WO2018032525A1 - 一种无线遥控闪光灯及其控制系统 - Google Patents

一种无线遥控闪光灯及其控制系统 Download PDF

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Publication number
WO2018032525A1
WO2018032525A1 PCT/CN2016/096607 CN2016096607W WO2018032525A1 WO 2018032525 A1 WO2018032525 A1 WO 2018032525A1 CN 2016096607 W CN2016096607 W CN 2016096607W WO 2018032525 A1 WO2018032525 A1 WO 2018032525A1
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signal
module
wireless
control
flash
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PCT/CN2016/096607
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English (en)
French (fr)
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曾伟均
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深圳市神牛摄影器材有限公司
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Publication of WO2018032525A1 publication Critical patent/WO2018032525A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B15/00Special procedures for taking photographs; Apparatus therefor
    • G03B15/02Illuminating scene
    • G03B15/03Combinations of cameras with lighting apparatus; Flash units
    • G03B15/05Combinations of cameras with electronic flash apparatus; Electronic flash units
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/66Remote control of cameras or camera parts, e.g. by remote control devices
    • H04N23/661Transmitting camera control signals through networks, e.g. control via the Internet
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source

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  • the utility model relates to the technical field of photographic lighting, in particular to a wireless remote control flash and a control system of a wireless remote control flash.
  • the artificial light source that comes with the camera function of the camera function can not meet the actual use requirements, but there is no professional flash lamp for the mobile terminal with camera function on the market, and there is no device device for the mobile terminal with camera function to wirelessly control the professional.
  • Photographic lighting equipment for simultaneous photography to achieve the movement of the camera Terminal can also use professional photography lighting equipment for professional photographs of the situation; it is prior art has much room for improvement and a huge market demand.
  • the object of the present invention is to provide a wireless remote control flash and a wireless remote control flash control system.
  • the utility model relates to a wireless remote control flash lamp and a control system thereof, which cooperate with a mobile terminal and an external controlled photographic lighting device, which comprises:
  • the first wireless transmission module is connected to a software control module on the mobile terminal by using a wireless signal, and configured to receive a control instruction sent by the software control module;
  • the signal decoding analysis module is connected to the first wireless transmission module, configured to decode and analyze the control command, obtain a control signal, and send the control signal to the flash driver module and the first Two wireless transmission modules;
  • the flash driving module is connected to the signal decoding and analyzing module, and configured to generate a corresponding driving signal according to the control signal;
  • the light emitting device being connected to the flash driving module, which is driven according to a driving signal;
  • a second wireless transmission module wherein the second wireless transmission module is respectively connected to an external controlled photographic lighting device and the signal decoding analysis module, for converting the received control signal into a control signal having a predetermined frequency value And then transmitting a control signal having a predetermined frequency value to the external controlled photographic lighting device through the wireless signal;
  • the power module is configured to supply power to the first wireless transmission module, the signal decoding analysis module, the second wireless transmission module, and the flash driving module.
  • the first wireless transmission module is a WIFI communication module and/or a Bluetooth communication module.
  • the second wireless transmission module is a 2.4 GHz wireless module and/or a 433 MHz wireless module.
  • the light emitting device is a xenon lamp and/or an LED fill light.
  • the utility model relates to a wireless remote control flash control system, comprising: a mobile terminal, a controlled photographic lighting device and a wireless remote control flash lamp as described above;
  • a software control module is installed in the mobile terminal, and is connected to the first wireless transmission module of the wireless remote control flash through a wireless signal, and is used to input a control instruction to the wireless remote control flash through the software control module;
  • the controlled photographic light device and the wireless remote control flash are connected by a wireless signal, and are configured to receive a control signal sent by the second wireless transmission module, and generate corresponding signals according to the control signal.
  • the drive signal is then operated according to the drive signal.
  • the controlled photographic lighting device is provided with a wireless signal receiving module, and the wireless signal receiving module is connected to the second wireless transmission module of the wireless remote control flash through a wireless signal, and is used for the second The control signal sent by the wireless transmission module is received.
