ULTRAVOLT C SERIES HIGH VOLTAGE CAP-CHARGING SUPPLIES The UltraVolt C series of high voltage regulated DC-to-DC converters are designed for fast rise time/ charging applications utilizing state-of-the-art power conversion topology. This high power density module is especially suited to high-energy pulsers, amplifiers, and discharge devices with large capacitance, fast repetition rates, or high current loads. Surface-mount technology and encapsulation techniques provide high reliability and low cost. PRODUCT HIGHLIGHTS TYPICAL APPLICATIONS 7 models from 0 to 125 V through Cap-charging 0 to 6 kV Pulsed power 20 or 30 W output power Test equipment Maximum Iout capability down to 0 V Mass spectrometry Maximum Iout during charge/rise time Automated test equipment (ATE) Indefinite output short Lasers and electro-optics circuit protection HV pulse generator bias Very fast rise with very low overshoot HV amplifier bias Output voltage and current monitors > 400,000 h MTBF at 65C Fixed-frequency, low-stored-energy design UL/cUL recognized component CE Mark (LVD and RoHS) 2018 Advanced Energy Industries, Inc.ULTRAVOLT C SERIES ELECTRICAL SPECIFICATIONS Parameter Conditions Models Units Input All Types Voltage Range Full Power +23 to 30 VDC Voltage Range Derated Power Range +9 to 32 VDC Current Standby/Disable < 30 mA Current No Load, Max Eout < 90 mA Current Max Load, Max Eout 20 W: 950, 30 W: 1425 mA AC Ripple Current Nominal Input, Full Load < 80 mA pk to pk Output 1/8C 1/4C 1/2C Voltage Range Nominal Input 0 to 125 0 to 250 0 to 500 VDC Power Nominal Input, Max Eout 20 30 20 30 20 30 W Current Iout, Entire Output Voltage Range 160 240 80 120 40 60 mA Current Scale Factor Full Load 2540 4210 1096 2000 1142 1667 mA/V Voltage Monitor Scaling 100:1 2% into 10 M Ripple Full Load, Max Eout, Cload 0.5 uF < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 V pk to pk Overshoot C Load, 0 Eout to Full Eout < 1.0 < 1.0 < 1.0 < 1.0 < 2.0 < 2.0 V pk Rise Time Max Iout, Various C Loads and Eout Figure A - Storage Capacitance Internal 0.50 0.50 0.15 0.15 0.16 0.16 uF Line Regulation Nominal Input, Max Eout, Full Power < 0.01 % VDC Static Load Regulation No Load to Full Load, Max Eout < 0.01% VDC Stability 30 Min Warmup, Per 8 h, Per Day < 0.01%/< 0.02% VDC Output 1C 2C 4C 6C Voltage Range Nominal Input 0 to 1000 0 to 2000 0 to 4000 0 to 6000 VDC Power Nominal Input, Max Eout 20 30 20 30 20 30 20 30 W Current Iout, Entire Output Voltage Range 20 30 10 15 5 7.5 3.3 5 mA 307 476 159 259 94 112 51 86 Current Scale Factor Full Load mA/V Voltage Monitor Scaling 100:1 2% into 10 M < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 < 1.0 Ripple Full Load, Max Eout, Cload 0.5 uF V pk to pk Overshoot C Load, 0 Eout to Full Eout < 1.0 < 1.0 < 1.0 < 1.0 < 4.0 <4.0 < 6.0 <6.0 V pk Rise Time Max Iout, Various C Loads and Eout Figure A - Storage Capacitance Internal 0.033 0.018 0.0019 0.009 0.010 0.010 0.0064 0.0064 uF Line Regulation Nominal Input, Max Eout, Full Power < 0.01 % VDC Static Load Regulation No Load to Full Load, Max Eout < 0.01% VDC < 0.01%/< 0.02% Stability 30 Min Warmup, Per 8 h, Per Day VDC C = uF C = uF C = uF C = uF 2 C x V I C x E V = Volts V = kV V = kV 2 T = I = C x V x F F = E = kV J = I = mA I = mA I = mA I CxV 2 J = Ws T = mS F = Hz F = Hz Figure A - Rise time formulas Note: Capacitance must include HVPS internal capacitance. 2 advanced-energy.com