UCH600PS48 [XPPOWER]

AC-DC Power Supplies;
UCH600PS48
型号: UCH600PS48
厂家: XP POWER LIMITED    XP POWER LIMITED
描述:

AC-DC Power Supplies

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AC-DC Power Supplies  
UCH600 Series  
600 Watts  
• Convection cooled  
• Medical and ITE approvals  
• Compact 5.0” by 8.0” footprint  
• Suitable for BF applications  
• 5 V standby and remote on/off  
• 12 V fan output  
• -20 °C to +70 °C operation  
• High efficiency, up to 95%  
Dimensions:  
Approved for medical and ITE applications, this range of convection cooled single output  
AC/DC power supplies are packaged in an ultra compact foot print of just 5.0” by 8.0”.  
The UCH600 provides up to 600 W convection-cooled leading to very high power density  
of 9.5 W/in3.  
UCH600:  
8.00 x 5.00 x 1.57” (203.2 x 127.0 x 40.0 mm)  
A 12 V/0.6 A fan supply is included in the design to faciliate system cooling, if required, along with 5 V/1 A standby output. The power  
supply contains two fuses and low leakage currents as required by medical applications and is safety approved to operate in a 70 °C  
ambient. The low profile and safety approvals covering ITE and medical standards along with conducted emissions to EN55011/22 level B  
allow the versatile UCH600 series to be used in a vast range of applications.  
Models & Ratings  
Output  
Output Current  
Standby Output  
Fan Output(2,4  
Efficiency(1)  
Model Number  
Voltage  
12.0 V  
24.0 V  
36.0 V  
48.0 V  
50.0 A  
25.0 A  
16.6 A  
12.5 A  
12 V/0.6 A  
12 V/0.6 A  
12 V/0.6 A  
12 V/0.6 A  
93%  
95%  
95%  
95%  
UCH600PS12  
UCH600PS24  
UCH600PS36  
UCH600PS48  
5 V/1.0 A  
5 V/1.0 A  
5 V/1.0 A  
5 V/1.0 A  
Notes  
1. Typical efficiencies measured at 100% load and 230 VAC input.  
3. Regulation of the fan output requires a minimum load of 10W on the main output.  
2. Typical voltage, actual regulated voltage will be in range of 11.4V to 12.6V.  
Input  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
Notes & Conditions  
Input Voltage - Operating  
Input Frequency  
90  
47  
115/230  
50/60  
>0.9  
264  
63  
VAC  
Hz  
Power Factor  
230VAC, 100% load. EN61000-3-2 class A, class C >150W  
Input Current - Full Load  
Inrush Current  
6.0/3.0  
A
A
115/230 VAC  
60  
300  
1.5  
230 VAC cold start, 25 ºC  
115/230 VAC/50 Hz (Typ), 264 VAC/60 Hz (Max)  
When main output is Inhibited  
Earth Leakage Current  
No load Input Power  
Input Protection  
80/140  
µA  
W
F12A/250 V Internal fuse fitted in line and neutral.  
www.xppower.com  
1
AC-DC Power Supplies  
UCH600 Series  
Output - Main Output  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
Notes & Conditions  
Output Voltage - V1  
12  
48  
1
VDC  
See Models and Ratings table  
Initial Set Accuracy  
Minimum Load  
Start Up Delay  
Hold Up Time  
Drift  
%
A
50% load, 115/230 VAC  
No minimum load required  
115/230 VAC full load.  
Min at full load, 115 VAC.  
After 20 min warm up  
90-264 VAC  
0
2
s
10  
ms  
%
%
%
0.02  
0.5  
Line Regulation  
Load Regulation  
0.5  
0-100% load.  
Recovery within 1% in less than 500 µs  
for a 50-75% and 75-50% load step  
Transient Response  
Over/Undershoot  
Ripple & Noise  
4
%
%
5
Full load  
20 MHz bandwidth and 47 µF electrolytic capacitator in  
parallel with 0.1 µF ceramic capacitator. 12V/other models.  
1.5/1  
% pk-pk  
Overvoltage Protection  
Overload Protection  
110  
110  
130  
130  
%
Vnom, recycle input to reset  
Trip & Restart  
% I nom  
Short Circuit Protection  
Temperature Coefficient  
Overtemperature Protection  
0.02  
50  
%/˚C  
Measured internally, Auto Resetting  
264 VAC / 60 Hz  
Output Leakage Current  
µA  
Output - 5 V Standby Output  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
Notes & Conditions  
Output Voltage  
Initial Set Accuracy  
Minimum Load  
Start Up Delay  
Hold Up Time  
Drift  
5.0  
VDC  
%
A
1
50% load, 115/230 VAC  
0
0.5  
s
115/230 VAC full load.  
