Sony MiniDisc Player MZ E90 User Manual

MZ-E60  
SERVICE MANUAL  
US Model  
Canadian Model  
AEP Model  
E Model  
(Photo: Silver)  
US and foreign patents licensed from Dolby  
Laboratories Licensing Corporation.  
Model Name Using Similar Mechanism MZ-E90  
MD Mechanism Type  
MT-MZE60-169  
LCX-2E  
Optical Pick-up Mechanism Type  
SPECIFICATIONS  
General  
Power requirements  
One LR6 (size AA) battery (not supplied)  
Battery operation time  
You can check the battery condition with the  
battery indication which is displayed while using  
the player.  
t Battery power decreasing  
v
r Weak battery  
v
e The battery has gone out. “LOW BATT”  
flashes in the display on the remote control,  
and the power goes off.  
System  
Audio playing system  
MiniDisc digital audio system  
Laser diode properties  
Material: GaAlAs  
Wavelength: λ = 790 nm  
Emission duration: continuous  
Laser output: less than 44.6 µW  
(This output is the value measured at a distance  
of 200 mm from the objective lens surface on the  
optical pick-up block with 7 mm aperture.)  
Revolutions  
800 rpm to 1,800 rpm  
Error correction  
Advanced Cross Interleave Reed Solomon  
Code (ACIRC)  
Sampling frequency  
44.1 kHz  
Coding  
Battery Life  
Approximately 12 hours of playback can be  
expected with one LR6 (size AA) alkaline battery  
(not supplied).  
Note  
The battery life may shorter depending on  
operating conditions and temperature of the  
location.  
Adaptive TRansform Acoustic Coding (ATRAC)  
Modulation system  
EFM (Eight to Fourteen Modulation)  
Number of channels  
2 stereo channels  
1 monaural channel  
Frequency response  
20 to 20,000 Hz ± 3 dB  
Wow and Flutter  
Continued on next page –  
Below measurable limit  
Outputs  
Headphones: stereo mini-jack,  
maximum output level 5 mW + 5 mW, load  
impedance 16 ohms  
PORTABLE MINIDISC PLAYER  
MICROFILM  
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TABLE OF CONTENTS  
1. SERVICING NOTE ......................................................... 4  
6. DIAGRAMS..................................................................... 14  
6-1. IC Pin Description .............................................................. 14  
6-1-1. IC801 RU6915MF-0006 (System Control) ................. 14  
6-2. Block Diagrams .................................................................. 17  
6-2-1. MD Block Diagram ..................................................... 17  
6-2-2. Servo, System Control Block Diagram ....................... 19  
6-3. Printed Wiring Boards and Schematic Diagrams................ 21  
6-3-1. Printed Wiring Board – Main Board – ........................ 21  
6-3-2. Schematic Diagram – Main Board (1/4) – .................. 25  
6-3-3. Schematic Diagram – Main Board (2/4) – .................. 27  
6-3-4. Schematic Diagram – Main Board (3/4) – .................. 29  
6-3-5. Schematic Diagram – Main Board (4/4) – .................. 31  
6-4. IC Block Diagrams ............................................................. 33  
2. GENERAL......................................................................... 5  
Playing an MD right away! ................................................... 5  
3. DISASSEMBLY ............................................................... 7  
3-1. Panel Assy, Upper ................................................................. 7  
3-2. Holder Assy........................................................................... 7  
3-3. Mechanism Deck .................................................................. 8  
3-4. Main Board ........................................................................... 8  
3-5. Service Assy, OP ................................................................... 9  
4. TEST MODE................................................................... 10  
4-1. General ................................................................................ 10  
4-2. Setting the Test Mode ......................................................... 10  
4-2-1. How to Set the Test Mode ........................................... 10  
4-2-2. Operations when the Test Mode is Set ........................ 10  
4-2-3. How to Release the Test Mode .................................... 10  
4-3. Test Mode Structure ............................................................ 10  
4-4. Manual Mode ...................................................................... 11  
4-4-1. Outline of the Function ............................................... 11  
4-4-2. How to Set the Manual Mode ...................................... 11  
4-5. Overall Adjustment Mode ................................................... 11  
4-5-1. Outline of the Function ............................................... 11  
7. EXPLODED VIEWS ..................................................... 37  
7-1. Main Unit Section ............................................................... 37  
7-2. Mechanism Deck Section ................................................... 38  
8. ELECTRICAL PARTS LIST...................................... 39  
5. ELECTRICAL ADJUSTMENTS .............................. 12  
5-1. General ................................................................................ 12  
5-2. Notes for Adjustment .......................................................... 12  
5-2-1. Jigs ............................................................................... 12  
5-2-2. Adjustment Sequence .................................................. 12  
5-2-3. Power ........................................................................... 12  
5-3. Reset NV ............................................................................. 12  
5-3-1. How to Reset NV ........................................................ 12  
5-4. Overall Adjustment Mode ................................................... 12  
5-4-1. Overall Adjustment Mode Structure............................ 12  
5-4-2. Overall CD and MO Adjustment Method ................... 12  
5-4-3. Overall CD and MO Adjustment Items ....................... 13  
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SECTION 1  
SERVICING NOTE  
1) When repairing this device with the power on, if you remove  
the main board or open the upper panel assy, this device stops  
working.  
In this case, you can work without the device stopping by  
fastening the hook of the OPEN/CLOSE switch (MAIN board  
S809) with tape.  
MAIN board S809  
2) This set is designed to perform automatic adjustment for each  
adjustment and write its value to EEPROM. Therefore, when  
EEPROM (MAIN board IC802) has been replaced in service,  
be sure to perform automatic adjustment and write resultant  
values to the new EEPROM.  
Refer to section 4 Test Mode (page 10) for details.  
4 –  
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SECTION 2  
GENERAL  
This section is extracted from  
instruction manual.  
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6 –  
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SECTION 3  
DISASSEMBLY  
Note : This set can be disassemble according to the following sequence.  
Set  
Panel Assy, Upper  
Holder Assy  
Mechanism Deck  
Main Board  
Service Assy, OP  
Note : Follow the disassembly procedure in the numerical order given.  
3-1. PANEL ASSY, UPPER  
4 screws(1.4),MI  
5 panel assy, upper  
3 screws(1.4),MI  
2
1
3-2. HOLDER ASSY  
3 holder assy  
2 shaft  
1 shaft  
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3-3. MECHANISM DECK  
1 sheet (BLIND)  
2 screw (MD), step  
4
7 mechanism deck  
3
5 CN501  
6 CN551  
claw  
3-4. MAIN BOARD  
Note : When installing, fit the knobs (HOLD, MB) and the switchs (S806, 807, 808).  
2 screws(1.7x2.5)  
1 screws(1.7x2.5)  
S808  
S806  
S807  
3
4 MAIN board  
knobs (MB)  
knob (HOLD)  
8 –  
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3-7. SERVICE ASSY, OP  
4 M 1.4  
3 M 1.4  
5 service assy, OP  
1 washer  
2 gear (SA)  
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SECTION 4  
TEST MODE  
Remote control LCD  
4-1. GENERAL  
When entered in the TEST MODE, this set provides the Overall  
Adjustment mode which allows CD and MO discs to be auto-  
matically adjusted. In the Overall Adjustment mode , the system  
discriminates between CD and MO discs, performs adjustments  
in sequence automatically, and displays the faulty location if any  
fault is found. In the Manual mode, selected adjustments can be  
performed automatically.  
888  
u
All on  
The attached remote control is used to operate the TEST MODE.  
Unless otherwise specified in the text, the key means that on the  
remote control.  
All off  
004 V1.100  
4-2. SETTINGTHE TEST MODE  
Microprocessor  
version  
display  
4-2-1. How to set theTEST MODE  
To set the TEST MODE, two methods are available.  
1 Solder bridge and short TAP801 (TEST) on the main board.  
Then turn on the power.  
Press and hold down PLAY MODE to hold the current display  
while the key is being pressed.  
MAIN BOARD (SIDE B)  
4-2-3. How to release theTEST MODE  
When method 1 was used:  
1
Turn off the power and open the solder bridge on TAP801 on the  
main board.  
Note: The solder should be removed clean. The remaining  
solder may make a short with the chassis and other part.  
When method 2 was used:  
5
CN551  
8
5
1
10  
15  
L501  
C518  
Turn off the power.  
TAP801  
4-3.TEST MODE STRUCTURE  
TP518  
20  
Test Mode  
(Display Check Mode)  
+
key  
key  
TAP801  
Manual Mode  
x
2 In the normal mode, operate the keys on the set and those on the  
remote control as specified below:  
+
key  
key  
Servo Mode  
Turn on HOLD switch on the set. Holding down x (STOP)  
key on the set, press the keys on the remote control in the  
following sequence:  
Audio Mode  
> N t > N t . t . t > N  
t . t > N t . t X t X  
Power Mode  
4-2-2. Operations when the TEST MODE is set  
When the TEST MODE is entered, the system switches to the  
display check mode within the TEST MODE. From this mode, the  
other Test modes can be accessed.  
When the TEST MODE is set, the LCD repeats a cycle of the  
following displays:  
OP Alignment Mode  
key  
key  
Overall Adjustment Mode  
x
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4-4. MANUAL MODE  
4-4-1. Outline of the function  
Address Value & Adjustment Value  
LCD display  
The Manual mode is designed to perform adjustments and  
operational checks on the sets operation according to each  
individual function.  
011XXXSXX  
Usually, no adjustments are made in this mode.  
However, the Manual mode is used to clear the memory before  
performing automatic adjustments in the OverallAdjustment mode.  
