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PAM2804 bảng dữ liệu(PDF) 7 Page - Power Analog Micoelectronics |
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PAM2804 bảng dữ liệu(HTML) 7 Page - Power Analog Micoelectronics |
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7 / 11 page ![]() 7 , Power Analog Microelectronics Inc www.poweranalog.com PAM2804 1A Step-Down Constant Current, High Efficiency LED Driver 10/2010 Rev1.0 Application Information The basic PAM2804 application circuit is shown in Page 1. External component selection is determined by the load requirement, selecting L first and then Cin and Cout. For most applications, the value of the inductor will fall in the range of 1µH to 4.7µH. Its value is chosen based on the desired ripple current. Large value inductors lower ripple current and small value inductors result in higher ripple currents. Higher V or Vout also increases the rip ple curren t a s sho wn in e qua tio n 1. A reasonable starting point for setting ripple current is I = 400mA (40% of 1A). (1) The DC current rating of the inductor should be at least equal to the maximum load current plus half the ripple current to prevent core saturation. Thus, a 1.4A rated inductor should be enough for most applications (1A + 400mA). For better efficiency, choose a low DC-resis tance inductor. Higher values, lower cost ceramic capacitors are now becoming available in smaller case sizes. Their high ripple current, high voltage rating and low ESR make them ideal for switching regulator applications. Using ceramic capacitors can achieve very low output ripple and small circuit size. When choosing the input and output ceramic capacitors, choose the X5R or X7R dielectric formulations. These dielectrics have the best temperature and voltage charac teristics of all the ceramics for a given value and size. Inductor Selection Using Ceramic Input and Output Capacitors IN L △ Thermal consideration Thermal protection limits power dissipation in the PAM2804. When the junction temperature exceeds 150°C, the OTP (Over Temperature Protection) starts the thermal shutdown and turns the pass transistor off. The pass transistor r e s u m e s o p e r a t i o n a f t e r t h e j u n c t i o n temperature drops below 120°C. F o r c o n t i n u o u s o p e r a t i o n , t h e j u n c t i o n temperature should be maintained below 125°C. The power dissipation is defined as: I is the step-down converter quiescent current. The term tsw is used to estimate the full load step-down converter switching losses. Q ( )( ) D OUT OUT L IN 1 V I = V 1- f L V ( ) ( ) O DSONH IN O D SONL 2 D O SW S O Q IN IN V R + V -V R P =I + t F I +I V V |
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