ECS25US48 [XPPOWER]

IT & Medical Safety Approvals;
ECS25US48
型号: ECS25US48
厂家: XP POWER LIMITED    XP POWER LIMITED
描述:

IT & Medical Safety Approvals

输出元件
文件: 总11页 (文件大小:4226K)
中文:  中文翻译
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ECS25,45 & 60 Series  
IT & Medical Safety Approvals  
Very Small 2.0” x 3.0” Format  
Low Standby Power  
25, 45 & 60 W - Convection Cooled Ratings  
High Convection Cooled Power Density up to 9.5 W/in3  
Class I & Class II Installations  
-20 ºC to +70 ºC Operation  
Low Earth Leakage Current  
3 Year Warranty  
The ECS25, 45 & 60 Series has been designed to minimise the no load power consumption and maximise efficiency in order to  
facilitate equipment design to the latest environmental legislation.  
Approved for Class I and Class II applications, this range of single output AC-DC power supplies feature very high convection cooled  
power density in an industry leading 2” x 3" (51.0 mm x 76.2 mm) footprint. The very low profile, 1U compatible supplies meet  
EN55011/22 Level B conducted emissions with low earth leakage currents of 80 µA at 115 VAC or 160 µA at 230 VAC. Making these  
switchers ideal for industrial, IT and medical applications.  
The series has single output versions from 5 V to 48 VDC, adjustable by ±10%. They are dual-fused for compliance with IEC60601-1  
and efficiency up to 89%, so minimal excess heat is generated. They will deliver up to 60 W of power at +50 °C and up to +70 °C  
with derating.  
xppower.com  
Models and Ratings  
Output Power - Convection Cooled  
Output Voltage V1  
12.0 VDC  
15.0 VDC  
24.0 VDC  
48.0 VDC  
5.0 VDC  
Max Output Current  
2.08 A  
Model Number(1)  
ECS25US12  
ECS25US15  
ECS25US24  
ECS25US48  
ECS45US05  
ECS45US12  
ECS45US15  
ECS45US24  
ECS45US48  
25 W  
25 W  
25 W  
25 W  
30 W  
45 W  
45 W  
45 W  
45 W  
40 W  
1.67 A  
1.04 A  
0.52 A  
6.00 A  
3.75 A  
3.00 A  
1.90 A  
0.95 A  
8.00 A  
5.00 A  
4.00 A  
2.50 A  
1.25 A  
12.0 VDC  
15.0 VDC  
24.0 VDC  
48.0 VDC  
5.0 VDC  
(
ECS60US05  
N
60 W  
12.0 VDC  
ECS60US12  
ECS60US15  
ECS60US24  
ECS60US48  
1
60 W  
60 W  
60 W  
15.0 VDC  
24.0 VDC  
48.0 VDC  
Notes  
1. For covered versions, add suffix ‘-C’ to model number or order part number ECS25-60 COVER KIT for standalone cover. Not suitable for use in class II installations,  
derate output power by 20% with cover.  
Input Characteristics  
Characteristic  
Minimum  
Typical  
115/230  
50/60  
Maximum  
264  
Units  
VAC  
Hz  
Notes & Conditions  
Input Voltage - Operating  
Input Frequency  
80  
47  
Derate output power < 90 VAC. See fig. 1  
Agency approval 47-63 Hz  
400  
230 VAC, 100% load  
EN61000-3-2 class A compliant  
>
0.5  
Power Factor  
Input Current - No Load  
0.01/0.02  
A
A
115/230 VAC  
0.45/0.25  
0.75/0.45  
0.95/0.60  
115/230 VAC - ECS25  
115/230 VAC - ECS45  
115/230 VAC - ECS60  
Input Current - Full Load  
Inrush Current  
40  
0.5  
260  
A
W
230 VAC cold start, 25 °C  
115/230 VAC  
No Load Input Power  
0.3  
80/160  
0.6/1.2  
µA  
mA  
115/230 VAC/50 Hz (Typ.), 264 VAC/60 Hz (Max.)  
115/230 VAC/400 Hz  
Earth Leakage Current  
Input Protection  
T3.15A/250 V internal fuse in both line and neutral  
Output Characteristics  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
VDC  
%
Notes & Conditions  
Output Voltage - V1  
Initial Set Accuracy  
Output Voltage Adjustment  
Minimum Load  
Start Up Delay  
Hold Up Time  
5.0  
48  
1
See Models and Ratings table  
50% load, 115/230 VAC  
10  
0
%
Via potentiometer. See mech. details (page 9)  
A
1
s
230 VAC full load (see fig.2)  
115 VAC full load (see fig.3)  
After 20 min warm up  
90-264 VAC  
16  
ms  
%
Drift  
0.2  
0.5  
1
Line Regulation  
Load Regulation  
%
%
0-100% load.  
