IP Library › Granted Patent US 11,595,556
Granted Patent B2
US 11,595,556 · App. 17/008,241 · Granted Feb 28, 2023

Broadcast lighting system and the method of use thereof

Inventor: Linbin Shen (Shenzhen, CN)
H04N5/2256F21V21/15H04N5/2228H04N5/23203H04N5/23299H05B45/20H05B47/115H05B47/165H05B47/19F21V21/06F21Y2105/18F21Y2113/10F21Y2115/10
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Quick Facts
Patent No.
US 11,595,556
App. No.
17/008,241
Granted
Feb 28, 2023
Kind
B2
Abstract

Embodiments of a live broadcast lighting system are disclosed. In one example embodiment, the live broadcast lighting system includes a light emitting apparatus, a control box being connected to the light emitting apparatus, and a device holder coupled to the control box. The device holder can be configured to releasably retain a video recording device. The control box can include an electronic control circuit configured to control rotation of the light emitting apparatus. The device holder can be configured to be rotatable independent of the rotation of the light emitting apparatus.

Claims (31)

1. A live broadcast lighting system comprising:

a light emitting apparatus;

a control box being connected to the light emitting apparatus;

a device holder coupled to the control box, wherein the device holder is configured to releasably retain a video recording device; and

a motion sensor electronically coupled to the electronic control circuit, wherein the motion sensor is configured to detect movement of a target subject, wherein the light emitting apparatus is configured to shed light on the target subject;

wherein the control box comprises an electronic control circuit configured to control rotation of the light emitting apparatus; and

wherein the device holder is configured to be rotatable independent of the rotation of the light emitting apparatus.

2. The live broadcast lighting system of claim 1 , wherein the electronic control circuit is configured to control the light emitting apparatus to rotate in three dimensions about a geometric center of the light emitting apparatus.

3. The live broadcast lighting system of claim 2 , wherein the electronic control circuit is configured to control the rotation of the device holder in three dimensions about a geometric center of the device holder.

4. The live broadcast lighting system of claim 1 , wherein the light emitting apparatus comprises a plurality of light sources, wherein the plurality of light sources comprise a first set of cold white LED lamp beads and a second set of warm white LED lamp beads, wherein the first set of cold white LED lamp beads and the second set of warm white LED lamp beads are juxtaposed around a peripheral region of the light emitting apparatus.

5. The live broadcast lighting system of claim 4 , wherein the electronic control circuit is configured to independently control switching ON/OFF and adjusting light intensity of each light source so as to create a preprogrammed light emitting pattern.

6. The live broadcast lighting system of claim 5 , wherein the preprogrammed light emitting pattern comprises a preprogrammed spatial distribution of the plurality of light sources that are turned ON or OFF.

7. The live broadcast lighting system of claim 5 , wherein the preprogrammed light emitting pattern comprises a preprogrammed change of light intensity over a period of time for at least one of the plurality of light sources.

8. The live broadcast lighting system of claim 1 , further comprising a remote control device configured to wirelessly communicate with the electronic control circuit so as to allow a user operating the remote control device to remotely control rotation and/or lighting of the light emitting apparatus.

9. The live broadcast lighting system of claim 8 , wherein the remote control device comprises a mobile phone which is configured to communicate with electronic control circuit via Bluetooth protocol.

10. The live broadcast lighting system of claim 8 , wherein the remote control device is configured to remotely control rotation of the device holder.

11. The live broadcast lighting system of claim 8 , wherein the remote control device is configured to wirelessly communicate with the video recording device so as to allow the user to remotely control operation of the video recording device.

12. The live broadcast lighting system of claim 1 , further comprising a touch panel electronically coupled to the electronic control circuit, wherein the touch panel is configured to allow a user to control rotation and/or lighting of the light emitting apparatus by interacting with a menu presented on the touch panel.

13. The live broadcast lighting system of claim 1 , wherein the motion sensor is integrated with the video recording device.

14. The live broadcast lighting system of claim 1 , wherein the motion sensor is separate from and operate independently of the video recording device.

15. The live broadcast lighting system of claim 1 , wherein the motion sensor is configured to detect a gesture of the target subject and the electronic control circuit is configured to translate the gesture into a corresponding command which controls at least one of the functions comprising: rotation of the light emitting apparatus, rotation of the device holder, lighting of the light emitting apparatus, and operation of the video recording device.

16. The live broadcast lighting system of claim 1 , wherein the motion sensor is configured to detect a positional change of the target subject and the electronic control circuit is configured to cause rotation of the light emitting apparatus so as to ensure light emitted from the light emitting apparatus remain focused on the target subject.

17. The live broadcast lighting system of claim 1 , wherein the motion sensor is configured to detect a positional change of the target subject and the electronic control circuit is configured to change light emitting pattern or strength of the light emitting apparatus.

18. The live broadcast lighting system of claim 1 , wherein the motion sensor is configured to detect a positional change of the target subject and the electronic control circuit is configured to cause rotation of the video recording device so as to ensure the target subject remains in focus of the video recording device.

19. A method for remote control of a live broadcast lighting system comprising a light emitting apparatus and a video recording device, the method comprising:

remotely turning ON or OFF of a plurality of light sources of a light emitting apparatus;

remotely changing light intensity of the plurality of light sources that are turned ON;

remotely rotating the light emitting apparatus in three dimensions about a geometric center of the light emitting apparatus;

remotely adjusting an angle of the video recording device independently of rotating the light emitting apparatus; and

remotely controlling start and stop of a recording session by the video recording device;

wherein rotating the light emitting apparatus comprises detecting a movement of a target subject and changing orientation of the light emitting apparatus in response to the movement of the target subject.

Continuity (1)
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