As a new light source,
LED power supply
and
drive
circuit are different from the electronic ballast of fluorescent lamps.
The main function of
LED drive circuit
is to convert AC voltage into DC voltage and match
the voltage and current of
LED
at the same time. With the linear decline of silicon
integrated circuit
power supply
voltage, LED operating voltage is increasingly in the optimal range of power supply output voltage. Most technologies for powering low-voltage
ICs
are also suitable for powering LEDs, especially
high-power LEDs
. In addition, LED power supply should also be able to take advantage of the economies of scale brought by the gradual increase in the output of low-voltage IC power supplies.
I. Overview of main technologies of LED power supply and drive circuit
1) Voltage conversion technology
Power supply is
an important component that
affects
the reliability and adaptability of
LED light source
and must be given priority consideration. At present, China's main electricity is 220V AC, while LED light source is a
semiconductor
light source, usually powered by low DC voltage, which requires AC-DC conversion circuits to be set in or outside these lamps to adapt to the characteristics of LED current drive. At present, there are
many
ways to choose power
supply, such as switching
power supply, high-frequency power supply, capacitor step-down and rectifier power supply, etc. Different choices are made according to the different requirements of current stability, transient overshoot, safety and reliability.
2) Life and cost of power supply and drive circuit
In terms of LED life, although the life of a single LED itself is up to 100,000 hours, it must be matched with a power conversion circuit when used, so
the overall life of
LED lighting
equipment must be considered from the
perspective of
optoelectronic
integrated application. However, for lighting LEDs, in order to meet the matching requirements, the life of the power supply and drive circuit must exceed 100,000 hours, so that it will no longer be a bottleneck factor in the LED lighting system. While considering long life, it is not possible to increase too much cost. The life and cost of the power supply and drive circuit should not exceed one-third of the total cost of the lighting system. In the early stage of the development of LED lighting products, the relationship between the life and cost of the power supply and drive circuit must be balanced.
3) Programmable technology of driver program
A notable feature of LED as a light source is that it can still maintain its
lumen
efficiency under low driving current conditions. At the same time, for RGB
polycrystalline
type
mixed light to form white light, by developing a digital RGB mixing control system for LED, users can
arbitrarily adjust
the brightness
, color and hue of LED in a wide range, giving people a new visual enjoyment. In the application of urban landscape lighting, LED light sources can be changed in different modes under the control of microprocessors to form a variety of dynamic effects at night. In this regard, it will reflect the unique competitive advantage of LED over other light sources.
4) Efficiency of power supply and drive circuit
LED power supply and drive circuit must have a certain forward current output close to constant current required by LED, and have a high conversion efficiency. The electro-optical conversion efficiency is an important factor in LED lighting, otherwise
the
energy-saving advantage of LED
will be lost
. The efficiency of commercial switching power supply is about 80%. As a power supply for LED lighting, its conversion efficiency still needs to be further improved.
2. Technology Development Trends
1) Develop a series of constant voltage and constant current control electronic circuits based on the characteristics of LEDs, and use integrated circuit technology to control the input current of each LED at the optimal current value, so that the LED can obtain a stable current and produce the highest output
luminous flux
. The LED driver circuit is best able to control the size of the LED current when factors such as input voltage and ambient temperature change.
2) The LED driver circuit has an intelligent control function, so that the load current of the LED can be controlled at a pre-designed level under the influence of various factors. When the load current changes due to various factors, the primary control IC can control
the load current to return to the initial design value by controlling
the switch
.
3) In terms of control circuit design, it is necessary to develop centralized control, standard modularization, and system scalability.
4) In the current situation where LED
light efficiency
and luminous flux are limited, give full play to the characteristics of LED color diversity and develop color-changing
LED lighting
control circuits.
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Recommended ReadingLatest update time:2024-11-16 19:46
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