MZ-E300
SERVICE MANUAL
US Model
Canadian Model
AEP Model
Ver 1.2 2001.12
E Model
Chinese Model
Model Name Using Similar Mechanism NEW
US and foreign patents licensed from Dolby
Laboratories Licensing Corporation
MD Mechanism Type
MT-MZE300-176
LCX-4E
Optical Pick-up Mechanism Type
SPECIFICATIONS
System
Audio playing system
MiniDisc digital audio system
Laser diode properties
Battery operation time
Battery life
(EIAJ1))
Battery
Playback
LR6 (SG) Sony Alkaline dry battery2)
Approx. 33 hours
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.
1)
2)
Measured in accordance with the EIAJ (Electronic Industries
Association of Japan) standard (using a Sony MDW-series Mini-disc).
When using a Sony LR6 (SG) “STAMINA” alkaline dry battery
(produced in Japan).
Note
The effective battery life may be shorter than that indicated above,
depending on operating conditions, the surrounding temperature, and
the battery type.
Revolutions
Approx. 700 rpm to 1,500 rpm
Error correction
ACIRC (Advanced Cross Interleave Reed Solomon Code)
Sampling frequency
44.1 kHz
Coding
ATRAC (Adaptive TRansform Acoustic Coding)
Modulation system
Dimensions
Approx. 83.0 x 26.7 x 76.5 mm (w/h/d) (3 3/8 x 1 1/16 x 3 1/8 in.)
(not including projecting parts and controls)
Mass
Approx. 83.0 g (3.0 oz) (the player only)
Supplied accessories
Headphones/earphones (1)
EFM (Eight to Fourteen Modulation)
Number of channels
Design and specifications are subject to change without notice.
2 stereo channels
1 monaural channel
Frequency response
20 to 20,000 Hz 3 dB
Wow and Flutter
Below measurable limits
Power requirements
One LR6 (size AA) battery (not supplied)
PORTABLE MINIDISC PLAYER
9-873-064-13
2001L0200-1
© 2001.12
Sony Corporation
Personal Audio Company
Published by Sony Engineering Corporation
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MZ-E300
SECTION 2
GENERAL
This section is extracted from
instruction manual.
3
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MZ-E300
SECTION 3
DISASSEMBLY
• The equipment can be removed using the following procedure.
Main board
“Lid ASSY, Upper”,
Holder ASSY
Set
Mechanism deck
Optical pick-up ASSY
Note : Follow the disassembly procedure in the numerical order given.
3-1.“LID ASSY, UPPER”, HOLDER ASSY
Note : Holder ASSY installation
1. Attach the holes on Holder ASSY to the projections on right and left sides.
2. Attach Spring (POP/L) as shown in the figure.
3 Lid ASSY , Upper
1 Screws (1.4),MI
2 Move it away
from projection
Holder ASSY
Reinforcement
Spring (POP/L)
5 Holder ASSY
4 Move it away
from projection
4 Move it away
from projection
Case ASSY
3-2. MECHANISM DECK
1 Screw (MD), step
Mechanism deck
2
5 Motor flexible board
6 OP flexible board
7 Screws, tapping (1.7)
4
8
Reinforcement
3 Claw
Case ASSY
4
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MZ-E300
3-3. MAIN BOARD
Note : On installation of main board, adjust the position of
both switch (S809) and knob (HOLD).
1 Screws, tapping (1.7)
Main board
Knob (HOLD)
3
2 Claw
3-4. OPTICAL PICK-UP ASSY
Optical pick-up ASSY
(LCX-4E)
1 Washer
2 Gear (SA)
5
3 Screw (MI 1.4)
4 Spring, thrust detent
5
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MZ-E300
SECTION 4
TEST MODE
Lead wires: 4 leads
4-2. SETTING THE TEST MODE
4-2-1. How to set the TEST MODE
To set the TEST MODE, three methods are available.
1 Solder bridge and short BP801 (TEST) on the main board.
Then turn on the power.
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, performs
adjustments in sequence automatically, and displays the faulty
location if any fault is found. In the Manual mode, selected ad-
justments can be performed automatically.
•
Operations in the Overall Adjustment mode can be performed
either via the main unit, or the keys of a remote control unit.
Note that this device does not include a remote control unit.
Therefore, since no connection terminals for a remote control
are provided either, a connection device must be used in order
to allow a suitable remote control unit to be connected.
MAIN BOARD (SIDE A)
15
BP801
(TEST)
TP809
C806
R907
R803
X801
20
21
Connection
Following parts are required
TP808
TP816
Remote commander: RM-MZ2N (1-418-493-71)
After RM-MZE1 applicable to 2.4V
(Not applicable to remote commanders
before RM-MZE1).
C80
C805 R82
Jack: 7 poles jack for phones/remote commander (1-793-288-61)
JACK: 1-793-288-61
BP801
OPEN : Normal mode
SHORT : Test mode
R
R
R
R_GND
4 3 2 1
2 Using a pair of tweezers or similar tool short-circuit TP804 and
TP805 on the main board and turn on the power.
TP804 TP805
MAIN BOARD
(SIDE A)
MAIN BOARD
(SIDE A)
1
2
3
4
TP803 TP802
TP801
TP804
TP803 TP802
TP804
TP801
TP951
TP805 TP806
TP951
TP806
TP805
3 In the normal mode, operate the keys on the set and those on the
remote control as specified below:
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:
> N t > N t . t . t > N
t . t > N t . t X t X
6
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VerM1.2Z-2E00310.102
4-2-2. Operations when the TEST MODE is set
When the TEST MODE is entered, the system switches to the dis-
play 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 fol-
lowing displays:
4-3.TEST MODE STRUCTURE
* Manual mode operation can only be performed via the remote
control unit.
Use the connection tool to connect the remote control unit. The
display of the main unit shows “Adj”.
Main unit LCD
Test Mode
(Display Check Mode)
+
key
key
F
AVLS BASS
1SHUFF
u
Manual Mode
(Remote control only)
888:88
x
All on
All off
+
key
Servo Mode
Audio Mode
Power Mode
key
Microprocessor
version
display
OP Alignment Mode
130
Press and hold
x
down key
Display segment check mode
(Main unit only)
Remote control LCD
x
Release key
F 1SHUFF PGMu
.
or
key
SOUND 1 2 BASS 1 2
888
Overall Adjustment Mode
All on
x
key
4-4. MANUAL MODE
All off
4-4-1. Outline of the function
The Manual mode is designed to perform adjustments and
operational checks on the set’s operation according to each
individual function.
008 V1.300
Microprocessor
version
display
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.
The remote control display varies with the type of
remote control unit used.
(Example shown: RM-MC10L)
* Manual mode operation can only be performed via the remote
control unit.
Use the connection tool to connect the remote control unit. The
display of the main unit shows “Adj”.
•
The current display is retained as long as either the PLAY
MODE/DISPLAY key on the main unit or the PLAY MODE
key on the remote control unit is pressed and held.
4-4-2. How to set the Manual mode
1. Set the TEST MODE and press + key to set the Manual mode.
4-2-3. How to release theTEST MODE
When method 1 was used:
Remote control LCD display
Turn off the power and open the solder bridge on BP801 on the
main board.
000AAAS CC
Note: The solder should be removed clean. The remaining solder
may make a short with the chassis and other part.
When method 2 or 3 was used:
2. When the test mode display shows “100”, “200”, “300”, “500”,
“600”, “700”, “800”, or “900”, the optical pickup can be moved
inside and outside of the SLED perimeter by continuously press-
ing the ( > N or . keys on the main unit.
Turn off the power.
Note: If electrical adjustment (see page 8) has not been finished
completely, always start in the test mode. (The set cannot
start in normal mode)
7
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MZ-E300
3. Each test item is assigned with a three-digit item number. The
100th place is a major item, 10th place is a middle item, and unit
place is a minor item.
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.
+
key : 100th place of mode number
increase
Change Major
Item
key : 100th place of mode number
decrease
x
> N key
key
4-6. NV RESET
+
key : 10th place of mode number
increase
key : 10th place of mode number
decrease
Change Middle
Item
Power: Connect the battery terminals to a stable DC 1.5V power
supply, or insert fresh batteries (size “AA”, IEC “LR6”).
Two different methods apply for NV reset, depending on whether
the main unit or a remote control unit is used.
x
> N key
key
> N key : Unit place of mode number
Change Minor
Item
NV reset via main unit
1. Enter test mode.
increase
.
key : Unit place of mode number
decrease
2. Use the – key or the . key to set the device to Overall
+
key : Up
Change Adjustment
Value
Adjustment mode.
key : Down
Write Adjustment
Value
ASS
X
key : When adjusted value is changed :
Adjusted value is written.
3. Press the PLAY MODE/DISPLAY key. “CL” starts to flash.
When adjusted value is not changed :
That item is adjusted automatically.
