CN211531375U - Intelligent head shaking LED positioning lamp - Google Patents

Intelligent head shaking LED positioning lamp Download PDF

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Publication number
CN211531375U
CN211531375U CN202020363541.1U CN202020363541U CN211531375U CN 211531375 U CN211531375 U CN 211531375U CN 202020363541 U CN202020363541 U CN 202020363541U CN 211531375 U CN211531375 U CN 211531375U
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CN
China
Prior art keywords
gear shaft
led
lamp
rotation driving
light source
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Expired - Fee Related
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CN202020363541.1U
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Chinese (zh)
Inventor
钱勇
钱川玉
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Shanghai Shengmei Electronic Technology Co ltd
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Shanghai Shengmei Electronic Technology Co ltd
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Priority to CN202020363541.1U priority Critical patent/CN211531375U/en
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Abstract

The invention discloses an intelligent head-shaking LED positioning lamp, belongs to the field of intelligent control of LED lamps, and relates to an LED positioning lamp with intelligent head-shaking control, local area illumination and intelligent direction control. The invention adopts the following technical scheme: an intelligent head-shaking LED positioning lamp comprises a lamp body shell; the LED lamp also comprises a horizontal rotation driving group device, a vertical rotation driving group device, an LED light source part device, a wireless transmission module, a laser receiving module and a main control panel device which are arranged in the lamp body shell; the system also comprises a remote control device, a router, a special gateway, an IPAD (internet protocol ad) with specific APP software and the like; utilize visible light transmitter and visible light receiver carry out signal communication and start LED position lamp work, on the other hand, through purpose-built APP carry out the network layout, overall control combines together with monomer control, simple convenient realization through the LAN simultaneously to the remote control of LED lamp in batches.

Description

Intelligent head shaking LED positioning lamp
Technical Field
The utility model discloses an intelligence LED position lamp of shaking head belongs to LED lamp intelligent control field, relates to intelligence control of shaking head, and the LED position lamp of direction control is thrown to local area illumination and intelligence.
Background
As is well known, when a conventional LED lamp is used to adjust the projection direction of the lighting device, the angle of the emergent light, and the like, an operator is required to manually adjust the direction; for example, a high banquet hall desktop needs a beam of light to directly irradiate the desktop center ornament, when more banquet hall desktops need a beam of light to directly irradiate the desktop center, a set of or multiple sets of LED lighting devices need to be adjusted in projection direction and adjusted in brightness, a large amount of manpower needs to be consumed, and potential safety hazards still exist in high-altitude operation. The prior art can realize automatic operation and remote control, but all have control problem and time limit nature problem, for example can't quick effectual selection need the lamps and lanterns controlled, or can't whole lamps and lanterns control or control reaction insensitive scheduling problem. The existing LED positioning lamp device can only rotate but not swing, or can only swing but not rotate, is single in use and needs manual operation. Some positioning lamps which can swing and rotate appear in the market, and the positioning lamps have the defects that the irradiation position and the irradiation direction cannot be conveniently and effectively controlled, when the illumination of a key area needs to be adjusted, the adjustment response speed is low, the operation is very complicated, so that the user experience is poor, and meanwhile, the effective single control cannot be remotely carried out through software. Along with the emergence of intelligent lighting application demand in a large number, ordinary LED pilot lamp that can swing again can rotate has seriously lagged behind user's requirement, a neotype LED pilot lamp demand that can control again through WIFF signal APP intelligent control can laser remote control arises at the same time.
Disclosure of Invention
An object of the utility model is to overcome prior art's defect, and provide a simple structure, the function is various, can satisfy traditional swing and rotatory requirement, can adopt the intelligent control of APP software intelligent control, remote control unit control regulation lamps and lanterns and throw the LED position lamp that the intelligence of direction was shaken the head again through the WIFF signal.
In order to achieve the above purpose, the utility model adopts the following technical scheme: an intelligent head-shaking LED positioning lamp comprises a lamp body shell; the LED lamp also comprises a horizontal rotation driving group device, a vertical rotation driving group device, an LED light source part device, a wireless transmission module, a laser receiving module and a main control panel device which are arranged in the lamp body shell; the system also comprises a remote control device, a router, a special gateway, an IPAD (internet protocol ad) with specific APP software and the like; the LED lamp is characterized in that the horizontal rotation driving group device is installed in the lamp body shell, the horizontal rotation driving group device is connected with the vertical rotation driving group device through a right-angle fixing plate, and the vertical rotation driving device is connected with the LED light source part device through a fourth bearing and a third nut.
Furthermore, there is stainless steel rings and power supply input interface at lamp body shell top.
Furthermore, a supporting plate is arranged in the lamp body shell; the support plate divides the interior of the lamp body shell into a first cavity and a second cavity; the horizontal rotation driving group device and the main control panel device are arranged on the supporting plate and are positioned in the first cavity.