Recovery within 1% in less than 500 µs  
for a 50-75% and 75-50% load step  
Transient Response - V1  
4
%
Over/Undershoot - V1  
Ripple & Noise  
3
%
See fig.4  
1
% pk-pk  
%
20 MHz bandwidth (see fig.5 & 6)  
Vnom DC.  
Overvoltage Protection  
Overload Protection  
115  
110  
140  
200  
% I nom  
Auto reset (see fig.7)  
Continuous, trip & restart (hiccup mode)  
Short Circuit Protection  
Temperature Coefficient  
Overtemperature Protection  
0.05  
%/˚C  
°C  
Not fitted  
2
xppower.com  
Input Voltage Derating  
100  
90  
80  
Figure. 1  
70  
60  
50  
40  
80  
85  
90  
264  
Input Voltage (VAC)  
Start Up Delay From AC Turn On  
Figure 2  
Start up example from AC turn on  
(230 VAC, 720 ms)  
Hold Up Time From Loss of AC  
Figure 3  
Hold up example ECS45 at 45 W  
load with 115 VAC input (17.2ms)  
3
xppower.com  
Typical Output Overshoot  
Figure 4  
Typical Output Overshoot  
(ECS45US12, 230 VAC)  
Output Ripple & Noise  
Figure 5  
ECS45US12 (45 W)  
72 mV pk-pk ripple. 20 MHz BW  
4
xppower.com  
Output Ripple & Noise cont.  
Figure 6  
ECS45US48 (45 W)  
188 mV pk-pk ripple. 20 MHz BW  
Output Overload Characteristic  
14  
12  
10  
Output enters  
Trip & Restart Mode  
Figure 7  
Typical Overload  
8
Characteristic  
6
(ECS45US12 shown)  
4
2
0
0
0.1  
0.2  
0.3  
0.9  
1.0  
1.1  
1.2  
1.3  
Output Current (A)  
5
xppower.com  
General Specifications  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
%
Notes & Conditions  
Efficiency  
87  
Full load (see fig.8 & 9)  
4000  
1500  
500  
VAC  
VAC  
VDC  
kHz  
Isolation: Input to Output  
Input to Ground  
Output to Ground  
Switching Frequency  
Power Density  
65  
3
7.9  
W/in  
1072  
660  
MIL-HDBK-217F, Notice 2 +25 °C GB  
MIL-HDBK-217F, Notice 2 +50 °C GB  
Mean Time Between Failure  
Weight  
kHrs  
lb (g)  
0.22 (100)  
Efficiency Versus Load  
88%  
86%  
84%  
82%  
80%  
78%  
76%  
0%  
20%  
40%  
60%  
80%  
100%  
%of Output Load  
Figure 8  
ECS45US12 at 230 VAC  
90%  
88%  
86%  
84%  
82%  
80%  
78%  
76%  
74%  
0%  
20%  
40%  
60%  
Output Load  
80%  
100%  
Figure 9  
ECS45US48 at 230 VAC  
6
xppower.com  
Environmental  
Characteristic  
Minimum  
-20  
Typical  
Maximum  
+70  
Units  
°C  
Notes & Conditions  
Derate linearly from +50 °C at 2.5%/°C  
to 50% at 70 °C. (See fig.10 & Thermal  
Considerations)  
Operating Temperature  
Storage Temperature  
Cooling  
-40  
+85  
°C  
Convection cooled, see fig.10 & Thermal  
Considerations  
Humidity  
5
95  
%RH  
m
Non-condensing  
Operating Altitude  
3000  
3 x 30 g/11 ms shocks in both +ve & -ve  
directions along the 3 orthogonal axis,  
total 18 shocks.  
