Data Sheet Data Sheet 100VAC Input/ 5VDC (350mA) Output 100VAC Input/ 5V (500mA) Output Non-Isolated AC/DC Converter Non-Isolated AC/DC Converter BP5061-5 BP5062A5 Absolute Maximum Ratings Dimensions (Unit : mm) Absolute Maximum Ratings Dimensions (Unit : mm) 9.1MAX. 35.0MAX. Parameter Symbol Limits Unit 9.9MAX. Parameter Symbol Limits Unit 34.5MAX. Input voltage Vi 180 V Input voltage Vi 195 V Output current Io 350 mApk Output current Io 500 mApk ESD endurance Vsurge 2 kV ESD endurance Vsurge 2 kV 1 3 5 7 10 12 1 3 5 7 8 10 12 C Operating temperature range Topr 25 to +80 C Operating temperature range Topr 20 to +80 0.250.05 0.250.05 0.50.2 1.30.2 Storage temperature range Tstg 25 to +105 C Storage temperature range C Tstg 25 to +105 0.50.1 1.30.2 P=5.080.2 7.620.3 4.85MAX. 3.6MAX P=5.080.2 5.05MAX. 3.3MAX 2.5411=27.94 4.25MAX. 2.54 11=27.94 4.85MAX. Electrical Characteristics Electrical Characteristics Parameter Symbol Min. Typ. Max. Unit Conditions Derating Curve Parameter Symbol Min. Typ. Max. Unit Conditions Derating Curve V Input voltage range Vi 113 141 180 DC (80 to 120VAC) Derating Curve 400 Input voltage range 113 141 V Vi 195 DC (80 to 137VAC) Output voltage Vo 4.7 5.0 5.3 V Vi=141V, Io=200mA Derating Curve 350 600 300 Output voltage 4.7 5.0 V Vo 5.3 Vi=141V, Io=500mA Output current Io 0 350 mA Vi=141V 1 500 250 Output current 0 mA 1 Io 500 Vi=141V 200 400 Line regulation Vr 0.15 V Vi=113V to 180V, Io=200mA 0.04 Operation Range 150 300 Line regulation 0.05 V Vr 0.2 Vi=113V to 195V, Io=500mA 100 Operation Range Load regulation 0.15 V Vi=141V, Io=0 to 200mA Vl 0.05 200 50 Load regulation 0.07 V Vl 0.3 Vi=141V, Io=0 to 500mA Output ripple voltage 0.2 Vp-p Vi=141V, Io=200mA 0 Vp 0.07 2 100 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Output ripple voltage 0.15 Vp-p 2 Vp 0.3 Vi=141V, Io=500mA 0 Power conversion effciency % Vi=141V, Io=350mA Ambient Temperature Ta(C) 50 62.1 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 Power conversion efficiency 60 69 % Vi=141V, Io=500mA Ambient Temperature Ta( C) 1 Maximum output current varies depending on ambient temperature please refer to derating curve. 1 Maximum output current varies depending on ambient temperature please refer to derating curve. 2 Spike noise is not included in output ripple voltage. Conversion Efficiency 2 Spike noise is not included in output ripple voltage. Conversion Efficiency Conversion Efficiency (Ta=25C, Vi=141V) 100 Conversion Efficiency 90 Application Circuit (Ta=25 C, Vi= 141V) 100 80 Pin No. Function 90 70 1 Output terminal Vo(5V) Application Circuit 80 60 BP5061-5 2 Not used 70 50 Function 3 Coil connect Pin No. 60 40 1 Output terminal Vo(5V) 4 Not used BP5062A5 50 30 Please note that pin No.12 5 Coil connect 2 Not used 40 20 3 Coil connect 6 Not used side is input. 30 10 7 COMMON 4 Not used Please note that pin No.12 20 0 5 Coil connect 8 Not used 0 100 200 300 400 10 side is input. 9 Not used 6 Not used Output Current Io(mA) 0 7 COMMON 10 N.C. 0 100 200 300 400 500 12 7 5 3 1 11 Not used 8 COMMON Output Current Io(mA) FUSE 12 Input voltage Vi(141VDC) 9 Not used R1 Output D1 1A 12 10 8 7 5 3 1 10 N.C. 101/4W Output current 1SR35-400 5V 11 Not used FUSE L1 R1 12 141VDC) Load Regulation 2A Input terminal Vi( Output Current D1 Output C2 Input C3 470H 4.71/4W ZNR (Ta=25C, Vi=141V) 1SR139-400 C1 5V 5.3 AC100V 220V L1 Load Regulation + + 0.1F 220F/50V 33F/200V (Ta=25 C, Vi= 141V) Input C2 C3 220H 50Hz/60Hz 5.2 ZNR 6 C1 AC100V 220V 5.1 0.22F + 22F/200V + 470F/25V 5 Be sure to use fuse for safety. 