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QBVW025A0B641HZ 参数 Datasheet PDF下载

QBVW025A0B641HZ图片预览
型号: QBVW025A0B641HZ
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: 19 页 / 1571 K
品牌: LINEAGEPOWER [ LINEAGE POWER CORPORATION ]
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Data Sheet  
GE  
QBVW025A0B Barracuda™ Series; DC-DC Converter Power Modules  
36-75Vdc Input; 12.0Vdc, 25.0A, 300W Output  
The following equation determines the required external  
resistor value to obtain a percentage output voltage change of  
Feature Descriptions (continued)  
Remote Sense (9 Option Code)  
%  
Remote sense minimizes the effects of distribution losses by  
regulating the voltage at the remote-sense connections (See  
Figure 15). The SENSE(-) pin should be always connected to VO(–  
).The voltage between the remote-sense pins and the output  
terminals must not exceed the output voltage sense range  
given in the Feature Specifications table:  
511  
Rtrim down  
10 .22   
%  
Vo,set Vdesired  
%   
100  
Vo,set  
Where  
For example, to trim-down the output voltage of the 12V  
nominal module by 20% to 9.6V, Rtrim-down is calculated as  
follows:  
[VO(+) – VO(–)] – [SENSE(+) ] 0.5 V  
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.  
% 20  
511  
20  
Rtrimdown  
10.22   
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).  
Rtrim down 15.3k  
Connecting an external resistor (Rtrim-up) between the TRIM 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  
%:  
5.11V  
(100  %)  
511  
o,set  
Rtrim up  
10.22   
1.225  %  
%  
Vdesired Vo, set  
%   
100  
Vo, set  
Where  
For example, to trim-up the output voltage of the 12V module  
by 5% to 12.6V, Rtrim-up is calculated is as follows:  
% 5  
Figure 15. Circuit Configuration for remote sense.  
Trim, Output Voltage Adjust (9 Option Code)  
5.11 12 .0 (100 5) 511  
Rtrim up  
10 .22   
1.225 5  
5
Rtrim up 938.8  
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.  
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.  
VO(+)  
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).  
Rtrim-up  
QBVW033A0  
LOAD  
TRIM  
Rtrim-down  
VO(-)  
Figure 16. Circuit Configuration to Trim Output Voltage.  
Connecting an external resistor (Rtrim-down) between the TRIM 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%.  
May 9, 2013  
©2012 General Electric Company. All rights reserved.  
Page 9  
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