CN218735344U - Controller and vehicle with same - Google Patents

Controller and vehicle with same Download PDF

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Publication number
CN218735344U
CN218735344U CN202221994430.6U CN202221994430U CN218735344U CN 218735344 U CN218735344 U CN 218735344U CN 202221994430 U CN202221994430 U CN 202221994430U CN 218735344 U CN218735344 U CN 218735344U
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China
Prior art keywords
liquid cooling
liquid
controller
shell
control board
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Active
Application number
CN202221994430.6U
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Chinese (zh)
Inventor
张匡辉
韩冰
杨武
钟全思
丁斌磊
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BYD Co Ltd
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BYD Co Ltd
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Priority to CN202221994430.6U priority Critical patent/CN218735344U/en
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Abstract

The utility model discloses a controller and have its vehicle, controller include first control panel, shell and at least one center, and the shell includes: the liquid cooling device comprises a cover plate and a shell, wherein the shell is fixedly connected with the cover plate, a first control panel is arranged in the shell, a first liquid cooling cavity is formed in the shell, the first liquid cooling cavity is connected with a first liquid inlet interface and a first liquid outlet interface, at least one middle frame is arranged between the shell and the cover plate, a mounting groove is formed in the middle frame, the middle frame and the shell can be fixedly connected with another middle frame through the mounting groove, and a second liquid cooling cavity is formed in the middle frame. In this way, by arranging the middle frame, the middle frame is provided with the mounting groove which can be connected with other middle frames and the shell, so that the controller can be provided with at least one middle frame according to requirements, the controller has high expansibility, and the applicability of the controller is improved.

