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TDA7338 数据表(PDF) 6 Page - STMicroelectronics |
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TDA7338 数据表(HTML) 6 Page - STMicroelectronics |
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6 / 11 page ![]() frequency is reduced down to 1kHz to improve the signal to noise ratio. Furthermore the condi- tions of the stereo separation (see fig.2) can be controlled through the signal applied to Pin 16 (VSB). Both signal levels (VSB and VHCC) are referred to Pin 17 (VR), with the characteristic that the control range is 11% of VR. By modifying the feedback resistor value of the output stages (Pin 9 - 10, Pin 11 - 12) the total gain of the stereodecoder can be modified. Pin 7 and Pin 8 have an additional function. By pulling them to ground the VCO-OFF (Pin 7) and the MUTE (Pin 8) function are activated. The MUTE signal disconnects the MPX-signal from the circuit, while in combination with VCO-OFF also the output buffers are disconnected from the circuit. In this mode the output buffers can be used for AM-stereo, cassette play back and other purposes. AM Mono Mode By selecting VCO-OFF (Pin 7 to GND) the VCO is switched off and the SB and HCC are disabled. The deemphasis time constant is changed to 40 µs(fc = 4KHz). DESCRIPTION OF THE NOISE BLANKER In the normal automotive environment the MPX signal is disturbed by ignition spikes, motors and high frequency switches etc. The aim of the noise blanker part is to cancel the influence of the spikes produced by these compo- nents. Therefore the output of the stereodecoder is switched off for a time of 40 µs (average spike duration). In a first stage the spikes must be detected but to avoid a wrong triggering on high frequency noise a complex trigger control is implemented. Behind the trigger stage a pulse former generates the 40 µs ”blanking” pulse. This duration of 40 µs can be varied by changing the capacitor at pin 7. 1.1 Trigger Path The incoming MPX signal is highpass-filtered, amplified and rectified (block RECT-PEAK). The second order highpass-filter has a corner-fre- quency of 140KHz. The rectifier signal, RECT, is used to generate by peak-rectification a signal called PEAK, which is available at the PEAK pin 8. Also noise with a frequency >100KHz increases the PEAK voltage. The value of the PEAK voltage influences the trigger threshold voltage Vth (block ATC). The higher the noise level the higher the threshold. Both signals, RECT and PEAK+Vth are fed to a comparator (block PEAK-COMP) which outputs a sawtooth-shaped waveform at the TBLANK pin 7. A second comparator (block BLANK-COMP) forms the internal blanking duration of 40 µs. The noise blanker is supplied by his own biasing circuit (block BIAS-MONO) to avoid any cross talk to the signal path (block BIAS-MONO). 1.2 Noise Controlled Threshold Adjustment (ATC) The behaviour of the noise controlled threshold adjustment is shown in fig. 4. It can be influenced slightly by adding a resistor in parallel to the PEAK capacitor at Pin 8 either to GND or VDD.A resistor to GND will decrease the threshold whereas a resistor to VDD will increase it. But it is recommended to choose one of the internal thresholds by use of the PROG pin (see table 1) 1.3 Automatic Threshold Control by the Stereoblend voltage (ATC-SB) Besides the noise controlled threshold adjustment there is an additional possibility for influencing the trigger. It is controlled by the difference between Vsb and Vr, similar to the Stereoblend. The rea- son for implementing such a second control will be explained in the following: 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 trig- ger adjustment is fixed (fig.5). But in some cases the behaviour of the noiseblanker can be im- proved by increasing the threshold even in a re- gion of higher fieldstrength, for the MPX signal often shows distortion in this range, which leads to an undesired triggering. Because of the overlap of this range and the range of the stereo/mono transition it can be con- trolled by Vsb and Vr. This threshold increase is programmable(see fig. 5). 1.4 Blend Mode Another possibility to avoid a disturbing triggering on modulation is to use the spikes on the field- strength signal (LEVEL pin). But in the range of higher fieldstrength the signal saturates and no more spike detection is possible. For this reason the TDA7338 offers the ”BLEND MODE”. When ”BLEND MODE” is activated a smooth transition between the LEVEL- and the MPX-signal is used to detect the spikes either on LEVEL or on MPX. In the lower fieldstrength range mainly the LEVEL-signal is used whereas in the higher range mainly the MPX is used. This switching is controlled also by the normal Stereoblend signal to avoid additional pins. ”BLEND MODE OFF” is activated by connecting the LEVEL pin to GND (LEVEL must be also con- nected to GND if not used). TDA7338 6/11 |
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