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TDA8362 参数 Datasheet PDF下载

TDA8362图片预览
型号: TDA8362
PDF下载: 下载PDF文件 查看货源
内容描述: 集成了PAL和PAL / NTSC TV处理器 [Integrated PAL and PAL/NTSC TV processors]
分类和应用: 电视
文件页数/大小: 36 页 / 203 K
品牌: NXP [ NXP ]
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Philips Semiconductors  
Objective specification  
Integrated PAL and PAL/NTSC TV  
processors  
TDA8360; TDA8361; TDA8362  
11. Measured with a source impedance of 75 , where:  
VO (black-to-white)  
S/N = 20 log  
---------------------------------------------------------  
Vm (rms) (B = 5 MHz)  
12. To obtain a good noise immunity of the AGC circuit the AGC detector is gated during the sync pulse. This gating is  
switched off during the vertical retrace to avoid disturbances of the signal amplitude due to phase errors of the  
incoming video signal which are caused by the head-switching of VCRs.  
13. When the leakage current of the capacitor exceeds this value it will result in a reduced performance of the AGC  
(amplitude variation during line or frame) but it will not result in a hang-up situation.  
14. The AFC slope is directly related to the Q-factor of the demodulator tuned circuit. The given AFC steepness is  
obtained with a Q-factor of 60. When a lower steepness is required this can be obtained by connecting an external  
resistor to the AFC output (the output impedance is 50 k). The AFC off-set is tested with a double sideband input  
signal and with the reference tuned circuit tuned to minimum AGC voltage (optimum tuning for the demodulator).  
15. For positive modulated signals the FM sound demodulator for the sound is not required. This is because the sound  
signal is amplitude modulated. Therefore the TDA8362 can be switched to positive modulation via the de-emphasis  
pin (pin 1). When switched to positive modulation the audio switch is set to ‘external’ so that the demodulated audio  
signal can be supplied to the input. The option between AM sound and SCART audio signals is achieved by means  
of an external switch.  
16. The sound IF input is combined with the AF volume control. The IF signal is internally AC coupled to the limiter  
amplifier. The volume control voltage must be supplied to this pin via a resistor.  
17. VI = 100 mV RMS; FM: 1 kHz, f = ±50 kHz.  
18. VI = 50 mV RMS, f = 4.5/5.5 MHz;  
FM: 70 Hz ±50 kHz deviation  
AM: 1 kHz at 30% modulation.  
19. VI = 100 mV RMS, 5.5 MHz; FM: 1 kHz, ±17.5 kHz deviation; 15 kHz bandwidth; audio attenuator at 6 dB.  
20. Audio attenuator at 20 dB; temperature range 10 to 50 °C.  
21. In the TDA8361 and TDA8362 the audio and CVBS switches are controlled via the chrominance input pin.  
Table 1 lists the various possibilities.  
When the DC voltage has a value between 3 and 5 V the switches are set to the S-VHS position. The chrominance  
trap is then switched off and separate Y and chrominance signals have to be applied to the inputs (the audio switch  
is set to external in this condition). The audio switch is also set to external when the IF amplifier is switched to positive  
modulation (see also note 15).  
22. Signal with negative-going sync. Amplitude includes sync pulse amplitude.  
23. This parameter is measured at nominal settings of the various control voltages.  
24. Burst amplitude; for a colour bar with 75% saturation the chrominance signal amplitude is 660 mV (p-p).  
25. Nominal contrast is specified as maximum contrast 3 dB. Nominal saturation as maximum 12 dB. The nominal  
brightness control voltage is 2.5 V.  
26. When the data blanking input pulse exceeds a level of 4 V the RGB outputs are blanked. In this condition it is possible  
to supply ‘On-Screen-Display’ signals to the outputs. This blanking overrules both the internal and external  
RGB signals.  
27. The 3 dB bandwidth of the circuit can be calculated by means of the following equation:  
1
2Q  
f 3 dB = fosc 1 –  
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March 1994  
24  
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