CN213070115U - Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment - Google Patents

Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment Download PDF

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Publication number
CN213070115U
CN213070115U CN202021345847.0U CN202021345847U CN213070115U CN 213070115 U CN213070115 U CN 213070115U CN 202021345847 U CN202021345847 U CN 202021345847U CN 213070115 U CN213070115 U CN 213070115U
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module
bluetooth
remote control
control circuit
gesture recognition
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CN202021345847.0U
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李德保
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Tongshan Xinghuoyuan Industrial Co ltd
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Tongshan Xinghuoyuan Industrial Co ltd
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Abstract

The utility model is suitable for a remote control technology field especially relates to a bluetooth remote control circuit, bluetooth remote controller and electrical equipment, wherein, bluetooth remote control circuit includes host system, bluetooth module, gesture recognition module and power module, bluetooth remote control circuit carries out the bluetooth with bluetooth digital host computer and is connected, the user slides in gesture recognition module's navigation region, gesture recognition module discerns the speed and the direction of user contact and output and predetermine gesture identification signal to host system that matches, host system sends the remote control signal to bluetooth digital host computer that matches with gesture identification signal through bluetooth module, thereby trigger bluetooth digital host computer and carry out the dispatch of resource, realize bluetooth digital host computer's resource selection, need not to progressively select through complicated button, the remote control is more convenient and richened user's experience and is felt.