Description

Controller and vehicle with same
Technical Field
The utility model belongs to the technical field of the vehicle technique and specifically relates to a controller and have its vehicle is related to.
Background
In the prior art, a controller in a vehicle is generally provided with a heat dissipation device, and the heat dissipation device and the controller are generally of an integrated structure, so that the expandability is poor.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least. For this reason, an object of the present invention is to provide a controller having better scalability.
Another object of the present invention is to provide a vehicle, wherein the controller is disposed in the vehicle.
According to the utility model discloses controller, include: a first control panel, a housing, and at least one center, the housing comprising: apron and casing, the casing with apron fixed connection, first control panel set up in the casing, the casing is formed with first liquid cooling chamber, first liquid cooling chamber is connected with first feed liquor interface and first play liquid interface, at least one the center set up in the casing with between the apron, be equipped with the mounting groove on the center, one the center with the shell all can pass through mounting groove and another center fixed connection, the center is formed with and is formed with the second liquid cooling chamber.
According to the utility model discloses the controller through being equipped with the center, because be equipped with on the center and can carry out the mounting groove of being connected with other center and shell to make the controller can be connected with at least one center according to the demand setting, so that the controller has higher expansibility, thereby promotes the suitability of controller.
In some embodiments, further comprising: the installation department, the installation department with the mounting groove cooperation is connected, the installation department is located on the center, just the installation department with the mounting groove branch is located the relative both sides of center, and/or, the installation department is located on the shell.
In some embodiments, the housing comprises: the main shell is fixedly connected with the cover plate, a first liquid cooling groove is formed in the main shell, and the first liquid cooling cover is arranged on the main shell and covers the first liquid cooling groove to form a first liquid cooling cavity; and/or the middle frame comprises: main frame and second liquid Leng Gai, the main frame is formed with the second liquid cooling groove, second liquid Leng Gai set up in on the main frame and lid establish the second liquid cooling groove, in order to form the second liquid cooling chamber.
In some embodiments, the main housing is provided with a first heat exchange protrusion protruding into the first liquid cooling tank; and/or the main frame is provided with a second heat exchange bulge protruding into the second liquid cooling groove.
In some embodiments, the first heat exchanging protrusions are multiple and are arranged at intervals in the first liquid cooling groove; and/or the second heat exchange bulges are multiple and are arranged in the second liquid cooling groove at intervals.
In some embodiments, the main housing is provided with a first water retaining rib in the first liquid cooling tank; and/or the main frame is provided with a second water retaining rib in the second liquid cooling groove.
In some embodiments, further comprising: at least one second control panel, at least one the second control panel set up one-to-one in at least one the center, second liquid cooling chamber is connected with second feed liquor interface and second play liquid interface.
In some embodiments, the first liquid inlet port and the first liquid outlet port are disposed on the same side wall of the casing, the second liquid inlet port and the second liquid outlet port are disposed on the same side wall of the middle frame, the first liquid inlet port and the second liquid inlet port are disposed at an upper and a lower interval, and the first liquid outlet port and the second liquid outlet port are disposed at an upper and a lower interval.
In some embodiments, a first chip is disposed on the first control plate, and a projection area of the first liquid cooling cavity on the first control plate is smaller than a surface area of the first control plate and covers the first chip in a projection manner; and/or a second chip is arranged on the second control board, and the projection area of the second liquid cooling cavity on the second control board is smaller than the surface area of the second control board, and the second chip is covered by projection.
According to the utility model discloses vehicle, include: a controller as claimed in any one of the preceding claims.
According to the utility model discloses the vehicle is equipped with as above shown controller in owing to being equipped with in the vehicle, is equipped with the casing through the outside at first control panel, because the first liquid cooling chamber has been built on the casing to make first control panel produced heat can transmit first liquid cooling chamber and dispel the heat at the operation in-process, thereby reduce the service temperature of first control panel, promote the performance of first control panel, so that the controller has higher performance in order to satisfy the user demand, with the performance that promotes the vehicle.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic structural diagram of a controller according to an embodiment of the present invention;
fig. 2 is an exploded schematic view of a controller according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a controller according to another embodiment of the present invention;
fig. 4 is an exploded schematic view of a controller according to another embodiment of the present invention;
fig. 5 is a schematic structural diagram of a controller according to another embodiment of the present invention.
Reference numerals:
the control unit (10) is provided with a controller,
the first control board 100, the first connector 110, the first chip 120,
the shell 200, the cover plate 210, the housing 220, the first liquid cooling chamber 221, the first liquid inlet port 222, the first liquid outlet port 223, the main housing 224, the first liquid cooling cover 225, the first liquid cooling tank 226, the first heat exchanging protrusion 227, the first water retaining rib 228,
a middle frame 300, a second liquid cooling cavity 301, a second liquid inlet interface 302, a second liquid outlet interface 303, a main frame 310, a second liquid cooling cover 320, a second liquid cooling groove 330, a second heat exchange bulge 340, a second water blocking rib 350,
the second control board 400, the second connector 410, the second chip 420,
a mounting groove 510 and a mounting part 520.
Detailed Description
Embodiments of the present invention are described in detail below, and the embodiments described with reference to the drawings are exemplary.
