REVISION HISTORY
BX1S
CHASSIS
MODEL
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
NO. SUFFIX DATE SUPPL. / CORR DESCRIPTION
1 -01 2004/6 1st. Issue
--
PA RT NO. : 9-872-451-01
SERVICE MANUAL
BX1S
CHASSIS
MODEL COMMANDER DEST. CHASSIS NO.
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
RM-W101 ME SCC-V18B-A
RM-W100 ME SCC-V18D-A
RM-W151 PhilippinesSCC-U87M-A
RM-W150 PhilippinesSCC-U87L-A
RM-W101 EAF SCC-V19A-A
RM-W101 Thailand SCC-V20B-A
RM-W101 Thailand SCC-V20A-A
(Blue)
KV-BT212P52/N
RM-W101Thailand SCC-U94Y-A
(Gold)
MODEL COMMANDER DEST. CHASSIS NO.
RM-W101 RM-W100 RM-W151
RM-W150
TRINITRON
®
POWER
DISPLAY
MUTING
TV/VIDEO
MTS/SAP
3
1
2
6
4
5
9
7
8
JUMP ENT
0
VOL
CH
PICTURE
MODE
SOUND
MODE
MENU
RESET
SLEEP
TV
COLOR TV
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
TABLE OF CONTENTS
Section Title Page
SELF DIAGNOSTIC FUNCTION.............................. 3
1. DISASSEMBLY
1-1. Rear Cover Removal ................................................. 6
1-2. Speaker Removal ...................................................... 6
1-3. Chassis Assy Removal .............................................. 6
1-4. Service Position ........................................................ 6
1-5. Terminal Bracket Removal ....................................... 6
1-6. A Board Removal...................................................... 6
1-7. Picture Tube Removal ............................................... 7
2. SET-UP ADJUSTMENTS
2-1. Beam Landing ........................................................... 8
2-2. Convergence .............................................................. 9
2-3. Focus Adjustment.................................................... 11
2-4. G2 (SCREEN) Adjustments ................................... 11
2-5. White Balance Adjustment ..................................... 11
2-6. Sub Bright Adjustment ........................................... 11
3. CIRCUIT ADJUSTMENTS
3-1. Adjustment With Commander ................................ 12
3-2. Adjustment Method ................................................ 13
3-3. Picture Quality Adjustment .................................... 30
3-4. Deflection Adjustment ............................................ 30
3-5. Picture Distortion Adjustment ................................ 32
Section Title Page
4. DIAGRAMS
4-1. Block Diagram ........................................................ 33
4-2. Circuit Boards Location .......................................... 34
4-3. Schematic Diagram Information ............................ 34
4-3-1. C Board Schematic Diagram ....................... 35
4-3-2. A Board — Processor (Block 001) .............. 36
4-3-3. A Board — Audio (Block 002) .................... 38
4-3-4. A Board — Power Supply (Block 003) ....... 40
4-3-5. A Board — Deflection (Block 004)............. 42
4-3-6. A Board — Tuner (Block 005) .................... 44
4-3-7. A Board — Jack (Block 006) ...................... 46
4-3-8. A Board — Heat Sink (Block 007).............. 48
4-4. Voltage Measurement and Waveforms ................... 49
4-5. Printed Wiring Boards and Parts Location ............. 52
4-6. Semiconductors ....................................................... 57
5. EXPLODED VIEWS
5-1. Chassis..................................................................... 59
6. ELECTRICAL PARTS LIST.................................... 61
OPERATING INSTRUCTIONS
CAUTION
SHORT CIRCUIT THE ANODE OF THE PICTURE TUBE AND
THE ANODE CAP TO THE METAL CHASSIS, CRT SHIELD,
OR CARBON PAINTED ON THE CRT, AFTER REMOVING THE
ANODE.
SAFETY-RELATED COMPONENT WARNING!!
COMPONENTS IDENTIFIED BY SHADING AND MARK ! ON
THE SCHEMATIC DIAGRAMS, EXPLODED VIEWS AND IN
THE PARTS LIST ARE CRITICAL TO SAFE OPERATION.
REPLACE THESE COMPONENTS WITH SONY PARTS
WHOSE PART NUMBERS APPEAR AS SHOWN IN THIS
MANUAL OR IN SUPPLEMENTS PUBLISHED BY SONY.
– 2 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
SELF DIAGNOSTIC FUNCTION
The units in this manual contain a self diagnostic function. If an error occurs, the STANDBY (1 ) indicator will automatically
begin to flash. A description of the self-diagnosis function is explained in the instruction manual. The number of times the
STANDBY (1 ) indicator flashes translates to a probable source of the problem. If an error symptom cannot be reproduced,
the remote commander can be used to review the failure occurrence data stored in memory to reveal past problems and
how often these problems occur.
1. DIAGNOSTIC TEST INDICATORS
When an errors occurs, the STANDBY (1 ) indicator will flash a set number of times to indicate the possible cause of the
problem. If there is more than one error, the indicator will identify the first of the problem areas.
Result for all of the following diagnosis items are displayed on screen. No error has occured if the screen displays a “0”.
Diagnosis
Item
Description
Power does
not turn on
+B overcurrent
(OCP)*
V-Protect
IK (AKB)
Power supply
NG (+5V) for
Video Processor
* If a +B overcurrent is detected, stoppage of the vertical deflection is detected simultaneously. The symptom that is
diagnosed first by the mirco controller is displayed on the screen.
** Refer to Screen (G2) Adjustment in this manual.
No. of timer
STANDBY (1)
indicator flashes
Does not light
2 times
4 times
5 times
8 times
Self-Diagnostic
display/
Diagnosis result
–
2:0
or
2:1 ~ 255
4:0
or
4:1 ~ 255
5:0
or
5:1 ~ 255
8:0
or
8:1 ~ 255
Probable Cause
Location
• Power cord is not plugged
in.
• Fuse is burned out (F600)
A board.
• H OUT (Q805) is shorted.
(A board)
• IC751 is shorted. (C board)
• +13V is not supplied.
(A board)
• IC804 is faulty. (A board)
• Video OUT (IC1545) is
faulty. (A board)
• IC001 is faulty. (A board)
• Screen (G2) is improperly
adjusted.**
• IC604 faulty.
• IC602 faulty.
Detected
Symptoms
• Power does not turn on.
• No power is supplied on
TV.
• AC Power supply is faulty.
• Power does not come on.
• Load on power line is
shorted.
• Has entered standby state
after horizontal raster.
• Vertical deflection pulse is
stopped.
• Power line is shorted or
power supply is shorted.
• No raster is generated.
• CRT Cathode current
detection reference pulse
output is small.
• No power supply to CRT
ANODE.
• No RASTER is generated.
– 3 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
2. DISPLAY OF STANDBY (1) INDICATOR
FLASH COUNT
2 times
4 times
5 times
8 times
Lamp ON 0.3 sec.
Lamp OFF 0.3 sec.
Lamp OFF 3 sec.
Diagnostic Item Flash Count*
+B overcurrent 2 times
V-Protect 4 times
IK (AKB) 5 times
Power Supply NG (+5V) 8 times
for Video processor
* One flash count is not used for self-diagnosis.
STANDBY (1 ) indicator
3. STOPPING THE
STANDBY (1) INDICATOR FLASH
Turn off the power switch on the TV main unit or unplug the power cord from the outlet to stop the STANDBY (1)
indicator from flashing.
4. SELF-DIAGNOSTIC SCREEN DISPLAY
For errors with symptoms such as "power sometimes shuts off" or "screen sometimes goes off" that cannot be confirmed,
it is possible to bring up past occurrences of failure on the screen for confirmation.
[To Bring Up Screen Test]
In standby mode, press buttons on the remote commander sequentially in rapid succession as shown below:
Display
/ Channel 5 / Volume / Power / TV
˘
Note that this differs from entering the service mode (volume [+]).
The following screen will be displayed indicating the error count.