Block Error Value & Adjustment Value  
LCD display  
011XX BXX  
4-4-2. How to set the Manual mode  
1. Set the TEST MODE and press + key to set the Manual mode.  
ADIP Error Value & Adjustment Value  
LCD display  
Remote control LCD display  
011XX AXX  
000 AAASCC  
Jitter Value & Adjustment Value  
LCD display  
2. Each test item is assigned with a three-digit item number. The  
third digit stands for a major item, the second digit for a middle  
item, and the first digit for a moniro item.  
011XXXJXX  
Asy Mmetry Feed Back Gain Value & Adjustment Value  
LCD display  
+
+
key : Up  
Change Major  
Item  
011XX RXX  
key : Down  
Power Adjustment Value  
LCD display  
x
> N key  
key  
731XX VXX  
key : Up  
Change Middle  
Item  
key : Down  
Memory Monitor Mode  
XXX: Each Value  
XX: Adjustment Value  
for Item number  
x
> N key  
key  
Change Minor  
Item  
> N key : Up  
Note: In the Power mode, the power adjustment value is only  
displayed.  
.
key : Down  
+
4. During each test, press and hold down > N key or .  
key for a while to move the optical pickup on the sled outer or  
inner perimeter.  
key : Up  
Change Adjustment  
Value  
key : Down  
Write Adjustment  
Value  
X key : Write  
5. To terminate the Manual mode and return to the TEST MODE,  
press x key.  
3. During each test mode, the display is changed from one to  
another each time DISPLAY key is pressed.  
4-5. OVERALL ADJUSTMENT MODE  
4-5-1. Outline of the function  
This mode is designed to adjust the servo system automatically by  
going through all the adjustment items.  
Usually, this mode is used to perform automatic adjustments when  
servicing the set.  
For further information, refer to section 5. ELECTRICALADJUST-  
MENTS (page 12).  
11 –  
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SECTION 5  
ELECTRICAL ADJUSTMENTS  
5-1. GENERAL  
5-4. OVERALL ADJUSTMENT MODE  
5-4-1. Overall adjustment mode structure  
In this set, CD and MO discs can be automatically adjusted by set-  
ting the Overall Adjustment mode within the TEST MODE,  
Before performing these automatic adjustments, it is necessary to  
clear the memory and adjust the power in the Manual mode.  
Overall Adjustment Mode  
5-2. NOTES FOR ADJUSTMENT  
.
key  
5-2-1. Jigs  
CD disc TDYS-1 (part code: 4-963-646-01)  
MO disc PTDM-1 (part code: J-2501-054-A)  
or commercially available MO disc (recorded)  
Digital voltmeter  
Overall CD Adjustment  
x
key  
.
> N key  
key  
5-2-2. Adjustment sequence  
The adjustments should be always performed in the following  
sequence:  
> N key  
Overall MO Adjustment  
1 Reset NV (Clear the memory)  
2 Overall CD adjustments  
3 Overall MO adjustments  
Manual mode  
x
key  
Overall adjustment mode  
Note: The overall adjustments should be always performed in the  
sequence of CD t MD adjustments.  
5-4-2. Overall CD and MO adjustment method  
1. Set the TEST MODE (see page 10) and press key to set the  
Overall Adjustment mode.  
5-2-3. Power  
A stablized power supply is used to supply 1.5 V DC to the battery  
terminal.  
Otherwise, an AA alkali battery with the remaining level of 1.5 V  
DC or more is used. (In this case, make sure that the battery  
indication on the remote control is FULL)  
LCD display  
044Assy ?  
5-3. RESET NV  
2. Insert CD disc in the set, and press . key to set the Overall  
CD Adjustment mode.  
5-3-1. How to reset NV  
1. Set the TEST MODE. (See page 10)  
Automatic adjustments are made.  
Display on Adjustment state  
for Each Items.  
LCD display  
2. Set the Manual mode and set the item No. 021, Reset NV.  
LCD display  
XXX XXXSXX  
021AAASCC  
XXX: Item No. for which an adjustment is being executed.  
3. If NG in the overall CD adjustments, return to Reset NV and  
perform the adjustment again.  
3. Press X key on the remote control.  
LCD display  
LCD display  
Adjustment Value becomed to NG.  
021AAASCC  
XXX NGXX  
Note: CC is blink.  
4. Press X key on the remote control again.  
XXX: NG item No.  
LCD display  
4. If OK through the overall CD adjustments, then perform overall  
MO adjustments.  
021AAASCC  
LCD display  
Note: CC blink. t Finish the CC light on.  
XXX End-OK  
5. Press x key to terminate the Manual mode and return to the  
TEST MODE.  
5. Insert MO disc in the set, and press > N key to set the  
Overall MOAdjustment mode. Automatic adjustments are made.  
LCD display  
XXX XXXSXX  
XXX: Item No. for which an adjustment is being executed.  
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6. If NG in the overall MO adjustments, return to Reset NV and  
perform the adjustment again.  
LCD display  
XXX NGXX  
XXX: NG item No.  
7. If OK through the overall MO adjustments, press x key to  
return to the TEST MODE and terminate the Overall Adjust-  
ment mode.  
LCD display  
XXX End-OK  
5-4-3. Overall CD and MO adjustment items  
1. Overall CD adjustment items  
Item No.  
Contents  
312  
313  
314  
CD electrical offset adjustment  
321  
328  
323  
336  
344  
345  
521  
522  
341  
CD TE gain adjustment  
CD TWPP gain adjustment  
CD TE offset adjustment  
CD ABCD gain adjustment  
CD focus gain adjustment  
CD tracking gain adjustment  
CD two-axis sensitivity adjustment  
CD focus bias adjustment  
2. Overall MO adjustment items  
Item No.  
112  
Contents  
113  
114  
221  
223  
236  
244  
245  
121  
122  
144  
145  
131  
132  
136  
134  
141  
MO electrical offset adjustment  
Low reflective CD TE gain adjustment  
Low reflective CD TE offset adjustment  
Low reflective CD ABCD gain adjustment  
Low reflective CD focus gain adjustment  
Low reflective CD tracking gain adjustment  
MO TE gain adjustment  
MO TE offset adjustment  
MO focus gain adjustment  
MO tracking gain adjustment  
MO TWPP offset adjustment  
MO ABCD gain adjustment  
MO TWPP gain adjustment  
MO focus bias adjustment  
13 –  
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SECTION 6  
DIAGRAMS  
6-1. IC PIN DESCRIPTION  
6-1-1. IC801 RU6915MF-0006 (SYSTEM CONTROL)  
Pin No.  
Pin Name  
I/O  
Description  
1
S MON  
I
S-MON monitor signal input from the µPD63732GC (IC601)  
Un-regulator power supply voltage monitor input terminal (A/D input)  
Not used. (open)  
2
3
4
5
6
7
8
UREG MON  
NC  
I
I
VREF  
Input terminal for power supply voltage adjustment reference voltage (+2 V) (A/D input)  
Not used. (Fixed at H.)  
DVDD MON  
NC  
I
I
Not used. (open)  
RMC KEY  
SET KEY  
Remote commander with headphone key input terminal (A/D input)  
Set key input terminal (A/D input) S801 to S804 (x, >/N, ., +/VOLUME keys input)  
System reset signal input L: reset  
I
9
MRST  
I
For several hundreds msec. after the power supply rises, Lis input, then it change to H”  
Power supply pin (+2.4 V or +2.8 V)  
10  
11  
AVDD  
AVSS  
I
Ground terminal (forA/D converter)  
12 15  
16  
TYPE0 3  
XOUT  
XIN  
Setting terminal for model discrimination (bit 0 to bit 3) Fixed at Lin this set  
Main system clock output terminal (16.9344 MHz)  
Main system clock input terminal (16.9344 MHz)  
Sub system clock output terminal Not used. (open)  
Sub system clock input terminal Not used. (fixed at L)  
Not used. (open)  
O
I
17  
18  
SX OUT  
SXIN  
O
I
19  
20  
COUT  
O
I
21  
VDD  
Power supply terminal (+2 V) (digital system)  
22  
VSS  
Ground terminal (digital system)  
23  
HOLD SW  
VG CON  
HOLD switch (S808) input terminal L: hold off, H: hold on  
Power supply control signal output to each ICs  
24  
O
System clock supply output terminal (16.934 MHz) to the µPD63732GC (IC601) or AK4352  
(IC302)  
25  
XCLK  
O
26  
27  
KEY EN  
AVLS SW  
DSP SINT  
DBB0, DBB1  
OPR LED  
O
I
Ground control output terminal of remote control  
AVLS switch (S803) input terminal L: LIMIT H: NORM  
Interruption status input from the µPD63732GC (IC601)  
DIGITAL MEGABASS switch (S806) input terminal *1  
OPERATE LED (D802) drive signal output terminal H: LED on  
Upper panel open/close detect switch (S801) input terminal  
L: upper panel close, H: upper panel open  
28  
I
29, 30  
31  
I
O
32  
OPEN CLS SW  
I
33  
34  
35  
36  
37  
38  
39  
40  
41  
XWAKE RMC  
XWAKE SET  
SBUS CLK  
SBUS DATA  
XRST  
I
I
Wake up signal input from remote control key  
Wake up signal input from this set key  
O
SSB serial clock signal output terminal  
I/O SSB serial data input/output terminal  
O
I
Reset signal output terminal to each ICs  
SLD 1 MON  
SLD 2 MON  
VDD  
Sled servo timing signal input from the TLC372CPW (IC552)  
Sled servo timing signal input from the TLC372CPW (IC552)  
Power supply terminal  
I
VPP  
Test terminal (fixed at L)  
Spindle servo drive voltage control signal output to the BD6602KUT (IC551) or µPD63732GC  
(IC601)  
42  
CLV VCON  
O
43  
44  
45  
46  
47  
48  
49  
APC REF  
RM VCON  
O
O
I
Laser power control signal output terminal  
Remote control power voltage select signal output to power circuit L:2.4 V, H: 2.8 V  
Spindle servo (U) timing signal input from the BD6602KUT (IC551)  
Spindle servo (V) timing signal input from the BD6602KUT (IC551)  
Spindle servo (W) timing signal input from the BD6602KUT (IC551)  
Spindle servo (U) drive signal input from the BD6602KUT (IC551)  
Spindle servo (V) drive signal input from the BD6602KUT (IC551)  
CLV U MON  
CLV V MON  
CLV W MON  
CLV U CON  
CLV V CON  
I
I
I
I
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Pin No.  
