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TPS51113 датащи(PDF) 11 Page - Texas Instruments |
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TPS51113 датащи(HTML) 11 Page - Texas Instruments |
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11 / 26 page ![]() APPLICATION INFORMATION EXTERNAL PARTS SELECTION CHOOSING THE INDUCTOR ( ) V V V IN OUT OUT L V I f IN RIPPLE SW - ´ = ´ ´ (2) CALCULATING OUTPUT CAPACITANCE RIPPLE 1 V I ESR 8 C f OUT SW æ ö ç ÷ D = ´ + ç ÷ ´ ´ è ø (3) ( ) ( ) 2 2 1 E L I I L OH OL 2 æ ö = ´ ´ - ç ÷ è ø (4) ( ) ( ) ( ) 2 2 C OUT 1 E C Vf Vi 2 = ´ ´ - (5) TPS51113, TPS51163 www.ti.com........................................................................................................................................................................................................ SLUS864 – MAY 2009 The value of the output filtering inductor determines the magnitude of the current ripple, which also affects the output voltage ripple for a certain output capacitance value. Increasing the inductance value reduces the ripple current, and thus, results in reduced conduction loss and output ripple voltage. On the other hand, low inductance value is needed due to the demand of low profile and fast transient response. Therefore, it is important to obtain a compromise between the low ripple current and low inductance value. In practical application, to ensure high power conversion efficiency at light load condition, the peak-to-peak current ripple is usually designed to be between 1/4 to 1/2 of the rated load current. Since the magnitude of the current ripple is determined by inductance value, switching frequency, input voltage and output voltage, the required inductance value for a certain required ripple ∆I is shown in Equation 2, where • V IN is the input voltage • V OUT is the output voltage • I RIPPLE is the required current ripple • f SW is the switching frequency When the inductance value is determined, the output capacitance value can also be derived according to the output ripple voltage and output load transient response requirement. The output ripple voltage is a function of both the output capacitance and capacitor ESR. Considering the worst case and assume the capacitance value is COUT, the peak-to-peak ripple voltage can be derived in Equation 3. Thus, output capacitors with suitable ESR and capacitance value should be chosen to meet the ripple voltage ( ΔV) requirement. Minimum capacitance value is also calculated according to the demand of the load transient response. When the load current changes, the energy that the inductor needs to release or absorb is derived in Equation 4. At the same time, the energy that is delivered to or provided by the output capacitor can also be derived as shown in Equation 5. Copyright © 2009, Texas Instruments Incorporated Submit Documentation Feedback 11 Product Folder Link(s) :TPS51113 TPS51163 |
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