MEV1 Series
3kVDC Isolated 1W Single & Dual Output DC/DC Converters
KDC_MEV1.F05 Page 4 of 10
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TEMPERATURE DERATING GRAPH TOLERANCE ENVELOPE
Output Load Current (%)
egatloV
tuptu
O
VNOM
5%
0%
-4%
2%
Typical Load Line
100
75
50
25
10
150100
50
0
-40
0
0.5
1.0
1.5
Safe Operating Area
85°C
Ambient Temperature (°C)
Output Power (W)
TECHNICAL NOTES
ISOLATION VOLTAGE
‘Hi Pot Test’, ‘Flash Tested’, ‘Withstand Voltage’, ‘Proof Voltage’, ‘Dielectric Withstand Voltage’ & ‘Isolation Test Voltage’ are all terms that relate to the same thing, a test voltage,
applied for a specified time, across a component designed to provide electrical isolation, to verify the integrity of that isolation.
Murata Power Solutions MEV1 series of DC/DC converters are all 100% production tested at their stated isolation voltage. This is 3kVDC for 1 minute.
A question commonly asked is, “What is the continuous voltage that can be applied across the part in normal operation?”
The MEV1 has been recognized by Underwriters Laboratory for functional insulation, both input and output should normally be maintained within SELV limits i.e. less than 42.4V
peak, or 60VDC. The isolation test voltage represents a measure of immunity to transient voltages and the part should never be used as an element of a safety isolation system.
The part could be expected to function correctly with several hundred volts offset applied continuously across the isolation barrier; but then the circuitry on both sides of the barrier
must be regarded as operating at an unsafe voltage and further isolation/insulation systems must form a barrier between these circuits and any user-accessible circuitry according
to safety standard requirements.
REPEATED HIGH-VOLTAGE ISOLATION TESTING
It is well known that repeated high-voltage isolation testing of a barrier component can actually degrade isolation capability, to a lesser or greater degree depending on materials,
construction and environment. The MEV1 series has toroidal isolation transformers, with no additional insulation between primary and secondary windings of enameled wire. While
parts can be expected to withstand several times the stated test voltage, the isolation capability does depend on the wire insulation. Any material, including this enamel (typically
polyurethane) is susceptible to eventual chemical degradation when subject to very high applied voltages thus implying that the number of tests should be strictly limited. We
therefore strongly advise against repeated high voltage isolation testing, but if it is absolutely required, that the voltage be reduced by 20% from specified test voltage.
This consideration equally applies to agency recognized parts rated for better than functional isolation where the wire enamel insulation is always supplemented by a further
insulation system of physical spacing or barriers.
SAFETY APPROVAL
The MEV1 series has been recognized by Underwriters Laboratory (UL) to UL 60950 for functional insulation in a maximum still air ambient temperature of 85°C and/or case tem-
perature limit (case temperature measured on the face opposite the pins) as follows:
MEV1SxxxxSC: 130ºC
MEV1SxxxxDC: 130ºC
MEV1DxxxxSC: 94ºC
MEV1DxxxxDC: 96ºC
The MEV1 Series of converters are not internally fused so to meet the requirements of UL 60950 an anti-surge input line fuse should always be used with ratings as defined below.
MEV1x05xxxC: 1A
MEV1x12xxxC: 0.375A
MEV1x15xxxC: 0.375A
MEV1x24xxxC: 0.2A
MEV1x48xxxC: 0.1A
All fuses should be UL recognized and rated to at least the maximum allowable DC input voltage.
File number E151252 applies.
The voltage tolerance envelope shows typical load regulation characteristics for this
product series. The tolerance envelope is the maximum output voltage variation due to
changes in output loading.
RoHS COMPLIANT INFORMATION
This series is compatible with RoHS soldering systems with a peak wave solder temperature of
300°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
MEV1 Series
3kVDC Isolated 1W Single & Dual Output DC/DC Converters
KDC_MEV1.F05 Page 5 of 10
www.murata-ps.com/support
APPLICATION NOTES
Minimum load
The minimum load to meet datasheet specification is 10% of the full rated load across the specified input voltage range. Lower than 10% minimum loading will result in
an increase in output voltage, which may rise to typically double the specified output voltage if the output load falls to less than 5%.