Pin Name  
I/O  
Description  
50  
CLV W CON  
I
Spindle servo (W) drive signal input from the BD6602KUT (IC551)  
51  
52  
DRV VCON  
NC  
O
O
Driver output control terminal to the DB6602KUT (IC551) “L”: prohibited, “H”: permission  
Not used. (open)  
53  
SLED 1R CON  
SLED 1F CON  
SLED 2R CON  
SLED 2F CON  
NC  
Sled motor control signal output to the BD6602KUT (IC551)  
Sled motor control signal output to the BD6602KUT (IC551)  
Sled motor control signal output to the BD6602KUT (IC551)  
Sled motor control signal output to the BD6602KUT (IC551)  
Not used. (open)  
54  
O
55  
O
56  
O
57 – 60  
61  
VSS  
Ground terminal (digital system)  
62  
NC  
Not used. (open)  
63  
RMC DTCK  
S0  
I/O TSB serial communication data input/output terminal for remote commander with headphone  
64  
O
O
PD-IC mode select signal output  
65  
S1  
PD-IC mode select signal output  
66, 67  
68  
NC  
O
Not used. (open)  
SLD VCON  
NC  
Sled servo control PWM signal output to the BD6602KUT (IC551)  
Not used. (open)  
69  
O
70  
HP MUTE  
Muting on/off control signal output to the headphone amplifier (IC301) “H”: muting on  
Standby on/off control signal output to the headphone amplifier (IC301)  
“L”: standby mode, “H”: amplifier on  
71  
HP STBY  
O
72  
73  
74  
75  
76  
77  
78  
79  
80  
NC  
NV DI  
I
Not used. (open)  
Serial data input from the EEPROM (IC802)  
Serial data output from the EEPROM (IC802)  
Serial clock signal output to the EEPROM (IC802)  
Chip select signal output to the EEPROM (IC802)  
Test mode institution input terminal “L”: test mode (Normally, fixed at “H”)  
System reboot control output terminal  
NV DO  
NV CLK  
NV CS1  
ADJUST  
XREBOOT  
VDD  
O
O
O
I
O
Power supply terminal (+2 V) (digital system)  
Ground terminal (digital system)  
VSS  
– 15 –  
– 16 –  
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MZ-E60  
6-2. BLOCK DIAGRAMS  
6-2-1. MD BLOCK DIAGRAM  
(
)
1/2 MD SECTION  
MAIN BOARD  
DIGITAL SERVO  
ATRAC  
Signal path  
: MD  
16M DRAM  
IC602  
IC601  
B+  
(Q907)  
71  
9
VREF  
VSS  
VSS  
2
1
1
B+  
(Q907)  
74  
12  
13  
70  
15  
A0  
|
A11  
DRA0  
|
DRA11  
66  
19  
62  
21  
VDD ADJ  
65  
8
MINIDISC  
OPTICAL PICK-UP BLOCK  
(LCX-2E)  
20  
64  
6
B+  
(Q907)  
RF AMP, FOCUS/TRACKING ERROR AMP  
IC501  
37  
52  
2
51 VDD  
DRD0  
|
DRD3  
D0  
|
D3  
53  
3
75  
CN501  
VREF  
6
VREF  
3
58  
24  
87  
DVDD 21  
ly  
lx  
57  
25  
MCK I/O  
47  
97  
98  
+
AVCC 38  
ID3  
ID4  
XRAS  
XOE  
XRAS  
63  
60  
59  
54  
5
22  
23  
4
XOE VSS  
XCAS VSS  
XWE  
14  
26  
18BIT D/A CONVERTER  
IC302  
+
XCAS  
XWE  
82V 30  
Jx  
RF OUT  
+
AOUTL  
AOUTR  
Jx Jy Jx  
RF  
33  
27  
7
8X  
∆ Σ  
14  
13  
AOUTL  
AOUTR  
ly  
lx  
Jx  
Jy  
A
Iy  
Ix  
Jx  
Jy  
A
LPF  
LPF  
INTERPOLATOR  
MODULATOR  
9
7
8
LRCK  
SDATA  
BICK  
Jy  
LRCK 39  
DFCT  
5
4
3
SERVO,  
SYSTEM CONTROL  
SECTION  
SERIAL  
INPUT  
INTERFACE  
10  
14  
15  
16  
17  
7
13 DEFECT  
DFCT  
+
RF AMP,  
FOCUS  
ERROR,  
TRACKING  
ERROR  
lx ly lx  
AUDATA  
40  
2
9
BCK 41  
A
10  
11  
13  
4
OFTRK  
8X  
∆ Σ  
MODULATOR  
OFTRK  
26  
14 OFTRK  
+
INTERPOLATOR  
(Page 19)  
a b c d  
B
B
ABCD  
FE  
B+  
ABCD  
FE  
39  
40  
44  
41  
4
3
5
B
(Q907)  
C
D
C
D
F
+
VREF  
CKS  
TE  
11  
16  
10  
2
8
5
TE  
S MON  
MCLK  
CLOCK  
DIVIDER  
C
D
MCLK  
50  
1
VDD  
A-C  
D-C  
+
12  
6
TPP/WPP  
APC  
PD  
MON  
PD-NI  
+
18  
15  
20  
LD-VDD  
PD-I  
AVCC  
(Q907)  
16  
17  
MON  
PD-O  
+
LD-EMIT  
PD-DRV  
19  
18  
TF OUT  
TF1  
TR1  
FR1  
FF1  
21  
SERVO,  
SYSTEM CONTROL  
SECTION  
5
TR OUT 22  
FR OUT 23  
LASER  
3
4
LD-A  
LD-K  
AUTO POWER  
CONTROL  
Q501  
12  
FF OUT  
24  
LD  
(Page 19)  
13  
T COUNT  
T COUNT  
ADIP  
VREF  
MCLK  
SINT  
ADIP  
T-COUNT  
28  
12  
9
AVCC (Q907)  
ADIP IN  
ADIP  
AVCC  
43  
42  
SINT 30  
SCK  
20  
AVCC  
29  
S BUS 28  
S0  
S1  
11  
19  
S0  
S1  
XRST  
SCK  
24  
23  
22  
27 XRESET  
SERIAL  
I/F  
SERVO,  
SYSTEM CONTROL  
SECTION  
S BUS  
XRST  
S MON  
PD  
(Page 19)  
SSB CLK  
SSB DATA  
S0  
S1  
TRK+  
TRK–  
2
TRACKING  
COIL  
1
4
SERVO,  
SYSTEM CONTROL  
SECTION  
1
FCS+  
FOCUS  
COIL  
(Page 19)  
FCS–  
3
04  
– 17 –  
– 18 –  
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MZ-E60  
6-2-2. SERVO, SYSTEM CONTROL BLOCK DIAGRAM  
(
)
2/2  
MAIN BOARD  
B+  
(UNREG)  
SERVO, SYSTEM CONTROL SECTION  
AOUTL  
AOUTR  
MD  
SECTION  
(Page 18)  
HEADPHONE  
AMP  
IC301  
2
Signal path  
B+  
1
B+  
(Q907)  
B+  
(Q907)  
B+  
(Q907)  
: MD  
EEPROM  
IC802  
20 VCC  
22  
J301  
PW A  
PW B  
VCC CS  
SK  
NV CS1  
NV CLK  
NV DI  
8
7
1
2
3
4
76  
75  
74  
73  
DVDD MON  
5
2
4
i
DO  
B+  
(D901)  
Q802  
PE  
DI  
NV DO  
SYSTEM  
21  
CONTROL  
IC801  
21  
12  
GND  
KEY  
40  
VREF  
MCLK  
SINT  
VREF  
4
VDD  
XCLK  
25  
28  
79  
DATA  
VDD  
B+  
(D903)  
PW  
SW  
B+  
(D903)  
DSP SINT  
18  
17  
VREF  
REFERENCE  
VOLTAGE  
SWITCHING  
Q301  
XRST  
S MON  
XRST  
37  
1
AVDD  
10  
S MON  
MD  
SECTION  
(Page 18)  
13  
MUTE  
4
PD  
APC REF  
SBUS CLK  
SBUS DATA  
43  
35  
36  
SSB CLK  
SSB DATA  
HP MUTE  
HP STB  
70  
71  
S0  
S1  
S0  
S1  
64  
65  
KEY EN  
26  
7
RMC KEY  
SLED  
VOLTAGE MONITOR  
IC552  
Q801  
XWAKE RMC  
RMC DTCLK  
33  
63  
5
+
SLD 2 MON  
39  
7
1
6
3
2
+
SLD 1 MON  
XIN  
38  
17  
16  
S806  
DIGITAL MEGABASS  
S807  
AVLS  
NORM LIMIT  
S808  
HOLD  
FOCUS/TRACKING COIL DRIVE,  
SPINDLE/SERVO MOTOR DRIVE  
IC551  
0
1
2
X601  
16.9344MHz  
XOUT  
VCC1  
B+  
(UNREG)  
B+  
(Q907)  
45  
64  
1
42  
43  
40  
41  
38  
39  
DBB0  
DBB1  
29  
30  
27  
23  
TRK+  
TF1  
PREDRIVE  
PREDRIVE  
AVLS SW  
HOLD SW  
TR1  
TRK–  
MD  
SECTION  
(Page 18)  
MD  
1
(Page 17)  
SET KEY  
XWAKE SET  
OPEN CLS SW  
ADJUST  
8
3
10  
11  
8
34  
32  
77  
31  
SECTION  
FCS+  
FF1  
2
3
S801  
MINIDISC  
MECHANISM  
BLOCK  
9
OPR LED  
S809  
OPEN/  
CLOSE  
FR1  
D802  
OPERATE  
FCS–  
6
TAP801  
TAP803  
7
M902  
(SLED)  
CN551  
S805 S804 S803 S802  
SLED1+  
62  
61  
60  
57  
58  
56  
SLD 1R CON  
SLD 1F CON  
SLD VCON  
5
7
53  
54  
68  
+
.