Further, an annular decorative surface cover is arranged at an opening at the front end of the lamp body shell, an annular connecting plate is arranged on the inner side of the annular decorative surface cover, and a laser receiving module is arranged on the annular connecting plate; the laser receiving module is connected with the wireless transmission module. The annular decorative surface cover is fixedly connected with the lamp body shell through a fixing clamping frame.
Further, the laser receiving module is used for receiving the instruction sent by the remote control device and transmitting the instruction to the wireless transmission module. The wireless transmission module is connected with the remote control device through optical communication and is respectively connected with the vertical rotation driving group device and the horizontal rotation driving group device.
Further, the laser receiving module includes: a visible light receiver, a light controller and an LED lamp switch; the visible light receiver is in optical communication connection with a visible light emitter of the remote control device, and the visible light receiver is connected with the light controller and the LED lamp switch.
Further, the horizontal rotation driving assembly device comprises a first stepping motor, a first gear shaft, a second gear shaft, a first bearing, a second bearing and a rotary rotation mechanical device fixing plate; the first stepping motor is fixedly arranged on the fixed plate of the rotary rotating mechanical device; a rotating shaft of the first stepping motor movably penetrates through the fixed plate of the rotary rotating mechanical device to be fixedly connected with one end of the first gear shaft, and the other end of the first gear shaft is rotatably connected with the supporting plate through the first bearing; the first gear shaft is in meshed connection with the second gear shaft; the second gear shaft is rotatably connected with the supporting plate through the second bearing, and the second bearing is fixedly arranged at the central position of the supporting plate; and the shaft of the second gear shaft passes through the second bearing and extends into the second cavity to be fixedly connected with the vertical rotation driving group device.
Further, a first limit switch is arranged on the fixed plate of the rotary rotating mechanical device; one end of the second gear shaft is provided with a first limiting block; the first stepping motor drives the second gear shaft and the first limit block to rotate, and the protrusion on the first limit block can be connected with the elastic switch of the first limit switch and presses the elastic switch of the first limit switch to control the rotation angle of the second gear shaft.
Furthermore, the vertical rotation driving group device comprises a second motor, a gear device cover and a right-angle fixing plate; the right-angle plates comprise a first right-angle plate and a second right-angle plate; one end of the second right-angle plate is fixedly connected with a rotating shaft of the second gear shaft.
Further, the vertical rotation driving device comprises a gear device cover arranged on the first straight angle plate, and a third gear shaft, a fourth gear shaft, a fifth gear shaft, a sixth gear shaft and a seventh gear shaft which are sequentially connected between the first straight angle plate and the gear linkage device in a rotation mode; the third gear shaft is meshed with the fourth gear shaft, a rotating shaft of the third gear shaft movably penetrates through the first straight angle plate to be connected with a rotating shaft of the second motor, the fourth gear shaft is meshed with the fifth gear shaft, the fifth gear shaft is meshed with the sixth gear shaft, the sixth gear shaft is meshed with the seventh gear shaft, and a rotating shaft of the seventh gear shaft penetrates through the first straight angle plate to be connected with a third nut through a fourth bearing.
Further, the rotating shafts of the third gear shaft, the fourth gear shaft, the fifth gear shaft and the sixth gear shaft are rotatably connected between the first right-angle plate and the gear device cover through the third bearing; and a rotating shaft of the seventh gear shaft is rotatably connected between the first straight angle plate and the gear device cover through a fourth bearing.
Further, a second limit switch is arranged on the first straight angle plate; one end of the seventh gear shaft is provided with a second limiting block; the second stepping motor drives the seventh gear shaft and the second limiting block to rotate, and the protrusion on the second limiting block can be connected with the elastic switch of the second limiting switch and presses the elastic switch of the second limiting switch to control the rotation angle of the seventh gear shaft.
Further, the LED light source part device comprises a light source outer ring, a lens assembly, an LED light source, a third nut, a radiator, a radiating fin and the like, the LED light source part device is connected to the fourth bearing through the third nut, the LED light source is fixed on the radiator, and the lens assembly and the light source outer ring are screwed and fixed on the radiator.
Furthermore, the main control panel device is connected with the LED light source part device and the power supply input end interface, and the wireless transmission module is arranged in the main control panel device.
Further, the wireless transmission module is wirelessly connected with the remote control device through WIFF signals, and obtains instructions from the remote control device; the wireless transmission module is respectively connected with the vertical rotation driving group device and the horizontal rotation driving group device, and transmits the obtained rotation instruction to each driving device.
