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TDA7410ND Fiches technique(PDF) 23 Page - STMicroelectronics |
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TDA7410ND Fiches technique(HTML) 23 Page - STMicroelectronics |
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23 / 34 page ![]() TDA7410ND Functional description of the noiseblanker 23/34 due to the higher noise, which is also rectified. With increasing of the PEAK voltage the trigger threshold increases, too. This particular gain is programmable in 4 steps (see Figure 9). 7.3 Automatic threshold control Besides the noise controlled threshold adjustment there is an additional possibility for influencing the trigger threshold. It is depending on the stereoblend control. The point where the MPX signal starts to become noisy is fixed by the RF part. Therefore also the starting point of the normal noise-controlled trigger adjustment is fixed (Figure 11). In some cases the behaviour of the noiseblanker can be improved by increasing the threshold even in a region of higher fieldstrength. Sometimes a wrong triggering occures for the MPX signal often shows distortion in this range which can be avoided even if using a low threshold. Because of the overlap of this range and the range of the stereo/mono transition it can be controlled by stereoblend. This threshold increase is programmable in 3 steps or switched off with bits D0 and D1 of the fieldstrength control byte. 7.4 Over deviation detector If the system is tuned to stations with a high deviation the noiseblanker can trigger on the higher frequencies of the modulation. To avoid this wrong behaviour, which causes noise in the output signal, the noiseblanker offers a deviation dependent threshold adjustment. By rectifying the MPX signal a further signal representing the actual deviation is obtained. It is used to increase the PEAK voltage. Offset and gain of this circuit are programmable in 3 steps with the bits D6 and D7 of the stereodecoder byte (the first step turns off the detector, see Figure 10). 7.5 Test Mode During the test mode which can be activated by setting bit D0 of the testing byte and bit D5 of the subaddress byte to ”1” several internal signals are available at the CASSR pin. During this mode the input resistance of 100kOhm is disconnected from the pin. The internal signals available are shown in the software specification. Figure 17. Application Example 100nF 100nF 100nF 100nF 22 μF 100nF 100nF 100nF VDD CASS_L CASS_R CDR CDG CDL AUX_R AUX_L CASS_L CASS_R CDR CDG CDL AUX_R AUX_L CREF 10 μF OUT_LF OUT_RF OUT_LR OUT_RR MPX AM SDA SCL MUTE LEVEL GND OUT_LF OUT_RF OUT_LR OUT_RR MPX AM SDA SCL MUTE LEVEL TDA7410D 100nF 100nF TDA7410ND |
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