PSK-S6C-24-T [CUI]

AC-DC POWER SUPPLY;
PSK-S6C-24-T
型号: PSK-S6C-24-T
厂家: CUI INC    CUI INC
描述:

AC-DC POWER SUPPLY

文件: 总8页 (文件大小:1722K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
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3D Model  
date 02/26/2021  
page 1 of 8  
SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
FEATURES  
• universal input (85~264 Vac)  
• -40~70°C operating range  
• over voltage/current protection  
• 4,000 Vac input/output isolation voltage  
• board/chassis/DIN-Rail configurations  
• CISPR32/EN55032 Class B  
• UL/EN/IEC 62368-1 certified  
output  
voltage  
output  
current  
output  
power  
max  
ripple  
efficiency2  
MODEL  
and noise1  
min  
max  
max  
typ  
(Vdc)  
3.3  
5
(mA)  
(mA)  
(W)  
(mVp-p)  
(%)  
PSK-S6C-3  
PSK-S6C-5  
PSK-S6C-9  
PSK-S6C-12  
PSK-S6C-15  
PSK-S6C-24  
0
0
0
0
0
0
1250  
1200  
660  
4.1  
6
100  
100  
100  
100  
100  
100  
70  
76  
74  
77  
77  
80  
9
6
12  
15  
24  
500  
6
400  
6
250  
6
Notes:  
1. At full load, nominal input, 20 MHz bandwidth oscilloscope, with 1 µF ceramic and 10 µF electrolytic capacitors on the output.  
2. At 230 Vac input.  
3. All specifications are measured at Ta=25°C, humidity <75%, nominal input voltage, and rated output load unless otherwise specified.  
PART NUMBER KEY  
PSK-S6C - XX - X  
Base Number  
Output Voltage  
Mounting Style:  
“blank” = board mount  
T = chassis mount  
DIN = DIN-rail mount  
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CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 2 of 8  
INPUT  
parameter  
conditions/description  
min  
typ  
max  
units  
85  
100  
264  
370  
Vac  
Vdc  
voltage  
frequency  
current  
47  
63  
Hz  
at 115 Vac  
at 230 Vac  
150  
100  
mA  
mA  
at 115 Vac  
at 230 Vac  
10  
20  
A
A
inrush current  
no load power consumption  
0.5  
W
OUTPUT  
parameter  
conditions/description  
min  
typ  
max  
units  
3.3, 5 Vdc output models  
9 Vdc output models  
12, 15 Vdc output models  
24 Vdc output models  
4,000  
1,000  
820  
µF  
µF  
µF  
µF  
capacitive load  
330  
3.3 Vdc output models  
all other models  
±3  
±2  
%
%
initial set point accuracy  
line regulation  
load regulation  
at full load  
±0.5  
±1  
%
%
from 0~100% load  
at 115 Vac, full load  
at 230 Vac, full load  
8
60  
ms  
ms  
hold-up time  
switching frequency  
100  
kHz  
temperature coefficient  
±0.02  
%/°C  
PROTECTIONS  
parameter  
conditions/description  
min  
typ  
max  
units  
output voltage clamp  
3.3, 5 Vdc output models  
9 Vdc output models  
12, 15 Vdc output models  
24 Vdc output models  
7.5  
15  
20  
30  
Vdc  
Vdc  
Vdc  
Vdc  
over voltage protection  
over current protection  
auto recovery  
110  
%
short circuit protection  
hiccup, continuous, auto recovery  
SAFETY & COMPLIANCE  
parameter  
conditions/description  
input to output for 1 minute  
UL 62368-1, EN 62368-1, IEC 62368-1  
Class II  
min  
typ  
max  
units  
isolation voltage  
safety approvals  
safety class  
4,000  
Vac  
conducted emissions  
radiated emissions  
ESD  
CISPR32/EN55032, Class B  
CISPR32/EN55032, Class B  
IEC/EN61000-4-2, contact ±6 kV/ air ±8 kV, Class B  
IEC/EN61000-4-3, 10 V/m, Class A  
radiated immunity  
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CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 3 of 8  
(
)
SAFETY & COMPLIANCE CONTINUED  
parameter  
conditions/description  
min  
typ  
max  
units  
IEC/EN61000-4-4, ±2 kV, Class B  
EFT/burst  
IEC/EN61000-4-4, ±4 kV, Class B (external circuit required, see Figure 2)  
IEC/EN61000-4-6, 10 Vrms, Class A  
conducted immunity  
voltage dips & interruptions  
IEC/EN61000-4-11 Class B, 0%-70%  
MTBF  
RoHS  
as per MIL-HDBK-217F at 25°C  
300,000  
hours  
yes  
Notes:  
4. The power supply is considered a component which will be installed into final equipment. The final equipment still must be tested to meet the necessary EMC directives.  
ENVIRONMENTAL  
parameter  
conditions/description  
min  
-40  
-40  
typ  
max  
70  
units  
°C  
operating temperature  
storage temperature  
storage humidity  
see derating curves  
105  
95  
°C  
non-condensing  
%
SOLDERABILITY5  
parameter  
conditions/description  
for 3~5 seconds  
min  
350  
255  
typ  
360  
260  
