CN214256705U - Intelligent device and configuration machine thereof - Google Patents

Intelligent device and configuration machine thereof Download PDF

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Publication number
CN214256705U
CN214256705U CN202023106025.XU CN202023106025U CN214256705U CN 214256705 U CN214256705 U CN 214256705U CN 202023106025 U CN202023106025 U CN 202023106025U CN 214256705 U CN214256705 U CN 214256705U
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configuration
controller
power supply
conversion module
pin
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CN202023106025.XU
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王紫圣豪
马永墩
张德鸿
王淳锋
韩昌英
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Leeleds Lighting Xiamen Co Ltd
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Leeleds Lighting Xiamen Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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Abstract

The application belongs to the intelligent device field, provides an intelligent device and configuration machine thereof, intelligent device includes first power connection port, voltage conversion module, first controller, first configuration port and uses electrical apparatus, wherein: the first power supply connection port is connected with the voltage conversion module, and the converted voltage output by the voltage conversion module provides a working power supply for the electrical appliance and the first controller; the first configuration control line is connected with a configuration control pin of the first controller, the first power supply connecting line is connected with an output pin of the voltage conversion module, and the data transmission line is connected with a data receiving pin of the first controller. Because the control module is supplied with power through the configuration machine, the intelligent equipment can be configured through the configuration machine before the intelligent equipment is installed, the intelligent equipment which cannot be configured can be found in advance, the situation that the intelligent equipment cannot be configured after being installed is avoided, convenience of configuration operation is improved, and configuration efficiency is improved.

Description

Intelligent device and configuration machine thereof
Technical Field
The utility model belongs to the smart machine field especially relates to a smart machine and configuration machine thereof.
Background
With the development of science and technology, more and more intelligent devices are applied to the life and work of people, and convenience is brought to people. For example, for an intelligent lamp in an indoor scene, the operating parameters of the intelligent device, including networking parameters or brightness control parameters, may be set through configuration operations on the intelligent device. The configured intelligent equipment can meet the use requirements of different users.
However, due to uncontrollable factors, the configured intelligent lamp may have a fault such as a disconnection, and it is necessary to reset the faulty intelligent lamp and reconfigure the faulty intelligent lamp. If multiple configurations still fail, the smart lamp is considered potentially damaged, requiring a new smart device to be replaced and configured.
Before configuring a new smart lamp, it is usually necessary to install the new smart lamp at the location of the damaged smart lamp. Through carrying the gateway to the scene, reset the smart machine of newly installing from the hardware level, find out and play the intelligent lamp of damage on the software level, then through gateway reconfiguration. If the newly installed intelligent lamp can not be configured, another new intelligent lamp needs to be installed and configured again, the operation is troublesome, and the configuration efficiency is not improved favorably.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an intelligent device and configuration machine thereof to when disposing intelligent device among the solution prior art, the operation is comparatively troublesome, is unfavorable for improving the problem of configuration efficiency.
In a first aspect, an embodiment of the present application provides an intelligent device, where the intelligent device includes a first power connection port, a voltage conversion module, a first controller, a first configuration port, and an electrical appliance, where the first configuration port includes a first power connection line, a first configuration control line, and a data transmission line, where:
the first power supply connection port is connected with the voltage conversion module, and when the first power supply connection port is connected with a power supply, the conversion voltage output by the voltage conversion module provides a working power supply for the electrical appliance and the first controller;
the first configuration control line is connected with a configuration control pin of the first controller, the first power supply connecting line is connected with an output pin of the voltage conversion module, and the data transmission line is connected with a data receiving pin of the first controller.
With reference to the first aspect, in a first possible implementation manner of the first aspect, the intelligent device further includes a first signal conversion module, and the first configuration control line is connected to the configuration control pin of the first controller through the first signal conversion module.
