Power supply control method, power supply equipment, electrical equipment and equipment control method
By using a unified control module in power supply equipment to manage the output power of wireless and wired power supply interfaces, the power exceeding problem caused by independent control is solved, and cost reduction and equipment reliability are improved.
Patent Information
- Application Number
- CN202311576271.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-23
- Publication Date
- 2025-05-23
AI Technical Summary
In existing power supply equipment, the wireless power supply interface and the wired power supply interface are independently controlled, resulting in the sum of the output power that may exceed the maximum power supply power supported by the power supply equipment, increasing production costs and possibly causing equipment failure.
A unified control module detects the power supply required by the wireless and wired power supply interface, and controls the output power of the wireless and wired power supply interfaces according to the maximum power supported by the power supply equipment, so as to ensure that the total power does not exceed the maximum supported power.
It effectively solves the problem that the sum of the output power of the wireless and wired power supply interface exceeds the maximum power supply power, reduces production costs, and improves the reliability and safety of the equipment.
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Figure CN120033788A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of power supply technology, and in particular to a power supply control method, power supply equipment, electrical equipment and equipment control method. Background Art
[0002] The power supply device charges the electronic device in two ways: wired and wireless.
[0003] In the related art, the wireless power supply circuit and the wired power supply circuit in the power supply device are usually controlled by different controllers. This not only increases the production cost of the power supply device, but also may cause the sum of the output power of the wired power supply interface and the wireless power supply interface to exceed the maximum power supply supported by the power supply device. Summary of the invention
[0004] Embodiments of the present application provide a power supply control method, a power supply device, an electrical device, a device control method, a device, an electronic device, and a storage medium.
[0005] According to a first aspect of an embodiment of the present application, a power supply control method is provided, which is applied to an electronic device, and the method includes:
[0006] Detecting a first power supply power required by the wireless power supply interface;
[0007] Detecting a second power supply power required by the wired power supply interface;
[0008] According to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device, the output power of the wired power supply interface and the output power of the wireless power supply interface are controlled respectively.
[0009] Optionally, the controlling the output power of the wired power interface and the output power of the wireless power interface respectively according to the first power supply power, the second power supply power, and the maximum power supply power supported by the power supply device includes:
[0010] When the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, the power supply power of the wireless power supply interface and the wired power supply interface is adjusted according to the power supply priority of the charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected.
[0011] Optionally, adjusting the power supply power of the wireless power supply interface and the wired power supply interface according to the power supply priority of charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected includes:
[0012] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output a third power supply power, wherein the third power supply power is less than the difference between the maximum power supply power and the first power supply power; or
[0013] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is equal to or greater than the maximum power supply power supported by the power supply device, control the wireless power supply interface to output the maximum output power and stop the power supply of the wired power supply interface; or
[0014] When the power supply priority of the charging device connected to the wireless power supply interface is lower than the power supply priority of the charging device connected to the wired power supply interface and the second power supply power is less than the maximum power supply power supported by the power supply device, control the wired power supply interface to output the second power supply power and control the wireless power supply interface to output a fourth power supply power, wherein the fourth power supply power is less than the difference between the maximum power supply power and the second power supply power; or
[0015] When the power supply priority of the charging device connected to the wired power supply interface is higher than the power supply priority of the charging device connected to the wireless power supply interface and the second power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wired power supply interface is controlled to output the maximum output power and the power supply of the wireless power supply interface is stopped.
[0016] Optionally, the controlling the output power of the wired power interface and the output power of the wireless power interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device further includes:
[0017] When the sum of the first power supply power and the second power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output the second power supply power.
[0018] Optionally, the method further comprises:
[0019] First information is sent to a charging device according to the output power of the wired power supply interface and the wireless power supply interface; the first information is used to indicate the power supply provided to the charging device.
[0020] According to a second aspect of an embodiment of the present application, a power supply device is provided, the power supply device comprising:
[0021] A wireless power supply circuit, including a wireless power supply interface;
[0022] A wired power supply circuit, including a wired power supply interface;
[0023] A first control module is connected to the wired power supply circuit and the wireless power supply circuit, and is used to detect a first power supply power required by the wireless power supply interface and a second power supply power required by the wired power supply interface, and to control the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0024] Optionally, the first control module includes:
[0025] A first control unit, used to detect the power supply of the wireless power supply interface;
[0026] A second control unit, used to detect the power supply of the wired power supply interface;
[0027] The third control unit is used to determine the power supply power of the wireless power supply interface and the wired power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0028] Optionally, the first control unit, the second control unit and the third control unit are integrated on the same circuit board.
[0029] According to a third aspect of the embodiments of the present application, an electrical device is provided, the electrical device comprising:
[0030] The power supply device as described in any one of the above items.
[0031] Optionally, the electrical equipment further includes:
[0032] A support plate for placing charging equipment;
[0033] The power supply device is mounted on the support plate.
[0034] Optionally, the electrical device further comprises: at least one functional module;
[0035] The functional module is connected to the power supply device, and the power supply device provides power for the operation of the functional module. The third control unit in the power supply device is also used to control the working parameters of the functional module according to the relevant information of the charging device.
[0036] Optionally, the functional module includes: a driving module;
[0037] The driving module is used to adjust the height and inclination of the support plate;
[0038] Wherein, the third control unit is specifically used to send instructions to the driving module according to the relevant information, wherein the instructions are used by the driving module to adjust the height and / or inclination of the support plate.
[0039] Optionally, the relevant information includes: user identification information;
[0040] The third control unit is specifically used to send a first instruction to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
[0041] Optionally, the third control unit is further used to send a second instruction to the driving module according to the usage habits of the target user indicated by the user identification information; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
[0042] Optionally, the relevant information includes the current temperature of the charging device, and the functional module includes: a heat dissipation module;
[0043] The third control unit is further specifically used to control the working state of the heat dissipation module according to the current temperature of the charging device.
[0044] Optionally, the wireless power supply interface of the power supply device includes a plurality of first induction coils; the plurality of first induction coils are distributed at different positions of the support plate;
[0045] The third control unit is further specifically configured to control the on and off states of the plurality of first induction coils.
[0046] In a fourth aspect of the embodiments of the present application, a device control method is provided, which is applied to any of the above-mentioned electrical devices, and the method includes:
[0047] Get relevant information about charging equipment;
[0048] The operating parameters of the functional modules in the electrical device are controlled according to the relevant information of the charging device.
[0049] Optionally, controlling the working parameters of the functional modules in the electrical device according to the relevant information of the charging device includes:
[0050] An instruction is sent to the driving module according to the relevant information, wherein the instruction is used by the driving module to adjust the height and / or inclination of the support plate.
[0051] Optionally, the relevant information includes: user identification information, and sending instructions to the driving module according to the relevant information includes:
[0052] A first instruction is sent to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; wherein the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
[0053] Optionally, sending instructions to the driving module according to the height and / or usage habits of the target user indicated by the user identification information further includes:
[0054] According to the usage habits of the target user indicated by the user identification information, a second instruction is sent to the driving module; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
[0055] Optionally, the relevant information further includes: the current temperature of the charging device, and the controlling the working parameters of the functional modules in the electrical device according to the relevant information of the charging device further includes:
[0056] The working state of the heat dissipation module is controlled according to the current temperature of the charging device.
[0057] In a fifth aspect, an embodiment of the present application provides a power supply control device for the power supply device provided in the second aspect, the device comprising:
[0058] A first detection module, used to detect a first power supply power required by the wireless power supply interface;
[0059] A second detection module, used to detect a second power supply power required by the wired power supply interface;
[0060] The first control module is used to control the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0061] Optionally, the first control module is used to:
[0062] When the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, the power supply power of the wireless power supply interface and the wired power supply interface is adjusted according to the power supply priority of the charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected.
[0063] Optionally, the first control module is specifically configured to:
[0064] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output a third power supply power, wherein the third power supply power is less than the difference between the maximum power supply power and the first power supply power; or
[0065] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is equal to or greater than the maximum power supply power supported by the power supply device, control the wireless power supply interface to output the maximum output power and stop the power supply of the wired power supply interface; or
[0066] When the power supply priority of the charging device connected to the wireless power supply interface is lower than the power supply priority of the charging device connected to the wired power supply interface and the second power supply power is less than the maximum power supply power supported by the power supply device, control the wired power supply interface to output the second power supply power and control the wireless power supply interface to output a fourth power supply power, wherein the fourth power supply power is less than the difference between the maximum power supply power and the second power supply power; or
[0067] When the power supply priority of the charging device connected to the wired power supply interface is higher than the power supply priority of the charging device connected to the wireless power supply interface and the second power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wired power supply interface is controlled to output the maximum output power and the power supply of the wireless power supply interface is stopped.
[0068] Optionally, the first control module is further used to:
[0069] When the sum of the first power supply power and the second power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output the second power supply power.
[0070] Optionally, the device further comprises:
[0071] The sending module is used to send first information to the charging device according to the output power of the wired power supply interface and the wireless power supply interface; the first information is used to indicate the power supply provided to the charging device.
[0072] In a sixth aspect of the embodiments of the present application, there is provided a device control device for the electrical device provided in the third aspect, the device comprising:
[0073] An acquisition module is used to obtain relevant information of the charging device;
[0074] The second control module is used to control the working parameters of the functional modules in the electrical device according to the relevant information of the charging device.