A controller 10 according to an embodiment of the present invention is described below with reference to fig. 1-5, including: a first control panel 100, a housing 200, and at least one center frame 300.
Specifically, the housing 200 includes: apron 210 and casing 220, casing 220 and apron 210 fixed connection, first control panel 100 sets up in casing 220, casing 220 is formed with first liquid cooling chamber 221, first liquid cooling chamber 221 is connected with first feed liquor interface 222 and first play liquid interface 223, at least one center 300 sets up between casing 220 and apron 210, be equipped with mounting groove 510 on the center 300, a center 300 and shell 200 all can be through mounting groove 510 and another center 300 fixed connection, center 300 is formed with and is formed with second liquid cooling chamber 301.
It can be understood that, in the use of the controller 10 of the embodiment of the present invention, the first control board 100 is suitable for providing computing power to output the control command, and the housing 220 is disposed outside the first control board 100, because the housing 220 is provided with the first liquid cooling cavity 221, the first liquid cooling cavity 221 is disposed corresponding to the first control board 100, the heat generated by the first control board 100 in the use process is suitable for being transferred to the first liquid cooling cavity 221 for heat dissipation, so as to reduce the use temperature of the first control board 100, and improve the use performance of the first control board 100.
Meanwhile, the controller 10 is further adapted to be provided with a middle frame 300 and a second control board 400, the middle frame 300 is adapted to be stacked on the housing 200, so that the second liquid cooling cavity 301 on the middle frame 300 is adapted to be correspondingly arranged on the outer side of the second control board 400, thereby reducing the use temperature of the second control board 400 and improving the use performance of the second control board 400.
Moreover, the housing 220 is disposed outside the first control board 100, and the first liquid cooling cavity 221 is formed on the housing 220, so that heat generated by the first control board 100 during operation can be transferred to the first liquid cooling cavity 221 for heat dissipation, thereby reducing the use temperature of the first control board 100, and improving the use performance of the first control board 100, so that the controller 10 has higher use performance to meet the use requirement. In addition, since the middle frame 300 can be disposed in the controller 10, the controller 10 can be expanded by the middle frame 300, so as to improve the usability of the controller 10, and the controller 10 has higher applicability.
According to the utility model discloses controller 10, through being equipped with center 300, because be equipped with on the center 300 and can carry out the mounting groove 510 of being connected with other center 300 and shell 200 to make controller 10 can be connected with at least one center 300 according to the demand setting, so that controller 10 has higher expansibility, thereby promotes controller 10's suitability.
In some embodiments, as shown in fig. 2 and 4, the housing 220 includes: the main shell 224 is fixedly connected with the cover plate 210, a first liquid cooling tank 226 is formed on the main shell 224, and the first liquid cooling cover 225 is arranged on the main shell 224 and covers the first liquid cooling tank 226 to form a first liquid cooling chamber 221; and/or the middle frame 300 includes: the main frame 310 is provided with a second liquid cooling groove 330, and the second liquid cooling cover 320 is disposed on the main frame 310 and covers the second liquid cooling groove 330 to form a second liquid cooling chamber 301.
It can be understood that the main housing 224 is provided with a first liquid cooling tank 226, and the first liquid cooling tank 226 is adapted to circulate a cooling liquid, so that the first liquid cooling tank 226 forms a first liquid cooling chamber 221 to provide heat dissipation performance for the first control board 100 after the first liquid cooling cover 225 is connected to the main housing 224.
Similarly, the second liquid cooling tank 330 is disposed on the main frame 310, and a circulation channel for circulating the cooling liquid is disposed in the second liquid cooling tank 330, so that the second liquid cooling tank 330 forms the second liquid cooling chamber 301 to provide heat dissipation performance to the second control board 400 after the second liquid cooling cover 320 is connected to the main frame 310.
Meanwhile, the main shell 224 and the first liquid cooling cover 225, and the main frame 310 and the second liquid cooling cover 320 are connected by welding, so that the connection process of the main shell 224 and the first liquid cooling cover 225, and the connection process of the main frame 310 and the second liquid cooling cover 320 are simplified, and the connection between the main shell 224 and the first liquid cooling cover 225, and the connection between the main frame 310 and the second liquid cooling cover 320 are more reliable.
In some embodiments, as shown in fig. 2 and 4, the main shell 224 is provided with a first heat exchange protrusion 227 protruding into the first liquid-cooled tank 226; and/or the main frame 310 is provided with a second heat exchange protrusion 340 protruding into the second liquid cooling bath 330.
Like this, through be equipped with the first heat transfer arch 227 of protrusion setting in first liquid-cooling groove 226, first heat transfer arch 227 can reduce the velocity of flow of coolant liquid in first liquid-cooling groove 226 to let the heat transfer performance of coolant liquid higher, in order to promote the heat dispersion of shell 200 to first control panel 100. Similarly, through the second heat exchange protrusion 340 protruding in the second liquid cooling groove 330, the second heat exchange protrusion 340 can reduce the flow rate of the cooling liquid in the second liquid cooling groove 330, so that the heat exchange performance of the cooling liquid is higher, the heat dissipation performance of the middle frame 300 on the second control board 400 is improved, and the use performance of the controller 10 is improved.
In some embodiments, as shown in fig. 2 and 4, the first heat exchanging protrusions 227 are multiple and are spaced apart in the first liquid cooling groove 226; and/or the second heat exchanging protrusion 340 is a plurality of protrusions spaced apart from each other in the second liquid cooling tank 330.
It can be understood that the first heat exchanging protrusion 227 provided in the first liquid cooling groove 226 is provided in plurality, so that the first heat exchanging protrusion 227 can lower the flow rate of the cooling liquid circulating in the first liquid cooling chamber 221, so that the heat exchanging performance of the cooling liquid can be more reliably applied to the first control plate 100, so that the temperature of the use environment of the first control plate 100 is lower, and the use performance of the first control plate 100 is improved. Similarly, the second heat exchanging protrusions 340 disposed on the second liquid cooling groove 330 are disposed in a plurality of numbers, so as to improve the heat exchanging performance of the first liquid cooling groove 226, and improve the usability of the second control board 400.