AdJ cL
4. During each test mode, the display is changed from one to
another each time DISPLAY key is pressed (Remote control
only).
4. Press the PLAY MODE/DISPLAY key once more. “CL” stops
flashing and remains lit, thus concluding NV reset.
Address Value & Adjustment Value
LCD display
AdJ cL
011 XXXSXX
5. Press the x key to return to test mode.
Block Error Value & Adjustment Value
LCD display
NV reset via remote control
1. Set the TEST MODE.
011 XX BXX
ADIP Error Value & Adjustment Value
LCD display
2. Set the Manual mode and set the item No. 021, Reset NV.
LCD display
011 XX AXX
* Functions are displayed,
but cannot be used via
this unit.
021 AAAS CC
Jitter Value & Adjustment Value
LCD display
3. Press X key on the remote control.
011 XXXJXX
LCD display
Power Adjustment Value
LCD display
021 AAAS CC
Flash CC
731 XX VXX
After the voltage indicator appears,
press the DISPLAY key twice.
4. Press X key on the remote control again.
LCD display
Memory Monitor Mode
021 AAAS CC
XXX: Each Value
XX: Adjustment Value
for Item number
5. Press x key to terminate the Manual mode and return to the
Note: In the Power mode, the item title display is only displayed.
TEST MODE.
5. To terminate the Manual mode and return to the TEST MODE,
press x key.
8
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MZ-E300
4-6-1. Electrical offset adjustment method
Note: Doing adjustment by the state that a disc does not enter.
1. Confirm the power voltage is 1.5V.
2. Set to the test mode.
4-7. OVERALL ADJUSTMENT MODE
4-7-1. Overall adjustment mode structure
3. Press the – key of main unit activates the overall adjustment
mode.
TEST MODE
(Display Check Mode)
Main unit LCD display
.
VOL – key or
key
Overall Adjustment
Title Display(ASSY**)
ASS
x
.
key
key
CD overall
Adjustment
4. Press the + key.
> N key
Main unit LCD display
x
> N key
key
MO overall
Adjustment
035: XX
x
VOL + key
key
5. Press the + key once more. Adjustment is complete when the
adjustment value appears in the “XX” position.
Electrical offset
Adjustment key
4-6-2. Display segment check mode
PLAY MODE/DISPLAY key
NV reset
x
key
1. Enter test mode. Display continuously alternates between the
following three conditions: entire LCD is lit, entire LCD is ex-
tinguished, version info is shown, and so on.
Perform overall adjustments according to the following procedures
(procedures may differ depending on the microprocessor chip
version used).
2. Press and hold the x key on the main unit to enter display
segment check mode.
For Ver. 1.10, if it is no good in the overall adjustment, please
repeat the overall adjustment several times.
* Should segments not be displayed correctly at this point, a short-
circuited COM terminal and/or SEG terminal on the micropro-
cessor chip (IC801) are possible causes.
Microprocessor Version 1.10
1 Clear NV.
3. Display returns to condition “1” as soon as the x key is re-
leased.
2 Electric offset adjustment.
3 Rewriting of RAM 633h
1. switch to manual mode No. 100.
2. Press the DISPLAY key on the remote control unit 6 times
consecutively to enter RAM mode.
3. Change the RAM address to 633h.
Use the following keys on the remote control unit to change
the digits of the RAM address:
“The DISPLAY key for the first digit (hundreds), the x key
for the second digit (tens) and the >B key or the .
key for the third digits (units).”
4. Use the + and – keys on the remote control unit to set the
adjustment value of No.633h to 03h and press once the pause
key on the remote control unit to write this value to NV.
“(If NV is cleared, the value is 00h.)
5. Press the DISPLAY key once more to change the display
to “address and adjustment value display”.
6. Switch to the overall adjustment.
4 CD overall adjustment * (Not to turn off the power between the
items 3 and 4 .)
9
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MZ-E300
Ver 1.1 2001.03
5 Change the disc to MO overall adjustment disc (GA1 disc).
Switch to manual mode No.114.
5 Rewriting of the adjustment value.
1.After CD overall adjustment, switch to manual mode No. 321
in the condition the disc is in.
Press the pause key on the remotecontrol unit to set to the
automatic adjustment.
After adjustment, pull out the battery from the set to turn off
the power.
Then insert the battery again.
2.Press – key on the remote control unit to set 1 step down the
adjustment value of No. 321, and press the pause key on the
remote control unit to write this value to NV.
3.Press the >B key on the remote control unit to switch to
manual mode No. 323.
6 MO overall adjustment.
4.Press the pause key on the remote control unit to set to the
automatic adjustment.
During adjusting automatically, the adjustment value turns on
and off, so wait for the time the adjustment value is on.
5.Press the >B key on the remote control unit to switch to
manual mode No. 345.
4-7-2. Overall CD and MO adjustment method
1. Set the TEST MODE and press VOL – key or . key to set
the Overall Adjustment mode.
Main unit LCD display
6.Note down the current adjustment value of No. 345 (value X).
Use the + and – keys on the remote control unit to set the
adjustment value of No. 345 to the value (Y) determined by
the formula below, and press the pause key on the remote
control unit to write this value to NV.
ASS
2. Insert CD disc in the set, and press . key to set the Overall
CD Adjustment mode.
Formula: X x 1.18 = Y
* Since X and Y are 2’sC, attention must be paid to codes.
And the maximum value of Y must be 7Fh. (Never set it to
the negative value.)
Automatic adjustments are made.
Main unit LCD display
Example: Since X = 2Bh, Y = 2Bh x 1.18 = 33h
6 Change the disc to MO overall adjustment disc (GA1 disc).
Switch to manual mode No.114.
XXX:
Press the pause key on the remotecontrol unit to set to the
automatic adjustment.
After adjustment, pull out the battery from the set to turn off
the power.
XXX: Item No. for which an adjustment is being executed.
YY: Adjustment Value
Then insert the battery again.
3. If NG in the overall CD adjustments, return to Reset NV and
perform from the electrical offset adjustment again.
7 MO overall adjustment.
Microprocessor Version 1.20 and higher
1 Clear NV.
The NG item and “ng” alternately flash on the main unit LCD
display.
2 Electric offset adjustment.
3 CD overall adjustment.
XXX:
4 Rewriting of the adjustment value.
1.After CD overall adjustment, switch to manual mode No. 321
in the condition the disc is in.
n
2.Press – key on the remote control unit to set 1 step down the
adjustment value of No. 321, and press the pause key on the
remote control unit to write this value to NV.
3.Press the >B key on the remote control unit to switch to
manual mode No. 323.
4.Press the pause key on the remote control unit to set to the
automatic adjustment.
During adjusting automatically, the adjustment value turns on
and off, so wait for the time the adjustment value is on.
5.Press the >B key on the remote control unit to switch to
manual mode No. 345.
6.Note down the current adjustment value of No. 345 (value X).
Use the + and – keys on the remote control unit to set the
adjustment value of No. 345 to the value (Y) determined by
the formula below, and press the pause key on the remote
control unit to write this value to NV.
XXX: NG item No.
YY: Adjustment Value
4. If OK through the overall CD adjustments, then perform overall
MO adjustments.
Main unit LCD display
End:cd
5. Insert MO disc in the set, and press > N key to set the
Overall MOAdjustment mode. Automatic adjustments are made.
Main unit LCD display
Formula: X x 1.18 = Y
* Since X and Y are 2’sC, attention must be paid to codes.
And the maximum value of Y must be 7Fh. (Never set it to
the negative value.)
XXX:
Example: Since X = 2Bh, Y = 2Bh x 1.18 = 33h
XXX: Item No. for which an adjustment is being executed.
YY: Adjustment Value
10
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MZ-E300
6. If NG in the overall MO adjustments, return to Reset NV and
perform the adjustment again.
The NG item and “ng” alternately flash on the main unit LCD
display.
XXX:
n
XXX: NG item No.
YY: Adjustment Value
7. If OK through the overall MO adjustments, press x key to
return to the TEST MODE and terminate the Overall Adjust-
ment mode.
Main unit LCD display
11
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MZ-E300
4-7-3. Overall CD and MO adjustment items
3. MO overall adjustment
1. Overall offset adjustment
Item No.
Description
GRV setting servo off
ALFA offset adjustment
Item No.
030h
Description
GRV setting servo off
100h
112h
113h
114h
118h
200h
571h
561h
220h
223h
221h
223h
226h
230h
236h
237h
238h
244h
245h
110h
562h
120h
122h
121h
122h
123h
124h
125h
130h
144h
145h
139h
131h
132h
136h
137h
134h
131h
132h
138h
141h
100h
Laser ON/OFF Electric offset differential
measurement
IJ offset adjustment
035h
FE offset adjustment
AW_DW_OFFSET
2. CD overall adjustment
LPIT setting servo off
Item No.
