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D304RW Datasheet(PDF) 2 Page - MicroPower Direct, LLC

Part # D304RW
Description  Single & Dual Output 3W SIP, Wide Input DC/DC Converters
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Manufacturer  MPD [MicroPower Direct, LLC]
Direct Link  http://www.micropowerdirect.com
Logo MPD - MicroPower Direct, LLC

D304RW Datasheet(HTML) 2 Page - MicroPower Direct, LLC

  D304RW Datasheet HTML 1Page - MicroPower Direct, LLC D304RW Datasheet HTML 2Page - MicroPower Direct, LLC  
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Model Selection Guide
Mechanical Dimensions
Model
Number
Input
Output
Efficiency
(%, Typ)
Fuse Rating
Slow-Blow
(mA)
Voltage (VDC)
Current (mA)
Voltage
(VDC)
Current
(mA, Max)
Current
(mA, Min)
Nominal
Range
Full-Load
No-Load
D301RW
12
9.0 - 18.0
320
22
5.0
600.0
60.0
78
700
D302RW
12
9.0 - 18.0
316
22
9.0
333.0
33.0
79
700
D303RW
12
9.0 - 18.0
312
22
12.0
250.0
25.0
80
700
D304RW
12
9.0 - 18.0
312
22
15.0
200.0
20.0
80
700
D305RW
12
9.0 - 18.0
320
22
±5.0
±300.0
±30.0
78
700
D306RW
12
9.0 - 18.0
316
22
±9.0
±167.0
±17.0
79
700
D307RW
12
9.0 - 18.0
312
22
±12.0
±125.0
±13.0
80
700
D308RW
12
9.0 - 18.0
312
22
±15.0
±100.0
±10.0
80
700
D311RW
24
18.0 - 36.0
160
10
5.0
600.0
60.0
78
350
D312RW
24
18.0 - 36.0
158
10
9.0
333.0
33.0
79
350
D313RW
24
18.0 - 36.0
156
10
12.0
250.0
25.0
80
350
D314RW
24
18.0 - 36.0
154
10
15.0
200.0
20.0
81
350
D315RW
24
18.0 - 36.0
160
10
±5.0
±300.0
±30.0
78
350
D316RW
24
18.0 - 36.0
158
10
±9.0
±167.0
±17.0
79
350
D317RW
24
18.0 - 36.0
156
8
±12.0
±125.0
±13.0
80
350
D318RW
24
18.0 - 36.0
154
8
±15.0
±100.0
±10.0
81
350
Pin
Single
Dual
1
-Vin
-Vin
2
+Vin
+Vin
3
Remote ON/OFF
5NF
NF
6
+Vout
+Vout
7
-Vout
Common
8
CS
-Vout
NF = No Function
Pin Connections
Notes:
1. When measuring output ripple, it is recommended that an external ceramic capaci-
tor (approx. 1 µF to 10 µF) be placed from the +Vout pin to the -Vout pin for single
output units and from each output to common for dual output units.
2. These units should not be operated with a load under 10% of full load. Operation
at no-load may cause damage to the unit.
3. These converters are specified for operation without external components. However,
in some applications the addition of input/output capacitors will enhance stability and
reduce output ripple.
Recommended capaci-
tor values are given in
the table at right. Using
simple LC filter networks
on the input/output will
provide further improve-
ment. This only requires
the addition of small
inductors to the input/output filter circuits. Recommended values are 4.7 µH to 120
µH for an input inductor and 2.2 µH to 10 µH for an output inductor.
Output ripple on single output units may
be further enhanced by using the CS termi-
nal (single output units operated at 50%
load or below should use this function). A
low ESR capacitor is connected between
the CS pin and the -Vout pin (the anode of the capacitor is connected to the -Vout
pin). Recommended capacitor values are given in the table above. If not used, the
CS pin should be left open.
4. Dual output units may be connected to provide a 10V, 18V, 24V or 30 VDC output.
To do this, connect the load across the +Vout and -Vout outputs and float the
output common.
5. The remote on/off control pin is referenced
to the -Vin pin (pin 1). Input current to the
pin should be between 5 - 10 mA with a
maximum of 20 mA.
6. It is recommended that a fuse be used on the input of a power supply for protec-
tion. See the Model Selection table above for the correct rating.
Vin
Input
Capacitor
Vout
Output Capacitor
0 - 70ºC
(Electrolitic)
-40 - 85ºC
(Tantalum)
12 VDC
100
µF
5 VDC
100
µF
47
µF
24 VDC
10 - 47
µF
9 VDC
100
µF
47
µF
12 VDC
100
µF
47
µF
15 VDC
100
µF
47
µF
Output Voltage
5V
9V
12V
15V
CS
47
µF - 100 µF 22 µF - 47 µF
Min
Max
On
<0.6 VDC to Open Circuit
Off
2.7 VDC
15.0 VDC
Mechanical Notes:
All dimensions are typical in inches (mm)
Tolerance x.xx = ±0.01 (±0.25)
MicroPower Direct
www.micropowerdirect.com
292 Page Street Ste D Stoughton, MA 02072
TEL: (781) 344-8226
FAX: (781) 344-8481
E-Mail: sales@micropowerdirect.com
Output
Max Cap Load
5.0 VDC
2,200
µF
9.0 VDC
1,000
µF
12.0 VDC
820
µF
15.0 VDC
680
µF
±5.0 VDC
±560
µF
±9.0 VDC
±470
µF
±12.0 VDC
±330
µF
±15.0 VDC
±220
µF
Capacitive Load
Derating Curve


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