Interaction equipment and vehicle

By deploying multiple pin groups and target chips in the interactive device, signal interaction with different data transmission rates is achieved, solving the problem of low data interaction efficiency and realizing signal diversity and efficient transmission.

CN224109855UActive Publication Date: 2026-04-10ZHAOQING XIAOPENG NEW ENERGY INVESTMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHAOQING XIAOPENG NEW ENERGY INVESTMENT CO LTD
Filing Date
2025-04-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The low data exchange efficiency of interactive devices is mainly due to the size limitation that prevents the deployment of too many connectors, resulting in a restriction on the types of data transmitted.

Method used

The first and second pin groups are deployed in the interactive device to send and receive different types of signals, respectively, to realize signal interaction with multiple data transmission rates, and to receive signals at different data transmission rates through the target chip.

Benefits of technology

It improves the data interaction efficiency of interactive devices, avoids the problem of limited data types, and realizes the diversity and efficient transmission of signals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an interactive device and a vehicle. The interaction device can comprise a transmission device and a target chip, a first pin group and a second pin group are deployed at different positions of the transmission device, and the transmission device is used for sending a first target type signal through the first pin group and sending a second target type signal through the second pin group; and the target chip is connected with the first pin group and is used for receiving the first target type signal at the first data transmission rate, and is connected with the second pin group and is used for receiving the second target type signal at the second data transmission rate. According to the utility model, the technical problem of low data interaction efficiency of interaction equipment is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic circuit field, specifically, relate to an interactive device and vehicle. BACKGROUND

[0002] In practical application, the size of the interactive device is often limited. For example, the size of the single board (board) that meets the miniaturization, lightweight demand and installation space requirement is small, and too many connectors cannot be deployed, thereby causing the type of data transmission to be limited, resulting in the technical problem of low efficiency of data interaction of the interactive device.

[0003] For the above technical problem of low efficiency of data interaction of the interactive device, no effective solution has been proposed so far. SUMMARY

[0004] The utility model embodiment provides an interactive device and vehicle to at least solve the technical problem of low efficiency of data interaction of the interactive device.

[0005] According to an aspect of the utility model embodiment, an interactive device is provided, which comprises: a transmission device and a target chip, the first pin group and the second pin group are arranged at different positions of the transmission device, wherein the transmission device is configured to send a first target type signal through the first pin group and send a second target type signal through the second pin group; the target chip is connected with the first pin group and configured to receive the first target type signal at a first data transmission rate, and is connected with the second pin group and configured to receive the second target type signal at a second data transmission rate.

[0006] Optionally, the second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a first bus signal in the second target type signal through the first sub-pin group and send a second bus signal in the second target type signal through the second sub-pin group; the target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, and is connected with the second sub-pin group and configured to receive the second bus signal at the second data transmission rate.

[0007] Optionally, the second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a first bus signal in the second target type signal through the first sub-pin group; the target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, wherein the second sub-pin is cancelled to transmit a second bus signal in the second target type signal.

[0008] Optionally, the second pin group includes a first sub-pin group and a second sub-pin group disposed at different positions, wherein the transmission device is configured to transmit the second bus signal in the second target type signal through the second sub-pin group; and the target chip is connected to the second sub-pin group and configured to receive the second target type signal at the second data transmission rate, and the first sub-pin group is configured to cancel transmission of the first bus signal in the second target type signal.

[0009] Optionally, the second pin group includes a first sub-pin group and a second sub-pin group disposed at different positions, wherein the transmission device is configured to transmit the first target type signal through the second sub-pin group, transmit the first bus signal in the second target type signal through the first sub-pin group, and transmit the second bus signal in the second target type signal through the first pin group; and the target chip is connected to the second sub-pin group and configured to receive the first target type signal at the first data transmission rate, and the target chip is connected to the first sub-pin group and configured to receive the first bus signal in the second target type signal at the second data transmission rate, and configured to receive the second bus signal in the second target type signal at the second data transmission rate.

[0010] Optionally, the second pin group includes a first sub-pin group and a second sub-pin group disposed at different positions, wherein the transmission device is configured to transmit the first bus signal in the second target type signal through the first sub-pin group, and transmit the third target type signal through the second sub-pin group; and the target chip is connected to the first sub-pin group and configured to receive the first bus signal in the second target type signal at the second data transmission rate, and connected to the second sub-pin group and configured to receive the third target type signal at the third data transmission rate.

