5V 2A enclosed 10W power supplies for POE switch
	Description: 
	K13-U10S5 is a small size single output enclosed type 5V 2A switching power supply with high efficiency to offer a reliable power source to your application. 
	
	Features: 
	1, High efficiency 10W switching power supply, low temperature rise;
2, Built-in filters, low output noise 5VDC 2A power supply ;
3, Wide range of AC input voltage;
4, Short circuit, overload, overvoltage protection; 
	5, 5Vdc 10W single output smps,enclosed model and small size. 
	
 
	 
	
		
			
				| Parameter 
 | 
			
				| Item NO | K13-U10S5 | K13-U10S12 | K13-U10S15 | K13-U10S24 | 
			
				| Output | 
						Output Voltage 
					 | +5V | +12V | +15V | +24V | 
			
				| 
						Rated Current 
					 | 2A | 1A | 0.8A | 0.5A | 
			
				| 
						Current Range 
					 | 0-2A | 0-1A | 0-0.8A | 0-0.5A | 
			
				| 
						Rated Power 
					 | 10W | 12W | 12W | 12W | 
			
				| 
						Ripple 
					 | 50mVp-p | 100mVp-p 
 | 100mVp-p | 120mVp-p | 
			
				| 
						Adjustable Output Range 
					 | 
						±10% 
					 | 
			
				| 
						Output Accuracy 
					 | 
						±1% 
					 | 
			
				| 
						Line Regulation 
					 | 
						±0.5% 
					 | 
			
				| 
						Load Regulation 
					 | 
						±0.5% 
					 | 
			
				| 
						Set up,Rise,Keep up time 
					 | 
						800ms, 30ms, 16ms/115VAC    300ms, 30ms, 50ms/230VAC 
					 | 
			
				| Input | 
						Input Voltage Range 
					 | 
						88~264V AC,100~370VDC 
					 | 
			
				| 
						Input Current 
					 | 
						0.3A/115V,0.15A/230V 
					 | 
			
				| 
						Input Frequency 
					 | 
						47~63Hz 
					 | 
			
				| 
						Efficiency 
					 | 78% | 84% | 84% | 85% | 
			
				| 
						Inrush Current 
					 | 30A@230V | 
			
				| 
						Leakage Current 
					 | 
						<0.3mA@240V 
					 | 
			
				| Protection | 
						Over Load Protection 
					 | 
						105~150%,Hiccup,automatic recovery 
					 | 
			
				| 
						Short Circuit Protection 
					 | 
						Hiccup,automatic recovery 
					 | 
			
				| 
						Environment 
					 
 | 
						Working Temp.,Humidity 
					 | 
						-10~50℃,10~90% RH,No condensation 
					 | 
			
				| 
						Storage Temp.,Humidity 
					 | 
						-20~85℃,10~95% RH 
					 | 
			
				| 
						Temp.,Drift 
					 | 
						±0.03%/℃(0~50℃) 
					 | 
			
				| 
						Vibration 
					 | 
						10~500Hz, 2G 10min /1cycle, PERIOD FOR 60min EACH AXES 
					 | 
			
				| 
						Safety&EMC Standards 
					 
 | 
						Safety Standards 
					 | 
						MEET UL1012 
					 | 
			
				| 
						Withstand Voltage 
					 | 
						I/P-O/P,I/P-FG:1.5KV,O/P-FG:0.5KV DC 1min 
					 | 
			
				| 
						Insulation Resistance 
					 | 
						I/P-O/P, I/P-FG, O/P-FG:500VDC / 100M Ohms 
					 | 
			
				| 
						EMC Standards 
					 | 
						GB9254,EN55022 CLASS B 
					 | 
			
				| Others | Dimension | 
						70*39*30mm(L*W*H) 
					 | 
			
				| Weight | 0.15kg | 
			
				| Notes | 
						1. All parameters 230VAC input, rated load, ambient temperature 25 ℃, measured under conditions of 70% humidity; 
					 
						2. Accuracy: includes set up tolerance, line regulation, load regulation and so on; 
					 
						3. Ripple Test: 30cm long strands connect the power supply and the load on the load side and 0.1u and 47u capacitor to 20MHz oscilloscope measured at the load end; 
					 
						4. Line regulation: at rated load conditions, the input voltage changes from low to high measured; 
					 
						5. Load regulation: the measured output load from 0 to 100% load change measured. 
					 | 
		
	
 
	Product picture: 
	
 
	 
	
		FAQ
	
	
		
	
	
		
	
Q1. Can I have a sample order for power supply?
A1: Yes, we welcome sample order to test and check quality. Mixed samples are acceptable.
 
Q2: Do you accept OEM/ODM for the switching power supply?
A2: Yes. we do.
 
Q3:How about the quality?
A3:We have the better professional and experienced engineers team and strict QA and QC system.Repair rate under 0.1%~0.2%
 
Q4:What is PFC?
A4:PFC stands for Power Factor Correction. The purpose of PFC is to improve the ratio of apparent power and real power. The power factor is only 0.5~0.7 in non-PFC models. In PFC models, the power factor can reach above 0.9. The calculation formulas are as below: 
Apparent Power=Input Voltage x Input Current (VA) 
	
		Real Power= Input Voltage x Input Current x Power Factor (W)  
	
 
 
	 
 
	
 
	
 
	
 
	
 
	