SELF DIAGNOSTIC
2 : 0
3 : N/A
4 : 0
5 : 1
8 : 0
101 : N/A
Numeral "0" means that no fault was detected.
Numeral "1" means the number of a fault occurrence (1 ~ 255).
– 4 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
5. HANDLING OF SELF-DIAGNOSTIC SCREEN DISPLAY
Since the diagnostic results displayed on the screen are not automatically cleared, always check the self-diagnostic
screen during repairs. When you have completed the repairs, clear the result display to “0”.
Unless the result display is cleared to “0” , the self-diagnosis function will not be able to detect subsequent faults after
completion of the repairs.
[Clearing the result display]
To clear the result display to “0”, press buttons on the remote commander subsequent as shown below when the
self-diagnostic screen is being displayed.
8 , -
[Quitting Self-diagnostic screen]
To quit the entire self-diagnostic screen, turn off the power switch on the remote commander or the main unit.
6. SELF-DIAGNOSTIC CIRCUIT
FROM
C BOARD
IC751 PIN 5
A BOARD
FROM
Q816
COLLECTOR
A BOARD
IC001
Y/CHROMA JUNGLE
IK
32
EHTO
A BOARD
IC804
V.OUT
F.B-PLS
A BOARD
IC001
SYSTEM
SDA1
3 13 84
V.GUARD
RED LED
99
122
DISPLAY
A BOARD
IC003
MEMORY
5
SDA
[+B overcurrent $OCP%] Occurs when an overcurrent on the +B(135V) line is detected by pin 32 of IC001 (A board).
If the voltage of pin 32 of IC001 (A board) is more than 4V, the unit will automatically go to
standby.
[V-PROTECT] Occurs when an absence of the vertical deflection pulse is detected by pin 13 of IC001
(A board).
[IK $AKB%] If the RGB levels* do not balance within 15 sec after the power is turned on, this error will be
detected by IC001 (A board). TV will stay on, but there will be 5 times LED blinking.
POWER SUPPLY NG (+5V)
for VIDEO PROCESSOR
Occurs when IC001 internal HV protect detects an abnormal H-Pulse (frequency) due to
improper power supply to IC001. TV cuts off high voltage power of anode CRT. No picture
will be detected. eg: IC602, IC604 go faulty.
* (Refers to the RGB levels of the AKB detection Ref pulse that detects IK.)
– 5 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
SECTION 1
DISASSEMBLY
1-1. REAR COVER REMOVAL
2 Rear cover
1 Eight screws
(+BVTP 4 × 16)
1-2. SPEAKER REMOVAL
1 Four screws
(Washer Head)
(+P4 × 16)
1-3. CHASSIS ASSY REMOVAL 1-4. SERVICE POSITION
1-5. TERMINAL BRACKET REMOVAL 1-6. A BOARD REMOVAL
1 One screws
(+BVTP 3 × 12)
3 Two screws
(+BVTP 4 × 16)
2 Terminal bracket
– 6 –
A Board
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
1-7. PICTURE TUBE REMOVAL
Note:
• Please make sure the TV set is not in standing position before removing necessary CRT support located on bottom
right and left.
1) Place the TV set with the CRT face down on a cushion jig.
2) Remove the rear cover.
3) Unplug all inter connecting leads from the Deflection Yoke, Degaussing Coil and CRT grounding strap.
qf Screw (5) Tapping
(KV-BT212M80/M81/N40/N50/P40)
qf Screw, Tapping 5 + Crown Washer
(KV-BT212P52/P52/L/N)
qd Earth Coating Assy
0 Holder, DGC(2) Removal
qa Spring Tension(2) Removal
9 Support, CRT(2) Removal
7 Loosen the Deflection Yoke
fixing screw and remove
qs Degaussing Coil
4 Anode Cap Removal
6 Loosen the Neck Assembly
fixing screw and remove
5 C Board Removal
8 Chassis Assy Removal
• REMOVAL OF ANODE-CAP
Note:
• After removing the anode, short circuit the anode of the picture tube and the anode cap to the metal chassis, CRT
shield or carbon paint on the CRT.
• REMOVING PROCEDURES
a
a
1 Turn up one side of the rubber cap in the direction
indicated by the arrow A.
b
b
2 Using a thumb pull up the rubber cap firmly in the di-
rection indicated by the arrow B.
3 When one side of the rubber cap is separated from
the anode button, the anode-cap can be removed by
c
anode button
turning up the rubber cap and pulling it up in the
direction of the arrow C.
• HOW TO HANDLE AN ANODE-CAP
1 Do not damage the surface of anode-caps with
sharp shaped objects.
2 Do not press the rubber too hard so as not to
damage the inside of anode-cap.
A metal fitting called the shatter-hook terminal is
built into the rubber.
3 Do not turn the foot of rubber over too hard.
The shatter-hook terminal will stick out or damage
the rubber.
– 7 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
SECTION 2
SET-UP ADJUSTMENTS
• The following adjustments should be made when a
complete realignment is required or a new picture
tube is installed.
Perform the adjustments in the following order :
1. Beam Landing
2. Convergence
3. Focus
Set the controls as follows unless otherwise noted:
VIDEO model ..................................................... Standard
PICTURE control .................................................. normal
BRIGHTNESS control .......................................... normal
4. Screen(G2)
5. White Balance
Note : Test Equipment Required.
1. Pattern Generator
2. Degausser
3. DC Power Supply
4. Digital Multimeter
5. Oscilloscope
......................................................................................................................................................................................................................
Preparation :
Purity control
• In order to reduce the influence of geomagnetism on
the set's picture tube, face it east or west.
• Switch on the set's power and degauss with the
degausser.
2-1. BEAM LANDING
Picture Mode: DYNAMIC
1. Input a white signal with the pattern generator.
Contrast
Brightness
}
normal
2. Set the pattern generator raster signal to a green
raster.
3. Move the deflection yoke to the rear and adjust with
purity control so that the green is at the center and
the blue and the red take up equally sized areas on
each side. (See Figures 2-1 through 2-4.)
4. Move the deflection yoke forward and adjust so that
the entire screen is green. (See Figure 2-1.)
5. Switch the raster signal to blue then to red and verify
the condition.
6. When the position of the deflection yoke has been
decided fasten the deflection yoke with the screws
and DY spacers.
7. If the beam does not land correctly in all the corners,
use a magnet to adjust it. (See Figure 2-4.)
Purity control
corrects this area.
b
c
Fig. 2-2
Blue
Red
Green
Fig. 2-3
Disk magnets or rotatable
disk magnets correct these
a
d
areas (a-d).
Deflection yoke positioning
corrects these areas.
b
c
a
d
Fig. 2-1 Fig. 2-4
– 8 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
2-2. CONVERGENCE
• Before starting this adjustment, adjust the focus,
horizontal size and vertical size.
• Receive dot/hatch signal.
• Pic mode: Soft.
(1) Horizontal and Vertical Static Convergence
Center dot
R G B
H. STAT VR
R
G
B
V. STAT
Magnet
RV750
H. STAT
C Board
Operation of V. STAT magnet.
If the V.Stat magnet is moved in the “A ” and “B ” arrows,
the red, green and blue dots moves as shown below.
A
B
A
B
G
R
B
B
G
R
Moved RV750 H. STAT.
the red, green and blue dots move as shown below.
A
RGGBB
B
R
4. BMC (Hexapole) Magnet.
If the red, green and blue dots are not balanced or
aligned, then use the BMC magnet to adjust in the
manner described below.
RG B R G B R GB
1. (Moving vertically), adjust the V.STAT magnet so that
the red, green and blue dots are on top of each other
at the center of the screen.
2. (Moving horizontally), adjust the H.STAT control so
that the red, green and blue dots are on top of each
other at the center of the screen.
3. If the H.STAT variable resistor cannot bring the red,
green and blue dots together at the center of the
screen, adjust the horizontal convergence with the
H.STAT variable resistor and the V.STAT magnet in
the manner given below.