[0011] Optionally, a plurality of protection devices are respectively disposed at the first pin group and the second pin group, wherein the plurality of protection devices are configured to prohibit the first pin group and the second pin group from being in an abnormal circuit state.

[0012] Optionally, part of the plurality of protection devices are respectively disposed at the first sub-pin group and the second sub-pin group, wherein the part of the plurality of protection devices are configured to prohibit the first sub-pin group and the second sub-pin group from being in an abnormal circuit state.

[0013] Optionally, the transmission device includes a connector, and the target chip includes a system on chip.

[0014] According to another aspect of the embodiments of the present application, a vehicle is also provided, which includes a memory storing an executable program, and a processor configured to run the program, wherein the program is configured to control the interactive device of any one of the above aspects when running.

[0015] In the embodiment of the present application, when signal transmission is performed by using the interactive device, the transmission device can send the first target type signal through the first pin group and send the second target type signal through the second pin group, the target chip connected with the first pin group can receive the first target type signal under the first data transmission rate, and the target chip connected with the second pin group can receive the second target type signal under the second data transmission rate. Since in the embodiment of the present application, after the first target type signal is sent through the first pin group and the second target type signal is sent through the second pin group, the target chip can receive the first target type signal under the first data transmission rate, and the target chip can receive the second target type signal under the second data transmission rate, thereby achieving the purpose of avoiding limitation of the transmitted data type, thereby solving the technical problem of low efficiency of data interaction of the interactive device, and further realizing the technical effect of improving the efficiency of data interaction of the interactive device. BRIEF DESCRIPTION OF DRAWINGS

[0016] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application, and do not constitute improper limitations on the present application. In the drawings:

[0017] Figure 1 is a schematic view of an interactive device according to an embodiment of the present application;

[0018] Fig. 2(a) is a schematic view of a single board structure according to the related art;

[0019] Fig. 2(b) is a schematic view of a single board structure according to an embodiment of the present application;

[0020] Fig. 2(c) is a schematic view of another TYPE-C connector according to an embodiment of the present application;

[0021] Fig. 2(d) is a schematic view of data interaction between a vehicle and a server according to an embodiment of the present application;

[0022] Figure 3 is a structural block diagram of a vehicle according to an embodiment of the present application. DETAILED DESCRIPTION

[0023] In order to make the person skilled in the art better understand the technical scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the scope of protection of the present application.

[0024] It should be noted that the terms "first", "second" and the like in the description and claims of the present application and the above drawings are used to distinguish similar objects, and do not necessarily have to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a system, product or device including a series of units does not have to be limited to those units clearly listed, but can include other units not clearly listed or inherent to these products or devices.

[0025] Figure 1 is a schematic view of an interactive device according to an embodiment of the present application. The interactive device 100 can include a transmission device 101 and a target chip 102. The transmission device 101 has a first pin group and a second pin group deployed at different positions.

[0026] The transmission device 101 is configured to send a first target type signal through the first pin group and a second target type signal through the second pin group.

[0027] In the technical scheme provided by the transmission device 101 of the present application, the transmission device 101 can include a connector deployed in the interactive device. The interactive device can be a single board.

[0028] In this embodiment, the first pin group can include a plurality of different pins, and the second pin group can include a plurality of different sub-pin groups, and the deployment positions of the pins in the plurality of different sub-pin groups are also different.

[0029] In this embodiment, the first target type signal can be used to represent a gigabit Ethernet signal (i.e., 10GETH signal), and the second target type signal can be used to represent a universal serial bus (Universal Serial Bus, abbreviated as USB) signal.

[0030] In the embodiment, in the transmission device, a first pin group arranged in the transmission device can send a first target type signal to the target chip, and a second pin group arranged in the transmission device can send a second target type signal to the target chip.

[0031] The target chip 102 is connected with the first pin group and is configured to receive the first target type signal at the first data transmission rate, and is connected with the second pin group and is configured to receive the second target type signal at the second data transmission rate.

[0032] In the technical scheme provided by the target chip 102 in the utility model, the target chip 102 can include a chip arranged in the interactive device. The chip can be, but is not limited to, a system on chip (SOC), which is only used as an example and is not limited.

[0033] In the embodiment, the first data transmission rate can be associated with the type of the first target type signal. That is, if the first target type signal is a 10G ETH signal, the first data transmission rate can be a data transmission rate that meets the 10G ETH signal transmission.

[0034] In the embodiment, the second data transmission rate can be associated with the type of the second target type signal. That is, if the second target type signal is a USB signal, the second data transmission rate can be a data transmission rate that meets the USB signal transmission.

