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TDA9111 数据表(PDF) 30 Page - STMicroelectronics |
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TDA9111 数据表(HTML) 30 Page - STMicroelectronics |
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30 / 43 page ![]() TDA9111 30/43 3 VERTICAL PART 3.1 Function When the synchronization pulse is not present, an internal current source sets the free running fre- quency. For an external capacitor COSC = 150nF, the typical free running frequency is 100Hz. The typical free running frequency can be calculat- ed by: fo(Hz) = 1.5 . 10-5 . A negative or positive TTL level pulse applied on Pin 2 (VSYNC) as well as a TTL composite sync on Pin 1 can synchronize the ramp in the range [fmin, fmax] (See Figure 16 on page 31). This fre- quency range depends on the external capacitor connected on Pin 22. A 150nF ( ± 5%) capacitor is recommended for 50Hz to 185Hz applications. If a synchronization pulse is applied, the internal oscillator is synchronized immediately but with wrong amplitude. An internal correction then ad- justs it in less than half a second. The top value of the ramp (Pin 22) is sampled on the AGC capaci- tor (Pin 20) at each clock pulse and a transcon- ductance amplifier modifies the charge current of the capacitor so as to adjust the amplitude to the right value. The Read Status register provides the vertical Lock-Unlock and the vertical sync polarity informa- tion. We recommend to use an AGC capacitor with low leakage current. A value lower than 100nA is man- datory. A good stability of the internal closed loop is reached with a 470nF ± 5% capacitor value on Pin 20 (VAGC). 3.2 I 2C Control Adjustments S and C correction shapes can then be added to this ramp. These frequency-independent S and C corrections are generated internally. Their ampli- tudes are adjustable by their respective I2C regis- ters. They can also be inhibited by their select bits. Finally, the amplitude of this S and C corrected ramp can be adjusted by the vertical ramp ampli- tude control register. The adjusted ramp is available on Pin 23 (VOUT)to drive an external power stage. The gain of this stage can be adjusted ( ± 25%) de- pending on its register value. The mean value of this ramp is driven by its own I 2C register (vertical position). Its value is VPOS = 7/16 . VREF-V ± 400mV. Usually VOUT is sent through a resistive divider to the inverting input of the booster. Since VPOS de- rives from VREF-V, the bias voltage sent to the non- inverting input of the booster should also derive from VREF-V to optimize the accuracy (see Appli- cation Diagram). 3.3 Vertical Moiré By using the vertical Moiré, VPOS can be modulat- ed from frame to frame. This function is intended to cancel the fringes which appear when the line to line interval is very close to the CRT vertical pitch. The amplitude of the modulation is controlled by register VMOIRE on sub-address 0C and can be switched-off via the control bit D8. 1 COSC |
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