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RS2132NFP 参数 Datasheet PDF下载

RS2132NFP图片预览
型号: RS2132NFP
PDF下载: 下载PDF文件 查看货源
内容描述: 高精度恒流/恒压Primaryâ ????侧PWM控制器 [High Precision CC/CV Primary‐Side PWM Controller]
分类和应用: 控制器
文件页数/大小: 10 页 / 598 K
品牌: ORISTER [ ORISTER CORPORATION ]
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Refer to the equation 3, the change of the primary winding inductance results in the change of the maximum output power  
and the constant output current in CC mode. To compensate the change from variations of primary winding inductance, the  
switching frequency is locked by an internal loop such that the switching frequency is  
1
FSW =  
2TDEMAG  
Since TDemag is inversely proportional to the inductance, as a result, the product LP and Fsw is constant, thus the maximum  
output power and constant current in CC mode will not change as primary winding inductance changes. Up to +/10%  
variation of the primary winding inductance can be compensated.  
Frequency Jiggling for EMI improvement  
The Frequency Jiggling (switching frequency modulation) is implemented in RS2132. The oscillation frequency is modulated  
so that the tone energy is spread out. The spread spectrum minimizes the conduction band EMI and therefore eases the  
system design.  
Current Sensing and Leading Edge Blanking  
CyclebyCycle current limiting is offered in RS2132 current mode PWM control. The switch current is detected by a sense  
resistor into the CS pin. An internal leading edge blanking circuit chops off the sensed voltage spike at initial internal power  
MOSFET on state so that the external RC filtering on sense input is no longer needed. The PWM duty cycle is determined by  
the current sense input voltage and the EA output voltage.  
Gate Drive  
The external power MOSFET is driven by a dedicated gate driver of RS2132. Too weak the gate drive strength results in higher  
conduction and switch loss of MOSFET while too strong gate drive compromises EMI.  
A good tradeoff is achieved through the builtin totem pole gate design with right output strength control.  
Programmable Cable drop Compensation  
In RS2132, cable drop compensation is implemented to achieve good load regulation. An offset voltage is generated at INV by  
an internal current flowing into the resister divider. The current is inversely proportional to the voltage across pin COMP, as a  
result, it is inversely proportional to the output load current, thus the drop due to the cable loss can be compensated. As the  
load current decreases from fullload to noload, the offset voltage at INV will increase. It can also be programmed by  
adjusting the resistance of the divider to compensate the drop for various cable lines used.  
Protection Control  
Good power supply system reliability is achieved with its rich protection features including CyclebyCycle current limiting  
(OCP), VDD clamp, Power on Soft Start, and Under Voltage Lockout on VDD(UVLO).  
VDD is supplied by transformer auxiliary winding output. The output of RS2132 is shut down when VDD drops below UVLO  
(ON) limit and Switcher enters power on startup sequence thereafter.  
DSRS213203 September, 2009  
www.Orister.com