With reference to the first possible implementation manner of the first aspect, in a second possible implementation manner of the first aspect, the first signal conversion module includes a first resistor, a second resistor, and a first triode, the first configuration control line is connected to a base of the first triode, the base of the first triode is connected to ground through the first resistor, an emitter of the first triode is connected to ground, a collector of the first triode is connected to a voltage output pin of the voltage conversion module through the second resistor, and the collector of the first triode is connected to the configuration control pin of the first controller.
With reference to the first aspect, in a third possible implementation manner of the first aspect, the voltage conversion module includes a first voltage converter and a second voltage converter, where the first voltage converter provides a working power supply for the electrical appliance, and the second voltage converter provides a working power supply for the first controller.
With reference to the first aspect, in a fourth possible implementation manner of the first aspect, the first power connection port is a mains connection port.
With reference to the first aspect, in a fifth possible implementation manner of the first aspect, the electrical appliance is an illumination lamp.
In a second aspect, an embodiment of the present application provides a configuration machine for an intelligent device based on the first aspect, where the configuration machine includes a second configuration port, a second controller, and a power module, the second configuration port includes a second power connection line, a second configuration control line, and a data transmission line, where:
the power supply module is connected with a power supply pin of the second controller, and the power supply module is connected with a second power supply connecting wire of the second configuration port;
and a data transmission pin of the second controller is connected with the data transmission line, and a configuration control pin of the second controller is connected with the second configuration control line.
With reference to the second aspect, in a first possible implementation manner of the second aspect, the power module includes a first voltage conversion unit and a battery, or includes a second voltage conversion unit and a second power connection port, or includes a third power connection port, and the third power connection port is connectable to an external power supply.
With reference to the second aspect, in a second possible implementation manner of the second aspect, the configuration machine further includes a second signal conversion module, and the data transmission pin of the second controller is connected to the data transmission line through the second signal conversion module.
With reference to the second possible implementation manner of the second aspect, in a third possible implementation manner of the second aspect, the second signal conversion module includes a third resistor, a fourth resistor, and a second triode, a control configuration pin of the second controller is connected to a base of the second triode, a base of the second triode is connected to ground through the third resistor, an emitter of the second triode is connected to ground, a collector of the second triode is connected to the power supply module through the fourth resistor, and a collector of the second triode is connected to the second configuration control line.
The utility model discloses in, before the smart machine installation, through set up first configuration port in the smart machine, corresponding configuration machine can provide working power supply through this port for the first controller of smart machine to receive the configuration signal through first configuration control line, receive configuration code or the feature code that the configuration machine sent by data transmission line. Because this application smart machine can directly link to each other with the configuration machine when the configuration, supplies power to smart machine's control module through the configuration machine, directly disposes smart machine before the installation to can find the smart machine that can't dispose before the installation, avoid the unable circumstances of disposing after the smart machine installation, be favorable to improving the convenience of configuration operation, improve configuration efficiency.
Drawings
Fig. 1 is a schematic diagram of an intelligent device provided in an embodiment of the present application;
FIG. 2 is a schematic diagram illustrating a control configuration signal conversion according to an embodiment of the present application;
fig. 3 is a schematic view of a configuration machine according to an embodiment of the present disclosure.
Detailed Description
In order to make the objects, technical solutions and advantageous effects of the present invention more clearly understood, the present invention is further described in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Due to uncontrollable factors, faults such as disconnection and the like occur in configured intelligent equipment, and the intelligent equipment with the faults needs to be reset and reconfigured. If multiple configurations still fail, the smart device is considered potentially damaged, requiring replacement and installation of a new smart device and configuration thereof.
When new intelligent equipment is configured, the new intelligent equipment is generally required to be installed, the gateway is carried to the site, the newly installed intelligent equipment is reset from the hardware level, the damaged intelligent equipment is found out and kicked off from the software level, and then the new intelligent equipment is reconfigured through the gateway. If the intelligent lamp of newly-installed can't dispose, then need to change again and install another new smart machine, it is comparatively troublesome to operate, is unfavorable for improving configuration efficiency.
