US 12,452,982 B2
Signal analysis protocol changing method for wireless lamp
Bo Liang, Guangzhou (CN); and Ziqin Guo, Guangzhou (CN)
Assigned to GUANGZHOU RISING DRAGON RECREATION INDUSTRIAL CO., LTD., Guangzhou (CN)
Filed by Guangzhou Rising Dragon Recreation Industrial Co., Ltd., Guangzhou (CN)
Filed on Oct. 23, 2023, as Appl. No. 18/491,830.
Claims priority of application No. 202211735720.3 (CN), filed on Dec. 30, 2022.
Prior Publication US 2024/0224406 A1, Jul. 4, 2024
Int. Cl. H05B 47/195 (2020.01); H05B 47/175 (2020.01); H05B 47/18 (2020.01)
CPC H05B 47/195 (2020.01) [H05B 47/175 (2020.01); H05B 47/184 (2024.01)] 7 Claims
OG exemplary drawing
 
1. A signal analysis protocol changing method for a wireless lamp, the wireless lamp receiving a control signal, sent by a preset controller, by means of a lamp holder and correspondingly analysing the control signal according to a selected analysis protocol to obtain light control information to drive a lamp bead to change emitted light, wherein the signal analysis protocol changing method for the wireless lamp comprises:
Step 1: presetting a plurality of analysis protocols in the wireless lamp, wherein the analysis protocols are in one-to-one correspondence with control signals sent by different manufacturers;
Step 2: presetting a plurality of change signals in an encoder, wherein the change signals are used to activate the corresponding preset analysis protocols in the wireless lamp;
Step 3: establishing a communication connection between the encoder and the wireless lamp;
Step 4: transmitting a change signal to the wireless lamp by the encoder;
Step 5: receiving and analysing the change signal by the wireless lamp;
Step 6: activating the corresponding analysis protocol according to an analysis result by the wireless lamp; and
Step 7: disconnecting the communication between the wireless lamp and the encoder;
wherein the wireless lamp comprises an LED lamp, an LED drive module, a first control module and an infrared signal receiving module, and the analysis protocols are preset in the first control module; and
the encoder is an infrared encoder, the infrared encoder comprises a second infrared signal transmitting module corresponding to the infrared signal receiving module, and a third control module, and the change signals are presets in the third control module and are infrared coded signals.