Shock  
Vibration  
Three axis 5-500 Hz at 2 g x 10 sweeps  
Derating Curve  
Figure 10  
100  
50  
0
-20  
264  
50  
7
Ambient Temperature (ºC)  
Electromagnetic Compatibility - Immunity  
Phenomenon  
Low Voltage PSU EMC  
Harmonic Current  
Radiated  
Standard  
Test Level  
Criteria  
Notes & Conditions  
EN61204-3  
High severity level  
as below  
EN61000-3-2  
EN61000-4-3  
EN61000-4-4  
EN61000-4-5  
EN61000-4-6  
Class A  
3
A
A
A
A
A
B
B
A
EFT  
3
Surges  
Installation class 3  
3
Conducted  
Dip:  
Dip:  
30% 10 ms  
EN61000-4-11  
60% 100 ms  
Dip: 100% 5000 ms  
Dip:  
Dip:  
Dip:  
30% 500 ms  
60% 100 ms  
100% 10 ms  
Dips and Interruptions  
Load derating with 115 VAC input (typically  
45% derate dependant on model & load)  
A
EN60601-1-2  
A
B
Int.: >95% 5000 ms  
7
xppower.com  
Electromagnetic Compatibility - Emissions  
Phenomenon  
Standard  
Test Level  
Class B  
Class B  
Class A  
Criteria  
Notes & Conditions  
Conducted  
EN55011/22  
ECS25  
Radiated  
EN55011/22  
ECS45/ECS60  
Voltage Fluctuations  
EN61000-3-3  
Safety Agency Approvals  
Safety Agency  
Safety Standard  
IEC60950-1:2005 Ed 2  
Category  
CB Report  
UL  
Information Technology  
Information Technology  
Information Technology  
UL60950-1 (2007), CSA 22.2 No.60950-1-07 Ed 2  
TUV  
EN60950-1:2006  
LVD  
CE  
Safety Agency  
CB Report  
UL  
Safety Standard  
Category  
Medical  
Medical  
Medical  
IEC60601-1 Ed 3 Including Risk Management  
ANSI/AAMI ES60601-1:2005 & CSA C22.2, No.60601-1:08  
EN60601-1/A12:2006  
TUV  
Means of Protection  
2 x MOPP (Means of Patient Protection)  
1 x MOPP (Means of Patient Protection)  
1 x MOPP (Means of Patient Protection)  
Category  
Primary to Secondary  
Primary to Earth  
IEC60601-1 Ed 3  
Secondary to Earth  
Equipment Protection Class  
Safety Standard  
Notes & Conditions  
See safety agency conditions of acceptibility  
for details  
Class I & Class II  
IEC60950-1:2005 Ed 2 & IEC60601-1 Ed 2  
Mechanical Details - ECS25  
4X Ø.156 [3.96] MOUNTING HOLES  
Ø.312 [7.92] CLEARANCE TOP AND BOTTOM  
2.75 [69.8]  
2
1
2
J1  
J2  
1
3
4
C18  
C5  
1.75 [44.4]  
2.00 [50.8]  
1.65 [41.8]  
1.31 [33.3]  
T1  
Q1  
.20 [5.1]  
.27 [7.0]  
.25 FASTON  
GROUND TAB  
Input Connector J1  
Molex PN 09-65-2038  
3.00 [76.2]  
Pin 1  
Line  
Neutral  
Earth  
Pin 2  
0.25” Faston  
Input Connector J2  
Molex PN 09-65-2048  
.95 [24.2]  
Pin 1  
+V1  
+V1  
RTN  
RTN  
Pin 2  
Pin 3  
Pin 4  
.14 [3.6]  
SMD HEIGHT  
J1 mates with Molex Housing PN  
09-50-1031, J2 mates with Molex  
Housing PN 09-50-1041 and both with  
Molex Series 5194 Crimp Terminals  
Notes  
1. All dimensions in inches (mm).  
Tolerance .xx = 0.02 (0.50); .xxx = 0.01 (0.25)  
2. Weight 0.22 lbs (100 g)  
8
xppower.com  
Mechanical Details - ECS45US05  
Weight: 2.20 lbs (1000 g)  
Dimensions shown in inches (mm).  
