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UPC1909GS датащи(PDF) 24 Page - Renesas Technology Corp

номер детали UPC1909GS
подробное описание детали  BIPOLAR ANALOG INTEGRATED CIRCUIT
PDF  38 Pages
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производитель  RENESAS [Renesas Technology Corp]
домашняя страница  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

UPC1909GS датащи(HTML) 24 Page - Renesas Technology Corp

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Data Sheet G14309EJ2V0DS00
22
µµµµPC1909
The results of measuring fOSC vs. RT are shown in Figure 4-5 below, with CT as the parameter.
Figure 4-5. Relationship Between Oscillation Frequency (fOSC), Timing Capacitor (CT) and Timing Resistor (RT)
10
50
500
100
1000
50
100
CT = 220 pF
CT = 470 pF
CT = 1000 pF
RT - Timing Resistance - k
Ω
4.4 Dead Time Setting
The period in which OUT1 and OUT2 are simultaneously off is called dead time. This is an important parameter to
realize a zero-cross switch when active-clamping. To set the dead time, it is necessary to adjust both the oscillation
frequency and level shift parameters (for details of the oscillation frequency setting, refer to 4.3 Oscillator Settings).
4.4.1 Level shift setting
Whichever is higher of the DTC2 pin and FB pin voltages is compared with the triangle wave that is the internally level-
shifted wave of the CT pin (dCT). OUT2 is high level while dCT is higher than the DTC2 and FB voltages.
The triangle wave dCT, which controls OUT2, is generated by internally level-shifting the CT wave on the low potential
side. The amount of shift (Vd) is determined using the resistor (RCT2) connected between the CT2 and VREF pins.
Vd can be calculated from the following equation.
Vd
[V]
RCT2 [k
Ω] + 10
2
× 4.2
A general diagram of the level shift circuit (OLS) is shown in Figure 4-6, and the relationship between the oscillation
frequency (fOSC), the dead time (tqd), and resistor RCT2 is shown in Figure 4-7.



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