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7
WSW05
(1st dial tone and busy tone detection
)
Selector
No.
Function
Setting and Specifications
1
|
3
1st dial tone detection
No. 1 2 3
0 0 0
:
3.5 sec. WAIT
0 0 1
:
7.0 sec. WAIT
0 1 0
:
10.5 sec. WAIT
0 1 1
:
14.0 sec. WAIT
1 0 0
:
17.5 sec. WAIT
1 0 1
:
21.0 sec. WAIT
1 1 0
:
24.5 sec. WAIT
1 1 1
:
Detection (Without WAIT)
4
Max. pause time allowable for
remote ID code detection
0 : 2 seconds
1: 1 second
5
6
Busy tone detection in automatic
sending mode
No. 5 6
0 0 : No detection
0 1 : Detection only after dialing
1 0 : No detection
1 1 : Detection before and after dialing
7
Busy tone detection in automatic
receiving mode
0 : Yes
1: No
8
Not used.
NOTE:
Selectors 5 through 7 are not applicable in those countries where no busy tone detection is
supported.
Selectors 1 through 3: 1st dial tone detection
These selectors activate or deactivate the 1st dial tone detection function which detects the 1st dial
tone issued from the PSTN when a line is connected to the PSTN.
Setting all of these selectors to "1" activates the dial tone detection function so that the equipment
starts dialing upon detection of a dial tone when a line is connected. For the detecting conditions
of the 1st dial tone, refer to WSW07 and WSW08.
Other setting combinations deactivate the dial tone detection function so that the equipment starts
dialing after the specified WAIT (3.5, 7.0, 10.5, 14.0, 17.5, 21.0, or 24.5 seconds) without
detection of a dial tone when a line is connected to the PSTN.
Selector 4:
Max. pause time allowable for remote ID code detection
This selector sets the maximum pause time allowable for detecting the second digit of a remote ID
code after detection of the first digit in remote reception.
If selector 4 is set to "0" (2 seconds), for instance, only a remote ID code whose second digit is
detected within 2 seconds after detection of the first digit will become effective so as to activate
the remote function.
Summary of Contents for Laser MFC-4800
Page 5: ...CHAPTER 1 GENERAL DESCRIPTION ...
Page 16: ...CHAPTER 2 INSTALLATION ...
Page 21: ...CHAPTER 3 THEORY OF OPERATION ...
Page 23: ...3 1 3 1 OVERVIEW ...
Page 31: ...3 9 Location of Sensors and Actuators ...
Page 33: ...CHAPTER 4 DISASSEMBLY REASSEMBLY AND LUBRICATION ...
Page 39: ...4 4 Disassembly Order Flow ...
Page 44: ...4 9 6 Turn the ASF upside down then remove the registration sensor actuator ...
Page 86: ...4 48 2 Scanner drive unit 3 Separation roller ...
Page 87: ...4 49 4 Document feed roller ...
Page 88: ...CHAPTER 5 MAINTENANCE MODE ...
Page 95: ...5 6 Scanning Compensation Data List a b c d e ...
Page 102: ...5 13 Key Button Entry Order ...
Page 110: ...CHAPTER 6 ERROR INDICATION AND TROUBLESHOOTING ...
Page 140: ...FAX2800 FAX2900 FAX3800 MFC4800 FAX8070P MFC9030 MFC9070 Appendix 1 EEPROM Customizing Codes ...
Page 143: ...FAX2800 FAX2900 FAX3800 MFC4800 FAX8070P MFC9030 MFC9070 Appendix 2 Firmware Switches WSW ...
Page 190: ...A Main PCB 1 5 ...
Page 191: ...A Main PCB 2 5 ...
Page 192: ...A Main PCB 3 5 ...
Page 193: ...A Main PCB 4 5 ...
Page 194: ...A Main PCB 5 5 ...
Page 195: ...B NCU PCB U S A Canada ...
Page 196: ...B NCU PCB U K Norway Netherlands Finland Denmark Sweden ...
Page 197: ...B NCU PCB Germany France Belgium Switzerland Ireland Austria Spain Italy South Africa ...
Page 198: ...B NCU PCB Asia Oceania 1 2 ...
Page 200: ...C Control Panel PCB ...
Page 201: ...D Power Supply PCB 100 120V Low voltage power supply ...
Page 202: ...D Power Supply PCB 200 240V Low voltage power supply Europe ...
Page 203: ...D Power Supply PCB 200 240V Low voltage power supply Asia Oceania ...
Page 204: ...D Power Supply PCB High voltage power supply ...