  • a signal receiver is disposed between the wireless remote control flash and the controlled photographic lighting device
  • the signal receiver is connected to a signal interface on the controlled photographic light device, and is configured to receive a control signal sent by the second wireless transmission module, and perform decoding analysis on the control signal to obtain a driving signal; And transmitting the driving signal to the controlled photographic lighting device;
  • the controlled photographic lighting device operates in accordance with the drive signal.
  • the wireless remote control flash is coupled to more than one controlled photographic lighting device and/or to more than one signal receiver.
  • the mobile terminal includes: a mobile phone, a tablet computer, a personal computer, and a smart wearable device.
  • the wireless remote control flash is provided with a mounting fixture matched with the mobile terminal.
  • the wireless remote control flash has the function of forwarding the control signal, so that it can drive other photographic lights at the same time, so as to achieve the effect of simultaneous driving of multiple photographic lights; the function is strong, the user experience is good, and the market is favorable. Promotion.
  • Figure 1 is a schematic cross-sectional view of the utility model
  • FIG. 2 is a schematic view showing the structure of a circuit in the present invention.
  • the present invention is a wireless remote control flash 10 that cooperates with a mobile terminal 20 and an external controlled photographic lighting device 30, and includes:
  • the first wireless transmission module 1 is connected to a software control module on the mobile terminal by a wireless signal, and configured to receive a control instruction sent by the software control module;
  • the signal decoding analysis module 2 is connected to the first wireless transmission module 1 for decoding and analyzing the control command, obtaining a control signal, and transmitting the control signal to the flash driver respectively.
  • the flash driving module 5 is connected to the signal decoding and analyzing module 2, and configured to generate a corresponding driving signal according to the control signal;
  • the light emitting device 6 is connected to the flash driving module 5, and is driven according to a driving signal;
  • a second wireless transmission module 3 wherein the second wireless transmission module 3 is connected to an external controlled photographic lighting device 30 and the signal decoding analysis module 2, respectively, for converting the received control signal to have a predetermined frequency value Control signal, and then send a control signal having a predetermined frequency value to the external controlled photographic light device 30 through the wireless signal;
  • the power module 4 is provided with a battery for supplying power to the first wireless transmission module 1, the signal decoding analysis module 2, the second wireless transmission module 3, and the flash driving module 5.
  • the wireless remote control flash 10 of the present invention receives the control command sent by the mobile terminal 20, and drives the own light-emitting device 6 to perform flashing, and simultaneously transmits the control command to the other external controlled photographic lighting device after converting the frequency. 30, in order to achieve a synchronized flash of its own light-emitting device 6 and controlled photographic light device 30.
  • the first wireless transmission module 1 is a WIFI communication module and/or a Bluetooth communication module. Piece.
  • the second wireless transmission module 3 is a 2.4 GHz wireless module and/or a 433 MHz wireless module.
  • the light emitting device 6 is a xenon lamp and/or an LED fill light.
  • a control system of a wireless remote control flash lamp includes: a mobile terminal 20, a controlled photographic lighting device 30, and a wireless remote control flash lamp 10 as described above;
  • a software control module 21 is installed in the mobile terminal 20, and is connected to the first wireless transmission module 1 in the wireless remote control flashlight 10 by a wireless signal, and is used to input a control instruction to the wireless remote control flashlight 10 through the software control module 21.
  • the software control module 21 can be an APP;
  • the controlled photographic light device 30 and the wireless remote control flash 10 are connected by a wireless signal for receiving a control signal sent by the second wireless transmission module 3, and generating a corresponding driving signal according to the control signal, and then according to the driving signal. working.
  • the controlled photographic lighting device 30 is provided with a wireless signal receiving module 31, and the wireless signal receiving module 31 is connected to the second wireless transmission module 3 of the wireless remote control flash 10 via a wireless signal. It is used to receive the control signal sent by the second wireless transmission module 3.
  • the wireless remote control flash 10 can directly transmit the control signal to its wireless signal receiving module 31, and after receiving the control signal, the controlled photographic lighting device 30
  • the control signal is converted into a drive signal and operates in accordance with the drive signal.