Description
HPIT setting servo off
ALFA offset adjustment
CLV START
300h
312h
313h
314h
571h
561h
562h
320h
323h
321h
328h
829h
323h
324h
330h
336h
337h
338h
344h
345h
521h
Move to inside of SLED perimeter
Focus on
IJ offset adjustment
TE offset adjustment
FE offset adjustment
TE gain adjustment
CLV start
TE offset adjustment
Move to inside of SLED perimeter
Move to outside of SLED perimeter
Focus on
Tracking Drive Voltage = “00h” setting
Tracking ON
ABCD gain adjustment
KF gain adjustment
TE offset adjustment
TE gain adjustment
RF gain adjustment
TWPP gain adjustment
TWPP gain [LPIT] adjustment value write
TE offset adjustment
Focus gain adjustment
Tracking gain adjustment
GRV setting servo off (CLV remains as is)
Move to outside of SLED perimeter
Focus on
OFTRK adjustment
Tracking ON
ABCD gain adjustment
KF gain adjustment
TE offset adjustment (TON)
TE gain adjustment
RF gain adjustment
TE offset adjustment (TON)
TE offset adjustment (TEIN)
TE offset adjustment (TWPP)
OFTRK adjustment
FOCUS gain adjustment
Tracking gain adjustment
Twin axis sensitivity compensation (inside perimeter)
Twin axis sensitivity compensation (outside
perimeter)
522h
Tracking ON
Focus gain adjustment
Tracking gain adjustment
bpf f0 adjustment
341h
300h
Field of vision oscillation check
HPIT setting servo OFF
TE offset adjustment (TWPP/RF)
TE offset adjustment (TWPP/DSP)
ABCD gain adjustment
KF gain adjustment
TWPP gain adjustment
TE offset adjustment (TWPP/RF)
TE offset adjustment (TWPP/DSP)
RF gain adjustment
Field of vision oscillation check
GRV setting servo OFF
12
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MZ-E300
SECTION 5
DIAGRAMS
5-1. EXPLANATION OF IC TERMINALS
• IC601 LC89642-8B-E
(DIGITAL SIGNAL PROCESSOR, DIGITAL SERVO SIGNAL PROCESSOR, ATRAC ENCODER/DECODER,
8MBIT D-RAM, D/A CONVERTER)
Pin No.
Pin name
I/O
Description
1
FR
ISET
I
I
Connected to Bias resistor for VTEC oscillating frequency
Connected to Bias resistor for VTEC current charge pump
Power supply for VTEC
VTEC current charge pump output
Input for test
2
3
VCVDD
PDD
—
O
I
4
5
TEST3
TEST2
SLCO
6
I
Input for test
7
O
I
Slice level output for HF signal
Connected to Bias resistor for the slice level adjusting amplifier
HF signal input
8
SLCIST
EFMIN
RESETB
TEST1
HFL
9
I
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
I
System reset
I
Input for test
I
Track detection signal input
Power supply
VDD2
VSS
—
—
—
—
I
Ground
VDD1
AVSS1
PEAK
BOTTOM
ABCD
TE
Internal power supply
Ground for digital servo
PEAK signal input
I
BOTTOM signal input
I
Main beam quantity signal input
Tracking error signal input
Focus error signal input
I
FE
I
VC
I
Center potential input
AVDD1
MAD9
DSW1
MAD8
DSW0
MAD7
SGC
—
Power supply for digital servo
O* Address output to DRAM (NC)
O* Disc mode select output
O* Address output to DRAM (NC)
O* Disc mode select output
O* Address output to DRAM (NC)
O* AGC control signal output
MAD6
AOFFSET
MAD5
FOFFSET
TOFFSET
MAD4
TBAL
O* Address output to DRAM (NC)
O* ABCD offset control signal output
O* Address output to DRAM (NC)
O* Focus offset control signal output
O* Tracking offset control signal output
O* Address output to DRAM (NC)
O* Tracking balance control signal output
O* Laser control signal output
LDREF
FBAL
O* Focus balance control signal output
VDD1
VSS
—
—
—
Internal power supply
Ground
VDD2
MAD3
SPPWMF
SPPWMR
SLPWMF
Power supply
O* Address output to DRAM (NC)
O* Spindle PWM output
O* Spindle PWM output
O* Sled PWM output
13
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MZ-E300
Pin No.
Pin name
I/O
Description
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
MAD2
SLPWMR
MAD1
FOPWMF
MAD0
FOPWMR
TRPWMF
TRPWMR
MAD10
AVDD
OUTL
OUTR
AVSS
O* Address output to DRAM (NC)
O* Sled PWM output
O* Address output to DRAM (NC)
O* Focus PWM output
O* Address output to DRAM (NC)
O* Focus PWM output
O* Tracking PWM output
O* Tracking PWM output
O* Address output to DRAM (NC)
—
O
Power supply for 1bit DAC
1bit DAC L channel output
1bit DAC R channel output
Ground for 1bit DAC
Power supply
O
—
—
I
VDD2
XIN
16.9344MHz oscillation input
16.9344MHz oscillation output
Ground
XOUT
VSS
O
—
—
VDD1
F16M
Internal power supply
O* 16.9344MHz output
ENH
O* De-emphasis instruction output
O* LR clock output
LRCO
DDATA
BCO
O* Audio expansion data output
O* Bit clock output
DDOUT
SMON3
SMON2
SMON1
SMON0
FSEQ
O* Digital audio output
O* Monitor signal output
O* Monitor signal output
O* Monitor signal output
O* Monitor signal output
O* Frame sync. detection signal output
O* CLV servo lock decision output
O* Output for test
VP
MRASBT
MRASB
FOK
O* RAS signal output to DRAM (NC)
O* Focus OK signal output
O* WE signal output to DRAM (NC)
O* Defect signal output
NWEB
DEFECT
MD1
I/O Data input/output to/from DRAM
FG
I
I
I
Speed pulse input
CL
Data transferring clock input for CPU interface
Chip enable signal input for CPU interface
CE
MDO
I/O Data input/output to/from DRAM
DI
I
Data input for CPU interface
power supply
VDD1
DO
—
O
Data output for CPU interface
Power supply
VDD2
VSS
—
—
Ground
MD3
I/O Data input/output to/from DRAM
WRQB
INTB
O
O
I
Interruption output for CPU interface
Interruption output for CPU interface
Wobbly signal input
ADIPWO
14
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MZ-E300
Pin No.
Pin name
I/O
Description
95
96
MD2
SHOCK
MCASB
PCK
I/O Data input/output to/from DRAM
O* SHOCK/RFNG output
97
O* CAS signal output to DRAM (NC)
98
O
VTEC system clock signal output
O* OE signal output to DRAM (NC)
Ground for VTEC
99
MOEB
VCVSS
100
—
* : I/O on the test mode.
15
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MZ-E300
• IC801 RU6615MF-0003 (SYSTEM CONTROL)
Pin No.
Pin name
I/O
Description
UNREG voltage monitor input (A/D input)
1
2
3
UNREG_MON
RF_VCMON
RMC_KEY
I
I
I
Reference voltage (1.2V) for adjusting power supply voltage input (A/D input)
Remote commander with phones key input (A/D input)
Key on the set itself input (A/D input) S801-807 (STOP, FF/PB, REW/PB, VOL+, VOL-,
PLAY MODE, DBB/AVLS key input
4
SET_KEY
I
5
6
7
8
OPEN_CLS_SW
RF_SMON
I
I
Upper panel open/close detection switch (S808) input L: Close, H: Open
S-MON level input from SN761057DBT (IC501) (A/D input)
Not used (Fixed to L)
DSP_SMON3_LP
VL_MON
—
I
VL voltage monitor input from XPC18A32FCR2 (IC901) (A/D input)
System reset signal input from XPC18A32FCR2 (IC901) (A/D input) L: Reset L is in
while 500-600 msec after power turns on, and then turns to H.
Power supply (2.48V) (For A/D conversion)
9
XRESET
I
10
11
AVDD
AVSS
—
—
I
Ground (For A/D conversion)
12, 13
14
TYPE0, 1
XADJUST
HOLD_SW
XOUT
Initial setting for the model decision input (Bit 0, 1) Fixed to L.
