INNOLUX MT230DW01 V.3 Specification

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INNOLUX DISPLAY CORPORATION
MT230DW01 V.3 LCD MODULE SPECIFICATION
( ) Preliminary Specification
) Final Specification
Customer Checked and Approved by
Approved by Checked by Prepared by
Innolux Display Corporation,
No.160 Kesyue Rd., Chu-Nan Site, Hsinchu Science Park,
Chu-Nan 350, Miao-Li County, Taiwan
Tel: 886-37-586000 Fax: 886-37-586060
Document Number: MT230DW01 V.3 DR4-26
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InnoLux copyright
Record of Revision
Version Revise Date Page Content
1.0
1.1 2010/07/03 Final Spec
2009/08/15
Pre Spec.
All rights reserved,
Copying forbidden.
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SPEC NO.
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MT230DW01 V.3
3/23
Contents:
A. General Specification
B. Electrical Specifications
1. Pin assignment
2. Absolute maximum ratings
3. Electrical characteristics
a. Typical operating conditions
b. Display color vs. input data signals
c. Input signal timing
d. Display position
e. Backlight driving conditions
C. Optical specifications
D. Reliability test items
E. Safety
F. Display quality
G. Handling precaution
H. Label
I. Mechanical drawings
Appendix
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SPEC NO.
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MT230DW01 V.3
4/23
A. General specification
NO. Item Specification Remark
1 Display resolution (pixel)
2 Active area (mm)
3 Screen size (inch)
4 Pixel pitch (mm)
5 Color configuration
6 Overall dimension (mm)
7 Weight (g)
8 Surface treatment
1,920(H) X 1,080(V), Full HD
509.184(H) x 286.416(V)
23 inches diagonal
0.2652(H) X 0.2652(V)
R, G, B vertical stripe
534mm(H) x 311.7mm(V) 8.9mm(D) (Typ.)
2200 (Max)
Anti-Glare, Haze=25%, Hard coating (3H)
9 Input color signal
10 Display colors
11 Color Saturation
12 Optimum viewing direction
13 Backlight
14 RoHS & Halogen Free
8 bit LVDS
16.7M (6 bit with Hi-FRC)
80% NTSC
6 o’clock
White LED
RoHS & Halogen Free compliance
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B. Electrical specifications
1. Pin assignment
1.1. LVDS Connector
FOXCONN GS23302-0311S-7F or mechanical interface equivalent connector.
No Symbol Description
1 RxO0- LVDS Differential data input Channel 0(-)
2 RxO0+ LVDS Differential data input Channel 0(+)
3 RxO1- LVDS Differential data input Channel 1(-)
4 RxO1+ LVDS Differential data input Channel 1(+)
5 RxO2- LVDS Differential data input Channel 2(-)
6 RxO2+ LVDS Differential data input Channel 2(+)
7 GND Ground
8 RxOC- LVDS Differential Clock input (-)
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MT230DW01 V.3
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9 RxOC+ LVDS Differential Clock input (+)
10 RxO3- LVDS Differential data input Channel 3(-)
11 RxO3+ LVDS Differential data input Channel 3(+)
12 RxE0- LVDS Differential data input Channel 0(-)
13 RxE0+ LVDS Differential data input Channel 0(+)
14 GND Ground
15 RxE1- LVDS Differential data input Channel 1(-)
16 RxE1+ LVDS Differential data input Channel 1(+)
17 GND Ground
18 RxE2- LVDS Differential data input Channel 2(-)
19 RxE2+ LVDS Differential data input Channel 2(+)
20 RxEC- LVDS Differential Clock input (-)
21 RxEC+ LVDS Differential Clock input (+)
22 RxE3- LVDS Differential data input Channel 3(-)
23 RxE3+ LVDS Differential data input Channel 3(+)
24 GND Ground
25 NC No Connection
26 NC No Connection
27 NC No Connection
28 VCC Power supply (+5.0V)
29 VCC Power supply (+5.0V)
30 VCC Power supply (+5.0V)
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SPEC NO.
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MT230DW01 V.3
6/23
1st pin of LVDS
Connector
1st pin of FFC
Connector
1.2 LED Light Bar FFC Cable
Pin No Symbol Description
1 RTN 1 Feedback
2 RTN 2 Feedback
3 RTN 3 Feedback
4 RTN 4 Feedback
5
6 VIN 1 LED power supply
7 VIN 2 LED power supply
8 NC
9 RTN 5 Feedback
10
11
12
NC
RTN 6 Feedback
RTN 7 Feedback
RTN 8 Feedback
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SPEC NO.
