您选择了我们:可获得什么样的实际优势?
我们是有多年历史的专业电源制造商,我们随时保持以您提供电源技术方面的解答和热诚服务,我们的团队主要责任是把重点放在不断去满足客户的需求。也是我们彼此能建立长久战略合作信赖的伙伴关系!以下是我们几点实际优势:
| Design ideas of high-quality LED power supply |
|
|
|
|
The emerging field of semiconductor lighting, which made the engineers who are specializing in power electronics, optics and thermal management (mechanical engineer), become the hot talent. The total power electronic engineers are used to ensure that the output voltage or current with high precision, but in terms of LED driver design is not a good habit. FPGA and the DSP and the like, such as the number of loads need to lower the core voltage, which in turn requires more stringent controls to prevent a high error rate. Therefore, the digital power supply rails will usually control the tolerance within ± 1% or smaller than their nominal value, the absolute value that can also be used, such as 0.99V to 1.01V. In the design of the traditional habits of the introduction of the power LED driver design usually brings the problem is: In order to achieve the strict control of output current tolerance will waste more electricity and the use of more expensive devices. Cost pressures After thorough research, you will find a major drawback of this approach, they are: the load and feedback circuit between the two are identical. Reference voltage is added to a resistor in series with the LED, this means that the reference voltage or the LED current is higher, and the greater is the resistance of the power consumption. Therefore, the first generation of dedicated LED driver ICs to be much lower than the reference voltage current product, which is similar to the battery charger. Lower voltage means lower power consumption, and also means smaller, cheaper, more low-loss current sense resistor. As shown in Figure 1b simple low-end feedback environment, 200mV conventional voltage selection. However, to be achieved in the 200mV reference voltage tolerance of ± 1%, you need a very high price of integrated circuits, when compared to the nominal reference voltage tolerance is ± 2mV. Although this is not impossible to achieve, higher accuracy requires a higher cost. ± 2mV the need for high-precision voltage reference tolerance required for the production, testing and classifying technology, this time, additional costs should be spent on more intelligent LED drive. The value of the cost of the new addition of a feedback loop, with the help of the loop, you can use light output (instead of current output) to control LED driver. Measuring light output |