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RD4-1203R10A3M Datasheet(PDF) 3 Page - RSG Electronic Components GmbH

Part # RD4-1203R10A3M
Description  DC/DC-Converter
Download  4 Pages
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Manufacturer  RSG [RSG Electronic Components GmbH]
Direct Link  http://www.rsg-electronic.de
Logo RSG - RSG Electronic Components GmbH

RD4-1203R10A3M Datasheet(HTML) 3 Page - RSG Electronic Components GmbH

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RSG Electronic Components GmbH •Sprendlinger Ldst. 115 • 63069 Offenbach •+49 69-984047-0 •rsg-electronic.de
page 3 (4)
+Vout
+Vin
DC/DC
Converter
-Vin
-Vout
EMI Filter
Input filter components (C1, L ) are used to help
meet conducted emissions requirement for the module.
These components should be mounted as close as
possible to the module; and all leads should be
minimized to decrease radiated noise.
L
Load
C1
C1
L
RS4/RD4-05XXR10AXM
470uF/100V
12uH
RS4/RD4-12XXR10AXM
470uF/100V
12uH
RS4/RD4-24XXR10AXM
470uF/100V
12uH
5V Mode
12V Mode
1.Ripple/Noise measured with 20MHz bandwidth.
2.Tested by minimal Vin and constant resistive load.
3.Measured Input reflected ripple current with a simulated source inductance of 12uH.
4. Input filter components (C1, L) are used to help meet EMC requirement for the module.
These components should be mounted as close as possible to the module;and all leads should be minimized to
decrease radiated noise.
5.Exceeding the absolute ratings of the unit could cause damage. It is not allowed for continuous operating.
6.Operation under no-load conditions will not damage these devices, however they may not meet all listed specifications.
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
0%
Lo Line
Nominal
Hi Line
20%
40%
60%
80%
Load (%)
100%
120%
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
Lo Line
Nominal
Hi Line
0%
20%
40%
60%
Load (%)
80% 100% 120%
+Vout
+Vin
DC/DC
Converter
-Vin
-Vout
EMI Filter
Input filter components (C1, L ) are used to help
meet conducted emissions requirement for the module.
These components should be mounted as close as
possible to the module; and all leads should be
minimized to decrease radiated noise.
L
Load
C1
C1
L
RS4/RD4-05XXR10AXM
470uF/100V
12uH
RS4/RD4-12XXR10AXM
470uF/100V
12uH
RS4/RD4-24XXR10AXM
470uF/100V
12uH
5V Mode
12V Mode
1.Ripple/Noise measured with 20MHz bandwidth.
2.Tested by minimal Vin and constant resistive load.
3.Measured Input reflected ripple current with a simulated source inductance of 12uH.
4. Input filter components (C1, L) are used to help meet EMC requirement for the module.
These components should be mounted as close as possible to the module;and all leads should be minimized to
decrease radiated noise.
5.Exceeding the absolute ratings of the unit could cause damage. It is not allowed for continuous operating.
6.Operation under no-load conditions will not damage these devices, however they may not meet all listed specifications.
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
0%
Lo Line
Nominal
Hi Line
20%
40%
60%
80%
Load (%)
100%
120%
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
Lo Line
Nominal
Hi Line
0%
20%
40%
60%
Load (%)
80% 100% 120%
DC/DC-Converter
1.0W regulated
Single Output
we energize electronics!
an acal group company
we energize electronics!
+Vout
+Vin
DC/DC
Converter
-Vin
-Vout
EMI Filter
Input filter components (C1, L ) are used to help
meet conducted emissions requirement for the module.
These components should be mounted as close as
possible to the module; and all leads should be
minimized to decrease radiated noise.
L
Load
C1
C1
L
RS4/RD4-05XXR10AXM
470uF/100V
12uH
RS4/RD4-12XXR10AXM
470uF/100V
12uH
RS4/RD4-24XXR10AXM
470uF/100V
12uH
5V Mode
12V Mode
1.Ripple/Noise measured with 20MHz bandwidth.
2.Tested by minimal Vin and constant resistive load.
3.Measured Input reflected ripple current with a simulated source inductance of 12uH.
4. Input filter components (C1, L) are used to help meet EMC requirement for the module.
These components should be mounted as close as possible to the module;and all leads should be minimized to
decrease radiated noise.
5.Exceeding the absolute ratings of the unit could cause damage. It is not allowed for continuous operating.
6.Operation under no-load conditions will not damage these devices, however they may not meet all listed specifications.
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
0%
Lo Line
Nominal
Hi Line
20%
40%
60%
80%
Load (%)
100%
120%
EFFICIENCY vs OUTPUT CURRENT
100
90
80
70
60
50
40
30
20
10
0
Lo Line
Nominal
Hi Line
0%
20%
40%
60%
Load (%)
80% 100% 120%


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