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MT230DW01 V.3
7/23
2. Absolute maximum ratings
Values
Parameter Symbol
Min. Typ. Max.
Power voltage Vcc
Input signal voltage VLH
Operating temperature Top
Storage temperature TST
Note 1: The relative humidity must not exceed 90% non-condensing at temperatures of 40°C or less.
At temperatures greater than 40°C, the wet bulb temperature must not exceed 39°C.
Note 2: The unit should not be exposed to corrosive chemicals.
-0.3 -
-0.3 -
0 -
-20 -
6.0
4.3
50
60
Unit Remark
V
V
°C Note 1
°C Note 2
At 25к
At 25к
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3. Electrical characteristics
a. Typical operating conditions
Item Symbol Min. Typ. Max. Unit Remark
Input Voltage
Permissive Power Input Ripple
Input Current
Rush Current
Logic Input
Voltage
LVDS:
IN+, IN-
Common Mode Voltage
Differential Input Voltage
Threshold Voltage (High)
Threshold Voltage (Low)
Black
White
Mosaic
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V
4.5 5 5.5
cc
V
- -
RF
400
MT230DW01 V.3
8/23
mVp-p
Icc - 1000 -
Icc - 800 -
I
- 950 -
cc
I
- 1.6 3
Rush
mA
VCM - 1.2 -
VID 100 - 600
VTH - - 100
VTL -100 - -
mV
mV Note 5, 6
mV Note 5, 6
V
Note 1
Note 2
Note 3
A Note 4
V
Note 1: The specified current is under the Vcc =5V, 25 °C, fv=60Hz (frame frequency) condition
whereas black pattern is displayed.
Note 2: The specified current is under the Vcc =5V, 25 °C, fv=60Hz (frame frequency) condition
whereas white pattern is displayed.
Note 3: The specified current is under the Vcc =5V, 25 °C, fv=60Hz (frame frequency) condition
whereas mosaic pattern (black & white [8*6]) is displayed.
White: 255 Gray
Black: 0 Gray
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Note 4: Test condition:
(1). V
(2). Pattern: Mosaic pattern
= 5 V, VDD rising time = 470 μs ± 10%
DD
90%
(3) Test circuit
V
5 V
DD
R1 47K
Ton=470 Ӵs 10%
M1 2SK1059
SPEC NO.
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FUSE
MT230DW01 V.3
9/23
VDD (LCD INPUT)
C1 1uF
CONTROL SIGNAL
(HIGH to LOW)
12V
Note 5: LVDS signal definition
VIN+ = Positive differential DATA & CLK Input
VIN- = Negative differential DATA & CLK Input
VID = VIN+ – VIN- ,
C3 1uF
R3
47K
R2
1K
M2 2SK1399
C2
10000pF
VCM =ΨVCM
VID =ΨVID
VID+ =ΨVIH
VID- =ΨVIL
VCM = (VIN
VCM+ = (VIH
VCM- = (VIL
–VCM-Ψ,
+
–VID-Ψ,
+
–VIH-Ψ,
+
–VIL-Ψ,
+
+VIN-)/2,
+
+VIH-)/2,
+
+VIL-)/2,
+
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Note 6: Power on sequence for LCD V
T1
Panel Power
Supply V
Interface
Signals
DC
90%
10%
90% 90%
T2
DD
Valid Interface Data
90%
90%
SPEC NO.
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90%
T6
T5
10%
MT230DW01 V.3
10/23
T7
10%
Backlight Power
Supply
T3 T4
Parameter Value Unit
Min Typ. Max ms
T1 0.1 - 10 ms
T2 0 30 50 ms
T3 200 250 - ms
T4 100 250 - ms
T5 0 20 50 ms
T6 0.1 - 10 ms
T7 1000 - - ms
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SPEC NO.
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MT230DW01 V.3
11/23
b. Display color vs. input data signals
The brightness of each primary color (red, green and blue) is based on the 8-bit gray scale data input for the color; the higher the binary input, the brighter the color. The table below provides a reference for color versus data input.