Min at full load, 115 VAC.  
After 20 min warm up  
90-264 VAC  
500  
ms  
%
%
%
0.02  
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  
Over/Undershoot  
Ripple & Noise  
4
5
%
%
Full load  
20 MHz bandwidth and 10 µF electrolytic capacitator in  
parallel with 0.1 µF ceramic capacitator  
2
% pk-pk  
A
Overload Protection  
Short Circuit Protection  
Temperature Coefficient  
Remote On/Off  
2.0  
Trip & Restart  
0.02  
%/˚C  
Connect Pin 3 CN202 to Pin 2 CN202 to inhibit  
General  
Characteristic  
Minimum  
Typical  
Maximum  
Units  
Notes & Conditions  
Efficiency  
95  
%
230 VAC Full load (see fig. 1 & 2)  
2 x MOPP  
4000  
1500  
1500  
37  
VAC  
VAC  
VAC  
kHz  
kHz  
kHz  
Isolation: Input to Output  
Input to Ground  
1 x MOPP  
Output to Ground  
1 x MOPP  
120  
106  
PFC, Variable  
76  
Main converter, Variable  
5V standby output  
Switching Frequency  
100  
3
Power Density  
9.5  
W/in  
Mean Time Between Failure  
Weight  
300  
kHrs  
MIL-HDBK-217F, Notice 2 +25 °C GB  
2.43 (1.1)  
lb (kg)  
www.xppower.com  
2
AC-DC Power Supplies  
UCH600 Series  
Efficiency Vs Load  
Figure 1 - UCH600PS12  
100%  
90%  
80%  
70%  
60%  
50%  
110VAC input  
230VAC input  
10  
20  
30  
40  
50  
60  
70  
80  
90  
100  
Load (%)  
Figure 2 - UCH600PS24  
100%  
90%  
80%  
70%  
60%  
50%  
110VAC input  
230VAC input  
10  
20  
30  
40  
50  
60  
70  
80  
90  
100  
Load (%)  
Environmental  
Characteristic  
Minimum  
-20  
Typical  
Maximum  
+70  
Units  
°C  
Notes & Conditions  
Operating Temperature  
Storage Temperature  
Cooling  
See derating curve  
-40  
+80  
°C  
Convection cooled  
Non-condensing  
ITE/Medical  
Humidity  
5
95  
%RH  
m
Operating Altitude  
Shock  
5000/4000  
3 x 30g shocks in each plane, total 18 shocks. 30g = 11ms (+/- 0.5msecs), half sine. Conforms to EN60068-2-27  
Single axis 10-500 Hz at 2g sweep and endurance at resonance in all 3 planes. Conforms to EN60068-2-6  
Vibration  
ting Curves  
Temperature Dera  
Figure 3  
600  
300  
0
-20  
0
+50  
+70  
Ambient Temperature (ºC)  
www.xppower.com  
3
AC-DC Power Supplies  
UCH600 Series  
EMC: Emissions  
Phenomenon  
Conducted  
Radiated  
Standard  
Test Level  
Class B  
Class B  
Class A  
Criteria  
Notes & Conditions  
EN55011/32  
EN55011/32  
Harmonic Current  
Voltage Functions  
EN61000-3-2  
EN61000-3-3  
Class C for Load >150W  
EMC: Immunity  
Phenomenon  
Medical Device EMC  
Low Voltage PSU EMC  
ESD  
Standard  
Test Level  
Ed.4.0 : 2014  
Criteria  
Notes & Conditions  
IEC60601-1-2  
EN61204-3  
as below  
High severity level  
as below  
EN61000-4-2  
EN61000-4-3  
EN61000-4-4  
EN61000-4-5  
EN61000-4-6  
EN61000-4-8  
4
A
A
A
A
A
A
A
B
B
A
A
B
A
B
B
B
B
A
B
A
A
B
8kV contact, 15kV air  
Radiated  
3
EFT  
3
Surges  
Installation class 3  
Conducted  
Magnetic Fields  
3
4
Dip >95% (0 VAC), 8.3 ms  
Dip 30% (70 VAC), 416 ms  
Dip >95% (0 VAC), 4160 ms  
Dip >95% (0 VAC), 10.0 ms  
Dip 30% (168 VAC), 500 ms  
Dip >95% (0 VAC), 5000 ms  
Dip 100% (0 VAC), 10.0 ms  
Dip 100% (0 VAC), 20 ms  
Dip 60% (40 VAC), 100 ms  
Dip 30% (70 VAC), 500 ms  
Dip 100% (0 VAC), 5000 ms  
Dip 100% (0 VAC), 10.0 ms  
Dip 100% (0 VAC), 20 ms  
Dip 60% (96 VAC), 100 ms  
