Datasheet

www.recom-power.com
REV.: 5/2019 ECO-1
Features
Unregulated
Converters
+20/-5V & +15/-3V asymmetric outputs for SiC driver applications
Qualified with 65kV/µs @ Vcommon mode =1KV
+15/-9V asymmetric outputs for IGBT driver applications
Pot-core transformer with separated windings
High 6.4kVDC isolation in compact SIP7 size
Low isolation capacitance (10pF max.)
Optional continuous short circuit protected
IEC/EN62368-1 certfified, UL pending
Description
High slew rate SiC transistor drivers require an isolated asymmetric supply of +20/-5V or +15/-3V
with high isolation voltage and low isolation capacitance. The RxxPxxyyD series have been specially
designed to fulfill this demanding requirement with 6400VDC isolation and <10pF isolation capacitance.
The load on each output can be unequal, as long as the total power remains under 2W. The internal
transformer uses a pot-core to physically separate the input and output windings, yet the converter still
fits into an industry standard SIP7 case. Input voltage options of 5, 12, 15 or 24V are available and the
RxxP2xxyyD series is safety certified to the latest UL/IEC62368 standard.
DC/DC Converter
2 Watt
SIP7 for
SiC and IGBT
Application´s
UL60950-1 certified
CAN/CSA-C22.2 No. 60950-1-07 certified
UL62368-1 certified
CAN/CSA-C22.2 No. 62368-1-14 certified
IEC/EN62368-1 certified
CB Report
E224736
www.recom-power.com/eval-ref-boards www.recom-power.com/bier
RxxP2xxyy
Selection Guide
Part Input Output Output Efficiency typ. max. Capacitive
Number Voltage Voltage Current typ. Load
(1)
[VDC] [VDC] [mA] [%] [µF]
R12P21503D 12 +15/-3 +93/-185 84 150/680
R15P21503D 15 +15/-3 +93/-185 81 150/680
R24P21503D 24 +15/-3 +66/-333 82 150/680
R05P21509D 5 +15/-9 +67/-111 82 ±330
R12P21509D 12 +15/-9 +67/-111 84 ±330
R24P21509D 24 +15/-9 +67/-111 86 ±330
R05P22005D 5 +20/-5
50/-200
82
47/680
+/-80 83
R12P22005D 12 +20/-5
50/-200
82 47/680
+/-80
R15P22005D 15 +20/-5
50/-200
83
47/680
+/-80 84
R24P22005D 24 +20/-5
50/-200
84
47/680
+/-80 85
Notes:
Note1: Max. capacitive load is tested at nominal input voltage and full load
Notes:
Note2: add suffix “/P” for continuous short circuit protection (check for availability)
without suffix no short circuit protection
Model Numbering
R__P2 __ __D/P
Input Voltage
Output Power
Protection
(2)
Negative Output Voltage
Positive Output Voltage

Summary of content (6 pages)