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TS615IPWT 数据表(PDF) 26 Page - STMicroelectronics |
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TS615IPWT 数据表(HTML) 26 Page - STMicroelectronics |
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26 / 27 page ![]() TS615 26/27 Unlike the level Vo° required for a passive imped- ance, Vo° will be smaller than 2Vo in our case. Let us write Vo°=kVo with k the matching factor vary- ing between 1 and 2. Assuming that the current through R3 is negligible, it comes the following re- sistance divider: After choosing the k factor, Rs will equal to 1/2RL(k-1). A good impedance matching assumes: From (eq4) and (eq5) it becomes: By fixing an arbitrary value of R2, (eq6) gives: Finally, the values of R2 and R3 allow us to extract R1 from (eq1), and it comes: with GL the required gain. Figure 77 : Components Calculation for Impedance Matching Implementation Ro kV oRL RL 2R s1 + ------------------------------ = Ro 1 2 --- RL eq5 () , = R2 R3 --------1 2Rs RL ----------- eq6 () , – = GL (gain for the loaded system) GL is fixed for the application requirements GL=Vo/Vi=0.5(1+2R2/R1+R2/R3)/(1-R2/R3) R1 2R2/[2(1-R2/R3)GL-1-R2/R3] R2 (=R4) Abritrary fixed R3 (=R5) R2/(1-Rs/0.5RL) Rs 0.5RL(k-1) Load viewed by each driver kRL/2 R3 R2 1 2Rs RL ----------- – --------------------- = R1 2R2 21 R2 R3 -------- – GL 1 – R2 R3 -------- – ----------------------------------------------------------- eq7 () , = |
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