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ATS025A0X3-34Z 参数 Datasheet PDF下载

ATS025A0X3-34Z图片预览
型号: ATS025A0X3-34Z
PDF下载: 下载PDF文件 查看货源
内容描述: 4.5 - 5.5V直流输入; 0.8 - 3.63Vdc输出; 30A的输出电流, 6.0 - 14VDC输入; 0.8 - 5.5V直流输出; 25A的输出电流 [4.5 - 5.5Vdc input; 0.8 - 3.63Vdc output; 30A output current, 6.0 - 14Vdc input; 0.8 - 5.5Vdc output; 25A output current]
分类和应用:
文件页数/大小: 20 页 / 1080 K
品牌: LINEAGEPOWER [ LINEAGE POWER CORPORATION ]
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Data Sheet  
Austin MegaLynxTM Non-Isolated dc-dc Power Modules:  
4.5 – 5.5Vdc input; 0.8 – 3.63Vdc output; 30A output current  
6.0 – 14Vdc input; 0.8 – 5.5Vdc output; 25A output current  
June 3, 2009  
due to undervoltage lockout or over temperature  
protection.  
Safety Considerations  
For safety agency approval the power module must be  
installed in compliance with the spacing and separation  
requirements of the end-use safety agency standards,  
i.e., UL 60950, CSA C22.2 No. 60950-00, EN60950  
(VDE 0850) (IEC60950, 3rd edition) Licensed.  
Remote Sense  
The Austin MegaLynx 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 44). The voltage between  
the Sense pin and the Vo pin must not exceed 0.5V.  
For the converter output to be considered meeting the  
requirements of safety extra-low voltage (SELV), the  
input must meet SELV requirements. The power module  
has extra-low voltage (ELV) outputs when all inputs are  
ELV.  
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 from the module.  
Make sure that the maximum output power of the  
Feature Descriptions  
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 of the module.  
Remote On/Off  
The Austin MegaLynx power modules feature a On/Off  
pin for remote On/Off operation. If not using the On/Off  
pin, connect the pin to ground (the module will be ON).  
The On/Off signal (Von/off) is referenced to ground. Circuit  
configuration for remote On/Off operation of the module  
using the On/Off pin is shown in Figure 43.  
Rdistribution Rcontact  
Rcontact Rdistribution  
VIN(+)  
VO  
Sense  
RLO AD  
During a Logic High on the On/Off pin (transistor Q1 is  
OFF), the module remains OFF. The external resistor R1  
should be chosen to maintain 3.0V minimum on the  
On/Off pin to ensure that the module is OFF when  
transistor Q1 is in the OFF state. Suitable values for R1  
are 4.7K for input voltage of 12V and 3K for 5Vin. During  
Logic-Low when Q1 is turned ON, the module is turned  
ON.  
Rdistribution Rcontact  
Rcontact Rdistribution  
CO M  
CO M  
Figure 44. Effective Circuit Configuration for Remote  
Sense operation.  
VIN+  
MODULE  
Over Current Protection  
R1  
To provide protection in a fault (output overload)  
condition, the unit is equipped with internal  
Thermal SD  
current-limiting circuitry and can endure current limiting  
continuously. At the point of current-limit inception, the  
unit enters hiccup mode. The unit operates normally  
once the output current is brought back into its specified  
range. The average output current during hiccup is 20%  
I
ON/OFF  
+
1K  
PWM Enable  
100K  
ON/OFF  
V
ON/OFF  
IO, max  
.
Q1  
10K  
Over Temperature Protection  
GND  
_
To provide protection in a fault condition, the unit is  
equipped with a thermal shutdown circuit. The unit will  
shutdown if the overtemperature threshold of 130oC is  
exceeded at the thermal reference point Tref . The  
thermal shutdown is not intended as a guarantee that the  
unit will survive temperatures beyond its rating. Once  
the unit goes into thermal shutdown it will then wait to  
cool before attempting to restart.  
Figure 43. Remote On/Off Implementation using  
ON/OFF.  
The On/Off pin can also be used to synchronize the  
output voltage start-up and shutdown of multiple  
modules in parallel. By connecting together the On/Off  
pins of multiple modules, the output start-up can be  
synchronized (please refer to characterization curves).  
When On/Off pins are connected together, all modules  
will shut down if any one of the modules gets disabled  
LINEAGE POWER  
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