[0035] In the embodiment, after the transmission device sends the first target type signal and the second target type signal, the target chip connected with the first pin group can receive the first target type signal at the first data transmission rate, and the target chip connected with the second pin group can also receive the second target type signal at the second data transmission rate.

[0036] Optionally, if the first target type signal is a 10G ETH signal and the second target type signal is a USB signal, the target chip connected with the first pin group can receive the 10G ETH signal at the first data transmission rate, and the target chip connected with the second pin group can also receive the USB signal at the second data transmission rate.

[0037] In the above-mentioned interactive device of the utility model, when signal transmission is carried out by using the interactive device, the transmission device can send the first target type signal through the first pin group and send the second target type signal through the second pin group, the target chip connected with the first pin group can receive the first target type signal under the first data transmission rate, and the target chip connected with the second pin group can receive the second target type signal under the second data transmission rate. Since in the embodiment of the utility model, after the first target type signal is sent through the first pin group and the second target type signal is sent through the second pin group, the target chip can receive the first target type signal under the first data transmission rate, and the target chip can receive the second target type signal under the second data transmission rate, thus the purpose of avoiding the limitation of the transmitted data type is achieved, thereby solving the technical problem of low efficiency of data interaction of the interactive device, and further realizing the technical effect of improving the efficiency of data interaction of the interactive device.

[0038] The above-mentioned interactive device of the embodiment is further introduced as follows.

[0039] As an optional embodiment, the second pin group includes a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a first bus signal in the second target type signal through the first sub-pin group and send a second bus signal in the second target type signal through the second sub-pin group; the target chip is connected with the first sub-pin group and is configured to receive the first bus signal under the second data transmission rate, and is connected with the second sub-pin group and is configured to receive the second bus signal under the second data transmission rate.

[0040] In this embodiment, the above-mentioned second pin group can include a first sub-pin group and a second sub-pin group arranged at different positions. The first sub-pin group can represent the pins in the second pin group that transmit the first bus signal, the second sub-pin group can represent the pins in the second pin group that transmit the second bus signal, and the first bus signal and the second bus signal can be different types of USB signals.

[0041] In this embodiment, the above-mentioned second target type signal can include a first bus signal and a second bus signal. For example, the first bus signal can be a USB2.0 signal, the second bus signal can be a USB3.x signal, and the USB3.x signal can include a USB3.1 signal and a USB3.2 signal, etc. This is only an example and is not limited.

[0042] For example, if the transmission device is a TYPE-C connector, the first pin group can include an A2 pin, an A3 pin, a B10 pin, a B11 pin, an A8 pin, and a B8 pin, the first sub-pin group can include an A6 pin, an A7 pin, a B6 pin, and a B7 pin, and the second sub-pin group can include an A10 pin, an A11 pin, a B2 pin, and a B3 pin, which are merely illustrative and not limited in the specific.

[0043] In this embodiment, in the transmission device described above, the first sub-pin group deployed in the second pin group can send the first bus signal in the second target type signal to the target chip, and the second sub-pin group deployed in the second pin group can send the second bus signal in the second target type signal to the target chip, thereby achieving the purpose of sending different signals to the target chip and realizing the technical effect of improving the diversity of the transmitted signals.

[0044] Alternatively, the A6 pin, the A7 pin, the B6 pin, and the B7 pin can send a USB2.0 signal to the SOC, and the A10 pin, the A11 pin, the B2 pin, and the B3 pin can send a USB3.x signal to the SOC.

[0045] In this embodiment, after the first bus signal is sent by the first sub-pin group and the second bus signal is sent by the second sub-pin group, the target chip connected to the first sub-pin group can receive the first bus signal at the second data transmission rate, and in addition, the target chip connected to the second sub-pin group can receive the second bus signal at the second data transmission rate, thereby achieving the purpose of controlling the target chip to accept different signals and realizing the technical effect of improving the efficiency of data interaction of the interactive device.

[0046] The cancellation of the transmission of the second bus signal in this embodiment is further described below.

[0047] As an optional embodiment, the second pin group includes a first sub-pin group and a second sub-pin group deployed at different positions, wherein the transmission device is configured to send the first bus signal in the second target type signal through the first sub-pin group, and the target chip connected to the first sub-pin group is configured to receive the first bus signal at the second data transmission rate, wherein the second sub-pin group cancels the transmission of the second bus signal in the second target type signal.

