Skylight detection device

By designing a sunroof detection device on the vehicle production line and controlling the sunroof status using external power supply and control switches, the sunroof fault detection problem is solved, the detection efficiency is improved and the rework process is reduced.

CN223050845UActive Publication Date: 2025-07-01CHERY AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202422082540.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-07-01
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

On vehicle production lines, sunroof fault detection is difficult to be performed before the car power supply is installed, resulting in low detection efficiency and large rework.

Method used

A sunroof detection device is designed, including a power supply, a sunroof line docking plug and a control switch, connected to the sunroof control motor through a docking plug, power is supplied by external power supply and control the status of the sunroof through a control switch, so as to realize the detection of the sunroof.

Benefits of technology

The sunroof function can be detected without relying on the car's power supply, simplifying the inspection process, improving detection efficiency, and avoiding rework after failure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses a skylight detection device, and belongs to the technical field of vehicles. The device comprises a power supply, a skylight wire butt joint plug and a control switch, the skylight wire butt joint plug is used for being in butt joint with a butt joint connector of a skylight; the power source is electrically connected with the skylight wire butt joint plug and used for supplying power to a skylight control motor of the skylight through the skylight wire butt joint plug and the butt joint plug, and the skylight control motor is electrically connected with the butt joint plug and used for controlling the skylight state of the skylight; the control switch is electrically connected with the skylight wire butt joint plug and used for controlling the skylight control motor to be switched on or switched off through the skylight wire butt joint plug and the butt joint plug-in piece. By adopting the technical scheme provided by the embodiment of the invention, the detection problem of the vehicle sunroof can be solved, and the detection efficiency is improved.
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Description

Technical Field

[0001] The embodiments of the present application relate to the technical field of vehicles, and particularly to a skylight detection device. Background Art

[0002] Since faults such as non-operation, poor operation, and abnormal noise may occur in the skylight glass and skylight curtain of a vehicle, it is necessary to monitor the skylight.

[0003] In the section of installing the skylight on the vehicle production line, the vehicle power supply has not been installed yet, making it difficult to test various functions and various abnormal problems of the skylight. In the case where a skylight fault is detected after the vehicle power supply is installed, the vehicle roof, skylight, and interior trim all need to be removed, resulting in a huge amount of rework and a decrease in detection efficiency. Utility Model Content

[0004] The embodiments of the present application provide a skylight detection device, and the device includes:

[0005] A power supply, a skylight wire docking plug, and a control switch;

[0006] The skylight wire docking plug is used to dock with the docking plug of the skylight;

[0007] The power supply is electrically connected to the skylight wire docking plug and is used to supply power to the skylight control motor of the skylight through the skylight wire docking plug and the docking plug. The skylight control motor is electrically connected to the docking plug, and the skylight control motor is used to control the skylight state of the skylight;

[0008] The control switch is electrically connected to the skylight wire docking plug and is used to control the connection or disconnection of the skylight control motor through the skylight wire docking plug and the docking plug.

[0009] In the embodiments of the present application, the power supply supplies power to the skylight control motor, and there is no need to rely on the vehicle power supply to detect the skylight, avoiding the rework process after a skylight fault. During the skylight detection process, it is only necessary to ensure that the skylight wire docking plug is docked with the docking plug of the skylight, and the skylight can be controlled to open and close through the control switch. The detection process is simple, which is beneficial to improving the detection efficiency. Brief Description of the Drawings

[0010] Figure 1 is a schematic diagram of a skylight detection device provided by an exemplary embodiment of the present application;

[0011] Figure 2 is a schematic diagram of a skylight control motor provided by an exemplary embodiment of the present application;

[0012] Figure 3 is a connection schematic diagram of a skylight detection device provided by an exemplary embodiment of the present application;

[0013] Figure 4 It is a schematic diagram of a control switch provided by an exemplary embodiment of the present application. Detailed implementation manners

[0014] To make the objectives, technical solutions and advantages of the present application clearer, the following will further describe the embodiments of the present application in detail with reference to the accompanying drawings.