Test mode setting input L: Test mode (Fixed to H normally)
HOLD switch (S809) input L: Off, H: On
I
15
I
16
O
I
Main system clock (16.9344MHz) output
17
XIN
Main system clock (16.9344MHz) input
18
HP_MUTE
HP_STBY
XCLK
O
O
O
—
—
I
Muting on/off control signal output to phones amplifier (IC301) H: Muting on
Standby on/off control signal output to phones amplifier (IC301) L: Standby, H: Amp. on
Clock (16.9344MHz) output to LC89642-8B-E (IC601)
Power supply (+2.1V) (Digital system)
19
20
21
VDD
22
VSS
Ground (Digital system)
23
DSP_WRQB
DSP_INTB
DSP_SMON3
DSP_CE
SUBQ/ADIP read out request input from LC89642-8B-E (IC601) L: Request
SPP, servo status read out request input from LC89642-8B-E (IC601) L: Request
Monitor signal 3 input from LC89642-8B-E (IC601)
24
I
25
I
26
O
O
O
O
Chip enable output to LC89642-8B-E (IC601) H: Enable
Latch clear signal for start up signal to XPC18A32FCR2 (IC901) output H: Clear
System sleep control signal to XPC18A32FCR2 (IC901) output H: Sleep on
VL voltage control signal to XPC18A32FCR2 (IC901) output H: VL out on
External sync. 2 division circuit control signal to XPC18A32FCR2 (IC901) output L: 2
division, H: No division
27
PWR_FFCLR
PWR_SLEEP
PWR_VLON
28
29
30
PWR_CLKSEL
O
O
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
SBUS_CLK
SBUS_DATA
PD_S1
SSB serial clock signal output to SN761057DBT (IC501)
I/O SSB serial data signal input/output to SN761057DBT (IC501)
O
I
PD-IC mode select signal output L: PIT, H: GRV
SLD_1_MON
SLD_2_MON
CLV_VCON
SLD_VCON
VC_VCON
CLV_U_MON
VDD
Sled servo timing signal input from SC111257FCR2 (IC551)
Sled servo timing signal input from SC111257FCR2 (IC551)
Spindle servo drive voltage control signal output to SC111257FCR2 (IC551)
Sled servo external voltage control signal output to SC111257FCR2 (IC551)
PWM signal for VC voltage control signal to XPC18A32FCR2 (IC901) output
Spindle servo (U) timing signal input from SC111257FCR2 (IC551)
Power supply (+2.1V) (Digital system)
I
O
O
O
I
—
—
I
VPP
Test (Fixed to L)
CLV_V_MON
CLV_W_MON
CLV_U_CON
CLV_V_CON
Spindle servo (V) timing signal input from SC111257FCR2 (IC551)
Spindle servo (W) timing signal input from SC111257FCR2 (IC551)
Spindle servo (U) drive signal output to SC111257FCR2 (IC551)
Spindle servo (V) drive signal output to SC111257FCR2 (IC551)
I
O
O
16
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MZ-E300
Pin No.
Pin name
I/O
Description
46
47
CLV_W_CON
SLED_1R_CON
SLED_1F_CON
SLED_2R_CON
SLED_2F_CON
BEEP
O
O
O
O
O
O
O
Spindle servo (W) drive signal output to SC111257FCR2 (IC551)
Sled motor control signal output to SC111257FCR2 (IC551)
Sled motor control signal output to SC111257FCR2 (IC551)
Sled motor control signal output to SC111257FCR2 (IC551)
Sled motor control signal output to SC111257FCR2 (IC551)
Beep sound drive signal output to phones amplifier (IC301)
Chip select signal output to EEPROM (IC802)
48
49
50
51
52
NV_XCS
53
RMC_DTCK
SIO2_CLK
SIO3_DI
I/O TSB serial communication data input/output to/from remote commander with phones
54
O
I
Serial clock signal output to LC89642-8B-E (IC601) and EEPROM (IC802)
Read data input from LC89642-8B-E (IC601) and EEPROM (IC802)
Write data output to LC89642-8B-E (IC601) and EEPROM (IC802)
CLV servo lock decision signal input from LC89642-8B-E (IC601)
PWM signal for VL voltage control signal to XPC18A32FCR2 (IC901) output
External sync. clock (176.4kHz) signal to XPC18A32FCR2 (IC901) output
LCD segment output
55
56
SIO3_DO
O
I
57
DSP_VP
58
VL_VCON
PWR_CLK
SEG0
O
O
O
—
O
O
I
59
60
61
VSS
Ground (Digital system)
62-72
73-76
77-79
80
SEG1-11
LCD segment output
COM0-3
LCD common output
VL1, 2, LVDD
VSS
LCD drive level power supply input
—
Ground (Digital system)
17
17
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MZ-E300
5-2. BLOCK DIAGRAMS
DIGITAL SIGNAL PROCESSOR,
DIGITAL SERVO SIGNAL PROCESSOR,
ATRAC ENCODER/DECODER,
MAIN BOARD
Iy
Ix
RF AMP,FOCUS/TRACKING ERROR AMP
8M BIT D-RAM, D/A CONVERTER
HEADPHONE AMP
CN501
VREF
IC501
IC601
IC301
VREF
4
6
RCH
Jx
LCH
Iy
Iy
56
57
22
21
2
4
RF OUT
OUT L
OUT R
8
9
9
10
33
9
EFMIN
Ix
Jx
Jy
A
Ix
Jx
Jy
A
J301
i
RCH
PEAK
BOTM
29
28
17 PEAK
OUT B
IN B
RCH
PEAK
/BOTM
10
11
12
14
5
14
15
Jy
RF AMP,
FOCUS
ERROR,
TRACKING
ERROR
BOTTOM
18
VD
VA
Jx Jy
Jx
16
17
ABCD
FE
15
VDD1
+B
UNREG
VIF
1
B
B
41
42
19 ABCD
21 FE
BEEP OUT B
REGULATOR
A
VDD1 63
23
VCC
20
C
D
C
D
IC602
7
8
VDD1
AVDD
87
55
3
Ix Iy Ix
VC
TE
6
B
1
20 TE
A-C
D-C
ADIP IN
ADIP
BEEP
REFERENCE
VOLTAGE
SWITCHING
Q301
44
21
15
18
17
13
7
a
c
d
b
TPP/WPP
94 ADIPWO
VREF IN
STB
MUTE
13
C
VCVDD
VC
VDD2 13
VDD2
41
MON
LDREF
37
F
31
18
D
2
RFVC MON
VIF
VDD2
VDD2
59
89
PD
26
OFTRK
DI
86
22 DVDD
XRST
SBUS
SCK
10 RESET B
DO
25
23
24
88
SERIAL
I/F
3 STATE BUFFER
1
IC803
5
Q801
S MON
LASER
43
S-MONITOR
22
VC
SYSTEM CONTROL
LD-A
LD-K
PD-O
20
AUTO POWER
CONTROL
Q501
EEPROM
12
13
IC801
LD
IC802
TRPWMF
TRPWMR
FOPWMF
52
53
XCLK
20
XIN
60
92
93
70
84
75
BEEP 51
49
AVCC
23 DSP WRQB
24 DSP INTB
WRQB
INTB
SMON3
19
18
52
HP STB
MUTE
51 FOPWMR
AVCC
S0
20
11
AVCC
S0
DSP SMON3
DSP CE
25
26
57
NV XCS
CE
VP
54
56
S102 CLK
S102 DO
DSP VP
S102 DI 55
S1
33 PD S1
19
S1
SEG0
60
FOCUS/TRACKING COIL DRIVE,
SPINDLES/SLED MOTOR DRIVE
IC551
LIQUID
CRYSTAL
DISPLAY
S BUS DATA
32
31
6
SEG11
COM0
72
73
MINIDISC
OPTICAL PICK-UP BLOCK
(LCX-4E)
S BUS CLK
RF SMON
COM3
76
42
41
38
37
SLD1MON
34
35
15
4
HOLD SW
SET KEY
OFF
ON
40
39
SLD2MON
S809
HOLD
S808
(OPEN/CLOSE)
TRK+
2
33
32
PRE
24
25
5
OPEN CLS SW
HI-BRIDGE
DRIVER
TRACKING
COIL
S807
S806
PLAY MODE
/DISPLAY
S802
>N
S803
.
S801
x
S805
VOLUME
–
S804
VOLUME
-+
CONTROL
17
16
XIN
DIGITAL
MEGABASS/
AVLS
TRK-
FCS+
1
4
X801
16.9344MHz
35
36
POWER SUPPLY
BIAS
XOUT
VL
VC
DVDD
IC901
11
10
7
FOCUS
COIL
44
10
35
42
VLO
VCO
VIF
VD
FCS-
19
18
3
HI-BRIDGE
PRE
DRIVER
5
2
XWK4
XWK1
CONTROL
VIF
8
7
4
6
3
3
1
RMC KEY
VRMC
XWK3
VSTB
XWK2
MINIDISC
MECHANISM BLOCK
AVDD
41
19
VA
VG
M902
CN551
UNREG MON
UNREG
(SLED)
SLED1+
SLED1-
VG
47
48
37
5
7
SLED 1R CON
SLED 1F CON
SLD VCON
14
12
16
20
DRIVER
CONTROL
D903
26
27
23
INM1
RF1
18
LG
38
58
VC VCOM
VL VCOM
UNREG
D902
RF2
28
29
31
22
INM2
56 CLK
9
VL
VL
SLED2+
SLED2-
6
8
26
27
50 SLED 2F CON
49 SLED 2R CON
HI-BRIDGE
CONTROL
PRE
DRIVER
59
PWR CLK
PWR VLON
PWR SLEEP
PWR FFCLR
XRST
11
1
VLON
SLEEP
FFCLR
29
28
27
9
16
L2
55
54
XCS NV
SI0
L2 12
1
54
51
1
39 CLV U MON
46 XRST
36 VC
SCK0
50
VB
10
8
AVDD
32
28
34 VC
VL MON
L1
L1
VL
DRY BATTERY
SIZE "AA"
(IEC DESIGNATION LR6)
1PC, 1.5V
56
55
42
CLV V MON
S00
52
53
45 VC2
D901
43 CLV W MON
33
30
52
CLK SEL VC OUT
PWR CLKSEL
M901
(SPINDLE)
CLVU
CLVV
CLVW
2
3
4
48
45
46
49
44
2
3
4
5
6
46
45
CLV W CON
CLV V CON
PRE
DRIVER
3 PHASE
CONTROL
BP801
(TEST)
44 CLV U CON
36
XADJUST 14
CLV VCON
UNREG
• Signal path.