Further, the execution mode of the vertical rotation driving set device on the vertical rotation instruction is as follows: an output shaft of the second stepping motor drives the LED light source part device to rotate, and the LED light source part device rotates vertically; the horizontal rotation driving group device executes the horizontal rotation instruction in the following way: the output shaft of the first stepping motor drives the first right-angle plate to rotate horizontally, the first right-angle plate drives the second right-angle plate to rotate, and the second right-angle plate is connected with the LED light source part device through the vertical rotation driving device to rotate horizontally.
Further, the remote control device includes: the device comprises a function control key, a visible light emitter and a wireless transmission component; the visible light emitter is respectively connected with the light emission on/off key in the function control key and the wireless transmission component. The visible light transmitter is connected with the light receiver in the laser receiving module through optical communication; 2.4G/5.0G wireless transmission is used between the LED positioning lamp and the remote control device.
Further, the remote control device function control key includes: the system comprises a light emission opening key, a light emission closing key, a laser key, a brightness adjustment increasing key, a brightness adjustment decreasing key, an LED positioning lamp awakening key, an LED positioning lamp sleeping key, a vertical up-down rotating key, a horizontal left-right rotating key, an integral LED positioning lamp control key, a remote control keyboard opening key, an ID setting number key, an S confirmation key and the like.
Further, the specific operation mode of the function keys of the remote control device is as follows:
the first control mode is as follows: pressing the light emission start key, activating a remote control device, then operating the remote control device to aim at the laser receiving module indicator lamp on the LED positioning lamp to be controlled to press the laser key, and enabling the laser receiver indicator lamp to flicker, so that the LED positioning lamp is activated, pressing the horizontal left-right rotation key and the vertical up-down rotation key of the remote control device to perform three-dimensional change of the directions of front, back, left and right lamp body projection light, pressing the brightness adjustment increase/decrease key, and adjusting the brightness change of the lamp body; further, pressing the integral LED positioning lamp control key, all the LED positioning lamps in the area are activated; further, the horizontal left-right rotation key and the vertical up-down rotation key of the remote control device are pressed to perform three-dimensional change of the projection light directions of the front, the rear, the left and the right lamp bodies of all the lamp bodies, and the brightness adjustment increase/decrease key is pressed to perform brightness change adjustment of the LED positioning lamps of all the lamps.
The second control mode is as follows: pressing the remote control device remote control keyboard start key, activating the ID setting number key, selecting the ID address of the LED positioning lamp to be controlled, pressing and inputting the number of the corresponding number key, then pressing the S confirmation key, activating the LED positioning lamp to be controlled, pressing the remote control device horizontal left and right rotation key and the vertical up and down rotation key to change the direction of the projection light of the front, back, left and right lamp bodies, pressing the brightness adjustment increase/decrease key, and adjusting the brightness change of the lamp.
The third control mode is as follows: when the LED positioning lamp wake-up key is pressed down, all the LED positioning lamps in the area are woken up, each indicator lamp flickers to indicate that all the lamps enter a controlled state, the horizontal left-right rotation key and the vertical up-down rotation key of the remote control device are pressed down to change the direction of light projected by front, back, left and right lamp bodies, the brightness adjustment increase/decrease key is pressed down to adjust the brightness change of the lamp bodies, and all the lamps are synchronously changed and adjusted. And pressing the LED positioning lamp dormancy key, enabling all the LED positioning lamps to enter a dormancy mode, turning off the lamp, and turning off the indicator lamp on the laser receiving module of the LED positioning lamp, thereby realizing the control of the whole LED positioning lamp.
The fourth control mode is as follows: setting an address of a certain LED positioning lamp: pressing the light emission starting key to activate the remote control device, then pressing the laser key by aligning the laser receiving module indicator lamp on the LED positioning lamp to be controlled, activating the LED positioning lamp, pressing the remote control keyboard starting key to activate the ID setting number key, pressing and inputting the corresponding number key number, then pressing the S confirmation key, and quickly stroboscopically flashing the LED positioning lamp to show that the LED positioning lamp successfully sets the ID address.
The utility model also provides a remote control principle of above-mentioned LED position lamp, include:
firstly, a visible light receiver of one laser receiving module part of the LED positioning lamp receives a light signal of a visible light emitter on a remote control device;
secondly, the laser receiving module starts the wireless transmission module of the LED positioning lamp;
thirdly, the wireless transmission module is communicated with the remote control device to obtain a change instruction of the LED positioning lamp;
and fourthly, the wireless transmission module sends an action instruction to the horizontal rotation driving set device or the vertical rotation driving set device according to the change instruction so as to drive the LED positioning lamp to rotate, or starts an LED light source part device to adjust the brightness change of the light source according to the change instruction.
The utility model discloses a purpose-built APP control lamp position execution mode
In order to realize the purpose of specially-made APP control, the invention adopts the following technical scheme: an intelligent moving head LED positioning lamp further comprises a mobile phone or an IPAD, a special APP software, a router, a special gateway and the like.
