EPL225 Series. 225 Watts. www.xppower.com. AC-DC Power Supplies. Models & Ratings. Summary



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225 Watts 50 W Convection/ 225 W Forced-cooled Ratings 2 by 4 Footprint Low.26 Profile 2 V Fan Output High Efficiency, up to 95% ITE & Medical pprovals High Power Density Less than 0.5 W No Load Input Power 3 Year Warranty The EPL225 series maximises efficiency across the load range and minimises no load power consumption minimising heat dissipation, reducing running costs and enabling compliance with the latest environmental goals and legislation. Fully approved for ITE and Industrial applications the EPL225 provides up to 50W when convection cooled and up to 225 W when force cooled at just 0 CFM. 2 V 0.5 fan supply is included to support force cooled applications. The small footprint, low profile, low noise and comprehensive safety agency approvals allow this versatile product to be used in a wide range of ITE and industrial applications. Dimensions: EPL225: 4.00 x 2.00 x.26 (0.6 x 50.8 x 32.3 mm) Models & Ratings Output Output Output Current Power Voltage Convection-cooled Forced-cooled () Fan Output Efficiency (2) Model Number 225 W 2.0 V 2.50 8.75 2 V/0.5 93% EPL225PS2 225 W 5.0 V 0.00 5.00 2 V/0.5 93% EPL225PS5 225 W 8.0 V 8.33 2.50 2 V/0.5 93% EPL225PS8 225 W 24.0 V 6.25 9.38 2 V/0.5 93% EPL225PS24 225 W 28.0 V 5.36 8.04 2 V/0.5 93% EPL225PS28 225 W 36.0 V 4.6 6.25 2 V/0.5 93% EPL225PS36 225 W 48.0 V 3.0 4.69 2 V/0.5 93% EPL225PS48 Notes. Requires 0 CFM. 2. Minimum average efficiencies measured at 25%, 50%, 75% & 00% of 225 W load and 230 VC input. Summary Input Range 85 5/230 264 VC Derate load from 00% at 90 VC to 90% at 85 VC No Load Input Power 0.5 W Efficiency 95 % 230 VC (see fig. & 2) Operating Temperature -20 +70 C See derating curve (fig.3) EMC Conducted: EN550/22, Class B, Radiated: EN550/22, Class (Class B with external core, see EMC Emissions for details) Safety pprovals IEC60950-, EN60950-, UL60950-, CS22.2 No. 234 per cul www.xppower.com

Input Input Voltage - Operating 80 5/230 264 VC Input Frequency 47 50/60 63 Hz Derate output from 00% at 90 VC to 90% at 85 VC and 85% at 80 VC Power Factor >0.9 230 VC, 00% load EN6000-3-2 class EN6000-3-2 class C > 45W Input Current - Full Load 2.2/. 5/230 VC Inrush Current 20 230 VC cold start, 25 ºC Earth Leakage Current 80/40 230 µ 5/230 VC/50 Hz (Typ), 264 VC/60 Hz (Max) No load Input Power 0.5 W Input Protection F3.5 /250 V Internal fuse fitted in line and neutral. Output - Main Output Output Voltage - V 2 48 VDC See Models and Ratings table Initial Set ccuracy ± % 50% load, 5/230 VC Output Voltage djustment-v % None Minimum Load 0 Start Up Delay 2 s 5/230 VC full load. Hold Up Time 0 20/3 ms Min at full load, 5 VC. Typical at 50W/ 225W Drift ±0.02 % fter 20 min warm up Line Regulation ±0.5 % 90-264 VC Load Regulation ±0.5 % 0-00% load. Transient Response 4 % Over/Undershoot 7 % Full load Recovery within % in less than 500 µs for a 50-75% and 75-50% load step Ripple & Noise % pk-pk 20 MHz bandwidth and 0 µf electrolytic capacitator in parallel with 0. µf ceramic capacitator. Overvoltage Protection 0 40 % Vnom, recycle input to reset Overload Protection 0 70 % I nom Short Circuit Protection Trip & Restart Temperature Coefficient 0.02 %/ C Overtemperature Protection C Measured internally, uto Resetting www.xppower.com 2

General Efficiency 95 % 230 VC (see fig. & 2) Isolation: Input to Output Input to Ground Output to Ground Switching Frequency 4000 VC 2 MOPP 500 VC MOPP 500 VC MOPP 40 30 khz PFC 50 95 khz Main converters Power Density 22/4.6 W/in 3 Forced/convection-cooled Mean Time Between Failure 300 khrs MIL-HDBK-27F, Notice 2 +25 C GB Weight 0.43(95) lb(g) Efficiency Vs Load Figure EPL225PS2 2 V at 225 W 00% 95% Efficiency 90% 85% 80% Convection-cooled Forced-cooled 85Vac input 90Vac input 5Vac input 230Vac input 264Vac input 75% 70% 0 20 30 40 50 60 70 80 90 00 E Load (%) Figure 2 EPL225PS24 24 V at 225 W 00% 95% 90% 85Vac input 90Vac input 85% 80% Convection-cooled Forced-cooled 5Vac input 230Vac input 264Vac input 75% 70% 0 20 30 40 50 60 70 80 90 00 Load (%) 3 www.xppower.com

