Title :
A novel constant current control circuit for a primary-side controlled AC-DC LED driver
Author :
Yao Chen ; Changyuan Chang ; Penglin Yang
Author_Institution :
Sch. of Integrated Circuits, Southeast Univ., Nanjing, China
fDate :
Sept. 29 2014-Oct. 1 2014
Abstract :
A novel constant current control circuit for a primary-side controlled universal-input AC-DC LED driver is proposed in this paper. The proposed control circuit employs minimum voltage detection circuit to monitor the zero crossing information of secondary winding current. The ideal demagnetization time signal is generated by demagnetization time detection circuit. In addition, the ratio between the secondary winding demagnetization time TDemag and switching period TS is maintained constant by adopting the intelligent charging and discharging circuit, finally achieving high-precision constant output current. A control IC has been fabricated in TSMC 0.35μm 5V/600V CMOS/LDMOS process. Experimental results of a 3-W circuit prototype show that the constant current precision is within ±1% in a wide range of universal-input ac voltage from 85V to 264 V, and that above 80% efficiency is obtained by driving 3 1-W LEDs. The start-up time is only 46 mS under 90V-input, and the standby power is tested to be lower than 142 mW under 220V-input.
Keywords :
AC-DC power convertors; CMOS integrated circuits; driver circuits; electric current control; windings; CMOS process; LDMOS process; constant current control circuit; control IC; demagnetization time detection circuit; demagnetization time signal generation; intelligent charging circuit; intelligent discharging circuit; minimum voltage detection circuit; power 1 W; power 3 W; primary-side controlled AC-DC LED driver; primary-side controlled universal-input AC-DC LED driver; secondary winding current; secondary winding demagnetization time; size 0.35 mum; time 46 ms; universal-input ac voltage; voltage 5 V; voltage 600 V; zero crossing information monitoring; CMOS integrated circuits; Demagnetization; Light emitting diodes; Prototypes; Reliability; Resistors; LED driver; constant current; flyback converter; high precision; low power; primary-side regulation;
Conference_Titel :
Electronics, Computer and Computation (ICECCO), 2014 11th International Conference on
Conference_Location :
Abuja
Print_ISBN :
978-1-4799-4108-7
DOI :
10.1109/ICECCO.2014.6997541