[0015] Refer to Figure 1 , Figure 1 It is a schematic diagram of a skylight detection device provided by an exemplary embodiment of the present application. The skylight detection device 100 includes a power supply 101, a skylight wire docking plug 102, and a control switch 103.

[0016] Among them, the skylight wire docking plug 102 is used to dock with the docking plug of the skylight.

[0017] In some embodiments, the wire harnesses and interfaces included in the skylight wire docking plug 102 match the wire harnesses and interfaces included in the docking plug of the skylight.

[0018] Exemplarily, when the wire harness color corresponds to the wire harness function, at the interface between the skylight wire docking plug 102 and the docking plug, the wire harnesses of the same color are docked with each other.

[0019] The power supply 101 is electrically connected to the skylight wire docking plug 102, and is used to supply power to the skylight control motor of the skylight through the skylight wire docking plug 102 and the docking plug. The skylight control motor is electrically connected to the docking plug, and the skylight control motor is used to control the skylight state of the skylight.

[0020] Among them, the skylight state includes a skylight open state and a skylight closed state. Optionally, the power supply 101 can be a 12V DC battery.

[0021] The control switch 103 is electrically connected to the skylight wire docking plug 102, and is used to control the connection or disconnection of the skylight control motor through the skylight wire docking plug 102 and the docking plug.

[0022] Among them, the control switch 103 controls the skylight state of the skylight by controlling the connection or disconnection of the skylight control motor.

[0023] Optionally, when the skylight control motor rotates forward, the skylight opens; when the skylight control motor rotates backward, the skylight closes. The control switch 103 controls the skylight control motor to rotate forward or backward by controlling the connection or disconnection of the skylight control motor.

[0024] In the embodiments of the present application, the skylight control motor is powered by a power supply, and there is no need to rely on the vehicle power supply to detect the skylight, avoiding the rework process after a skylight failure. During the skylight detection process, it is only necessary to ensure that the docking plug of the skylight wire is docked with the docking plug-in of the skylight, and the skylight can be opened and closed by controlling the switch. The detection process is simple, which is conducive to improving the detection efficiency.

[0025] First, the interface connection method on the side of the docking plug of the skylight wire will be described below.

[0026] In some embodiments, there are a first plug interface, a second plug interface, a third plug interface, and a fourth plug interface on the docking plug of the skylight wire. Among them, the docking plug of the skylight wire is electrically connected to the power supply through the first plug interface and the second plug interface. The third plug interface and the fourth plug interface of the docking plug of the skylight wire are connected to the control switch.

[0027] Specifically, the first plug interface of the docking plug of the skylight wire is connected to the positive pole of the power supply, and the first plug interface is used to dock with the first plug-in interface of the docking plug-in. The second plug interface of the docking plug of the skylight wire is connected to the negative pole of the power supply, and the second plug interface is used to dock with the second plug-in interface of the docking plug-in.

[0028] In order to distinguish the wire harnesses connecting the positive and negative poles of the power supply, a 500mm red wire harness is electrically connected between the first plug interface and the positive pole of the power supply, and a 500mm black wire harness is electrically connected between the second plug interface and the negative pole of the power supply.

[0029] Specifically, the third plug interface is used to dock with the third plug-in interface of the docking plug-in, and the fourth plug interface is used to dock with the fourth plug-in interface of the docking plug-in.

[0030] In some embodiments, the docking plug-in of the skylight is connected to the skylight control motor through the first plug-in interface, the second plug-in interface, the third plug-in interface, and the fourth plug-in interface. Among them, the first plug-in interface and the second plug-in interface are used to supply power to the skylight control motor. The third plug-in interface and the fourth plug-in interface are used to transmit control signals to the skylight motor.

[0031] In some embodiments, the wire harness for transmitting control signals is not the same color as the wire harness for power supply. When the power supply wire harnesses are red and black, the wire harness connecting the third plug-in interface and the fourth plug-in interface uses other colors except red and black.

[0032] Optionally, the wire harness connecting the plug interface and the plug-in interface can use a 500mm connecting wire.