In order to overcome the foregoing problem, an embodiment of the present application provides an intelligent device, and as shown in a schematic diagram of the intelligent device shown in fig. 1, the intelligent device 1 includes a first power connection port 11, a voltage conversion module 12, a first controller 13, a first configuration port 14, and an electrical appliance 15, where the first configuration port 14 includes a first power connection line, a first configuration control line, and a data transmission line, where:
the first power connection port 11 is connected to the voltage conversion module 12, and when the first power connection port 11 is connected to a power supply, the converted voltage output by the voltage conversion module 12 provides a working power supply for the electrical appliance 15 and the first controller 13.
The first configuration control line is connected to a configuration control pin of the first controller 13, the first power connection line is connected to an output pin of the voltage conversion module 12, and the data transmission line is connected to a data receiving pin of the first controller 13.
The first power connection port 11 may be a plug for connecting to the commercial power. For example, for the smart home device, the first power connection port may be a three-pin plug or a two-pin plug. Alternatively, the first power connection port may be an installation interface of the smart device. For example, when the smart device is an illumination lamp, the first power connection port 11 may be an installation interface of the illumination lamp.
The voltage conversion module 12 may include a first voltage converter through which the first voltage is output and a second voltage converter which outputs the second voltage. The first voltage may be used to drive the electrical consumer 15 to operate, and the second voltage may be used to drive the first controller 13 to operate. The voltage conversion module may be a voltage conversion chip, or may also be a voltage conversion circuit, including a conversion circuit for switching pulse voltage regulation, resistance voltage division, and the like.
The first controller 13 may be configured to receive parameter information configured by the smart device through the first configuration port, where the parameter information may include network configuration information or operating status configuration information, the network configuration information may include, for example, account number and password information, and the operating status configuration information may include, for example, configuration parameters such as a brightness range, an initial state, and a brightness change size of a lamp. A wireless communication link may be established based on the received account and password information. And receiving instruction data of other intelligent equipment through the established wireless communication link, such as a WIFI communication link or a Bluetooth communication link, and adjusting the working state of the intelligent equipment. The first controller can be a single chip microcomputer, an ARM chip or other microprocessors.
The first configuration port 14 is contoured to match the second configuration port of the configuration machine. For example, the first configuration interface 14 may be a female connector and the second configuration interface may be a male connector. And the definition of the pins in the first configuration port 14 matches the pin definition of the second configuration port, including the matching of the power pins and the matching of the signal pins.
Wherein, the first power connection line (GND, +5V) included in the first configuration port 14 is connected to the power pin of the first controller 13, or is connected to the power pin of the first controller 13 through the voltage conversion module 12. When the first configuration port of the intelligent device is connected with the second configuration port of the configuration machine, the working power supply can be provided for the first controller in the intelligent device through the power supply in the configuration machine.
The first configuration control line is connected to a configuration control pin (IRQ) of the first controller 13. When the configuration control pin of the first controller 13 receives a predetermined level signal, the first controller 13 is in a state of configurable data, and the configuration data transmitted by the configuration machine can be received through the data transmission line (RX, TX).
The electrical appliance 15 may be a household electrical appliance, including, for example, an air conditioner, a fan, a water heater, a lighting lamp, etc. After the intelligent device 1 is connected to the power supply through the first power connection port, the electrical appliance 15 may adjust its operating state, including, for example, changing the brightness of the illumination lamp, adjusting the on-off state, etc., according to the control instruction of the other intelligent device or terminal received by the intelligent device.
In a possible implementation manner, the intelligent device further includes a first signal conversion module, the first configuration control line is connected to the configuration control pin of the first controller through the first signal conversion module, and the first signal conversion module may be configured to convert the received configuration control signal.