Environmental Operating Temperature -20 +70 C See derating curve, fig.3 Storage Temperature -40 +85 C Cooling 0 CFM Forced-cooled > 50W Humidity 5 95 %RH Non-condensing Operating ltitude 5000 m Shock ±3 x 30g shocks in each plane, total 8 shocks. 30g = ms (+/- 0.5msecs), half sine. Conforms to EN60068-2-27 Vibration Single axis 0-500 Hz at 2g sweep and endurance at resonance in all 3 planes. Conforms to EN60068-2-6 Temperature Derating Curve Figure 3 00 Output Load (%) 50 EMC: Emissions 0-20 0 +50 +70 mbient Temperature (ºC) Phenomenon Standard Test Level Criteria Notes & Conditions Conducted EN550/22 Class B Radiated EN550/22 Class Class B with King Core KSB RC 3 x 23 x 7 on input cable and KSB + 25 x 2 x 5 on output cable. Harmonic Current EN6000-3-2 Class Meet Class C for loads above 45W Voltage Functions EN6000-3-3 EMC: Immunity Phenomenon Standard Test Level Criteria Notes & Conditions Medical Device EMC IEC6060--2 Ed.4.0 : 204 as below Low Voltage PSU EMC EN6204-3 High severity level as below ESD EN6000-4-2 4 ±8kV contact, ±5kV air Radiated EN6000-4-3 3 EFT EN6000-4-4 3 Surges EN6000-4-5 Installation class 3 Conducted EN6000-4-6 3 Magnetic Fields EN6000-4-8 4 Dip >95% (0 VC), 8.3 ms EN55024 (00 VC) EN55024 (240 VC) Dips and Interruptions EN6060--2 (00 VC) EN6060--2 (240 VC) Dip 30% (70 VC), 46 ms t 220 W Dip >95% (0 VC), 460 ms B Dip >95% (0 VC), 0.0 ms Dip 30% (68 VC), 500 ms Dip >95% (0 VC), 5000 ms B Dip 00% (0 VC), 0.0 ms Dip 00% (0 VC), 20 ms t 20 W Dip 60% (40 VC), 00 ms Derate Output Power to 30W Dip 30% (40 VC), 500 ms t 220 W Dip 00% (0 VC), 5000 ms B Dip 00% (0 VC), 0.0 ms Dip 00% (0 VC), 20 ms t 50 W Dip 60% (96 VC), 00 ms t 70 W Dip 30% ( 68 VC), 500 ms Dip 00% (0 VC), 5000 ms B www.xppower.com 4

Safety pprovals Safety gency Safety Standard Notes & Conditions CB Report IEC60950-:2005 + :2009 + 2: 203 Information Technology UL UL60950- (20), CS 22.2 No.60950-- Ed 2 Information Technology TUV EN60950-: 2006 + : 2009 + :200 + 2: 202 Information Technology CB Report IEC6060: 2005 + Medical UL ES6060: 2005/(R)202 CS C22.2 No.6060-: 204 Medical EN EN6060: 2006 + 2 Medical CE LVD Isolation Safety Standard Notes & Conditions Primary to Secondary 2 x MOPP (Means of Patient Protection) Primary to Earth x MOPP (Means of Patient Protection) Secondary to Earth x MOPP (Means of Patient Protection) Mechanical Details 4.00 (0.6) 3.75 (95.3) For 8 V to 48 V For 2 V & 5 V Pin Pin 2 Pin 3 CN - Input Connector Line Not Fitted Neutral L4 Mates with JST housing VHR-3N and JST Series SVH-2T-P. crimp terminals 2.00 (50.8).75 (44.5) CN 0.3 (3.4) 3 TR C52 0.3 (3.2) 6 2 CN2 CN3 0.3 (3.2) 2 COM Mounting holes marked with must be connected to safety earth Pin Pin 2 Pin 3 Pin 4 Pin 5 Pin 6 CN2 - Output Connector Com Com Com.0 (28.0) C2 0.06 (.6) Mates with JST housing VHR-6N and JST Series SVH-2T-P. crimp terminals 0.0 (2.6) CN3 - Fan Connector Pin Fan - Pin 2 Fan + Mates with Molex housing 22-0-022 and 2759 crimp terminals Notes. ll dimensions shown in inches (mm). Tolerance: ±0.02 (0.5) 2. Weight: 0.43 lbs (95 g) approx. 5 www.xppower.com

Thermal Considerations In order to ensure safe operation of the PSU in the end-use equipment, the temperature of the components listed in the table below must not be exceeded. Temperature should be monitored using thermocouples placed on the hottest part of the component (out of direct air flow). See Mechanical Details for component locations. Temperature Measurements (t Maximum mbient) Component Max Temperature C TR Coil 20 C L4 Coil 20 C C2 05 C C52 05 C Service Life The estimated service life of the EPL225 is determined by the cooling arrangements and load conditions experienced in the end application. Due to the uncertain nature of the end application this estimated service life is based on the actual measured temperature of key capacitors with in the product when installed by the end application, The graph below expresses the estimated lifetime based on the temperature of these key components based on the average temperature over the lifetime of the equipment. Estimated Service Life vs Component Temperature Figure 4 80000 70000 60000 50000 Lifetime (Hrs) 40000 30000 C52 C2 20000 0000 0 05 95 85 75 65 55 45 C2 + C52 Temperature (ºC) www.xppower.com 0 Mar 6