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PDF NSR006A0X4Z Data sheet ( Hoja de datos )

Número de pieza NSR006A0X4Z
Descripción Naos Raptor 6A: Non-Isolated DC-DC Power Modules
Fabricantes Lineage Power 
Logotipo Lineage Power Logotipo



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Data Sheet
December 6, 2010
Naos Raptor 6A: Non-Isolated DC-DC Power Modules
4.5Vdc –14Vdc input; 0.59Vdc to 6Vdc Output; 6A Output Current
RoHS Compliant
Applications
Distributed power architectures
Intermediate bus voltage applications
Telecommunications equipment
Servers and storage applications
Networking equipment
Industrial Applications
Features
Compliant to RoHS EU Directive 2002/95/EC (Z
versions)
Compatible in a Pb-free or SnPb wave-soldering
environment (Z versions)
Wide Input voltage range (4.5Vdc-14Vdc)
Output voltage programmable from 0.59 Vdc to 6Vdc
via external resistor
Tunable LoopTM to optimize dynamic output voltage
response
Fixed switching frequency
Output overcurrent protection (non-latching)
Over temperature protection
Remote On/Off
Cost efficient open frame design
Small size: 10.4 mm x 16.5 mm x 7.84 mm
(0.41 in x 0.65 in x 0.31 in)
Wide operating temperature range (-40°C to 85°C)
UL* 60950-1Recognized, CSAC22.2 No. 60950-1-
03 Certified, and VDE0805:2001-12 (EN60950-1)
Licensed
ISO** 9001 and ISO 14001 certified manufacturing
facilities
Description
The Naos Raptor 6A SIP power modules are non-isolated dc-dc converters in an industry standard package that
can deliver up to 6A of output current with a full load efficiency of 91.5% at 3.3Vdc output voltage (VIN = 12Vdc).
These modules operate over a wide range of input voltage (VIN = 4.5Vdc-14Vdc) and provide a precisely regulated
output voltage from 0.59Vdc to 6Vdc, programmable via an external resistor. Features include remote On/Off,
adjustable output voltage, over current and over temperature protection. A new feature, the Tunable LoopTM, allows
the user to optimize the dynamic response of the converter to match the load.
www.DataSheet4U.com
* UL is a registered trademark of Underwriters Laboratories, Inc.
CSA is a registered trademark of Canadian Standards Association.
VDE is a trademark of Verband Deutscher Elektrotechniker e.V.
** ISO is a registered trademark of the International Organization of Standards
Document No: DS06-125 ver. 1.12
PDF name: NSR006A0X_ds.pdf

1 page




NSR006A0X4Z pdf
Data Sheet
December 6, 2010
Naos Raptor 6A: Non-isolated DC-DC Power Modules
4.5 – 14Vdc input; 0.59Vdc to 6Vdc Output; 6A output current
Characteristic Curves
The following figures provide typical characteristics for the Naos Raptor 6A module at 0.6Vout and at 25ºC.
82 7
80
78
Vin = 4.5V
76
74 Vin = 6V
72 Vin = 9V
6
5
4
NC
70
0123456
OUTPUT CURRENT, IO (A)
Figure 1. Converter Efficiency versus Output Current.
3
25 35 45 55 65 75
AMBIENT TEMPERATURE, TA OC
Figure 2. Derating Output Current versus Ambient
Temperature and Airflow.
85
TIME, t (1μs/div)
Figure 3. Typical output ripple and noise (VIN = 9V, Io =
Io,max).
TIME, t (100μs /div)
Figure 4. Transient Response to Dynamic Load
Change from 0% to 50% to 0% with VIN=9V.
TIME, t (1ms/div)
www.DataSheet4UF.icgoumre 5. Typical Start-up Using On/Off Voltage (Io =
Io,max).
TIME, t (1ms/div)
Figure 6. Typical Start-up Using Input Voltage (VIN =
9V, Io = Io,max).
LINEAGE POWER
5

5 Page





NSR006A0X4Z arduino
Data Sheet
December 6, 2010
Naos Raptor 6A: Non-isolated DC-DC Power Modules
4.5 – 14Vdc input; 0.59Vdc to 6Vdc Output; 6A output current
Characteristic Curves
The following figures provide typical characteristics for the Naos Raptor 6A module at 6Vout and at 25ºC.
100 7
95
6
90
Vin = 12V
Vin = 14V
85 Vin = 7V
5
80
4
75
0.5m/s
(100LFM)
NC
70
0123456
OUTPUT CURRENT, IO (A)
Figure 37. Converter Efficiency versus Output Current.
3
25 35 45 55 65 75 85
AMBIENT TEMPERATURE, TA OC
Figure 38. Derating Output Current versus Ambient
Temperature and Airflow.
TIME, t (1μs/div)
Figure 39. Typical output ripple and noise (VIN = 12V, Io
= Io,max).
TIME, t (100μs /div)
Figure 40. Transient Response to Dynamic Load
Change from 0% to 50% to 0% with VIN=12V.
TIME, t (1ms/div)
www.DataSheetF4Uig.ucroem41. Typical Start-up Using On/Off Voltage (Io =
Io,max).
TIME, t (1ms/div)
Figure 42. Typical Start-up Using Input Voltage (VIN =
12V, Io = Io,max).
LINEAGE POWER
11

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