[0033] In the embodiments of the present application, the skylight line docking plug is connected to the power supply through the first plug interface and the second plug interface, so as to supply power to the skylight control motor after docking with the docking plug of the skylight, without relying on the vehicle power supply to detect the skylight, and eliminating the rework process after skylight failure. The skylight line docking plug transmits the control signal of the control switch to the third plug interface and the fourth plug interface of the docking plug through the third plug interface and the fourth plug interface, and then sends it to the skylight control motor, which is beneficial for the control switch to instruct the skylight control motor to control the skylight state and realize skylight detection.

[0034] The following embodiments illustrate the interface connection method of the skylight detection device from the control switch side.

[0035] In some embodiments, the control switch includes a first switch interface, a second switch interface, and a third switch interface. Among them, the first switch interface of the control switch is connected to the negative pole of the power supply, and the on-off of the control signal is realized by controlling the on-off of the power supply negative pole control line.

[0036] Among them, the transmission lines of the control signal include the following two:

[0037] Line 1, the second switch interface of the control switch is connected to the third plug interface of the skylight line docking plug. The third plug interface is used to dock with the third plug interface of the docking plug of the skylight, and then connect to the first motor interface of the skylight control motor.

[0038] Line 2, the third switch interface of the control switch is connected to the fourth plug interface of the skylight line docking plug. The fourth plug interface is used to dock with the fourth plug interface of the docking plug of the skylight, and then connect to the second motor interface of the skylight control motor.

[0039] Among them, the on-off conditions of Line 1 and Line 2 are used to represent different control signals. The control switch is used to control Line 1 to conduct and Line 2 to disconnect, or control Line 2 to conduct and Line 1 to disconnect.

[0040] In some embodiments, the control switch includes a first button and a second button. Among them, the first button is located between the second switch interface and the first switch interface and is used to conduct Line 1; the second button is located between the third switch interface and the first switch interface and is used to conduct Line 2.

[0041] In some embodiments, the skylight control motor is turned on when at least one of the first button and the second button is enabled. The skylight control motor is turned off when the first button and the second button are disabled.

[0042] Among them, when the first button is enabled, Line 1 conducts, and the skylight control motor rotates forward to open the skylight. When the second button is enabled, Line 2 conducts, and the skylight control motor rotates in reverse to close the skylight.

[0043] In a possible implementation, when the first button is pressed, the first button is enabled. When the second button is pressed, the second button is enabled.

[0044] It should be noted that when one of the first button and the second button is enabled, the other button is disabled.

[0045] Optionally, the wire harness adopted in the embodiments of the present application is a 500 mm wire harness. Among them, the wire harness between the control switch and the negative power supply is a black power line. The wire harness between the control switch and the docking plug of the skylight line is a signal line of other colors except red and black.

[0046] In the embodiments of the present application, the control switch is connected to the negative power supply to control the on / off of the circuit. Among them, the first button and the second button on the control switch are respectively used to control the skylight control motor to open and close the skylight. Only by pressing the button can the skylight detection be implemented, which is beneficial to improving the detection efficiency.

[0047] In some embodiments, the skylight includes a skylight glass and a skylight curtain. Among them, both the skylight glass and the skylight curtain have an open state and a closed state. The skylight control motor includes a skylight glass control motor and a skylight curtain control motor. Among them, the skylight glass control motor is used to control the state of the skylight glass, and the skylight curtain control motor is used to control the state of the skylight curtain.

[0048] Since the skylight glass control motor and the skylight curtain control motor have the same basic structure and interfaces, the embodiments of the present application illustrate the structure and interfaces of the skylight control motor.

[0049] See Figure 2 , Figure 2 is a schematic diagram of a skylight control motor provided by an exemplary embodiment of the present application. The skylight control motor 200 includes a Hall sensor 201 and an actuator motor 202.

[0050] The Hall sensor 201 is used to control the on / off of the motor working circuit and has the function of protecting the motor. For example, when the Hall sensor detects overheating or short circuit of the motor, it can disconnect the circuit to avoid burning out the motor.