Dip 30% ( 168 VAC), 500 ms  
Dip 100% (0 VAC), 5000 ms  
EN55024 (100 VAC)  
EN55024 (240 VAC)  
Dips and Interruptions  
EN60601-1-2 (100 VAC)  
EN60601-1-2 (240 VAC)  
Safety Approvals  
Safety Agency  
Safety Stan  
IEC60950-1  
UL62368-1  
EN62368-1  
LVD  
dard  
Notes & Conditions  
CB Report  
UL  
, IEC62368  
Information Technology  
Information Technology  
Information Technology  
TUV  
CE  
Safety Agency  
CB Report  
UL  
Safety Stan  
IEC60601-1  
ANSI/AAMI  
EN60601-1  
dard  
Notes & Conditions  
Medical  
Ed 3.1 Including Risk Management  
ES60601-1 & CSA C22.2 No.60601-1:08  
Medical  
TUV  
Medical  
Isolation  
Level  
Notes & Conditions  
Primary to Secondary  
Primary to Earth  
Secondary to Earth  
2 x MOPP (  
1 x MOPP (  
1 x MOPP (  
Means of Patient Protection)  
Means of Patient Protection)  
Means of Patient Protection)  
IEC60601-1 Ed 3.1  
www.xppower.com  
4
AC-DC Power Supplies  
UCH600 Series  
Mechanical Details  
7.60 (193.2)  
0.19 (5.0)  
1.57  
(40.0)  
0.78 (20.0)  
M3 x 0.5 screw hole (4x)  
1.57 (40)  
8.0 (203.2)  
+
CN3  
+
C37  
-
JP2  
+
T3  
+
+
+
L4  
+
RT1  
VO-  
VO-  
VO-  
5.0  
(127)  
w
Q5  
+
+
+
+
VO+  
x
y
VO+  
VO+  
+
N
N
L
VO+  
L
C5  
CN2  
-
J1  
3
1
3
CN1  
J3  
1
7
1
CN202  
CN1, 3 pin  
barrier  
terminal  
block  
Remote On/Off  
DC Return  
5VSB  
0.79  
(20.0)  
9.5mm  
pitch.  
CN2 other models  
4 pin barrier  
terminal block,  
9.5mm pitch.  
CN2 12V version  
6 pin barrier  
terminal block,  
9.5mm pitch.  
7.8 (198.2)  
0.197  
(5.0)  
M3 x 0.5 screw hole (4x)  
7.33 (186.2)  
0.6 (15.2)  
CN3 - Fan Connector  
Pin 1  
Fan+  
Pin 2  
Fan-  
Mates with JST housing PHR-2  
4.34  
(110.3)  
3.8  
(96.6)  
CN202 - Signal Connector  
Pin 1  
Pin 2  
Pin 3  
+5V Standby  
DC Return  
Remote On/Off  
7.33 (186.2)  
Mates with JST housing XHP-3  
0.6 (15.2)  
0.197 (5.0)  
0.47 (12)  
To turn output off, connect  
Remote On/Off, Pin 3 to Return,  
Pin 2.  
0.32 (8.2)  
Output is on if Remote On/Off,  
Pin 3 is floating or connected to  
5V standby, Pin 1.  
Notes  
1. All dimensions shown in inches (mm).  
Tolerance: 0.02 (0.5)  
2. Weight: 2.43 lbs (1100 g) approx.  
3. Maximum screw penetration 0.1 (2.5)  
www.xppower.com  
5
AC-DC Power Supplies  
UCH600 Series  
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 K type thermocouples placed on the hottest part of the component  
(out of direct air flow). See Mechanical Details for component locations.  
Temperature Measurements (At Maximum Ambient)  
Component  
T3 Coil  
L4 Coil  
Q5 Body  
C5  
Max Temperature °C  
110°C  
120°C  
120°C  
105°C  
105°C  
C37  
Service Life  
The estimated service life of the UCH600 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 a key capacitor  
with in the product when installed by the end application,  
The graph below expresses the estimated lifetime of a given component temperature and assumes continuous operation at this temperature.  
Estimated Service Life vs Component Temperature  
Figure 4  
80000  
70000  
60000  
50000  
C37  
C5  
40000  
30000  
20000  
10000  
0
105  
95  
85  
75  
65  
55  
45  
C5 + C37 Temperature (ºC)  
www.xppower.com  
6
27 Feb 20  

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