Data Sheet Data Sheet 100VAC Input/15VDC (200mA) Output 100VAC Input/15VDC (300mA) Output Non-Isolated AC/DC Converter Non-Isolated AC/DC Converter BP5039-15 BP5067-15 Absolute Maximum Ratings Dimensions (Unit : mm) Absolute Maximum Ratings Dimensions (Unit : mm) 35.0MAX. 9.1MAX. Parameter Symbol Limits Unit Parameter Unit Symbol Limits 35.0MAX. 9.2MAX. Input voltage Vi 170 V Input voltage Vi 190 V Maximum output current IoMAX 200 mApk Maximum Output current IoMAX 300 mApk ESD endurance Vsurge 2 kV ESD endurance Vsurge 2 kV 1 3 5 7 10 12 1 3 5 7 10 12 Operating temperature range Topr 25 to +80 C Maximum surface temperature Tcmax 105 C 0.250.05 7.62 0.25 0.05 7.62 0.50.1 Storage temperature range Tstg 25 to +105 C 4.85MAX. Operating temperature range Topr 20 to +80 C 0.5 0.1 5.08 1.30.2 4.85MAX. 5.08 1.3 0.2 3.6MAX 3.6MAX 2.5411=27.94 4.25MAX. Storage temperature range Tstg 25 to +105 C 2.5411=27.94 4.35MAX. Electrical Characteristics Electrical Characteristics Parameter Symbol Min. Typ. Max. Unit Conditions Derating Curve Input voltage range Vi 113 170 V DC(80 to 120VAC) Parameter Symbol Min. Typ. Max. 141 Unit Conditions Derating Curve 250 Derating Curve Output voltage Vo 14.25 15.75 V Vi=141V, Io=100mA 15.00 Input voltage range Vi 113 186 V DC(80 to 120VAC) 141 200 Derating Curve 350 Output current Io 0 200 mA Vi=141V 1 Output voltage Vo 14.2 15.8 V Vi=141V, Io=100mA 15.0 150 300 Line regulation Vr 0.20 0.20 V Vi=113 to 170V, Io=100mA 0.05 Output current Io 0 300 mA Vi=141V 100 250 Operation Range 200 Load regulation Vl 0.20 0.20 V Vi=141V, Io=0 to 100mA 2 0.05 50 Line regulation Vr 0.20 0.20 V Vi=113 to 186V, Io=100mA 0.05 Operation Range 150 0 Output ripple voltage Vp 0.15 Vp-p Vi=141V, Io=100mA 0.07 Load regulation Vl 0.20 0.20 V Vi=141V, Io=0 to 100mA 100 0.05 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 50 Ambient Temperature Ta(C) Power conversion efficiency 60 % Vi=141V, Io=200mA 2 74 Output ripple voltage Vp 0.15 Vp-p Vi=141V, Io=100mA 0.07 0 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Surface temperature rising Tc K Vi=170V, Io=200mA 38 Power conversion efficiency 70 % Vi=141V, Io=300mA 83 Ambient Temperature Ta(C) Switching Frequency Output current overcurrent1 Im 240 mA Vi=141V 270 Switching Frequency Output current overcurrent2 Is 290 mA Vi=141V 260 (Ta=25C, Vi=141V) Conversion Efficiency 45 Application Circuit 1 Maximum output current varies depending on ambient temperature please refer to derating curve. 40 Conversion Efficiency 2 Please refer to Load regulation, Conversion efficiency. 35 (Ta=25C, Vi=141V) Pin No. Function 100 30 BP5067-15 90 1 Output terminal Vo(15V) 25 80 2 Skip 20 Application Circuit Be sure to use fuse for safety. 70 3 Choke coil connect 15 60 Function Pin No. 10 4 Skip 50 BP5039-15 1 Output terminal Vo(15V) 5 5 Choke coil connect 40 Skip 2 0 30 12 10 7 5 3 1 6 Skip 0 50 100 150 200 Be sure to use fuse for safety. 20 3 Choke coil connect 7 COMMON Output Current Io(mA) 10 Skip 4 8 Skip DC motor 0 FUSE 5 Choke coil connect 0 50 100 150 200 250 300 12 10 7 5 3 1 9 Skip Ii R1 Io Skip D1 6 Output Current Io(mA) 10 N.C. 7 COMMON Conversion Efficiency L1 11 Skip + + DC motor FUSE Skip 8 ZNR C1 C3 1mH C2 12 Input terminal Vi(141VDC) Vo Conversion Efficiency Vi Ii R1 Io D1 9 Skip (Ta=25C, Vi=141V) 220V Load Regulation 100 N.C. 10 L1 + + Load Regulation 11 Skip C3 C1 C2 Vo 80 Vi (Ta=25 C, Vi=141V) Input terminal Vi(141VDC) 12 ZNR 20 Please verify operation and characteristics in the customer s circuit before actual usage. 