In a specific implementation manner, as shown in the schematic diagram of configuration control signal conversion shown in fig. 2, the first signal conversion module includes a first resistor R1, a second resistor R2, and a first transistor U1, the first configuration control line is connected to the base of the first transistor U1, the base of the first transistor U1 is connected to ground through a first resistor R1, the emitter of the first transistor U1 is connected to ground, the collector of the first transistor U1 is connected to the voltage output pin of the voltage conversion module 12 through a second resistor R2, and the collector of the first transistor U1 is connected to the configuration control pin of the first controller 13.
When the data transmission line receives a high level signal transmitted by the configuration machine, the first triode U1 is conducted, and the configuration control pin of the first controller receives a low level signal. When the data transmission line receives a low level signal transmitted by the configurator, the first triode U1 is turned off, and the configuration control pin of the first controller receives a high level signal.
In a possible implementation manner, the smart device may further include a sensing device, such as an infrared sensor, a light sensor, and the like. The sensing device may be connected to the first controller, and the first controller 13 may adjust the operating state of the electrical appliance according to a signal detected by the sensing device. For example, the brightness of the illuminating lamp is adjusted by the intensity of the ambient light detected by the sensing device, or the on-off state of the illuminating lamp is adjusted by the sensing device detecting whether a user is in the scene.
Corresponding to the intelligent device, the present application also discloses a configuration machine for performing configuration operation on the intelligent device, as shown in the schematic diagram of the configuration machine shown in fig. 3, the configuration machine 3 includes a second configuration port 31, a second controller 32 and a power module 33, the second configuration port 31 includes a second power connection line, a second configuration control line and a data transmission line, wherein:
the power supply module 33 is connected to a power supply pin of the second controller 32, and the power supply module 33 is connected to a second power connection line of the second configuration port 31;
a data transmission pin of the second controller 32 is connected to the data transmission line, and a configuration control pin of the second controller 32 is connected to the second configuration control line.
Wherein the second configuration port 31 in the configuration machine 3 matches the shape and the leads of the first configuration port 14 of the smart device 1. The lead comprises a first power supply connecting wire and a second power supply connecting wire which are matched, a first configuration control wire and a second configuration control wire are matched, and a data transmission wire are matched.
The second controller 32 may store configuration information of the smart device, and may include network configuration information or operating status configuration information, and the like, where the network configuration information may include, for example, account number and password information, and the operating status configuration information may include, for example, configuration parameters such as a brightness range, an initial state, and a brightness change size of the lamp.
In a possible implementation, the configuration machine may include a mode switch, and the configuration mode of the configuration machine may be switched by the mode switch, including, for example, a "write configuration mode" or a "read configuration mode". The mode switching switch can be a mechanical switch and can also be a switch key received by the touch screen. When the configuration machine switches to the read configuration mode, the configuration information of the smart device can be read through the second configuration port 31. For example, configuration information of the smart device may be received via a data transmission line in the second configuration port. Therefore, when the configured intelligent equipment is replaced by a worker, the configuration setting of the updated intelligent equipment can be carried out only by reading the configuration information of other intelligent equipment in the system.
The power module 33 of the configuration machine 3 may be a built-in battery, including, for example, a rechargeable battery or a non-rechargeable battery, for example, the first voltage conversion unit is connected via the built-in battery. In a possible implementation manner, the power module may also be an external power supply, and the second voltage conversion unit converts an external power supply, such as commercial power, to obtain a working voltage required by the second controller 32, or converts an external charging power supply to obtain a required working voltage. Alternatively, the power supply module 33 may be a third power supply connection port, and the working voltage required for working is directly obtained through the third power supply connection port.
In a possible implementation manner, the configuration machine further includes a second signal conversion module, and the data transmission pin of the second controller is connected to the data transmission line through the second signal conversion module. Through the second signal conversion module, the control signal or the configuration parameter of the configuration machine can be effectively transmitted to the intelligent device.