In some embodiments, as shown in fig. 2 and 4, the main housing 224 is provided with a first water bar 228 within the first liquid-cooled tank 226; and/or the main frame 310 is provided with a second water blocking rib 350 inside the second liquid cooling tank 330. Like this, first manger plate muscle 228 is suitable for and cuts apart the feed liquor side and the play liquid side of first liquid-cooling groove 226, avoids the coolant liquid directly to discharge from first liquid-cooling groove 226 after entering into first liquid-cooling groove 226, lets the coolant liquid can more reliably exchange the heat on first control panel 100 to promote first control panel 100's performance. Similarly, second fender water muscle 350 is suitable for and cuts apart the feed liquor side and the play liquid side of second liquid cooling groove 330, avoids the coolant liquid directly to discharge from second liquid cooling groove 330 after entering into second liquid cooling groove 330, lets the coolant liquid can more reliably exchange the heat on second control panel 400 to promote second control panel 400's performance, thereby promote controller 10's performance.
In some embodiments, as shown in fig. 4, the controller 10 further comprises: at least one second control panel 400, at least one second control panel 400 are arranged in at least one middle frame 300 in a one-to-one correspondence manner, and the second liquid cooling cavity 301 is connected with a second liquid inlet interface 302 and a second liquid outlet interface 303. It should be noted that the first control board 100 and the second control board 400 are suitable to have the same structure and function, so as to facilitate the construction and production of the first control board 100 and the second control board 400, so that the second control board 400 can be connected with the first control board 100 in an expansion manner, thereby improving the usability of the controller 10.
In some embodiments, as shown in fig. 2 and fig. 4, the first liquid inlet port 222 and the first liquid outlet port 223 are disposed on the same side wall of the casing 220, the second liquid inlet port 302 and the second liquid outlet port 303 are disposed on the same side wall of the middle frame 300, the first liquid inlet port 222 and the second liquid inlet port 302 are disposed at an upper and lower interval, and the first liquid outlet port 223 and the second liquid outlet port 303 are disposed at an upper and lower interval. It can be understood that, by disposing the first liquid inlet port 222 and the first liquid outlet port 223 on the same side wall, the liquid inlet and outlet of the first liquid cooling chamber 221 can be supplemented and exchanged conveniently, so that the circulation supplement of the cooling liquid in the first liquid cooling chamber 221 is more reliable, and the heat dissipation effect of the first control board 100 is improved. Similarly, the second liquid inlet interface 302 and the second liquid outlet interface 303 can facilitate the supplement and exchange of the cooling liquid in the second liquid cooling cavity 301, so as to improve the heat dissipation effect on the second control board 400. Meanwhile, the first liquid inlet port 222 and the second liquid inlet port are arranged at an interval from top to bottom, and the first liquid outlet port 223 and the second liquid outlet port 303 are arranged at an interval from top to bottom, so that the supplement and the replacement of the cooling liquid in the first liquid cooling cavity 221 and the second liquid cooling cavity 301 can be facilitated, and the controller 10 can be controlled and used conveniently.
In some embodiments, as shown in fig. 1, 2, 3, 4, and 5, the first control board 100 is provided with a first connector 110, the second control board 400 is provided with a second connector 410, and the first connector 110 and the second connector 410 correspond to the same side of the middle frame 300. It should be noted that the first connector 110 is adapted to provide an interface for the use of the first control board 100, so as to facilitate the assembly and use of the first control board 100, thereby promoting the subsequent use of the controller 10. And the second connector 410 is adapted to provide an interface for use of the second control board 400 to facilitate assembly use of the second control board 400 to promote subsequent use of the controller 10. Meanwhile, the first connector 110 and the second connector 410 are arranged on the same side of the middle frame 300, so that the subsequent assembly and use of the first connector 110 and the second connector 410 can be facilitated, and the controller 10 can be used more simply and reliably.
In some specific embodiments, the first chip 120 is disposed on the first control plate 100, a projection area of the first liquid cooling cavity 221 on the first control plate 100 is smaller than a surface area of the first control plate 100 and the first chip 120 is covered by the projection; and/or the second control plate 400 is provided with a second chip 420, and the projection area of the second liquid cooling cavity 301 on the second control plate 400 is smaller than the surface area of the second control plate 400 and the second chip 420 is covered by the projection. It can be understood that, when the first control board 100 and the second control board 400 operate, mainly the first chip 120 and the second chip 420 operate and generate heat, the first liquid cooling cavity 221 is disposed corresponding to the first chip 120, and the second liquid cooling cavity 301 is disposed corresponding to the second chip 420, so that when the first chip 120 and the second chip 420 are reliably cooled, the heat dissipation of the first control board 100 and the second control board 400 can be better completed, and the usability of the controller 10 is improved.
According to the utility model discloses vehicle, include: the controller 10 of any of the above. Thus, the controller 10 as shown above is arranged in the vehicle, the housing 220 is arranged outside the first control board 100, and the first liquid cooling cavity 221 is constructed on the housing 220, so that heat generated by the first control board 100 in the operation process can be transferred to the first liquid cooling cavity 221 for heat dissipation, thereby reducing the use temperature of the first control board 100, improving the use performance of the first control board 100, and enabling the controller 10 to have higher use performance to meet the use requirement, so as to improve the use performance of the vehicle.
Other configurations and operations of the outdoor unit of the air conditioner according to the embodiments of the present invention are known to those skilled in the art and will not be described in detail herein.
In the description of the present specification, reference to the description of "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example.
While embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (10)