>N  
PREDRIVE  
PREDRIVE  
SLED1–  
RESET  
IC803  
VOL  
B+  
(D901)  
VDD  
51  
52  
50  
4
5
SLED2+  
54  
55  
SLD 2R CON  
SLD2F CON  
MRST  
6
8
55  
56  
9
3
OUT  
SLED2–  
Q908  
VSS  
XREBOOT  
D903  
78  
VCC2  
B+  
(Q907)  
B+  
46  
32  
B+  
(UNREG)  
CLVN  
33  
34  
1
+
PWM/PFM CONTROL  
IC903  
CLV W MON  
CLV V MON  
CLV W MON  
47  
46  
45  
Q905  
UNREG MON  
RM VCOM  
2
2
1
VDD  
+
31  
30  
POWER SUPPLY  
VOLTAGE CONTROL  
SWITCH  
35  
EXT  
5
44  
VOUT  
M901  
(SPINDLE)  
+
Q906  
36  
Q907  
CLVU  
CLVV  
CLVW  
23  
24  
26  
29  
28  
2
3
4
B+  
16  
15  
14  
13  
CLV U CON  
CLV V CON  
CLV W CON  
CLV V CON  
48  
49  
50  
42  
B+  
(UNREG)  
VG  
B+  
Q904  
(2/2)  
PREDRIVE  
DECODER  
VCC1  
D901  
Q904(1/2)  
Q903  
DRY BATTERY  
SIZE "AA"  
VG  
2
1
3
VDD  
FB  
4
EXT  
2
5
VDD  
5
(IEC DESIGNATION R6)  
1PC, 1.5V  
OE  
TO EACH  
BLOCK  
B+ SWITCH  
Q902  
17  
DRV VCON  
VG CON  
51  
24  
VOUT  
STANDBY  
CE  
1
VCC2  
Q901  
EXT  
PWM/PFM CONTROL  
IC902  
TO BEMF  
COMPARATOR  
BIAS  
VG  
PWM/PFM CONTROL  
IC901  
04  
– 19 –  
– 20 –  
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MZ-E60  
6-3. PRINTED WIRING BOARDS AND SCHEMATIC DIAGRAMS  
6-3-1. PRINTED WIRING BOARD — MAIN BOARD —  
1
2
3
4
5
6
7
8
9
10  
11  
12  
13  
14  
A
B
C
D
E
F
G
H
I
• Semiconductor  
Location  
MAIN BOARD (SIDE A)  
Ref. No.  
Location  
GND1  
D351  
D352  
D353  
D354  
D802  
D855  
D903  
F-2  
F-3  
F-3  
E-3  
C-5  
F-3  
B-4  
C511  
22 20  
23 25  
15  
IC501  
10  
5
1
C502  
D
D903  
E
B
TP530  
Q908  
GND2  
C
C911  
30  
35  
40 44  
R903  
G
S
IC302  
IC501  
IC601  
IC602  
IC801  
IC802  
IC803  
IC903  
F-4  
S802  
> N  
VOL  
B-9  
E-9  
F-11  
G-6  
H-6  
G-7  
C-4  
S808  
4
3
2
1
D802  
OPERATE  
R922  
C910  
C909  
S801  
x
S803  
.
HOLD  
S804  
S805  
R919 5  
R920 R921 R923  
R816  
C515  
E
B
R925 R924  
TP529  
C
Q801  
Q802  
Q905  
Q906  
Q908  
D-4  
D-3  
C-4  
D-4  
B-5  
TP810  
E
B
R814  
TP531  
R827  
G
FB801  
C
S
C851  
C852  
C853  
C854  
TP811  
TP812  
TP813  
R825  
R837  
Q802  
R817  
R818  
FB802  
25  
26  
20  
15  
10  
5
1
L601  
C609  
C812  
R822  
100  
D
R823  
30  
35  
95  
90  
RB802  
C614  
C608  
8
C806  
R833 R810  
1
2
5
4
TP302  
IC601  
3
40  
45  
13  
14  
6
1
TP203  
85  
D352  
40  
41  
35  
30  
25  
21  
X601  
C351  
D351  
20  
15  
10  
8
9
1
80  
76  
D353  
TP103  
45  
50  
55  
IC602  
IC302  
50  
51  
55  
60  
65  
70  
75  
R809  
16  
IC803  
3 2  
IC801  
70  
R601  
C304  
19  
21  
26  
4 1  
C612  
5
1
C801  
R806  
60  
61  
C813  
C551  
NORM  
S806  
DIGITAL MEGABASS  
1
S807  
AVLS  
65  
75  
80  
2
LIMIT  
0
R201  
R202  
R101  
R821  
C552  
1
4
8
5
C809  
R102  
IC802  
TP826  
11  
( )  
11  
TP825  
(CHASSIS)  
1-676-495-  
04  
Note:  
Y : parts extracted from the conductor side.  
Caution:  
Pattern face side: Parts on the pattern face side seen from the  
(Side B) pattern face are indicated.  
Parts face side: Parts on the parts face side seen from the  
(Side A) parts face are indicated.  
• Main board is four-layer printed board.  
However, the patterns of layers 2 and 3 have not been in-  
cluded in this diagrams.  
f
: internal component.  
b : Pattern from the side which enables seeing.  
(The other layer’s patterns are not indicated.)  
– 21 –  
– 22 –  
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MZ-E60  
14  
13  
12  
11  
10  
9
8
7
6
5
4
3
2
1
DRY BATTERY  
SIZE"AA"  
(IEC DESIGNATION R6)  
1PC,1.5V  
A
B
C
D
E
Semiconductor  
Location  
MAIN BOARD (SIDE B)  
Ref. No.  
Location  
D901  
D902  
C-5  
D-5  
5
4
TP506  
Q901  
L901  
TP513  
B
IC301  
IC551  
IC552  
IC901  
IC902  
H-5  
IC901  
C908  
G-10  
G-13  
B-5  
TP507  
C
E
1 2 3  
TP514  
S809  
(OPEN/CLOSE)  
TP522  
TP508  
B
E
C504  
C503  
TP520  
TP952  
C
D-4  
C509  
R502  
R506  
TP519  
R927  
TP509  
TP510TP515  
G
S
D901  
TP516  
E
B
D
Q301  
Q501  
Q901  
Q902  
Q903  
Q904  
Q907  
H-6  
C-7  
B-4  
B-3  
D-4  
E-4  
C-6  
C901  
TP528  
TP523  
TP809 TP610  
TP613  
TAP803  
Q501  
TP525  
C
TP574TP572  
R902  
TP571 R926  
TP805  
C903  
C904  
TP576  
C514  
TP512  
TP524  
TP911  
TP611  
TP903  
TP527  
TP951  
TP577  
J301  
TP575 TP573 TP570  
C517  
R913  
C906  
D902  
TP505  
TP607  
1
5
7
VDD  
TP604 TP605  
TP606 TP603  
TP612  
3
2
1
TP526  
TP804  
TP608  
6
5
S
DATA  
KEY  
TP601  
CN551  
IC902  
4
D
TP609  
G
5
8
5
1
10  
15  
TP563  
TP806  
MINI-DISC  
TP615  
GND  
TP602  
4
L501  
OPTICAL  
PICK-UP BLOCK  
(LCX-2E)  
TAP801  
TP564  
R928  
TP503  
TP518  
C518  
20  
TP504  
3
2
1
4
5
6
J301  
TP565  
i
TP558  
TP555  
R915  
M901  
SPINDLE  
MOTOR  
TP559  
TP502  
F
G
H
I
TP808  
TP301  
TP557  
TP552 TP551  
TP567  
1
2
N
C561  
TP501  
C613  
TP560  
U
TP517  
R203  
C202  
64  
60  
55  
49  
TP569 TP566  
C555  
1
C203  
48  
1
5
C553  
L551  
L553  
L554  
TP202  
TP102  
TP568  
TP814  
45  
V
TP556  
3
4
TP511  
4
5
R103  
C102  
W
IC551  
25  
C307  
40  
E
B
IC552  
10  
TP803  
L552  
Q301  
C
R204  
TP561  
TP562  
TP553  
12  
13  
7
M902  
SLED  
MOTOR  
35  
33  
8
6
1
C103  
C556  
16  
IC301  
17 20  
30 32  
TP801  
C554  
TP554  
TP802  
11  
5
C309  
18  
19  
24  
6
7
8
)
(
1-676-495- 11  
11  
04  
12  
MOTOR FLEXIBLE BOARD  
1-675-668-  
– 23 –  
– 24 –  
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MZ-E60  
6-3-2. SCHEMATIC DIAGRAM MAIN BOARD (1/4) — • Refer to page 33 for IC Block Diagrams.  
