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NVS01YG-M6_07 Datasheet, PDF (1/11 Pages) Power-One – 6W SMT Converter Wide Input 3.3V to 24V Outputs
NV DC-DC Series Data Sheet
6W SMT Converter • Wide Input • 3.3V to +/-24V Outputs
Applications
• Distributed power architectures
• Telecommunications equipment
• LAN/WAN applications
• Data processing
• Industrial / Instrumentation Applications
Features
• RoHS lead free solder and lead solder
exempted products are available
• Basic Insulation
• Single board design
• Low profile SMT design
• Excellent co-planarity (within 0.1mm)
• Input-to-output isolation: 1500 VDC
• Low conducted and radiated EMI
• Output overcurrent protection
• Extremely-wide input ranges (2:1 & 4:1)
• Wide output range (3.3 V to 48 V)
• Parallel and series connection providing
flexible output voltages and power
• Full rated output power at 85 ºC or 71 ºC with
convection cooling
• 8.5 mm height
• Operating temperature to 110 ºC
• UL, CSA, and EN/IEC60950 (3rd ed.) approved
Description
The NV Series of converters are low profile, single and dual output, DC-DC converters intended for SMT
placement and reflow soldering. The product provides onboard conversion for a wide range of standard telecom
and datacom input voltages to isolated low output voltages. Proprietary patented manufacturing process with full
process automation ensures optimal product quality in an extremely small footprint.
Model Selection – Single output
Input
Input
Output Output Rated
Model
Voltage, Current, Voltage,
Current,
VDC Max ADC
VDC
ADC (Io.Max)
NVS01YG-M6
18-36
0.27
5.0
1.0
NVS0.5YH-M6
18-36
0.33
12
0.5
NVS0.4YJ-M6
18-36
0.33
15
0.4
NVS01ZG-M6
36-75
0.17
5.0
1.0
NVS0.5ZH-M6
36-75
0.17
12
0.5
NVS0.4ZJ-M6
36-75
0.17
15
0.4
NVS0.9CE-M6
9-36
0.45
3.3
0.9
NVS0.7CG-M6
9-36
0.55
5.0
0.7
NVS0.3CH-M6
9-36
0.65
12
0.34
NVS0.3CJ-M6
9-36
0.65
15
0.28
NVS0.9EE-M6
18-75
0.33
3.3
0.9
NVS0.7EG-M6
18-75
0.33
5.0
0.7
NVS0.3EH-M6
18-75
0.33
12
0.34
NVS0.3EJ-M6
18-75
0.33
15
0.28
Dual outputs continued on next page
Output
Ripple/Noise,
mVp-p
50
95
120
50
95
120
50
50
95
120
50
50
95
120
Typical
Efficiency,
%
82
83
84
82
82
84
79
81
82
82
80
81
82
82
APR 20, 2006 revised to MAR 12, 2007
Page 1 of 11
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