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DP2525C Datasheet(PDF) 9 Page - List of Unclassifed Manufacturers |
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DP2525C Datasheet(HTML) 9 Page - List of Unclassifed Manufacturers |
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9 / 11 page ![]() DP2525 Low Cost Primary Side Regulation(PSR) PWM Power Switch 9/11 Rev.2.0 Fig.4 Programmable Cable Drop Compensation (CDC) in CV Mode In smart phone charger application, the battery is always connected to the adapter with a cable wire which can cause several percentages of voltage drop on the actual battery voltage. In DP2525, an offset voltage is generated at FB pin by an internal current source (modulated by CDC block, as shown in Fig.5) flowing into the resistor divider. The current is proportional to the switching period, thus, it is inversely proportional to the output power Pout. Therefore, the drop due the cable loss can be compensated. As the load decreases from full loading to zero loading, the offset voltage at FB pin will increase. By adjusting the resistance of R1 and R2 (as shown in Fig.), the cable loss compensation can be programmed. The percentage of maximum compensation is given by ( ) % 100 V R1//R2 Icable_max Vout V(cable) FB_REF × × ≈ ∆ For example, R1=3K Ω , R2=18K Ω , The percentage of maximum compensation is given by: ( ) % 7 . 7 % 100 2V 3K//18K 60uA Vout V(cable) = × × = ∆ FB Naux R2 R1 KP211 Sample & Hold Icable CDC Icable Pout 60uA 0 Modulated by CDC Fig.5 Optimized Dynamic Response In DP2525, the dynamic response performance is optimized to meet USB charge requirements. Audio Noise Free Operation As mentioned above, the multi-mode CV control with a hybrid of FM and AM provides frequency modulation. An internal current source flowing to CS pin realizes CS peak voltage modulation. In DP2525, the optimized combination of frequency modulation and CS peak voltage modulation algorithm can provide audio noise free operation from full loading to zero loading. Dynamic BJT Base Drive DP2525 drives a power BJT with dynamic base drive control to optimize efficiency. The BJT base drive current ranges from 10mA to 30mA (typical), and is dynamically controlled according to the power supply load change. The higher the output power, the higher the based current. Specifically, the base current is related to CS peak voltage, as |
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