Description

Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment
Technical Field
The utility model belongs to the technical field of the remote control, especially, relate to a bluetooth remote control circuit, bluetooth remote controller and electrical equipment.
Background
Today, the cultural entertainment industry is developed, resources such as various types of information, education, entertainment, games and the like are extremely rich, a user needs to spend a certain time on accurately acquiring needed resources through conventional remote control equipment such as a key type remote controller, and the method is quite inconvenient and poor in experience.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a bluetooth remote control circuit aims at solving traditional remote control mode and has the inconvenient problem of operation.
The embodiment of the utility model provides a first aspect provides a bluetooth remote control circuit, bluetooth remote control circuit includes main control module, bluetooth module, gesture recognition module and power module, gesture recognition module includes the navigation area;
the power supply module is respectively and electrically connected with the main control module, the Bluetooth module and the gesture recognition module, and the main control module is also respectively and electrically connected with the Bluetooth module and the gesture recognition module;
the gesture recognition module is used for recognizing the speed and the direction when the gesture of the user contacts the navigation area and outputting a corresponding gesture recognition signal to the main control module;
the master control module is used for controlling the Bluetooth module to send a first remote control signal matched with the gesture recognition signal to the Bluetooth digital host so as to trigger remote control of the Bluetooth digital host to schedule corresponding resources.
In one embodiment, the bluetooth remote control circuit further comprises a voice module, and the voice module is electrically connected with the main control module and the power module respectively;
the voice module is used for recognizing the voice of a user and outputting a corresponding voice instruction to the main control module;
the master control module is further used for controlling the Bluetooth module to send a second remote control signal matched with the voice instruction to the Bluetooth digital host so as to trigger the remote control of the Bluetooth digital host to schedule corresponding resources.
In one embodiment, the bluetooth remote control circuit further comprises a key module and an infrared emission module;
the key module and the infrared emission module are respectively electrically connected with the main control module and the power supply module;
the key module is used for identifying the pressing operation of a user and outputting a corresponding key selection signal to the main control module;
the main control module is further configured to control the infrared emission module to send a third remote control signal matched with the key selection signal to the bluetooth digital host, so as to trigger the bluetooth digital host to schedule a corresponding resource.
In one embodiment, the gesture recognition module includes a touch screen and a touch chip, the navigation area is located on the touch screen, and the touch chip is electrically connected to the touch screen and the main control module respectively.
In one embodiment, the voice module includes a microphone and a voice processing chip, and the voice processing chip is electrically connected to the microphone and the main control module, respectively.
In one embodiment, the voice processing chip is an ADC voice processing chip.
In one embodiment, the power module is a lithium battery, and the bluetooth remote control circuit further includes a battery charging circuit electrically connected to the battery.
The utility model provides a second aspect provides a bluetooth remote controller, bluetooth remote controller includes as above bluetooth remote control circuit.
The third aspect of the embodiment of the utility model provides an electrical equipment, electrical equipment include the digital host computer of bluetooth and as above bluetooth remote controller.
In one embodiment, the bluetooth digital host is a television.
The utility model discloses an adopt host system, bluetooth module, bluetooth remote control circuit is constituteed to gesture recognition module and power module, bluetooth remote control circuit carries out the bluetooth with bluetooth digital host computer and is connected, the user slides in gesture recognition module's navigation region, gesture recognition module discerns the speed and the direction of user's contact and outputs the gesture identification signal of predetermineeing the matching to host system, host system sends the remote control signal to bluetooth digital host computer that matches with the gesture identification signal through bluetooth module, thereby trigger bluetooth digital host computer and carry out the dispatch of resource, realize the resource selection of bluetooth digital host computer, need not to carry out step-by-step selection through complicated button, the remote control is convenient more and richened user's experience and is felt.
Drawings
Fig. 1 is a schematic diagram of a first structure of a bluetooth remote control circuit according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a second structure of a bluetooth remote control circuit according to an embodiment of the present invention;
fig. 3 is a schematic diagram of a third structure of a bluetooth remote control circuit according to an embodiment of the present invention;
fig. 4 is a schematic diagram of a fourth structure of a bluetooth remote control circuit according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of an electrical apparatus provided in an embodiment of the present invention.
Detailed Description
In order to make the technical problem, technical solution and advantageous effects to be solved by the present invention more clearly understood, the following description is given in conjunction with the accompanying drawings and embodiments to illustrate the present invention in further detail. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
The utility model discloses a first aspect of the embodiment provides a bluetooth remote control circuit 100.
As shown in fig. 1, fig. 1 is a first schematic structural diagram of a bluetooth remote control circuit 100 provided in an embodiment of the present invention, in this embodiment, the bluetooth remote control circuit 100 includes a main control module 10, a bluetooth module 20, a gesture recognition module 30 and a power module 40, and the gesture recognition module 30 includes a navigation area;
the power module 40 is electrically connected with the main control module 10, the bluetooth module 20 and the gesture recognition module 30 respectively, and the main control module 10 is also electrically connected with the bluetooth module 20 and the gesture recognition module 30 respectively;
the gesture recognition module 30 is configured to recognize a speed and a direction when a gesture of a user contacts the navigation area and output a corresponding gesture recognition signal to the main control module 10;
the main control module 10 is configured to control the bluetooth module 20 to send a first remote control signal matched with the gesture recognition signal to the bluetooth digital host 200, so as to trigger the remote control bluetooth digital host 200 to schedule a corresponding resource.
In this embodiment, the bluetooth digital host 200 is connected to the cloud platform through WIFI or a wired network and performs resource transmission and feedback, the bluetooth digital host 200 may be a digital host with bluetooth function such as a television, a notebook, etc., the bluetooth module 20 performs resource scheduling through wireless communication with the bluetooth digital host 200, wherein the gesture recognition module 30 is provided with a navigation area for a user to touch and operate, the user slides and contacts in the navigation area through fingers in different ways, the gesture recognition module 30 recognizes the speed and direction of the gesture of the user touching the navigation area and correspondingly outputs a matched gesture recognition signal to the main control module 10, the main control module 10 sends a corresponding remote control signal to the bluetooth digital host 200 connected to bluetooth according to the received gesture recognition signal to trigger the bluetooth digital host 200 to schedule a corresponding resource, wherein the resource corresponding to the remote control signal may be the existing resource of the digital host and the resource of the cloud platform, when the resources corresponding to the remote control signals are the existing resources of the digital host, the remote control signals can directly perform resource scheduling, and when the resources corresponding to the remote control signals are the resources of the cloud platform, the Bluetooth digital host 200 is triggered to acquire the resources from the cloud platform through the network.