[0075] Optionally, the second control module is used to:
[0076] An instruction is sent to the driving module according to the relevant information, wherein the instruction is used by the driving module to adjust the height and / or inclination of the support plate.
[0077] Optionally, the relevant information includes: user identification information, and the second control module is specifically used to:
[0078] A first instruction is sent to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; wherein the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
[0079] Optionally, the second control module is further specifically configured to:
[0080] According to the usage habits of the target user indicated by the user identification information, a second instruction is sent to the driving module; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
[0081] Optionally, the relevant information further includes: the current temperature of the charging device, and the second control module is further used to:
[0082] The working state of the heat dissipation module is controlled according to the current temperature of the charging device.
[0083] According to a seventh aspect of the embodiments of the present application, an electronic device is provided, including:
[0084] a memory for storing processor-executable instructions;
[0085] A processor connected to the memory;
[0086] The processor is used to execute the power supply control method described in the first aspect and / or the device control method described in the fourth aspect.
[0087] In an eighth aspect of an embodiment of the present application, a non-temporary computer-readable storage medium is provided. When the instructions in the storage medium are executed by a processor of a computer, the computer is enabled to execute the power supply control method described in the first aspect above, and / or the device control method described in the fourth aspect.
[0088] The technical solution provided by the embodiments of the present application may have the following beneficial effects:
[0089] In the embodiment of the present application, since the control module that controls the wireless power supply interface and the wired power supply interface is the same control module, the control module can not only know the power supply power required by the wireless power supply interface, but also know the power supply power required by the wired power supply interface. Therefore, the control module can control the wireless power supply interface and the wired power supply interface according to the power supply power required by the wireless power supply interface and the wired power supply interface and the maximum power supply power supported by the power supply device. This can solve the problem that the sum of the output power of the wired power supply interface and the wireless power supply interface exceeds the maximum power supply power supported by the power supply device due to independent control of the wireless power supply interface and the wired power supply interface.
[0090] It should be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0091] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0092] Figure 1 It is a schematic diagram of the interaction between a wireless power supply device and an electronic device to be charged;
[0093] Figure 2 is a schematic structural diagram of a power supply device according to an exemplary embodiment;
[0094] Figure 3 is a structural schematic diagram of a power supply device according to another exemplary embodiment;
[0095] Figure 4 is a flow chart of a power supply control method according to an exemplary embodiment;
[0096] Figure 5 is a schematic structural diagram of a lifting table according to an exemplary embodiment;
[0097] Figure 6is a structural schematic diagram of a lifting table according to another exemplary embodiment;
[0098] Figure 7 is a structural schematic diagram of an electrical device according to an exemplary embodiment;
[0099] Figure 8 is a structural schematic diagram of an electrical device according to another exemplary embodiment;
[0100] Figure 9 is a schematic diagram showing a third control unit controlling a wireless power supply interface according to an exemplary embodiment;
[0101] Figure 10 is a schematic diagram showing a third control unit controlling a wireless power supply interface according to another exemplary embodiment;
[0102] Figure 11 is a flow chart of a device control method according to an exemplary embodiment;
[0103] Figure 12 is a flow chart of an output power control method according to an exemplary embodiment;
[0104] Figure 13 is a structural schematic diagram of a power supply control device according to an exemplary embodiment;
[0105] Figure 14 is a schematic structural diagram of a device control apparatus according to an exemplary embodiment;
[0106] Figure 15 The diagram is a schematic structural diagram of an electronic device according to an exemplary embodiment. DETAILED DESCRIPTION
[0107] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the embodiments of the present application. Instead, they are merely examples of devices and methods consistent with some aspects of the embodiments of the present application as detailed in the appended claims.
[0108] The terms used in the embodiments of the present application are only for the purpose of describing specific embodiments, and are not intended to limit the embodiments of the present application. The singular forms of "a", "said" and "the" used in the embodiments of the present application and the appended claims are also intended to include plural forms, unless the context clearly indicates other meanings. It should also be understood that the term "and / or" used herein refers to and includes any or all possible combinations of one or more associated listed items.
[0109] It should be understood that, although the terms first, second, third, etc. may be used to describe various information in the embodiments of the present application, these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the embodiments of the present application, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein may be interpreted as "at..." or "when..." or "in response to determination".
[0110] refer to Figure 1 , Figure 1 A schematic diagram of the interaction between a wireless charging device and an electronic device when the electronic device is charged by the wireless charging device is shown in FIG. Figure 1 The transmitting end is the wireless charging device, and the electronic device to be charged is the wireless receiving end. Before the wireless charging device charges the electronic device, the first communication module 212 of the wireless charging device can communicate with the second communication module 213 in the electronic device, and then the charging power of the electronic device is controlled through the second control module 210 and the third control module 211.
[0111] refer to Figure 2 , Figure 2 is a schematic diagram of the structure of a power supply device in an embodiment of the present application, such as Figure 2 As shown, the power supply device includes:
[0112] A wireless power supply circuit, comprising a wireless power supply interface 201;
[0113] A wired power supply circuit, including a wired power supply interface 202;
[0114] The first control module 203 is connected to the wired power supply circuit and the wireless power supply circuit, and is used to detect the first power supply power required by the wireless power supply interface 201 and the second power supply power required by the wired power supply interface 202, and to control the output power of the wired power supply interface 202 and the output power of the wireless power supply interface 201 according to the first power supply power, the second power supply power and the maximum power supported by the power supply device.
[0115] In one embodiment, the wireless power supply circuit further includes: a first transformer module 204 and an inverter module 205; one end of the first transformer module 204 is connected to the power supply 206, and the other end is connected to the inverter module 205; the first transformer module 204 is used to provide a second voltage to the inverter module 205 according to the first voltage provided by the power supply 206. One end of the inverter module 205 is connected to the first transformer module 204, and the other end is connected to the wireless power supply interface 201, and is used to convert direct current into alternating current, so that the wireless power supply interface 201 can charge the charging device by wireless charging.
[0116] It can be understood that the charging device in the embodiment of the present application can be any electronic device that can be charged in a wired or wireless manner.
[0117] For example, the charging device can be: mobile phones, tablet computers, laptops, learning machines, Bluetooth headsets and other terminal devices.
[0118] For example, in one embodiment, the wireless power supply interface 201 may include one or more first induction coils for charging a battery in the charging device by electromagnetic induction with a second induction coil in the charging device.
[0119] Exemplarily, a filter circuit is further included between the plurality of first induction coils and the inverter module 205 .
[0120] For example, the filter circuit may include a first inductor L4, a second inductor L5, a first capacitor C1 and a second capacitor C2, wherein the first inductor L4 is connected in series between the output end of the inverter module 205 and the first capacitor C1, the second inductor L5 is connected in series between the first induction coil and the output end of the inverter circuit, the first capacitor C1 is connected in parallel with the first induction coil, and the second capacitor C2 is connected in series between the first inductor L4 and the first induction coil.
[0121] Exemplarily, the inverter module 205 may be a full-bridge inverter circuit, or other circuits capable of converting direct current into alternating current, which is not limited in the embodiments of the present application.
[0122] In one embodiment, the wired power supply circuit also includes: a second transformer module 207, one end of which is connected to the power supply 206, and the other end is connected to the wired power supply interface 202; the second transformer module 207 is used to provide a third voltage to the wired power supply interface 202 according to the first voltage provided by the power supply.
[0123] Among them, the second voltage required by the wireless power supply interface 201 can be determined by negotiation between the first control module 203 and the charging device connected to the wireless power supply interface 201. Similarly, the third voltage required by the wired power supply interface 202 can be determined by negotiation between the first control module 203 and the charging device connected to the wired power supply interface 202.
[0124] In one embodiment, the wired power supply interface 202 may be a USB (Universal Serial Bus) interface, which is used to connect to a charging interface on a charging device via a cable to charge the electronic device.
[0125] In the embodiment of the present application, the output power of the wired power supply interface 202 and the wireless power supply interface 201 is controlled by a first control module 203, which can reduce the number of control modules used, which is beneficial to reducing the size of the power supply device and reducing the production cost of the power supply device.
[0126] In addition, by controlling the output power of the wireless power supply interface 201 and the wired power supply interface 202 according to the maximum power supply supported by a control module, it can also solve the problem that when charging devices are connected to the wired power supply interface 202 and the wireless power supply interface 201 at the same time, the sum of the output powers of the wired power supply interface 202 and the wireless power supply interface 201 exceeds the maximum power supply supported by the power supply device.
[0127] In one embodiment, the first control module 203 includes:
[0128] A first control unit, used to detect the power supply of the wireless power supply interface 201;
[0129] A second control unit, used to detect the power supply of the wired power supply interface 202;
[0130] The third control unit is used to determine the power supply power of the wireless power supply interface and the wired power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0131] Exemplarily, the first control unit is used to detect whether a charging device is connected to the wireless power interface 201, and when it is detected that a charging device is connected to the wireless power interface 201, determine the power requirement of the wireless power interface 201 by communicating with the charging device connected to the wireless power interface 201.