Basic colors
Red
Green
Blue
Color
Black Red(255) Green(255) Blue(255) Cyan Magenta Yellow White
Red(000) dark Red(001) Red(002)
:
Red(253) Red(254) Red(255) bright
Green(000)dark Green(001) G
reen(002)
:
Green(253) Green(254) Green(255)
Blue(000) dark Blue(001) Blue(002)
:
Blue(253) Blue(254) Blue(255) bright
bright
Red Green Blue
MSB LSB MSB LSB MSB LSB
R7 R6 R5 R4 R3 R2 R1 R0
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0 0
0 0 0
0 0 0
0 0 0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
0
0
0
0
0
0
0
0
0
0
0
1
1
0
0
0
0
0
0
1
1
1
1
1
1
0
0
1
0
0
1
:
:
:
1
0
0
1
1
1
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
0
0
0
0
0
0
Input color data
G7 G6 G5 G4 G3 G2 G1 G0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
0
0
0
0
0
1
1
1
1
1
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
0
0
1
1
0
0
1
1
1
1
0 0 0
0 0 0
0 0 0
1 1 1
0 0 0
0 0 0
0
0
0
0
0
0
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
1
0
:
:
0
1
1
1
1
1
0
0
0
0
0
0
:
:
0
0
0
0
0
0
B7 B6 B5 B4 B3 B2 B1 B0
0
0
0
0
0
0
0
0
0 1 0 1 0 1 1
0 0 0
: 0 0 0
0 1 0
: 1 0 1
0 0 0
: 0 0 0
0
0
0
0
1
1
1
1
1
1
1
1
1
0
0
0
1
1
1
0
0
0
0
0
0
0
0
0
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
0
0
0
1
1
1
0
0
0
0
0
0
0
0
0
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
0
0
0 0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
1
1
1
1
1
1
0
0
1
1
0
0
0
0
0
0
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
0
0
0
0
0
0
0
0
0
1 0
1
:
:
1
0
0
1
1
1
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SPEC NO.
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MT230DW01 V.3
12/23
c. Input signal timing
Support Input Timing Table
Item Description Min. Typ. Max. Unit
Clock Dclk
Vertical
T
V_TOTAL
T
V total line number 1090 1100 1160 T
Data duration 1080 1080 1080 T
V_DATA
TVB V-blank 10 20 80 T
frequency 50 60 75 Hz
f
V
Horizontal
T
H_TOTAL
T
H total pixel number 1000 1088 1120 DClk
Data duration 960 960 960 DClk
H_DATA
T
H-blank 40 128 160 DClk
HB
Note: Because this module is operated by DE mode only, Hsync and Vsync input signals should be set to
low Logic level or ground. Otherwise, this module would operate abnormally.
period 11.43 13.89 16.7 nS
frequency 60 72 87.5 MHz
H_TOTAL
H_TOTAL
H_TOTAL
INPUT SIGNAL TIMING DIAGRAM
Tv
Tvd Tvb
DE
DCLK
Tc
Thb Thd
DE
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d. Display Position
D(1,1) D(2,1) … … D(960,1) … … D(1919,1) D(1920,1)
D(1,2) D(2,2) … … D(960,2) … … D(1919,2) D(1920,2)
. . .
D(1,540) D(2,540) … … D(960,540) … … D(1919,540) D(1920,540)
. . .
D(1,1079) D(2,1079) … … D(960,1079) … … D(1919,1079) D(1920,1979)
D(1,1080) D(2,1080) … … D(960,1080) … … D(1919,1080) D(1920,1080)
e. Backlight Unit
e.1 Absolute Maximum Ratings ( 1 Module LED Circuit )
. .
. .
… …
… …
. . .
. . .
SPEC NO.
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… …
… …
MT230DW01 V.3
13/23
. . .
. . .
. . .
. . .
e.2 Electrical & Optical Characteristics ( at Ta=25 dgree )
e.3 LED Light Bar Characteristics
Parameter Symbol
Min. Typ. Max.
Light Bar Input Voltage VLED 61 64 67
Light Bar Input Current ILED 30 320
Power Consumption PLED 23.04 W Note 4
LED Life Time LBL --- 30000 --- Hrs Note 5
Value
Unit Note
VDC
mADC
(Duty 100%)
Note 1, 2, 3
Note 1: There are two Light Bars, and the specified current is input LED chip 100% duty current.