As shown in the schematic diagram of the configuration control signal conversion circuit in fig. 2, a second signal conversion module in the configuration machine includes a third resistor R3, a fourth resistor R4, and a second transistor U2, a control configuration pin of the second controller is connected to a base of the second transistor U2, a base of the second transistor U2 is connected to ground through a third resistor R3, an emitter of the second transistor U2 is connected to ground, a collector of the second transistor U2 is connected to the power module through a fourth resistor R4, and a collector of the second transistor U2 is connected to the second configuration control line.
When the configuration control pin of the second controller of the configuration machine outputs a high level, the second triode is conducted, and the second configuration control line outputs a low level. When the configuration control pin of the second controller of the configuration machine outputs a low level, the second triode is cut off, and the second configuration control line outputs a high level. The configuration control signal can be more effectively transmitted to the intelligent equipment by the configuration control signal conversion circuit to pull up the level.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. An intelligent device, comprising a first power connection port, a voltage conversion module, a first controller, a first configuration port and an electrical appliance, wherein the first configuration port comprises a first power connection line, a first configuration control line and a data transmission line, and wherein:
the first power supply connection port is connected with the voltage conversion module, and when the first power supply connection port is connected with a power supply, the conversion voltage output by the voltage conversion module provides a working power supply for the electrical appliance and the first controller;
the first configuration control line is connected with a configuration control pin of the first controller, the first power supply connecting line is connected with an output pin of the voltage conversion module, and the data transmission line is connected with a data receiving pin of the first controller.
2. The smart device of claim 1, further comprising a first signal conversion module, wherein the first configuration control line is coupled to the configuration control pin of the first controller via the first signal conversion module.
3. The smart device of claim 2, wherein the first signal conversion module comprises a first resistor, a second resistor, and a first transistor, the first configuration control line is connected to a base of the first transistor, a base of the first transistor is connected to ground through the first resistor, an emitter of the first transistor is connected to ground, a collector of the first transistor is connected to a voltage output pin of the voltage conversion module through the second resistor, and a collector of the first transistor is connected to the configuration control pin of the first controller.
4. The smart device of claim 1, wherein the voltage conversion module comprises a first voltage converter and a second voltage converter, the first voltage converter providing operating power to the electrical load, and the second voltage converter providing operating power to the first controller.
5. The smart device of claim 1, wherein the first power connection port is a mains connection port.
6. The smart device of claim 1, wherein the appliance is a light.
7. A configuration machine for configuring the smart device of any of claims 1-6, the configuration machine comprising a second configuration port, a second controller and a power module, the second configuration port comprising a second power connection line, a second configuration control line and a data transmission line, wherein:
the power supply module is connected with a power supply pin of the second controller, and the power supply module is connected with a second power supply connecting wire of the second configuration port;
and a data transmission pin of the second controller is connected with the data transmission line, and a configuration control pin of the second controller is connected with the second configuration control line.
8. The configurator according to claim 7, wherein the power supply module comprises a first voltage conversion unit and a battery, or comprises a second voltage conversion unit and a second power connection port, or comprises a third power connection port, and the third power connection port is connectable with an external power supply.
9. The configurator of claim 7, further comprising a second signal conversion module, the data transmission pin of the second controller being connected to the data transmission line through the second signal conversion module.
10. The configurator of claim 9, wherein the second signal conversion module comprises a third resistor, a fourth resistor, and a second transistor, wherein the control configuration pin of the second controller is coupled to the base of the second transistor, the base of the second transistor is coupled to ground through the third resistor, the emitter of the second transistor is coupled to ground, the collector of the second transistor is coupled to the power supply module through the fourth resistor, and the collector of the second transistor is coupled to the second configuration control line.
CN202023106025.XU 2020-12-21 2020-12-21 Intelligent device and configuration machine thereof Active CN214256705U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023106025.XU CN214256705U (en) 2020-12-21 2020-12-21 Intelligent device and configuration machine thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023106025.XU CN214256705U (en) 2020-12-21 2020-12-21 Intelligent device and configuration machine thereof

Publications (1)

Publication Number Publication Date
CN214256705U true CN214256705U (en) 2021-09-21

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