  • a signal receiver 40 is disposed between the wireless remote control flash and the controlled photographic light device;
  • the signal receiver 40 is connected to the signal interface 32 on the controlled photographic lighting device 30 for receiving the control signal sent by the second wireless transmission module 3, and decoding and analyzing the control signal. Obtaining a driving signal; and transmitting the driving signal to the controlled photographic lighting device;
  • the controlled photographic lighting device operates in accordance with the drive signal.
  • the partially controlled photographic lighting device 30 does not have the wireless control function, it can receive the control signal through the external signal receiver 40 and convert it into a driving signal, and the driving signal passes through the controlled photographic lighting device.
  • Signal interface 32 on 30 is transmitted to the controlled photographic lighting device 30 to effect flash control of the controlled photographic lighting device 30.
  • the wireless remote control flash 10 is connected to more than one controlled photographic light device 30 and/or one or more signal receivers 40, so that the plurality of flash devices 30 can be accessed by the wireless remote control flash 10 via the mobile terminal 20. Control, easy to use.
  • the mobile terminal 20 includes: a mobile phone, a tablet computer, a personal computer, a smart wearable device, or other mobile terminal with a camera function.
  • the wireless remote control flash is provided with a mounting fixture matched with the mobile terminal 20.
  • the wireless remote control flash receives a control command on the mobile terminal, so that it can be synchronized with the flash on the mobile terminal to achieve a synchronized flash photo; and the wireless remote control flash can also convert the connected control command, and then It is then sent to the controlled photographic lighting equipment to enable it to be functionally controlled by other controlled photographic lighting equipment, as well as to achieve synchronized flash photography of the camera and other controlled photographic lighting equipment on the mobile terminal.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Stroboscope Apparatuses (AREA)