[0048] In this embodiment, the second bus signal in the second target type signal can be cancelled on the second sub-pin group. For example, if the second bus signal is a USB3.x signal, the USB3.x signal can be cancelled on the second sub-pin group, which is merely illustrative and not limited in the specific.

[0049] In this embodiment, in the transmission device, the first sub-pin group deployed in the second pin group can send the first bus signal in the second target type signal to the target chip, so that the purpose of sending the first bus signal to the target chip is achieved, and the technical effect of improving the diversity of the transmitted signals is achieved.

[0050] Optionally, the A6 pin, the A7 pin, the B6 pin and the B7 pin are used to send the USB2.0 signal to the SOC.

[0051] In this embodiment, after the first bus signal is sent by the first sub-pin group, the target chip connected with the first sub-pin group can receive the first bus signal at the second data transmission rate, so that the purpose of controlling the target chip to accept the first bus signal is achieved, and the technical effect of improving the efficiency of data interaction of the interactive device is achieved.

[0052] The cancellation of the transmission of the first bus signal in this embodiment is further described below.

[0053] As an optional embodiment, the second pin group includes a first sub-pin group and a second sub-pin group deployed at different positions, wherein the transmission device is configured to send a second bus signal in the second target type signal through the second sub-pin group; the target chip is connected with the second sub-pin group and is configured to receive the second target type signal at the second data transmission rate, and the first sub-pin group cancels the transmission of the first bus signal in the second target type signal.

[0054] In this embodiment, the first bus signal in the second target type signal can be cancelled on the first sub-pin. For example, if the first bus signal is a USB2.0 signal, the USB2.0 signal can be cancelled on the first sub-pin, which is only used as an example and is not limited.

[0055] In this embodiment, in the transmission device, the second sub-pin group deployed in the second pin group can send the second bus signal in the second target type signal to the target chip, so that the purpose of sending the second bus signal to the target chip is achieved, and the technical effect of improving the diversity of the transmitted signals is achieved.

[0056] Optionally, the A10 pin, the A11 pin, the B2 pin and the B3 pin are used to send the USB3.x signal to the SOC.

[0057] In the embodiment, after the transmission device sends the second bus signal through the second sub-pin group, the target chip can receive the second bus signal at the second data transmission rate through the target chip connected with the second sub-pin group, so that the purpose of controlling the target chip to receive the second bus signal is achieved, and the technical effect of improving the data interaction efficiency of the interactive device is achieved.

[0058] The transmission of the first target type signal and the second bus signal of the embodiment is further described below.

[0059] As an optional embodiment, the second pin group includes a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send the first target type signal through the second sub-pin group, send the first bus signal in the second target type signal through the first sub-pin group, and send the second bus signal in the second target type signal through the first pin group; the target chip is connected with the second sub-pin group and is configured to receive the first target type signal at the first data transmission rate, and the target chip is connected with the first sub-pin group and is configured to receive the first bus signal at the second data transmission rate and receive the second bus signal at the second data transmission rate.

[0060] In the embodiment, in the transmission device, the second sub-pin group arranged in the second pin group can send the first target type signal to the target chip, the first sub-pin group arranged in the second pin group can send the first bus signal in the second target type signal to the target chip, and the first pin group arranged in the transmission device can send the second bus signal in the second target type signal to the target chip, so that the purpose of sending different signals to the target chip is achieved, and the technical effect of improving the diversity of the transmitted signals is achieved.

[0061] Optionally, the SOC is sent a 10-gigabit Ethernet signal by the A10 pin, the A11 pin, the B2 pin and the B3 pin, is sent a USB2.0 signal by the A6 pin, the A7 pin, the B6 pin and the B7 pin, and is sent a USB3.x signal by the A2 pin, the A3 pin, the B10 pin, the B11 pin, the A8 pin and the B8 pin.

[0062] In this embodiment, after the first target type signal is sent by the second sub-pin group, the first bus signal is sent by the first sub-pin group, and the second bus signal is sent by the first pin group, the first target type signal at the first data transmission rate can be received by the target chip connected with the second sub-pin group, the first bus signal at the second data transmission rate can be received by the target chip connected with the first sub-pin group, and the second bus signal at the second data transmission rate can be received by the target chip connected with the first pin group, thereby achieving the purpose that the target chip can receive different signals, and realizing the technical effect that the data interaction efficiency of the interactive device can be improved.

[0063] The transmission of the third target type signal and the second bus signal in this embodiment will be further described below.

