MEA1 Series
1kVDC Isolated 1W Dual Output DC/DC Converters
KDC_MEA1.C06 Page 5 of 8
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APPLICATION NOTES (continued)
Output Ripple Reduction
By using the values of inductance and capacitance stated, the output ripple at the rated load is lowered to 5mV p-p max.
Component selection
Capacitor: It is required that the ESR (Equivalent Series Resistance) should be as low as possible, ceramic types are recommended.
The voltage rating should be at least twice (except for 15V output), the rated output voltage of the DC/DC converter.
Inductor: The rated current of the inductor should not be less than that of the output of the DC/DC converter. At the rated current, the DC resistance of the inductor
should be such that the voltage drop across the inductor is <2% of the rated voltage of the DC/DC converter. The SRF (Self Resonant Frequency) should be
>20MHz.
Inductor Capacitor
L, µH SMD Through Hole C, µF
MEA1D0505xC
10 82103C 11R103C 4.7
MEA1D0509xC 22 82223C 11R223C 2.2
MEA1D0512xC 47 82473C 11R473C 1
MEA1D0515xC 47 82473C 11R473C 1
MEA1D1205xC 10 82103C 11R103C 4.7
MEA1D1209xC 22 82223C 11R223C 2.2
MEA1D1212xC 47 82473C 11R473C 1
MEA1D1215xC 47 82473C 11R473C 1
MEA1D1505xC 10 82103C 11R103C 4.7
MEA1D1509xC 22 82223C 11R223C 2.2
MEA1D1512xC 47 82473C 11R473C 1
MEA1D1515xC 47 82473C 11R473C 1
MEA1D2405xC 10 82103C 11R103C 4.7
MEA1D2409xC 22 82223C 11R223C 2.2
MEA1D2412xC 47 82473C 11R473C 1
MEA1D2415xC 47 82473C 11R473C 1
MEA1D4805xC 10 82103C 11R103C 4.7
MEA1D4809xC 22 82223C 11R223C 2.2
MEA1D4812xC 47 82473C 11R473C 1
MEA1D4815xC 47 82473C 11R473C 1
RoHS COMPLIANT INFORMATION
This series is compatible with RoHS soldering systems with a peak wave solder temperature of
260°C for 10 seconds. The pin termination finish on the SIP package type is Tin Plate, Hot Dipped
over Matte Tin with Nickel Preplate. The DIP types are Matte Tin over Nickel Preplate. Both types in
this series are backward compatible with Sn/Pb soldering systems.
For further information, please visit www.murata-ps.com/rohs
DC
DC
L
L
C
C
Load
Load
Power
Source
+V
OUT
OV
-V
OUT