(In this case, the H.STAT variable resistor and the
V.STAT magnet influence each other, so be sure to
perform adjustments while tracking.)
BMC Purity
BMC (Hexapole)
Purity
RB
G
RG
G B
RB
DY pocket
V.STAT
V.STAT
– 9 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
(2) Convergence Rough Adjustment
Preparation:
• Before starting this adjustment, adjust the horizontal
static convergence and the vertical static
convergence
B
R
B
R
TLH
RB
YCH
TLH Insert TLH Correction Plate to DY Pocket
(Left or Right)
YCH Insert YCH VOL on DY
TLV Rotate TLV VOL on DY
XCV Rotate XCV Adj core on DY
(3) Screen corner Convergence
1. Affix a Piece A (90), conv. correct corresponding to
the misconverged areas.
R
B
ON DY:
TLV
XCV
YCH
TLV
XCV
TLV
DY pocket
TLH Plate
XCV
ba
a-d : screen-corner
misconvergence
cd
– 10 –
DY pocket
a
d
Piece A (90), conv. correct
b
c
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
2-3. FOCUS ADJUSTMENT
FOCUS adjustment should be completed before the W/B
adjustment:
1. Receive digital monoscope pattern.
2. Set picture mode: DYNAMIC.
3. Adjust focus VR to obtain a just focus at the center of
the screen.
4. Change receiving signal to white pattern and blue
back.
5. Confirm MAGENTA RING is not noticeable. Incase
magenta ring is obvious, then adjust FOCUS VR to
balance magenta ring and FOCUS.
FOCUS
2-5. WHITE BALANCE ADJUSTMENT
1. Set to Service Mode (Refer Section 3-1:
ADJUSTMENTS WITH COMMANDER)
2. Input white raster signal.
3. Set Picture to <DYNAMIC mode>
4. Select RDRV (002) with 1 and 4 and fixed the
value to 25 with 3 and 6.
5. Adjust WHBL GDRV (003) and BDRV (04) with 1
and 4 and adjust the data with 3 and 6 for best
white balance in Highlight condition.
6. Write into the memory by pressing [MUTING] then -.
7. Adjust WHBL BKOR (000) and BKOG (001) with 1
and 4 and adjust the level with 3 and 6 for best
white balance cut-off condition.
8. Write into memory by pressing [MUTING] then -.
2-6. SUB BRIGHT ADJUSTMENT
1. Set to service mode.
2. Brightness set to 50%, Picture....Minimum
3. Select WHBL SBRT (010) with 1 and 4 and adjust
SBRT (10) data with 3 and 6 so that the third
stripe from right dimly lit.
4. Write into the memory by pressing [MUTING] then -.
5. GA models Cut-off : 10 IRE
Slightly Glimmer : 20 IRE
SCREEN
FLYBACK TRANSFORMER (T802-14")
FLYBACK TRANSFORMER (T801-21")
2-4. G2 (SCREEN) ADJUSTMENTS
1. Set the PICTURE & BRIGHTNESS to STANDARD.
2. Put the Video input mode signal.
3. Connect R,G,B of the C board cathode to
oscilloscope.
4. Adjust Brightness to obtain the cathode value to
value below.
5. Adjust G2 (screen) on the FBT until picture shows
the point before cut off.
165 ± 2VDC
– 11 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
SECTION 3
CIRCUIT ADJUSTMENTS
3-1. ADJUSTMENTS WITH COMMANDER
Service adjustments to this model can be performed using the supplied remote commander RM-W100,RM-W101,
RM-W151,RM-W150.
a. ENTERING SERVICE MODE
With the unit on standby
t [DISPLAY] t 5 t [VOL $+% ] t [POWER]
This operation sequence puts the unit into service mode.
This screen display is:
category in decimal item name in decimal NG service command frequency video input name
GEOM 006 HSIZ 031 x SERVICE 60 S VIDEO 1
release ID version in binary for factory color system (decimal)
SUS01 0.69U 0001 1111 FF FF NTSC3 65535
111 11 11 1 7 11 FG xy 111 000000 000000
S : for Sony
A : Aiwa
U S : US/Latin/Taiwan
E U : Europe
G A : General Area
J P : Japan
item no. service data NVM field channel no./
software service data reserved power on time
Status Byte Status Byte
Flash DCXO #1 SSD #2 SSD
VDSP_C Flag
CO_LOCKED
VDSP
Detected Stereo Type (Direct Value from CZ_ Stereo_Mode)
111 Needed for Nicam DCXO aligment Purpose
xy Value of x = 0 - Unknown, 1 - BTSC, 2 - A2, 3 - NICAM,
4 - KOREAN, 5 - Japan, 6 - AV Stereo
Value of y = 0 - Mono, 1 - Stereo, 2 - Bilingual, 4 - SAP/Single
0 1 : serial no. of the M/P release
for each destination
b. METHOD OF CANCELLATION FROM SERVICE MODE
Set the standby condition (Press [POWER] button on the commander), then press [POWER] button again, hereupon it
becomes TV mode.
c. METHOD OF WRITE INTO MEMORY
1. Set to Service Mode.
2. Press 1 (UP) and 4 (DOWN), to select the adjustment item.
3. Change item by pressing 3 , 6.
4. Press [MUTING] button to indicate WRITE on the screen.
5. Press - button to write into memory.
1 , 4 Select the adjustment item.
r
3, 6 Raise/lower the data value.
r
[MUTING] Writes.
r
- Executes the writing.
d. MEMORY WRITE CONFIRMATION METHOD
1. After adjustment, pull out the plug from AC outlet, and then plug into AC outlet again.
2. Turn the power switch ON and set to Service Mode.
3. Call the adjusted items again to confirm adjustments were made.
– 12 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
e. OTHER FUNCTION VIA REMOTE COMMANDER
7, - All the data becomes the values in memory.
8, - All user control goes to the standard state.
Display, - Service data initialization (Be sure not to use usually.)
2, 5 Select Device or Category
3-2. ADJUSTMENT METHOD
Item Number 000 HPOS
This explanation uses H POSITION as an example.
1. Select "000 HPOS" with the 1 and 4 buttons, or 2 and 5.
2. Raise/lower the data with the 3 and 6 buttons.
3. Select the optimum state. (The standard is IF for PAL reception.)
4. Write with the [MUTING] button. (The display changes to WRITE.)
5. Execute the writing with the - button. (The WRITE display will be changed to red color while excuting, and back to
SERVICE.)
Example on screen display :-
GREEN
GEOM 000 HPOS 039 SERVICE 50 VIDEO 1
Adjusted with [3] and [6] buttons.
GREEN
GEOM 000 HPOS 039 WRITE 50 VIDEO 1
write with [MUTING] .
RED
GEOM 000 HPOS 039 WRITE 50 VIDEO 1
Write executed with [0] .
The WRITE display
then returns to green
SERVICE
Use the same method for all Items. Use 1 and 4 to select the adjustment item, use 3 and 6 to adjust, write with
[MUTING] , then execute the write with -.
Note : 1. In [WRITE], the data for all items are written into memory together.
2. For adjustment items that have different standard data between 50Hz or 60Hz, be sure to use the respective
input signal after adjustment.