1. A controller (10), comprising:
a first control board (100);
a housing (200), the housing (200) comprising: the liquid cooling device comprises a cover plate (210) and a shell (220), wherein the shell (220) is fixedly connected with the cover plate (210), the first control plate (100) is arranged in the shell (220), a first liquid cooling cavity (221) is formed in the shell (220), and the first liquid cooling cavity (221) is connected with a first liquid inlet interface (222) and a first liquid outlet interface (223);
at least one center (300), at least one center (300) set up in between casing (220) and apron (210), be equipped with mounting groove (510) on center (300), one center (300) with shell (200) all can pass through mounting groove (510) with another center (300) fixed connection, be formed with second liquid cooling chamber (301) on center (300).
2. The controller (10) of claim 1, further comprising: installation department (520), installation department (520) with mounting groove (510) cooperation is connected, installation department (520) are located on center (300), just installation department (520) with mounting groove (510) branch is located the relative both sides of center (300), and/or, installation department (520) are located on shell (200).
3. The controller (10) of claim 1, wherein the housing (220) comprises: the main shell (224) is fixedly connected with the cover plate (210), a first liquid cooling tank (226) is formed on the main shell (224), and the first liquid cooling cover (225) is arranged on the main shell (224) and covers the first liquid cooling tank (226) to form a first liquid cooling cavity (221); and/or
The middle frame (300) comprises: the liquid cooling device comprises a main frame (310) and second liquid Leng Gai (320), wherein a second liquid cooling groove (330) is formed in the main frame (310), and the second liquid Leng Gai (320) is arranged on the main frame (310) and covers the second liquid cooling groove (330) to form the second liquid cooling cavity (301).
4. A controller (10) according to claim 3, wherein the main housing (224) is provided with a first heat exchanging protrusion (227) protruding into the first liquid cooling groove (226); and/or
The main frame (310) is provided with a second heat exchange protrusion (340) protruding into the second liquid cooling groove (330).
5. The controller (10) of claim 4, wherein the first heat exchanging protrusions (227) are a plurality of protrusions and are arranged at intervals in the first liquid cooling groove (226); and/or
The second heat exchange bulges (340) are multiple and are arranged at intervals in the second liquid cooling tank (330).
6. The controller (10) of claim 3, wherein the main housing (224) is provided with a first water retaining rib (228) within the first liquid cooling slot (226); and/or
The main frame (310) is provided with a second water blocking rib (350) in the second liquid cooling groove (330).
7. The controller (10) of claim 1, further comprising: at least one second control panel (400), at least one second control panel (400) set up in at least one-to-one the center (300), second liquid cooling chamber (301) are connected with second feed liquor interface (302) and second play liquid interface (303).
8. The controller (10) according to claim 7, wherein the first liquid inlet port (222) and the first liquid outlet port (223) are disposed on the same side wall of the casing (220), the second liquid inlet port (302) and the second liquid outlet port (303) are disposed on the same side wall of the middle frame (300), the first liquid inlet port (222) and the second liquid inlet port (302) are disposed at an interval from top to bottom, and the first liquid outlet port (223) and the second liquid outlet port (303) are disposed at an interval from top to bottom.
9. The controller (10) according to claim 7, wherein a first chip (120) is disposed on the first control board (100), a projected area of the first liquid cooling chamber (221) on the first control board (100) is smaller than a surface area of the first control board (100) and the first chip (120) is covered by projection; and/or
The second control board (400) is provided with a second chip (420), and the projection area of the second liquid cooling cavity (301) on the second control board (400) is smaller than the surface area of the second control board (400) and the second chip (420) is covered by projection.
10. A vehicle, characterized by comprising: the controller (10) of any one of claims 1-9.
CN202221994430.6U 2022-07-28 2022-07-28 Controller and vehicle with same Active CN218735344U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221994430.6U CN218735344U (en) 2022-07-28 2022-07-28 Controller and vehicle with same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221994430.6U CN218735344U (en) 2022-07-28 2022-07-28 Controller and vehicle with same

Publications (1)

Publication Number Publication Date
CN218735344U true CN218735344U (en) 2023-03-24

Family

ID=85628299

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221994430.6U Active CN218735344U (en) 2022-07-28 2022-07-28 Controller and vehicle with same

Country Status (1)

Country Link
CN (1) CN218735344U (en)

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