4X Ø.156 [3.96] MOUNTING HOLES  
Ø.312 [7.92] CLEARANCE TOP AND BOTTOM  
2.75 [69.9]  
Input Connector J1  
2
1
2
J1  
Molex PN 09-65-2038  
C18  
1
J2  
Pin 1  
Pin 2  
0.25” Faston  
Line  
Neutral  
Earth  
C5  
3
4
1.75 [44.5]  
2.00 [50.8]  
1.58 [40.3]  
Input Connector J2  
1.30 [33.0]  
XP  
T1  
Molex PN 09-65-2048  
Pin 1  
Pin 2  
Pin 3  
Pin 4  
+V1  
+V1  
RTN  
RTN  
Q1  
.20 [5.1]  
.25 FASTON  
.28 [7.0]  
GROUND TAB  
J1 mates with Molex  
Housing PN  
3.00 [76.2]  
09-50-1031, J2 mates with  
Molex Housing PN 09-50-  
1041 and both with Molex  
Series 5194 Crimp Terminals  
1.05 [26.7]  
.14 [3.6]  
SMD HEIGHT LIMIT  
ECS45US other models  
4X Ø.156 [3.96] MOUNTING HOLES  
Ø.312 [7.92] CLEARANCE TOP AND BOTTOM  
2.75 [69.9]  
Input Connector J1  
Molex PN 09-65-2038  
Pin 1  
Pin 2  
0.25” Faston  
Line  
Neutral  
Earth  
2
1
1
2
J1  
J2  
3
4
C18  
C5  
Input Connector J2  
1.75 [44.5]  
2.00 [50.8]  
Molex PN 09-65-2048  
1.65 [41.8]  
Pin 1  
Pin 2  
Pin 3  
Pin 4  
+V1  
+V1  
RTN  
RTN  
XP  
1.31 [33.3]  
T1  
J1 mates with Molex  
Housing PN  
09-50-1031, J2 mates with  
Molex Housing PN 09-50-  
1041 and both with Molex  
Series 5194 Crimp Terminals  
Q1  
.20 [5.1]  
.25 FASTON  
.28 [7.0]  
GROUND TAB  
3.00 [76.2]  
.95 [24.2]  
.14 [3.6]  
SMD HEIGHT  
Notes  
1. All dimensions in inches (mm).  
2. Weight: 0.22 lbs (100 g)  
Tolerance .xx = 0.02 (0.50); .xxx = 0.01 (0.25)  
9
xppower.com  
Mechanical Details - ECS60  
0.28 (7.1)  
4 x ø0.156 (3.96) mounting holes  
ø3.12 (7.92) clearance top and bottom  
1.05 (26.7)  
0.20 (5.1)  
A
1
4
J2  
C18  
2.00  
(50.8)  
1.75  
C5  
(44.4)  
1.62  
(41.1)  
1.30  
(33.0)  
T1  
A
Q1  
0.14 (3.5)  
0.12  
(3.18)  
Components may  
extend beyond  
edge of PCB  
0.25 faston ground tab  
0.12  
(3.1)  
2.75 (69.8)  
by 0.04 (1.0)  
3.00 (76.2)  
Mounting points A should be connected together for optimum EMI performance  
Output Connector J2  
Molex PN 09-65-2048  
Input Connector J1  
Molex PN 09-65-2038  
Pin 1  
+V1  
+V1  
RTN  
RTN  
Pin 1  
Pin 2  
Line  
Neutral  
Earth  
Pin 2  
Pin 3  
Pin 4  
0.25” Faston  
J1 mates with Molex Housing PN 09-50-1031  
J2 mates with Molex Housing PN 09-50-1041  
and both with Molex Series 5194 Crimp Terminals  
Notes  
1. All dimensions in inches (mm).  
2. Weight: 0.22 lbs (100 g)  
Tolerance .xx = 0.02 (0.50); .xxx = 0.01 (0.25)  
10  
xppower.com  
CXoxvxerxedxVexrsion - All models  
4X M3 X 0.5 THD  
0.16 [4.0] MAX  
OUTPUT  
SCREW PENETRATION  
CONNECTOR  
J2  
1
4
3.48  
3.03  
(88.4)  
(76.9)  
1
2
J1  
0.22 (5.7)  
.25[0.6]FAST-ON  
INPUT  
0.70  
TOP VIEW  
GROUND TERMINAL  
CONNECTOR  
(17.79)  
1.23 (31.28)  
1.40  
(35.6)  
4X M3 X 0.5 THD  
0.16 [4.0] MAX  
SCREW PENETRATION  
1.26  
0.63  
(32.0)  
(16.0)  
0.22 (5.7)  
3.031  
[76.99]  
2.52  
(64.0)  
BOTTOM VIEW  
Thermal Considerations  
In order to ensure correct and reliable operation of the PSU in the most adverse conditions permitted in the end-use equipment, the temperature of the  
components listed in the table below must not be exceeded. See mechanical drawings for component locations. Temperature should be monitored  
using K type thermocouples placed on the hottest part of the component (out of any direct air flow).  
Temperature Measurements (Ambient 50 ºC)  
Component  
Max Temperature ºC  
120 °C  
T1  
Q1  
C5  
C18  
110 °C  
105 °C  
105 °C  
24 Mar 16  

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