– 13 –
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71/137 1/137 1/137 1/13
800P O C L7 103 60T S U JD Aa lobara P renro C re w oL W E0 6 w/05 w/06/05
71/137 1/137 1/137 1/13
900Z T W E1 303 60T S U JD Am uizeparT W E0 6 w/05 w/06/05
131 31 31 3
010P L S V1 303 60T S U JD A) S V(epolSlacitre V0 6 w/05 w/06/05
131 31 31 3
110Z IS V5 103 60T S U JD Ae dutilp m AlacitreV0 6 w/05 w/06/05
425 15 16 2
210R O C S4 103 60T S UJ D A) C S(noitcerro C-S0 6 w/05 w/06/05
41/524 1/524 1/524 1/52
310S O P V1 303 60T S UJ D A) H S V(tfihSlacitre V0 6 w/05 w/06/05
931 31 38 2
410M O Z V1 303 60X IF) Z V( m ooZlacitre V 9:61<>06 w/05 w/06/05 neerc S 3:4<
>)Z/F/N/Z W (*)06/05(neercS
510L B H0 001 00X IFe do M gniknalB B G R0 6 w/05 w/06/05
101 01 01 0
610F B W7 005 10X IF) F B W (gniknalB ediW fo gnimiT0 6 w/05 w/06/05 707 07 07 0
710R B W7 005 10X IF) R B W (gniknalB ediW fo gnimiT0 6 w/05 w/06/05
010 10 10 1
810L B S0 001 00X IFg niknalB ecivreSe non0 0
910Y P O C0 001 00X IFa era M V N zH 06/05lla otatad O E G ehtypo Ce non0 0/
Adjustment Item Tab le
NOTE
a) In the initial value (detailed)column, the data after the slash mark ("/") refers to NTSC model data.
No("/") means data is common for multi and NTSC model.
b) Item remarked "*" and "**", please refer page 25~26 for the data.
c)
shaded items are no data.
d) Standard data listed on the Adjustment Item Table are reference values, therefore it may be different for each model and for each mode.
e) Note for the Different Data those are the standard data values written on the microprocessor. Therefore, the data values of the models are stored respectively in the memory.
In the case of a device replacement, adjustment by rewriting the data value is necessary for some items.
f) Multi ver5.18, NTSC ver5.23
– 14 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
JV Ty tilanoitcnuF. tinIe gnaRa ta Dn oitcnuFe to N & elbaTe m a N ecive Dn o m m o C )deliate D(eulaVlaitinI
yrogeta C. o Ne m a Nc e Dc e D
p m eTlo C
)rehto H GIH(
p m eTlo C
)rehto W O L(
p m eTlo C
)rehto M R O N(
p m eTlo C
)V U Y H GIH(
p m eTlo C
)V U Y W O L(
p m eTlo C
)V U Y L A M R O N(
p m eTlo C
)B G R H GIH(
p m eTlo C
)B G R W O L(
p m eTlo C
)B G R M R O N(
V TO E DIVV U Y0 edo m ciP1 edo m ciP2 edo m ciP3 edo m ciP
L B H W0 00R O K B1 303 60T S UJD A) 10 = B F O( BtesffO ,)00 = B F O( R tesffO leveL kcalB )srehtO/B G R/V U(*)la mro N/W O L/H GIH(p m etlocr ossecorP-V T
131 31 31 31 31 31 31 31 3
100G O K B1 303 60T S U JD AG tesffO leveL kcalB )srehtO/B G R/V U(*)la mro N/W O L/H GIH(p m etloc
131 31 31 31 31 31 31 31 3
200V R D R7 303 60X IFR tnio P etih W )srehtO/B G R/V U(*)la mro N/W O L/H GIH(p m etlocr ossecorP-V T
737 37 37 37 37 37 37 37 3
300V R D G7 303 60T S U JD AG tnio P etih W )srehtO/B G R/V U(*)la mro N/W O L/H GIH(p m etloc
73/137 3/137 3/137 3/137 3/137 3/137 3/137 3/137 3/13
400V R D B7 303 60T S UJ D AB tnioP etih W )srehtO/B G R/V U(*)la mroN/W O L/H GIH(p m etloc
73/137 3/137 3/137 3/137 3/137 3/137 3/137 3/137 3/13
500G PL0 001 00X IFt eserP nia G B G R enon1 0
600R G P1 307 21X IF) R G P( R nia G teserP enon*
700G G P1 307 21X IF) G G P( G nia G teserP enon*
800B G P1 307 21X IF) B G P( B nia G teserP enon*
900F O N G0 005 10X IFt esffO nia G teserP enonp oolC C C5 1
010T R B S1 303 60T S UJD As senthgirB-bu S V U Y/B G R/srehtO
131 31 3
110O R B S0 003 00X IF) ciP tnegilletnI(tesffO ssenthgirB-buS enon0 0
210L G E0 001 00X IFm etsyS C C C nipooL nia G elban E enon0 0
310L G S0 003 00X IFm etsyS C C C nitnerru C hgiH fo noitceleS enon0 0
410B K A0 001 00X IFn oitazilibatS tnerru C kcalB enon0 0
510S B C0 001 00X IFg nitimiLtnerru C m ae B fo ecneuqeS lortno C enon0 0
610B B G R0 003 00X IFg niknalB B G R enon0 0
710G BL B0 001 00X IFt uptu O neerG & eulB fo gniknalB enon0 0
810B F O0 001 00X IFe ulB tesffO leveL kcalB enon1 0
910R B S N0 005 10X IFt esffO ssenthgirB dradnatS no N enon0 0/50
020P B W0 003 00X IF) w oL:3,2,la mro N:1,hgiH:0( gnitteS p m eT rolo C edo M erutciP
001 02 00 0/10
– 15 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
JVTy tilanoitcnuF. tinIe gnaRa taDn oitcnuFe toN & elbaTe m aN eciveDn o m m oC )deliateD(eulaVlaitinI
yrogetaC. o Ne m aNc e Dc eD
V U Yl ap05
)VT(
lap05
)oediV(
m aces05
)VT(
m aces05
)oediV(
VT06o ediV06V U Y05V U Y06B G R 05B G R06e do m ciP
0
edo m ciP
1
edo m ciP
2
edo m ciP
3
VTo ediVV T
ediW
oediV
ediW
M V A
)npJ(
ediW V A
)npJ(
JD AS0 00X A M P3 603 60T S UJD Am u mixa M erutciP >ediW /la mroN</)ediW /la mroN(*)oediV/VT( rossecorP-V T
737 37 37 30 00 0
100E U H S7 005 10T S UJD Ae uH-buS oediV/VT
707 0
200P H SS5 103 60X IFs senprahS-buS V U Y/oediV/VT
*
**
300O H SS0 003 00X IF) ciPtnegilletnI(tesffO ssenprahS-buS enon6 0
400L O C S1 303 60T S UJD Ar oloC-buS /)oediv(m aces05/)vt(m aces05/)oediv(lap05/)vt(lap05
B G R06/B G R05/V U Y06/V U Y05/oediv06/VT06
00/131 30 0/131 31 31 30 0/131 30 0/131 3
500O O C S0 003 00X IF) ciPtnegilletnI(tesffO roloC-buS enon2 0
600C IP1 307 21X IF; )dilavni(001>,)dilav(001-0:A G[lortnoC erutciP
])dilavni(6tib erongi;)dilav(36-0:srehtO
)ataDteseRresU =lanosreP:A G(ledo M erutciP
36/0010 5/081 4/563 6/001
700L O C1 307 21X IF; )dilavni(001>,)dilav(001-0:A G[lortnoC roloC
])dilavni(6tib erongi;)dilav(36-0:srehtO
)ataDteseRresU =lanosreP:A G(ledo M erutciP
53/652 3/055 2/048 3/05
800T R B1 307 21X IF, )dilav(001-0:A G[lortnoC ssenthgirB