Note 2: The sensing current of each Bar is 30mA.
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Note 3: Each light bar have four current sensing strings, so that each light bar input current is 30mA.
( 30mA x 4 Bar(top) + 30mA x 4 Bar(Bottom) ) = 240mA ( Typ. )
Note 4: PLED = ILED × VLED.
Note 5: The life time is determined as the time at which luminance of the LED becomes 50% of the
initial brightness or not normal lighting at the current I
operating at 25±2°C.
SPEC NO.
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=120mA on condition of continuous
LED
MT230DW01 V.3
14/23
Pin No : 1(Vin) / 2(NC) / 3(Feedback) / 4(Feedback) / 5(Feedback) / 6(Feedback)
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C. Optical specifications
Item Symbol Condition
Response time
Contrast ratio
Viewing angle
Tr
Tf
Tr+Tf
CR
Top
Bottom
Left
= 0ш
= 0ш
CRЊ10
CRЊ5
CRЊ10
CRЊ5
CRЊ10
CRЊ5
SPEC NO.
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Specification
Min. Typ. Max.
- 1.5 3
- 3.5 7
- 5 10
700 1000 -
70
75
70
75
75
80
80
-
85
80
-
85
85
-
89
MT230DW01 V.3
15/23
Unit Remark
ms Note 2
Note 1,3
deg. Note 1,3,5
CRЊ10
Right
Brightness (Center) YL
Wx 0.313
Wy 0.329
Rx 0.640
Ry 0.330
Color chromaticity(CIE)
White uniformity (9 points)
Cross talk Ct
Note: Ambient temperature = 25°C.
To be measured in dark room after backlight warm up 30 minutes.
Note 1: To be measured with a viewing cone of 2°by Topcon luminance meter BM-5A.
Gx 0.285
Gy 0.630
Bx 0.150
By
W
CRЊ5
= 0ш
75
80
200 250 -
-0.03
0.75 - -ʳ
-ʳ -ʳ 2%
85
-
89
+0.03
0.060
nit Note 1,4
Note 1
Note 1,6
Note 7
Note 2: Definition of response time:
The output signals of BM-7 are measured when the input signals are changed from “Black”
to “White” (falling time) and from “White” to “Black” (rising time), respectively. The response time
interval is between the 10% and 90% of amplitudes. Refer to figure as below.
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"Black"
100%
S ig
90%
n a l( R
e la
t
iv e
v a lu
10%
e )
0%
Note 3: Definition of contrast ratio:
Contrast ratio is calculated by the following formula.
Contrast ratio (CR)=
Note 4: Driving conditions for LED: White LED IL = 30mA/rms,
Tr
Brightness on the "white" state Brightness on the "black" state
SPEC NO.
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Tf
Vf = 60V
MT230DW01 V.3
16/23
"White""White"
Note 5: Definition of viewing angle
Note 6: Definition white uniformity:
Luminance are measured at the following nine points (P1~P9).
Ӭ
Minimum Brightness of nine points(P1~P9
=
Maximum Brightness of nine points (P1~P9)
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Note 7:
SPEC NO.
1/2
1/6
PAGE
2/3 1/3
A
1/6
A’
127 gray level 127 gray level
B
1/2
1/2
MT230DW01 V.3
17/23
1/6
1/6
1/3
1/2
B’
2/3
l L
l L
Note 10: Optical characteristic measurement setup.
l / LA x 100%= 2% max., LA and LA’ are brightness at location A and A’
A-LA’
l / LB x 100%= 2% max., LB and LB’ are brightness at location B and B’
B-LB’
0 gray level
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D. Reliability test items
Test Item Test Condition Judgment Remark
High temperature storage
Low temperature storage
High temperature & high
humidity operation
High temperature operation
Low temperature operation
Thermal Shock
(non-operation)
Electrostatic discharge (ESD)
60°C, 240Hrs
-20°C, 240Hrs
40°C, 90%RH, 240Hrs
(No condensation)
50°C, 240Hrs
0°C, 240Hrs
-20±C~60±C,
1hrs, 3mins, 1hrs, 100Cycles
Contact:+/-8kV, 150pF(330ohms),
SPEC NO.
