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R-6112D Datasheet(PDF) 2 Page - Recom International Power

Part # R-6112D
Description  1-2 AMP SIP12 Vertical & Horizontal
Download  4 Pages
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Manufacturer  RECOM [Recom International Power]
Direct Link  http://www.recom-international.com
Logo RECOM - Recom International Power

R-6112D Datasheet(HTML) 2 Page - Recom International Power

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Characteristics
Conditions
Min.
Typ.
Max.
Load Regulation (10 to 100% full load)
R-61xxP/D
0.5%
R-62xxP/D
1.0%
Vo Ripple & Noise
R-61xxP/D
40mVpp
100mVpp
R-62xxP/D
40mVpp
120mVpp
Transient Response (see note 1)
50% Load Change
100us
200us
Vout Over / Undershoot
5%
Remote ON / OFF (see note 2)
Open or high (Power ON)
2.0V
10V
(positive logic)
Low (Power OFF)
0.8V
Remote Off Input Current
Remote ON/OFF low level
100µA
Switching Frequency
200kHz
250kHz
300kHz
Quiescent Current
Vin = min. to max. at 0% load
6mA
10mA
Operating Temperature Range
-40°C
+85°C
Storage Temperature Range
-40°C
+125°C
internal Power Dissipation
Io x Vo x (1-Efficiency)
1.0W
MTBF (Nominal Vout, 100% load)
Tamb. = +25°C
563 x 10³ hours
Tamb. = +71°C
117 x 10³ hours
R-6xxxP_D
Series
Specifications (refer to the standard application circuit, Ta: 25°C)
Output Current vs Input Voltage
Standard Application Circuit
Notes:
INNOLINE
DC/DC-Converter
Vout
Com
Vin
TTL
Com
2, 3, 4
9, 10, 11
R-61XX
R-62XX
R1
(Adjust down)
R2
(Adjust up)
12
5, 6, 7,8
1µF
(Optional)
1
C1
OFF
ON
Q1
C2
100µF/10V
(REQ`D)
2
1
14
9.0
28
Input Voltage (V)
0
1.2A
R-61XX
24
32
Max output current calculation:
Internal power dissipation
(1W) = Io x Vo x (1-Efficiency)
Io = 1(W) / Vo x (1-Efficiency)
Example : R-6212P
at Vin = 28VDC
Efficiency = 94% (see ”Selection Guide” table)
Vo = 12VDC
Io = 1W / 12V x (1-0.94) = 1.388A = 1.5A
at Vin = 14VDC
Efficiency = 96% (see ”Selection Guide” table)
Vo = 12Vdc
Io = 1W / 12V x (1-0.96) = 2.08A (spec. = 2A max.)
90
60
20
40
1.5
1
0.5
Internal Power Dissipation (W)
0
80
85
0.7
1. Requires a 100µF electrolytic or tantalum output capacitor for proper operation in all applications (the capacitor to be placed as close as possible to the output pins).
2. ON / OFF pin can be driven by TTL (logic gate), open-collector bipolar transistor or open-drain MOSFET.
3. Output Current vs. Input Voltage (see graph below).
Add a blocking diode to
Vout if current can flow
backwards into the out-
put, as this can damage
the converter..
27-March-2007
www.recom-international.com
162


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