tib erongi;)dilav(36-0:srehtO;)dilavni(001>
])dilavni(6
)ataDteseRresU =lanosreP:A G(ledo M erutciP
23/052 3/058 3/062 3/05
900E U H1 307 21X IF; )dilavni(001>,)dilav(001-0:A G[lortnoC euH
otdneS*(])dilavni(6tib erongi;)dilav(36-0:srehtO
)ledo m S U htiw )0-5(hE1# TNIT
)ataDteseRresU =lanosreP:A G(ledo M erutciP
13/051 3/051 3/051 3/05
010P HS1 307 21X IF, )dilav(001-0:A G[lortnoC ssenprahS
tib erongi;)dilav(36-0:srehtO;)dilavni(001>
])dilavni(6
)ataDteseRresU =lanosreP:A G(ledo M erutciP
53/062 3/052 3/052 3/05
RM-W101 RM-W100 RM-W151 RM-W150
– 16 –
– 17 –
JVTy tilanoitcnuF. tinIe gna Ra taDn oitcnuFe toN & elbaTe m a N eciveDn o m m oC )deliate D(eulaVlaitinI
yrogeta C. oNe m aNc eDc eD srehtOV U Y) V T(LA P) VT(C ST N) V T(M A C E S) oediV(LAP) oediV(C ST N) oediV(M A C E ST U P NI-SM A C E SC ST NV T
C Y0 00Q R FP0 003 00X IFy ale D dna ycneuqerFretne C gnikaeP rossecorP-V T
00
00
100A P R1 003 00X IFt oohSrevO & erP oita R rehto/VT
20
30/20
200O P R2 003 00X IFs kaeP evitageN & evitisoPfo oitaR rehto/VT
20
10/20
300Y LD Y2 105 10X IFy ale D-Y T U P NI-S/V U Y+)O E DIV/VT(*)M A C E S/C ST N/LA P(
** * * * * * *
400T A M C0 003 00X IFx irta M )AS U/napaJ( C S TN ro M A C E S-LA P 00
500L C A1 001 00X IFg nitimiLrolo C cita m otuA 10
600B C0 001 00X IFy cneuqerFretneC ssapdnaB a m orh C )xif0:oediV*( VT htiw ylno dilav0 0/10
700O BS1 003 00X IFt esffO kcalB M A C E S 00
800E S H C1 003 00X IFy tivitisneStnedIC ST N/LA P 20
900O L C0 001 00X IFr etliF)lleB(ehcolC fo ycneuqerFretne C 00
010P RT C0 001 00X IFe do M parT a m orh C srehto/M A C E S
00
00/10
110S PB0 001 00X IFe niL yaleD dnab-esaB a m orhCfo ssapyB srehto/C ST N
*
*
210O CF0 001 00X IFn O roloC decroF 00
310T NIT1 303 60X IFl ortnoCtniT dnaB-esaB srehto/V U Y
131 3
410V UT0 001 00X IFs langiS V U nolortnoC tniT 00
JVTy tilanoitcnuF. tinIe gnaRa taDn oitcnuFe toN & elbaTe m aN eciveDn o m m oC) deliateD(eulaVlaitinI
yrogetaC. oNe m aNc eDc eD 050 6s rehtoV UYV To ediVt xeteleTp i-VTl angisoN
C N YS0 00S YS0 001 00X IFt upnIC N YSY nonoitazinorhcnyS 00
100O F0 003 00X IFt natsnoC e miT 1esahP )FR(langisoNro gninuT otuA/txeteleT/oediV/FFO PIVT/N O PIVT
30/**3 00 0/100 0/**0 0
200D IV0 001 00X IFe doM tnedIoediV 06/05
000 0
300L SF0 001 00X IFc nySlacitreVrofleveLgnicilS decroF 00
400L SS0 001 00X IFr otarapeS cnySleveLgnicilS 06/05
000 0
500D IVS1 007 00X IFn oitacifitnedIoediVrofnoitceleS ecruoS srehtO/V U Y
007 0
600F R OF0 003 00X IFy cneuqerF dleiF decroF 10/30
700K V M0 001 00X IFg niyeK noisiV orca M 10
800T CFA0 003 00X IF) 611niP:S U,A G(lortnoC hctiwS gnimiT C FA 30
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
JVTy tilanoitcnuF. tinIe gnaRa taDn oitcnuFe toN & elbaTe m aN eciveDn o m m oC )deliateD(eulaVlaitinI
yrogetaC. oNe maNc eDc eD
srehtOB G Re viLV T
)nyD(
VT
)srehtO(
oediV
)nyD(
oediV
)srehtO(
p m eTroloC
)H GIH(
p m eTroloC
)srehtO(
roloC
)W O L(p meT
p m eTroloC
)LA M R O N(
T CIP0 00L D AC7 005 10X IFl eveL evirD edohtaC **/00
100A FC0 003 00X IFe do M retliF b moC *
200C O S2 003 00X IFl eveL gnippilCtfoS 00
300L W P1 001 00X IFh ctiw S gnitimiL etih W kaeP 10
400L TH W6 005 10X IFg nitimiLetih W kaeP *
500M A G1 001 00X IFa m m aG 00
600S T W1 003 00X IFh ctertS etih W dnalortnoC a m m aGs rehtO/eviL
20
20
700R FT0 001 00X IFl angiS ecnanim uLfo oitaR refsnarT C Ds rehtO/eviL
100 01 0
800R O C3 003 00X IFg niroC )srehto/anyD(*)oediV/VT(
000 00 00 0
900O R O C0 001 00X IF) ciPtnegilletnI(tesffO gniroC 20
010S KB3 003 00X IFh ctertS kcalBs rehto/B G R
202 0
110S AA1 001 00X IFh ctertS kcalB ehtffo hctiw S otaerA kcalB 10
210K S D0 001 00X IFl ortnoC nikS cimanyD 00
310S LB0 001 00X IFh ctertS eulB )S R E HT O/H GIH(p m etloc
000 0
410S LB N0 001 00X IFt iucriC hctertS eulB noitarepO 00
510R R N0 001 00X IFn oitcudeR deR noN )LA M R O N/W OL/H GIH(pm etloc
10
101 0
J V Ty tila n oitc n u F. tinIe g n a Ra ta Dn oitcn u Fe to N & elb a Te m a N ecive Dn o m m o C) d eliate D ( e ula V laitinI
yro g eta C. o Ne m a Nc e Dc e D V U YV To e diV
W S0 0 02 V C0 0 01 0 0X IFn oitcele S la n giS tu p nI 2 S B V C 0 0
1 0 0O V S1 0 03 0 0X IF8 4 @ niP IS B V C /O V S/ O V FIfo n oitc n u FV U Y/o e diV/V T
2 01 01 0
2 0 0L F D0 0 01 0 0X IFn oitcetorP h salF 1 0
RM-W101 RM-W100 RM-W151 RM-W150
– 18 –
– 19 –
J V Ty tila n oitcn u F. tinIe g n a Ra ta Dn oitcn u Fe to N & elb a Te m a N e cive Dn o m m o C
yro g eta C. o Ne m a Nc e Dc e D
FIV0 0 0D FI O6 3 03 6 0X IFr otalu d o m e D FItesff O ro sse c orP-V T6 3
1 0 0T C G A1 3 03 6 0X IFr ev o-e ka T C G A 1 3
2 0 0M T S0 0 01 0 0X IFe d o M g nin u T h cra e S 1 0
3 0 0D G0 0 01 0 0X IFl a n giS 1 S B V C n o y ale D p u or G 0 0
4 0 0S C G A1 0 03 0 0X IFd e e p S C G A FI 1 0
5 0 0I F F0 0 01 0 0X IFL L P FIretliF ts a F 0 0
6 0 0I A N L1 0 01 0 0X IFe ula v laitinitib A N L p m A F R 0 0
7 0 0T A N L5 9 15 2 2X IFl e ve L dlo h serh T p m A F R 0 0/5 9 1
8 0 0N S N L4 0 07 0 0X IFd lo h serh T lev e L N S p m A F R 0 0/3 0
9 0 0D S N L2 0 07 0 0X IFd lo h serh T p or D lev e L N S p m A F R 0 0/1 0
0 1 0X E N L6 1 03 6 0X IFg ni m iT p or D N S k ce h c p m A F R 0 0/0 3
1 1 0R T H C8 4 07 2 1X IFe d o M re s U p m A F R te s ot grP otu A retfa dlo h serh T le n n a h C 0 0/5 2
J V Ty tila n oitc n u F. tinIe g n a Ra ta Dn oitcn u Fe to N & elb a Te m a N eciv e Dn o m m o C) d eliate D ( e ula V laitinI