[0132] Among them, the first control unit communicates with the charging device connected to the wireless power supply interface 201, and the communication protocol used can be a wireless charging protocol such as the Qi protocol or the AirFuel protocol, or it can be other communication protocols that can realize wireless charging communication, which is not limited in the embodiment of the present application.
[0133] The second control unit is used to detect whether a charging device is connected to the wired power supply interface 202, and when it is detected that a charging device is connected to the wired power supply interface 202, determine the power requirement of the wired power supply interface 202 by communicating with the charging device connected to the wired power supply interface.
[0134] Among them, the second control unit communicates with the charging device connected to the wired power supply interface 202, and the communication protocol adopted can be the PD (Power Delivery) interface communication protocol or the USB BC1.2 protocol, or it can be other capable wired charging communication protocols, which is not limited in the embodiment of the present application.
[0135] When the first control unit determines that the power supply power required by the wireless power supply interface 201 is the first power supply power based on communication with the charging device connected to the wireless power supply interface 201 , the first control unit may notify the third control unit of the required first power supply power.
[0136] Similarly, when the second control unit determines that the power supply power required by the wired power supply interface 202 is the second power supply power based on communication with the charging device connected to the wired power supply interface 202, the second control unit may also notify the third control unit of the required second power supply power.
[0137] Based on this, the third control unit can determine the power supply power that can be provided to the wireless power supply interface 201 and the power supply power that can be provided to the wired power supply interface 202 according to the first power supply power required by the wireless power supply interface 201 and the second power supply power required by the wired power supply interface 202, as well as the maximum power supply power that the power supply device can support, and control the output power of the wireless power supply interface 201 through the first control unit, and control the output power of the wired power supply interface 202 through the second control unit.
[0138] In one embodiment, the steps performed by the first control unit, the second control unit and the third control unit can be implemented by a MCU (Microcontroller Unit) by executing different codes.
[0139] In an embodiment of the present application, the third control unit can control the output power of the wireless power interface 201 and the wired power interface 202 respectively through the first control unit and the second control unit according to the maximum power supply power that the power supply device can provide and the power supply power required by the wireless power supply interface 201 and the wired power supply interface 202. This can solve the problem that the sum of the output powers of the wireless power supply interface 201 and the wired power supply interface 202 exceeds the maximum power supply power supported by the power supply device.
[0140] In one embodiment, the first control unit, the second control unit and the third control unit are integrated on the same circuit board.
[0141] Exemplarily, among the first control unit, the second control unit and the third control unit, the third control unit is a main control unit, the third control unit can control the first control unit and the second control unit, and the third control unit can also control other modules in the power supply device.
[0142] For example, the third control unit may control the first control unit to send a first message to the charging device connected to the wireless power supply interface, and the first message is used to inform the charging device of the output power that the wireless power supply interface can provide. The third control unit may also control the second control unit to send a first message to the charging device connected to the wired power supply interface, and the first message is used to inform the charging device of the output power that the wired power supply interface can provide.
[0143] For example, the third control unit can also control the on / off module of the power supply device.
[0144] In addition, the power supply 206 supplies power for the operation of the first control unit, the second control unit, and the third control unit.
[0145] In an embodiment of the present application, the first control unit, the second control unit and the third control unit may be integrated on the same circuit board, which is helpful in reducing the size of the power supply device.
[0146] refer to Figure 3 In another embodiment, the first control unit may be integrated on one circuit board, and the second control unit and the third control unit may be integrated on another circuit board.
[0147] refer to Figure 4 , Figure 4 : is a flow chart of a power supply control method according to an embodiment of the present application. The power supply control method according to the embodiment of the present application can be applied to the power supply device provided in any of the above embodiments. Figure 4 , the power supply control method of the embodiment of the present application includes:
[0148] S401: Detecting a first power supply power required by the wireless power supply interface 201;
[0149] S402: Detecting a second power supply power required by the wired power supply interface 202;
[0150] S403: Control the output power of the wired power supply interface 202 and the output power of the wireless power supply interface 201 respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0151] In an embodiment of the present application, when the first control module 203 in the power supply device detects that a charging device is connected to the wireless power supply interface 201 , it can determine the first power supply power required by the wireless power supply interface 201 by communicating with the charging device connected to the wireless power supply interface 201 .
[0152] Similarly, when detecting that a charging device is connected to the wired power supply device, the first control module 203 in the power supply device can determine the second power supply power required by the wired power supply interface 202 by communicating with the charging device connected to the wired power supply interface 202 .
[0153] In addition, the first control module 203 also needs to obtain the maximum power supply power that the power supply device can support. After that, the power supply device can control the output power of the wireless power supply interface 201 and the wired power supply interface 202 according to the first power supply power required by the wireless power supply interface 201, the second power supply power required by the wired power supply interface 202, and the maximum power supply power supported by the power supply device.
[0154] In the embodiment of the present application, since the control module that controls the wireless power supply interface and the wired power supply interface is the same control module, the control module can not only know the power supply power required by the wireless power supply interface, but also know the power supply power required by the wired power supply interface. Therefore, the control module can control the wireless power supply interface and the wired power supply interface according to the power supply power required by the wireless power supply interface and the wired power supply interface and the maximum power supply power supported by the power supply device. This can solve the problem that the sum of the output power of the wired power supply interface and the wireless power supply interface exceeds the maximum power supply power supported by the power supply device due to independent control of the wireless power supply interface and the wired power supply interface.
[0155] In one embodiment, S403 includes:
[0156] When the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, the power supply power of the wireless power supply interface 201 and the wired power supply interface 202 is adjusted according to the power supply priority of the charging devices respectively connected to the wireless power supply interface 201 and the wired power supply interface 202.
[0157] In the embodiment of the present application, when the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, it means that the power supply device cannot simultaneously meet the power requirements of the wireless power supply interface 201 and the wired power supply interface 202. At this time, the power supply priority of the charging device connected to the wireless power supply interface 201 and the charging device connected to the wired power supply interface 202 can be determined first. If the power supply priority of the charging device connected to the wireless power supply interface 201 is higher than the priority of the charging device connected to the wired power supply interface 202, then the charging demand of the charging device connected to the wireless power supply interface 201 is preferentially met without exceeding the maximum power supply power supported by the power supply device. If the power supply priority of the charging device connected to the wired power supply interface 202 is higher than the power supply priority of the charging device connected to the wireless power supply interface 201, then the power supply power requirement of the wired power supply interface 202 is preferentially met without exceeding the maximum power supply power supported by the power supply device.
[0158] In one embodiment, the power supply priority of the charging device connected to the wireless power supply interface 201 and the charging device connected to the wired power supply interface 202 may be determined according to device type information and / or remaining power information of the charging device.
[0159] For example, different power supply priorities can be set in advance for different types of electronic devices according to the importance of the electronic devices to be charged to the user. For example, a higher power supply priority can be set for smart phones than for tablets, and a higher power supply priority can be set for tablets than for Bluetooth headsets.
[0160] Based on this, when the charging device connected to the wireless power supply interface 201 is a smart phone and the charging device connected to the wired power supply interface 202 is a tablet computer, the power supply priority of the smart phone connected to the wireless power supply interface 201 is higher than the power supply priority of the tablet computer connected to the wired power supply interface 202. At this time, the charging power demand of the smart phone connected to the wireless power supply interface 201 is preferentially met without exceeding the maximum power supply supported by the power supply device.
[0161] In another embodiment, if the charging device connected to the wireless power interface 201 and the charging device connected to the wired power interface 202 are electronic devices of the same type, the power supply priority of the charging device can also be determined according to the remaining power of the charging device connected to the wireless power interface 201 and the charging device connected to the wired power interface 202.
[0162] Exemplarily, the first control module 203 can obtain the remaining power information of the charging devices connected to the wireless power interface 201 and the wired power interface 202, and determine that the power supply priority of the charging device with lower remaining power is higher than the power supply priority of the charging device with higher remaining power.
[0163] That is, the charging device with a lower remaining power is charged first to reduce the probability that the charging device stops operating due to insufficient power.
[0164] For example, when smartphone A is connected to the wireless power supply interface 201 and smartphone B is connected to the wired power supply interface 202, if the remaining power of smartphone A is lower than the remaining power of smartphone B, the power supply priority of smartphone A is higher than the power supply priority of smartphone B. At this time, the power supply device prioritizes the charging power required by smartphone A on the wireless power supply interface 201.
[0165] In one embodiment, adjusting the power supply power of the wireless power supply interface 201 and the wired power supply interface according to the power supply priority of the charging devices connected to the wireless power supply interface 201 and the wired power supply interface 202 respectively includes:
[0166] When the power supply priority of the charging device connected to the wireless power supply interface 201 is higher than the power supply priority of the charging device connected to the wired power supply interface 202 and the first power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface 201 is controlled to output the first power supply power and the wired power supply interface 202 is controlled to output the third power supply power, wherein the third power supply power is less than the difference between the maximum power supply power and the first power supply power; or
[0167] When the power supply priority of the charging device connected to the wireless power supply interface 201 is higher than the power supply priority of the charging device connected to the wired power supply interface 202 and the first power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wireless power supply interface 201 is controlled to output the maximum output power and the power supply of the wired power supply interface 202 is stopped; or
[0168] When the power supply priority of the charging device connected to the wireless power supply interface 201 is lower than the power supply priority of the charging device connected to the wired power supply interface 202 and the second power supply power is less than the maximum power supply power supported by the power supply device, the wired power supply interface 202 is controlled to output the second power supply power and the wireless power supply interface 201 is controlled to output the fourth power supply power, wherein the fourth power supply power is less than the difference between the maximum power supply power and the second power supply power; or
[0169] When the power supply priority of the charging device connected to the wired power supply interface 202 is higher than the power supply priority of the charging device connected to the wireless power supply interface 201 and the second power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wired power supply interface 202 is controlled to output the maximum output power and the power supply of the wireless power supply interface 201 is stopped.
