Data Sheet Data Sheet 100VAC Input/24VDC (200mA) Output 100VAC Input/5VDC (100mA) Output Non-Isolated AC/DC Converter Non-Isolated AC/DC Converter BP5039A BP5034D5 Absolute Maximum Ratings Dimensions (Unit : mm) Absolute Maximum Ratings Dimensions (Unit : mm) 28.2MAX. 10.0MAX. Parameter Symbol Limits Unit Parameter Symbol Limits Unit 35.0MAX. 9.1MAX. Input voltage Vcc V Input voltage 170 Vi 195 V Maximum output current IoMAX 200 mApk Output current Io 100 mApk ESD endurance Vsurge 2 kV ESD endurance Vsurge kV 2 1 2 3 4 5 6 7 8 10 1 3 5 7 10 12 Maximum surface temperature TcMAX 105 C Operating temperature range Topr 20 to +80 C 0.25 0.05 0.25 0.05 7.62 0.50.1 1.30.2 Operating Temperature range Topr 20 to +80 C 0.5 0.1 Storage temperature range Tstg 25 to +85 C 4.85MAX. P=2.540.2 5.08 1.3 0.2 3.5MAX. 3.25MAX 3.6MAX. 2.549=22.86 6.5MAX. Storage temperature range Tstg 25 to +105 C 2.5411=27.94 4.25MAX. Electrical Characteristics Electrical Characteristics Derating Curve Parameter Symbol Min. Typ. Max. Conditions Unit Derating Curve Parameter Symbol Min. Typ. Max. Unit Conditions Derating Curve 120 Input voltage range Vi 113 141 195 V DC(80 to 138VAC) Input voltage range V DC (80 to 120VAC) Derating Curve Vi 113 141 170 100 250 Output voltage Vo 4.7 5.0 5.3 V Vi=141V, Io=50mA 80 Output voltage V Vi=141V, Io=100mA Vo 22 24 26 200 Output current Io 0 100 mA Vi=141V 1 60 Output current mA Vi=141V Io 0 200 1 150 Operation Range 40 Line regulation Vr 0.02 0.1 V Vi=113 to 195V, Io=50mA Operation Range Line regulation V Vi=113 to 170V, Io=100mA 100 Vr 0.50 0.30 0.50 20 Load regulation Vl 0.05 0.15 V Vi=141V, Io=0 to 50mA 2 50 0 Load regulation V Vi=141V, Io=0 to 100mA Vl 0.50 0.25 0.50 2 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Output ripple voltage Vp 0.05 0.15 Vp-p Vi=141V, Io=50mA 0 Ambient Temperature Ta(C) Output ripple voltage Vp-p Vi=141V, Io=100mA Vp 0.07 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Power conversion efficiency 48 56 % Vi=141V, Io=100mA 2 Ambient Temperature Ta(C) Power conversion efficiency % Vi=141V, Io=200mA 70 82 2 1 Maximum output current varies depending on ambient temperature please refer to derating curve. Switching Frequency Output current at mA Vi=170V, Output short, Ta=25C Io1 200 245 2 Please refer to Load regulation, Conversion efficiency. Conversion Efficiency Switching Frequency overcurrent mA Vi=170V, Output short, Ta=80C Io2 150 220 (Ta=25C, Vi=141V) 50 Conversion Efficiency 1 Maximum output current varies depending on ambient temperature please refer to derating curve. (Ta=31C, Vi=141V) 100 40 2 Please refer to Load regulation, Conversion efficiency. 90 Application Circuit 80 30 Function Pin No. 70 1 Output terminal Vo(5V) 60 20 BP5034D5 2 N.C. Application Circuit 50 40 10 3 N.C. 30 Pin No. Function 4 N.C. Please note that pin No.10 20 0 BP5039A 1 Output terminal Vo(24V) 5 COMMON 10 side is input. 0 20 40 60 80 100 2 Not used 6 COMMON 0 Output Current Io(mA) Be sure to use fuse for safety. 0 50 100 150 200 3 Choke coil connect 7 N.C. Output Current Io(mA) 4 Not used 8 N.C. 10 8 7 6 5 4 3 2 1 5 Choke coil connect 9 Skipping pin 12 10 7 5 3 1 Conversion Efficiency FUSE 6 Not used 10 Input terminal Vi(141VDC) R1 D1 0.5A Output Load Regulation 7 COMMON 101/4W Conversion Efficiency 1SR35400A +5V DC motor (Ta=25C, Vi=141V) 8 Not used FUSE 60 Load Regulation C2 C3 R1 9 Not used Input Ii D1 Io (Ta=25C, Vi=141V) ZNR + + C1 50 30 10 N.C. AC100V 48% MinLine L1 + + 220V 0.1F 100F/50V 10F/250V 11 Not used 40 25 50Hz/60Hz C3 C1 C2 Vo Vi 12 Input terminal Vi(141VDC) ZNR 30 20 Be sure to use fuse for safety. 