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PDF NC12S0A0V06 Data sheet ( Hoja de datos )

Número de pieza NC12S0A0V06
Descripción DC/DC Power Modul
Fabricantes Delta Electronics 
Logotipo Delta Electronics Logotipo



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No Preview Available ! NC12S0A0V06 Hoja de datos, Descripción, Manual

Delphi NC06 Series Non-Isolated Point of Loadwww.DataSheet4U.com
DC/DC Power Modules: 12Vin, 0.9V~5.0Vout, 6A
The Delphi NC06 Series, 12V input, single output, non-isolated point of
load DC/DC converters are the latest offering from a world leader in
power systems technology and manufacturing Delta Electronics, Inc.
The NC06 series operates from a 12V nominal input, provides up to 6A
of power in a vertical or horizontal mounted through-hole package and
the output can be resistor- or voltage-trimmed from 0.9Vdc to 5.0Vdc. It
provides a very cost effective point of load solution. With creative design
technology and optimization of component placement, these converters
possess outstanding electrical and thermal performance, as well as
extremely high reliability under highly stressful operating conditions.
DATASHEET
DS_NC12S06A_02072007
FEATURES
High Efficiency:
91% @ 12Vin, 5V/6A out
Size: 30.5x15.5x11.7mm
(1.20”×0.61”×0.46”) -- Vertical
30.5x15.5x12.3mm
(1.20”×0.61”×0.48”) -- Horizontal
Voltage and resistor-based trim
No minimum load required
Output voltage programmable from
0.9Vdc to 5.0Vdc via external resistors
Fixed frequency operation
Input UVLO, output, OCP, SCP
Power good output signal
Remote ON/OFF
ISO 9001, TL 9000, ISO 14001, QS9000,
OHSAS 18001 certified manufacturing
facility
UL/cUL 60950 (US & Canada) Recognized,
and TUV (EN60950) Certified
OPTIONS
Vertical or horizontal versions
APPLICATIONS
DataCom
Distributed power architectures
Servers and workstations
LAN/WAN applications
Data processing applications

1 page




NC12S0A0V06 pdf
ELECTRICAL CHARACTERISTICS CURVES (CON.)
Figure 13: Turn on delay time at 12Vin, 0.9V/6A out
Ch2: Vin Ch3: Vout Ch4: PWRGD
Figure 14: Turn on delay time Remote On/Off, 0.9V/6A out
Ch2: ENABLE Ch3: Vout Ch4: PWRGD
Figure 15: Turn on delay time at 12Vin, 2.5V/6A out
Ch2: Vin Ch3: Vout Ch4: PWRGD
Figure 16: Turn on delay time at Remote On/Off, 2.5V/6A out
Ch2: ENABLE Ch3: Vout Ch4: PWRGD
Figure 17: Turn on delay time at 12Vin, 5.0V/6A out
Ch2: Vin Ch3: Vout Ch4: PWRGD
DS_NC12S06A_02072007
Figure 18: Turn on delay time at Remote On/Off, 5.0V/6A out
Ch2: ENABLE Ch3: Vout Ch4: PWRGD
5

5 Page





NC12S0A0V06 arduino
THERMAL CURVES (NC12S0A0V06)
FACING PWB
PWB
MODULE
AIR VELOCITY
AND AMBIENT
TEMPERATURE
MEASURED BELOW
THE MODULE
AIR FLOW
50.8 (2.0”)
11 (0.43”)
22 (0.87”)
Note: Wind Tunnel Test Setup Figure Dimensions are in
millimeters and (Inches)
Figure 32: Wind tunnel test setup
Figure 33: Temperature measurement location
* The allowed maximum hot spot temperature is defined at 130
NC12S0A0V06 (Standard) Output Current vs. Ambient Temperature and Air Velocity
Output Current(A)
7
@ Vout = 5V (Either Orientation)
6
5
4 Natural
Convection
100LFM
3
200LFM
300LFM
2
400LFM
500LFM
1
0
50 55 60 65 70 75 80 85
Ambient Temperature ()
Figure 34: Output current vs. ambient temperature and air
velocity @Vout=5V(Either Orientation)
DS_NC12S06A_02072007
NC12S0A0V06 (Standard) Output Current vs. Ambient Temperature and Air Velocity
Output Current(A)
7
@ Vout = 3.3V (Either Orientation)
6
5
4 Natural
Convection
100LFM
3
200LFM
300LFM
2
400LFM
1
0
50 55 60 65 70 75 80 85
Ambient Temperature ()
Figure 35: Output current vs. ambient temperature and air
velocity@ Vout=3.3V(Either Orientation)
NC12S0A0V06 (Standard) Output Current vs. Ambient Temperature and Air Velocity
Output Current(A)
7
@ Vout = 1.8V (Either Orientation)
6
5
4 Natural
Convection
100LFM
3
200LFM
300LFM
2
1
0
50 55 60 65 70 75 Ambi8e0nt Temperature (85)
Figure 36: Output current vs. ambient temperature and air
velocity@ Vout=1.8V(Either Orientation)
NC12S0A0V06 (Standard) Output Current vs. Ambient Temperature and Air Velocity
Output Current(A)
7
@ Vout =0.9V (Either Orientation)
6
5
4 Natural
Convection
100LFM
3
200LFM
2
1
0
50 55 60 65 70 75 80 85
Ambient Temperature ()
Figure 37: Output current vs. ambient temperature and air
velocity@ Vout=0.9V(Either Orientation)
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