[0170] Exemplarily, when the charging device connected to the wireless power supply interface 201 is a smart phone, and the charging device connected to the wired power supply circuit is a tablet computer, since the power supply priority of the smart phone connected to the wireless power supply interface 201 is higher than the power supply priority of the tablet computer connected to the wired power supply interface 202, it is determined that the power supply device needs to give priority to meeting the power supply demand of the wireless power supply interface 201. If the first control module 203 determines that the wireless power supply interface 201 needs the first power supply P1 through interaction with the smart phone, and if the first control module 203 determines that the wireless power supply interface 201 needs the second power supply P2 through interaction with the tablet computer, the first control module 203 will control the power supply device to give priority to meeting the power demand of the wireless power supply interface 201. If the first power supply P1 required by the wireless power supply interface 201 is less than the maximum power supply P0 supported by the power supply device at this time, the power supply power of the wireless power supply interface 201 can be controlled to be P1, and the power supply power of the wired power supply interface 202 can be controlled to be P3. Among them, P3 = P0-P1-Pw, Pw is the power supply power required for the normal operation of the power supply device.
[0171] If the first power supply power P1 required by the wireless power supply device is greater than P0, the first control module 203 controls the output power of the wireless power supply interface 201 to be the maximum output power Pm, and controls the power supply device to stop supplying power to the tablet computer connected to the wired power supply interface 202, wherein Pm=P0-Pw.
[0172] Exemplarily, when the charging device connected to the wireless power supply interface 201 is a Bluetooth headset, and the charging device connected to the wired power supply interface 202 is a smart phone, since the power supply priority of the Bluetooth headset connected to the wireless power supply interface 201 is lower than the power supply priority of the smart phone connected to the wired power supply interface 202, it is determined that the power supply device needs to give priority to the power supply power demand of the wired power supply interface 202. If the first control module 203 determines that the power supply power required by the wireless power supply interface 201 is the first power supply power P1 through interaction with the Bluetooth headset, and the first control module 203 determines that the power supply power required by the wired power supply interface 202 is the second power supply power P2 through interaction with the smart phone, and the second power supply power P2 is less than P0, then the output power of the wired power supply circuit is controlled to be P2, and the output power of the wireless power supply interface 201 is the fourth output power P4. Wherein, P2=P0-P2-Pw.
[0173] If the second power supply power P2 required by the wired power supply interface 202 is greater than the maximum power supply power P0 supported by the power supply device, the output power of the wired power supply interface 202 is controlled to be the maximum output power Pm, and the power supply to the Bluetooth headset connected to the wireless power supply interface 201 is stopped, where Pm=P0-Pw.
[0174] In the embodiment of the present application, when the maximum power supply power supported by the power supply device cannot simultaneously meet the power supply power of the charging device connected to the wireless power supply interface 201 and the charging device connected to the wired power supply interface 202, the power supply demand of the charging device with a higher power supply priority is preferentially met. Since the power supply priority of the charging device is determined according to the importance of the charging device to the user and / or the remaining power, therefore, charging the device with a higher power supply priority is given priority, which can give priority to the normal operation of the charging device that is important to the user, thereby improving the user experience.
[0175] In an embodiment, the output powers of the wireless power supply interface 201 and the wired power supply interface 202 may be controlled respectively according to the order in which the charging device is connected to the wireless power supply interface 201 and the charging device is connected to the wired power supply interface 202 .
[0176] Exemplarily, when it is detected that a charging device is connected to the wireless power supply interface 201, and the output power required by the wireless power supply interface 201 is the first power supply P1, if a charging device has been connected to the wired power supply interface 202 before the current moment, and the output power of the wired power supply interface 202 is the second power supply P2. At this time, if P1 and P2 are both less than P0, and P1 and P2 are greater than P0, the output power of the wired power supply interface 202 that works first is controlled to continue to maintain P2, and the output power of the wireless power supply interface 201 is P4-Pw. If P1 is greater than P0, it is prohibited to power the wireless power supply interface.
[0177] Similarly, when it is detected that a charging device is connected to the wired power supply interface 202, and the output power required by the wired power supply interface 202 is the second power supply power P2, if a charging device has been connected to the wireless power supply interface 201 before the current moment, and the output power of the wireless power supply interface 201 is P1. At this time, if P1 and P2 are both less than P0, and the sum of P1 and P2 is greater than P0, the output power of the wireless power supply interface 201 continues to be P1, and the output power of the wired power supply interface 202 is P3. If P1 is greater than P0, it is forbidden to power the wired power supply interface.
[0178] In one embodiment, S403 further includes:
[0179] When the sum of the first power supply power and the second power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface 201 is controlled to output the first power supply power and the wired power supply interface 202 is controlled to output the second power supply power.
[0180] In the embodiment of the present application, if P0 is greater than or equal to the sum of P1, P2 and Pw, the output power of the wireless power supply interface 201 is controlled to be P1, and the output power of the wired power supply interface 202 is controlled to be P2.
[0181] In one embodiment, the method further comprises:
[0182] According to the output power of the wired power supply interface 202 and the wireless power supply interface 201 , first information is sent to the charging device; the first information is used to indicate the power supply provided to the charging device.
[0183] In an embodiment of the present application, after determining the output power of the wired power supply interface 202 and the wireless power supply interface 201, a first message can be sent to the charging devices connected to the wired power supply interface 202 and the wireless power supply interface 201 respectively. The first message is used to inform the charging device of the power supply that the wired power supply interface 202 and the wireless power supply interface 201 can provide.
[0184] Exemplarily, after determining that the output power of the wireless power interface 201 is the first power supply power, the first control module 203 can send a first message to the charging device connected to the wireless power interface 201 to inform the charging device connected to the wireless power interface 201 that the power supply power that the wireless power interface 201 can provide is the first power supply power, so that the charging device on the wireless power interface 201 adjusts its own charging circuit according to the first message.
[0185] Similarly, when it is determined that the output power of the wired power supply circuit is the second output power, the first control module 203 sends a first message to the charging device connected to the wired power supply interface 202 to inform the charging device connected to the wired power supply interface that the power supply power that the wired power supply interface can provide is the third output power, so that the charging device connected to the wired power supply interface 202 adjusts its own charging circuit according to the first message.
[0186] An embodiment of the present application further provides an electrical device, which includes the power supply device provided by any of the above embodiments.
[0187] For example, the electrical equipment in the embodiment of the present application may include Figure 2 or Figure 3 Power supply equipment shown.
[0188] In one embodiment, the electrical device includes, in addition to the power supply device provided in any of the above embodiments, further includes:
[0189] A support plate 208, used for placing charging equipment;
[0190] The power supply device is mounted on the support plate 208 .
[0191] In an embodiment of the present application, the power supply device provided by any of the above embodiments can be installed in an electrical device, and the wireless power supply interface 201 and the wired power supply interface 202 of the power supply device can be set on the support plate 208 of the electrical device, so that the user can charge the charging device through the wireless power supply interface 201 and the wired power supply interface 202 set on the support plate 208.
[0192] For example, reference Figure 5 and Figure 6 , Figure 5 and Figure 6 The electrical device in the embodiment of the present application may be a lifting table or a car charging box, or may be other electrical devices, and the embodiment of the present application is not limited to this.
[0193] When the electrical device of the embodiment of the present application is a lifting table, the support plate 208 is the desktop of the lifting table. When the electrical device is a vehicle-mounted charging box, the support plate 208 can be the cover of the vehicle-mounted charging box.
[0194] refer to Figure 7 and Figure 8 ,In one embodiment, the electrical device further includes: at least one functional module 209;
[0195] The functional module 209 is connected to a power supply device, which provides power for the operation of the functional module 209 , and the third control unit in the power supply device is also used to control the working parameters of the functional module 209 according to relevant information of the charging device.
[0196] In one embodiment, in addition to supplying power to charging devices connected to the wired power supply interface 202 and the wireless power supply interface 201, the power supply device also needs to supply power for the operation of the functional module 209 in the electrical device. In addition, the third control unit in the power supply device can also obtain relevant information of the charging devices connected to the wireless power supply interface 201 and the wired power supply interface 202 through communication with the first control unit and the second control unit, and control the working parameters of the functional module 209 of the electrical device based on the relevant information obtained.
[0197] For example, reference Figure 9 , Figure 9 A schematic diagram showing a third control unit communicating with a first control unit is shown in FIG.
[0198] Exemplarily, the functional modules 209 in the electrical device may include: a lighting module, a display module, a voice collection module, a voice output module, a heat dissipation module, a heating module, and the like.