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Abstract

本实用新型涉及摄影灯光技术领域,具体涉及一种无线遥控闪光灯及其控制系统,本实用新型包括:第一无线传输模块,信号解码分析模块,第二无线传输模块,闪光灯驱动模块和发光器件;第一无线传输模块用于接收该软件控制模块所发送的控制指令;信号解码分析模块用于对该控制信号进行解码分析;第二无线传输模块用于将控制信号发送到受控摄影灯光设备上;闪光灯驱动模块与信号解码分析模块相连接,用于对发光器件进行驱动;本实用新型中无线遥控闪光灯具有将控制信号转发的功能,使其可以同时对其他闪光灯进行驱动,已达到多闪光灯同时驱动的效果;其功能强大,用户使用体验好,利于在市场上的推广。

Description

一种无线遥控闪光灯及其控制系统 技术领域
本实用新型涉及摄影灯光技术领域,具体涉及一种无线遥控闪光灯及一种无线遥控闪光灯的控制系统。
背景技术
随着社会的发展,人们的生活水平也逐步地得到提高,摄影也逐步地走进人们的生活中;由于摄影对光源有一定的要求,为此,人们常会利用外置闪光灯来进行辅助拍摄;而在一些对摄影要求较高的地方,如影楼等,其还会需要同时对多个闪光灯进行驱动,在现有的技术中,摄影闪光灯一般都是仅仅给照相机使用,不过现在社会上带照相功能的移动终端越来越多,越来越普及,用带照相功能的移动终端进行拍照变成了日常生活的一部分,拍照需要光源,除了自然光外更多的时候需要人造光来辅助拍照,带照相功能的移动终端自带的人造光源往往满足不了实际使用需求,但现在市场上没有专门给带照相功能的移动终端使用的专业闪光灯,也没有设备装置让带照相功能的移动终端能无线控制专业摄影灯光设备进行同步摄影拍照,以实现带照相功能的移动终端也能够使用专业摄影灯光设备进行专业拍照的状况;故现有技术有很大的提升空间和巨大的市场需求。
实用新型内容
为克服上述缺陷,本实用新型的目的即在于提供一种无线遥控闪光灯及一种无线遥控闪光灯的控制系统。
本实用新型的目的是通过以下技术方案来实现的:
本实用新型是一种无线遥控闪光灯及其控制系统,其与移动终端和外部的受控摄影灯光设备相配合,其包括:
第一无线传输模块,所述第一无线传输模块通过无线信号与所述移动终端上的软件控制模块相连接,用于接收该软件控制模块所发送的控制指令;
信号解码分析模块,所述信号解码分析模块与所述第一无线传输模块相连接,用于对该控制指令进行解码与分析,得到控制信号,并将该控制信号分别发送至闪光灯驱动模块和第二无线传输模块上;
闪光灯驱动模块,所述闪光灯驱动模块与所述信号解码分析模块相连接,用于根据控制信号生成相对应的驱动信号;
发光器件,所述发光器件与所述闪光灯驱动模块相连接,其根据驱动信号进行驱动;
第二无线传输模块,所述第二无线传输模块分别与外部的受控摄影灯光设备和所述信号解码分析模块相连接,用于将所接收到的控制信号转换为具有预定频率值的控制信号,再将具有预定频率值的控制信号通过无线信号发送到外部的受控摄影灯光设备上;
电源模块,所述电源模块中设有电池,其用于为所述第一无线传输模块、信号解码分析模块、第二无线传输模块和闪光灯驱动模块进行供电。
进一步,所述第一无线传输模块为WIFI通信模块和/或蓝牙通讯模块。
进一步,所述第二无线传输模块为2.4GHz无线模块和/或433MHz无线模块。
进一步,所述发光器件氙气灯管和/或LED补光灯。
本实用新型一种无线遥控闪光灯的控制系统,包括:移动终端、受控摄影灯光设备和如上所述的无线遥控闪光灯;
所述移动终端中安装有软件控制模块,其通过无线信号与所述无线遥控闪光灯中的第一无线传输模块连接,用于通过该软件控制模块向无线遥控闪光灯输入控制指令;
所述受控摄影灯光设备与无线遥控闪光灯通过无线信号相连接,用于接收第二无线传输模块所发送的控制信号,并根据该控制信号生成相应的 驱动信号,再根据该驱动信号进行工作。
作为一种改进,所述受控摄影灯光设备中设有无线信号接收模块,所述无线信号接收模块通过无线信号与所述无线遥控闪光灯中的第二无线传输模块相连接,用于对第二无线传输模块所发送的控制信号进行接收。