(Page  
27)  
(Page  
31)  
(Page 29)  
Note:  
• All capacitors are in µF unless otherwise noted. pF: µµF  
50 WV or less are not indicated except for electrolytics  
and tantalums.  
• All resistors are in and 1/4 W or less unless otherwise  
specified.  
A : B+ Line.  
• Power voltage is dc 1.5V and fed with regulated dc power  
supply from battery terminal.  
• Voltage and waveforms are dc with respect to ground  
under no-signal conditions.  
no mark : PB  
Note:  
Note:  
: Impossible to measure  
Les composants identifiés par  
une marque 0 sont critiques  
pour la sécurité.  
Ne les remplacer que par une  
piéce portant le numéro  
spécifié.  
The components identi-  
fied by mark 0 or dotted  
line with mark 0are criti-  
cal for safety.  
Replace only with part  
number specified.  
• Voltages are taken with a VOM (Input impedance 10 M).  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
Waveforms (MODE:PLAY)  
0.5V/div 5µs/div  
100mV/div 5µs/div  
5mV/div 1µs/div  
5mV/div 1µs/div  
1
2
3
4
• Waveforms are taken with a oscilloscope.  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
Approx.  
12mVp-p  
Approx.  
Approx.  
10mVp-p  
Approx.  
0.8Vp-p  
180mVp-p  
• Circled numbers refer to waveforms.  
• Signal path.  
IC501  
(RF OUT) (TP528)  
ed  
IC501  
(FE) (TP525)  
IC501  
(TE) (TP523)  
rf  
IC501  
7890  
r;  
F
: PB  
– 25 –  
– 26 –  
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MZ-E60  
6-3-3. SCHEMATIC DIAGRAM MAIN BOARD (2/4) — • Refer to page 34 for IC Block Diagrams.  
(OPEN/CLOSE)  
(Page  
26)  
(Page 31)  
Note:  
• All capacitors are in µF unless otherwise noted. pF: µµF  
50 WV or less are not indicated except for electrolytics  
and tantalums.  
• All resistors are in and / W or less unless otherwise  
specified.  
1
4
%
: indicates tolerance.  
C : panel designation.  
A : B+ Line.  
• Power voltage is dc 1.5V and fed with regulated dc power  
supply from battery terminal.  
• Voltage is dc with respect to ground under no-signal  
condition.  
no mark : PB  
: Impossible to measure  
Voltages are taken with a VOM (Input impedance 10 M).  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
• Signal path.  
F
: PB  
– 27 –  
– 28 –  
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MZ-E60  
6-3-4. SCHEMATIC DIAGRAM MAIN BOARD (3/4) — • Refer to page 34 for IC Block Diagrams.  
(Page 26)  
(Page 31)  
(Page 31)  
TOTAL CURRENT  
PLAY : 40mA  
PAUSE : 36mA  
FF/REW : 60mA  
Note:  
• All capacitors are in µF unless otherwise noted. pF: µµF  
50 WV or less are not indicated except for electrolytics  
and tantalums.  
• All resistors are in and / W or less unless otherwise  
specified.  
1
4
%
: indicates tolerance.  
A : B+ Line.  
• Power voltage is dc 1.5V and fed with regulated dc power  
supply from battery terminal.  
• Voltage is dc with respect to ground under no-signal  
condition.  
no mark : PB  
: Impossible to measure  
Voltages are taken with a VOM (Input impedance 10 M).  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
– 29 –  
– 30 –  
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MZ-E60  
6-3-5. SCHEMATIC DIAGRAM MAIN BOARD (4/4) — • Refer to page 35 for IC Block Diagrams.  
(Page 27)  
(Page 30)  
(Page 26)  
(Page 30)  
Waveform  
(MODE:PLAY)  
Note:  
• Voltages are taken with a VOM (Input impedance 10 M).  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
• Waveforms are taken with a oscilloscope.  
Voltage variations may be noted due to normal produc-  
tion tolerances.  
• All capacitors are in µF unless otherwise noted. pF: µµF  
50 WV or less are not indicated except for electrolytics  
and tantalums.  
• All resistors are in and / W or less unless otherwise  
specified.  
• Power voltage is dc 1.5V and fed with regulated dc power  
supply from battery terminal.  
• Voltage and waveforms are dc with respect to ground  
under no-signal conditions.  
0.2V/div 0.05µs/div  
5
0.46Vp-p  
1
4
no mark : PB  
16.9344MHz  
A : B+ Line.  
• Circled numbers refer to waveforms.  
IC801  
(XIN)  
qj  
– 31 –  
– 32 –  
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IC601 UPD63731GC-9EU  
6-6. IC BLOCK DIAGRAMS  
IC501 SN761056DBT  
100 99 98 97 96 95 94 93 92 91 90 89 86 87 86 85 84 83 82 81 80 79 78 77 76  
TE  
44  
43 ADIP IN  
42 ADIP  
REXT  
1
820mV  
ADIP  
ADIP  
PLL  
ALFA B  
IJ B  
TE C  
TON C  
TWpp C  
AwDw C  
TON PEAK  
TON BOTM  
2
3
Wpp-LPF  
VREF 1.1  
VDD ADC  
VREF  
FE  
1
2
3
4
5
6
7
RF  
EFM  
PLL  
41 S MONIT  
75 VDD  
S-MONITOR  
C
D
4
5
74 DRA3  
FE  
ABCD  
TE  
73  
DRA2  
TE  
ABCD  
SUBQ/ADIP  
DECODER  
DSSP  
72 DRA1  
71 DRA0  
70 DRA4  
69 DRA5  
68 DRA6  
TE  
VRT1  
RF  
4
VRT2  
ADIP  
8
9
3
FLAG  
67  
DRA7  
AC LRCK  
AC WDCK  
D-C  
6
AC  
WDCK  
FE  
40  
39  
38  
37  
VRT3  
10  
11  
12  
13  
14  
66 DRA8  
SECTOR  
DECODER  
EFM ACIRC  
DECODER  
Tpp/Wpp  
ABCD  
AVCC  
VSS ADC  
T COUNT  
DEFECT  
OF TRX  
65 DRA10  
AC BYCK  
AC DATA  
64  
63  
62  
61  
DRA11  
XRAS  
DRA9  
XOE2  
S DATA  
OFC C1  
8
8
36 OFC C2  
16  
EFM DATA A/B  
ECC DATA  
EBA  
VSS 15  
OFC C3  
OFC C4  
35  
34  
8
NC  
NC  
60 XOE  
16  
17  
18  
19  
20  
21  
22  
23  
24  
25  
RF  
12  
XCAS  
DRD2  
59  
58  
Iy  
Ix  
7
WR REQ etc.  
RD DT ECC  
8
8
NC  
5
8
8
FE  
57 DRD3  
56 VSS  
NC  
RFOUT  
33  
Jx  
9
VDD  
SSB CONTROL  
MONITOR I/O etc.  