[0199] Among them, the lighting module can display different lighting colors, and the heat dissipation module can include: a fan or a refrigeration component, etc.
[0200] The relevant information of the charging device may include: device type information, current temperature, user identification information, remaining power information, and charging status information of the charging device.
[0201] Exemplarily, when the functional module 209 in the electrical device is a display module, the third control unit can obtain the current temperature, remaining power information and charging status information of the charging device, and control the display module to display the working parameters of the wireless charging circuit and the wired charging circuit, and display the current temperature, remaining power information and charging status information of the charging device connected to the wireless power supply interface 201 and / or the wired power supply interface 202.
[0202] Exemplarily, when the third control unit determines that a charging abnormality occurs in the charging device connected to the wireless power supply interface 201 or the wired power supply interface 202 , the display screen may be controlled to display an abnormality warning.
[0203] For example, reference Figure 10 When the functional module 209 is a voice output module, the third control unit can also collect charging status information of the charging devices connected to the wireless power supply interface 201 and the wired power supply interface 202, and play voice prompts through the voice output module.
[0204] For example, when the third control unit determines that the smartphone connected to the wireless power supply interface 201 or the wired power supply interface 202 starts charging, the voice output module can be controlled to play a first prompt tone to indicate that the smartphone has started charging. When the third control unit determines that the smartphone connected to the wireless power supply interface 201 or the wired power supply interface 202 has a charging abnormality, the voice output module is controlled to play a second prompt tone to prompt the user that the smartphone is charging abnormally.
[0205] In another embodiment, the third control unit can also obtain working status information of the wireless power supply circuit and the wired power supply circuit, and control the working parameters of the working module in the electrical equipment according to the obtained working status information of the wireless power supply circuit and the wired power supply circuit.
[0206] In another embodiment, the third control unit can determine the priority of using the voice playback module and the display module for other functional modules 209 in the power supply device and the electrical device that need to use the voice output module and the display module.
[0207] In one embodiment, the functional module 209 includes: a driving module;
[0208] A driving module, used to adjust the height and inclination of the support plate 208;
[0209] The third control unit is specifically used to send instructions to the driving module according to relevant information, wherein the instructions are used for the driving module to adjust the height and / or inclination of the support plate 208 .
[0210] Exemplarily, when the third control unit determines that a charging device is connected to the wireless power supply interface and / or the wired power supply interface, it can send instructions to the drive module based on the device type information of the charging device, so that the drive module can adjust the support plate 208 to a preset height and / or a preset inclination according to the instructions.
[0211] For example, when the third control unit determines that a smartphone is connected to the wireless power supply interface and / or the wired power supply interface, the height of the support plate 208 can be adjusted to a preset height, wherein the preset height is a height that is convenient for the user to view the smartphone being charged. For example, the preset height can be any height between 1 and 1.2 m.
[0212] In one embodiment, the electrical device further includes a Bluetooth module, and the third control unit can communicate with a charging device connected to the wireless power supply interface and / or the wired power supply interface through the Bluetooth module to obtain relevant information of the charging device.
[0213] In one embodiment, the third control unit is specifically used to send a first instruction to the driving module based on the height and / or usage habits of the target user indicated by the user identification information; the first instruction is used to drive the module to adjust the height of the support plate 208 to a height that matches the height of the target user or the height that the target user is accustomed to.
[0214] Exemplarily, a first correspondence between user identification information and height information of multiple users may be pre-stored in the electrical device. When it is determined that a charging device is connected to the wired power supply interface 202 and / or the wireless power supply interface 201, the third control unit may also obtain the user identification information of the target user, find the height information of the target user from the stored first correspondence, and determine the first height suitable for the target user according to the height information of the target user. Afterwards, the third control unit sends a first instruction to the drive module so that the drive module adjusts the support plate 208 to the first height according to the first instruction.
[0215] Exemplarily, after obtaining the user identification information of the charging device connected to the wired power supply interface 202 and / or the wireless power supply interface 201, the third control unit can search for the height of the support plate 208 when the target user indicated by the user identification information used the electrical device at a historical moment. Assuming that the height of the support plate 208 used by the target user at a historical moment determined by the third control unit is the second height, a first instruction is sent to the driving module to enable the driving module to adjust the height of the support plate 208 to the second height.
[0216] The height of the support plate 208 when the target user used the electrical device at a historical moment may be an average height of the support plate 208 when the target user used the electrical device multiple times at historical moments, or may be the height of the support plate 208 when the target user used the electrical device last time.
[0217] In an embodiment of the present application, when the target user charges the electronic device through the wireless power supply interface and / or the wired power supply interface on the electrical device, the electrical device can also adjust the height of the support plate 208 of the electrical device according to the height and / or usage habits of the target user indicated by the user identification information obtained from the charging device, so as to adjust the height of the support plate 208 to a height suitable for the target user, thereby further improving the user experience.
[0218] In one embodiment, the third control unit is further used to send a second instruction to the driving module according to the usage habits of the target user indicated by the user identification information; the second instruction is used for the driving module to adjust the support plate 208 to the inclination that the target user is accustomed to.
[0219] For example, after obtaining the user identification information of the charging device, the third control unit may also adjust the inclination angle of the support plate 208 when the target user uses the electrical device at a historical moment. Assuming that the first inclination is obtained according to the inclination of the support plate 208 when the target user uses the electrical device at a historical moment, a second instruction is sent to the driving module to enable the driving module to adjust the inclination of the support plate 208 of the electrical device to the first inclination.
[0220] In the embodiment of the present application, the third control unit can not only adjust the height of the support plate 208 according to the user habits indicated by the acquired user identification information, but also adjust the inclination of the support plate 208, so that the height and inclination of the support plate 208 are in line with the user habits, further improving the user experience.
[0221] In one embodiment, the relevant information includes the current temperature of the charging device, and the functional module 209 includes: a heat dissipation module;
[0222] The third control unit is further specifically used to control the working state of the heat dissipation module according to the current temperature of the charging device.
[0223] Exemplarily, when the functional module 209 in the electrical device is a heat dissipation module, the third control unit can also obtain the current temperature of the charging device connected to the wireless power supply interface 201 and / or the wired power supply interface 202. When the current temperature of the charging device is greater than the first preset temperature, the heat dissipation module is controlled to turn on to reduce the current temperature of the electrical device by heat dissipation.
[0224] When the heat dissipation module is in the on state, if it is detected that the temperature of the charging device is lower than the second preset temperature, the heat dissipation module is controlled to be turned off, wherein the second preset temperature is lower than the first preset temperature.
[0225] In the embodiment of the present application, considering that the temperature of an electronic device is usually relatively high during the charging process, excessively high temperature may cause damage to the electronic device or the battery in the electronic device and shorten the service life of the electronic device. Therefore, a heat dissipation module may be installed on the electrical device, and when it is detected that the current temperature of the electronic device is higher than the first preset temperature, the heat dissipation module is controlled to be turned on to lower the current temperature of the charging device, thereby reducing the damage to the electronic device or the battery in the electronic device caused by the excessively high charging temperature.
[0226] In one embodiment, the wireless power supply interface 201 of the power supply device includes a plurality of first induction coils; the plurality of first induction coils are distributed at different positions of the support plate 208;
[0227] The third control unit is further specifically used to control the on and off states of the plurality of first induction coils.
[0228] In an embodiment of the present application, a plurality of first induction coils may be included on the wireless interface of the power supply device, and the plurality of induction coils are distributed at different positions of the support plate 208. The third control unit may control the polling conduction of the plurality of first induction coils to detect whether a charging device is connected to the wireless power supply interface 201. When any first induction coil detects that a charging device is connected, the first induction coil is controlled to be continuously conducted, and the other first induction coils are controlled to be in a disconnected state.
[0229] For example, reference Figure 8 , Figure 8 The wireless power supply interface includes: a first induction coil L1, a first induction coil L2 and a first induction coil L3, wherein the first induction coil L1, the first induction coil L2 and the first induction coil L3 can be distributed at different positions of the support plate 208. The third control unit can control the on-off of the corresponding first induction coil by controlling the on-off of the controlled switch connected in series to each first induction coil. Assuming that the third control unit determines that a charging device is connected to the first induction coil L2, the first induction coil L2 is controlled to be continuously turned on, and the first induction coil L1 and the first induction coil L3 are controlled to be in the off state.
[0230] refer to Figure 11 , Figure 11 A schematic diagram of a flow chart of a device control method provided in an embodiment of the present application, wherein the device control method can be used to control the electrical device provided in any of the above embodiments, such as Figure 11 , the device control method includes:
[0231] S1101: Obtain relevant information of the charging device;
[0232] S1102: Controlling the working parameters of the functional module 209 in the electrical device according to the relevant information of the charging device.
[0233] In one embodiment, the electrical device may include: a power supply device, a support plate 208 and at least one functional module 209, wherein the power supply device can not only supply power to the charging device connected to the wireless power supply interface 201 and the wired power supply interface 202, but also needs to supply power for the operation of the functional module 209 in the electrical device. In addition, the third control unit in the power supply device can also obtain relevant information of the charging device connected to the wireless power supply interface 201 and the wired power supply interface 202 by communicating with the first control unit and the second control unit, and control the working parameters of the functional module 209 of the electrical device according to the obtained relevant information.