[0064] As an optional embodiment, the second pin group includes the first sub-pin group and the second sub-pin group arranged at different positions, wherein the transmission device is configured to send the first bus signal in the second target type signal through the first sub-pin group, and send the third target type signal through the second sub-pin group; the target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, and is connected with the second sub-pin group and configured to receive the third target type signal at the third data transmission rate.

[0065] In this embodiment, the third target type signal described above can be other high-speed signals different from the USB signal.

[0066] In this embodiment, the third data transmission rate described above can be associated with the type of the third target type signal. That is, if the first target type signal is other high-speed signals different from the USB signal, the first data transmission rate described above can be a data transmission rate that meets the transmission of other high-speed signals.

[0067] In this embodiment, in the transmission device described above, the first sub-pin group arranged in the second pin group can send the first bus signal in the second target type signal to the target chip, and the second sub-pin group arranged in the second pin group can send the third target type signal to the target chip, thereby achieving the purpose that different signals can be sent to the target chip, and realizing the technical effect that the diversity of the transmitted signals can be improved.

[0068] Optionally, the USB2.0 signal is sent to the SOC by the A6 pin, the A7 pin, the B6 pin and the B7 pin, and the other high-speed signal is sent to the SOC by the A10 pin, the A11 pin, the B2 pin and the B3 pin.

[0069] In this embodiment, after the first bus signal is sent by the first sub-pin group and the third target type signal is sent by the second sub-pin group, the first bus signal at the second data transmission rate can be received by the target chip connected with the first sub-pin group, and in addition, the third target type signal at the third data transmission rate can be received by the target chip connected with the second sub-pin group, thereby achieving the purpose of controlling the target chip to receive different signals, and realizing the technical effect of improving the data interaction efficiency of the interactive device.

[0070] The protection device of this embodiment is further described below.

[0071] As an optional embodiment, a plurality of protection devices are respectively arranged at the first pin group and the second pin group, and the plurality of protection devices are used to prohibit the first pin group and the second pin group from being in the circuit abnormal state.

[0072] In this embodiment, the protection device can be an isolation protection device, and the plurality of isolation protection devices can include electronic elements for electrostatic discharge (ESD) protection, isolation capacitors, common mode inductors, and the like, which are only exemplified and not specifically limited.

[0073] In this embodiment, the plurality of protection devices can be respectively arranged at the first pin group and the second pin group.

[0074] In this embodiment, the protection device arranged at the first pin group can be used to prohibit the first pin group from being in the circuit abnormal state, and the protection device arranged at the second pin group can be used to prohibit the second pin group from being in the circuit abnormal state, thereby achieving the purpose of avoiding the abnormality of the pin, and realizing the technical effect of improving the safety of the pin.

[0075] Part of the protection device of this embodiment is further described below.

[0076] As an optional embodiment, part of the plurality of protection devices is respectively arranged at the first sub-pin group and the second sub-pin group, and the part of the plurality of protection devices is used to prohibit the first sub-pin group and the second sub-pin group from being in the circuit abnormal state.

[0077] In this embodiment, the part of the plurality of protection devices can be respectively arranged at the first sub-pin group and the second sub-pin group.

[0078] In the embodiment, the first sub-pin group can be prohibited from being in the circuit abnormal state by the protection device arranged at the first sub-pin group, and the second sub-pin group can be prohibited from being in the circuit abnormal state by the protection device arranged at the second sub-pin group, so that the abnormality of the pin can be avoided, and the safety of the pin can be improved.

[0079] The transmission device in the embodiment will be further described below.

[0080] As an optional embodiment, the transmission device comprises a connector, and the target chip comprises a system chip.

[0081] In the embodiment, the transmission device can comprise a connector arranged in the interactive device, and the connector can be a TYPE-C connector.

[0082] In the embodiment, the target chip can comprise a system chip arranged in the interactive device.

[0083] In the embodiment, when the signal is transmitted by the interactive device, the transmission device can transmit the first target type signal through the first pin group and transmit the second target type signal through the second pin group, the target chip connected with the first pin group can receive the first target type signal at the first data transmission rate, and the target chip connected with the second pin group can receive the second target type signal at the second data transmission rate. In the embodiment, after the first target type signal is transmitted through the first pin group and the second target type signal is transmitted through the second pin group, the target chip can receive the first target type signal at the first data transmission rate, and the target chip can receive the second target type signal at the second data transmission rate, so that the data type of the transmission can be avoided, and the technical problem of low efficiency of data interaction of the interactive device is solved, and the technical effect of improving the efficiency of data interaction of the interactive device is achieved.