32 AGND  
ATDT  
16  
10  
11  
12  
13  
Jy  
A
10  
LP  
31  
82V  
30  
29 TPP LPF  
XWE2  
XWE  
DRD1  
DRD0  
VDD  
55  
54  
53  
52  
51  
ABCD  
TFOUT  
TROUT  
FROUT  
FFOUT  
CK176  
XATWE  
DREQ  
A-C  
B
8
XBUSY  
T COUNT  
28  
DFCT  
DFCT  
27  
TON-C  
PD-NI  
PD-I  
14  
15  
16  
17  
CLOCK  
GENERATOR  
ATRAC  
DECODER  
OFTRK  
26  
OFTRK  
TON-C  
PD-O  
APC  
LD-DRV 18  
LD-EMIT 19  
LD-VDD 20  
26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50  
T COUNT  
25  
24  
DGND  
RESET  
23 SCK  
SERIAL  
I/F  
ADIP  
DVDD  
SBUS  
21  
22  
IC301 TA2131FL  
IC902 XC6368B101MR  
CE VDD  
FB  
1
IC302 AK4352VT-E2  
3
2
18  
17  
16  
15  
14  
13  
VREF WITH  
SOFT START,  
CE  
CLOCK DIVIDER  
MCLK  
PD  
1
2
16 CKS  
PW  
SW  
MT  
SW  
BST  
SW  
BEEP  
VREF  
LPF1  
V REF  
12  
11  
+
19  
TC MT  
15 VCML  
14 AOUTL  
PWM/PFM  
CONTROLAR  
PHASE  
COMPENSATION  
20  
21  
VCC1  
VINR  
ADD  
8X  
∆Σ  
10 BST NF1  
BICK  
SDATA  
LRCK  
DIF0  
3
4
5
6
7
8
LPF  
LPF  
INTERPOLATOR  
MODULATOR  
BST1  
SERIAL  
INPUT  
INTERFACE  
RAMP WAVE  
GENERATOR,  
OSC  
VINL  
22  
9
LPF2  
8X  
∆Σ  
13 AOUTR  
12 VCMR  
INTERPOLATOR  
MODULATOR  
+
PW  
A
PW  
B
BEEP  
OUTB  
BST2  
BST NF2  
BST OUT  
23  
24  
8
7
DIF1  
BEEP  
OUTA  
BUFFER,  
DRIVER  
DE-EMPHASIS  
CONTROL  
DEM  
11 VREF  
10 VDD  
BST  
AGC  
5
4
1
2
3
4
5
6
EXT  
GND  
9
VSS  
– 33 –  
– 34 –  
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IC602 MN41X17400CTT-10T1  
VCC 1  
26 VSS  
D0  
D1  
2
3
25 D3  
24 D2  
XWE 4  
23 XCAS  
22 XOE  
TIMING AND CONTROL  
XRAS  
5
A11  
6
NC 7  
A10 8  
4M  
ARRAY  
ROW  
ADDRESS  
BUFFERS  
4M  
ARRAY  
4M  
I/O  
ARRAY  
BUFFER  
A0  
9
A1 10  
A2 11  
A3 12  
4M  
ARRAY  
COLUMN  
ADDRESS  
BUFFERS  
COLUMN  
DECODER  
21 A9  
20 NC  
19 A8  
18 A7  
17 A6  
16 A5  
15 A4  
14 VSS  
VCC 13  
IC552 TLC372CPW  
IC903 S-8328E20MC-EYA-T2  
NC  
3
VDD  
2
VOUT  
1
8
6
5
7
V+  
VREF  
+
SOFT  
START  
CIRCUIT  
PWM  
CONTROL  
CIRCUIT  
V–  
1
3
4
2
5
EXT  
4
VSS  
IC803 S-8081ANNP-EDF-T2  
4
3
VDD  
OUT  
NC 1  
+
VREF  
VSS  
2
35 –  
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IC551 BD6602KUT  
48 47 46 45  
44  
43 42  
41 40  
39 38  
37  
36  
35  
34  
33  
H4PG2 49  
RO4 50  
+ –  
+ –  
+ –  
VCC2  
32 CPWO  
31 CPVO  
30 CPUO  
PRE-DRIVE  
H4VM 51  
29 VMU  
28 UO  
FO4 52  
H4PG1 53  
27 GNDUV  
26 VO  
RI4 54  
FI4 55  
PRE-DRIVE  
PRE-DRIVE  
25 NC  
PWM24 56  
24 VMVW  
23 WO  
RI2 57  
FI2 58  
PRE-DRIVE  
DECODER  
H2PG2 59  
RO2 60  
22 GNDW  
21 NC  
20 NC  
19 SGND  
18 ASGND  
VCC1  
TO  
EACH  
H2VM 61  
STANDBY  
17 OE  
BLOCK  
VCC2  
TO  
BEMF  
BIAS  
FO2 62  
H2PG1 63  
FI3 64  
COMPARATOR  
PRE-DRIVE  
1
2
3
4
5
6
7
8
9
10 11  
12 13 14 15 16  
IC802 AK93C55AV-L  
VPP  
GENERATOR  
VREF  
XCS  
SK  
1
2
VPP SW  
8
VCC  
INSTRUCTION  
DECODE  
CONTROL  
AND  
CLOCK  
GENERATION  
7
XBUSY  
ADD  
BUFFERS  
DECODER  
DO  
DI  
3
4
6
5
RST  
GND  
EEPROM  
INSTRUCTION  
REGISTER  
R/W AMPS  
AND  
AUTO ERASE  
DATA  
REGISTER  
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SECTION 7  
EXPLODED VIEWS  
NOTE:  
The mechanical parts with no reference  
number in the exploded views are not supplied.  
Items marked *are not stocked since  
they are seldom required for routine service.  
Some delay should be anticipated  
when ordering these items.  
-XX and -X mean standardized parts, so  
they may have some difference from the  
original one.  
Color Indication of Appearance Parts  
Example :  
The components identified by  
mark 0 or dotted line with mark  
0 are critical for safety.  
Replace only with part number  
specified.  
KNOB, BALANCE (WHITE) ... (RED)  
R
R
Abbreviation  
FR : French model  
Les composants identifiés par une  
marque 0 sont critiques pour  
la sécurité.  
Parts Color Cabinets Color  
Accessories and packing materials are  
given in the last of this parts list.  
Ne les remplacer que par une piéce  
portant le numéro spécifié.  
7-1. MAIN UNIT SECTION  
8
11  
9
10  
A
12  
12  
MT-MZE60-169  
14  
8
7
15  
12  
13  
16  
A
23  
22  
6
1
20  
17  
21  
18  
2
3
19  
4
5
Ref. No.  
Part No.  
Description  
Remark  
Ref. No.  
9
Part No.  
Description  
Remark  
1
2
3
4-225-573-01 KNOB (MB)  
4-225-574-01 BUTTON (OPEN)  
X-3378-853-1 CASE (REAR) ASSY (S1)  
(SILVER)...(SILVER) (EXCEPT US)  
X-3378-854-1 CASE (REAR) ASSY (L1) (BLUE)...(BLUE)  
4-225-572-01 KNOB (HOLD)  
X-3378-851-1 PANEL ASSY, (S-S), UPPER (SILVER)...(SILVER)  
(EXCEPT US)  
X-3378-852-1 PANEL ASSY, (S-L), UPPER (BLUE)...(BLUE)  
4-225-587-01 SCREW (MD), STEP  
X-4951-947-1 HOLDER ASSY  
3-318-382-91 SCREW (1.7X2.5), TAPPING  
9
10  
11  
12  
3
4
5
X-3378-849-1 LID ASSY (S), BATTERY CASE  
(SILVER)...(SILVER) (EXCEPT US)  
X-3378-850-1 LID ASSY (L), BATTERY CASE (BLUE)...(BLUE)  
4-225-566-01 FULCRUM (BATTERY CASE LID)  
(SILVER)...(SILVER) (EXCEPT US)  
13  
13  
14  
15  
16  
A-3323-416-A MAIN BOARD, COMPLETE (EXCEPT FR)  
A-3323-417-A MAIN BOARD, COMPLETE (FR)  
4-225-567-01 SPRING (CONTACT)  
4-225-568-01 SPRING, BATTERY COIL  
4-225-580-01 SPRING (POP UP L)  
5
6
6
7
8
8
4-225-566-11 FULCRUM (BATTERY CASE LID)  
(BLUE)...(BLUE)  
4-225-569-01 SHEET (BLIND)  
17  
18  
19  
20  
21  
X-4952-479-1 CHASSIS ASSY, REAR  
4-225-581-01 SPRING (POP UP R)  
4-225-583-01 SHEET, INSULATING  
4-989-078-01 SPRING (OPEN), TENSION  
3-045-227-01 SPACER (HOOK)  
4-218-229-17 SCREW (1.4), MI (SILVER)...(SILVER)  
(EXCEPT US)  
4-218-229-19 SCREW (1.4), MI (BLUE)...(BLUE)  
22  
23  
3-045-576-01 SPACER (KNOB)  
3-045-221-01 RETAINER (REAR), SPACER CHASSIS  
37 –  
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7-2. MECHANISM DECK SECTION  
(MT-MZE60-169)  
55  
54  
53  
56  
57  
M902  
A
M901  
59  
58  
61  
60  
A
52  
62  
57  
60  
51  
63  
57  
57  
The components identified by Les composants identifiés par une  
mark 0 or dotted line with mark marque 0 sont critiques pour la  
0 are critical for safety.  
Replace only with part number Ne les remplacer que par une piéce  
specified. portant le numéro spécifié.  
sécurité.  
Ref. No.  
Part No.  
Description  
Remark  
Ref. No.  
Part No.  
Description  
Remark  
51  
52  
53  
54  
55  
1-675-668-11 MOTOR FLEXIBLE BOARD  
4-963-883-42 SCREW (M1.4), PRECISION PAN  
X-4951-926-1 CHASSIS ASSY  
4-222-206-01 SPRING, THRUST  
4-222-216-01 GEAR (SA)  
59  
60  
61  
062  
63  
4-222-208-01 GEAR (SB)  
4-222-204-01 BEARING  
4-222-203-01 SCREW, LEAD  
X-4952-387-1 SERVICE ASSY, OP (LCX-2E)  
4-222-205-01 SPRING, RACK  
56  
57  
58  
3-338-645-31 WASHER (0.8-2.5)  
4-963-883-31 SCREW (M1.4), PRECISION PAN  
3-349-825-21 SCREW  
M901  
M902  
8-835-666-01 MOTOR, DC SSM-01C14A/C-NP (SPINDLE)  
1-763-399-11 MOTOR, DC (SLED) (WITH PULLEY GEAR)  
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SECTION 8  
ELECTRICAL PARTS LIST  
MAIN  
NOTE:  
Due to standardization, replacements in  
the parts list may be different from the  
parts specified in the diagrams or the  
components used on the set.  
-XX and -X mean standardized parts, so  
they may have some difference from the  
original one.  
Items marked *are not stocked since  
they are seldom required for routine service.  
Some delay should be anticipated  
when ordering these items.  
SEMICONDUCTORS  
In each case, u : µ, for example:  
uA.. : µA.. uPA.. : µPA..  
uPB.. : µPB.. uPC.. : µPC.. uPD.. : µPD..  
CAPACITORS  
The components identified by  
mark 0 or dotted line with mark  
0 are critical for safety.  
Replace only with part number  
specified.  
Les composants identifiés par une  
marque 0 sont critiques pour  
la sécurité.  
Ne les remplacer que par une piéce  
portant le numéro spécifié.  
RESISTORS  
All resistors are in ohms.  
METAL:Metal-film resistor.  
METAL OXIDE: Metal oxide-film resistor.  
F:nonflammable  
uF : µF  
COILS  
uH : µH  
Abbreviation  
FR : France model  
When indicating parts by reference  
number, please include the board.  
Ref. No.  
Part No.  
Description  
Remark  
Ref. No.  
