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EBDW025A0B641HZ 参数 Datasheet PDF下载

EBDW025A0B641HZ图片预览
型号: EBDW025A0B641HZ
PDF下载: 下载PDF文件 查看货源
内容描述: [36-75Vdc Input; 12.0Vdc, 25.0A, 300W Output]
分类和应用:
文件页数/大小: 32 页 / 1660 K
品牌: LINEAGEPOWER [ LINEAGE POWER CORPORATION ]
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Data Sheet  
GE  
EBDW025A0B Barracuda™ Series; DC-DC Converter Power Modules  
36-75Vdc Input; 12.0Vdc, 25.0A, 300W Output  
511  
20  
Feature Descriptions (continued)  
Rtrimdown  
10.22   
Power Good, PG  
Rtrim down 15.3k  
The EBDW025A0B module provides a Power Good (PG) feature,  
which compares the module’s output voltage to the module’s  
POWER_GOOD_ON and POWER_GOOD_OFF values. These  
values are adjustable via PMBus. PG is asserted when the  
module’s output voltage is above the POWER_GOOD_ON  
value, and PG is de-asserted if any condition such as  
overtemperature, overcurrent or loss of regulation occurs that  
would result in the output voltage going below the  
POWER_GOOD_OFF value.  
Connecting an external resistor (Rtrim-up) between the T/C1 pin  
and the VO(+) (or Sense (+)) pin increases the output voltage set  
point. The following equations determine the required external  
resistor value to obtain a percentage output voltage change of  
%:  
5.11 12 .0V (100 %)  
1.225 %  
511  
Rtrim up  
10 .22   
%  
V
12 .0V  
12 .0V  
Where  
The PG signal, provided on pin C2, is implemented with an  
open-drain node, pulled up via a 10kresistor to 3.3V  
internally. For Positive Logic PG (default), the PG signal is HI,  
when PG is asserted, and LO, when the PG is de-asserted. For  
Negative Logic PG, the PG signal is LO, when PG is asserted,  
and HI, when the PG is de-asserted.  
desired  
%   
100  
For example, to trim-up the output voltage of the module by  
5% to 12.6V, Rtrim-up is calculated is as follows:  
% 5  
5.11 12 .0 (100 5) 511  
Rtrim  
10 .22   
The PMBus command MFR_PGOOD_POLARITY is used to set  
the logic polarity of the signal.  
up  
1.225 5  
5
Rtrim up 938.8  
If not using the Power Good feature, the pin may be left N/C.  
The voltage between the Vo(+) and Vo(–) terminals must not  
exceed the minimum output overvoltage protection value  
shown in the Feature Specifications table. This limit includes  
any increase in voltage due to remote-sense compensation  
and output voltage set-point adjustment trim.  
Although the output voltage can be increased by both the  
remote sense and by the trim, the maximum increase for the  
output voltage is not the sum of both. The maximum increase  
is the larger of either the remote sense or the trim. The amount  
of power delivered by the module is defined as the voltage at  
the output terminals multiplied by the output current. When  
using remote sense and trim, the output voltage of the module  
can be increased, which at the same output current would  
increase the power output of the module. Care should be  
taken to ensure that the maximum output power of the  
module remains at or below the maximum rated power  
(Maximum rated power = VO,set x IO,max).  
Trim, Output Voltage Programming  
Trimming allows the output voltage set point to be increased  
or decreased; this is accomplished by connecting an external  
resistor between the TRIM pin and either the VO(+) pin or the  
VO(-) pin.  
VO(+)  
Rtrim-up  
LOAD  
T/C1  
EBDW025A0B  
Rtrim-down  
VO(-)  
Thermal Considerations  
Figure 17. Circuit Configuration to Trim Output Voltage.  
The power modules operate in a variety of thermal  
environments and sufficient cooling should be provided to help  
ensure reliable operation.  
Thermal considerations include ambient temperature, airflow,  
module power dissipation, and the need for increased  
reliability. A reduction in the operating temperature of the  
module will result in an increase in reliability.  
Connecting an external resistor (Rtrim-down) between the T/C1  
pin and the Vo(-) (or Sense(-)) pin decreases the output voltage  
set point. To maintain set point accuracy, the trim resistor  
tolerance should be ±1.0%.  
The following equation determines the required external  
resistor value to obtain a percentage output voltage change of  
%.  
The thermal data presented here is based on physical  
measurements taken in a wind tunnel, using automated  
thermo-couple instrumentation to monitor key component  
temperatures: FETs, diodes, control ICs, magnetic cores,  
ceramic capacitors, opto-isolators, and module pwb  
conductors, while controlling the ambient airflow rate and  
temperature. For a given airflow and ambient temperature, the  
module output power is increased, until one (or more) of the  
components reaches its maximum derated operating  
511  
Rtrim  
10 .22   
down  
%  
12 .0V V  
12 .0V  
Where  
desired  
%   
100  
For example, to trim-down the output voltage of the module  
by 20% to 9.6V, Rtrim-down is calculated as follows:  
% 20  
April 15, 2013  
©2012 General Electric Company. All rights reserved.  
Page 11