Further, the special APP software is installed through the mobile phone or the IPAD, and the router is connected to the special gateway through a network cable and is set with the IP address of the router.
Further, the router and the gateway are electrified, and the normal operation of the equipment is kept.
Further, after the purpose-made APP software is installed, the APP software is opened, the router IP address is searched, and the router IP address is clicked to enter.
And further, clicking the APP software entering the IP address, selecting an option of adding equipment, sequentially inputting the addresses of the LED positioning lamps, and dragging the addresses to corresponding layout positions according to the actual layout on site.
Further, if the LED positioning lamp addresses are continuous serial numbers such as 1-12, the adding equipment can also add the LED positioning lamp addresses 1-12 integrally at one time by selecting and inputting the LED positioning lamp addresses, and drag the corresponding LED positioning lamps to the designated positions according to the actual layout on site; if the address is added wrongly, the address LED positioning lamp can be deleted by selecting and editing.
Furthermore, after adding all the LED positioning lamp addresses, clicking to select the required positioning lamp, pressing a horizontal left-right rotating key to change the left-right light projection direction and pressing a vertical up-down rotating key to change the front-back light projection direction according to interface display, wherein a middle key is a lamp opening/closing key, is pressed to be opened once, is pressed to be closed once, is internally provided with a brightness adjusting slide block, and has weakened brightness when sliding to the left side and strengthened when sliding to the right side.
Further, APP possess the profile setting, after the different change modes of every LED pilot lamp in this region are edited, set up the profile, the outage restarts, click this setting mode, the LED pilot lamp auto-regresses this profile who sets up.
Further, the principle of controlling the LED positioning lamp by the specially-made APP is as follows: the mobile phone or the IPAD is in signal connection with the router and the special gateway through WIFF signals, and the gateway is in signal exchange with the wireless transmission module on the LED positioning lamp; the wireless transmission module and the gateway use 2.4G/5.0G wireless transmission; the wireless transmission module is respectively connected with the vertical rotation driving group device, the horizontal rotation driving group device and the LED light source part device, and transmits the acquired rotation instruction and the acquired brightness instruction to each driving device.
The utility model has the advantages that: compared with the prior art, the utility model discloses a be provided with in lamp body shell the level to rotate drive group device with perpendicularly to rotating drive group device, the level drives to rotating drive group device LED light source part device rotational motion, perpendicularly drive to rotating drive group device be swinging motion is done to LED light source part device, promptly LED light source part device is rotatable and the multi-angle swing adjusts the projection light direction of LED lamp in the LED light source part device, but increase light irradiation range and application range. According to a wireless transmission scheme and an optical communication scheme, the LED positioning lamp can simultaneously transmit a plurality of LED positioning lamps, and each LED positioning lamp is controlled by the remote control device and also can be controlled by the special APP software. The visible light emitter and the visible light receiver are used for carrying out optical signal communication to start the LED positioning lamp to work, and the visible light emitter is used for starting the remote control device to operate, so that the safety of the remote control device is improved, and the misoperation probability of randomly pressing the remote control device to control the LED positioning lamp is reduced. On the other hand, through purpose-built APP carry out the network layout, overall control combines together with the monomer control, simple convenient realization through the LAN simultaneously to the remote control of batch LED lamp.
Drawings
FIG. 1 is a cut-away view of an LED position light;
FIG. 2 is an exploded view of an LED position light;
FIG. 3 is an exploded view of the vertical rotation driving assembly of the LED position light;
FIG. 4 is an exploded view of the LED position light horizontal rotation driving assembly;
FIG. 5 is an exploded view of a LED light source portion module of the LED position light;
FIG. 6 is a schematic illustration of a remote control device;
FIG. 7 is a diagram of an LED location light control group;
FIG. 8 is an APP software control schematic diagram of an LED positioning lamp;
FIG. 9 is a software control operation interface diagram of an area LED positioning lamp APP;
fig. 10 is an operating interface diagram of the software of the LED positioning lamp APP with address 1.
