VGS-150W-24 [CUI]

INTERNAL AC-DC POWER SUPPLY;
VGS-150W-24
型号: VGS-150W-24
厂家: CUI INC    CUI INC
描述:

INTERNAL AC-DC POWER SUPPLY

文件: 总5页 (文件大小:1286K)
中文:  中文翻译
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3D Model  
date 06/14/2021  
page 1 of 5  
SERIES: VGS-150W DESCRIPTION: INTERNAL AC-DC POWER SUPPLY  
FEATURES  
• wide input range (85 ~ 305 VAC)  
• available with conformal coating or terminal cover options  
• UL/EN/IEC 62368 certified  
• designed to meet IEC/EN 61558 and IEC/EN 60335 system requirements  
• short-circuit, over-current, over-voltage protections  
• CISPR/EN55032 Class B radiated/conducted emissions  
output  
voltage  
output  
current  
max  
output  
power  
max  
ripple  
efficiency²  
MODEL  
and noise1  
typ  
typ  
(Vdc)  
12  
(A)  
(W)  
(mVp-p)  
(%)  
VGS-150W-12  
VGS-150W-15  
VGS-150W-24  
VGS-150W-36  
VGS-150W-48  
12.5  
10.0  
6.5  
150  
150  
156  
154  
158  
150  
150  
200  
200  
200  
86  
87  
88  
88  
89  
15  
24  
36  
4.3  
48  
3.3  
Notes:  
1. Ripple & noise are measured at 20 MHz BW with 47 µF aluminum electrolytic capacitor and 0.1 µF ceramic capacitor on the output.  
2. Measured at 230 Vac.  
PART NUMBER KEY  
VGS-150W - XX - X  
Output Voltage  
Base Number  
A - with terminal cover  
B - with conformal coating  
cui.com  
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3D Model  
CUI Inc SERIES: VGS-150W DESCRIPTION: AC-DC POWER SUPPLY  
date 06/14/2021 page 2 of 5  
INPUT  
parameter  
conditions/description  
min  
typ  
max  
units  
ac input  
dc input  
85  
120  
305  
431  
Vac  
Vdc  
voltage  
frequency  
current  
47  
63  
Hz  
at 115 Vac  
at 230 Vac  
4
2
A
A
at 115 Vac  
at 230 Vac  
30  
60  
A
A
inrush current  
leakage current  
at 277 Vac  
at 250 Vac  
0.75  
0.5  
mA  
W
no load power consumption  
OUTPUT  
parameter  
conditions/description  
min  
typ  
max  
units  
12 Vdc output  
15 Vdc output  
24 Vdc output  
36 Vdc output  
48 Vdc output  
10,000  
6,000  
2,400  
1,200  
600  
μF  
μF  
μF  
μF  
μF  
capacitive load  
initial set point accuracy  
line regulation  
at full load  
±1  
%
%
%
at rated load  
0% ~ 100% load  
±0.5  
±0.5  
load regulation  
at 115 Vac  
at 230 Vac  
8
40  
ms  
ms  
hold-up time  
switching frequency  
temperature coefficient  
adjustability  
65  
kHz  
%/°C  
%
±0.03  
±10  
built in trim pot  
PROTECTIONS  
parameter  
conditions/description  
min  
typ  
max  
units  
12 Vdc output, hiccup  
15 Vdc output, hiccup  
24 Vdc output, hiccup  
36 Vdc output, hiccup  
48 Vdc output, hiccup  
16.2  
21.75  
33.6  
48.6  
60  
Vdc  
Vdc  
Vdc  
Vdc  
Vdc  
over voltage protection  
over current protection  
short circuit protection  
over-temperature protection  
auto recovery  
110  
150  
%
hiccup, continuous, auto recovery  
shut-down, auto recovery  
°C  
SAFETY & COMPLIANCE  
parameter  
conditions/description  
min  
typ  
max  
units  
input to ground, 1 min. <10mA  
input to output, 1 min. <10mA  
output to ground, 1 min. <10mA  
2,000  
4,000  
1,250  
Vac  
Vac  
Vac  
isolation voltage  
safety approvals  
certified to  
62368: IEC, EN, UL  
designed to meet 60335: IEC, EN  
designed to meet 61558: IEC, EN  
safety class  
EMI/EMC  
ESD  
class I  
CISPR 32/EN 55032 Class B, IEC 61000-3-2 Class A (≤80% load)  
IEC/EN 61000-4-2 Contact ±6KV/Air ±8KV perf. criteria A  
IEC/EN 61000-4-3 10 V/m perf. criteria A  
radiated immunity  
EFT/burst  
surge  
IEC/EN 61000-4-4 ±4KV perf. criteria A  
IEC/EN 61000-4-5 line to line ±2KV/line to ground ±4KV perf. criteria A  
cui.com  
Additional Resources: Product Page  
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3D Model  
CUI Inc SERIES: VGS-150W DESCRIPTION: AC-DC POWER SUPPLY  
date 06/14/2021 page 3 of 5  
SAFETY & COMPLIANCE  
conducted immunity  
voltage dips and interuption  
MTBF  
IEC/EN 61000-4-6 10 Vr.m.s perf. criteria A  
IEC/EN 61000-4-11 0%, 70% perf. criteria B  
as per MIL-HDBK-217F at 25°C  
yes  
300,000  
hours  
RoHS  
ENVIRONMENTAL  
parameter  
conditions/description  
min  
-30  
-40  
20  
typ  
max  
70  
units  
°C  
operating temperature  
storage temperature  
operating humidity  
storage humidity  
85  
°C  
non-condensing  
non-condensing  
90  
%
10  
95  
%
MECHANICAL  
parameter  
conditions/description  
min  
typ  
max  
units  
dimensions  
159.00 x 97.00 x 30.00 mm  
inch  
12V, 15V models  
24V, 36V, 48V models  
430  
410  
g
g
weight  
cooling  
free air convection  
case material  
metal (AL1100, SGCC)  
MECHANICAL DRAWING  
units: mm  
tolerance: ±1 [±0.039]  
PIN CONNECTIONS  
PIN  
1
Function  
AC(L)  
2
AC(N)  
3
4
-Vo  
-Vo  
5
6
+Vo  
+Vo  
7
wire range: 22-12 AWG  
connector tightening torque: M3.5, 0.8N·m  
Position  
Screw  
spec.  
L (max)  
Torque  
(max)  
2 - 3  
6 - 7  
M3  
M3  
5 mm  
3 mm  
0.4 N·m  
0.4 N·m  
Note: At least one hole position, 1 ~ 9, must be  
securely connected to Protective Earth (PE)  
cui.com  
Additional Resources: Product Page  
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3D Model  
CUI Inc SERIES: VGS-150W DESCRIPTION: AC-DC POWER SUPPLY  
date 06/14/2021 page 4 of 5  
DERATING CURVE  
EFFICIENCY CURVES  
cui.com  
Additional Resources: Product Page  
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3D Model  
CUI Inc SERIES: VGS-150W DESCRIPTION: AC-DC POWER SUPPLY  
date 06/14/2021 page 5 of 5  
REVISION HISTORY  
rev.  
description  
date  
1.0  
initial release  
09/02/2020  
06/14/2021  
1.01  
derating and efficiency curves 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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