SLC100-9 Murata Power Solutions Inc, SLC100-9 Datasheet - Page 7

DC/DC Converters & Regulators 36~75V to 12V 8.3A Positive Logic

SLC100-9

Manufacturer Part Number
SLC100-9
Description
DC/DC Converters & Regulators 36~75V to 12V 8.3A Positive Logic
Manufacturer
Murata Power Solutions Inc
Series
SLC100-9r
Datasheet

Specifications of SLC100-9

Product
Isolated
Output Power
100 W
Input Voltage Range
36 V to 75 V
Input Voltage (nominal)
48 V
Number Of Outputs
1
Output Voltage (channel 1)
12 V
Output Current (channel 1)
8.3 A
Isolation Voltage
2 KV
Package / Case Size
Quarter Brick
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Output Over-Voltage Protection
The SLC100 has an output over voltage protection
(OVP) circuit which monitors its own output voltage. If
the output voltage of the converter exceeds between
120% and 140% of the nominal rating, the OVP circuit
will shut down the converter. Once the OVP has been
tripped the unit will need to be reset by cycling the input
power or by toggling the ON/OFF power before normal
operation can resume.
SLC100 units with a non-latching OVP feature are avail-
able on request. Please contact the factory for further
details.
Safety
The SLC100 meets safety requirements per UL/CUL
60950 and VDE EN60950, basic insulation rating.
EMC/EMI Considerations
Analysis pending.
Performance Characterization
Thermal Derating
Maximum output current vs. ambient temperature at
various airflow rates has been determined for each
model of the SLC100. Each model was analyzed over
an ambient temperature range of 0 to 85
flows up to 600LFM. Temperature limits for thermal
derating curves were TBD C for semiconductor junction
temperature and TBD C for board temperature.
o
C and at air
APPLICATION NOTES
SLC100 Rev B
Start-Up, ON/OFF and Transient Response
For each model, waveforms are provided showing
output voltage response and timing of input voltage
power up/down, remote ON/OFF state change and
load current transient responses. Output voltage
transient responses are provided for step load changes
of 50% to 75% &
75% to 50% of rated load current. Waveforms for each
Efficiency Performance
Efficiency data for each model was determined as
a function of both load current and input voltage.
Efficiency vs. Input Voltage was measured at full load,
ambient temperature of 25
Efficiency vs. Load Current was measured at 25
nominal input voltage of 48Vdc and airflow of 300LFM.
Graphs are provided for each model in their respective
5/2004
o
C and airflow of 300LFM.
o
C, a
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