Element number description: 1. a power supply input port; 2. a stainless steel hanging ring; 3. a main control board device; 4. a horizontal rotation driving group device; 5. a support plate; 6. a first nut; 7. an LED light source section device; 8. fixing the clamp frame; 9. an annular decorative cover; 10. an annular connecting plate; 11. a laser receiving module; 12. a lamp body housing; 13. a second cavity; 14. a wireless transmission module; 15. a first cavity; 16. a rotating machine member; 17. a second limit switch; 18. a first limit switch; 19. an LED light source; 20. a vertical rotation driving set device; 201. a gear unit cover; 202. a seventh gear shaft; 203. a sixth gear shaft; 204. a fifth gear shaft; 205. a fourth gear shaft; 206. a third gear shaft; 207. a third bearing; 208. a fourth bearing; 209. a second limiting block; 20. a second nut; 21. a second stepping motor; 22. a right-angle plate; 221. a first gusset; 222. a second rectangular plate; 23. a rotating mechanical device fixing plate; 24. a first stepper motor; 25. a second gear shaft; 251. a first stopper; 26. a second bearing; 27. a first bearing; 28. a first gear shaft; 29. a light source outer ring; 30. a lens assembly; 31. a third nut; 32. heat dissipation fins; 33 a radiator; 34. a light emission off key; 35. a light emission start key; 36. a laser key; 37. a brightness adjustment down key; 38. a brightness adjustment heightening key; 39. an LED positioning lamp wake-up key; 40. LED positioning lamp dormant key; 41. a vertical up rotation key; 411. a vertical down rotation key; 42. a horizontal left rotation key; 421. a horizontal right rotation key; 43. an integral LED positioning lamp control key; 44. ID setting number keys; 45. remote control keyboard open key; 46. s, a confirmation key; 47. a visible light emitter. 48. IPAD 49, router; 50. and (4) specially manufacturing the gateway.
Detailed Description
The embodiment is a preferred embodiment of the present invention, and other principles and basic structures are the same as or similar to those of the embodiment, and are within the protection scope of the present invention.
The structure in this embodiment is an intelligent moving head LED positioning lamp, please refer to fig. 1, which includes a lamp body housing 12; the LED lamp also comprises a horizontal rotation driving group device 4, a vertical rotation driving group device 20, an LED light source part device 7, a wireless transmission module 14, a laser receiving module 11 and a main control panel device 3 which are arranged in the lamp body shell; also included are a remote control (see fig. 6), a router 49 (see fig. 8), a purpose built gateway 50 (see fig. 8), an IPAD48 (see fig. 8).
An annular decorative surface cover 9 is arranged at an opening at the front end of the lamp body shell 12, an annular connecting plate 10 is arranged on the inner side of the annular decorative surface cover 9, and a laser receiving module 11 is arranged on the annular connecting plate 10; the annular decorative surface cover 9 is fixedly connected with the lamp body shell 12 through a fixing clamping frame 8. The laser receiving module 11 is used for receiving the instruction sent by the remote control device and transmitting the instruction to the wireless transmission module 14. The wireless transmission module 14 is wirelessly connected with the remote control device and is respectively connected with the vertical rotation driving set device 20 and the horizontal rotation driving set device 4. The laser receiving module 11 includes: visible light receiver, light controller, LED lamp switch.
Referring to fig. 2, the horizontal rotation driving assembly device 4 is installed in the lamp body housing 12, the horizontal rotation driving assembly device 4 is connected to the vertical rotation driving assembly device 20 through a right-angle fixing plate 22, and the vertical rotation driving assembly device 20 is connected to the LED light source part device 7 through a fourth bearing 208 and a third nut 31. The top of the lamp body shell 12 is provided with a stainless steel hanging ring 2 and a power supply input end interface 1, and a support plate 5 is arranged in the lamp body shell 12; the support plate 5 divides the interior of the lamp body shell 12 into a first cavity 15 and a second cavity 13; the horizontal rotation driving group device 4 and the main control panel device 3 are installed on the supporting plate 5 and are located in the first cavity 15.
Referring to fig. 4, the horizontal rotation driving assembly 4 includes a first stepping motor 24, a first gear shaft 28, a second gear shaft 25, a first bearing 27, a second bearing 26 and a rotation mechanism fixing plate 23; the first stepping motor 24 is fixedly arranged on the rotating and rotating mechanical device fixing plate 23; the rotating shaft of the first stepping motor 24 movably penetrates through the rotating mechanical device fixing plate 23 to be fixedly connected with one end of the first gear shaft 28, and the other end of the first gear shaft 28 is rotatably connected with the supporting plate 5 through the first bearing 27; the first gear shaft 28 is in meshing connection with the second gear shaft 25; one end of the rotating shaft of the second gear shaft 25 is provided with a first thread and two first nuts 6 which are matched and connected with the first thread; the second gear shaft 25 is rotatably connected with the support plate 5 through the second bearing 26, and the second bearing 26 is fixedly arranged at the central position of the support plate 5; the shaft of the second gear shaft 25 passes through the second bearing 26 and extends into the second cavity 13 to be fixedly connected with the vertical rotation driving set device 20.
A first limit switch 18 is arranged on the horizontal rotation driving group device fixing plate 23; a first limit block 251 is arranged at one end of the second gear shaft 25; the first stepping motor 24 drives the second gear shaft 25 and the first limit block 251 to rotate, and a protrusion on the first limit block 251 may be connected to an elastic switch of the first limit switch 18 and pressed against the elastic switch of the first limit switch 18 to control a rotation angle of the second gear shaft 25.
