Lighting apparatus
A lighting apparatus includes a light source module, a driver and a processor. The light source module includes multiple light zones. Different light zones have different LED module combinations. The driver is coupled to an external power source to generating driving currents to the light source module. The processor receives a control command for adjusting colors of the multiple light zones separately by sending control signals to the driver. The control signals indicate duty ratios of the multiple LED modules of the multiple light zones to adjust the colors of the multiple light zones.
1 . A lighting apparatus, comprising:
a light source module comprising multiple light zones, wherein different light zones have different LED module combinations;
a driver coupled to an external power source to generating driving currents to the light source module; and
a processor for receiving a control command for adjusting colors of the multiple light zones separately by sending control signals to the driver, wherein the control signals indicate duty ratios of the multiple LED modules of the multiple light zones to adjust the colors of the multiple light zones, wherein when the processor handles a color adjustment from a starting color to a destination color, the processor calculates two boundary colors in a color space according to a line passing the starting color and the destination color, wherein the processor uses duty ratio parameters of the starting color and the two boundary colors.
2 . The lighting apparatus of claim 1 , where the processor maintains a mapping relation between color adjustment and duty ration adjustment in a PWM control design.
3 . The lighting apparatus of claim 1 , wherein the control command indicates target colors of the multiple light zones, wherein the processor translates the control command to corresponding control signals.
4 . The lighting apparatus of claim 1 , wherein the processor provides a first mode that all light zones emit lights of same color, wherein the processor provides a second mode that different light zones emit lights of different colors.
5 . The lighting apparatus of claim 4 , wherein the processor provides a third mode that indicates an object type and the processor translates the object type to corresponding driving signals that generate colors to enhance camera image capturing of the object type.
6 . The lighting apparatus of claim 1 , where the processor maintains multiple reference color coordinates and corresponding duty ratio parameters, wherein the processor determines a target duty ratio parameter of a target color of the light zone by reference to adjacent reference color coordinates.
7 . The lighting apparatus of claim 6 , wherein the processor calculates the target duty ratio parameter according to stored duty ration parameters of the reference color coordinates.
8 . The lighting apparatus of claim 6 , wherein the processor maintains a group range of target colors for each reference color coordinate, wherein the processor identifies the reference color coordinate by checking group ranges of the reference color coordinates.
9 . The lighting apparatus of claim 1 , wherein the control command indicates an adjustment path involves a color variation, wherein the processor uses a non-linear variation on duty ratio adjustment of the control signals.
10 . The lighting apparatus of claim 1 , wherein control of the light zones are separately added to the processor.
11 . The lighting apparatus of claim 10 , wherein the control command includes multiple sub-commands respectively for controlling different light zones.
12 . The lighting apparatus of claim 11 , wherein the processor receives the sub-commands from a remote control and generates the control signals according to received sub-commands of the remote control.
13 . The lighting apparatus of claim 1 , wherein the light zones are mounted on different brackets for directing lights to different directions.
14 . The lighting apparatus of claim 13 , wherein the light zones comprise optical components to change light directions of the light zones.
15 . The lighting apparatus of claim 13 , wherein filters are added to the light zones to change spectral distributions of the light zones.
16 . The lighting apparatus of claim 15 , wherein the processor records filter parameters of the filters to calculate the control signals.
17 . The lighting apparatus of claim 1 , wherein a light cover is disposed above the LED modules, and distance between two adjacent LED modules is less than ⅓ of height between the LED modules and the light cover.
18 . The lighting apparatus of claim 1 , wherein the processor transforms the color from a first color space to a second color space to find multiple intermediate colors in the second color space during color adjustment.
19 . The lighting apparatus of claim 18 , wherein the first color space is CIE1931.