F
J
: Analog
: Digital
18
18
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MZ-E300
z
5-3. PRINTED WIRING BOARDS – MAIN SECTION (1/2) –
Refer to page 24 for Notes.
8
3
4
5
6
7
9
1
2
DRY BATTERY SIZE "AA"
(IEC DESIGNATION LR6) 1PC, 1.5V
z
Semiconductor
Location
A
B
C
D
E
F
Ref. No.
Location
MAIN BOARD (SIDE B)
D101
D351
D903
C-9
C-9
A-2
C951
C608 C607
TP953
C305
R614
R615
TP954
C907
C306
C301
TP924
IC501
IC551
IC601
IC801
C-6
F-3
C-8
D-8
C616
TP616
TP617
C620 C619
TP618
TP912
C614
85
R608
TP618
100
10
95
90
80
76
C303
75
1
5
TP903
TP911
R611
C618
TP612
TP611
TP610
Q801
F-9
TP908
R607
C601
C517
70
65
60
CN551
TP909
TP904
TP570
TP610
8
1
S808
(OPEN/CLOSE)
TP571
TP577
C501
TP917
TP910
TP907
TP530
TP572
TP905
TP573
15
20
IC601
TP576
TP920
TAP502
1
5
55
CN501
44
TP901
TP806
D101
TP506
TP507
1
5
40
40
C510
25
51
50
26
MOTOR FLEXIBLE BOARD
30
35
45
M902
SLED MOTOR
C513
10
15
35
8
7
6
TP302
1-679-187-11
C515 C516
C519
C606
TP504
30
TP103
10
15
20
C609
TP531
OPTICAL PICK-UP
BLOCK
M
TP516
5
4
3
20
25
23
TP521
R808 R807
LCX-4E
TP519
22
R517
TP817
R804
R805
R806
TP811
65 61
TP574
TP575
TP203
TP522
80
75
70
2
1
1
5
60
TP807
55
M901
SPINDLE MOTOR
TP812
IC801
TP810
TP814
15
45
R802
TP551
C555
5655
50
45 43
BP801
(TEST)
C806
1
5
42
40
R803
X801
20
21 25
41
40
TP809
30
35
TP808
R907
C813
R822
35
Q801
BCE
C803
C805 R821
10
14
TP816
30
29
11
(11)
1-679-460-
15
20
25 28
19
19
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MZ-E300
z
5-4. PRINTED WIRING BOARDS – MAIN SECTION (2/2) –
Refer to page 24 for Notes.
8
3
4
5
6
7
1
2
z
Semiconductor
Location
A
B
C
D
E
F
MAIN BOARD (SIDE A)
Ref. No.
Location
TP802
TP803
7
D201
D901
D902
E-1
B-7
B-8
12
L905
TP801
TP804
TP805
6
C952
13
L901
TP951
TP806
R106
C921
L902
R104
C103
IC301
IC602
IC802
IC803
IC901
B-2
C-2
E-2
F-2
B-7
18
1
C953
28 25
20
15
29
30
14
19
24
L903
C102
C202
10
R203
R603
35
50
Q301
Q501
D-1
E-5
C920
R903
C902
5
1
L904
40
41
45
C622
C903
42
C603
56
C919
1
C917
R947
C605
C604
R906
C915
C913
R901
2
R936
IC602
C304
C
C621
B
E
R946
R948
S804
VOL+
R814
LCD801
LIQUID CRYSTAL
DISPLAY
S802
>N
C301
J301
CN805
10
i
1
5
16
S805
VOL–
D201
S803
.
C529
R815
C808
RB553
C524
L502
R827
RB552
1
8
5
S807
DIGITAL
MEGABASS
C530
C527
R816
4
S806
PLAY
MODE
Q501
S809
HOLD.
t
OFF ON
AVLS(2SEC)
DISPLAY(2SEC)
S801
x
RB551
C559
C802
R824
1
5
3
4
R826
IC803
11
(11)
1-679-460-
20
20
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MZ-E300
5-5. SCHEMATIC DIAGRAM – MAIN SECTION (1/3) –
z
z
z
Refer to page 26 – 28 for IC Block Diagrams. Refer to page 25 for Waveforms.
Refer to page 24 for Notes.
IC B/D
21
21
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MZ-E300
z
z
z
Refer to page 26 – 28 for IC Block Diagrams. Refer to page 25 for Waveforms.
Refer to page 24 for Notes.
5-6. SCHEMATIC DIAGRAM – MAIN SECTION (2/3) –
22
22
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MZ-E300
z
z
z
Refer to page 26 – 28 for IC Block Diagrams. Refer to page 25 for Waveforms.
Refer to page 24 for Notes.
5-7. SCHEMATIC DIAGRAM – MAIN SECTION (3/3) –
23
23
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MZ-E300
Note on Printed Wiring Boards: MAIN SECTION
• X : parts extracted from the component side.
•
: Pattern from the side which enables seeing.
(The other layers' patterns are not indicated.)
Caution:
Pattern face side:
(Side B)
Parts on the pattern face side seen from the
pattern face are indicated.
Parts face side:
(Side A)
Parts on the parts face side seen from the
parts face are indicated.
Note on Schematic Diagram: MAIN SECTION
• 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 Ω and / W or less unless otherwise
specified.
1
4
f
•
: internal component.
Note: The components identified by mark 0 or dotted
line with mark 0 are critical for safety.
Replace only with part number specified.
•
: B+ Line.
• Power voltage is dc 1.5V and fed with regulated dc power
supply from battery terminal.
• Voltages and waveforms are dc with respect to ground
under no-signal conditions.
no mark : PLAY
• Voltages are taken with aVOM (Input impedance 10 MΩ).
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.
• Circled numbers refer to waveforms.
• Signal path.
F
J
: Analog
: Digital
24
24
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MZ-E300
• Waveforms
1 IC501 1 (TE), IC601 w; (TE)
(PLAY Mode)
5 IC601 y; (XIN)
9 IC551 ta, ts, td, tf (COM, CPWI,
400 mV/DIV, 20 ns/DIV
CPVI, CPUI)
200 mV/DIV, 1 µs/DIV
400 mV/DIV, 5 µs/DIV
1.1 Vp-p
Approx.
396 mVp-p
16.34MHZ
11.5 µs
2 IC501 8, 9, 0, qa (IY, IX, JX,JY)
(PLAY Mode)
6 IC551 5 (PWM), IC801 eh
(CLV V CON) (PLAY Mode)
1 V/DIV, 2 µs/DIV
0 IC801 qh (XOUT)
1 V/DIV, 20 ns/DIV
200 mV/DIV, 500 ns/DIV
2.2 Vp-p
Approx.
540 mVp-p
3 Vp-p
16.934MHz
5.3 µs
3 IC501 ed (RF), IC601 9 (EFMIN)
7 IC551 2, 3, 4
qa IC901 th (CLK)
(PLAY Mode)
400 mV/DIV, 1 µs/DIV
IC801 rf, rg, rh (CLV U CON,
CLV V CON, CLV W CON)
(PLAY Mode)
1 V/DIV, 2 µs/DIV
1 V/DIV, 5 ms/DIV
Approx.
1.1 Vp-p
2.8 Vp-p
5.76 µs
11.1 ms
4 IC501 rs (FE), IC601 wa (FE)
(PLAY Mode)
8 IC551 1, tg, th (CPUO, CPWO, CPVO)
IC801 el, rs, rd (CLV U MON, CLV V MON,
CLV W MON)
200 mV/DIV, 1 µs/DIV
1 V/DIV, 5 ms/DIV
Approx.
