
21
Note:
• Connect a probe (10: 1) of the oscilloscope test point
for adjustment.
• Connect ground (
-
) terminal of oscilloscope probe to
TP3 (VREF) for all adjustment.
1. Focus Bias Adjustment
Make the focus bias adjustment when replacing and repairing
the optical block.
Oscilloscope
(DC range)
+
–
TP2 (RF)
TP3 (VREF)
1) Connect an oscilloscope to test points TP2 (RF) and TP3
(VREF).
2) Turn on the power switch.
3) Insert test disc TCD-782 (YEDS-18) and play back the
second program.
4) Adjust SFR101 so that RF signal of the test point TP2 (RF) is
MAX and CLEARREST.
0V
EYE PATTERN
must be CLEAR and MAX.
MAX
1.4
±
0.1 Vp-p
VOLT/DIV: 0.5V
TIME/DIV: 0.5
µ
S
Note:
The current of the laser signal can be checked with the
voltages on both sides of R46 (voltage across 10
Ω
).
The difference for the specified value shown on the label
must be within
±
6.0mA.
KSS-213B
15165
SG442
44.2mA
Voltage across R46
10
Ω
Laser current Iop =
2. Tracking Balance Check
Oscilloscope
(DC range)
+
–
TP1 (TE)
TP3 (VREF)
1) Connect an oscilloscope to test points TP1 (TE) and TP3
(VREF).
2) Start up the CD test mode.
3) Insert the test disc TCD-782 (YEDS-18) and enter the
traverse mode of the CD test mode.
4) Confirm that the traverse waveform on an oscilloscope is
vertically symmetrical as shown in the figure below.
5) After confirming the waveform, release the CD test mode.
A
B
A=B
VREF
VOLT/DIV: 20mV
TIME/DIV: 1mS
Summary of Contents for PZ3MD
Page 7: ...8 7 BLOCK DIAGRAM ...
Page 8: ...1 2 3 4 5 6 7 8 9 10 11 12 13 14 A B C D E F G H I J K 10 9 WIRING ...
Page 9: ...12 11 SCHEMATIC DIAGRAM ...
Page 31: ...8 7 BLOCK DIAGRAM ...
Page 32: ...1 2 3 4 5 6 7 8 9 10 11 12 13 14 A B C D E F G H I J K 10 9 WIRING ...
Page 33: ...12 11 SCHEMATIC DIAGRAM ...
Page 52: ...8 7 BLOCK DIAGRAM ...
Page 53: ...1 2 3 4 5 6 7 8 9 10 11 12 13 14 A B C D E F G H I J K 10 9 WIRING ...
Page 54: ...12 11 SCHEMATIC DIAGRAM ...