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AN2242 Datasheet(PDF) 13 Page - STMicroelectronics |
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AN2242 Datasheet(HTML) 13 Page - STMicroelectronics |
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13 / 31 page ![]() AN2242 3 Cross Regulation and Standby 13/31 Table 6. Output Voltage Measurement at Standby Load In Table 6. the output voltage measurements during standby operation are shown. Even in this load condition the circuit is able to regulate the output voltages within the required tolerance. Figure 9. Input Power vs. Mains Voltage During Standby It is clearly visible that, while delivering the required standby load, (5V at 50mA, 1.8V, 3.3V and 12V at 0mA) the input power consumption is below 800mW at both the nominal input voltage ranges and remains below 900mW at 265Vac. Figure 10. represents the input power variation as a function of the 5V current. During the standby operation the circuit works in burst mode, thus the number of switching cycles decreases and, therefore it brings to an equivalent continuous switching frequency reduction. This minimizes all frequency-related losses and maximizes the efficiency with respect to other controllers without this feature. The L6668 enters automatically in burst mode when its internal circuitry detects a light load by monitoring the voltage on pin #10 (Comp). When it falls by 50mV below the threshold programmed via the divider connected at to pin #9 (SKIPADJ), the IC is disabled and its consumption is reduced to minimize the Vcc capacitor discharge. The soft-start capacitor is not discharged. The control voltage now will increase as a result of the feedback reaction to the energy delivery stop, the threshold will be exceeded and the IC will restart switching again. In this way the converter works in burst-mode with a constant at 115Vac - 60Hz at 230Vac Voltage [V] Current [A] Deviation Voltage [V] Current [A] Deviation 11.80 0 -1.67% OK 11.70 0 -2.50% OK 1.92 0 6.67% OK 1.92 0 6.67% OK 4.71 0.047 -5.80% OK 4.73 0.047 -5.40% OK 3.36 0 1.82% OK 3.36 0 1.82% OK Vin= 115Vac lin= 0.017Arms Pin=0.51W Vaux=9.68V EFF.= 43.5% Vin= 230Vac lin= 0.0217Arms Pin=0.75W Vaux=10V EFF.= 29.8% Pout=0.22W Pout=0.22W 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 Mains voltage Pin= [W] 0.49 0.51 0.75 0.88 Vaux= [V] 9.67 9.68 10 10.04 90Vac 115Vac 230Vac 265Vac |
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