[0234] The support plate 208 is used to place the charging device.
[0235] Exemplarily, the relevant information of the charging device may include: device type information, current temperature, user identification information, remaining power information, charging status information, etc. of the charging device.
[0236] Exemplarily, the functional modules 209 in the electrical device may include: a lighting module, a display module, a voice collection module, a voice output module, a heat dissipation module, a heating module, and the like.
[0237] Exemplarily, when the functional module 209 in the electrical device is a display module, the third control unit can obtain the current temperature, remaining power information and charging status information of the charging device, and control the display module to display the current temperature, remaining power information and charging status information of the charging device connected to the wireless power supply interface 201 and / or the wired power supply interface 202.
[0238] Exemplarily, when the third control unit determines that a charging abnormality occurs in the charging device connected to the wireless power supply interface 201 or the wired power supply interface 202 , the display screen may be controlled to display an abnormality warning.
[0239] Exemplarily, when the functional module 209 is a voice output module, the third control unit may also collect charging status information of charging devices connected to the wireless power supply interface 201 and the wired power supply interface 202, and play voice prompts through the voice output module.
[0240] For example, when the third control unit determines that the smartphone connected to the wireless power supply interface 201 or the wired power supply interface 202 starts charging, the voice output module can be controlled to play a first prompt tone to indicate that the smartphone has started charging. When the third control unit determines that the smartphone connected to the wireless power supply interface 201 or the wired power supply interface 202 has a charging abnormality, the voice output module is controlled to play a second prompt tone to prompt the user that the smartphone is charging abnormally.
[0241] In another embodiment, the third control unit can also obtain working status information of the wireless power supply circuit and the wired power supply circuit, and control the working parameters of the working module in the electrical equipment according to the obtained working status information of the wireless power supply circuit and the wired power supply circuit.
[0242] In another embodiment, the third control unit can determine the priority of using the voice playback module and the display module for other functional modules 209 in the power supply device and the electrical device that need to use the voice output module and the display module.
[0243] In one embodiment, according to the relevant information of the charging device, the operating parameters of the functional module 209 in the electrical device are controlled, including:
[0244] Instructions are sent to the driving module according to the relevant information, wherein the instructions are used for the driving module to adjust the height and / or inclination of the support plate 208 .
[0245] Exemplarily, when the third control unit determines that a charging device is connected to the wireless power supply interface and / or the wired power supply interface, it can send instructions to the drive module based on the device type information of the charging device, so that the drive module can adjust the support plate 208 to a preset height and / or a preset inclination according to the instructions.
[0246] For example, when the third control unit determines that a smartphone is connected to the wireless power supply interface and / or the wired power supply interface, the height of the support plate 208 can be adjusted to a preset height and / or a preset inclination, wherein the preset height is a height that is convenient for the user to view the smartphone being charged. For example, the preset height can be any height between 1 and 1.2 m.
[0247] In one embodiment, the relevant information includes: user identification information, and sending instructions to the driving module according to the relevant information includes:
[0248] A first instruction is sent to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; wherein the first instruction is used for the driving module to adjust the height of the support plate 208 to a height that matches the height of the target user or the height that the target user is accustomed to.
[0249] For example, the electrical device may also pre-store a first correspondence between the user identification information and the height of multiple users. When it is determined that a charging device is connected to the wired power supply interface 202 and / or the wireless power supply interface 201, the third control unit may also find the height of the target user from the stored first correspondence according to the acquired user identification information of the target user, and determine the first height suitable for the target user according to the height of the target user. Afterwards, the third control unit sends a first instruction to the driving module so that the driving module adjusts the support plate 208 to the first height according to the first instruction.
[0250] Exemplarily, after obtaining the user identification information of the charging device connected to the wired power supply interface 202 and / or the wireless power supply interface 201, the third control unit can search for the height of the support plate 208 when the target user indicated by the user identification information used the electrical device at a historical moment. Assuming that the third control unit determines that the height of the support plate 208 used by the target user at the historical moment is the second height, the first instruction is sent to the driving module to enable the driving module to adjust the height of the support plate 208 to the second height.
[0251] The height of the support plate 208 when the target user used the electrical device at a historical moment may be an average height of the support plate 208 when the target user used the electrical device multiple times at historical moments, or may be the height of the support plate 208 when the target user used the electrical device last time.
[0252] In an embodiment of the present application, when the target user charges the electronic device through the wireless power supply interface and / or the wired power supply interface on the electrical device, the electrical device can also adjust the height of the support plate 208 of the electrical device according to the user height and / or usage habits indicated by the user identification information obtained from the charging electronic device, so as to adjust the height of the support plate 208 to a height that is convenient for the user to use, thereby further improving the user experience.
[0253] In one embodiment, sending instructions to the driving module according to the height and / or usage habits of the target user indicated by the user identification information also includes:
[0254] According to the usage habits of the target user indicated by the user identification information, a second instruction is sent to the driving module; the second instruction is used for the driving module to adjust the support plate 208 to the inclination that the target user is accustomed to.
[0255] For example, after obtaining the user identification information of the charging device, the third control unit may also adjust the inclination angle of the support plate 208 when the target user uses the electrical device at a historical moment. Assuming that the first inclination is obtained according to the inclination of the support plate 208 when the target user uses the electrical device at a historical moment, a second instruction is sent to the driving module to enable the driving module to adjust the inclination of the support plate 208 of the electrical device to the first inclination.
[0256] In the embodiment of the present application, the third control unit can not only adjust the height of the support plate 208 according to the user habits indicated by the acquired user identification information, but also adjust the inclination of the support plate 208, so that the height and inclination of the support plate 208 are in line with the user habits, further improving the user experience.
[0257] In one embodiment, the relevant information also includes: the current temperature of the charging device. According to the relevant information of the charging device, the working parameters of the functional module 209 in the electrical device are controlled, and the following is also included:
[0258] The working state of the heat dissipation module is controlled according to the current temperature of the charging device.
[0259] Exemplarily, when the functional module 209 in the electrical device includes: a heat dissipation module, the third control unit can also obtain the current temperature of the charging device connected to the wireless power supply interface 201 and / or the wired power supply interface 202. When the current temperature of the charging device is greater than the first preset temperature, the heat dissipation module is controlled to turn on to reduce the current temperature of the electrical device by heat dissipation.
[0260] When the heat dissipation module is in the on state, if it is detected that the temperature of the charging device is lower than the second preset temperature, the heat dissipation module is controlled to be turned off, wherein the second preset temperature is lower than the first preset temperature.
[0261] In the embodiment of the present application, considering that the temperature of the electronic device is usually relatively high during the charging process, excessively high temperature may cause damage to the electronic device and the power supply circuit in the power supply device, shortening the service life of the electronic device. Therefore, a heat dissipation module may also be installed on the electrical device, and when it is detected that the current temperature of the electronic device is higher than the first preset temperature, the heat dissipation module is controlled to be turned on to lower the current temperature of the charging device, thereby reducing the damage caused by the excessively high charging temperature to the electronic device and the power supply circuit in the power supply device.
[0262] refer to Figure 12 , an embodiment of the present application also provides a power supply device, including: a first control module, a functional module, a wireless power supply circuit, a wired power supply circuit, a power supply, a wireless power supply interface and a wired power supply interface.
[0263] The control module includes a first control unit, a second control unit and a third control unit.
[0264] The third control unit and the first control unit can communicate via interfaces such as serial ports / parallel ports, so that the third control unit can query the status of the first control unit and coordinate function allocation.
[0265] The first control unit exchanges information with the charging device connected to the wireless power supply interface, and uploads the obtained information to the third control unit, which is used by the third control unit to determine the output power of the wireless power supply interface and the power supply parameters of the wireless power supply interface displayed on the display module.
[0266] The third control unit is used to control the power supply, control the output power of the wireless power supply interface and the wired power supply interface, and also control the display module, lighting module, heat dissipation module and driving module.
[0267] Exemplarily, taking the lighting module as an example, the third control unit can control the light to be on when the functional module is working, control the light to be off when the functional module is working, control the light to be on when the wireless power supply circuit is working normally, and control the light to flash when the wireless power supply circuit is working abnormally.
[0268] In addition, the different working states of the wireless power supply circuit can also be indicated by controlling the two-color light and displaying it alternately.
[0269] The display module can comprehensively display the terminal protocol used by the wireless power supply circuit, the current output power, the power and temperature of the charging device connected to the wireless power supply interface, and display information such as the status and abnormal alarm of the wireless power supply circuit through the third control unit.
[0270] The third control unit can also control the voice output module to perform voice broadcasting, music playback, or realize the sound external playback function when a charging device is connected.
[0271] At the same time, the main control MCU monitors the status of the wireless power supply circuit, or receives the status information of the wireless power supply circuit, and controls the voice output module to emit a charging status prompt tone. For example, prompt tone A: charging start reminder, prompt tone B: charging stop reminder, prompt tone C: charging fault reminder.
[0272] The user can preset or control whether the sound playback of the main control end or the sound playback of the wireless end is prioritized.
[0273] The third control unit and the first control unit may be implemented by two independent MCU architectures, or may be internal code function partitions of one MCU architecture.