max  
370  
265  
units  
°C  
hand soldering  
wave soldering  
for 5~10 seconds  
°C  
Notes:  
5. For board mount models only  
Peak Temp. 260°C Max.  
Wave Soldering Time  
4 Sec. Max.  
250  
200  
150  
100  
10 Sec. Max.  
50  
0
Time (sec.)  
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CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 4 of 8  
DERATING CURVES  
EFFICIENCY CURVES  
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CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 5 of 8  
MECHANICAL  
parameter  
conditions/description  
min  
typ  
max  
units  
board mount: 50.80 x 25.40 x 15.36 (2.00 x 1.00 x 0.605 inch)  
chassis mount: 76.00 x 31.50 x 24.16 (2.992 x 1.24 x 0.951 inch)  
DIN-Rail mount: 76.00 x 31.50 x 28.76 (2.992 x 1.24 x 1.132 inch)  
mm  
mm  
mm  
dimensions  
case material  
weight  
black flame-retardant and heat-resistant plastic (UL94V-0)  
board mount  
chassis mount  
DIN-Rail mount  
31  
52  
70  
g
g
g
(
)
MECHANICAL DRAWING BOARD MOUNT  
units: mm[inch]  
tolerance: ±0.50[±0.020]  
pin diameter tolerance: ±0.10[±0.004]  
PIN CONNECTIONS  
PIN  
1
Function  
AC (N)  
AC (L)  
-Vo  
2
3
4
+Vo  
Recommended PCB Layout  
Top View  
MECHANICAL DRAWING (CHASSIS MOUNT)  
units: mm[inch]  
tolerance: ±1.00[±0.039]  
wire range: 24~12 AWG  
tightening torque: max 0.4 N*m  
PIN CONNECTIONS  
PIN  
1
Function  
AC (N)  
AC (L)  
-Vo  
2
3
4
+Vo  
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3D Model  
CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 6 of 8  
(
)
MECHANICAL DRAWING DIN-RAIL MOUNT  
units: mm [inch]  
tolerance: ±1.00[±0.039]  
installed on DIN Rail TS35  
wire range: 24~12 AWG  
tightening torque: max 0.4 N*m  
PIN CONNECTIONS  
PIN  
1
Function  
AC (N)  
AC (L)  
-Vo  
2
3
4
+Vo  
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3D Model  
CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 7 of 8  
APPLICATION CIRCUIT  
Figure 1  
Table 1  
Recommended External Circuit Components  
Vo  
(Vdc)  
FUSE  
MOV  
C1  
C2  
TVS  
3.3  
5
1A/250V S14K350  
1A/250V S14K350  
1A/250V S14K350  
1A/250V S14K350  
1A/250V S14K350  
1A/250V S14K350  
1 μF  
1 μF  
1 μF  
1 μF  
1 μF  
1 μF  
220 μF  
220 μF  
100 μF  
100 μF  
100 μF  
47 μF  
SMBJ7.0A  
SMBJ7.0A  
SMBJ12A  
SMBJ20A  
SMBJ20A  
SMBJ30A  
9
12  
15  
24  
EMC RECOMMENDED CIRCUIT  
Figure 2  
Table 2  
Recommended External Circuit Components  
FUSE  
2 A/250 V, slow fusing  
S14K350  
MOV  
LCM  
CX  
2.2 mH  
0.1 μF/275 Vac  
1 nF/400 Vac  
47 µH/ 2 A  
CY1, CY2  
L1  
R0  
33 Ω/3 W  
Note:  
Also refer to Table 1.  
Notes:  
6. C1 is a ceramic capacitor used to filter high frequency noise.  
7. C2 is an electrolytic capacitor and it is recommended to be high frequency and low impedance. For capacitance and current of capacitor, refer to the datasheet provided by the  
manufacturer. Voltage derating of capacitor should be at least 80%.  
8. TVS is a recommended component to protect post-circuits (if converter fails).  
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3D Model  
CUI Inc SERIES: PSK-S6C DESCRIPTION: AC-DC POWER SUPPLY  
date 02/26/2021 page 8 of 8  
REVISION HISTORY  
rev.  
description  
date  
1.0  
initial release  
03/07/2019  
02/05/2021  
02/26/2021  
1.01  
1.02  
company logo updated  
figure and circuit drawings updated  
The revision history provided is for informational purposes only and is believed to be accurate.  
Headquarters  
20050 SW 112th Ave.  
Tualatin, OR 97062  
800.275.4899  
Fax 503.612.2383  
cui.com  
techsupport@cui.com  
CUI offers a two (2) year limited warranty. Complete warranty information is listed on our website.  
CUI reserves the right to make changes to the product at any time without notice. Information provided by CUI is believed to be accurate and reliable. However, no responsibility is  
assumed by CUI for its use, nor for any infringements of patents or other rights of third parties which may result from its use.  
CUI products are not authorized or warranted for use as critical components in equipment that requires an extremely high level of reliability. A critical component is any component of a  
life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.  

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