STEVAL-ISA012V1 3 phase power supply with VIPer and Power MOSFETs Data Brief Features ■ Minimum AC input voltage = 90 VAC ■ Maximum AC input voltage = 450 VAC ■ Time of hold up capability > 50 ms ■ Mean input power < 6 W (in compliance with IEC62053-21) ■ Input connections allowed: – 1-phase with neutral – 2-phase without neutral – 3-phase with neutral ■ VOUT1 = 5 V, IOUT1 = 10 mA ■ VOUT2 = 3.3 V, IOUT2 = 100 mA ■ Maximum precision error = 3% ■ Maximum ripple voltage = 50 mV ■ Line regulation = +/- 1% ■ Load regulation = +/- 1% ■ Output power (peak) = 550 mW STEVAL-ISA012V1 Typical end applications for this solution can be found in the industrial market in the range below 5 W, such as three-phase and single-phase power meters, industrial bias power supplies and auxiliary SMPS for high voltage street lighting, where the input voltage can range from 90 VAC to 450 VAC and 1000 V Power MOSFETs are currently used. Description This reference design represents a cost effective solution for low power high voltage power supplies. It has been developed to cover applications requiring an ultra-wide input voltage range (between 90 and 450 VAC), typical of threephase applications. This requires the use of very high voltage components, which increases cost, size, weight and the overall complexity of the power supply. The circuit includes a switching transistor connected between the input rectifier and the DC bulk capacitor (STMicroelectronics patent). The series switch limits the DC input voltage of the power converter by means of a driving circuit; thus the SMPS primary transistor can be selected as a standard part as well as a smart power primary IC. November 2007 Rev 1 For further information contact your local STMicroelectronics sales office. 1/4 www.st.com 4 RF4 22E 0.75W RV3 SO5K275/275V RF3 22E 0.75W 4 - 4 - BRIDGE + 3 D2 BRIDGE + 3 D1 C3 220nF 630V SMD C2 220nF 630V SMD Layout Hints: Q1 mounted on 1cm x 0.8cm copper area. C8&C10 have to be closed to the VIPer12AS. GND Pins for U2 have to be soldered to a unique copper area. Note: N P3 P2 RF2 22E 0.75W RV2 SO5K275/275V RV1 SO5K275/275V 2 1 2 1 L1 1mH 2 C8 10uF 50V D4 180V D3 180V + 3 R3 330K SMD R2 330K SMD R1 330K SMD NTC1 50E 1 FB 5 4 2 1 C10 47nF 50V SMD T1 U4 PC817 6 10 U3 TS2431 3 R6 1K SMD R8 4.7K SMD C9 100nF 50V SMD R7 4.7K SMD C5 + 330uF 25V D6 TMBAT49 C1 2.2nF/2kV (Y1) R5 220E SMD 5.6K SMD R9 D7 LL4148 R4 10E SMD C4 2.2uF450V + VIPer12AS U1 D5 ZMM 15 SOD-80 Q1 STD3NK50Z 3 4 3 RF1 22E 0.75W 4 Vdd 5 6 7 8 D D D D S S 2 1 1 2 1 2 8 + VIN VOUT U2 L4931ABD33 22uF 25V C6 L2 10uH 100mA SMD GND GND GND GND 2/4 2 3 6 7 1 GND C7 2.2uF 25V + 3.3V VDD 3.3V@100mA 5V@10mA Figure 1. NC INH 1 4 5 P1 Board schematic STEVAL-ISA012V1 Board schematic Schematic STEVAL-ISA012V1 2 Revision history Revision history Table 1. Document revision history Date Revision 28-Nov-2007 1 Changes Initial release 3/4 STEVAL-ISA012V1 Please Read Carefully: Information in this document is provided solely in connection with ST products. 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