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DF06M Arkusz danych(PDF) 30 Page - STMicroelectronics |
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DF06M Arkusz danych(HTML) 30 Page - STMicroelectronics |
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30 / 42 page ![]() AN1262 APPLICATION NOTE 30/42 must be accounted for as well (the minimum specified value will be considered) and the turn number may result quite high. 17 PRIMARY FEEDBACK IMPLEMENTATION In this approach, which will be considered with regards to the L6590 and the L6590D only, the voltage generated by the self-supply winding is sensed and regulated. This solution, shown in fig. 16, is cheap because no opto- coupler is needed, but provides poor regulation, especially as a result of load changes. Ideally, the voltage generated by the self supply winding and the output voltage should be related by the Naux/ Ns turn ratio only. Actually, numerous non-idealities, mainly transformer's parasitics, cause the actual ratio to deviate from the ideal one. Line regulation is quite good, in the range of ± 2%, whereas load regulation is about ±5%. Output voltage tolerance is instead in the range of ±10%. The resulting transfer function is: Table 21 shows how its quantities are defined. As to the selection of Vcc, the same considerations concerning the circuit of fig. 15 apply to the circuit in fig. 16a. Such limitation is not in the circuit of fig. 16b. Figure 16. Primary feedback: circuits Table 21. G1(j ω) Implementation: Primary Feedback The value of the resistor Rs (R’s for the circuit of fig. 16b) in series to the bias diode will be selected to achieve minimum load regulation and its value may range from few units to some hundred ohm. Symbol Definition RL RH CFp CFs RF G1 j ω () V COMP ∆ V out ∆ ----------------------- N aux N S ------------ V CO MP ∆ V CC ∆ ----------------------- ⋅ = N aux N S ------------ 1 R H C Fs C Fp + () ⋅ -------------------------------------------- 1 j ω ----- 1j + ω R F C Fs ⋅⋅ 1j + ω R F C Fs C Fp ⋅ C Fs C Fp + --------------------------- ⋅⋅ -----------------------------------------------------------. ⋅⋅ ⋅ == a) b) L6590 L6590D Vcc Naux RH RL RF CFs Rs VFB COMP CFp 22 µF L6590 L6590D Vcc Naux RH RL RF CFs R's VFB COMP CFp Rs 22 µF 220 nF R L 15 V V CC ----------- k Ω [] > R H V CC 2.5 – 2.5 ------------------------- R L ⋅ = C Fp N aux N S ------------ f Z f P ----- 1 G1 0 R H ⋅ ----------------------- ⋅⋅ = C Fs C Fp f P f Z ----- 1 – ⋅ = R F 1 2 π f Z C Fs ⋅⋅ ⋅ ----------------------------------- = |
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