416 mVp-p
2.8 Vp-p
11.8 ms
25
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MZ-E300
• IC BLOCK DIAGRAMS
IC301 TA2131FL-EL
18
17
16
15
14
13
PW
SW
MT
SW
BST
SW
BEEP
VREF
LPF1
V REF
12
11
19
TC MT
20
21
VCC
INR
ADD
10 BST NF1
BST1
INL
22
9
LPF2
PW
A
PW
B
BEEP
OUTB
BST2
BST NF2
BST OUT
23
24
8
7
BEEP
OUTA
BST
AGC
1
2
3
4
5
6
IC501 SN761057DBT
ADIP-IN
44
43 S-MON
A+B+C+D
I+J
TWpp
PK/BTM
Aw
NPP
TE
1
2
3
TON
CSL
Aw+Dw
TON Peak
TON Botm
ADIP
CSLO
VREF075
A-C
D-C
Malfa
Mij
AwBPF
Dw
DwBPF
REXT
Wpp-LPF
S-MONITOR
VREF
4
5
6
C
D
TE
TE
TEMP
D-C
7
FE
42
41
40
Tpp/Wpp
ABCD
AVCC
38 OFC-2
PS
37
36
35
LP
EQ
RF
Iy
Ix
8
9
34 AGND
RF
FE
33
32 CCSL2
Jx 10
11
12
13
14
Jy
A
VC
VREF075
ABCD
31
30
29 PEAK
A-C
B
PEAK/BOTM
BOTM
28
TON-C
CIG
CDN
15
16
17
DGND
27
26
OFTRK
T-ON
PD-NI 18
PD-I 19
APC
20
PD-O
25
24
23 SBUS
XRST
SCK
SERIAL
I/F
ADIP
ADFG
DVDD
21
22
26
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MZ-E300
IC551 SC111257FCR2
42
41
40
39
38
37
36 35 34 33 32 31 30 29
VM4
28
VC VG
VC VG
VC VG
PRE DRIVER
VC
PRE DRIVER
PGNDW
WO
43
44
45
46
47
48
49
VC
27 R14
H-BRIDGE
CONTROL
H-BRIDGE
CONTROL
VMVW
VO
26
F14
PGNDUV
UO
R13
F13
25
24
VMU
VG
VG
VC
23
22
GND2
CPW1
CPV1
CPU1
COM
50
51
52
53
54
55
21 GND1
PWM24
F11
20
19
18
R11
VC
VC
F12
R12
17
16
H-BRIDGE
CONTROL
H-BRIDGE
CONTROL
VC VG
VC VG
CPWO
VC
BIAS
PRE DRIVER
PRE DRIVER
3 PHASE
CONTROL
CPVO 56
15 VM2
1
2
3
4
5
6
7
8
9
10 11 12 13 14
27
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MZ-E300
IC901 XPC18A32FCR2
42 41
40
39
38
37
36
35
34
33
32
31
30
29
L1
NC
43
28
27
VG
VG
VG
SERIAL PASS
POWER
SWITCH 1
STEP-UP
PRE DRIVEER
STEP-UP
PRE DRIVEER
REGULATOR VA
RF1
VD
44
45
SERIAL PASS
REGULATOR VD
VC2
SERIAL PASS
REGULATOR VIF
INM1
DTC1
26
25
XRST (INT)
VC
XRST 46
VC
VC
DTC2
RF2
24
23
22
21
20
19
PWM
CRST
47
48
VC
RSTREF
VC
BANDGAP
INM2
PWM1
PWM2
VG
49
50
VREF
VB
REFERENCE
VG
VG
VC
VC
GND 51
VSTB VC VB
VB VC VG
VG
CLKSEL 52
VB
VAIFON
FFCLR
53
54
STEP-UP
DC/DC
CONVERTOR
18 LG
START-UP
CONTROL
SLEEP 55
CLK
PGND2
17
16
56
VSTB
VG
STEP-UP
PRE DRIVEER
L2
PWER
SWITCH 2
VC VB
15 NC
1
2
3
4
5
6
7
8
9
10
12
13 14
11
28
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MZ-E300
SECTION 6
EXPLODED VIEWS
NOTE :
•
-XX, -X mean standardized parts, so they
may have some difference from the original
one.
• The mechanical parts with no reference
number in the exploded views are not
supplied.
The components identified by mark 0
or dotted line with mark 0 are critical
for safety.
•
Color indication of Appearance Parts
Example :
KNOB, BALANCE (WHITE) ••• (RED)
• Hardware (# mark) list and accessories and
packing materials are given in the last of this
parts list.
Replace only with part number specified.
Les composants identifiés par une
marque 0 sont critiques pour la sécurité.
Ne les remplacer que par une pièce
portant le numéro spécifié.
↑
↑
Parts color Cabinet's color
Items marked “ * ”are not stocked since they
are seldom required for routine service. Some
delay should be anticipated when ordering
these items.
•
6-1. MAIN SECTION
6
8
11
10
7
18
8
5
9
12
not
LCD801
supplied
13
15
8
16
17
1
3
2
14
4
Ref. No.
1
Part No.
Description
Remark
Ref. No.
Part No.
Description
Remark
X-3380-002-1 CASE ASSY (S)...(SILVER)
7
8
4-218-233-25 SCREW (1.4), MI
3-375-114-41 SCREW, TAPPING (1.7)
(CND,AEP,FR,EE,E,CH)
1
2
X-3380-005-1 CASE ASSY (L)...(BLUE)
4-225-572-03 KNOB (HOLD)...(SILVER)
9
10
* 11
3-226-522-01 SPRING (POP/L)
4-223-906-01 SCREW (MD), STEP
A-3323-668-A MAIN BOARD, COMPLETE
(CND,AEP,FR,EE,E,CH)
2
3
4-225-572-11 KNOB (HOLD)...(BLUE)
3-226-517-01 WINDOW (LCD)
12
* 13
14
15
16
1-694-743-11 CONDUCTIVE BOARD, CONNECTION
3-226-523-01 HOLDER, LCD
X-3380-004-1 PLATE ASSY, FULCRUM
3-226-518-01 BUTTON (CONTROL)
3-226-520-01 SPRING, TERMINAL COIL
4
3-226-512-01 LID, BATTERY CASE...(SILVER)
(CND,AEP,FR,EE,E,CH)
3-226-512-11 LID, BATTERY CASE...(BLUE)
X-3379-511-1 HOLDER ASSY
X-3380-003-1 LID ASSY (S), UPPER...(SILVER)
(CND,AEP,FR,EE,E,CH)
X-3380-006-1 LID ASSY (L), UPPER...(BLUE)
4
5
6
17
18
3-226-519-01 TERMINAL (PLUS), BATTERY
3-229-530-01 SHEET, SHIELD
6
LCD801 1-804-162-11 DISPLAY PANEL, LIQUID CRYSTAL
29
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MZ-E300
6-2. MECHANISM DECK SECTION
(MT-MZE300-176)
65
55
54
53
56
57
M902
M901
61
59
58
60
62
64
63
51
52
The components identified by
mark 0 or dotted line with mark marque 0 sont critiques pour
0 are critical for safety. la sécurité.
Replace only with part number Ne les remplacer que par une pièce
specified. portant le numéro spécifié.
Les composants identifiés par une
Ref. No.
Part No.
Description
Remark
Ref. No.
Part No.
Description
Remark
51
52
53
54
55
1-679-187-11 MOTOR FLEXIBLE BOARD
3-222-392-01 SCREW (M1.4), TAPPING
3-223-833-01 CHASSIS
3-224-779-01 SPRING, THRUST DETENT
4-222-216-01 GEAR (SA)
60
61
062
63
4-222-204-01 BEARING (N)
4-222-203-01 SCREW, LEAD
X-3379-869-1 OPTICAL PICK-UP ASSY (LCX-4E)
3-222-391-01 SPRING (M), RACK
3-225-278-11 SCREW, TAPPING
64
56
57
58
59
3-338-645-51 WASHER
65
M901
M902
X-3379-529-1 BASE ASSY, MOTOR
8-835-706-01 MOTOR, DC SSM18A (SPINDLE)
1-763-399-11 MOTOR, DC (SLED)
4-218-233-13 SCREW (1.7), MI
4-218-233-01 SCREW (1.4), MI
4-222-208-01 GEAR (SB)
(INCLUDING PULLEY GEAR)
30
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MZ-E300
SECTION 7
MAIN
ELECTRICAL PARTS LIST
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, -X mean standardized parts, so they
may have some difference from the original
one.
The components identified by mark 0
or dotted line with mark 0 are critical
for safety.
• SEMICONDUCTORS
In each case, u : µ , for example :
uA.... : µ A.... , uPA.... : µ PA....
uPB.... : µ PB.... , uPC.... : µ PC....
uPD.... : µ PD....
Replace only with part number specified.
•
•
Les composants identifiés par une
marque 0 sont critiques pour la sécurité.
Ne les remplacer que par une pièce
portant le numéro spécifié.