[0274] Exemplarily, the above-mentioned power supply device can be applied to a smart fast charging device or a vehicle-mounted charging box, so that the smart fast charging device and the vehicle-mounted charging and include a wired power supply interface and a wireless power supply interface, perform wireless protocol identification through a first control unit, perform wired protocol identification through a second control unit, and judge the power requirements of the power supply devices connected to the wireless power supply interface and the wired power supply interface, and allocate the output power of the wireless power supply interface and the wired power supply interface according to the power supply power requirements of the wireless power supply interface and the wired power supply interface, and the maximum power supply power supported by the power supply device.
[0275] The output power distribution of the wireless power supply interface and the wired power supply interface can be realized by the first transformer module and the second transformer module.
[0276] Exemplarily, the wired charging protocol may include the standard PD interface communication protocol, the USB BC1.2 protocol, or other standard protocols such as QC3 / QC4, privately defined protocols, etc. During the protocol handshake process, the power supply device will broadcast the supported power / voltage / current capabilities, and the charging device will load according to the specified power / voltage / current capabilities based on its own needs.
[0277] Wireless charging can be a standard protocol or a private protocol. During the protocol handshake process, the power supply device will also inform the charging device of the power / voltage / current capabilities that the power supply device can provide through the communication packet. The charging device will load according to the specified power / voltage / current capabilities based on its own needs.
[0278] The third control unit may distribute the output power of the wireless power supply interface and the wired power supply interface through a power control algorithm.
[0279] refer to Figure 12 For example, assuming that the wireless power supply circuit works first, through the interaction of the charging device connected to the wireless power supply interface, it is determined that the output power required by the wireless power supply interface is Pt power, and the maximum power that the power supply device can support is P0. At this time, the power allocated to the wired power supply interface is less than or equal to Py, Py = P0-Pt, to ensure that the sum of the output powers of the wireless power supply interface and the wired power supply interface does not exceed P0.
[0280] If the wired power supply circuit works first, you can also refer to the above allocation method. Or through program setting, give priority to ensuring that one interface realizes the specified power Px, and the other interface realizes Py = P0-Px.
[0281] It should be noted that in Figure 12 In the embodiment, if the power supply interface X is a wireless power supply interface, the power supply interface Y is a wired power supply interface; if the power supply interface Y is a wireless power supply interface, the power supply interface X is a wired power supply interface.
[0282] Exemplarily, the third control unit can set the priority of the wireless power supply interface and the wired power supply interface, specify the output power of the high-priority interface as Px, and the broadcast power capability of this interface during the protocol handshake can only be sent according to the set upper limit power.
[0283] The above power supply device can be applied to a lifting table. The third control unit is connected to the motor to control the lifting of the intelligent desktop. The lifting desktop can receive instructions to complete the automatic lifting function of the desktop.
[0284] The instruction can be sent by the charging device and the third control unit through wireless Bluetooth / wifi connection, or by remote control. At the same time, the third control unit can obtain the status information of the wireless power supply circuit, and when charging, the motor can be adjusted to control the desktop to maintain a specified height or tilt angle.
[0285] The third control unit can also bind and store the user identification information and user information of the charging device, and when it detects that a charging device is charging, adjust the desktop of the lifting table to the height that the user is accustomed to or to a preset height or inclination.
[0286] The heat dissipation module can be used for temperature control of charging equipment.
[0287] refer to Figure 13 The present application also provides a power supply control device, the device comprising:
[0288] A first detection module 1301, used to detect a first power supply power required by the wireless power supply interface;
[0289] The second detection module 1302 is used to detect the second power supply power required by the wired power supply interface;
[0290] The first control module 1303 is used to control the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
[0291] Optionally, the first control module 1303 is used to:
[0292] When the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, the power supply power of the wireless power supply interface and the wired power supply interface is adjusted according to the power supply priority of the charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected.
[0293] Optionally, the first control module 1303 is specifically configured to:
[0294] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output a third power supply power, wherein the third power supply power is less than the difference between the maximum power supply power and the first power supply power; or
[0295] When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is equal to or greater than the maximum power supply power supported by the power supply device, control the wireless power supply interface to output the maximum output power and stop the power supply of the wired power supply interface; or
[0296] When the power supply priority of the charging device connected to the wireless power supply interface is lower than the power supply priority of the charging device connected to the wired power supply interface and the second power supply power is less than the maximum power supply power supported by the power supply device, control the wired power supply interface to output the second power supply power and control the wireless power supply interface to output a fourth power supply power, wherein the fourth power supply power is less than the difference between the maximum power supply power and the second power supply power; or
[0297] When the power supply priority of the charging device connected to the wired power supply interface is higher than the power supply priority of the charging device connected to the wireless power supply interface and the second power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wired power supply interface is controlled to output the maximum output power and the power supply of the wireless power supply interface is stopped.
[0298] Optionally, the first control module 1303 is further configured to:
[0299] When the sum of the first power supply power and the second power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output the second power supply power.
[0300] Optionally, the device further comprises:
[0301] The sending module is used to send first information to the charging device according to the output power of the wired power supply interface and the wireless power supply interface; the first information is used to indicate the power supply provided to the charging device.
[0302] refer to Figure 14 The present application also provides a device control apparatus for controlling the electrical equipment in any of the above embodiments, the device comprising:
[0303] An acquisition module 1401 is used to acquire relevant information of a charging device;
[0304] The second control module 1402 is used to control the working parameters of the functional modules in the electrical device according to the relevant information of the charging device.
[0305] Optionally, the second control module 1402 is used to:
[0306] An instruction is sent to the driving module according to the relevant information, wherein the instruction is used by the driving module to adjust the height and / or inclination of the support plate.
[0307] Optionally, the relevant information includes: user identification information, and the second control module is specifically used to:
[0308] A first instruction is sent to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; wherein the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
[0309] Optionally, the second control module 1402 is further specifically configured to:
[0310] According to the usage habits of the target user indicated by the user identification information, a second instruction is sent to the driving module; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
[0311] Optionally, the relevant information further includes: the current temperature of the charging device, and the second control module is further used to:
[0312] The working state of the heat dissipation module is controlled according to the current temperature of the charging device.
[0313] refer to Figure 15 In an embodiment of the present application, an electronic device 1500 is provided. The electronic device may be a charging device in any of the above embodiments. The electronic device includes:
[0314] Memory 1504 for storing processor executable instructions;
[0315] A processor 1520 connected to the memory 1504;
[0316] Among them, the processor 1520 is configured to execute the power supply control method and / or device control method provided by any of the aforementioned technical solutions.
[0317] A block diagram of an electronic device 1500 is shown according to an exemplary embodiment. For example, the electronic device 1500 may be a mobile phone, a tablet computer, a notebook computer, a portable learning machine, and the like.
[0318] refer to Figure 15 , the electronic device 1500 may include one or more of the following components: a processing component 1502 , a memory 1504 , a power component 1506 , a multimedia component 1508 , an audio component 1510 , an input / output (I / O) interface 1512 , a sensor component 1514 , and a communication component 1518 .
[0319] The processing component 1502 generally controls the overall operation of the electronic device 1500, such as operations associated with display, phone calls, data communications, camera operations, and recording operations. The processing component 1502 may include one or more processors 1520 to execute instructions to complete all or part of the steps of the above-mentioned method. In addition, the processing component 1502 may include one or more modules to facilitate the interaction between the processing component 1502 and other components. For example, the processing component 1502 may include a multimedia module to facilitate the interaction between the multimedia component 1508 and the processing component 1502.
[0320] The memory 1504 is configured to store various types of data to support operations on the electronic device 1500. Examples of such data include instructions for any application or method operating on the electronic device 1500, contact data, phone book data, messages, pictures, videos, etc. The memory 1504 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk.
[0321] The power supply component 1506 provides power to the various components of the electronic device 1500. The power supply component 1506 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power to the electronic device 1500.
[0322] The multimedia component 1508 includes a screen that provides an output interface between the electronic device 1500 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touch, slide, and gestures on the touch panel. The touch sensor may not only sense the boundaries of the touch or slide action, but also detect the duration and pressure associated with the touch or slide operation. In some embodiments, the multimedia component 1508 includes a front camera and / or a rear camera. When the electronic device 1500 is in an operating mode, such as a shooting mode or a video mode, the front camera and / or the rear camera may receive external multimedia data. Each front camera and the rear camera may be a fixed optical lens system or have a focal length and optical zoom capability.
[0323] The audio component 1510 is configured to output and / or input audio signals. For example, the audio component 1510 includes a microphone (MIC), and when the electronic device 1500 is in an operation mode, such as a call mode, a recording mode, and a speech recognition mode, the microphone is configured to receive an external audio signal. The received audio signal can be further stored in the memory 1504 or sent via the communication component 1518. In some embodiments, the audio component 1510 also includes a speaker for outputting audio signals.
[0324] I / O interface 1512 provides an interface between processing component 1502 and peripheral interface modules, such as keyboards, click wheels, buttons, etc. These buttons may include but are not limited to: home button, volume button, start button, and lock button.