[0084] For example, the interactive device in the utility model can be used to provide signal transmission function for preset application scenarios. The preset application scenarios can include the following scenarios in the vehicle field: commuting automatic driving scenario, artificial intelligence (AI) driving scenario for family cars, automatic parking assist (APA) scenario (such as memory parking for self-owned parking space in a garage, intelligent parking for designated parking space in a parking lot, etc.) and intelligent navigation assist (NGP) scenario in urban areas or high-speed areas, etc. In addition, the preset application scenarios can include but are not limited to the following: intelligent transportation scenario of intelligent driving truck or unmanned truck in the logistics transportation field, intelligent agricultural scenario of automatic driving agricultural vehicle in the agricultural machinery field, etc.

[0085] When the preset application scenario is a scenario in other fields except the vehicle field, those skilled in the art should understand that the vehicle in the utility model can be replaced by other objects (for example, agricultural machinery, unmanned aerial vehicle and robot, etc.), and accordingly, each device and system included in the vehicle can be replaced by the device and system related to the other objects.

[0086] The technical solutions of the utility model embodiments will be illustrated below in combination with preferred embodiments.

[0087] In actual application, the size of the single board is often limited. For example, the size of the single board meeting the requirements of miniaturization, light weight and installation space is small, and too many connectors cannot be placed on the single board, thereby causing the type of data to be transmitted to be limited, resulting in the technical problem of low efficiency of data interaction.

[0088] For example, FIG. 2(a) is a schematic diagram of a single board structure in the related art. As shown in FIG. 2(a), in actual application, the single board 200 can be deployed with a SOC 201, a TYPE-C connector 202, a 10G physical layer (PHY) interface 203 and a gigabit connector 204. The USB signal can be transmitted to the SOC 201 through the TYPE-C connector 202, and the gigabit Ethernet signal can be transmitted to the SOC 201 through the 10G PHY interface 203 via the gigabit connector 204. However, if the size of the single board is too small, it is difficult to simultaneously deploy the TYPE-C connector and the gigabit connector, thereby causing the type of data to be transmitted to be limited, resulting in the technical problem of low efficiency of data interaction of the interactive device.

[0089] However, the utility model discloses an interactive device, when signal transmission is carried out with the interactive device, the transmission equipment can send the first target type signal through the first pin group, and the second target type signal is sent through the second pin group, and the target chip connected with the first pin group can receive the first target type signal under the first data transmission rate, and the target chip connected with the second pin group can receive the second target type signal under the second data transmission rate, which achieves the purpose of avoiding the limitation of the data type of transmission, thereby solving the technical problem of low efficiency of data interaction of the interactive device, and further realizing the technical effect of improving the efficiency of data interaction of the interactive device.

[0090] In this embodiment, in the interactive device, the transmission equipment is deployed, wherein the transmission equipment can be a TYPE-C connector that combines transmission of a gigabit Ethernet signal and a universal serial bus (USB) signal. For example, FIG. 2(b) is a schematic diagram of a single board structure according to an embodiment of the utility model, as shown in FIG. 2(b), in the single board 210, the SOC 211 and the TYPE-C connector 212 are deployed. Among them, the USB signal can be sent to the SOC 211 through the TYPE-C connector 212, and the gigabit Ethernet signal can be sent to the SOC 211 through the TYPE-C connector 212.

[0091] For example, in the above-mentioned TYPE-C connector, A6 pin, A7 pin, B6 pin and B7 pin are deployed, wherein the A6 pin, A7 pin, B6 pin and B7 pin can be used to transmit USB2.0 signal to SOC; In the TYPE-C connector, A10 pin, A11 pin, B2 pin and B3 pin are deployed, wherein the A10 pin, A11 pin, B2 pin and B3 pin can be used to transmit USB3.1 signal or USB3.2 signal to SOC; In the TYPE-C connector, A2 pin, A3 pin, B10 pin and B11 pin are deployed, wherein the A2 pin, A3 pin, B10 pin and B11 pin can be used to transmit 10G ETH signal (also can be represented as 10G ETH MDC signal) to SOC; In the TYPE-C connector, A8 pin and B8 pin are deployed, wherein the A8 pin and B8 pin can be used to control the channel of transmitting 10G ETH MDC signal.

[0092] For example, the 10G ETH MDC signal can include a 10G ETH TX P signal, a 10G ETH TX N signal, a 10G ETH RX P signal and a 10G ETH RX N signal, the USB2.0 signal can include a USB2.0 DP signal and a USB2.0 DN signal, and the USB3.x signal can include a USB3 RX N signal, a USB3 RX P signal, a USB3 TX N signal and a USB3 TX P signal.

