (12) is in interference fit with the first signal joint (14).
6. The intelligent brushless fan drive system of claim 5, wherein: the LED state lamp (24) is embedded in the driver (1), and the power connector (20), the motor wire connector (21), the second control connector (22) and the second signal connector (23) are connected to the driver (1) through screws.
7. The intelligent brushless fan drive system of claim 6, wherein: the intelligent control device is characterized in that the processor (18) is connected with the single chip microcomputer (16), the wireless communicator (17), the memory (19), the control panel (6) and the driver (1) through wires, the single chip microcomputer (16) is connected with the state display screen (8), the buzzer (7) and the driver (1) through wires, the driver (1) is connected with the Hall sensor (2) and the encoder (4) through wires, and the Hall sensor (2) is connected with the brushless fan (3) through wires.
CN201920189406.7U 2019-02-11 2019-02-11 Intelligent brushless fan driving system Active CN209856065U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920189406.7U CN209856065U (en) 2019-02-11 2019-02-11 Intelligent brushless fan driving system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920189406.7U CN209856065U (en) 2019-02-11 2019-02-11 Intelligent brushless fan driving system

Publications (1)

Publication Number Publication Date
CN209856065U true CN209856065U (en) 2019-12-27

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ID=68931471

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920189406.7U Active CN209856065U (en) 2019-02-11 2019-02-11 Intelligent brushless fan driving system

Country Status (1)

Country Link
CN (1) CN209856065U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114508499A (en) * 2021-12-22 2022-05-17 中国大唐集团新能源科学技术研究院有限公司 Fan health degree early warning system based on big data of unit operation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114508499A (en) * 2021-12-22 2022-05-17 中国大唐集团新能源科学技术研究院有限公司 Fan health degree early warning system based on big data of unit operation
CN114508499B (en) * 2021-12-22 2024-01-09 大唐可再生能源试验研究院有限公司 Fan health degree early warning system based on big data of unit operation

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