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Número de pieza PVX006A0X43-SRZ
Descripción 6A Analog PicoDLynx / Non-Isolated DC-DC Power Modules
Fabricantes GE 
Logotipo GE Logotipo



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GE Data Sheet
6A Analog PicoDLynxTM: Non-Isolated DC-DC Power Modules
3Vdc –14.4Vdc input; 0.6Vdc to 5.5Vdc output; 6A Output Current
RoHS Compliant
Applications
Distributed power architectures
Intermediate bus voltage applications
Telecommunications equipment
Servers and storage applications
Networking equipment
Industrial equipment
Vin+
VIN VOUT
SENSE
PGOOD
MODULE
Vout+
RTUNE
Cin
ON/OFF TRIM
GND
CTUNE
Co
RTrim
Features
Compliant to RoHS II EU “Directive 2011/65/EU”
Compatible in a Pb-free or SnPb reflow environment (Z
versions)
Compliant to IPC-9592 (September 2008), Category 2,
Class II
DOSA based
Wide Input voltage range (3Vdc-14.4Vdc). Ref. to Figure
41 for corresponding output range.
Output voltage programmable from 0.6Vdc to 5.5Vdc via
external resistor
Tunable LoopTM to optimize dynamic output voltage
response
Power Good signal
Fixed switching frequency
Output overcurrent protection (non-latching)
Overtemperature protection
Remote On/Off
Ability to sink and source current
Cost efficient open frame design
Small size: 12.2 mm x 12.2 mm x 7.25 mm
(0.48 in x 0.48 in x 0.29 in)
Wide operating temperature range [-40°C to 105°C
(Ruggedized: -D), 85°C(Regular)]
UL* 60950-1, 2nd Ed. Recognized, CSAC22.2 No.
60950-1-07 Certified, and VDE0805:2001-12
(EN60950-1, 2nd Ed.) Licensed
ISO** 9001 and ISO 14001 certified manufacturing
facilities
Description
The 6A Analog PicoDLynxTM power modules are non-isolated dc-dc converters that can deliver up to 6A of output current.
These modules operate over a wide range of input voltage (VIN = 3Vdc-14.4Vdc) and provide a precisely regulated output voltage
from 0.6Vdc to 5.5Vdc, programmable via an external resistor. Features include remote On/Off, adjustable output voltage, over
current and over temperature protection. The Tunable LoopTM feature allows the user to optimize the dynamic response of the
converter to match the load with reduced amount of output capacitance leading to savings on cost and PWB area.
* 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
July 21, 2014
©2014 General Electric Company. All rights reserved.

1 page




PVX006A0X43-SRZ pdf
GE Data Sheet
6A Analog PicoDLynxTM: Non-Isolated DC-DC Power Modules
3Vdc –14.4Vdc input; 0.6Vdc to 5.5Vdc output; 6A Output Current
Feature Specifications (cont.)
Parameter
Input Undervoltage Lockout
Turn-on Threshold
Turn-off Threshold
Hysteresis
PGOOD (Power Good)
Signal Interface Open Drain, Vsupply 5VDC
Overvoltage threshold for PGOOD
Undervoltage threshold for PGOOD
Pulldown resistance of PGOOD pin
Sink current capability into PGOOD pin
Device
Symbol
All
All
All
Min Typ
3
0.3
Max
3.3
112.5
87.5
All 30
All 5
Units
Vdc
Vdc
Vdc
%VO, set
%VO, set
Ω
mA
July 21, 2014
©2014 General Electric Company. All rights reserved.
Page 5

5 Page





PVX006A0X43-SRZ arduino
GE Data Sheet
6A Analog PicoDLynxTM: Non-Isolated DC-DC Power Modules
3Vdc –14.4Vdc input; 0.6Vdc to 5.5Vdc output; 6A Output Current
Characteristic Curves
The following figures provide typical characteristics for the 6A Analog PicoDLynxTM at 5Vo and 25oC.
100
95
90
85
Vin=8V
Vin=14.4V
Vin=12V
80
75
70
65
0123456
OUTPUT CURRENT, IO (A)
Figure 31. Converter Efficiency versus Output Current.
6.5
2m/s
6.0 (400LFM)
5.5 NC
5.0
4.5
4.0
3.5
Standard
Part (85°C)
Ruggedized (D)
Part (105°C)
0.5m/s
(100LFM)
1m/s
(200LFM)
1.5m/s
(300LFM)
3.0
45 55 65 75 85 95
AMBIENT TEMPERATURE, TA OC
Figure 32. Derating Output Current versus Ambient
Temperature and Airflow.
105
TIME, t (1μs/div)
Figure 33. Typical output ripple and noise (CO=10μF ceramic,
VIN = 12V, Io = Io,max, ).
TIME, t (20μs /div)
Figure 34. Transient Response to Dynamic Load Change from
50% to 100% at 12Vin, Cout-2x47uF, CTune-2200pF & RTune-
261
TIME, t (2ms/div)
Figure 35. Typical Start-up Using On/Off Voltage (Io = Io,max).
TIME, t (2ms/div)
Figure 36. Typical Start-up Using Input Voltage (VIN = 12V, Io =
Io,max).
July 21, 2014
©2014 General Electric Company. All rights reserved.
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