Datenblatt

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date
06/08/2015
page
1 of 6
SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
FEATURES
•
•
•
•
•
•
•
up to 10 W continuous output
encapsulated compact case
universal input (85~264 Vac)
single regulated output from 3.3~24 Vdc
over voltage, short circuit, and short circuit protection
CE, UL safety approval
efficiency up to 83%
MODEL
VSK-S10-3R3UA-T
output
voltage
output
current
output
power
ripple
and noise1
efficiency
(Vdc)
max
(A)
max
(W)
max
(mVp-p)
max
(%)
3.3
2
6.6
100
72
VSK-S10-5UA-T
5
2
10
100
76
VSK-S10-9UA-T
9
1.1
10
100
80
VSK-S10-12UA-T
12
0.9
10
100
81
VSK-S10-15UA-T
15
0.7
10
100
82
VSK-S10-24UA-T
24
0.45
10
100
83
Notes:
1. Ripple and noise are measured at 20 MHz BW by "parallel cable" method with 1 μF ceramic and 10 μF electrolytic capacitors on the output.
PART NUMBER KEY
VSK-S10- XX UA-T
Base Number
Output Voltage
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CUI Inc │ SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
date 06/08/2015 │ page 2 of 6
INPUT
parameter
conditions/description
min
voltage
frequency
max
units
85
100
typ
264
370
Vac
Vdc
47
440
Hz
current
at 110 Vac
at 230 Vac
230
150
mA
mA
inrush current
at 110 Vac
at 230 Vac
10
20
A
A
input fuse
recommended external 2 A/250 V, slow-blow type
±0.02
%/°C
0.5
W
temperature coefficient
no load power consumption
OUTPUT
parameter
conditions/description
capcitive load
3.3 Vdc model
5 Vdc model
9 Vdc model
12 Vdc model
15 Vdc model
24 Vdc model
min
line regulation
full load
±0.5
%
load regulation
at 10~100% load
±1
%
voltage set accuracy
3.3 Vdc model
all other models
±3
±2
%
%
hold-up time
at 230 Vac
80
ms
65
kHz
switching frequency
typ
max
units
15,000
12,000
6000
2000
1500
500
μF
μF
μF
μF
μF
μF
PROTECTIONS
parameter
conditions/description
over voltage protection
3.3, 5 Vdc models
9 Vdc model
12, 15 Vdc models
24 Vdc model
min
over current protection
short circuit protection
typ
max
units
7.5
15
20
30
Vdc
Vdc
Vdc
Vdc
110
%
auto recovery
SAFETY & COMPLIANCE
parameter
conditions/description
isolation voltage
input to output
safety approvals
UL60950-1
safety class
Class II
conducted emissions
CISPR11/EN55011, Class A, CISPR11/EN55011, Class B (external circuit required, see figure 2)
radiated emissions
CISPR11/EN55011, Class A, CISPR11/EN55011, Class B (external circuit required, see figure 2)
ESD
IEC/EN61000-4-2 Class B, contact ±6 kV/air ±8kV
radiated immunity
IEC/EN61000-4-3 Class A, 10V/m
EFT/burst
surge
conducted immunity
min
typ
max
units
4,000
IEC/EN61000-4-4 Class B, ±2 kV
IEC/EN61000-4-4 Class B, ±4 kV (external circuit required, see figure 2)
IEC/EN61000-4-5 Class B, ±1 kV (external circuit required, see figure 1)
IEC/EN61000-4-5 Class B, ±2 kV / ±4 kV (external circuit required, see figure 2)
IEC/EN61000-4-6 Class A, 10 Vr.m.s
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Vac
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CUI Inc │ SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
date 06/08/2015 │ page 3 of 6
SAFETY & COMPLIANCE (CONTINUED)
parameter
conditions/description
PFM
IEC/EN61000-4-8 Class A, 10 A/m
min
voltage dips & interruptions
IEC/EN61000-4-11 Class B, 0%-70%
MTBF
as per MIL-HDBK-217F, at 25°C
RoHS
2011/65/EU
typ
max
units
300,000
hours
ENVIRONMENTAL
parameter
conditions/description
min
operating temperature
see derating curves
storage temperature
typ
max