For example, the user slides rapidly along a single direction to perform a fast volume-up adjustment, the gesture recognition module 30 outputs a gesture recognition signal to the main control module 10, the main control module 10 outputs a remote volume-up control signal to the bluetooth digital host 200 to trigger the bluetooth digital host 200 to perform a fast volume-up adjustment, when the user slides slowly along a single direction to perform a slow volume-up adjustment, the gesture recognition module 30 outputs another gesture recognition signal to the main control module 10, the main control module 10 outputs a slow volume-down remote control signal to the bluetooth digital host 200 to trigger the bluetooth digital host 200 to perform a slow volume-up adjustment.
The gesture recognition module 30 outputs different gesture recognition signals to the main control module 10 according to different gesture directions and speeds of a user in a navigation area, the main control module 10 correspondingly outputs different remote control signals to the Bluetooth digital host 200 according to the built-in mapping action table, so that the Bluetooth digital host 200 is triggered to schedule different resources, the resource scheduling such as volume adjustment, brightness adjustment, channel selection, game playing and the like can be performed, the user can perform action storage and debugging in the navigation area in a self-learning mode in advance, different action standards can be set without applicable crowds, and the setting is specifically performed according to use requirements.
In one embodiment, as shown in fig. 4, the gesture recognition module 30 includes a touch screen 31 and a touch chip 32, the touch screen 31 recognizes the sliding speed and direction of the user according to the detected coordinate direction and change speed, and outputs different electrical signals to the touch chip 32, and the touch chip 32 outputs different gesture recognition signals to the main control module 10 according to the received electrical signals.
The power module 40 provides working power for each module, in order to simplify the circuit structure, the power module 40 is a lithium battery 41, and meanwhile, in order to continuously work for each module, as shown in fig. 4, the bluetooth remote control circuit 100 further includes a battery charging circuit 80, and the battery charging circuit 80 receives a direct current power or an alternating current power through a power interface and converts the input power into a direct current power of the lithium battery 41 with the same voltage level and current level.
The utility model discloses an adopt host system 10, bluetooth module 20, bluetooth remote control circuit 100 is constituteed to gesture recognition module 30 and power module 40, bluetooth remote control circuit 100 carries out the bluetooth with bluetooth digital host computer 200 and is connected, the user slides in gesture recognition module 30's navigation region, gesture recognition module 30 discerns the speed and the direction of user's contact and exports the gesture recognition signal of predetermineeing the matching to host system 10, host system 10 sends the remote control signal to bluetooth digital host computer 200 with gesture recognition signal matching through bluetooth module 20, thereby trigger bluetooth digital host computer 200 and carry out the dispatch of resource, realize bluetooth digital host computer 200's resource selection, need not to carry out progressively the selection through complicated button, the remote control is convenient more and enriched user's experience sense.
In order to improve reliability and compatibility of remote control, in an embodiment, as shown in fig. 2, the bluetooth remote control circuit 100 further includes a voice module 50, and the voice module 50 is electrically connected to the main control module 10 and the power module 40 respectively;
the voice module 50 is used for recognizing the voice of the user and outputting a corresponding voice instruction to the main control module 10;
the main control module 10 is further configured to control the bluetooth module 20 to send a second remote control signal matched with the voice instruction to the bluetooth digital host 200, so as to trigger the remote control of the bluetooth digital host 200 to schedule a corresponding resource.
In this embodiment, a user can perform resource scheduling by matching the voice module 50 and the gesture recognition module 30, the voice module 50 implements online voice recognition and sends a corresponding voice command to the main control module 10, the gesture recognition module 30 outputs a corresponding gesture recognition signal to the main control module 10 according to the direction and speed of the user contacting the navigation area, and the main control module 10 outputs a corresponding remote control signal according to the received voice command and/or gesture recognition signal, thereby triggering the bluetooth digital host 200 to schedule a corresponding resource.
In an embodiment, as shown in fig. 4, the voice module 50 includes a microphone 51 and a voice processing chip 52, the voice processing chip 52 is electrically connected to the microphone 51 and the main control module 10, the microphone 51 obtains voice sent by a user and converts the voice into a corresponding electrical signal, the voice processing chip 52 outputs a corresponding voice instruction to the main control module 10 according to the received electrical signal, and the main control module 10 triggers the bluetooth digital host 200 to perform resource scheduling according to the voice instruction, in an embodiment, the voice processing chip 52 is an ADC voice processing chip 52.
Meanwhile, in order to further improve the reliability and compatibility of remote control, in one embodiment, the bluetooth remote control circuit 100 further includes a key module 60 and an infrared emission module 70;
the key module 60 and the infrared emission module 70 are electrically connected with the main control module 10 and the power module 40 respectively;
the key module 60 is configured to identify a pressing operation of a user and output a corresponding key selection signal to the main control module 10;
the main control module 10 is further configured to control the infrared emitting module 70 to send a third remote control signal matched with the key selection signal to the bluetooth digital host 200, so as to trigger the bluetooth digital host 200 to schedule a corresponding resource.
In this embodiment, a user can perform remote control through the gesture recognition module 30, the voice module 50 and the key module 60, the key module 60 includes a power on/off key, a direction key, a selection key, and the like, and the main control module 10 transmits a corresponding third remote control signal to the infrared receiving module of the bluetooth digital host 200 through the infrared transmitting module 70, thereby implementing signal communication and resource scheduling control, and improving compatibility and diversity of the bluetooth remote control circuit 100.
The utility model discloses still provide a bluetooth remote controller 1, this bluetooth remote controller 1 includes bluetooth remote control circuit 100, and this bluetooth remote control circuit 100's concrete structure refers to above-mentioned embodiment, because this bluetooth remote controller 1 has adopted the whole technical scheme of above-mentioned all embodiments, consequently has all beneficial effects that the technical scheme of above-mentioned embodiment brought at least, and the repeated description is no longer given here.
In this embodiment, the bluetooth remote control circuit 100 may form the bluetooth remote control 1 through components such as a housing, the bluetooth remote control 1 is provided with a battery installation position, a battery charging interface, an infrared emission tube, and other structures, each of the modules is correspondingly arranged in the housing, the bluetooth remote control 1 is wirelessly connected with the bluetooth digital host 200 through the bluetooth module 20 and the infrared emission module 70, and transmits a corresponding remote control signal to the bluetooth digital host 200 for resource scheduling.
The third aspect of the embodiment of the present invention provides an electrical apparatus, which comprises a bluetooth digital host 200 and the above bluetooth remote controller 1.
In this embodiment, the bluetooth remote controller 1 is wirelessly connected to the bluetooth digital host 200 through the bluetooth module 20 and the infrared emitting module 70, and transmits a corresponding remote control signal to the bluetooth digital host 200 for resource scheduling, the bluetooth digital host 200 may be a digital host with bluetooth function, such as a television, a notebook, and the like, and in one embodiment, the bluetooth digital host 200 is a television.
The above-mentioned embodiments are only used for illustrating the technical solution of the present invention, and not for limiting the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the spirit and scope of the embodiments of the present invention, and are intended to be included within the scope of the present invention.

