DC/DC Converter URA_ZP-6WR3 & URB_ZP-6WR3 Series

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/ Converter FEATURES 6W,Ultra wide input, isolated & regulated dual/ single output, DIP package, - converter CB Patent Protection RoHS Wide range of input voltage (4:1) Efficiency up to 88% No-load power consumption as low as 0.12W Isolation voltage :1.5K V Operating temperature range: -40 to +85 Input under-voltage protection, short circuit, over-voltage & Over-current protection output Meet CISPR32/EN55032 CLASS A International standard pin-out Meet UL6050, EN6050 and IEC6050 URA_ZP-6WR3 & URB_ZP-6WR3 series products are of 6W output power, extremely wide range of voltage input of -36V, 18-75V, isolation voltage of 150, output over-voltage protection and output short circuit protection with the bare component in compliance with CISPR32/EN55032 CLASS A; these products are widely used in fields such as industrial control, electric power, instruments and communication. Selection Guide Input Voltage (V) Certification Part No. Nominal (Range) Max. Capacitive Load (µf) ±5 ±600/0 ± ±333/0 84/86 URA12ZP-6WR3 ±12 ±250/0 330 URA15ZP-6WR3 ±15 ±200/0 ± ±125/0 3.3 1500/0 77/7 1800 5 1200/0 0 URB0ZP-6WR3 667/0 82/84 0 URB12ZP-6WR3 12 500/0 470 URB15ZP-6WR3 15 400/0 URBZP-6WR3 250/0 URA4805ZP-6WR3 ±5 ±600/0 URA4812ZP-6WR3 ±12 ±250/0 330 URA4815ZP-6WR3 ±15 ±200/0 URB4803ZP-6WR3 3.3 1500/0 78/80 1800 5 1200/0 82/84 0 667/0 83/85 URB4812ZP-6WR3 12 500/0 470 URB4815ZP-6WR3 15 400/0 URB48ZP-6WR3 250/0 URB05ZP-6WR3 URB4805ZP-6WR3 UL/CE/CB Output Voltage Output Current (ma) (Max./Min.) (V) URA0ZP-6WR3 URB03ZP-6WR3 Max. ② Efficiency (%,Min./Typ.) @ Full Load URA05ZP-6WR3 URAZP-6WR3 UL/CE/CB ① Output URB480ZP-6WR3 (-36) 48 (18-75) 40 80 Notes 1 Absolute maximum rating without damage on the converter, but it isn't recommended; 2 Efficiency is measured In nominal input voltage and rated output load; 3 The capacitive loads of positive and negative outputs are identical. Input Specifications Item Input Current (full load / no-load) Operating Conditions Min. Typ. Max. V input 301/5 30/12 48V input 148/4 154/8 20 V input -0.7 50 48V input -0.7 Reflected Ripple Current Input impulse Voltage (1sec. max.) 2018.06.12-A/3 Unit ma V Page 1 of 5

/ Converter Starting Voltage under-voltage turn-off Input Filter Hot Plug V input 48V input 18 V input 5.5 6.5 48V input 12 15.5 Pi filter Unavailable V V Output Specifications Item Operating Conditions Min. Typ. Max. Unit Output Voltage Accuracy 1 Positive output Negative output ±1 ±3 Balance of Output Voltage output, balanced load ±0.5 ±1.5 Line Regulation Load Regulation 2 Cross Regulation Transient Recovery Time Transient Response Deviation Full load, the input voltage is from low voltage tohigh voltage 5%-% load output, main circuit with 50% load, auxiliary circuit with 10%-% load 25% load step change Positive output ±0.2 ±0.5 Negative output ±0.5 ±1 Positive output ±0.5 ±1 Negative output ±0.5 ±1.5 ±5 300 500 µs 3.3V, 5V, ±5V output ±5 ±8 Others ±3 ±5 Temperature Drift Coefficient Full load ±0.03 %/ Ripple*&Noise 3 20MHz bandwidth 85 mv p-p Over-voltage Protection 110 160 %Vo Over-current Protection Input voltage range 110 140 10 %Io Short circuit Protection Continuous, self-recovery Note: 1At 0%~5% load, the Max. output voltage accuracy of ±5V/±V output converter is ±5%. 2When testing from 0% to%load working conditions,load regulation index of ±5%; 3Ripple and noise tested with parallel cable method, please see - Converter Application Notes for specific operation methods. % % General Specifications Item Operating Conditions Min. Typ. Max. Unit Insulation Voltage Input-output, with the test time of 1 minute and the leak current lower than 1mA 1500 V Insulation Resistance Input-output, insulation voltage 50 0 MΩ Isolation Capacitance Input-output, KHz/0.1V 0 pf Operating Temperature Derating if the temperature is 71 C (see Fig. 1) -40 85 Storage Temperature -55 125 Storage Humidity Non-condensing 5 5 %RH Pin Welding Resistance Temperature Vibration Welding spot is 1.5mm away from the casing, 10 seconds 300 10-55Hz, 10G, 30 Min. along X, Y and Z Switching Frequency * PWM mode 300 KHz MTBF MIL-HDBK-217F@25 0 K hours Note:* This series of products using reduced frequency technology, the switching frequency is test value of full load,when the load is reduced to below 50%, the switching frequency decreases with decreasing load. Physical Specifications Casing Material Package Dimensions Weight Cooling Method Aluminum alloy 32.00*20.00*10.80mm 14g(Typ.) Free air convection 2018.06.12-A/3 Page 2 of 5