yro g eta C. o Ne m a Nc e Dc e D 0 e d o m ciP1 e d o m ciP2 e d o m viP3 e d o m ciP
M V0 0 0D B G R3 0 07 0 0X IFt u ptu O M V ottu ptu O B G R fo yale De n o nr o ss ec orP-V T4 0
1 0 0A M V3 0 03 0 0X IFt u ptu O M V fo e d utilp m Ae n o n*
2 0 0P A M V2 0 03 0 0X IF) F F O :3,2 ,w o L:1 ,h giH:0( g nitte s M Ve d o M erutciP
0 01 02 00 0
3 0 0O M M V3 0 03 0 0X IFe d o M M V 1 0
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
J V Ty tila n oitc n u F. tinIe g n a Ra ta Dn oitc n u Fe to N & elb a Te m a N e cive Dn o m m o C
yro g eta C. o Ne m a Nc e Dc e D
M E D S0 0 0S W M F0 0 03 0 0X IFr otalu d o m e D M F rof n oitcele S w o d ni W ross ec orP-V T2 0
1 0 0S S Q1 0 01 0 0X IF ) m etsys M itlu m A G rof A/N( e d o M reifilp m A )S S Q ( d n u o S tilp S is a u Q 1 0/**
2 0 0B P B0 0 01 0 0X IFr etliF ss a p d n a B d n u o S fo ss a py B 0 0
3 0 0O L M A0 0 01 0 0X IFd n u o S M A rofla n giS tu ptu O oid u A 0 0
4 0 0C V P H0 0 01 0 0X IFl ortn o C e m ulo V e n o h P d a e H 0 0
J V Ty tila n oitc n u F. tinIe g n a Ra ta Dn oitc n u Fe to N & elb a Te m a N e civ e Dn o m m o C
yro g eta C. o Ne m a Nc e Dc e D
T X T0 0 0V X T9 3 03 6 0X IFs pilih P rof n oitis o P la citre V tx etele T re d o c e D tx e T0 0/9 3
1 0 0D H T5 0 07 2 1X IFt fih S e g d E e vitc A c n y s- H tx etele T 0 0/0 1
2 0 0R B T4 0 05 1 0X IFs s e nth girB B G R tx etele T 0 0/1 1
3 0 0B C L0 0 01 0 0X IF) X E T S A F rof g nitte s( elb a n e :1 elb a sid :0 B C L tx etele T 0 0/0 0
RM-W101 RM-W100 RM-W151 RM-W150
– 20 –
JVTy tilanoitcnuF. tinIe gna Ra taDn oitcnuFe to N & elbaTe m aN ecive Dn o m m o C )deliate D(eulaVlaitinI
yrogetaC. o Ne m aNc eDc eD )oruE(L-VTV To ediVf fOW O W/S R Sd nuorrusurTo eretsIo no mI
P S D S0 00M V A2 007 00X IFe do M LV A D SS2 0
100V V A5 005 10X IFl eveL ecnerefe R LV A 90
200L B B0 005 10X IFr uotno C E B B *
300H B B0 005 10X IFs secorP E BB
*
400W LB B0 005 10X IFt esffO ruotno C E B B
60/**
500F O V S0 005 10X IFt esffO e m uloV edo M tceffE/dnuorruS ono mI/oeretsI/dnuorrusurT/)W O W/S R S(ffO
** * **
600F O VI0 007 00X IFt esffO evitisoP e m uloV retsa M 60
700F O V E0 007 00X IFt esffO evitageN e m uloV retsa M 60
800D AL0 001 30X IFt sujdAleveLredoceD 50
900M AL0 001 30X IFt sujdAleveL ono M 50
010N AL0 001 30X IFt sujdAleveL m aciN 22
110S AL0 001 30X IFt sujdAleveL P A S 80
210A AL0 001 30X IFt sujdAleveL C D A oediV/L non-V T/L-V TI)oruE noN(oediV/vT
000 00 0
310F E S3 007 00X IFt ceffE oeretS/ono M elbidercnI ono mI/oeretsI
503 0
410L 1A0 005 52X IFt feL e m uloV 1X U A 00
510R 1 A0 005 52X IFt hgiR e m uloV 1X U A 00
610S A B0 005 10X IFt esffO ssaB nia M *
710E R T0 005 10X IFt esffO elberT nia M *
8101 Q E0 005 10X IFt esffO )zH 001(dnaBlennahC nia M rezilauqE *
9102 Q E0 005 10X IFt esffO )zH 003(dnaBlennahC nia M rezilauqE *
0203 Q E0 005 10X IFt esffO )zH 0001(dnaBlennahC nia M rezilauqE *
1204 Q E0 005 10X IFt esffO )zH 0003(dnaBlennahC nia M rezilauqE *
2205 Q E0 005 10X IFt esffO )zH 0008(dnaBlennahC nia M rezilauqE *
320T C FB5 007 00X IFl ortno C E B B dna B U D ,E B D *
420N E C S1 005 10X IFl ortnoC retneC D3S R S 40
520A P S S0 005 10X IFl ortno C ecapS D3S R S 10
620W H B B0 005 10X IFe do m W O W nitesffossecorp E B B 00/**
720E R TS2 007 00X IFe do m dnuorrusroftesffO elberT 10/**
820T H B B0 005 10X IFe do m VT nitesffO E BB 00
920A W D0 000 00X IF? ??A W D 00
030E R TT2 007 00X IFe do M VT nitesffO elberT 20
– 21 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
JVTy tilanoitcnuF. tinIe gnaRa taDn oitcnuF etoN & elbaTe m aN eciveDn o m m oC
yrogetaC. oNe m aNc eDc eD
C ED S0 00U TP M3 005 10X IF) CSTB(noitcetedtolip XP M rofdlohserhTreppU D SS2 0
100L TP M9 005 10X IF) CSTB(noitcetedtolip X P M rofdlohserhTrewoL 50
200U TP S3 005 10X IFn oitcetedreirrac PA SrofdlohserhTreppU 50/80
300L TPS6 005 10X IFn oitcetedreirrac P ASrofdlohserhTrewoL 51
400H T1C0 001 30X IF1 CSfo noitcetedrofdlohserhTlamroN 00
500P A1C0 001 30X IF1 C SfonoitcetedrofdlohserhT margorP otuA 00
600H TP S0 001 30X IFP ASfo etu motuarofdlohserhT esioN 50/00
700Y HPS4 005 10X IFP ASfo etu motuarofezissiseretsyH 30
800H T M F0 001 30X IFd radnats2A M F ni2CSfo etu motuarofdlohserhT esioN 00/81
900Y H M F4 005 10X IFd radnats 2A M F ni2CSfo etu motuarofezissiseretsyH 40/70
010H TTB0 001 30X IFr eirrac oerets C STBfo etu motuarofdlohserhT esioN 00
110Y HTB4 005 10X IFo erets C STBfoetum otuarofezissiseretsyH 30
210H TJE0 001 30X IFr eirracbus M F JAIEfoetum otuarofdlohserhT esioN 00
310Y HJE4 005 10X IFr eirracbus M F JAIEfo etu m otuarofezissiseretsyH 40
410Y LN O0 001 00X IFt uptuo C ED no M A CIN detalerylno ecudorpeR 00
510M AXE0 001 00X IF) PE D D(L dradnats nietum otuafo esac niecruos kcabllaF 00
610T MIN0 001 00X IF) P E D D(etarrorretib no dneped noitcnufetu m otua M A CIN 00
710E LIN0 015 52X IF) P ED D(timilrorrerewolM A CIN 50
810E UIN0 025 52X IF) PE D D(timilrorrereppu M A CIN 002
910D M PE1 003 00X IF) P ED D(gnim m argorP ysaE C ED M ED
1 =tiB 3P O dna 0 = SD TS dna0 = D M PEfI
revo ekatlliw yrogetac CK DS dna elbasiD siyrogetac CE DS
10/20
020S DTS9 101 30X IFs edom SSS dna D SArofdexelpitlum stiB **/13
120A M V O1 001 00X IFn oitpadanoitaludo mrevo M F 00
220W BLF0 003 00X IFh tdiwdnabretlifrotaludo med M A/M F **/30
320D M DI0 003 00X IFe do m SSS nideepstnediM F 10/00
420L APF0 001 00X IFg nidoced C STBrofycneuqefeniL 00