作为另一种改进,所述无线遥控闪光灯与受控摄影灯光设备之间设有信号接收器;
所述信号接收器与所述受控摄影灯光设备上的信号接口相连接,其用于对第二无线传输模块所发送的控制信号进行接收,并将该控制信号进行解码分析,得到驱动信号;并将该驱动信号传输至受控摄影灯光设备中;
所述受控摄影灯光设备根据该驱动信号进行工作。
进一步,所述无线遥控闪光灯与一个以上的受控摄影灯光设备和/或一个以上信号接收器相连接。
进一步,所述移动终端包括:手机、平板电脑、个人电脑、智能穿戴设备。
进一步,所述无线遥控闪光灯上设有与所述移动终端相配合的安装固定件。
本实用新型中无线遥控闪光灯具有将控制信号转发的功能,使其可以同时对其他摄影灯光进行驱动,以达到多摄影灯光同时驱动的效果;其功能强大,用户使用体验好,利于在市场上的推广。
附图说明
为了易于说明,本实用新型由下述的较佳实施例及附图作详细描述。
图1为本实用新型中的剖面结构示意图;
图2为本实用新型中的电路结构示意图。
具体实施方式
为了使本实用新型的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本实用新型进一步详细说明。应当理解,此处所描述的 具体实施例仅仅用以解释本实用新型,并不用于限定本实用新型。
请参阅图1,本实用新型是一种无线遥控闪光灯10,其与移动终端20和外部的受控摄影灯光设备30相配合,其包括:
第一无线传输模块1,所述第一无线传输模块1通过无线信号与所述移动终端上的软件控制模块相连接,用于接收该软件控制模块所发送的控制指令;
信号解码分析模块2,所述信号解码分析模块2与所述第一无线传输模块1相连接,用于对该控制指令进行解码与分析,得到控制信号,并将该控制信号分别发送至闪光灯驱动模块5和第二无线传输模块3上;其将所接收到WIFI信号或蓝牙信号转换为频率为2.4GHz或433MHz的无线电波信号;
闪光灯驱动模块5,所述闪光灯驱动模块5与所述信号解码分析模块2相连接,用于根据控制信号生成相对应的驱动信号;
发光器件6,所述发光器件6与所述闪光灯驱动模块5相连接,其根据驱动信号进行驱动;
第二无线传输模块3,所述第二无线传输模块3分别与外部的受控摄影灯光设备30和所述信号解码分析模块2相连接,用于所接收到的控制信号转换为具有预定频率值的控制信号,再将具有预定频率值的控制信号通过无线信号发送到外部的受控摄影灯光设备30上;
电源模块4,所述电源模块4中设有电池,其用于为所述第一无线传输模块1、信号解码分析模块2、第二无线传输模块3和闪光灯驱动模块5进行供电。
本实用新型的无线遥控闪光灯10在接收到移动终端20所发送的控制指令是,其驱动自身的发光器件6进行闪光,同时将该控制指令通过转换频率后发送至其他外部的受控摄影灯光设备30中,以实现自身的发光器件6与受控摄影灯光设备30的同步闪光。
进一步,所述第一无线传输模块1为WIFI通信模块和/或蓝牙通讯模 块。
进一步,所述第二无线传输模块3为2.4GHz无线模块和/或433MHz无线模块。
进一步,所述发光器件6氙气灯管和/或LED补光灯。
请参看图2,本实用新型一种无线遥控闪光灯的控制系统,包括:移动终端20、受控摄影灯光设备30和如上所述的无线遥控闪光灯10;
所述移动终端20中安装有软件控制模块21,其通过无线信号与所述无线遥控闪光灯10中的第一无线传输模块1连接,用于通过该软件控制模块21向无线遥控闪光灯10输入控制指令;该软件控制模块21可以为APP;
所述受控摄影灯光设备30与无线遥控闪光灯10通过无线信号相连接,用于接收第二无线传输模块3所发送的控制信号,并根据该控制信号生成相应的驱动信号,再根据该驱动信号进行工作。
作为一种改进,所述受控摄影灯光设备30中设有无线信号接收模块31,所述无线信号接收模块31通过无线信号与所述无线遥控闪光灯10中的第二无线传输模块3相连接,用于对第二无线传输模块3所发送的控制信号进行接收。
当受控摄影灯光设备30中具有无线信号接收模块31时,无线遥控闪光灯10可将控制信号直接发送至其无线信号接收模块31中,受控摄影灯光设备30在接收到控制信号后,将其控制信号转换为驱动信号,并根据驱动信号进行工作。
作为另一种改进,所述无线遥控闪光灯与受控摄影灯光设备之间设有信号接收器40;
所述信号接收器40与所述受控摄影灯光设备30上的信号接口32相连接,其用于对第二无线传输模块3所发送的控制信号进行接收,并将该控制信号进行解码分析,得到驱动信号;并将该驱动信号传输至受控摄影灯光设备中;
所述受控摄影灯光设备根据该驱动信号进行工作。