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MT230DW01 V.3
18/23
Note 1 Note 2
Note 1 Note 2
Note 1 Note 2
Note 1 Note 2
Note 1 Note 2
Note 1 Note 2
Note 1 Note 2
(non-operation)
Vibration
(non-operation)
Mechanical Shock
(non-operation)
MTBF Demonstration 50,000 hours with confidence level 90% Note 1 Note 3
25 times/1 point, 1 time/1 sec
Air discharge:+/-15kV, 150pF(330ohms),
25 times/1 point, 1 time/1 sec
Vibration level : 1.5G
Bandwidth : 10-300Hz
Waveform : sine wave,
sweep rate : 10min
30 min for each direction X, Y, Z
(1.5 Hrs in total)
Shock level : 50G, 11ms
Waveform : Half sine wave
Direction : ±X, ±Y, ±Z
One time each direction
Note 1 Note 2
Note 1 Note 2
Note1: Pass: Normal display image with no obvious non-uniformity and no line defect.
Partial transformation of the module parts should be ignored.
Fail: No display image, obvious non-uniformity, or line defects.
Note2: Evaluation should be tested after storage at room temperature for two hours.
Note 3: The MTBF calculation is based on the assumption that the failure rate distribution meets the
Exponential Model.
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SPEC NO.
PAGE
MT230DW01 V.3
19/23
E. Safety
(1). Sharp Edge Requirements
There will be no sharp edges or corners on the display assembly that could cause injury.
(2). Materials
a. Toxicity
There will be no carcinogenic materials used anywhere in the display module. If toxic materials are
used, they will be reviewed and approved by the responsible InnoLux Toxicologist.
b. Flammability
All components including electrical components that do not meet the flammability grade UL94-V1 in
the module will complete the flammability rating exception approval process. The printed circuit
board will be made from material rated 94-V1 or better. The actual UL flammability rating will be
printed on the printed circuit board.
c. Capacitors
If any polarized capacitors are used in the display assembly, provisions will be made to keep them
from being inserted backwards.
F. Display quality
The display quality of the color TFT-LCD module should be in compliance with the
Innolux’s Incoming inspection standard.
G. Handling precaution
The Handling of the TFT-LCD should be in compliance with the Innolux’s handling principle standard.
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H. Panel Label
(1). Module Label
E253847
40 mm
MADE IN XXX
SPEC NO.
PAGE
MT230DW01 V.3
20/23
80 mm
Z1 Z2 Z3 Z4 Z
Z1'Z2'-Z3'Z4'Z 5'Z 6'Z7'Z8'Z9'Z10'Z11'Z12'Z13'Z14'Z15'Z16'Z17'Z18'Z19'Z20'Z21'Z22'Z
MT230DW01 V.3
5 Z 6Z 7Z8 Z9 Z10 Z 11 Z 12 Z 13
EE01
23
G1 0941 Z
'
(a). Model Number: MT230DW01 V.3
(b). Customer Grade Mark : Z
(c). INL Grade: G1 (Code of grade: 1,2,3,5,E)
(d). Week Code: 0941 (YY,WK)
(e). Revision Code: EE01 (Make information + Minor Revision)
(f). Serial ID I: Z
Z2 Z3 Z4 Z 5 Z 6 Z 7 Z8 Z
1
9 Z10
Z
11 Z 12 Z 13
Serial No: Lot No. Panel No
Year, Month, Date
Make information: SDEE
Customer code: V
(g). Serial ID II: PPID (23 digits)
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(2) Carton Label
SPEC NO.
PAGE
MT230DW01 V.3
21/23
(a). Model No. : MT230DW01 V.3
(b). Part No. : BN07-00797A
(c). INL Part No. : AM2300001301
(d). Packing Q’ty: 7 pcs
(e). Date: Manufacture Date
(f). Carton ID: Z
Z2 Z3 Z4 Z 5 Z6 Z
1
7 Z8
Carton ID includes the information as below:
(d-1). Manufactured Date: Year: 0~9, for 2000 ~2009
Month: 1~9 & A~C for Jan. ~ Dec.
Z 9
Serial No
Code of grade
Year, Month, Date
INL internal use
Date: 1~9 & A~Z (exclude I, O, Q, U) for 1st~31th
(d-2). Code of grade: 1, 2, 3, 5, E
(d-3). Serial No: Module packing sequence no.
(g). P/O No. : Customer P/O number.
I. ME Drawing
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YkGm 
SPEC NO.
PAGE
MT230DW01 V.3
22/23
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