Referring to fig. 3, the vertical rotation driving assembly 20 includes a second stepping motor 21, a gear housing 201, and a right-angle fixing plate 22; the right-angle plates 22 comprise a first right-angle plate 221 and a second right-angle plate 222; the second motor 21 and the vertical rotation driving assembly 20 are mounted on the first right-angle plate 221, and one end of the second right-angle plate 222 is fixedly connected to a rotating shaft of the second gear shaft 25.
The vertical rotation driving group device 20 comprises a gear device cover 201 arranged on the first straight angle plate 221, and a third gear shaft 206, a fourth gear shaft 205, a fifth gear shaft 204, a sixth gear shaft 203 and a seventh gear shaft 202 which are sequentially and rotatably connected between the first straight angle plate 221 and the vertical rotation driving group device 20; the third gear shaft 206 is engaged with the fourth gear shaft 205, the rotating shaft of the third gear shaft 206 movably penetrates through the first straight angle plate 221 to be connected with the rotating shaft of the second stepping motor 21, the fourth gear shaft 205 is engaged with the fifth gear shaft 204, the fifth gear shaft 204 is engaged with the sixth gear shaft 203, the sixth gear shaft 203 is engaged with the seventh gear shaft 202, one end of the rotating shaft of the seventh gear shaft 202 is provided with a second thread and a second nut 20 which is engaged with the second thread, and the rotating shaft of the seventh gear shaft 202 penetrates through the first straight angle plate 221 to be connected with the side end of the LED light source part device 7 through a fourth bearing 208 to be connected with the third nut 31.
The rotating shafts of the third gear shaft 206, the fourth gear shaft 205, the fifth gear shaft 204 and the sixth gear shaft 203 are rotatably connected between the first rectilinear plate 221 and the gear device cover 201 through a third bearing 207; the rotating shaft of the seventh gear shaft 202 is rotatably connected between the first rectilinear plate 221 and the gear housing 201 through a fourth bearing 208. The first straight angle plate 221 is provided with a second limit switch 17; one end of the seventh gear shaft 202 is provided with a second limiting block 209; the second stepping motor 21 drives the seventh gear shaft 202 and the second limit block 209 to rotate, and the protrusion on the second limit block 209 may be connected to the elastic switch of the second limit switch 17 and press against the elastic switch of the second limit switch 211 to control the rotation angle of the seventh gear shaft 202.
The main control panel device 3 is connected with the LED light source part device 7 and the power supply input port 1, and the wireless transmission module 14 is disposed in the main control panel device 3. The wireless transmission module 14 is in wireless connection with the remote control device and acquires instructions from the remote control device; the wireless transmission module 14 is connected to the vertical rotation driving assembly device 20 and the horizontal rotation driving assembly device 4, respectively, and transmits the obtained rotation instruction to each driving device. The execution mode of the vertical rotation command by the vertical rotation driving device 20 is as follows: an output shaft of the second stepping motor 21 drives the LED light source part device 7 to rotate, and the LED light source part device 7 rotates vertically; the horizontal rotation driving group device 4 executes the horizontal rotation instruction in the following manner: the output shaft of the first stepping motor 24 drives the first right-angle plate 221 to rotate horizontally, the first right-angle plate 221 drives the second right-angle plate 222 to rotate, and the second right-angle plate 222 is connected with the LED light source part device 7 through the vertical rotation driving device 20 to rotate horizontally.
Referring to fig. 5, the LED light source part device 7 includes a light source outer ring 29, a lens assembly 30, an LED light source 19, a third nut 31 interface, a heat sink 33, a heat sink fin 32, etc., the LED light source part device 7 is connected to the fourth bearing through the third nut 31, the LED light source 19 is fixed on the heat sink 33, the lens assembly 30 and the light source outer ring 29 are screwed on the heat sink 33, and the heat sink fin 32 is used to increase the heat dissipation area of the light source.
Referring to fig. 6, the remote control device includes: function control keys, a visible light emitter 47, a wireless transmission component; the visible light emitter 47 is connected to the light emission on/off key 35/34 and the wireless transmission component, respectively. The visible light emitter 47 is connected with the light receiver on the laser receiving module 11 through optical communication; the visible light receiver is connected with the light controller and the LED lamp switch.
The remote control device function control key comprises: a light emission on key 35, a light emission off key 34, a laser key 36, a brightness adjustment up key 38, a brightness adjustment down key 37, an LED position light wake-up key 39, an LED position light sleep key 40, a vertical up-down rotation key 41/411, a horizontal left-right rotation key 42/421, an overall LED position light control key 43, a remote control keyboard on key 45, an ID setting number key 44, an S confirmation key 46, a visible light emitter 47, and the like.
Referring to fig. 7, a group of LED positioning lamps has 12 lamps, which are connected in series. The remote control device and the APP software described in detail below operate to control the LED location light set through IPAD.
