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LF200ED_14 Datasheet, PDF (1/2 Pages) MicroPower Direct, LLC – LF200ED SERIES
LF200ED Series
Low Cost, 2W SMT
Dual Output
DC/DC Converters
Key Features:
• 2W Output Power
• Ultra-Miniature SMT Case
• 1,000 VDC Isolation
• -40ºC to +85ºC Operation
• Low 0.24” Profile
• >3.5 MHour MTBF
• Industry Standard Pin-Out
Electrical Specifications
Specifications typical @ +25°C, nominal input voltage & rated output current, unless otherwise noted. Specifications subject to change without notice.
Input
Parameter
Conditions
Min. Typ. Max. Units
Input Voltage Range
5 VDC Input 4.5 5.0 5.5
12 VDC Input 10.8 12.0 13.2
VDC
Reverse Polarity Input Current
1.0
A
Input Filter
Capacitor
Output
Parameter
Conditions
Min. Typ. Max. Units
Output Voltage Accuracy
±3.0
%
Line Regulation
For Vin Change of 1%
±1.2
%
Load Regulation, See Note 1
See Model Selection Table
Ripple & Noise (20 MHz)
See Note 2
75 150 mV P - P
Temperature Coefficient
±0.03 %/ºC
Output Short Circuit
Momentary (0.5 Sec.)
General
Parameter
Conditions
Min. Typ. Max. Units
Isolation Voltage
60 Seconds 1,000
VDC
Isolation Resistance
500 VDC 1,000
M
Isolation Capacitance
100 kHz, 1V
70
pF
Switching Frequency
70
kHz
Environmental
Parameter
Conditions
Min. Typ. Max. Units
Operating Temperature Range
Ambient -40 +25 +85
ºC
Storage Temperature Range
-55
+125
ºC
Cooling
Free Air Convection
Humidity
RH, Non-condensing
95
%
Physical
Case Size
0.70 x 0.70 x 0.24 Inches (17.78 x 17.78 x 6.0 mm)
Case Material
Non-Conductive Black Plastic (UL94-V0)
MicroPower Direct
292 Page Street
Suite D
Stoughton, MA 02072
USA
T: (781) 344-8226
F: (781) 344-8481
E: sales@micropowerdirect.com
W: www.micropowerdirect.com
Weight
Reliability Specifications
Parameter
MTBF
Absolute Maximum Ratings
Parameter
Input Voltage Surge (1 Sec)
0.07 Oz (2.1g)
Conditions
Min. Typ. Max.
MIL HDBK 217F, 25ºC, Gnd Benign 3.5
Units
MHours
Conditions
Min. Typ. Max.
5 VDC Input -0.7
7.0
12 VDC Input -0.7
15.0
Units
VDC
Lead Temperature
1.5 mm From Case For 10 Sec
300.0
ºC
Internal Power Dissipation
All Models
450
mW
Caution: Exceeding Absolute Maximum Ratings may damage the module. These are not continuous operating ratings.
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