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Pioneer YPM-2306ZF サービスマニュアル
YPM-2306ZF
2) RF Amplifier and RFAGC Amplifier
The photo-detector outputs (A + C) and (B + D) are
added, amplified and equalized on this LSI and then
output to the RFI terminal as the RF signal. (The eye
pattern can be checked by this signal.)
The RFI voltage low frequency component is :
RFI = (A + B + C + D) × 3.2
RFI is used on the FOK generator circuit and RF offset
adjusting circuit.
R207 is an offset resistor for maintaining the bottom
reference voltage of the RFI signal at 1.5 VDC. The D/A
output used for the RF offset adjustment (to be
described later) is entered via this resistor.
After the RFI signal from Pin 77 is externally AC cou-
pled, entered to Pin 76 again, then amplified on the
RFAGC amplifier to obtain the RFO signal.
The RFAGC adjustment function (to be described later)
built-in the LSI is used for switching feedback gain of
the RFAGC amplifier so that the RFO output may go to
1.5 ± 0.3Vpp.
The RFO signal is used for the EFM, DFCT, MIRR and
RFAGC adjustment circuits.
CN101
10k
A+C
6
82
83
84
B+D
13
85
10k
30
C216 3pF
R204
R205
10k
10k
C217
27pF
R206
R207
1.8k
12k
RFI
66
80
79
77
D/A
10k
16k
10k
16k
Fig.3 : RFAMP, RFAGC AND FOK CIRCUIT
3) RFOK Circuit
This circuit generates the signal that is used for indicat-
ing the timing of closing the focus or state of the focus
close currently being played. This signal is output from
Pin 2 as the FOK signal. It goes high when the focus
close and in-play.
The RFOK signal is generated by holding DC level of the
RFI at its peak with the succeeding digital section, then
comparing it at a specific threshold level. Thus, the
RFOK signal goes high even if the pit is absent. It indi-
cates that the focus close can take place on the disc mir-
ror surface, too.
This signal is also supplied to the micro computer via
the low pass filter as the FOK signal and used for the
protection and the RF amplifier gain switching.
C215
C213
0.1µF
3900pF
AGCI
RFO
76
75
12k
10k
FOK
A/D
CIRCUIT
74
TO EFM
CIRCUIT
4
FOK