Capacitive loading and start up
Typical start up times for this series, with a typical input voltage rise time of 2.2µs and output capacitance of 10µF, are shown in the table below. The product
series will start into a capacitance of 47µF with an increased start time, however, the maximum recommended output capacitance is 10µF.
Ripple & Noise Characterisation Method
Ripple and noise measurements are performed with the following test configuration.
C1 1µF X7R m ultilayer ceramic capacitor, voltage rating to be a minimum of 3 times the output voltage of the DC/DC converter
C2
10µF tantalum capacitor, voltage rating to be a minimum of 1.5 times the output voltage of the DC/DC converter with an ESR of less
than 100m at 100 kHz
C3 100nF multilayer ceramic capacitor, general purpose
R1 450 resistor, carbon film, ±1% tolerance
R2 50 BNC termination
T1 3T of the coax cable through a ferrite toroid
RLOAD Resistive load to the maximum power rating of the DC/DC converter. Connections should be made via twisted wires
Measured values are multiplied by 10 to obtain the specified values.
Differential Mode Noise Test Schematic
OSCILLOSCOPE
Y INPUT
SUPPLY
C1 C2 C3 R1 T1
R2
Input Output
DC/DC Converter
R LOAD
+
+
-
-
Typical Start-Up Wave Form
Start-up time Start-up time
µs µs
MEV1x0505xC 585 MEV1x1512xC 3045
MEV1x0509xC 1550 MEV1x1515xC 4445
MEV1x0512xC 2700 MEV1x2405xC 440
MEV1x0515xC 4320 MEV1x2409xC 4355
MEV1x1205xC 605 MEV1x2412xC 1855
MEV1x1209xC 1750 MEV1x2415xC 2930
MEV1x1212xC 3000 MEV1x4805SC 580
MEV1x1215xC 4800 MEV1x4809SC 1320
MEV1x1505xC 660 MEV1x4812SC 2075
MEV1x1509xC 1720 MEV1x4815SC 3235
MEV1 Series
3kVDC Isolated 1W Single & Dual Output DC/DC Converters
KDC_MEV1.F05 Page 6 of 10
www.murata-ps.com/support
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.
DC
DC
L
C
Load
Power
Source
Inductor Capacitor
L, µH SMD Through Hole C, µF
MEV1x0505xC
10 82103C 11R103C 4.7
MEV1x0509xC 22 82223C 11R223C 2.2
MEV1x0512xC 47 82473C 11R473C 1
MEV1x0515xC 47 82473C 11R473C 1
MEV1x1205xC 10 82103C 11R103C 4.7
MEV1x1209xC 22 82223C 11R223C 2.2
MEV1x1212xC 47 82473C 11R473C 1
MEV1x1215xC 47 82473C 11R473C 1
MEV1x1505xC 10 82103C 11R103C 4.7
MEV1x1509xC 22 82223C 11R223C 2.2
MEV1x1512xC 47 82473C 11R473C 1
MEV1x1515xC 47 82473C 11R473C 1
MEV1x2405xC 10 82103C 11R103C 4.7
MEV1x2409xC 22 82223C 11R223C 2.2
MEV1x2412xC 47 82473C 11R473C 1
MEV1x2415xC 47 82473C 11R473C 1
MEV1x4805SC 10 82103C 11R103C 4.7
MEV1x4809SC 22 82223C 11R223C 2.2
MEV1x4812SC 47 82473C 11R473C 1
MEV1x4815SC 47 82473C 11R473C 1

MEV1D1215SC

Mfr. #:
Manufacturer:
Description:
Isolated DC/DC Converters 1W 12Vin +/-15Vout +/-33mA SIP
Lifecycle:
New from this manufacturer.
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