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JRCW016A0R4118TZ 参数 Datasheet PDF下载

JRCW016A0R4118TZ图片预览
型号: JRCW016A0R4118TZ
PDF下载: 下载PDF文件 查看货源
内容描述: [36–75 Vdc Input; 28Vdc Output; 16Adc Output]
分类和应用:
文件页数/大小: 15 页 / 1007 K
品牌: LINEAGEPOWER [ LINEAGE POWER CORPORATION ]
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Data Sheet  
GE  
JRCW016A0R Orca Series; DC-DC Converter Power Modules  
36–75 Vdc Input; 28.0Vdc Output; 16Adc Output  
To trim up the output of a nominal 28V module, without –T  
option, to 30.8V  
Feature Description (continued)  
For output voltages: VO,nom = 28V  
Without –T Option  
30.828  
%   
100 10.0%  
V
(100 %)  
(100 (2 %)  
%  
28  
O ,nom  
R
adj  
_
up  
k  
1.225 %  
28 (100 10 ) (100 (2 10 )  
R
adj _ up  
With –T Option  
1.225 10  
10  
27122  
Radj _ up  
15.12 k  
R
adj_up = 239k  
%  
Where,  
Active Voltage Programming  
V
desired Vo, nom  
%   
100  
Vo, nom  
For both the JRCW016A0Rx and JRCW016A0Rx-T, a Digital-  
Analog converter (DAC), capable of both sourcing and sinking  
current, can be used to actively set the output voltage, as  
shown in Figure 15. The value of RG will be dependent on the  
voltage step and range of the DAC and the desired values for  
trim-up and trim-down %. Please contact your GE technical  
representative to obtain more details on the selection for this  
resistor.  
Vdesired = Desired output voltage set point (V).  
Figure 14. Circuit Configuration to Increase Output Voltage.  
The voltage between the Vo(+) and Vo(-) terminals must not  
exceed the minimum output overvoltage shut-down value  
indicated in the Feature Specifications table. This limit  
includes any increase in voltage due to remote- sense  
compensation and output voltage set-point adjustment (trim).  
See Figure 11.  
Figure 15. Circuit Configuration to Actively Adjust the  
Output Voltage.  
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.  
Tunable Loop  
The JRCW016A0Rx-T modules have a new feature that  
optimizes transient response of the module called Tunable  
Loop.  
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 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.  
External capacitors are usually added to the output of the  
module for two reasons: to reduce output ripple and noise  
and to reduce output voltage deviations from the steady-  
state value in the presence of dynamic load current changes.  
Adding external capacitance however affects the voltage  
control loop of the module, typically causing the loop to slow  
down with sluggish response. Larger values of external  
capacitance could also cause the module to become  
unstable.  
Examples:  
To trim down the output of a nominal 28V module, without –T  
option, to 16.8V  
The Tunable Loop allows the user to externally adjust the  
voltage control loop to match the filter network connected to  
the output of the module. The Tunable Loop is implemented  
by connecting a series R-C between the SENSE(+) and TRIM  
pins of the module, as shown in Fig. 16. This R-C allows the  
user to externally adjust the voltage loop feedback  
compensation of the module.  
28 16.8  
%   
100 40%  
28  
100  
R
adj _ down  
2 0.5k  
40  
November 20, 2013  
©2012 General Electric Company. All rights reserved.  
Page 9  
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