520T M V O1 002 00X IFl animonotevitalerdlohserhtlevelnoitaludo mrevO 30
620I X C D0 001 00X IFr etrevnIlortnoC gnilacS O X C D M A CIN 00/**
720G XC D0 007 00X IFn iaGlortnoC gnilacS O X C D M ACIN 00/**
820L LC D1 105 10X IF) L(timiLlortnoC gnilacS O XC D M ACIN 00
920H LC D0 001 30X IF) H(timiLlortnoC gnilacS O XC D M ACIN 00/**
030U E DI1 003 00X IFD TS 2A naeporuErofgnittes D O M DI 00
130R K DI1 003 00X IFD TS M naeroKrofgnittes D O M DI 00
230P JDI1 003 00X IFD TS JAIErofgnittes D O M DI 10
– 22 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
– 23 –
JV Ty tilanoitcnuF. tinIe gna Ra ta Dn oitcnuFe m a N eciveDn o m m o C) deliate D(eulaVlaitinI
yrogeta C. o Ne m a Nc e Dc eD 050 6
M T P O0 00T H S A6 007 00X IF) nim 5 *atad(re mitffotuhs otu A 00
100B D S O0 005 10X IFs senthgirb D S O h06 orciM/R M M5 0
200H D S O5 005 10X IFn oitisoPlatnoziro H D S O h06 orciM/A TA D X5 0/80
300V D S O7 303 60X IFn oitisoPlacitre V D S O h06 orciM/R M M
93/369 3/13
400E T U M0 001 00X IF) delbane=1(hctiw S etu M langiS o N 00
500L U F R5 105 10X IF) hf0 nehw elbasiD(dekcoln U retfaretnuo C egnah C langiS F R 40
600K LF R5 105 10X IF) hf0 nehw elbasiD(dekcoLretfaretnuo C egnah C langiS F R 00
700G N A L0 003 00X IFn oitidnoc gnippihs egaugnal D S O *
800T X T H0 001 00X IFw srotarepes cnyS rossecorP-VT0 0
900S S M C0 001 00X IFw s cnyS rossecorP-VT1 0
010O X C D0 605 92X IFe ula V O X C D P S D/h06 orciM/R F S*
110L B X E0 005 10X IFe sio N etih W etanimilE otre miT gniknalB dednetxE 40/70
210S Y S T0 003 00X IF )ledo M A G(]M:3,K/D:2,I:1,G/B:0[tese R tseTta M V N nisyS VT eziro m e M 00/**
310W S N L1 001 00X IF) ffO:0,otuA:1(noitidnoctese R tseT/gnippih S retsoo BlangiS 00/**
410L B L1 001 00X IFn oitidnoclangiS oN tA noitcude R ssenthgirB 00
J V Ty tila noitcn u F. tinIe gn a Ra ta Dn oitc nu Fe m a N ecive Dn o m m o C) d eliate D( e ula V laitinI
yro geta C. o Ne m a Nc e Dc e D srehtOV U Y
S U P O0 00F F O S0 0 01 0 0X IF) n o C A htiw ybd nats:1 ,n o C A htiw yro m e m tsal w ollof:0(ffo yatS **/0 0
1 00R B C C0 005 10X IFs s enth girB D S O C C h 06 orciM /R M M0 0
2 00H C P S1 007 2 1X IFn oitidn o C g nippih S retfa reb m u N le nn ah C 7 0/00
3 00A C P S1 001 0 0X IF) n O elb a C = 1( n oitid no C gnippih S retfa n oitc ele S elb a C **/0 0
4 00V U O0 0 01 00X IF) S U rofyln o(sla ngiS tu p ni V U n olortn o C tesffO
0 00 0
5 002 A F C0 0 01 0 0X IF) S U rofyln o( n O retliF b m o C decro F 0 0
(For NTSC model only)
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
J V Ty tila n oitc n u F. tinIe g n a Ra ta Dn oitc n u Fe m a N e civ e Dn o m m o C
yro g eta C. o Ne m a Nc e Dc e D
B T P O0 0 0L L AI0 0 01 0 0X IF) M V N ni d e ziro m e m to n( h ctiw S etir W dra d n atS x
1 0 01 B P O0 0 05 5 2X IF) d etaler m ets y S ( 1 n oitp O e s a elP
2 0 02 B P O0 0 05 5 2X IF) d etalerla n giS o e diV( 2 n oitp O refer
3 0 03 B P O0 0 05 5 2X IF) d etaler g nid o c e D o eretS ( 3 n oitp O ot
4 0 04 B P O0 0 05 5 2X IF) s u o e n alle c si M ( 4 n oitp O tiB n oitp O
5 0 05 B P O0 0 05 5 2X IF) s u o e n alle c si M ( 5 n oitp O h c a e rof
6 0 06 B P O0 0 05 5 2X IF) d etaler e g a u g n a L D S O ( 6 n oitp O le d o m
RM-W101 RM-W100 RM-W151 RM-W150
– 24 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
Data Variant depend on models
Category No Name Model Data
WHBL 006 PGR With VM 50
Without VM 45
007 PGG With VM 50
Without VM 45
008 PGB With VM 50
Without VM 45
Category No Name Model Data
VM 001 VMA With VM 03
Without VM 00
Category No Name Model Table
PAL NTSC SECAM PAL NTSC SECAM YUV S-Input
(TV) (TV) (TV) (VIDEO) (VIDEO) (VIDEO)
YC 003 YDLY Comb Model 08 08 08 11 09 11 09 09
Non-Comb Model 02 02 10 2 2 2 09 09
GA NTSC BT models 08 05 08 11 09 11 09 09
Category No Name Model Table
TV Video YUV
SADJ 002 SSHP
Category No Name Model Table
YC 011 BPS Comb models 01 00
Category No Name BT212(AV Stereo)/ BT212 Mono
SDSP 002 BBL 00 00
003 BBH 00 00
004 BBLW 06 06
016 BAS 19 00
017 TRE 21 00
018 EQ1 21 00
019 EQ2 19 00
020 EQ3 17 00
021 EQ4 00 00
022 EQ5 17 00
023 BFCT 00 00
026 BBHW 00 00
027 STRE 01 01
21" Comb models
21"Non-Comb models &
All 14" models
21"NTSC BT models
Non-Comb models 00 00
GA NTSC BT models 01 00
Stereo
30/45 35 35
30 38 35
30 38 35
45 35 35
NTSC Others
Category No Name China/Vietnam Other models
OPTM 007 LANG 01 00
– 25 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
Category No Name Others country Hong Kong model China model
OPTM 012 TSYS 00 01 02
Category No Name Model Table
Off SRS/WOW Trusurround Istereo Imono
SDSP 005 SVOF BT212 (AV Stereo) 04 11 04 06 04
BT212 (mono) 00 07 00 02 00
Category No Name GA Stereo GA AV ST/GA NTSC ST GA Mono/ NTSC Mono
OPTM 010 DCXO 50 70 61
Category No Name 14" Models 21" Models
PICT 004 WHTL 09 00
Category No Name Mono & AV Stereo models Stereo, China & India models Vietnam
SDEM 001 QSS 00 01 01
Category No Name Stereo models non- stereo models
SDEC 026 DCXI 01 00
027 DCXG 03 00
029 DCLH 06 00
Category No Name BT212 mono B212 AV Stereo GA NTSC BT Mono
SDEC 020 STDS 13 13 13
022 FLBW 00 01 01
Category No Name China model Other models
OPTM 013 LNSW 00 01
Category No Name model Data
PICT 001 CFA Comb models 00
Non Comb models 01
GA NTSC BT models 00
Category No Name GA NTSC
OPUS 000 SOFF 00
003 SPCA 01
Category No Name Model Vietnam Other models
SYNC 001 FO TV 01 03