Part No.  
Description  
Remark  
A-3323-416-A MAIN BOARD, COMPLETE (EXCEPT FR)  
A-3323-417-A MAIN BOARD, COMPLETE (FR)  
*********************  
C558  
C559  
C561  
C601  
C602  
1-164-677-11 CERAMIC CHIP 0.033uF 10%  
1-164-677-11 CERAMIC CHIP 0.033uF 10%  
1-164-156-11 CERAMIC CHIP 0.1uF  
16V  
16V  
25V  
25V  
25V  
1-164-156-11 CERAMIC CHIP 0.1uF  
< CAPACITOR >  
1-162-970-11 CERAMIC CHIP 0.01uF  
10%  
C101  
C102  
C103  
C201  
C202  
1-135-181-21 TANTALUM CHIP 4.7uF  
1-115-467-11 CERAMIC CHIP 0.22uF  
20%  
10%  
20%  
20%  
10%  
6.3V  
10V  
4V  
6.3V  
10V  
C603  
C604  
C605  
C607  
C608  
1-162-970-11 CERAMIC CHIP 0.01uF  
1-162-970-11 CERAMIC CHIP 0.01uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-107-826-11 CERAMIC CHIP 0.1uF  
10%  
10%  
25V  
25V  
25V  
25V  
16V  
1-113-690-11 ELECT CHIP  
220uF  
1-135-181-21 TANTALUM CHIP 4.7uF  
1-115-467-11 CERAMIC CHIP 0.22uF  
10%  
C203  
C302  
C303  
C304  
C305  
1-113-690-11 ELECT CHIP  
1-135-259-11 TANTAL. CHIP  
1-135-259-11 TANTAL. CHIP  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-135-259-11 TANTAL. CHIP 10uF  
220uF  
10uF  
10uF  
20%  
20%  
20%  
4V  
C609  
C610  
C611  
C612  
C613  
1-119-750-11 TANTAL. CHIP  
1-110-569-11 TANTAL. CHIP  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
22uF  
47uF  
20%  
20%  
6.3V  
6.3V  
25V  
25V  
25V  
6.3V  
6.3V  
25V  
6.3V  
20%  
C306  
C307  
C308  
C309  
C310  
1-107-826-11 CERAMIC CHIP 0.1uF  
1-125-838-11 CERAMIC CHIP 2.2uF  
10%  
10%  
20%  
20%  
10%  
16V  
C614  
C801  
C803  
C805  
C806  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-162-962-11 CERAMIC CHIP 470PF  
1-162-970-11 CERAMIC CHIP 0.01uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
25V  
50V  
25V  
25V  
25V  
6.3V  
6.3V  
6.3V  
6.3V  
10%  
10%  
1-135-259-11 TANTAL. CHIP  
10uF  
1-135-181-21 TANTALUM CHIP 4.7uF  
1-125-837-11 CERAMIC CHIP 1uF  
1-164-227-11 CERAMIC CHIP 0.022uF 10%  
C351  
C501  
C502  
C503  
C504  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-107-826-11 CERAMIC CHIP 0.1uF  
1-110-563-11 CERAMIC CHIP 0.068uF 10%  
1-162-969-11 CERAMIC CHIP 0.0068uF 10%  
1-162-969-11 CERAMIC CHIP 0.0068uF 10%  
25V  
16V  
16V  
25V  
25V  
C809  
C811  
C812  
C813  
C814  
1-164-156-11 CERAMIC CHIP 0.1uF  
25V  
25V  
6.3V  
25V  
25V  
10%  
1-162-970-11 CERAMIC CHIP 0.01uF  
1-125-837-11 CERAMIC CHIP 1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
10%  
10%  
C505  
C509  
C510  
C511  
C512  
1-162-970-11 CERAMIC CHIP 0.01uF  
1-164-227-11 CERAMIC CHIP 0.022uF 10%  
1-162-962-11 CERAMIC CHIP 470PF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-162-969-11 CERAMIC CHIP 0.0068uF 10%  
10%  
25V  
25V  
50V  
25V  
25V  
C815  
C851  
C852  
C853  
C854  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-164-156-11 CERAMIC CHIP 0.1uF  
1-162-964-11 CERAMIC CHIP 0.001uF 10%  
1-162-964-11 CERAMIC CHIP 0.001uF 10%  
1-164-156-11 CERAMIC CHIP 0.1uF  
25V  
25V  
50V  
50V  
25V  
10%  
C513  
C514  
C515  
C516  
C517  
1-125-837-11 CERAMIC CHIP 1uF  
1-125-837-11 CERAMIC CHIP 1uF  
1-162-967-11 CERAMIC CHIP 0.0033uF 10%  
1-162-945-11 CERAMIC CHIP 22PF  
1-107-826-11 CERAMIC CHIP 0.1uF  
10%  
10%  
6.3V  
6.3V  
50V  
50V  
16V  
C901  
C903  
C904  
C906  
C907  
1-119-749-11 TANTAL. CHIP  
1-110-975-11 TANTAL. CHIP  
1-110-975-11 TANTAL. CHIP  
1-162-923-11 CERAMIC CHIP 47PF  
1-109-982-11 CERAMIC CHIP 1uF  
33uF  
47uF  
47uF  
20%  
20%  
20%  
5%  
4V  
6.3V  
6.3V  
50V  
10V  
5%  
10%  
10%  
C518  
C521  
C524  
C551  
C552  
1-117-720-11 CERAMIC CHIP 4.7uF  
1-164-677-11 CERAMIC CHIP 0.033uF 10%  
10V  
16V  
6.3V  
16V  
16V  
C908  
C909  
C910  
C911  
C912  
1-119-749-11 TANTAL. CHIP  
1-162-962-11 CERAMIC CHIP 470PF  
1-162-923-11 CERAMIC CHIP 47PF  
1-104-630-11 TANTAL. CHIP  
1-162-966-11 CERAMIC CHIP 0.0022uF 10%  
33uF  
20%  
10%  
5%  
4V  
50V  
50V  
6.3V  
50V  
1-117-920-11 TANTAL. CHIP  
10uF  
20%  
10%  
10%  
1-107-826-11 CERAMIC CHIP 0.1uF  
1-107-826-11 CERAMIC CHIP 0.1uF  
33uF  
20%  
C553  
C554  
C555  
C556  
C557  
1-107-765-11 TANTAL. CHIP  
1-107-765-11 TANTAL. CHIP  
1-135-238-21 TANTAL. CHIP  
1-135-238-21 TANTAL. CHIP  
3.3uF  
3.3uF  
6.8uF  
6.8uF  
20%  
20%  
20%  
20%  
16V  
16V  
10V  
10V  
16V  
C951  
C952  
1-164-156-11 CERAMIC CHIP 0.1uF  
25V  
2.5V  
1-125-976-11 TANTAL. CHIP  
150uF  
20%  
1-164-677-11 CERAMIC CHIP 0.033uF 10%  
39 –  
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MAIN  
Ref. No.  
Part No.  
Description  
Remark  
Ref. No.  
Part No.  