[0051] Among them, the first sensing interface (i.e., the 7th interface) of the Hall sensor 201 is electrically connected to the positive power supply through the first plug interface of the docking plug and the first plug interface of the docking plug of the skylight line.

[0052] The second sensing interface (i.e., the 10th interface) of the Hall sensor 201 is electrically connected to the negative power supply through the second plug interface of the docking plug and the second plug interface of the docking plug of the skylight line.

[0053] The actuating motor 202 is used to provide power to drive the sunroof to open or close. When the actuating motor rotates forward, it drives the sunroof to open, and when it rotates backward, it drives the sunroof to close. Among them, the forward and reverse rotations of the actuating motor are determined according to the conduction condition of the motor interface.

[0054] The motor interface of the actuating motor includes a first motor interface (interface No. 5) and a second motor interface (interface No. 1).

[0055] It should be noted that the sunroof control motor 200 needs to conduct both the Hall sensor 201 and the actuating motor 202. Therefore, the sunroof control motor 200 has two interfaces connected to the positive pole of the power supply, namely interface No. 7 and interface No. 9. Among them, interface No. 9 is used to supply power to the actuating motor 202.

[0056] See Figure 3 , Figure 3 FIG. is a connection schematic diagram of a sunroof detection device provided by an exemplary embodiment of the present application. The device includes a battery 301, a sunroof wire docking plug 302, and a control switch 303. Optionally, the power supply 301 can be a 12V DC battery.

[0057] The figure also shows a docking plug 304 electrically connected to the sunroof wire docking plug 302, a sunroof glass motor 305, and a sunshade curtain control motor 306.

[0058] This embodiment first describes the connection situation on the side of the sunroof wire docking plug 302.

[0059] The first plug interface of the sunroof wire docking plug 302 is connected to the positive pole of the power supply 301. The first plug interface is used to dock with the first plug interface of the docking plug 304.

[0060] Since the sunroof control motor requires two-way power supply for the normal operation of the Hall sensor and the actuating motor, the first plug interface of the sunroof wire docking plug 302 includes interface No. 1 and interface No. 2 of the sunroof wire docking plug 302, and the first plug interface of the docking plug 304 includes interface No. 1 and interface No. 2 of the docking plug 304. Among them, the interfaces with the same interface number are connected.

[0061] Interface No. 1 of the docking plug 304 is used to connect to interface No. 7 of the sunroof glass motor 305 to supply power to the Hall sensor of the sunroof glass motor 305, and is also used to connect to interface No. 7 of the sunshade curtain control motor 306 to supply power to the Hall sensor of the sunshade curtain control motor 306.

[0062] Interface No. 2 of the docking plug 304 is used to connect to interface No. 9 of the sunroof glass motor 305 to supply power to the actuating motor of the sunroof glass motor 305, and is also used to connect to interface No. 9 of the sunshade curtain control motor 306 to supply power to the actuating motor of the sunshade curtain control motor 306.

[0063] The second plug interface of the skylight wire docking plug 302 (i.e., the 4th interface of the skylight wire docking plug 302) is connected to the negative pole of the power supply, and the second plug interface is used to dock with the second plug interface of the docking plug 304 (i.e., the 4th interface of the docking plug 304).

[0064] The 4th interface of the docking plug 304 is used to connect the 10th interface of the skylight glass motor 305 and the 10th interface of the skylight curtain control motor 306, so that the Hall sensor circuit is turned on to play a protective role for the motor.

[0065] The third plug interface (i.e., the 5th interface of the skylight wire docking plug 302) and the fourth plug interface (i.e., the 6th interface of the skylight wire docking plug 302) of the skylight wire docking plug 302 are connected to the control switch 303. The third plug interface is used to dock with the third plug interface of the docking plug 304 (the 5th interface of the docking plug 304), and the fourth plug interface is used to dock with the fourth plug interface of the docking plug 304 (the 6th interface of the docking plug 304).