由于部分受控摄影灯光设备30由于其不具备无线控制功能,故其可以通过外置的信号接收器40对控制信号进行接收,并将其转换为驱动信号后,驱动信号通过受控摄影灯光设备30上的信号接口32传输至该受控摄影灯光设备30中,以实现对受控摄影灯光设备30的闪光控制。
进一步,所述无线遥控闪光灯10与一个以上的受控摄影灯光设备30和/或一个以上信号接收器40相连接,故通过移动终端20可通过一个无线遥控闪光灯10可对多个闪光灯设备30进行控制,使用十分方便。
进一步,所述移动终端20包括:手机、平板电脑、个人电脑、智能穿戴设备或其他带拍照功能的移动终端。
进一步,所述无线遥控闪光灯上设有与所述移动终端20相配合的安装固定件。
在本实用新型中,无线遥控闪光灯接收移动终端上的控制指令,使其可与移动终端上自带的闪光灯实现同步闪光拍照;并且该无线遥控闪光灯还可以将所接的控制指令进行转换,然后再发送到受控摄影灯光设备中,使其可以对其他受控摄影灯光设备实现功能调控,也可以实现移动终端上自带相机与其他受控摄影灯光设备的同步闪光拍照的效果。
以上所述仅为本实用新型的较佳实施例而已,并不用以限制本实用新型,凡在本实用新型的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本实用新型的保护范围之内。

Claims (10)

  1. 一种无线遥控闪光灯,其特征在于,其与移动终端和外部的受控摄影灯光设备相配合,其包括:
    第一无线传输模块,所述第一无线传输模块通过无线信号与所述移动终端上的软件控制模块相连接,用于接收该软件控制模块所发送的控制指令;
    信号解码分析模块,所述信号解码分析模块与所述第一无线传输模块相连接,用于对该控制指令进行解码与分析,得到控制信号,并将该控制信号分别发送至闪光灯驱动模块和第二无线传输模块上;
    闪光灯驱动模块,所述闪光灯驱动模块与所述信号解码分析模块相连接,用于根据控制信号生成相对应的驱动信号;
    发光器件,所述发光器件与所述闪光灯驱动模块相连接,其根据驱动信号进行驱动;
    第二无线传输模块,所述第二无线传输模块分别与外部的受控摄影灯光设备和所述信号解码分析模块相连接,用于将所接收到的控制信号转换为具有预定频率值的控制信号,再将具有预定频率值的控制信号通过无线信号发送到外部的受控摄影灯光设备上;
    电源模块,所述电源模块中设有电池,其用于为所述第一无线传输模块、信号解码分析模块、第二无线传输模块和闪光灯驱动模块进行供电。
  2. 根据权利要求1所述的无线遥控闪光灯,其特征在于,所述第一无线传输模块为WIFI通信模块和/或蓝牙通讯模块。
  3. 根据权利要求2所述的无线遥控闪光灯,其特征在于,所述第二无线传输模块为2.4GHz无线模块和/或433MHz无线模块。
  4. 根据权利要求3所述的无线遥控闪光灯,其特征在于,所述发光器件氙气灯管和/或LED补光灯。
  5. 一种无线遥控闪光灯的控制系统,其特征在于,包括:移动终端、受控摄影灯光设备和如权利要求1至4任一项所述的无线遥控闪光灯;
    所述移动终端中安装有软件控制模块,其通过无线信号与所述无线遥 控闪光灯中的第一无线传输模块连接,用于通过该软件控制模块向无线遥控闪光灯输入控制指令;
    所述受控摄影灯光设备与无线遥控闪光灯通过无线信号相连接,用于接收第二无线传输模块所发送的控制信号,并根据该控制信号生成相应的驱动信号,再根据该驱动信号进行工作。
  6. 根据权利要求5所述的无线遥控闪光灯的控制系统,其特征在于,所述受控摄影灯光设备中设有无线信号接收模块,所述无线信号接收模块通过无线信号与所述无线遥控闪光灯中的第二无线传输模块相连接,用于对第二无线传输模块所发送的控制信号进行接收。
  7. 根据权利要求5所述的无线遥控闪光灯的控制系统,其特征在于,所述无线遥控闪光灯与受控摄影灯光设备之间设有信号接收器;
    所述信号接收器与所述受控摄影灯光设备上的信号接口相连接,其用于对第二无线传输模块所发送的控制信号进行接收,并将该控制信号进行解码分析,得到驱动信号;并将该驱动信号传输至受控摄影灯光设备中;
    所述受控摄影灯光设备根据该驱动信号进行工作。
  8. 根据权利要求6或7所述的无线遥控闪光灯的控制系统,其特征在于,所述无线遥控闪光灯与一个以上的受控摄影灯光设备和/或一个以上信号接收器相连接。
  9. 根据权利要求8所述的无线遥控闪光灯的控制系统,其特征在于,所述移动终端包括:手机、平板电脑、个人电脑、智能穿戴设备。
  10. 根据权利要求9所述的无线遥控闪光灯的控制系统,其特征在于,所述无线遥控闪光灯上设有与所述移动终端相配合的安装固定件。
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