[0325] The sensor assembly 1514 includes one or more sensors for providing various aspects of status assessment for the electronic device 1500. For example, the sensor assembly 1514 can detect the open / closed state of the electronic device 1500, the relative positioning of components, such as the display and keypad of the electronic device 1500, and the sensor assembly 1514 can also detect the position change of the electronic device 1500 or a component of the electronic device 1500, the presence or absence of user contact with the electronic device 1500, the orientation or acceleration / deceleration of the electronic device 1500, and the temperature change of the electronic device 1500. The sensor assembly 1514 may include a proximity sensor configured to detect the presence of a nearby object without any physical contact. The sensor assembly 1514 may also include an optical sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, the sensor assembly 1514 may also include an accelerometer, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
[0326] The communication component 1518 is configured to facilitate wired or wireless communication between the electronic device 1500 and other devices. The electronic device 1500 can access a wireless network based on a communication standard, such as WiFi, 2G or 3G, or a combination thereof. In an exemplary embodiment, the communication component 1518 receives a broadcast signal or broadcast-related information from an external broadcast management system via a broadcast channel. In an exemplary embodiment, the communication component 1518 also includes a near field communication (NFC) module to facilitate short-range communication. For example, the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology and other technologies.
[0327] In an exemplary embodiment, the electronic device 1500 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components to perform the above methods.
[0328] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a memory 1504 including instructions, and the instructions can be executed by a processor 1520 of the electronic device 1500 to perform the above method. For example, the non-transitory computer-readable storage medium can be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, etc.
[0329] An embodiment of the present application provides a non-temporary computer-readable storage medium. When the instructions in the storage medium are executed by a processor of a computer, the computer can execute the power supply control method and / or the device control method described in one or more of the aforementioned technical solutions.
[0330] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the invention disclosed herein. The present application is intended to cover any modification, use or adaptation of the present application, which follows the general principles of the present application and includes common knowledge or customary techniques in the art that are not disclosed in the present application. The specification and examples are intended to be exemplary only, and the true scope and spirit of the present application are indicated by the claims.
[0331] It should be understood that the present application is not limited to the precise structures that have been described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.
Claims
1. A power supply control method, It is characterized in that Applied to power supply equipment, the method comprises: Detecting a first power supply power required by the wireless power supply interface; Detecting a second power supply power required by the wired power supply interface; According to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device, the output power of the wired power supply interface and the output power of the wireless power supply interface are controlled respectively.
2. The method according to claim 1, It is characterized in that The controlling the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device includes: When the sum of the first power supply power and the second power supply power is greater than the maximum power supply power supported by the power supply device, the power supply power of the wireless power supply interface and the wired power supply interface is adjusted according to the power supply priority of the charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected.
3. The method according to claim 2, It is characterized in that The adjusting the power supply power of the wireless power supply interface and the wired power supply interface according to the power supply priorities of the charging devices to which the wireless power supply interface and the wired power supply interface are respectively connected comprises: When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output a third power supply power, wherein the third power supply power is less than the difference between the maximum power supply power and the first power supply power; or When the power supply priority of the charging device connected to the wireless power supply interface is higher than the power supply priority of the charging device connected to the wired power supply interface and the first power supply power is equal to or greater than the maximum power supply power supported by the power supply device, control the wireless power supply interface to output the maximum output power and stop the power supply of the wired power supply interface; or When the power supply priority of the charging device connected to the wireless power supply interface is lower than the power supply priority of the charging device connected to the wired power supply interface and the second power supply power is less than the maximum power supply power supported by the power supply device, control the wired power supply interface to output the second power supply power and control the wireless power supply interface to output a fourth power supply power, wherein the fourth power supply power is less than the difference between the maximum power supply power and the second power supply power; or When the power supply priority of the charging device connected to the wired power supply interface is higher than the power supply priority of the charging device connected to the wireless power supply interface and the second power supply power is equal to or greater than the maximum power supply power supported by the power supply device, the wired power supply interface is controlled to output the maximum output power and the power supply of the wireless power supply interface is stopped.
4. The method according to claim 1, It is characterized in that The controlling the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device further includes: When the sum of the first power supply power and the second power supply power is less than the maximum power supply power supported by the power supply device, the wireless power supply interface is controlled to output the first power supply power and the wired power supply interface is controlled to output the second power supply power.
5. The method according to any one of claims 1 to 4, It is characterized in that The method further comprises: First information is sent to a charging device according to the output power of the wired power supply interface and the wireless power supply interface; the first information is used to indicate the power supply provided to the charging device.
6. A power supply device, It is characterized in that The power supply device comprises: A wireless power supply circuit, including a wireless power supply interface; A wired power supply circuit, including a wired power supply interface; A first control module is connected to the wired power supply circuit and the wireless power supply circuit, and is used to detect a first power supply power required by the wireless power supply interface and a second power supply power required by the wired power supply interface, and to control the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
7. The power supply device according to claim 6, It is characterized in that The first control module includes: A first control unit, used to detect the power supply of the wireless power supply interface; A second control unit, used to detect the power supply of the wired power supply interface; The third control unit is used to determine the power supply power of the wireless power supply interface and the wired power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
8. The power supply device according to claim 7, It is characterized in that The first control unit, the second control unit and the third control unit are integrated on the same circuit board.
9. An electrical device, It is characterized in that The electrical equipment includes: The power supply device according to any one of claims 6 to 8.
10. The electrical device according to claim 9, It is characterized in that The electrical equipment also includes: A support plate for placing charging equipment; The power supply device is mounted on the support plate.
11. The electrical device according to claim 10, It is characterized in that The electrical equipment further comprises: at least one functional module; The functional module is connected to the power supply device, and the power supply device provides power for the operation of the functional module. The third control unit in the power supply device is also used to control the working parameters of the functional module according to the relevant information of the charging device.
12. The electrical device according to claim 11, It is characterized in that The functional modules include: a driving module; The driving module is used to adjust the height and inclination of the support plate; Wherein, the third control unit is specifically used to send instructions to the driving module according to the relevant information, wherein the instructions are used by the driving module to adjust the height and / or inclination of the support plate.
13. The electrical device according to claim 12, It is characterized in that The relevant information includes: user identification information; The third control unit is specifically used to send a first instruction to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
14. The electrical device according to claim 13, It is characterized in that The third control unit is further specifically used to send a second instruction to the driving module according to the usage habits of the target user indicated by the user identification information; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
15. The electrical device according to claim 11, It is characterized in that The relevant information includes the current temperature of the charging device, and the functional module includes: a heat dissipation module; The third control unit is further specifically used to control the working state of the heat dissipation module according to the current temperature of the charging device.
16. The electrical device according to claim 10, It is characterized in that The wireless power supply interface of the power supply device comprises a plurality of first induction coils; the plurality of first induction coils are distributed at different positions of the support plate; The third control unit is further specifically configured to control the on and off states of the plurality of first induction coils.
17. A device control method, It is characterized in that Applied to the electrical device according to any one of claims 9 to 16, the method comprising: Get relevant information about charging equipment; The operating parameters of the functional modules in the electrical device are controlled according to the relevant information of the charging device.
18. The method according to claim 17, It is characterized in that The controlling of the working parameters of the functional modules in the electrical device according to the relevant information of the charging device includes: An instruction is sent to the driving module according to the relevant information, wherein the instruction is used by the driving module to adjust the height and / or inclination of the support plate.
19. The method according to claim 18, It is characterized in that The relevant information includes: user identification information, and sending instructions to the driving module according to the relevant information includes: A first instruction is sent to the driving module according to the height and / or usage habits of the target user indicated by the user identification information; wherein the first instruction is used by the driving module to adjust the height of the support plate to a height that matches the height of the target user or the height that the target user is accustomed to.
20. The method according to claim 19, It is characterized in that The sending of instructions to the driving module according to the height and / or usage habits of the target user indicated by the user identification information further includes: According to the usage habits of the target user indicated by the user identification information, a second instruction is sent to the driving module; the second instruction is used by the driving module to adjust the support plate to the inclination that the target user is accustomed to.
21. The method according to claim 17, It is characterized in that The relevant information also includes: the current temperature of the charging device, and the controlling the working parameters of the functional modules in the electrical device according to the relevant information of the charging device also includes: The working state of the heat dissipation module is controlled according to the current temperature of the charging device.
22. A power supply control device for a power supply device according to any one of claims 6 to 8, It is characterized in that The device comprises: A first detection module, used to detect a first power supply power required by the wireless power supply interface; A second detection module, used to detect a second power supply power required by the wired power supply interface; The first control module is used to control the output power of the wired power supply interface and the output power of the wireless power supply interface respectively according to the first power supply power, the second power supply power and the maximum power supply power supported by the power supply device.
23. An equipment control device for an electrical equipment according to any one of claims 9 to 16, It is characterized in that The device comprises: An acquisition module is used to obtain relevant information of the charging device; The second control module is used to control the working parameters of the functional modules in the electrical device according to the relevant information of the charging device.
24. An electronic device, It is characterized in that include: a memory for storing processor-executable instructions; A processor connected to the memory; The processor is used to execute the power supply control method described in any one of claims 1 to 5, and / or the device control method described in any one of claims 17 to 21.
25. A non-transitory computer-readable storage medium, when the instructions in the storage medium are executed by a processor of a computer, enables the computer to execute the power supply control method as described in any one of claims 1 to 5, and / or the device control method as described in any one of claims 17 to 21.