[0066] The fifth plug interface (i.e., the 8th interface of the skylight wire docking plug 302) and the sixth plug interface (i.e., the 9th interface of the skylight wire docking plug 302) of the skylight wire docking plug 302 are connected to the control switch 303. The fifth plug interface is used to dock with the fifth plug interface of the docking plug 304 (i.e., the 8th interface of the docking plug 304), and the sixth plug interface is used to dock with the sixth plug interface of the docking plug 304 (i.e., the 9th interface of the docking plug 304).

[0067] Among them, the first plug interface, the second plug interface, the third plug interface, the fourth plug interface, the fifth plug interface and the sixth plug interface are connected to the skylight control motor, that is, the 5th interface, 6th interface, 8th interface and 9th interface of the docking plug 304 are connected to the skylight glass motor 305 and the skylight curtain control motor 306.

[0068] Among them, the 5th interface of the docking plug 304 is related to the forward rotation of the actuator motor, and the 6th interface of the docking plug 304 is related to the reverse rotation of the actuator motor. The 5th interface of the docking plug 304 is used to connect the 5th interface of the skylight glass motor 305, and the 6th interface of the docking plug 304 is used to connect the 1st interface of the skylight glass motor 305.

[0069] The 8th interface of the docking plug 304 is related to the forward rotation of the actuator motor, and the 9th interface of the docking plug 304 is related to the reverse rotation of the actuator motor. The 8th interface of the docking plug 304 is used to connect the 5th interface of the skylight curtain control motor 306, and the 9th interface of the docking plug 304 is used to connect the 1st interface of the skylight curtain control motor 306.

[0070] The connection conditions on the control switch 303 side will be described below.

[0071] The first switch interface (i.e., the 2nd interface) of the control switch 303 is connected to the negative pole of the power supply.

[0072] Optionally, the 2nd interface of the control switch 303 can be connected to the 4th interface of the skylight wire docking plug 302. Through the line connecting the skylight wire docking plug 302 to the negative pole of the power supply on the 4th interface, the 2nd interface of the control switch 303 is connected to the negative pole of the power supply.

[0073] The second switch interface (i.e., the 11th interface) of the control switch 303 is connected to the third plug interface of the skylight wire docking plug 302 (i.e., the 5th interface of the skylight wire docking plug 302).

[0074] The third switch interface (i.e., the 12th interface) of the control switch 303 is connected to the fourth plug interface of the skylight wire docking plug 302 (i.e., the 6th interface of the skylight wire docking plug 302).

[0075] Among them, when the 11th interface is conducting, the actuator motor of the skylight glass motor 305 rotates forward. When the 12th interface is conducting, the actuator motor of the skylight glass motor 305 rotates in reverse.

[0076] The fourth switch interface (i.e., the 14th interface) of the control switch 303 is connected to the fifth plug interface of the skylight wire docking plug 302 (the 8th interface of the skylight wire docking plug 302).

[0077] The fifth switch interface (i.e., the 13th interface) of the control switch 303 is connected to the sixth plug interface of the skylight wire docking plug 302 (the 9th interface of the skylight wire docking plug 302).

[0078] Among them, when the 14th interface is conducting, the actuator motor of the skylight curtain control motor 306 rotates forward. When the 13th interface is conducting, the actuator motor of the skylight curtain control motor 306 rotates in reverse.

[0079] The control switch 303 includes a first button, a second button, a third button, and a fourth button. The first button is located between the second switch interface and the first switch interface (i.e., between the 11th interface and the 2nd interface). The second button is located between the third switch interface and the first switch interface (i.e., between the 12th interface and the 2nd interface). The third button is located between the fourth switch interface and the first switch interface (i.e., between the 14th interface and the 2nd interface). The fourth button is located between the fifth switch interface and the first switch interface (i.e., between the 13th interface and the 2nd interface).

[0080] See Figure 4 , Figure 4It is a schematic diagram of a control switch provided by an exemplary embodiment of the present application. Among them, the control switch 400 includes a first button 401, a second button 402, a third button 403, and a fourth button 404.

