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ATH010A0X43 参数 Datasheet PDF下载

ATH010A0X43图片预览
型号: ATH010A0X43
PDF下载: 下载PDF文件 查看货源
内容描述: 2.4 - 5.5V直流输入; 0.75Vdc到3.63Vdc输出; 10A的输出电流 [2.4 - 5.5Vdc input; 0.75Vdc to 3.63Vdc Output; 10A output current]
分类和应用:
文件页数/大小: 19 页 / 588 K
品牌: LINEAGEPOWER [ LINEAGE POWER CORPORATION ]
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Data Sheet  
Austin LynxTM II SIP Non-isolated Power Modules:  
March 12, 2009  
2.4 – 5.5Vdc input; 0.75Vdc to 3.63Vdc Output; 10A output current  
Voltage Sequencing  
The Austin LynxTM II series of modules include a  
sequencing feature, EZ-SEQUENCETM that enables  
users to implement various types of output voltage  
sequencing in their applications. This is accomplished  
via an additional sequencing pin. When not using the  
sequencing feature, either tie the SEQ pin to VIN or  
leave it unconnected.  
Remote Sense  
The Austin LynxTM II SIP power modules have a  
Remote Sense feature to minimize the effects of  
distribution losses by regulating the voltage at the  
Remote Sense pin (See Figure 33). The voltage  
between the Sense pin and Vo pin must not exceed  
0.5V.  
When an analog voltage is applied to the SEQ pin, the  
output voltage tracks this voltage until the output  
reaches the set-point voltage. The SEQ voltage must  
be set higher than the set-point voltage of the module.  
The output voltage follows the voltage on the SEQ pin  
on a one-to-one volt basis. By connecting multiple  
modules together, customers can get multiple modules  
to track their output voltages to the voltage applied on  
the SEQ pin.  
The amount of power delivered by the module is defined  
as the output voltage multiplied by the output current  
(Vo x Io). When using Remote Sense, the output  
voltage of the module can increase, which if the same  
output is maintained, increases the power output by the  
module. Make sure that the maximum output power of  
the module remains at or below the maximum rated  
power. When the Remote Sense feature is not being  
used, connect the Remote Sense pin to output pin of  
the module.  
For proper voltage sequencing, first, input voltage is  
applied to the module. The On/Off pin of the module is  
left unconnected (or tied to GND for negative logic  
modules or tied to VIN for positive logic modules) so that  
the module is ON by default. After applying input  
voltage to the module, a minimum of 10msec delay is  
required before applying voltage on the SEQ pin.  
During this time, potential of 50mV (± 10 mV) is  
Rdistribution Rcontact  
Rcontact Rdistribution  
VIN(+)  
VO  
Sense  
RLOAD  
Rdistribution Rcontact  
Rcontact Rdistribution  
CO M  
CO M  
maintained on the SEQ pin. After 10msec delay, an  
analog voltage is applied to the SEQ pin and the output  
voltage of the module will track this voltage on a one-to-  
one volt bases until output reaches the set-point  
voltage. To initiate simultaneous shutdown of the  
modules, the SEQ pin voltage is lowered in a controlled  
manner. Output voltage of the modules tracks the  
voltages below their set-point voltages on a one-to-one  
basis. A valid input voltage must be maintained until the  
tracking and output voltages reach ground potential.  
Figure 33. Remote sense circuit configuration.  
When using the EZ-SEQUENCETM feature to control  
start-up of the module, pre-bias immunity feature during  
start-up is disabled. The pre-bias immunity feature of  
the module relies on the module being in the diode-  
mode during start-up. When using the EZ-  
SEQUENCETM feature, modules goes through an  
internal set-up time of 10msec, and will be in  
synchronous rectification mode when voltage at the  
SEQ pin is applied. This will result in sinking current in  
the module if pre-bias voltage is present at the output of  
the module. When pre-bias immunity during start-up is  
required, the EZ-SEQUENCETM feature must be  
disabled. For additional guidelines on using EZ-  
SEQUENCETM feature of Austin LynxTM II, contact the  
Lineage Power technical representative for preliminary  
application note on output voltage sequencing using  
Austin Lynx II series.  
LINEAGE POWER  
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