TV_IP 01 00
– 26 –
ITEM INFORMATION
No. OPB1
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
SPEED SEARCH (Time of speed search) 00 = disabled (original cycle speed)
TV System Selection 0 = disabled, 1 = enabled
Home Theatre 1 = Home Theatre mode available
Wide Screen 1 = Wide Screen model
Speed Search
0
0
1
1
0
0
0
0
1
1
1
1
1
1
1
1
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
Home
Theatre
0
0
0
0
0
0
0
0
Wide
Screen
0
0
0
0
0
0
0
0
M (GA)
1
1
1
1
0
0
0
0
B/G
1
1
0
0
1
1
1
1
01 = 4 time speed from the original
10 = 6 time speed from the original
11 = 8 time speed from the original
I
1
1
0
0
0
0
0
0
D/K
1
1
0
0
0
0
0
0
DEC
79
79
200
200
68
68
68
68
No. OPB2
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
SECAM
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
Component
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
01 = 1 composite terminal 01 = 2 composite terminals
10 = 2 composite terminals 10 = 3 composite terminals
11 = 3 composite terminals 11 = 4 composite terminals
0
0
0
0
0
0
0
0
01 = NTSC (3.58MHz)
10 = PAL/NTSC (4.43MHz)
11 = PAL/NTSC (Tri-Norma)
Party Mode
0
0
0
0
0
0
0
0
Party Mode (karaoke function) 0 = not available, 1 = available
PAM Portable Audio Mode - GA 0 = not available, 1 = available
Component (Component [YCbCr] Terminals) 0 = not available, 1 = available
Composite (No. of Composite Terminals)
SECAM (SECAM Color System) 0 = disabled, 1 = enabled
Color decoding (Color Crystal Selection) 00 = PAL/NTSC (Multi)
PAM(GA)
BX1S/BX1L-Basic 00 = no composite terminal BX1L-Full 00 = no composite terminal
Color Decording Composite (SCART)
0
0
0
0
0
0
0
0
DEC
0
0
0
0
0
0
0
0
20
20
20
20
16
16
16
16
– 27 –
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
No. OPB3
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
HDEV
0
0
0
0
0
0
0
0
HDEV (High Deviation Mode) 0 = disabled, 1 = enabled
NICAM ST (NICAM Stereo) 0 = disabled, 1 = enabled
NICAM BI (NICAM Bilingual) 0 = disabled, 1 = enabled
A2 ST/BI (A2 [West German]
Thai Bilingual (A2 [Thai] Bilingual)
US ST (JP/US Stereo) 0 = disabled, 1 = enabled
Korean ST (Korean Stereo) 0 = disabled, 1 = enabled
MONO (Monaural Model) 0 = Stereo (SSD) Model
NICAM
ST
NICAM BI
0
0
0
0
0
0
0
0
Stereo/Bilingual) 0 = disabled, 1 = enabled
or Force SAP if US ST is active 0 = disabled, 1 = enabled
0
0
0
0
0
0
0
0
A2 ST
0
0
0
0
0
0
0
0
Thai
Bilingual
0
0
0
0
0
1
1
1
US ST
0
0
0
0
0
0
0
0
1 = Monaural Model
Korean
ST
0
0
0
0
0
0
0
0
MONO
0
0
1
0
1
0
0
0
DEC
00
00
01
00
01
08
08
08
No. OPB4
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
SMAT
1
1
1
1
1
1
1
1
SMAT Surround Matrix 0 = Active, 1 = Passive
1 spk Models 1 Speaker Models 0 = 2 or 3 Speaker Models,
VM (Velocity Modulation) 0 = disabled, 1 = enabled
Equalizer (5-band Equalizer Model) 0 = Bass/Treble Model, 1 = Equalizer Model
Surround (Surround Selection) 00 = Off/Simulated/Surround
TOP (Forced TOP) 0 = Auto Mode (TOP/FLOF), 1 = Forced TOP
TEXT (Teletext Model) 0 = Non-Teletext Model, 1 = Teletext Model
1 spk
Models
0
0
0
0
0
0
0
0
VM
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Surround Equalizer
0
0
0
0
0
0
0
0
1 = 1 speaker Models
01 = Off/Simulated/SRS (3D) Surround
10 = Off/Simulated/WOW/TruSurround
11 = Off/Simulated/WOW/TruSurround/Virtual
Bolby (not working now)
0
0
0
0
0
0
0
0
To p
0
0
0
0
0
0
0
0
Text
0
1
0
0
0
0
0
0
DEC
128
129
128
128
128
128
128
128
– 28 –
No. OPB5
KV-BT212M80/P40/P52/P52/L/P52/N/BT212M81/BT212N40/BT212N50
RM-W101 RM-W100 RM-W151 RM-W150
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
Full
Surround
0
0
0
0
0
0
0
0
Full Surround (Full Surround option-no for 0 = Normal Surround Model
No Surround (No Surround Model) 0 = Surround Model, 1 = Non-Surround Model
Cosmic ASD Automatic Standard Detection 0 = disabled, 1 = enabled
ASD (Automatic Standard Detection) 0 = disabled, 1 = enabled
Tilt (Tilt Correction/PIC Rotation) 0 = disabled, 1 = enabled
IP Plus (Intelligent Picture Plus) 0 = disabled, 1 = enabled
IP (Intelligent Picture) 0 = disabled, 1 = enabled
Wide (Wide Mode/V-Compressed) 0 = disabled, 1 = enabled
No
Surround
COSMIC
ASD
1
1
0
1
0
1
1
1
EURO model) 1 = Full Surround Model
Using COSMIC (Non-Stereo)
1
1
0
0
0
0
0
0
ASD
0
0
0
0
0
0
0
0
Tilt
0
1
1
1
0
1
1
1
IP Plus
1
1
1
1
1
1
1
1
(Off/simulated/surround/
SRS/WOW/TruSurround)
IP
1
1
1
1
1
1
1
1
Wide
0
0
0
0
0
0
0
0
DEC
102
110
14
78
06
78
78
78
No. OPB6
Item
KV-BT212M80
KV-BT212M81
KV-BT212N40
KV-BT212N50
KV-BT212P40
KV-BT212P52
KV-BT212P52/L
KV-BT212P52/N
OSD Language Selection
0
0
1
1
1
0
0
0
1 = Taiwan/Korea/Philippine
(Wake-up timer enable)
(GA Surround Spec:OFF,
SIMULATED, SRS)
1 = Comb available
1 = PiP available
1
1
0
0
0
0
0
0
0
0
1
1
0
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Feature 1
0
0
0
0
0
0
0
0
GA US
0
0
1
1
0
0
0
0
GA US (US Model Destination) 0 = US/CANADA/Latin
3D OSD (BX1L Full version GA Multi 0 = Normal with 3D Intelligent picture OSD
Feature 2 (Temporary for BX1L) 0 = Comb Not available
Feature 1 (Temporary for BX1L) 0 = PiP Not Available
3D OSD
Feature 2
0
0
0
0
0
0
0
0
Destination ONLY) 1 = Disable 3D Intelligent picture OSD
DEC
04
04
138
138
08
02
02
02
OSD Language Selection
US (GA NTSC) 1x1x = Complicated Chinese
1xx1 = Korean (note: for BX1L, combination
of C.Chinese & Korean not available)
GA 1xxx = Simplified Chinese
x1xx = Arabic
xx1x = Thai
xxx1 = Vietnamese
– 29 –