[0081] When at least one of the first button 401 and the second button 402 is enabled, Figure 3 the skylight glass control motor 305 in it is turned on.

[0082] When the first button 401 and the second button 402 are disabled, Figure 3 the skylight glass control motor 305 in it is turned off.

[0083] When at least one of the third button 403 and the fourth button 404 is enabled, Figure 3 the sunshade curtain control motor 306 in it is turned on.

[0084] When the third button 403 and the fourth button 404 are disabled, Figure 3 the sunshade curtain control motor 306 in it is turned off.

[0085] See Figure 3 , the first switch interface (i.e., the 2nd interface) of the control switch 303 is connected to the negative pole of the power supply, and the transmission of the control signal is realized by controlling the on / off of the line at the negative pole of the power supply.

[0086] Among them, the transmission line of the control signal includes the following four:

[0087] Line 1, the 11th interface of the control switch 303 is connected to the 5th interface of the skylight line docking plug 302. This 5th interface is docked with the 5th interface of the skylight docking plug 304, and then connected to the 5th interface of the skylight glass control motor 305.

[0088] Line 2, the 12th interface of the control switch 303 is connected to the 6th interface of the skylight line docking plug 302. This 6th interface is docked with the 6th interface of the skylight docking plug 304, and then connected to the 1st interface of the skylight glass control motor 305.

[0089] Line 3, the 8th interface of the control switch 303 is connected to the 8th interface of the skylight line docking plug 302. This 8th interface is used to be docked with the 8th interface of the skylight docking plug 304, and then connected to the 5th interface of the sunshade curtain control motor 306.

[0090] Line 4, the 9th interface of the control switch 303 is connected to the 8th interface of the skylight line docking plug 302. This 8th interface is used to be docked with the 8th interface of the skylight docking plug 304, and then connected to the 1st interface of the sunshade curtain control motor 306.

[0091] Among them, when the first button is enabled, line 1 is turned on, line 2 is turned off, and the skylight glass control motor 305 rotates forward to open the skylight glass. Specifically, the execution motor of the skylight glass control motor 305 rotates forward to open the skylight glass.

[0092] When the second button is enabled, line 1 is turned off, line 2 is turned on, and the skylight glass control motor 305 rotates in reverse to close the skylight glass. Specifically, the execution motor of the skylight glass control motor 305 rotates in reverse to close the skylight glass.

[0093] When the third button is enabled, line 3 is turned on, line 4 is turned off, and the sunshade curtain control motor 306 rotates forward to open the curtain. Specifically, the execution motor of the sunshade curtain control motor 306 rotates forward to open the curtain.

[0094] When the fourth button is enabled, line 3 is turned off, line 4 is turned on, and the sunshade curtain control motor 306 rotates in reverse to close the curtain. Specifically, the execution motor of the sunshade curtain control motor 306 rotates in reverse to close the curtain.

[0095] In an exemplary example, the negative pole of the 12V DC power supply 301 is connected to the 4th interface of the skylight wire docking plug 302 through a 500mm black wire harness, and the 4th interface is connected to the 2nd interface of the control switch 303 through a 500mm black wire harness. The 4th interface is also docked with the 4th interface of the docking plug 304. The 4th interface of the docking plug 304 is connected to the 10th interface of the skylight glass control motor 305 and the sunshade curtain control motor 306 through a 500mm black wire harness.

[0096] The positive pole of the 12V DC power supply 301 is connected to the 1st interface and the 2nd interface of the skylight wire docking plug 302 through a 500mm red wire harness, and is respectively docked with the 1st interface and the 2nd interface of the docking plug 304. The 1st interface of the docking plug 304 is connected to the 7th interface of the skylight glass control motor 305 and the sunshade curtain control motor 306 through a 500mm red wire harness. The 2nd interface of the docking plug 304 is connected to the 9th interface of the skylight glass control motor 305 and the sunshade curtain control motor 306 through a 500mm red wire harness.