units
-25
70
°C
-25
105
°C
95
%
storage humidity
DERATING CURVES
60
50
40
20
80
75
Safe operating area
60
40
55
70
~
~
0
Ambient Temperature (°C)
85
80
75
Safe operating area
60
40
20
20
-25
~
~
100
Load (%)
Load (%)
80
70
load vs. input voltage (Vdc)
~
~
~
~
100
~
~
Load (%)
100
load vs. input voltage (Vac)
100
240
Input Voltage (Vac)
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264
100
120
~
~
load vs. ambient temperature
340
Input Voltage (Vdc)
370
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CUI Inc │ SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
date 06/08/2015 │ page 4 of 6
MECHANICAL
parameter
conditions/description
dimensions
76 x 31.50 x 27.80 (2.992 x 1.240 x 1.0944 inch)
min
material
UL94V-0
weight
typ
max
units
mm
70
g
MECHANICAL DRAWING
units: mm [inch]
tolerance: ±0.50 [±0.020]
76.00[2.992]
wire range: 24~12 AWG
LED
61.60[2.425]
2
AC(L)
3
+Vo
4
-Vo
1
3
2
4
Top View
2-Ø3.50[Ø0.138]
Front View
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27.80[1.094]
AC(N)
21.20
[0.835]
FUNCTION
1
8.80
[0.346]
PIN
31.50[1.240]
23.00
[0.906]
PIN CONNECTIONS
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CUI Inc │ SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
date 06/08/2015 │ page 5 of 6
TYPICAL APPLICATION CIRCUIT
Figure 1
NT C
FUS E
AC(L)
A C (L)
+Vo
C1 C2
T VS
+
RL
MOV
-Vo
AC(N )
A C (N )
Table 1
Recommended External Circuit Components
Note:
MODEL
C11
C21
TVS
FUSE
MOV
NTC
VSK-S10-3R3UA-T
1 μF/50V
220 μF/10V
SMBJ7.0A
2A/250V
S14K300
10D-10
VSK-S10-5UA-T
1 μF/50V
220 μF/10V
SMBJ7.0A
2A/250V
S14K300
10D-10
VSK-S10-9UA-T
1 μF/50V
120 μF/25V
SMBJ12A
2A/250V
S14K300
10D-10
VSK-S10-12UA-T
1 μF/50V
120 μF/25V
SMBJ20A
2A/250V
S14K300
10D-10
VSK-S10-15UA-T
1 μF/50V
120 μF/25V
SMBJ20A
2A/250V
S14K300
10D-10
VSK-S10-24UA-T
1 μF/50V
68 μF/35V
SMBJ30A
2A/250V
S14K300
10D-10
1. Output filtering capacitor C1 is a ceramic capacitor that is used to filter high frequency noise. C2 is an electrolytic capacitor. It is recommended to use high frequency and low impedance electrolytic capacitors. For capacitance and current of capacitor please refer to the manufacturer’s datasheet. Voltage derating of capacitor should be 80% or above.
EMC RECOMMENDED CIRCUIT
Figure 2
AC(L)
L1
FU SE
LCM
R1
AC(L)
CY1
+Vo
C1 C2
+
CX
MOV
TVS
CY2
RL
AC/DC
-Vo
AC(N )
AC(N )
Table 2
Recommended External Circuit Components
FUSE
MOV
CY1, CY2
CX
LCM
L1
R1
C1, C2,
TVS
2A/250 Vdc slow fusing
S14K300
1nF/400VAC
0.1μF/275VAC
2.2mH
4.7μH/2.0A
12Ω/3W
see Table 1
see Table 1
Note:
1. All specifications measured at Ta=25°C, humidity <75%, nominal Vac input voltage, and rated output load, unless otherwise specified.
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CUI Inc │ SERIES: VSK-S10-T │ DESCRIPTION: AC-DC POWER SUPPLY
date 06/08/2015 │ page 6 of 6
REVISION HISTORY
rev.
description
date
1.0
initial release
09/06/2012
1.01
updated mechanical drawing and product photo
11/28/2012
1.02
updated spec
03/08/2013
changed internal IC, updated datasheet
06/08/2015
1.03
The revision history provided is for informational purposes only and is believed to be accurate.
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20050 SW 112th Ave.
Tualatin, OR 97062
800.275.4899
Fax 503.612.2383
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[email protected]
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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.