Claims (10)

1. A Bluetooth remote control circuit is characterized by comprising a main control module, a Bluetooth module, a gesture recognition module and a power supply module, wherein the gesture recognition module comprises a navigation area;
the power supply module is respectively and electrically connected with the main control module, the Bluetooth module and the gesture recognition module, and the main control module is also respectively and electrically connected with the Bluetooth module and the gesture recognition module;
the gesture recognition module is used for recognizing the speed and the direction when the gesture of the user contacts the navigation area and outputting a corresponding gesture recognition signal to the main control module;
the master control module is used for controlling the Bluetooth module to send a first remote control signal matched with the gesture recognition signal to the Bluetooth digital host so as to trigger remote control of the Bluetooth digital host to schedule corresponding resources.
2. The bluetooth remote control circuit according to claim 1, further comprising a voice module, wherein the voice module is electrically connected to the main control module and the power module respectively;
the voice module is used for recognizing the voice of a user and outputting a corresponding voice instruction to the main control module;
the master control module is further used for controlling the Bluetooth module to send a second remote control signal matched with the voice instruction to the Bluetooth digital host so as to trigger the remote control of the Bluetooth digital host to schedule corresponding resources.
3. The bluetooth remote control circuit according to any of claims 1 or 2, wherein the bluetooth remote control circuit further comprises a key module and an infrared emission module;
the key module and the infrared emission module are respectively electrically connected with the main control module and the power supply module;
the key module is used for identifying the pressing operation of a user and outputting a corresponding key selection signal to the main control module;
the main control module is further configured to control the infrared emission module to send a third remote control signal matched with the key selection signal to the bluetooth digital host, so as to trigger the bluetooth digital host to schedule a corresponding resource.
4. The bluetooth remote control circuit according to claim 1, wherein the gesture recognition module comprises a touch screen and a touch chip, the navigation area is located on the touch screen, and the touch chip is electrically connected to the touch screen and the main control module, respectively.
5. The bluetooth remote control circuit according to claim 2, wherein the voice module comprises a microphone and a voice processing chip, and the voice processing chip is electrically connected to the microphone and the main control module, respectively.
6. The bluetooth remote control circuit according to claim 5, wherein the voice processing chip is an ADC voice processing chip.
7. The bluetooth remote control circuit according to claim 1, wherein the power module is a lithium battery, and the bluetooth remote control circuit further comprises a battery charging circuit electrically connected to the battery.
8. A Bluetooth remote controller, characterized in that, comprising the Bluetooth remote control circuit of any one of claims 1 to 7.
9. An electric appliance comprising a bluetooth digital host and a bluetooth remote controller according to claim 8.
10. The electrical apparatus of claim 9, wherein the bluetooth digital host is a television.
CN202021345847.0U 2020-07-09 2020-07-09 Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment Active CN213070115U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021345847.0U CN213070115U (en) 2020-07-09 2020-07-09 Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021345847.0U CN213070115U (en) 2020-07-09 2020-07-09 Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment

Publications (1)

Publication Number Publication Date
CN213070115U true CN213070115U (en) 2021-04-27

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Application Number Title Priority Date Filing Date
CN202021345847.0U Active CN213070115U (en) 2020-07-09 2020-07-09 Bluetooth remote control circuit, Bluetooth remote controller and electrical equipment

Country Status (1)

Country Link
CN (1) CN213070115U (en)

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