[0097] The 11th interface of the control switch 303 is connected to the 5th interface of the skylight wire docking plug 302 through a 500mm brown wire harness. The 5th interface of the skylight wire docking plug 302 is docked with the 5th interface of the docking plug 304, and the 5th interface is connected to the 5th interface of the skylight glass control motor 305 through a 500mm brown wire harness.

[0098] The 12th interface of the control switch 303 is connected to the 6th interface of the skylight wire docking plug 302 through a 500-mm yellow and red wire harness. The 6th interface of the skylight wire docking plug 302 is docked with the 6th interface of the docking plug-in 304, and this 6th interface is connected to the 1st interface of the skylight glass control motor 305 through a 500-mm black wire harness.

[0099] The 14th interface of the control switch 303 is connected to the 8th interface of the skylight wire docking plug 302 through a 500-mm white and red wire harness. The 8th interface of the skylight wire docking plug 302 is docked with the 8th interface of the docking plug-in 304, and this 8th interface is connected to the 5th interface of the skylight curtain control motor 306 through a 500-mm brown wire harness.

[0100] The 13th interface of the control switch 303 is connected to the 9th interface of the skylight wire docking plug 302 through a 500-mm pink wire harness. The 9th interface of the skylight wire docking plug 302 is docked with the 9th interface of the docking plug-in 304, and this 9th interface is connected to the 1st interface of the skylight curtain control motor 306 through a 500-mm yellow wire harness.

[0101] In the embodiment of the present application, the skylight detection device uses a control switch to connect or disconnect the skylight glass control motor and the skylight curtain control motor, so as to realize the common detection of the skylight glass control motor and the skylight curtain control motor, enriching the detection function of the skylight detection device.

[0102] In some embodiments, when the skylight control motor includes a Hall sensor, the Hall sensor prevents the motor from being damaged by controlling the on / off of the circuit.

[0103] Among them, the positive power supply is connected to the first sensing interface of the Hall sensor through the first plug interface of the skylight wire docking plug and the first plug-in interface of the docking plug-in.

[0104] As Figure 3 shown, the positive power supply is connected to the 7th interfaces of the skylight glass control motor 305 and the skylight curtain control motor 306 through the 1st interface of the skylight wire docking plug 302 and the 1st interface of the docking plug-in 304. As Figure 2 shown, the Hall sensor 201 can be connected through the 7th interface.

[0105] The negative power supply is connected to the second sensing interface of the Hall sensor through the second plug interface of the skylight wire docking plug and the second plug-in interface of the docking plug-in.

[0106] As Figure 3 shown, the negative power supply is connected to the 10th interfaces of the skylight glass control motor 305 and the skylight curtain control motor 306 through the 4th interface of the skylight wire docking plug 302 and the 4th interface of the docking plug-in 304. As Figure 2As shown, the Hall sensor 201 can be connected through interface No. 10.

[0107] In the embodiment of the present application, by connecting the Hall sensor, the sunroof control motor can protect the sunroof control motor and prevent the sunroof detection from damaging the sunroof control motor.

Claims

1. A sunroof detection device, characterized in that: The device comprises: Power supply, sunroof wire docking plug and control switch; The sunroof wire docking plug is used to dock with the sunroof docking plug; The power supply is electrically connected to the sunroof line docking plug, and is used to supply power to the sunroof control motor of the sunroof through the sunroof line docking plug and the docking plug, the sunroof control motor is electrically connected to the docking plug, and the sunroof control motor is used to control the sunroof state of the sunroof; The control switch is electrically connected to the sunroof wire docking plug, and is used to control the sunroof control motor to be turned on or off through the sunroof wire docking plug and the docking plug.

2. The device according to claim 1, characterized in that The first plug interface of the skylight line docking plug is connected to the positive pole of the power supply, and the first plug interface is used to dock with the first plug interface of the docking plug; The second plug interface of the skylight line docking plug is connected to the negative pole of the power supply, and the second plug interface is used to dock with the second plug interface of the docking plug; The third plug interface and the fourth plug interface of the skylight line docking plug are connected to the control switch, the third plug interface is used to dock with the third plug interface of the docking plug, and the fourth plug interface is used to dock with the fourth plug interface of the docking plug; Wherein, the first plug-in interface, the second plug-in interface, the third plug-in interface and the fourth plug-in interface are connected to the sunroof control motor.