[0093] In this embodiment, isolation protection devices can also be arranged on the signal pins, for example, the isolation protection devices can include an ESD, a common mode inductor, a direct current blocking capacitor and the like.

[0094] For another example, in the TYPE-C connector, the A10 pin, the A11 pin, the B2 pin and the B3 pin can cancel transmission of the USB3.1 signal or cancel transmission of the USB3.2 signal.

[0095] For another example, the TYPE-C connector can be as shown in FIG. 2(c), which is a schematic diagram of another TYPE-C connector according to an embodiment of the present application. In the TYPE-C connector, the A6 pin, the A7 pin, the B6 pin and the B7 pin can cancel transmission of the USB2.0 signal.

[0096] For another example, in the TYPE-C connector, the A10 pin, the A11 pin, the B2 pin and the B3 pin can be used to transmit other high-speed signals, for example, the other high-speed signals can be a second 10G ETH signal, which is only illustrative and not limited.

[0097] For further example, in the TYPE-C connector, the A10 pin, the A11 pin, the B2 pin and the B3 pin can be used to transmit the 10G ETH signal to the SOC, and the A2 pin, the A3 pin, the B10 pin and the B11 pin can be used to transmit the USB3.1 signal or the USB3.2 signal to the SOC.

[0098] In this embodiment, the vehicle can upload the transmission state of the first target type signal and the second target type signal to the server, so that the server can record whether the first target type signal and the second target type signal are successfully transmitted. Fig. 2(d) is a schematic diagram of data interaction between a vehicle and a server according to an embodiment of the present application, as shown in Fig. 2(d), the vehicle 220 can upload the current transmission state of the first target type signal and the current transmission state of the second target type signal to the server 221, and the server 221 can download the historical transmission state of the first target type signal and the historical transmission state of the second target type signal to the vehicle 220, wherein the current transmission state of the first target type signal can be used to indicate the transmission progress of the first target type signal at the current time, the current transmission state of the second target type signal can be used to indicate the transmission progress of the second target type signal at the current time, the historical transmission state of the first target type signal can be used to indicate the transmission progress of the first target type signal at the historical time, and the historical transmission state of the second target type signal can be used to indicate the transmission progress of the second target type signal at the historical time.

[0099] In this embodiment, when the signal is transmitted by using the interaction device, the transmission device can send the first target type signal through the first pin group and send the second target type signal through the second pin group, the target chip connected with the first pin group can receive the first target type signal at the first data transmission rate, and the target chip connected with the second pin group can receive the second target type signal at the second data transmission rate, so that the purpose of avoiding the limitation of the transmitted data type is achieved, thereby solving the technical problem of low efficiency of data interaction of the interaction device, and further realizing the technical effect of improving the efficiency of data interaction of the interaction device.

[0100] According to another aspect of the embodiments of the present application, a vehicle is also provided, which comprises: a memory storing an executable program; and a processor running the program, wherein the program controls the interaction device of any one of the above when running.

[0101] Figure 3 is a structural block diagram of a vehicle according to an embodiment of the present application, as shown in Figure 3 The components of the vehicle 300 include but are not limited to a memory 310 and a processor 320. The processor 320 is connected with the memory 310 through a bus 330, and a database 350 is used to save data.

[0102] The vehicle 300 can also include an access device 340 that enables the vehicle 300 to communicate via one or more networks 360. Examples of these networks include the Public Switched Telephone Network (PSTN), a Local Area Network (LAN), a Wide Area Network (WAN), a Personal Area Network (PAN), or a combination of communication networks such as the Internet. The access device 340 can include one or more of any type of network interface (e.g., network interface card (NIC)) such as an IEEE 802.11 Wireless Local Area Network (WLAN) wireless interface, a Worldwide Interoperability for Microwave Access (Wi-MAX) interface, an Ethernet interface, a Universal Serial Bus (USB) interface, a cellular network interface, a Bluetooth interface, a Near Field Communication (NFC) interface, and the like, either wired or wireless.

[0103] In one embodiment of the present disclosure, the above-mentioned components of the vehicle 300 and other components not shown in the above-mentioned components of the vehicle 300 and other components not shown in the figure can be connected to each other, for example, through a bus. It should be understood that, Figure 3 Figure 3 The vehicle structure diagram shown is only for the purpose of example, and is not a limitation on the scope of the present disclosure. Those skilled in the art can add or replace other components as needed.

