6
5. SECAM L/L’ sound switching circuit.
The microcontroller pin 4 is a three levels output. The voltage and configuration of this port is described below :
In FM mode the microcontroller is internally grounded to pin 4. The TDA9830 output is muted
6. Vertical deflection
The vertical driver circuit is a bridge configuration. The deflection coil is connected between the output amplifiers, which
are driven in phase opposition. The differential input circuit is voltage driven. The input circuit is especially intended for
direc connection to driver circuits which deliver symmetrical current signals, but is also suitable for asymmetrical currents.
The output current of these devices is converted to voltages at the input pins via resistors R305 and R303. The differential
input voltage is compared with the output current through the deflection coils measured as voltage across R307, which
provides internal feed-back information. The voltage across R307 is proportional to the output current.
Flyback voltage
The flyback voltage is determined by an additional supply voltage V
fb
. The principle of operation with two supply voltages
(class G) makes it possible to fix the supply voltage Vp optimum for the scan voltage and the second supply voltage V
fb
optimum for the flyback voltage. Using this method, very high efficiency is achieved. The supply voltage V
fb
is almost
totally available as fly-back voltage across the coil, this being possible due to the absence of a coupling capacitor.
Protection
The output circuit has protection circuits for :
- Too high die temperature
- overvoltage of output stage A
Guard circuit
The guard signal is not used by the TDA9346/ TDA9341 to blank the screen in case of a fault condition.
Damping resistor
For HF loop stability a damping resistor (R312) is connected across the deflection coil.
FUNCTIONAL DESCRIPTION
APPENDIX
Sound mode
Port configuration
Voltage
FM
Push Pull
Internally shorted to ground
AM L
Push Pull
Pull up to 3.3V
AM L’
High Impedance
Fixed by R709, R113, R114
Summary of Contents for DTC-14D9T
Page 5: ...4 CIRCUIT BLOCK DIAGRAM ...
Page 8: ... 7 ...
Page 9: ... 8 ...
Page 10: ... 9 ...
Page 11: ... 10 ...
Page 12: ... 11 ...
Page 41: ...15 IC DESCRIPTION APPENDIX ...
Page 42: ...16 IC DESCRIPTION APPENDIX ...
Page 43: ...17 IC DESCRIPTION APPENDIX ...
Page 44: ...18 IC DESCRIPTION APPENDIX ...
Page 45: ...19 IC DESCRIPTION APPENDIX LA78041 ...
Page 46: ...20 IC DESCRIPTION APPENDIX ...
Page 47: ...21 IC DESCRIPTION APPENDIX ...
Page 48: ...22 IC DESCRIPTION APPENDIX ...
Page 49: ...23 IC DESCRIPTION APPENDIX ...
Page 50: ...24 IC DESCRIPTION APPENDIX ...
Page 52: ...26 IC DESCRIPTION APPENDIX 6 STR W6753 ...
Page 53: ...27 IC DESCRIPTION APPENDIX ...
Page 54: ...28 IC DESCRIPTION APPENDIX ...
Page 55: ...29 IC DESCRIPTION APPENDIX ...
Page 56: ...30 IC DESCRIPTION APPENDIX ...
Page 57: ...31 IC DESCRIPTION APPENDIX ...
Page 58: ...32 IC DESCRIPTION APPENDIX ...
Page 59: ...33 IC DESCRIPTION APPENDIX ...
Page 60: ...34 IC DESCRIPTION APPENDIX ...
Page 61: ...35 IC DESCRIPTION APPENDIX ...
Page 62: ...36 IC DESCRIPTION APPENDIX ...
Page 63: ...37 IC DESCRIPTION APPENDIX ...
Page 64: ...38 IC DESCRIPTION APPENDIX ...
Page 65: ...39 IC DESCRIPTION APPENDIX ...
Page 66: ...40 IC DESCRIPTION APPENDIX ...
Page 67: ...41 IC DESCRIPTION APPENDIX ...
Page 68: ...42 IC DESCRIPTION APPENDIX ...
Page 69: ...43 IC DESCRIPTION APPENDIX ...
Page 70: ...44 IC DESCRIPTION APPENDIX ...