3. The device according to claim 2, characterized in that The first switch interface of the control switch is connected to the negative electrode of the power supply; The second switch interface of the control switch is connected to the third plug interface of the sunroof line docking plug; The third switch interface of the control switch is connected to the fourth plug interface of the sunroof line docking plug.

4. The device according to claim 3, characterized in that The control switch includes a first button and a second button, the first button is located between the second switch interface and the first switch interface, and the second button is located between the third switch interface and the first switch interface; When at least one of the first button and the second button is enabled, the sunroof control motor is turned on; When the first button and the second button are disabled, the sunroof control motor is disconnected.

5. The device according to claim 4, characterized in that When the first button is enabled, the sunroof control motor rotates forward to open the sunroof; When the second button is enabled, the sunroof control motor reverses to close the sunroof.

6. The device according to claim 1, characterized in that In the case where the sunroof control motor includes a sunroof glass control motor and a sunroof curtain control motor, The first plug interface of the skylight line docking plug is connected to the positive pole of the power supply, and the first plug interface is used to dock with the first plug interface of the docking plug; The second plug interface of the skylight line docking plug is connected to the negative pole of the power supply, and the second plug interface is used to dock with the second plug interface of the docking plug; The third plug interface and the fourth plug interface of the skylight line docking plug are connected to the control switch, the third plug interface is used to dock with the third plug interface of the docking plug, and the fourth plug interface is used to dock with the fourth plug interface of the docking plug; The fifth plug interface and the sixth plug interface of the skylight line docking plug are connected to the control switch, the fifth plug interface is used to dock with the fifth plug interface of the docking plug, and the sixth plug interface is used to dock with the sixth plug interface of the docking plug; Among them, the first plug-in interface, the second plug-in interface, the third plug-in interface, the fourth plug-in interface, the fifth plug-in interface and the sixth plug-in interface are connected to the sunroof control motor.

7. The device according to claim 6, characterized in that The first switch interface of the control switch is connected to the negative electrode of the power supply; The second switch interface of the control switch is connected to the third plug interface of the sunroof line docking plug; The third switch interface of the control switch is connected to the fourth plug interface of the sunroof line docking plug; The fourth switch interface of the control switch is connected to the fifth plug interface of the sunroof line docking plug; The fifth switch interface of the control switch is connected to the sixth plug interface of the sunroof line docking plug.

8. The device according to claim 7, characterized in that The control switch includes a first button, a second button, a third button and a fourth button, the first button is located between the second switch interface and the first switch interface, the second button is located between the third switch interface and the first switch interface, the third button is located between the fourth switch interface and the first switch interface, and the fourth button is located between the fifth switch interface and the first switch interface; When at least one of the first button and the second button is enabled, the sunroof glass control motor is turned on; When the first button and the second button are disabled, the sunroof glass control motor is disconnected; When at least one of the third button and the fourth button is enabled, the skylight curtain control motor is turned on; When the third button and the fourth button are disabled, the skylight curtain control motor is disconnected.

9. The device according to claim 8, characterized in that When the first button is enabled, the sunroof glass control motor rotates forward to open the sunroof glass; When the second button is enabled, the sunroof glass control motor reverses to close the sunroof glass; When the third button is enabled, the skylight curtain control motor rotates forward to open the curtain; When the fourth button is enabled, the skylight curtain control motor reverses and closes the curtain.

10. The device according to any one of claims 1 to 9, characterized in that: In the case where the sunroof control motor includes a Hall sensor, The positive electrode of the power supply is connected to the first sensing interface of the Hall sensor through the first plug interface of the sunroof line docking plug and the first plug interface of the docking plug; The negative pole of the power supply is connected to the second sensing interface of the Hall sensor through the second plug interface of the sunroof line docking plug and the second plug interface of the docking plug.