• CAPACITORS
uF : µ F
• COILS
uH : µ H
RESISTORS
All resistors are in ohms
METAL : Metal-film resistor
METAL OXIDE :Metal oxide-film resistor
F : nonflammable
• Abbreviation
CND : Canadian
FR : French
When indicating parts by reference num-
ber, please include the board.
•
Items marked “ * ”are not stocked since
they are seldom required for routine service.
Some delay should be anticipated when
ordering these items.
EE : East European
CH : Chinese
Ref. No.
Part No.
Description
Remark
Ref. No.
Part No.
Description
Remark
*
A-3323-668-A MAIN BOARD, COMPLETE
C553
C554
C555
C556
C557
1-135-211-11 TANTAL. CHIP
1-135-211-11 TANTAL. CHIP
1-107-826-11 CERAMIC CHIP 0.1uF
1-107-826-11 CERAMIC CHIP 0.1uF
1-110-563-11 CERAMIC CHIP 0.068uF 10%
6.8uF
6.8uF
20%
20%
10%
10%
6.3V
6.3V
16V
16V
16V
*********************
1-694-743-11 CONDUCTIVE BOARD, CONNECTION
3-226-523-01 HOLDER, LCD
*
3-229-530-01 SHEET, SHIELD
C558
C559
C561
C601
C602
1-110-563-11 CERAMIC CHIP 0.068uF 10%
1-110-563-11 CERAMIC CHIP 0.068uF 10%
1-164-156-11 CERAMIC CHIP 0.1uF
16V
16V
25V
25V
16V
< CAPACITOR >
C101
C102
C103
C104
C201
1-109-982-11 CERAMIC CHIP 1uF
1-119-944-22 ELECT
1-115-467-11 CERAMIC CHIP 0.22uF
1-162-962-11 CERAMIC CHIP 470PF
1-109-982-11 CERAMIC CHIP 1uF
10%
20%
10%
10%
10%
10V
4V
10V
50V
10V
1-164-156-11 CERAMIC CHIP 0.1uF
470uF
1-107-826-11 CERAMIC CHIP 0.1uF
10%
C603
C604
C605
C606
C607
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
25V
25V
25V
25V
6.3V
C202
C203
C204
C301
C302
1-119-944-22 ELECT
1-115-467-11 CERAMIC CHIP 0.22uF
1-162-962-11 CERAMIC CHIP 470PF
1-135-259-11 TANTAL. CHIP
1-164-156-11 CERAMIC CHIP 0.1uF
470uF
20%
10%
10%
20%
4V
10V
50V
6.3V
25V
1-135-259-11 TANTAL. CHIP
10uF
20%
20%
10uF
C608
C609
C610
C611
C613
1-135-259-11 TANTAL. CHIP
10uF
6.3V
25V
25V
25V
16V
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-227-11 CERAMIC CHIP 0.022uF 10%
C303
C304
C305
C306
C351
1-109-982-11 CERAMIC CHIP 1uF
1-135-210-11 TANTALUM CHIP 4.7uF
1-125-838-11 CERAMIC CHIP 2.2uF
1-104-847-11 TANTAL. CHIP
1-164-156-11 CERAMIC CHIP 0.1uF
10%
20%
10%
20%
10V
10V
6.3V
4V
1-107-826-11 CERAMIC CHIP 0.1uF
10%
22uF
C614
C615
C616
C617
C618
1-107-826-11 CERAMIC CHIP 0.1uF
1-107-826-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
10%
10%
16V
16V
25V
25V
25V
25V
C501
C502
C503
C504
C505
1-162-964-11 CERAMIC CHIP 0.001uF 10%
1-164-677-11 CERAMIC CHIP 0.033uF 10%
1-162-967-11 CERAMIC CHIP 0.0033uF 10%
1-162-967-11 CERAMIC CHIP 0.0033uF 10%
50V
16V
50V
50V
25V
1-162-969-11 CERAMIC CHIP 0.0068uF 10%
C619
C620
C621
C622
C801
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
25V
25V
4V
4V
25V
1-162-970-11 CERAMIC CHIP 0.01uF
10%
1-131-862-91 TANTAL. CHIP
1-131-862-91 TANTAL. CHIP
47uF
47uF
20%
20%
C508
C509
C510
C511
C513
1-162-965-11 CERAMIC CHIP 0.0015uF 10%
1-162-967-11 CERAMIC CHIP 0.0033uF 10%
1-162-915-11 CERAMIC CHIP 10PF
1-162-919-11 CERAMIC CHIP 22PF
1-162-915-11 CERAMIC CHIP 10PF
50V
50V
1-164-156-11 CERAMIC CHIP 0.1uF
0.5PF 50V
5%
0.5PF 50V
50V
C802
C803
C804
C805
C806
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
1-165-176-11 CERAMIC CHIP 0.047uF 10%
1-165-176-11 CERAMIC CHIP 0.047uF 10%
25V
25V
25V
16V
16V
C515
C516
C517
C519
C524
1-164-156-11 CERAMIC CHIP 0.1uF
1-107-826-11 CERAMIC CHIP 0.1uF
1-162-970-11 CERAMIC CHIP 0.01uF
1-162-968-11 CERAMIC CHIP 0.0047uF 10%
1-117-920-11 TANTAL. CHIP 10uF 20%
25V
10%
10%
16V
25V
50V
6.3V
C807
C808
C810
C811
C813
1-162-962-11 CERAMIC CHIP 470PF
1-164-156-11 CERAMIC CHIP 0.1uF
10%
50V
25V
50V
25V
25V
1-162-964-11 CERAMIC CHIP 0.001uF 10%
C527
C529
C530
C551
C552
1-165-176-11 CERAMIC CHIP 0.047uF 10%
1-117-920-11 TANTAL. CHIP 10uF 20%
1-162-966-11 CERAMIC CHIP 0.0022uF 10%
1-104-912-11 TANTAL. CHIP
1-104-912-11 TANTAL. CHIP
16V
6.3V
50V
6.3V
6.3V
1-162-970-11 CERAMIC CHIP 0.01uF
1-164-156-11 CERAMIC CHIP 0.1uF
10%
3.3uF
3.3uF
20%
20%
C851
C901
C902
1-164-156-11 CERAMIC CHIP 0.1uF
25V
6.3V
4V
1-104-752-11 TANTAL. CHIP
1-119-749-11 TANTAL. CHIP
33uF
33uF
20%
20%
31
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MZ-E300
Ver 1.2 2001.12
MAIN
Ref. No.
Part No.
Description
Remark
Ref. No.
Part No.