50Hz/60Hz 5.0 4 Please verify operation and characteristics in the customer s circuit before actual usage. 4.9 Be sure to use fuse for safety. 3 Ensure that the load current does not exceed the maximum rating. 4.8 2 Please verify operation and characteristics in the customer s circuit before actual usage. 4.7 Ensure that the load current does not exceed the maximum rating. 1 0 50 100 150 200 250 300 350 400 0 Output Current Io(mA) 0 100 200 300 400 500 600 700 800 External Component Specifications Output Current Io(mA) FUSE: Fuse Use a quick-acting fuse of 1A Surface Temperature Increase External Component Specifications C1: Input smoothing Capacitance : 33 to 100F Rated voltage : 200V or higher Surface Temperature Increase Surface Temperature Increase FUSE: FUSE Use a quick-acting fuse of 2.0A. (Ta=25C, Vi=141V) capacitor Ripple current is 0.13Arms or above. 50 Surface Temperature Increase C1: Input capacitor Rated voltage : More than 250V, Capacity : 22 to 100F (Ta=25C, Vi=141V) 45 60 C2: Noise reduction Capacitance : 0.1 to 0.22F Rated voltage : 250V or higher 40 35 C2: Noise removal Rated voltage : More than 250V 50 resistor Use a film or ceramic capacitor. Evaluate under actual operating 30 capacitor Film or ceramic capacitor 25 conditions. 40 20 Capacitance : 0.1 to 0.22F 30 15 C3: Output smoothing Capacitance : 220 to 470F Rated voltage : 16V or higher, 10 20 C3: Output capacitor Rated voltage : More than 16V, Capacitance : 220 to 820F capacitor ESR is 0.4 max. Ripple current is 0.25Arms or above. 5 0 Low impedance type, ESR : Less than 0.25 10 Evaluate under actual operating conditions. 0 50 100 150 200 250 300 350 400 Rated ripple current : More than 0.4Arms 0 Output Current Io(mA) D1: Rectifier diode In the absolute maximum ratings the reverse peak voltage should be 0 100 200 300 400 500 600 700 800 Evaluate under actual conditions since it affects the output Output Current Io(mA) 400V or higher, the average rectifying current should be 0.5A or higher, ripple voltage. and the peak surge current should be 20A or higher. (Full-wave rectification can be used.) L1: Choke coil Inductance : 220H, Rated current : More than 1.3A Coil for switching regulator. The inductance should be 470H, R1: Noise removal resistor Resistance : 4.7 to 10, Power : More than 1/4W L1: Choke coil the rated direct current should be 0.9A or above in order to prevent D1: Rectifier diode Peak reverse voltage : More than 400V overheating and abnormal oscillation. Mean rectifying current : More than 1.0A 10 to 22 1/4W Peak forward surge current : More than 40A R1: Noise reduction Determine the ideal value through actual testing. resistor Full-wave rectification can be used. A varistor is required to protect against lightning surges and ZNR: Varistor A varistor is required to protect against lightning surges and static ZNR: Varistor static electricity. electricity. www.rohm.com 2010.01 - Rev.A 2010 ROHM Co., Ltd. All rights reserved. 1/1 Not Recommended for New Designs Output Current Io(mA) Temperature Rising T(C) Output Voltage Vo(V) Conversion Efficiency (%) 41.0 19.5MAX. Mark Side Output Current Io(mA) Conversion Efficiency (%) Temperature Rising T( C) Output Voltage Vo(V) 41.0 21.5MAX. Mark SideNot Recommended for New Designs