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LTC3403 データシート(PDF) 14 Page - Linear Technology |
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LTC3403 データシート(HTML) 14 Page - Linear Technology |
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14 / 16 page ![]() 14 LTC3403 3403f Figure 7. Suggested Layout Figure 8 8 7 6 5 1 2 3 4 VOUT REF MODE RUN GDR VIN GND SW RREF CREF L1 COUT CIN LTC3403 TO DAC VIA TO REF VIA TO GND VIA TO VIN 3403 F07 SW GDR VOUT 4 1 8 LTC3403 LTC3403 F08 VIN 2.7V TO 5V VOUT VIN MODE RUN REF 2 6 5 7 GND DAC 3 CIN † 10 µF CER COUT** 4.7 µF CER 2.2 µH* 1000pF 10k * ** † MURATA LQH32CN2R2M11 TAIYO YUDEN JMK212BJ475MG TAIYO YUDEN JMK212BJ106MN PC Board Layout Checklist When laying out the printed circuit board, the following checklist should be used to ensure proper operation of the LTC3403. These items are also illustrated graphically in Figures 6 and 7. Check the following in your layout: 1. The power traces, consisting of the GND trace, the SW trace and the VIN trace should be kept short, direct and wide. 2. Does the (+) plate of CIN connect to VIN as closely as possible? This capacitor provides the AC drive to the internal power MOSFETs. 3. Keep the (–) plates of CIN and COUT as close as possible. Design Example As a design example, assume the LTC3403 is used in a single lithium-ion battery-powered cellular phone applica- tion. The VIN will be operating from a maximum of 4.2V down to about 2.7V. The load current requirement is a maximum of 0.6A but most of the time it will be in standby mode, requiring only 2mA. Efficiency at both low and high load currents is important. Output voltage is 2.5V. With this information we can calculate L using Equation (1), L fI V V V L OUT OUT IN = ∆ 1 1 ()( ) – (2) Substituting VOUT = 2.5V, VIN = 4.2V, IL = 240mA and f = 1.5MHz in Equation (2) gives: L V MHz mA V V H = =µ 25 1 5 240 1 25 42 281 . .( ) – . . . A 2.2 µH inductor works well for this application. For best efficiency choose a 720mA or greater inductor with less than 0.2 Ω series resistance. CIN will require an RMS current rating of at least 0.3A ≅ LOAD(MAX)/2 at temperature and COUT will require an ESR of less than 0.25 Ω. In most cases, a ceramic capaci- tor will satisfy this requirement. APPLICATIO S I FOR ATIO |
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