60 18 16 Ensure that the load current does not exceed the maximum rating. Please verify operation and characteristics in the customer s circuit before actual usage. 40 14 12 Ensure that the load current does not exceed the maximum rating. 20 10 8 0 6 External Component Specifications 0 50 100 150 200 4 External Component Specifications 2 Output Current Io(mA) FUSE: Fuse Use a quick-acting fuse of (1A) 0 FUSE: Fuse Please make sure to use quick acting fuse (1A) 0 50 100 150 200 250 300 350 400 Output Current Io(mA) C1: Input capacitor Above 200V, 22 to 820F C1: Input capacitor Above 250V, 22 to 820F Load Regulation Ripple current 0.13Arms or above Ripple current 0.13Arms above Load Regulation above 25V, 100 to 470F, low impedance (Ta=25C, Vi=141V) C2: Output capacitor Surface Temperature Increase C2: Output capacitor Above 25V, 100 to 470F, Low impedance 16 ESR : 0.4 Max. Ripple current 0.25Arms or above ESR : 0.4 Max. Surface Temperature Increase 14 (Ta=25 C, Vi=141V) 12 Capacitor impedance affects the output ripple voltage. Ripple current 0.25Arms above 40 10 Impedance of capacitor effects the output ripple voltage. 35 C3: Noise reduction capacitor Above 200V, 0.1 to 0.22F 8 30 Above 250V, 0.1 to 0.22F Use a film or ceramic capacitor C3: Noise reduction 6 25 Use a film or ceramic capacitor. 4 Evaluate in actual circuit capacitor 20 2 Evaluate under actual conditions. 15 L1: Power inductor Inductance : 1mH, Rating current : above 600mA 0 10 0 50 100 150 200 250 300 L1: Power inductor Inductance : 1mH, Rating current : above 600mA Select components that do not easily get magnetically saturated at high 5 Output Current Io(mA) Choose components that do not easily get magnetically saturated at 0 temperature. 0 50 100 150 200 250 300 350 high temperature. Output Current Io(mA) D1: Rectifier diode Use a rectifying diode with the peak reverse voltage of 400V or higher, an Surface Temperature Increase D1: Rectifier diode Use a rectifying diode with a peak reverse voltage of 400V or higher, average rectification current of 0.5A or larger and a peak surge current of an average rectification current of 0.5A or larger and a peak surge Surface Temperature Increase 20A or larger. When using a large capacitance input capacitor, choose a (Ta=25C, Vi=141V) current of 20A or larger. When using a large capacitance input capacitor 50 component that is strong against inrush current at power up. 45 select a component strong against inrush current during power up. Full-wave rectification can be used. 40 Full-wave rectification can be used. 35 10 to 22, 1/4W R1: Noise reduction resistor 30 10 to 22, 1/4W R1: Noise reduction 25 Determine the ideal value through actual testing. 20 Determine the ideal value through actual testing. resistor 15 A varistor must be used to protect against lightning surges and static ZNR: Varistor 10 ZNR: Varistor A varistor must be used to protect against lightning surges and static electricity. 5 electricity. 0 0 50 100 150 200 250 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 (%) Switching Frequency(kHz) 41.0 19.5MAX. Mark Side Output Current Io(mA) Temperature Rising T( C) Output Voltage Vo(V) Conversion Efficiency (%) 41.0 22.0MAX. Mark Side