Data Sheet Data Sheet 100VAC Input/12VDC (350mA) Output 100VAC Input/15VDC (170mA) Output Non-Isolated AC/DC Converter Non-Isolated AC/DC Converter BP5067-12 BP5037B15 Absolute Maximum Ratings Absolute Maximum Ratings Dimensions (Unit : mm) Dimensions (Unit : mm) 9.0MAX. 28.2MAX. 9.9MAX. 34.5MAX. Parameter Symbol Limits Unit Parameter Symbol Limits Unit Input voltage Vi 170 V Input voltage Vi 190 V Output current Iomax 200 mApk Maximum output current IoMAX 350 mApk ESD endurance Vsurge 2 kV ESD endurance Vsurge 2 kV 1 3 5 7 10 1 3 5 7 10 12 Operating temperature range Topr 25 to +80 C Operating temperature range Topr 20 to +80 C 0.250.05 7.62 0.250.05 7.62 0.50.1 0.50.1 Storage temperature range Tstg 25 to +105 C 5.08 Storage temperature range Tstg 25 to +105 C 5.05MAX. 1.30.2 1.30.2 5.08 5.05MAX. 3.3MAX 3.3MAX Maximum surface temperature Tcmax 105 C (2.549)=22.86 TYP. 3.95MAX. 2.54 11=27.94 4.85MAX. Electrical Characteristics Electrical Characteristics Derating Curve Conditions Parameter Symbol Min. Typ. Max. Unit Parameter Symbol Min. Typ. Max. Unit Conditions Derating Curve Derating Curve Input voltage Vi 113 141 190 V DC(80 to 135VAC) 200 Input voltage range Vi 113 170 V DC(80 to 120VAC) 141 Output voltage Vo 11.0 12.0 13.0 V Vi=141V, Io=350mA Derating Curve 160 400 Output voltage Vo 13.9 16.1 V Vi=141V, Io=100mA 15.0 350 1 Output current Io 0 350 mA Vi=141V 120 300 Output current Io 0 170 mA Vi=141V 1 Operation Range 80 Line regulation Vr 0.30 0.05 0.30 V Vi=113 to 190V, Io=350mA 250 200 Line regulation Vr 0.15 V Vi=113 to 170V, Io=100mA 0.05 Operation Range 40 2 Load regulation Vl 0.30 0.05 0.30 V Vi=141V, Io=0 to 350mA 150 100 Load regulation Vl 0.20 V Vi=141V, Io=0 to 100mA 0.07 0 Output ripple voltage Vp 0.07 0.15 Vp-p Vi=141V, Io=350mA -30 -20 -10 0 10 20 30 40 50 60 70 80 90 50 Output ripple voltage Vp 0.15 Vp-p Vi=141V, Io=100mA Ambient Temperature Ta(C) 0.05 2 0 Power conversion efficiency 70 80 % Vi=141V, Io=350mA -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Power conversion efficiency 70 % Vi=141V, Io=170mA Ambient Temperature Ta( C) 78 1 Maximum output current varies depending on ambient temperature please refer to derating curve. 2 Please refer to Load regulation, Conversion efficiency. Switching Frequency 1 Maximum output current varies depending on ambient temperature please refer to derating curve. 2 Spike noise is not included in output ripple voltage. Switching Frequency Conversion Efficiency 70 Conversion Efficiency Application Circuit (Ta=25 C, Vi=141V) 60 Pin No. Function 100 Application Circuit 1 Output terminal Vo(12V) 50 BP5067-12 90 2 Skip Pin No. Function 80 40 3 Choke coil connect 70 1 Output terminal Vo(15V) BP5037B15 Be sure to use fuse for safety. 30 60 4 Skip 2 Not used 20 50 5 Choke coil connect Please note that pin No.10 3 Chalk coil connect 40 10 6 Skip 4 Not used 30 side is input. 0 12 10 7 5 3 1 7 COMMON 5 Chalk coil connect 20 0 20 40 60 80 100 120 140 160 180 10 8 Skip 6 Not used 10 7 5 3 1 Output Current Io(mA) 0 DC motor 9 Skip 7 COMMON FUSE 0 50 100 150 200 250 300 350 FUSE R1 D1 10 N.C. 8 Not used Output Current Io(mA) 1A Output D1 R1 Io 1SR35400 101/4W 11 Skip +15V 9 Not used L1 Conversion Efficiency L1 12 Input terminal Vi(141VDC) 10 Input terminal Vi(141VDC) + + 1mH C2 C3 C3 Vo + + 100V ZNR C1 C2 ZNR 1mH Load Regulation C1 Conversion Efficiency 220V (Ta=25C, Vi=141V) 50/60Hz 0.1F 330F/25V 220V 22F/200V 100 Load Regulation 90 (Ta=25 C, Vi=141V) 80 14 Please verify operation and characteristics in the customer s circuit before actual usage. 