15 20 Please verify operation and characteristics in the customer s circuit before actual usage. 10 Please verify operation and characteristics in the customer s circuit before actual usage. 10 0 Ensure that the load current does not exceed the maximum rating. Ensure that the load current does not exceed the maximum rating. 5 0 20 40 60 80 100 0 Output Current Io(mA) 0 50 100 150 200 250 300 Output Current Io(mA) External Component Specifications External Component Specifications Load Regulation FUSE: FUSE Use a quick-acting fuse of (1A) FUSE: Fuse Use a quick-acting fuse of 0.5A Surface Temperature Increase Load Regulation (Ta=25C, Vi=141V) C1: Input capacitor above 250V, 22 to 820F C1: Input smoothing Surface Temperature Increase Capacitance : 3.3 to 22F 5.3 (Ta=315C, Vi=141V) Ripple current 0.13Arms or above capacitor Rated voltage : 250V or higher 40 5.2 35 C2: Output capacitor above 25V, 100 to 470F low impedance 5.1 C2: Noise reduction Capacitance : 0.1 to 0.22F Rated voltage : 250V or higher 30 ESR : 0.4 Max. 5.0 capacitor 25 Use a film or ceramic capacitor. Ripple current 0.25Arms or above 20 4.9 Evaluate under actual operating conditions. Capacitor impedance affects the output ripple voltage. 15 4.8 10 C3: Output smoothing Capacitance : 100 to 470F 4.7 C3: Noise reduction above 250V, 0.1 to 0.22F 5 capacitor Rated voltage : 25V or higher, low impedance 0 20 40 60 80 100 capacitor Use a film or ceramic capacitor 0 Output Current Io(mA) 0 50 100 150 200 250 Impedance is 0.39 max at high frequencies Evaluate under actual operating conditions. Output Current Io(mA) Ripple current is 0.1Arms or above. L1: Power Inductor Inductance : 1.5mH Rating current : above 0.4A Capacitor impedance affects the output ripple voltage. Surface Temperature Increase D1: Rectifier diode In the absolute maximum ratings, the reverse surge voltage should be Surface Temperature Increase D1: Rectifier diode In the absolute maximum ratings, the reverse surge voltage should be (Ta=25C, Vi=141V) 400V or above the average rectifier current should be 1A or greater, 25 400V or higher, the average rectifying current should be 0.5A or higher, and the forward surge current should be 20A or more. and the forward surge current should be 20A or higher. 20 10 to 22 1/4W 15 R1: Noise reduction resistor R1: Noise reduction 10 to 22, 1/4W Determine the ideal value through actual testing. resistor The ideal value should be determined through actual testing. 10 ZNR: Varistor A varistor must be used to protect against lightning surges and 5 ZNR: Varistor A varistor must be used to protect against lightning surges and static electricity. static electricity. 0 0 20 40 60 80 100 120 Output Current Io(mA) www.rohm.com 2010.01 - Rev.A 2010 ROHM Co., Ltd. All rights reserved. 1/1 Output Current Io(mA) Temperature Rising T(C) Output Voltage Vo(V) Conversion Efficiency (%) 41.0 19.5MAX. Mark Side Output Current Io(mA) Temperature Rising T(C) Output Voltage Vo(V) Conversion Efficiency (%) Switching Frequency fsw(kHz) 41.0 15.7MAX. Mark Side