/ Converter EMC Specifications EMI EMS CE RE CISPR32/EN55032 CLASS A (Bare component)/ CLASS B (see Fig.3-2 for recommended circuit) CISPR32/EN55032 CLASS A (Bare component)/ CLASS B (see Fig.3-2 for recommended circuit) ESD IEC/EN60-4-2 Contact ±4KV perf. Criteria B RS IEC/EN60-4-3 1/m perf. Criteria A EFT IEC/EN60-4-4 ±2KV (see Fig.3-1 for recommended circuit) perf. Criteria B Surge IEC/EN60-4-5 ±2KV (see Fig.3-1for recommended circuit) perf. Criteria B CS IEC/EN60-4-6 3 Vr.m.s perf. Criteria A Immunities of voltage dip, drop and short interruption IEC/EN60-4-2 0-70% perf. Criteria B Product Characteristic Curve Output Power Percentage(%) Temperature Derating Curve 120 80 60 Safe Operating Area 40 20 0-40 0 40 71 85 120 Operating Temperature( ) Fig. 1 2018.06.12-A/3 Page 3 of 5

/ Converter Design Reference 1. Typical application All the / converters of this series are tested according to the recommended circuit (see Fig. 2) before delivery. If it is required to further reduce input and output ripple, properly increase the input & output of additional capacitors Cin and or select capacitors of low equivalent impedance provided that the capacitance is no larger than the max. capacitive load of the product. Cin -Vo (V) Cin µf 10µF 48 10µF ~47µF 10µF Cin Fig. 2 2. EMC solution-recommended circuit Parameter description: Model :V :48V FUSE Choose according to actual input current C0/C3 330µF/5 330µF/10 C1 1µF/5 1µF/10 C2 LDM1 CY1 CY2 Refer to the in Fig.2 4.7µH 1nF/2KV 1nF/2KV Fig. 3 Notes: Part 1 in the Fig. 3 is used for EMS test and part 2 for EMI filtering; selected based on needs. 3. The product does not support output in parallel with power per liter 4. For more information please find the application notes on www.mornsun-power.com 2018.06.12-A/3 Page 4 of 5

/ Converter Dimensions and Recommended Layout THIRD ANGLE PROJECTION 1.00 [ 0.03] 23 22 16 14 10.80 [0.425] Front View 4.10 [0.161] 2 3 11 0.50[0.020] 32.00 [1.260] 23 22 16 14 22.86 [0.00] 20.00 [0.787] 15. [0.600] 2 3 Bottom View 11 23 22 16 14 2 3 11 Note:Grid 2.54*2.54mm Pin-Out 2.54 [0.] Note: Unit :mm[inch] Pin diameter tolerances :±0.10[±0.004] General tolerances:±0.50[±0.020] 5.08 [0.200] Pin 2,3 11 14 16 22,23 No Pin NC NC: No Connection -Vo 1102001602-B0 Notes: 1. Packing Information please refer to 'Product Packing Information'. Packing bag number : 58208; 2. The unbalance degree of the recommended dual output module load: 5%; if the degree exceeds ±5%, then the product performances cannot be guaranteed to comply with all the performance indicators in the manual, and please directly contact our technicians for specific information; 3. The max. capacitive load should be tested within the input voltage range and under full load conditions; 4. Unless otherwise specified, data in this datasheet should be tested under the conditions of Ta=25, humidity<75%rh when inputting nominal voltage and outputting rated load; 5. All index testing methods in this datasheet are based on our Company s corporate standards; 6. The performance indexes of the product models listed in this datasheet are as above, but some indexes of non-standard model products will exceed the above-mentioned requirements, and please directly contact our technicians for specific information; 7. We can provide product customization service; 8. Specifications of this product are subject to changes without prior notice. Mornsun Guangzhou Science & Technology Co., Ltd. Address: No. 5, Kehui St. 1, Kehui Development Center, Science Ave., Guangzhou Science City, Luogang District, Guangzhou, P. R. China Tel: 86-20-38601850-8801 Fax: 86-20-38601272 E-mail: info@mornsun.cn 2018.06.12-A/3 Page 5 of 5