70 Be sure to use fuse for safety. 12 60 Ensure that the load current does not exceed the maximum rating. 10 Please verify operation and characteristics in the customer s circuit before actual usage. 50 40 Ensure that the load current does not exceed the maximum rating. 8 30 6 20 External Component Specifications 10 4 0 2 FUSE: Fuse Use a quick-acting fuse of (1A) 0 20 40 60 80 100 120 140 160 180 200 External Component Specifications Output Current Io(mA) 20 0 50 100 150 200 250 300 350 400 450 500 550 C1: Input capacitor above 200V, 33 to 220F FUSE: FUSE Use a quick-acting fuse of 1A Output Current Io(mA) Ripple current 0.13Arms or above. C1: Input capacitor Above 200V, 22 to 100F Load Regulation C2: Output capacitor above 25V, 100 to 470F, low impedance Ripple current 0.13Arms or above. Surface Temperature Increase Load Regulation ESR : 0.4 Max. (Ta=25C, Vi=141V) Above 200V, 0.1 to 0.22F 18 C2: Noise reduction capacitor Ripple current 0.25Arms or above Surface Temperature Increase (Ta=25C, Vi=141V) 16 Use a film or ceramic capacitor. Capacitor impedance affects the output ripple voltage. 40 14 Evaluate under actual conditions. 35 12 C3: Noise reduction above 200V, 0.1 to 0.22F 30 10 C3: Output capacitor Above 25V, 100 to 470F low impedance capacitor Use a film or ceramic capacitor. 8 25 ESR : 0.25 Max. 6 20 Evaluate under actual conditions. 4 15 Ripple current 0.4Arms or above. 2 L1: Power inductor Inductance : 1mH, Rating current : above 750mA 10 Capacitor impedance affects the output ripple voltage. 0 5 0 20 40 60 80 100 120 160 180 200 220 Select a components that does not become magnetically saturated at L1: Power inductor Inductance : 1mH Rating current : 420mA above 0 Output Current Io(mA) 0 50 100 150 200 250 300 350 high tempertures. Choose components that do not easily get magnetically saturated at Output Current Io(mA) D1: Rectifier diode Use a rectifying diode with a peak reverse voltage of 400V or higher, an high temperature. Surface Temperature Increase average rectification current of 0.5A or larger and a peak surge current D1: Rectifier diode Use a rectifying diode with a peak reverse voltage of 400V or higher, Surface Temperature Increase of 20A or larger. When using a large capacitance input capacitor, select an average rectification current of 0.5A or larger and a peak surge (Ta=25C, Vi=141V) 30 a component strong against inrush current during power up. current of 20A or larger. 25 Full-wave rectification can be used. Full-wave rectification can be used. 20 10 to 22, 1/4W 10 to 22 1/4W R1: Noise reduction R1: Noise reduction resistor 15 The ideal value can be determined through actual testing. The optimum value can be determined through actual testing. resistor 10 Use a varistor to protect against lightning surges and static electricity. ZNR: Varistor ZNR: Varistor A varistor must be used to protect against lightning surges and static electricity. 5 0 0 50 100 150 200 Output Current Io(mA) www.rohm.com 2010.01 - Rev.A 2010 ROHM Co., Ltd. All rights reserved. 1/1 Output Current Io(mA) Conversion Efficiency (%) Output Voltage Vo(V) Temperature Rising T( C) 41.0 22.0MAX. Mark Side Output Current Io(mA) Temperature Rising T(C) Output Voltage Vo(V) Conversion Efficiency (%) Switching Frequency fsw (kHz) 41.0 16.8MAX. Mark Side