Description
Remark
C903
C904
1-104-752-11 TANTAL. CHIP
1-119-749-11 TANTAL. CHIP
33uF
33uF
20%
20%
6.3V
4V
L903
L904
L905
1-414-398-11 INDUCTOR
1-414-398-11 INDUCTOR
1-412-032-11 INDUCTOR CHIP 100uH
10uH
10uH
C905
C906
C907
C908
C909
1-107-826-11 CERAMIC CHIP 0.1uF
1-162-970-11 CERAMIC CHIP 0.01uF
1-109-982-11 CERAMIC CHIP 1uF
1-107-826-11 CERAMIC CHIP 0.1uF
1-109-982-11 CERAMIC CHIP 1uF
10%
10%
10%
10%
10%
16V
25V
10V
16V
10V
< LIQUID CRYSTAL DISPLAY >
LCD801 1-804-162-11 DISPLAY PANEL, LIQUID CRYSTAL
< TRANSISTOR >
C910
C911
C913
C915
C917
1-162-964-11 CERAMIC CHIP 0.001uF 10%
50V
4V
16V
16V
16V
1-107-811-11 TANTAL. CHIP
47uF
20%
10%
10%
10%
Q301
Q501
Q801
8-729-037-52 TRANSISTOR
8-729-922-10 TRANSISTOR
8-729-037-52 TRANSISTOR
2SD2216J-QR(TX).SO
2SA1577-QR
2SD2216J-QR(TX).SO
1-107-826-11 CERAMIC CHIP 0.1uF
1-107-826-11 CERAMIC CHIP 0.1uF
1-107-826-11 CERAMIC CHIP 0.1uF
< RESISTOR >
C919
C920
C921
C951
C952
1-135-259-11 TANTAL. CHIP
1-135-259-11 TANTAL. CHIP
1-107-826-11 CERAMIC CHIP 0.1uF
1-164-156-11 CERAMIC CHIP 0.1uF
10uF
10uF
20%
20%
10%
6.3V
6.3V
16V
25V
4V
R101
R102
R103
R104
R106
1-216-839-11 METAL CHIP
1-216-843-11 METAL CHIP
1-216-829-11 METAL CHIP
1-216-797-11 METAL CHIP
1-216-831-11 METAL CHIP
33K
68K
4.7K
10
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
1-113-690-11 ELECT CHIP
220uF
20%
6.8K
C953
1-164-156-11 CERAMIC CHIP 0.1uF
< CONNECTOR >
25V
R201
R202
R203
R204
R206
1-216-839-11 METAL CHIP
1-216-843-11 METAL CHIP
1-216-829-11 METAL CHIP
1-216-797-11 METAL CHIP
1-216-831-11 METAL CHIP
33K
68K
4.7K
10
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
* CN501 1-778-168-11 CONNECTOR, FFC/FPC (ZIF) 20P
* CN551 1-815-284-21 CONNECTOR, FPC (ZIF) 8P
6.8K
< DIODE >
R301
R302
R303
R501
R506
1-216-803-11 METAL CHIP
1-216-831-11 METAL CHIP
1-216-849-11 METAL CHIP
1-216-839-11 METAL CHIP
1-216-864-91 SHORT
33
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
6.8K
220K
33K
0
D101
D201
D351
D901
D902
8-719-056-72 DIODE UDZ-TE-17-2.4B
8-719-056-72 DIODE UDZ-TE-17-2.4B
8-719-017-58 DIODE MA8068
8-719-081-33 DIODE MA2YD1500LS0
8-719-081-33 DIODE MA2YD1500LS0
R516
R517
R519
R521
R602
1-218-855-11 METAL CHIP
1-218-855-11 METAL CHIP
1-216-845-11 METAL CHIP
1-218-446-11 METAL CHIP
1-216-801-11 METAL CHIP
2.2K
2.2K
100K
1
0.5% 1/16W
0.5% 1/16W
D903
8-719-049-09 DIODE 1SS367-T3SONY
< FERRITE BEAD >
5%
5%
5%
1/16W
1/16W
1/16W
22
FB801 1-414-226-21 FERRITE
< IC >
0uH
R603
R605
R607
R608
R609
1-216-797-11 METAL CHIP
1-216-833-11 METAL CHIP
1-216-831-11 METAL CHIP
1-216-831-11 METAL CHIP
1-216-839-11 METAL CHIP
10
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
10K
6.8K
6.8K
33K
R611
R614
R615
R802
R803
1-216-821-11 METAL CHIP
1-216-797-11 METAL CHIP
1-216-797-11 METAL CHIP
1-216-841-11 METAL CHIP
1-216-833-11 METAL CHIP
1K
10
10
47K
10K
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
R804
R805
R806
R807
R808
1-218-895-11 METAL CHIP
1-218-895-11 METAL CHIP
1-216-845-11 METAL CHIP
1-216-845-11 METAL CHIP
1-216-845-11 METAL CHIP
100K
100K
100K
100K
100K
0.5% 1/16W
0.5% 1/16W
5%
5%
5%
1/16W
1/16W
1/16W
< JACK >
1-794-084-31 JACK
< COIL >
J301
R809
R810
R811
R812
R813
1-216-809-11 METAL CHIP
1-216-809-11 METAL CHIP
1-216-825-11 METAL CHIP
1-216-829-11 METAL CHIP
1-216-831-11 METAL CHIP
100
100
2.2K
4.7K
6.8K
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
L502
L551
L552
L553
L554
1-469-570-21 INDUCTOR
1-410-389-31 INDUCTOR CHIP 47uH
1-410-389-31 INDUCTOR CHIP 47uH
1-414-400-41 INDUCTOR
1-414-400-41 INDUCTOR
10uH
22uH
22uH
R814
R815
R816
R820
R821
1-216-835-11 METAL CHIP
1-216-839-11 METAL CHIP
1-216-847-11 METAL CHIP
1-216-857-11 METAL CHIP
1-216-827-11 METAL CHIP
15K
33K
150K
1M
5%
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
1/16W
L901
L902
1-419-258-21 INDUCTOR
1-419-646-21 INDUCTOR
68uH
47uH
3.3K
32
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MZ-E300
MAIN
Ref. No.
Part No.
Description
Remark
Ref. No.
Part No.
Description
Remark
R822
R824
R826
R827
R830
1-216-821-11 METAL CHIP
1-216-845-11 METAL CHIP
1-216-864-91 SHORT
1-216-857-11 METAL CHIP
1-216-833-11 METAL CHIP
1K
100K
0
1M
10K
5%
5%
1/16W
1/16W
MISCELLANEOUS
***************
5%
5%
1/16W
1/16W
12
51
1-694-743-11 CONDUCTIVE BOARD, CONNECTION
1-679-187-11 MOTOR FLEXIBLE BOARD
062
X-3379-869-1 OPTICAL PICK-UP ASSY (CLX-4E)
R901
R903
R905
R906
R907
1-218-871-11 METAL CHIP
1-216-825-11 METAL CHIP
1-216-825-11 METAL CHIP
1-216-847-11 METAL CHIP
1-216-833-11 METAL CHIP
10K
0.5% 1/16W
LCD801 1-804-162-11 DISPLAY PANEL, LIQUID CRYSTAL
2.2K
2.2K
150K
10K
5%
5%
5%
5%
1/16W
1/16W
1/16W
1/16W
M901
M902
8-835-706-01 MOTOR, DC SSM18A (SPINDLE)
1-763-399-11 MOTOR, DC (SLED)
(INCLUDING PULLEY GEAR)
**************************************************************
R909
R910
R912
R936
R946
1-216-827-11 METAL CHIP
1-216-827-11 METAL CHIP
1-218-907-11 METAL CHIP
1-218-744-11 METAL CHIP
1-218-895-11 METAL CHIP
3.3K
3.3K
330K
150K
100K
5%
5%
1/16W
1/16W
ACCESSORIES & PACKING MATERIALS
********************************
0.5% 1/16W
0.5% 1/16W
0.5% 1/16W
3-021-018-11 LABEL, FRANCE (FR)
3-224-084-11 MANUAL, INSTRUCTION
(ENGLISH,FRENCH,SPANISH,PORTUGUESE)
(US,CND,AEP,FR,E)
3-224-084-21 MANUAL, INSTRUCTION
(GERMAN,ITALIAN,DUTCH,SWEDISH)
(AEP)
R947
R948
R949
R951
1-218-911-11 METAL CHIP
1-218-907-11 METAL CHIP
1-218-911-11 METAL CHIP
1-216-864-91 SHORT
470K
330K
470K
0
0.5% 1/16W
0.5% 1/16W
0.5% 1/16W
3-224-084-31 MANUAL, INSTRUCTION
(ENGLISH,RUSSIAN,HUNGARIAN,
CZECH,FINNISH)
< COMPOSITION CIRCUIT BLOCK >
RB551 1-233-959-21 RES, NETWORK (CHIP TYPE) 470
RB552 1-233-979-11 RES, NETWORK (CHIP TYPE) 1M
RB553 1-233-967-11 RES, NETWORK (CHIP TYPE) 10K
(AEP,EE)
3-224-084-41 MANUAL, INSTRUCTION
(ENGLISH,SIMPLIFIED CHINESE,
POLISH,SLOVAK)
< SWITCH >
(EE,CH)
3-224-084-51 MANUAL, INSTRUCTION
(TRADITIONAL CHINESE,KOREAN) (E)
8-953-301-92 RECEIVER,EAR MDR-E805LP
(CND,AEP,FR,EE,E,CH)
S801
S802
S803
S804
S805
1-786-033-21 SWITCH, TACTILE (x)
1-786-033-21 SWITCH, TACTILE (> N)
1-786-033-21 SWITCH, TACTILE (.)
1-786-033-21 SWITCH, TACTILE (VOL+)
1-786-033-21 SWITCH, TACTILE (VOL–)
8-953-775-95 HEAD SET MDR-026LP (US)
S806
S807
1-786-033-21 SWITCH, TACTILE
(PLAY MODE/DISPLAY(2SEC))
1-786-033-21 SWITCH, TACTILE
(DIGITAL MEGABASS/AVLS(2SEC))
S808
S809
1-786-061-21 SWITCH, PUSH (1 KEY) (OPEN/CLOSE)
1-762-078-11 SWITCH, SLIDE (HOLD .)
< VIBRATOR >
X801
1-781-575-21 VIBRATOR, CERAMIC (16.9344MHz)
**************************************************************
The components identified by
mark 0 or dotted line with mark marque 0 sont critiques pour
0 are critical for safety. la sécurité.
Replace only with part number Ne les remplacer que par une pièce
specified. portant le numéro spécifié.
Les composants identifiés par une
33
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MZ-E300
REVISION HISTORY
Clicking the version allows you to jump to the revised page.
Also, clicking the version at the upper right on the revised page allows you to jump to the next revised
page.
Ver.
1.2
Date
Description of Revision
Change of microprocessor (IC801 : Ver 1.3).
Correction of Overall Adjustment Mode.
Correction of Electrical Parts List.
New
2001.12
2001.03
(SPM-01052)
1.1
1.0
2001.02
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