[0104] It should be noted that the above-mentioned sequence number of the embodiments of the present application is only for description, and does not represent the advantages and disadvantages of the embodiments.

[0105] In the above-mentioned embodiments of the present application, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.

[0106] ​In several embodiments provided by the utility model, it should be understood that the disclosed technical content can be realized by other ways. Among them, the device embodiments described above are only schematic, for example, the division of units can be logical function division, and another division mode can be realized in actual implementation, for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point, the coupling or direct coupling or communication connection between the displayed or discussed each other can be through some interface, indirect coupling or communication connection between units or modules, which can be electrical or other forms.

[0107] The unit described as a separate component can or can not be physically separated, and the component shown as a unit can or can not be a physical unit, that is, it can be located in one place, or it can be distributed to multiple units. Part or all of the units can be selected according to actual needs to achieve the purpose of the embodiment scheme.

[0108] In addition, the function units in each embodiment of the utility model can be integrated in a processing unit, or each unit can exist physically, or two or more units can be integrated in one unit. The integrated unit can be realized in the form of hardware or in the form of software function unit.

[0109] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the art, without departing from the principle of the utility model, some improvements and refinements can be made, and these improvements and refinements should be regarded as the protection range of the utility model.

Claims

1. An interactive device, characterized by The application relates to a transmission device and a target chip, wherein the transmission device is provided with a first pin group and a second pin group at different positions, and the transmission device is configured to send a first target type signal through the first pin group and a second target type signal through the second pin group. The target chip is connected with the first pin group and configured to receive the first target type signal at a first data transmission rate, and the target chip is connected with the second pin group and configured to receive the second target type signal at a second data transmission rate. The second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a first bus signal in the second target type signal through the first sub-pin group and a second bus signal in the second target type signal through the second sub-pin group. The target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, and the target chip is connected with the second sub-pin group and configured to receive the second bus signal at the second data transmission rate.

2. The interactive device of claim 1, wherein, The second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a first bus signal in the second target type signal through the first sub-pin group. The target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, and the second sub-pin group is configured to cancel transmission of a second bus signal in the second target type signal. The second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send a second bus signal in the second target type signal through the second sub-pin group.

3. The interactive device of claim 1, wherein, The target chip is connected with the second sub-pin group and configured to receive the second target type signal at the second data transmission rate, and the first sub-pin group is configured to cancel transmission of a first bus signal in the second target type signal. The second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send the first target type signal through the second sub-pin group, send a first bus signal in the second target type signal through the first sub-pin group, and send a second bus signal in the second target type signal through the first pin group. The target chip is connected with the second sub-pin group and configured to receive the first target type signal at the first data transmission rate, and the target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate and receive the second bus signal at the second data transmission rate.

4. The interactive device of claim 1, wherein, The second pin group comprises a first sub-pin group and a second sub-pin group arranged at different positions, wherein the transmission device is configured to send the first target type signal through the second sub-pin group, send a first bus signal in the second target type signal through the first sub-pin group, and send a second bus signal in the second target type signal through the first pin group. The target chip is connected with the second sub-pin group and configured to receive the first target type signal at the first data transmission rate, and the target chip is connected with the first sub-pin group and configured to receive the first bus signal at the second data transmission rate and receive the second bus signal at the second data transmission rate. ​ 5. The interactive device of claim 1, wherein, ​ ​ ​ 6. The interactive device of claim 1, wherein, ​ The transmission device is configured to transmit a first bus signal in the second target type signal through the first sub-pin group and transmit a third target type signal through the second sub-pin group. The target chip is connected to the first sub-pin group and configured to receive the first bus signal at the second data transmission rate, and is connected to the second sub-pin group and configured to receive the third target type signal at a third data transmission rate.

7. The interactive device of claim 2, wherein A plurality of protection devices are respectively arranged at the first pin group and the second pin group, and the plurality of protection devices are configured to disable the first pin group and the second pin group from being in the abnormal circuit state.

8. The interactive device of claim 7, wherein Part of the plurality of protection devices are respectively arranged at the first sub-pin group and the second sub-pin group, and the part of the plurality of protection devices are configured to disable the first sub-pin group and the second sub-pin group from being in the abnormal circuit state.

9. The interactive device of any one of claims 1 to 8, wherein The transmission device comprises a connector, and the target chip comprises a system on chip.

10. A vehicle characterized by comprising: including: a memory storing an executable program; a processor configured to execute the program, wherein the program, when executed, controls the interactive device of any one of claims 1 to 9.