STMICROELECTRONICS GS

GS-RXXX12
DC/DC STEP DOWN POWER SUPPLY
PRELIMINARY DATA
FEATURES
■ MODULE DC/DC STEP DOWN SINGLE
OUTPUT
■ WIDE RANGE INPUT VOLTAGE 100÷370 Vdc
■
■
■
■
OUTPUT POWER 1.8W, 4.5W OR 12W MAX
OUTPUT VOLTAGE PRECISION 5% FOR
4.5W AND 12W
OUTPUT VOLTAGE PRECISION 10% FOR
1.8W
OUTPUT SHORT CIRCUIT PROTECTION
DESCRIPTION
The DC/DC module is a high efficiency DC/DC not insulated switch mode constant voltage generator.
Designed for industrial application where low voltages are required from main.
Power Module VIP 4.5W
Step down converter performs a max 1.8W, 4.5 W
and 12W power conversion.
The output voltages and current level are set up by
design in accordance with customer requirements.
Typical reference values for the shelf solution are:
-single output -12V, ±10%, 0.15A for 1.8W;
-single output -12V, ±5%, 0.35A for 4.5W;
-single output -12V, ±5%, 1A for 12W.
Power Module SM 12W
Power Module VIP 1.8W
Rev. 1
December 2004
This is preliminary information on a new product in development or undergoing evaluation. Details are subject to change without notice.
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GS-RXXX12
Figure 1. Application Diagram for 1.8W and 4.5W
1A FUSE
POWER MODULE
L1
-12V
(RECOMMENDED FOR
SAFETY COMPLIANCE)
RTN
N1
Figure 2. Application Diagram for 12W
1A FUSE
POWER MODULE
L1
-12V
(RECOMMENDED FOR
SAFETY COMPLIANCE)
33µF
(NOT NEEDED FOR
EUROPEAN BUS)
N1
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RTN
GS-RXXX12
Table 1. Electrical Characteristics (Tamb=25)C, unless otherwise specified.)
Symbol
Vi
Parameter
Test Condition
Min.
Typ.
Unit
370
Vdc
Input Voltage
Output Power 1.8W, 4.5W and 12W
Vo1
Output Voltage
Vi = 100 to 370 Vdc for 4.5W and 12W
-12.6
-12
-11.4
V
Vo2
Output Voltage
Vi = 100 to 370 Vdc for 1.8W
-10.8
-12
-13.2
V
Io1
Output Current
Vi = 100 to 370 Vdc for 1.8W
0.15
A
Io2
Output Current
Vi = 100 to 370 Vdc for 4.5W
0.35
A
Io3
Output Current
Vi = 100 to 370 Vdc for 12W
1
A
Vor
Output Ripple
Vi = 100 to 370 Vdc
Iosc
Output short circuit current
Vi = 100 to 370 Vdc
n
Efficiency
Vi = 100 to 370 Vdc
Io=0.15 A for 1.8W
70
%
n
Efficiency
Vi = 100 to 370 Vdc
Io=0.35 A for 4.5W
80
%
n
Efficiency
Vi = 100 to 370 Vdc
Io=1 A for 12W
83
%
P stand by Power losses in no load
condition
Iir
Inrush input current
Top
Operating Ambient
Temperature
Tstg
Storage Temperature Range
100
Max.
5%
Hiccup Mode
A
0.3
Vi = 320 Vdc
Io = 0 mA
Vi = 320 Vdc
mVpp
30
W
A
0
70
°C
-20
85
°C
AGENCY APPROVALS
The safety and EMI compliance has to be assured by the user.
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GS-RXXX12
Figure 3. Mechanical Data for 1.8W (dimensions in mm)
Figure 4. Mechanical Data for 4.5W (dimensions in mm)
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GS-RXXX12
Figure 5. Mechanical Data for 12W (dimensions in mm)
Figure 6. Mechanical Data for 1.8W (dimensions in mm)
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Figure 7. Mechanical Data for 4.5W (dimensions in mm)
Figure 8. Mechanical Data for 12W (dimensions in mm)
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Figure 9. Mechanical Data (dimensions in mm)
Figure 10. Ordering Information Scheme
GS-Rx.xx12yyy
Output Current
0.15
0.35
1.00
Output Voltage
VIP
VIP
SM
Table 2. Revision History
Date
Revision
Description of Changes
14-Dec.-2004
1
First Release
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GS-RXXX12
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject
to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not
authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.
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All other names are the property of their respective owners
© 2004 STMicroelectronics - All Rights Reserved
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