Datenblatt

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date
08/22/2012
page
1 of 4
SERIES: VDRS-10 │ DESCRIPTION: AC-DC DIN RAIL
FEATURES
•
•
•
•
•
up to 10 W continuous power
DIN Rail power supplies
universal input (88-264 Vac / 124-370 Vdc)
single output from 12 to 24 V
over voltage, over load, over temperature,
and short circuit protections
• UL1310, UL 508, and TUV safety approvals
• long life electrolytic capacitors
• efficiency 81%
RoHS
output
voltage
output
current
output
power
ripple
and noise1
(Vdc)
max
(A)
max
(W)
max
(mVp-p)
(%)
VDRS-10-12
12
0.84
10
100
81
VDRS-10-15
15
0.67
10
100
81
VDRS-10-24
24
0.42
10
120
81
MODEL
Note:
1. at full load, 230 Vac input, measured at 20MHz bandwidth with a 47 μF and 0.1 μF parallel cap on the output
PART NUMBER KEY
VDRS - 10 - XX
Base Number
Output
Voltage
cui.com
efficiency
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CUI Inc │ SERIES: VDRS-10 │ DESCRIPTION: AC-DC DIN RAIL
date 08/22/2012 │ page 2 of 4
INPUT
parameter
conditions/description
min
voltage
frequency
max
units
88
124
typ
264
370
Vac
Vdc
47
63
Hz
current
115 Vac
230 Vac
0.23
0.17
A
A
inrush current
115 Vac
230 Vac
15
30
A
A
max
units
line regulation
±1
%
load regulation
±1
%
OUTPUT
parameter
conditions/description
min
temperature coefficient
(0 ~ 50°C)
hold-up time
at 115 Vac, cold start
at 230 Vac, cold start
adjustability
adjustable with built-in trim pot
typ
±0.03
%/°C
16
32
ms
ms
±10
%
max
units
150
%
PROTECTIONS
parameter
conditions/description
min
over voltage protection
latch-off mode
115
over load protection
constant current limiting, automatically recovers
after fault condition is removed
102
short circuit protection
output shut down and auto restart
typ
%
SAFETY & COMPLIANCE
parameter
conditions/description
min
isolation voltage
input to output for 1 minute
input to case for 1 minute
isolation resistance
input to output, input to case,
output to case, 500 Vdc
safety approvals
UL 508, TUV EN60950-1, UL1310 NEC class 2
compliant
EMI/EMC
EN55022 : 2006(Class B), EN61204-3: 2000,
EN61000-6-3: 2007, EN61000-3-2,3 :2006,
EN55024, EN61204-3: 2000, EN61000-6-1: 2007
(EN61000-4-2,3,4,5,6,8,11)
typ
units
3,000
1,500
Vac
Vac
100
MΩ
leakage current
RoHS compliant
max
1
mA
yes
MTBF
120,400
hours
ENVIRONMENTAL
parameter
conditions/description
min
operating temperature
storage temperature
operating humidity
non-condensing
storage humidity
vibration
typ
max
units
-20
70
°C
-40
85
°C
20
90
%
10
(10 ~ 500 Hz, 1 hour per axis, 3 hours total)
cui.com
95
5
%
Grms
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CUI Inc │ SERIES: VDRS-10 │ DESCRIPTION: AC-DC DIN RAIL
date 08/22/2012 │ page 3 of 4
MECHANICAL DRAWING
23.00 0.906
99.00 3.898
5.00 0.197
5.00 0.197
+V -V DC
OK
DC ON
+V ADJ.
90.00 3.543
N
L
5.00 0.197
5.00 0.197
DERATING CURVE
Output power vs. Ambient temperature
Output power vs. Input Voltage
100
80
Load ( %)
Load ( %)
100
60
50
40
20
80
60
40
20
0
0
-20
10
0
20
30
90
40 50 60 70
100
110
120
264
Input Voltage (Vac) 60 Hz
Ambient temperature (°C)
ACTIVE DC SIGNAL
Model
R
Model
R
Model
R
12 V
≥ 1.5 KΩ
12 V
≥ 2.4 KΩ
12 V
≥ 0.7 KΩ
15 V
≥ 2.0 KΩ
15 V
≥ 3.0 KΩ
15 V
≥ 0.7 KΩ
24 V
≥ 3.9 KΩ
24 V
≥ 4.7 KΩ
24 V
≥ 1.2 KΩ
cui.com
For more information, please visit the product page.
CUI Inc │ SERIES: VDRS-10 │ DESCRIPTION: AC-DC DIN RAIL
date 08/22/2012 │ page 4 of 4
REVISION HISTORY
rev.
description
date
1.0
initial release
06/03/2010
1.01
new template applied
08/18/2011
1.02
V-Infinity branding removed
08/22/2012
The revision history provided is for informational purposes only and is believed to be accurate.
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Tualatin, OR 97062
800.275.4899
Fax 503.612.2383
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[email protected]
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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