Remote control device control method
Firstly, pressing the light emission start key 35 to activate the remote control device, then pressing the laser key 36 with the indicator light of the laser receiving module 11 aligned with the first LED positioning lamp, activating the LED positioning lamp, pressing the remote control keyboard start key 45 to activate the ID setting number key 44, pressing the input number key number 1, then pressing the S confirmation key 46, the fast stroboscopic of the LED positioning lamp indicates that the LED positioning lamp successfully sets the ID address to 1, and so on, and sets the addresses of the LED positioning lamps to 1-12 and 12 lamps as shown in fig. 7.
Secondly, pressing the light emission start key 35 to activate the remote control device, then operating the remote control device to aim at the laser receiving module 11 indicator lamp on the LED positioning lamp with the address of 1 to press the laser key 36, and enabling the laser receiver indicator lamp to flicker, so that the LED positioning lamp is activated, pressing the horizontal left rotation key 42 and the vertical upper rotation key 41 of the remote control device to perform three-dimensional change of the direction of the front left lamp body projection light, pressing the brightness adjustment reduction key 37 to perform adjustment of the brightness reduction of the lamp body; further, when the integral LED positioning light control key 43 is pressed, all 12 LED positioning lights in the area are activated; further, the direction of the projected light of all the lamp bodies at the front, the rear, the left and the right is changed three-dimensionally by pressing the horizontal right rotation key 421 and the vertical lower rotation key 411 of the remote control device, and the brightness adjustment increase key 38 is pressed to adjust the synchronous increase of the brightness of all the lamp bodies. And pressing the LED positioning lamp dormancy key 40 to trigger all the LED positioning lamp laser receiving modules 11 to turn off the LED lamp switches, so that all the 12 LED positioning lamps are turned off. And pressing the LED positioning lamp awakening key 39, and then all the 12 LED positioning lamps restore the original set brightness.
And step three, searching for an LED positioning lamp with an existing address and controlling, for example, searching for an LED positioning lamp with an address of 3 and controlling an operation method: when the remote control device remote control keyboard start key 45 is pressed, the ID setting numeric key 44 is activated, the input 3 key is pressed, then the S enter key 46 is pressed, one of the LED position light indicator lights flickers, the LED position light with the address 3 is activated and is in a controllable state, the remote control device horizontal left and right rotation key 42/421 and the vertical up and down rotation key 41/411 are pressed to change the direction of light projected by the front, rear, left and right lamp bodies, and the brightness adjustment increase/decrease key 37/38 is pressed to adjust the change of the lamp brightness.
Method for APP to operate LED positioning lamp set through IPAD
Referring to fig. 8, a purpose-made APP software is installed in the IPAD48, a wireless network selects an IP address of the router 49, the router 49 is connected with the purpose-made gateway 50 and is powered on, the purpose-made APP software is turned on to select an adding device, 12 LED positioning lamps with addresses of 1-12 are set to correspond to the number of lamps in fig. 7, the lamps are arranged at corresponding positions of the software according to the arrangement mode in fig. 7, an LED positioning lamp operation interface with address 1 is clicked to refer to fig. 10, according to interface display, a horizontal left-right rotation key is pressed to change the left-right light projection direction, a vertical up-down rotation key is pressed to change the front-back light projection direction, a middle key is a lamp turning on/off key, the key is pressed to be turned on, the key is pressed to be turned off, a circulation switch is provided with a brightness adjusting slider inside, the sliding brightness on the left side becomes weak; after the change adjustment is finished, the lower scene modes such as welcome, bright, meeting, warm and the like can be clicked, one mode is selected, and the change setting of the lamp is stored; after the addresses of the LED positioning lamps are set, the required change settings of other lamps can be sequentially completed, after all the LED positioning lamps are changed, the scene mode is set to be a welcome mode, the power is off and restarted, the welcome button of the setting mode is clicked, and the LED positioning lamps automatically return to the stored change mode.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. The utility model provides an intelligence LED position lamp of shaking head, characterized by: comprises a lamp body shell; the LED lamp also comprises a horizontal rotation driving group device, a vertical rotation driving group device, an LED light source part device, a wireless transmission module, a laser receiving module and a main control panel device which are arranged in the lamp body shell; comprises a remote control device; the horizontal rotation driving set device is arranged in the lamp body shell and is connected with the vertical rotation driving device through a right-angle fixing plate, and the LED light source part device is arranged on the vertical rotation driving device; the vertical rotation driving assembly comprises a second stepping motor, a gear device cover and a right-angle fixing plate; the right-angle fixing plate comprises a first right-angle plate and a second right-angle plate; one end of the second right-angle plate is fixedly connected with a rotating shaft of the second gear shaft.
