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MPZ2012S101A 数据表(PDF) 14 Page - Texas Instruments |
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MPZ2012S101A 数据表(HTML) 14 Page - Texas Instruments |
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14 / 28 page ![]() www.ti.com SETTING THE BOOST VOLTAGE CC 0.5 (R1 + R2) V = R1 ´ æ ö ç ÷ è ø (1) INDUCTOR SELECTION CC L CC DD V I = I V 0.8 æ ö ´ ç ÷ ´ è ø (2) DD CC DD L CC V (V V ) L = I f V boost ´ - D ´ ´ (3) TPA2013D1 SLOS520 – AUGUST 2007 Use Equation 1 to determine the value of R1 for a given VCC. The maximum recommended value for VCC is 5.5 V. The typical value of the VCCFB pin is 500 mV. The current through the resistor divider should be about 100 times greater than the current into the VCCFB pin, typically 0.01 μA. Based on those two values, the recommended value of R2 is 500 k Ω. VCC must be greater than 3 V and less than or equal to 5.5 V. SURFACE MOUNT INDUCTORS Working inductance decreases as inductor current increases. If the drop in working inductance is severe enough, it may cause the boost converter to become unstable, or cause the TPA2013D1 to reach its current limit at a lower output power than expected. Inductor vendors specify currents at which inductor values decrease by a specific percentage. This can vary by 10% to 35%. Inductance is also affected by dc current and temperature. TPA2013D1 INDUCTOR EQUATIONS Inductor current rating is determined by the requirements of the load. The inductance is determined by two factors: the minimum value required for stability and the maximum ripple current permitted in the application. Use Equation 2 to determine the required current rating. Equation 2 shows the approximate relationship between the average inductor current, IL, to the load current, load voltage, and input voltage (ICC, VCC, and VDD, respectively). Insert ICC, VCC, and VDD into Equation 2 to solve for IL. The inductor must maintain at least 90% of its initial inductance value at this current. The minimum working inductance is 2.2 μH. A lower value may cause instability. Ripple current, ΔIL, is peak-to-peak variation in inductor current. Smaller ripple current reduces core losses in the inductor as well as the potential for EMI. Use Equation 3 to determine the value of the inductor, L. Equation 3 shows the relationship between inductance L, VDD, VCC, the switching frequency, fboost, and ΔIL. Insert the maximum acceptable ripple current into Equation 3 to solve for L. ΔIL is inversely proportional to L. Minimize ΔIL as much as is necessary for a specific application. Increase the inductance to reduce the ripple current. Note that making the inductance too large will prevent the boost converter from responding to fast load changes properly. Typical inductor values for the TPA2013D1 are 4.7 μH to 6.8 μH. Select an inductor with a small dc resistance, DCR. DCR reduces the output power due to the voltage drop across the inductor. 14 Submit Documentation Feedback Copyright © 2007, Texas Instruments Incorporated Product Folder Link(s): TPA2013D1 |
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