Description  
Remark  
< CONNECTOR >  
Q801  
Q802  
Q901  
Q902  
Q903  
8-729-905-35 TRANSISTOR 2SC4081-R  
8-729-046-48 FET FDV303N  
8-729-044-50 TRANSISTOR 2SD2153  
8-729-230-60 TRANSISTOR 2SA1586-YG  
8-729-046-48 FET FDV303N  
* CN501 1-778-168-11 CONNECTOR, FFC/FPC (ZIF) 20P  
CN551 1-784-228-21 CONNECTOR, FFC/FPC (ZIF) 8P  
< DIODE >  
Q904  
Q905  
Q906  
Q907  
Q908  
8-729-402-16 TRANSISTOR XN4608  
8-729-809-46 TRANSISTOR 2SD1935-CT6  
8-729-420-44 TRANSISTOR UN5210  
8-729-046-48 FET FDV303N  
D351  
D352  
D353  
D354  
D802  
8-719-017-58 DIODE MA8068  
8-719-056-72 DIODE UDZ-TE-17-2.4B  
8-719-056-72 DIODE UDZ-TE-17-2.4B  
8-719-056-80 DIODE UDZ-TE-17-5.1B  
8-729-046-48 FET FDV303N  
8-719-061-82 LED TLSU1002(TPX1,SONY) (OPERATE)  
< RESISTOR >  
D855  
D901  
D902  
D903  
8-719-066-17 DIODE FTZ6.8E-T148  
8-719-072-27 DIODE MA2Z748001S0  
8-719-049-09 DIODE 1SS367-T3SONY  
8-719-049-09 DIODE 1SS367-T3SONY  
R101  
R102  
R103  
R104  
R201  
1-216-833-11 RES-CHIP  
1-216-827-11 METAL CHIP  
1-216-797-11 METAL CHIP  
1-216-829-11 METAL CHIP  
1-216-833-11 RES-CHIP  
10K  
3.3K  
10  
4.7K  
10K  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
< FERRITE BEAD >  
FB801 1-414-228-11 FERRITE BEAD INDUCTOR  
FB802 1-414-228-11 FERRITE BEAD INDUCTOR  
R202  
R203  
R204  
R301  
R302  
1-216-827-11 METAL CHIP  
1-216-797-11 METAL CHIP  
1-216-829-11 METAL CHIP  
1-216-803-11 METAL CHIP  
1-216-831-11 METAL CHIP  
3.3K  
10  
4.7K  
33  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
< IC >  
6.8K  
IC301 8-759-598-15 IC TA2131FL-EL  
IC302 8-759-665-50 IC AK4352VT-E2  
IC501 8-759-657-49 IC SN761055DBT  
IC551 8-759-657-50 IC BD6602KUT  
IC552 8-759-358-40 IC TLC372CPW-E20  
R501  
R502  
R503  
R504  
R505  
1-216-839-11 METAL CHIP  
1-216-853-11 METAL CHIP  
1-216-827-11 METAL CHIP  
1-216-821-11 METAL CHIP  
1-216-864-11 METAL CHIP  
33K  
470K  
3.3K  
1K  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
0
IC601 8-759-657-48 IC uPD63732GC-9EU  
IC602 8-759-559-57 IC MN41X17400CTT-10T1  
IC801 8-759-659-63 IC RU6915MF-0006  
IC802 8-759-449-23 IC AK93C55AV-L  
R506  
R507  
R508  
R509  
R513  
1-216-793-11 RES-CHIP  
1-216-843-11 METAL CHIP  
1-216-864-11 METAL CHIP  
1-216-864-11 METAL CHIP  
1-216-864-11 METAL CHIP  
4.7  
68K  
0
0
0
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
IC803 8-759-665-49 IC S-80818ANNP-EDF-T2  
IC901 8-759-665-47 IC S-8328B24MC  
IC902 8-759-657-26 IC XC6368B101MR  
IC903 8-759-665-48 IC S-8328E20MC-EYA-T2  
R514  
R551  
R552  
R553  
R554  
1-216-864-11 METAL CHIP  
1-216-833-11 RES-CHIP  
1-216-833-11 RES-CHIP  
1-216-829-11 METAL CHIP  
1-216-829-11 METAL CHIP  
0
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
10K  
10K  
4.7K  
4.7K  
< JACK >  
J301  
1-778-368-11 JACK, HEADPHONE (i)  
R555  
R556  
R601  
R801  
R802  
1-216-829-11 METAL CHIP  
1-216-829-11 METAL CHIP  
1-216-803-11 METAL CHIP  
1-218-895-11 METAL CHIP  
1-218-895-11 METAL CHIP  
4.7K  
4.7K  
33  
100K  
100K  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
< COIL >  
L501  
L502  
L551  
L552  
L553  
1-412-006-31 INDUCTOR CHIP 10uH  
1-412-006-31 INDUCTOR CHIP 10uH  
1-410-389-31 INDUCTOR CHIP 47uH  
1-410-389-31 INDUCTOR CHIP 47uH  
0.5% 1/16W  
0.5% 1/16W  
R803  
R804  
R806  
R809  
R810  
1-216-853-11 METAL CHIP  
1-216-853-11 METAL CHIP  
1-216-841-11 METAL CHIP  
1-216-833-11 RES-CHIP  
1-216-827-11 METAL CHIP  
470K  
470K  
47K  
10K  
3.3K  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
1-414-400-41 INDUCTOR  
22uH  
L554  
L601  
L901  
L902  
L903  
1-414-400-41 INDUCTOR  
1-412-006-31 INDUCTOR CHIP 10uH  
1-419-478-11 COIL, CHOKE 22uH  
1-412-064-11 INDUCTOR CHIP 100uH  
1-412-064-11 INDUCTOR CHIP 100uH  
22uH  
R811  
R812  
R813  
R814  
R816  
1-216-825-11 METAL CHIP  
1-216-829-11 METAL CHIP  
1-216-831-11 METAL CHIP  
1-216-835-11 METAL CHIP  
1-216-825-11 METAL CHIP  
2.2K  
4.7K  
6.8K  
15K  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
< TRANSISTOR >  
2.2K  
Q301  
Q501  
8-729-037-52 TRANSISTOR 2SD2216J-QR  
8-729-922-10 TRANSISTOR 2SA1577-QR  
R817  
1-216-809-11 METAL CHIP  
100  
5%  
1/16W  
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MAIN  
Ref. No.  
Part No.  
Description  
Remark  
Ref. No.  
Part No.  
Description  
Remark  
R818  
R819  
R821  
R822  
R823  
1-216-809-11 METAL CHIP  
1-216-853-11 METAL CHIP  
1-216-857-11 METAL CHIP  
1-216-845-11 METAL CHIP  
1-216-864-11 METAL CHIP  
100  
470K  
1M  
100K  
0
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
MISCELLANEOUS  
***************  
51  
062  
M901  
M902  
1-675-668-12 MOTOR FLEXIBLE BOARD  
X-4952-387-1 SERVICE ASSY, OP (LCX-2E)  
8-835-666-01 MOTOR, DC SSM-01C14A/C-NP (SPINDLE)  
1-763-399-11 MOTOR, DC (SLED) (WITH PULLEY GEAR)  
R824  
R825  
R826  
R827  
R832  
1-218-871-11 METAL CHIP  
1-218-887-11 METAL CHIP  
1-216-857-11 METAL CHIP  
1-216-857-11 METAL CHIP  
1-216-845-11 METAL CHIP  
10K  
47K  
1M  
1M  
100K  
0.5% 1/16W  
0.5% 1/16W  
5%  
5%  
5%  
*************************************************************  
1/16W  
1/16W  
1/16W  
ACCESSORIES & PACKING MATERIALS  
********************************  
R833  
R835  
R836  
R837  
R902  
1-216-864-11 METAL CHIP  
1-216-864-11 METAL CHIP  
1-216-839-11 METAL CHIP  
1-216-864-11 METAL CHIP  
1-216-853-11 METAL CHIP  
0
0
33K  
0
470K  
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
1-418-493-71 REMOTE CONTROL UNIT (RM-MZ2N)  
3-043-288-11 MANUAL, INSTRUCTION (ENGLISH,SPANISH,  
TRADITIONAL CHINESE) (E)  
3-043-288-21 MANUAL, INSTRUCTION (ENGLISH,FRENCH)  
(US/CND/AEP)  
3-043-288-31 MANUAL, INSTRUCTION (GERMAN,ITALIAN)  
(AEP)  
3-043-288-41 MANUAL, INSTRUCTION (DUTCH,PORTUGUESE)  
(AEP)  
R903  
R911  
R912  
R913  
R914  
1-216-857-11 METAL CHIP  
1-216-864-11 METAL CHIP  
1-218-895-11 METAL CHIP  
1-218-911-11 METAL CHIP  
1-218-883-11 METAL CHIP  
1M  
0
100K  
470K  
33K  
5%  
5%  
1/16W  
1/16W  
0.5% 1/16W  
0.5% 1/16W  
0.5% 1/16W  
3-043-288-51 MANUAL, INSTRUCTION (SWEDISH,FINNISH)  
(AEP)  
R915  
R916  
R917  
R919  
R920  
1-216-863-11 RES-CHIP  
1-216-851-11 METAL CHIP  
1-216-853-11 METAL CHIP  
1-216-829-11 METAL CHIP  
1-216-864-11 METAL CHIP  
3.3M  
330K  
470K  
4.7K  
0
5%  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1/16W  
3-043-288-61 MANUAL, INSTRUCTION (SPANISH,RUSSIAN)  
(AEP)  
4-221-117-01 CASE, CARRYING  
8-953-278-90 HEADPHONE MDR-A34SP SET (US)  
8-953-304-90 RECEIVER MDR-E805SP SET (EXCEPT US)  
R921  
R922  
R923  
R924  
R925  
1-218-879-11 METAL CHIP  
1-218-895-11 METAL CHIP  
1-218-911-11 METAL CHIP  
1-218-911-11 METAL CHIP  
1-218-891-11 METAL CHIP  
22K  
0.5% 1/16W  
0.5% 1/16W  
0.5% 1/16W  
0.5% 1/16W  
0.5% 1/16W  
100K  
470K  
470K  
68K  
R926  
R927  
R928  
R929  
1-216-853-11 METAL CHIP  
1-216-857-11 METAL CHIP  
1-216-857-11 METAL CHIP  
1-216-823-11 METAL CHIP  
470K  
1M  
1M  
5%  
5%  
5%  
5%  
1/16W  
1/16W  
1/16W  
1/16W  
1.5K  
< NETWORK RESISTOR >  
RB551 1-233-965-11 RES, NETWORK (CHIP TYPE) 4.7K  
RB552 1-233-979-11 RES, NETWORK (CHIP TYPE) 1M  
RB802 1-233-977-11 RES, NETWORK (CHIP TYPE) 470K  
< SWITCH >  
S801  
S802  
S803  
S804  
S805  
1-771-138-21 SWITCH, KEY BOARD (x)  
1-771-138-21 SWITCH, KEY BOARD (> N)  
1-771-138-21 SWITCH, KEY BOARD (.)  
1-771-138-21 SWITCH, KEY BOARD (VOL +)  
1-771-138-21 SWITCH, KEY BOARD (VOL )  
S806  
S807  
S808  
S809  
1-762-079-11 SWITCH, SLIDE (DIGITAL MEGABASS)  
1-762-078-11 SWITCH, SLIDE (AVLS)  
1-762-078-11 SWITCH, SLIDE (HOLD)  
1-762-342-11 SWITCH, PUSH (1 KEY) (OPEN/CLOSE)  
< VIBRATOR >  
X601  
1-767-621-11 VIBRATOR, CERAMIC (16.9344MHz)  
*************************************************************  
The components identified by Les composants identifiés par une  
mark 0 or dotted line with mark marque 0 sont critiques pour la  
0 are critical for safety.  
Replace only with part number Ne les remplacer que par une piéce  
specified.  
sécurité.  
portant le numéro spécifié.  
41 –  
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MZ-E60  
Sony Corporation  
Personal Audio Division Company  
2000A0478-1  
Printed in Japan C2000. 1  
9-927-633-11  
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