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SMDA60B Datasheet, PDF (1/2 Pages) Vitec Power – 63W Desktop Power Supply for Medical Equipment
SMDA60B SERIES
3 Year Warranty
63W Desktop Power Supply for Medical Equipment
− Wide Input Voltage 90 to 264 VAC, 47 to 63Hz
− IEC-320-C8 input inlet
− Output Voltage Available From 12VDC Thru 48VDC
− Single Output
− Class II Insulation
− Input Surge Current, Over Voltage, Over Load and Output Voltage protection.
− Energy Star 2.0, CEC V, Efficiency Level V, and RoHS Compliance
Approvals:
Product Number
Output Voltage
SMDA60B-S05
SMDA60B-S06
SMDA60B-S07*
SMDA60B-S08*
SMDA60B-S09*
SMDA60B-S10
SMDA60B-S11
12 VDC
15 VDC
18 VDC
24 VDC
30 VDC
36 VDC
48 VDC
Mark “*” means approved by PSE.
Total Regulation is conditioned by below configuration
(S05~S07: AWG16/2C/4FT output cable)
(S08~S11: AWG18/2C/6FT output cable)
Single Output
Max. Output Current
5.25 A
4.20 A
3.50 A
2.62 A
2.10 A
1.75 A
1.31 A
Total Regulation
5%
5%
5%
3%
3%
3%
3%
Maximum
Output Power
63W
63W
63W
63W
63W
63W
63W
Electrical Characteristics
Parameter
Test Conditions
Min.
Typ.
Max.
Input Voltage
Operating Voltage
90
264
Input Frequency
47
63
Output Power Range
Vin= 90 to 264 VAC
0
63
Input Current (Low Line)
Io=Full load, Vin=115 VAC
1.62
Input Current (High Line)
Io=Full load, Vin= 230 VAC
0.72
Low Line Inrush Current
Io=Full load, 25°C, Cool start,
Vin=115VAC
26
30
High Line Inrush Current
Io=Full load, 25°C, Cool start,
Vin=230 VAC
43
47
Efficiency *
Io=Full Load, Vin=230VAC
87
92
Line Regulation
Io=Full Load
1
Load Regulation
Vin=230VAC
5
Over Voltage Protection
112
132
Over Current Protection
110
150
Transient Response
Io=Full Load to Half Load, Vin=100VAC
4
Hold-Up Time
Io=Full Load, Vin=110VAC
16
Start Up Time
Io=Full Load, Vin=100VAC
0.3
1
2
Ripple & Noise (Peak to Peak)
Full Load, Vin=90VAC
1
Safety Ground Leakage Current
Io= Full Load, Vin=240VAC
0.1
No-Load Power Consumption
No load, Vin=240VAC
0.3
0.4
0.5
Temperature Coefficient
All output
-0.04
0.04
*The specifics for testing the energy efficiency of SMDA60 Series are outlined in a separate document titled "Test Method for Calculating the
Energy Efficiency of Single-Voltage External Ac-Dc and Ac-Ac Power Supplies (August 11, 2004)," which is available on the ENERGY STAR Website.
Unit
VAC
Hz
W
A
A
A
A
%
%
%
%
%
mS
mS
S
%
mA
W
%/°C