43
KX-FP365CX / KX-FM388CX
6.6.2.
Modem Circuit Operation
The modem (IC5) has all the hardware satisfying the CCITT standards mentioned previously.
When the ASIC IC1 (61) is brought to a low level, the modem (IC5) is chip-selected and the resistors inside IC are selected by the
select signals from ASIC (IC1) ADR0-ADR4. The commands are written through the data bus, and all the processing is controlled
by the ASIC (IC1) according to CCITT procedures. The INT signal dispatched from IRQn (pin 100 of IC5) to ASIC (IC1) when the
transmission data is accepted and the received data is demodulated, the ASIC (IC1) implements post processing. This modem
(IC5) has an automatic application equalizer.
With training signal 1 or 2 during G3 reception, it can automatically establish the optimum equalizer. The modem (IC5) operates
using the 32.256 MHz clock (X4).
1.
Facsimile Transmission
The digital image data on the data bus is modulated in the modem (IC5), and sent from pin 56 via Analogue SW IC11, amplifier
IC10 and the NCU section to the telephone line.
Refer to
2.
Facsimile Reception
The analogue image data which is received from the telephone line passes through the NCU section and enters pin 47 of the
modem (IC5). The signals that enter pin 47 of the modem (IC5) are demodulated in the board to digital image signals, then placed
on the data bus.
In this case, the image signals from the telephone line are transmitted serially. Hence, they are placed on the bus in 8 bit units.
Here, the internal equalizer circuit reduces the image signals to a long-distance receiving level.
This is designed to correct the characteristics of the frequency band centered about 3 kHz and maintain a constant receiving sen-
sitivity. It can be set in the service mode.
3.
DTMF Transmission (Monitor tone)
The DTMF signal generated in the modem (IC5) is output from pin 56, and is then sent to the circuit on the same route as used
for facsimile transmission.
Refer to
(DTMF Monitor Tone)
Refer to
4.
Call Tone Transmission
This is the call signal which is generated in the ASIC (IC1) and sent to the speaker.
5.
Busy/Dial Tone Detection
The path is the same as FAX receiving. When it is detected, the carrier detect bit of the resistor in the modem (IC5) becomes 1,
and this status is monitored by the ASIC (IC1).
6.
Caller ID Detection
The caller ID signal which is received from the telephone line/passes through IC101 pin (2-1). And it enters pin 50 of the modem
(IC5).
Summary of Contents for KX-FM388CX
Page 12: ...12 KX FP365CX KX FM388CX 6 Technical Descriptions 6 1 Connection Diagram ...
Page 14: ...14 KX FP365CX KX FM388CX 6 2 1 General Block Diagram ...
Page 16: ...16 KX FP365CX KX FM388CX 6 3 2 Memory Map ...
Page 25: ...25 KX FP365CX KX FM388CX 6 4 2 Block Diagram ...
Page 27: ...27 KX FP365CX KX FM388CX ...
Page 78: ...78 KX FP365CX KX FM388CX Countermeasure ...
Page 79: ...79 KX FP365CX KX FM388CX REFERENCE Test Mode P 63 ...
Page 80: ...80 KX FP365CX KX FM388CX REFERENCE Test Mode P 63 ...
Page 81: ...81 KX FP365CX KX FM388CX REFERENCE Test Mode P 63 ...
Page 82: ...82 KX FP365CX KX FM388CX REFERENCE Test Mode P 63 ...
Page 83: ...83 KX FP365CX KX FM388CX ...
Page 84: ...84 KX FP365CX KX FM388CX ...
Page 85: ...85 KX FP365CX KX FM388CX REFERENCE Test Mode P 63 ...
Page 89: ...89 KX FP365CX KX FM388CX ...
Page 114: ...114 KX FP365CX KX FM388CX ...
Page 121: ...121 KX FP365CX KX FM388CX I O and Pin No Diagram ...
Page 124: ...124 KX FP365CX KX FM388CX 12 5 5 2 NG Example ...
Page 130: ...130 KX FP365CX KX FM388CX 12 5 8 2 Troubleshooting Flow Chart ...
Page 136: ...136 KX FP365CX KX FM388CX 12 5 12 Thermal Head Section Note Refer to Thermal Head P 26 ...
Page 139: ...139 KX FP365CX KX FM388CX 13 Service Fixture Tools ...
Page 142: ...142 KX FP365CX KX FM388CX 14 1 2 How to Remove the Thermal Head ...
Page 144: ...144 KX FP365CX KX FM388CX 14 2 2 How to Remove the Pickup Roller ...
Page 145: ...145 KX FP365CX KX FM388CX 14 2 3 How to Remove the Paper Exit Roller and Cassette Lever ...
Page 146: ...146 KX FP365CX KX FM388CX 14 3 Lower Cabinet Section 14 3 1 How to Remove the Bottom Frame ...
Page 147: ...147 KX FP365CX KX FM388CX 14 3 2 How to Remove the Digital Analog Interface and Sensor Boards ...
Page 148: ...149 KX FP365CX KX FM388CX 14 3 4 How to Remove the Gear Block and Separation Roller ...
Page 149: ...148 KX FP365CX KX FM388CX 14 3 3 How to Remove the Power Supply Board and AC cord ...
Page 150: ...150 KX FP365CX KX FM388CX 14 3 5 How to Remove the Component parts of Gear Block ...
Page 153: ...153 KX FP365CX KX FM388CX 14 4 3 How to Remove the Separation Rubber ...
Page 154: ...154 KX FP365CX KX FM388CX 14 5 Installation Position of the Lead Wires ...
Page 155: ...155 KX FP365CX KX FM388CX ...
Page 168: ...168 KX FP365CX KX FM388CX 16 1 4 Power Supply Board 16 1 5 Interface Board ...
Page 170: ...170 KX FP365CX KX FM388CX 16 3 Test Chart 16 3 1 ITU T No 1 Test chart ...
Page 171: ...171 KX FP365CX KX FM388CX 16 3 2 ITU T No 2 Test Chart ...
Page 172: ...172 KX FP365CX KX FM388CX 16 3 3 Test Chart ...
Page 173: ...173 KX FP365CX KX FM388CX Memo ...
Page 194: ...194 KX FP365CX KX FM388CX 20 1 2 Operation Cover Section ...
Page 195: ...195 KX FP365CX KX FM388CX 20 1 3 Back Cover Section ...
Page 196: ...196 KX FP365CX KX FM388CX ...
Page 197: ...197 KX FP365CX KX FM388CX 20 1 4 Upper Cabinet Section ...
Page 198: ...198 KX FP365CX KX FM388CX 20 1 5 Lower Cabinet Section ...
Page 199: ...199 KX FP365CX KX FM388CX 20 1 6 Gear Block Section 20 1 7 Screws ...
Page 200: ...200 KX FP365CX KX FM388CX 20 1 8 Accessories and Packing Materials ...