2. The intelligent moving head LED positioning lamp as claimed in claim 1, wherein: the laser receiving module is used for receiving the instruction sent by the remote control device and transmitting the instruction to the wireless transmission module; the wireless transmission module is wirelessly connected with the remote control device and is respectively connected with the vertical rotation driving group device and the horizontal rotation driving group device.
3. The intelligent moving head LED positioning lamp as claimed in claim 2, wherein: a supporting plate is arranged in the lamp body shell; the support plate divides the interior of the lamp body shell into a first cavity and a second cavity; the horizontal rotation driving group device and the main control panel device are arranged on the supporting plate and are positioned in the first cavity.
4. The intelligent moving head LED positioning lamp as claimed in claim 3, wherein: the horizontal rotation driving assembly device comprises a first stepping motor, a first gear shaft, a second gear shaft, a first bearing, a second bearing and a rotary rotation mechanical device fixing plate; the first stepping motor is fixedly arranged on the fixed plate of the rotary rotating mechanical device; a rotating shaft of the first stepping motor movably penetrates through the fixed plate of the rotary rotating mechanical device to be fixedly connected with one end of the first gear shaft, and the other end of the first gear shaft is rotatably connected with the supporting plate through the first bearing; the first gear shaft is in meshed connection with the second gear shaft; the second gear shaft is rotatably connected with the supporting plate through the second bearing, and the second bearing is fixedly arranged at the central position of the supporting plate; and the shaft of the second gear shaft passes through the second bearing and extends into the second cavity to be fixedly connected with the vertical rotation driving group device.
5. The intelligent moving head LED positioning lamp as claimed in claim 4, wherein: an annular decorative surface cover is arranged at an opening at the front end of the lamp body shell, an annular connecting plate is arranged on the inner side of the annular decorative surface cover, and a laser receiving module is arranged on the annular connecting plate; the laser receiving module is connected with the wireless transmission module; the annular decorative surface cover is fixedly connected with the lamp body shell through a fixing clamping frame.
6. The intelligent moving head LED positioning lamp as claimed in claim 5, wherein: a first limit switch is arranged on the fixing plate of the horizontal rotation driving group device; one end of the second gear shaft is provided with a first limiting block; the first stepping motor drives the second gear shaft and the first limiting block to rotate, and the protrusion on the first limiting block is connected with the elastic switch of the first limiting switch and presses the elastic switch of the first limiting switch to control the rotation angle of the second gear shaft.
7. The intelligent moving head LED positioning lamp as claimed in claim 6, wherein: the vertical rotation driving device comprises a gear device cover arranged on the first straight angle plate, and a third gear shaft, a fourth gear shaft, a fifth gear shaft, a sixth gear shaft and a seventh gear shaft which are sequentially connected between the first straight angle plate and the gear linkage device in a rotation mode; the third gear shaft is meshed with the fourth gear shaft, a rotating shaft of the third gear shaft movably penetrates through the first straight angle plate to be connected with a rotating shaft of the second stepping motor, the fourth gear shaft is meshed with the fifth gear shaft, the fifth gear shaft is meshed with the sixth gear shaft, the sixth gear shaft is meshed with the seventh gear shaft, and a rotating shaft of the seventh gear shaft penetrates through the first straight angle plate to be connected with a third nut through a fourth bearing.
8. The intelligent moving head LED positioning lamp according to claim 7, characterized in that: the LED light source part device comprises a light source outer ring, a lens component, an LED light source, a third nut butt joint port, a radiator and a radiating fin, the LED light source part device is connected to the fourth bearing through the third nut, the LED light source is fixed on the radiator, and the lens component and the light source outer ring are screwed and fixed on the radiator.
9. The intelligent moving head LED positioning lamp according to claim 8, characterized in that: an output shaft of the second stepping motor drives the LED light source part device to rotate, and the LED light source part device rotates vertically; the output shaft of the first stepping motor drives the first right-angle plate to rotate horizontally, the first right-angle plate drives the second right-angle plate to rotate, and the second right-angle plate is connected with the LED light source part device through the vertical rotation driving device to rotate horizontally.
CN202020363541.1U 2020-03-20 2020-03-20 Intelligent head shaking LED positioning lamp Expired - Fee Related CN211531375U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020363541.1U CN211531375U (en) 2020-03-20 2020-03-20 Intelligent head shaking LED positioning lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020363541.1U CN211531375U (en) 2020-03-20 2020-03-20 Intelligent head shaking LED positioning lamp

Publications (1)

Publication Number Publication Date
CN211531375U true CN211531375U (en) 2020-09-18

Family

ID=72441125

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020363541.1U Expired - Fee Related CN211531375U (en) 2020-03-20 2020-03-20 Intelligent head shaking LED positioning lamp

Country Status (1)

Country Link
CN (1) CN211531375U (en)

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