LED lighting device capable of adjusting color temperature by hardware and software cooperative control to achieve high-performance light output
11497095 ยท 2022-11-08
Inventors
Cpc classification
H05B45/24
ELECTRICITY
International classification
Abstract
An LED lighting device capable of adjusting color temperature by software and hardware cooperative control to achieve high-performance output includes at least one light source and a drive circuit. The light source includes first-wavelength LED, second-wavelength LED, third-wavelength LED and fourth-wavelength LED. When a modulator is operated to select only one of the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED to receive a maximum rated current, the drive circuit outputs four times of the maximum drive power to the corresponding LEDs; or when the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED receive a quarter of the maximum rated current separately, the drive circuit outputs a quarter of the maximum drive power to the LEDs separately, and the output pulse width of the drive power will be modulated to maintain the light source to carry a constant rated power.
Claims
1. An LED lighting device capable of adjusting color temperature by software and hardware cooperative control to achieve high-performance output, comprising: at least one light source, comprising a first-wavelength LED, a second-wavelength LED, a third-wavelength LED and a fourth-wavelength LED; and a drive circuit, electrically coupled to the light source, and comprising a primary power output unit, a microcontroller unit, a hardware current switching unit, a secondary power output unit and a constant power programming unit, and the microcontroller unit being telecommunicatively coupled to the hardware current switching unit, and the secondary power output unit being electrically coupled to the primary power output unit, the hardware current switching unit and the constant power programming unit, and the primary power output unit outputting a maximum drive power to the secondary power output unit, wherein when the microcontroller unit receives a drive signal to learn that only one of the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED receives a maximum rated current, the hardware current switching unit switches the resistance of the secondary power output unit to output four times of the maximum drive power to the corresponding first-wavelength LED, second-wavelength LED, third-wavelength LED or fourth-wavelength LED, and the constant power programming unit modulates a pulse width of a output power to maintain carrying power of the light source to be a constant rated power; when the microcontroller unit receives the drive signal to learn that the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED receive a quarter of the maximum rated current separately, the hardware current switching unit switches the resistance of the secondary power output unit to output a quarter of the maximum drive power to the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED separately, and the constant power programming unit modulates the pulse width of the output power to maintain carrying power of the light source to be a constant rated power.
2. The adjustable color-temperature LED lighting device according to claim 1, wherein the first-wavelength LED, the second-wavelength LED, the third-wavelength LED and the fourth-wavelength LED are a red LED, a green LED, a blue LED and a white LED respectively.
3. The adjustable color-temperature LED lighting device according to claim 2, wherein the maximum rated current is equal to 1.4 A, and a quarter of the maximum rated current is equal to 0.35 A.
4. The adjustable color-temperature LED lighting device according to claim 3, further comprising a modulator telecommunicatively coupled to the microcontroller unit for transmitting the drive signal.
5. The adjustable color-temperature LED lighting device according to claim 4, wherein the constant power programming unit modulates the pulse width of the output power by a pulse width modulation technology.
6. The adjustable color-temperature LED lighting device according to claim 5, wherein the secondary power output unit has an output control element which is a metal oxide semiconductor field effect transistor (MOSFET).
7. The adjustable color-temperature LED lighting device according to claim 6, further comprising a cooling element coupled to at least one of the light source and the drive circuit, and the cooling element has a power dissipation wattage equal to rated power wattage carried by the light source.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(3)
DESCRIPTION OF THE EMBODIMENTS
(4) This disclosure will now be described in more detail hereinafter with reference to the accompanying drawings that show various embodiments of the invention.
(5) With reference to
(6) With reference to
(7) The modulator 12 can be telecommunicatively coupled to the microcontroller unit 111 through the Remote Device Management (RDM) protocol and Digital Multiplex (DMX) protocol to transmit a drive signal for modulating and adjusting the color temperature. Step S1: When the microcontroller unit 111 receives the drive signal, the drive signal is analyzed to determine whether only one of the first-wavelength LED 100, the second-wavelength LED 101, the third-wavelength LED 102 and the fourth-wavelength LED 103 receives a maximum rated current (such as 1.4 A). If yes, then go to Step 10, or else go to Step 2.
(8) Step S10: The microcontroller unit 111 drives the hardware current switching unit 112 to switch the resistance of the output control element of the secondary power output unit 113 to output four times of the maximum drive power to the corresponding first-wavelength LED 100, second-wavelength LED 101, third-wavelength LED 102 or fourth-wavelength LED 103.
(9) Step S3: The constant power programming unit 114 modulates the pulse width of the output power by a PWM technology to maintain the carrying power of the light source 10 to be a constant rated power.
(10) Step S2: The microcontroller unit 111 analyzes and determines whether the drive signal indicates that the first-wavelength LED 100, the second-wavelength LED 101, the third-wavelength LED 102 and the fourth-wavelength LED 103 receive a quarter of the maximum rated current such as 0.35 A separately. If yes, then go to Step S20.
(11) Step 20: The hardware current switching unit 112 switches the resistance of the output control element to make the secondary power output unit 113 output a quarter of the maximum drive power to the first-wavelength LED 100, the second-wavelength LED 101, the third-wavelength LED 102 and the fourth-wavelength LED 103 separately, and the Step S3 is carried out to modulate the pulse width of the output powerby the constant power programming unit 114 in order to maintain the carrying power of the light source 10 to be a constant rated power. In addition, the cooling element 13 has power dissipation wattage equal to the rated power wattage such as 100 W carried by the light source 10.