REM1-1205S
REM1-1205S is DC/DC Converter manufactured by RECOM.
- Part of the REM1 comparator family.
- Part of the REM1 comparator family.
Features
Unregulated Converter
- Medical grade DC/DC converter
- 250VAC working, 2MOPP
- 5.2k VDC isolation for 250VAC working voltage
- -40°C up to +90°C operating temperature
- 3rd Ed. safety and 4th. Ed. EMC
DC/DC Converter
REM1
Description
The REM1 plements the existing board-mount REM3, REM6 and REM10 series by offering a 1W medical grade unregulated DC/DC converter in a more pact SIP7 package. The REM1 Features reinforced 5.2k VDC/1 minute isolation and 2MOPP/250VAC working voltage. The REM1 is available with 3.3, 5, 12, 15 or 24V inputs and offers 3.3, 5 or 12V outputs with up to 85% efficiency. The operating temperature range is -40°C up to +90°C. The converter is Class B EMC and 60601-1-2 (4th Ed.) medical EMC certified using a simple external LC filter. The converters are fully certified to CB, IEC/EN and ANSI/AAMI 60601 third edition safety standards, Ro HS2+ (10/10) and REACH and e with a 5 year warranty.
1 Watt SIP7 Single Output
Selection Guide
Part Number
REM1-3.33.3S REM1-3.305S REM1-3.312S REM1-053.3S REM1-0505S REM1-0512S REM1-123.3S REM1-1205S REM1-153.3S REM1-1505S REM1-243.3S REM1-2405S nom. Input Voltage [VDC] 3.3 3.3 3.3 5 5 5 12 12 15 15 24 24
Output Voltage [VDC]
3.3 5 12 3.3 5 12 3.3 5 3.3 5 3.3 5
Output Current
[m A] 303 200 84 303 200 84 303 200 303 200 303 200
Efficiency typ. (1) [%] 78 81 85 79 80 84 78 81 77 81 76 80
Max. Capacitive Load (2) [µF] 2200 2200 470 2200 2200 470 2200 2200 2200 2200 2200 2200
Notes: Note1: Efficiency tested by nominal input and full load at +25°C ambient Note2: Max Cap Load tested by nominal input and full resisitive load
E314885
2MOPP 250VAC
IEC/EN60601-1 certified ANSI/AAMI ES60601-1 certified EN62368-1 certified IEC/EN60601-1-2 EN55011 CB Report
Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm-up)
BASIC CHARACTERISTICS Parameter
Internal Input Filter Input Voltage Range Maximum Reverse Voltage
Quiescent Current
Condition...