InfoVision Optoelectronics ( Kunshan ) Co.,LTD.
Document Title M190MWW3 Product Specification Page No. 2/30
Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 2 of 30
Revision Date Page Old Description New Description Remark
00 2009/03/09 - - First issued. -
For Evaluation Only.
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Edited by Foxit PDF Editor
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Document Title M190MWW3 Product Specification Page No. 3/30
Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 3 of 30
Contents
1.0 General Descriptions ……………………………….… p.4
2.0 Absolute Maximum Ratings ………………………….. p.6
3.0 Pixel Format Image ……………………………….. p.7
4.0 Optical Characteristics …………………………………… p.8
5.0 Backlight Characteristics…………………….. p.11
6.0 Electrical Characteristics ………………….………. p.13
7.0 Interface Timings…………………………………… …… p.20
8.0 Power Consumption …………………………….… …… p.21
9.0 Power ON/OFF sequence …………………………………….p.22
10.0 Mechanical Characteristic…………………………………… p.23
11.0 Package Specification ……. ……………………………...… p.26
12.0 Lot Mark…. …………………………………………………… p.27
13.0 General Precaution …………………………………………… p.28
For Evaluation Only.
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Edited by Foxit PDF Editor
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Document Title M190MWW3 Product Specification Page No. 4/30
Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 4 of 30
1.0 GENERAL DESCRIPTIONS
1.1 Introduction
The M190MWW3 is a color active matrix thin film transistor (TFT) liquid crystal display
(LCD) that uses amorphous silicon TFT as a switching device. It is composed of a TFT
LCD panel, a timing controller, voltage reference, common voltage, driver DC-DC
converter, column driver, and row driver circuit. This TFT LCD has a 19-inch diagonally
measured active display area with WXGA+ resolution (1440 vertical by 900 horizontal
pixel array).
1.2 Features
■ 19”WXGA+ TFT LCD Panel
■ 4 CCFLs Backlight System
■ Supported WXGA+ (V:1440 lines, H:900 pixels) resolution
■ Supported to 75Hz Refresh Rate
■ Compatible with RoHS Standard
1.3 Product Summary
Items Specifications Unit
Screen Diagonal 18.95 inch inch
Active Area 408.24 (H) x 255.15 (V) mm
Pixels H x V 1,440 (x3) x 900
Pixel Pitch 0.2835 (per one triad) x 0.2835 mm
Pixel Arrangement R.G.B. Vertical Stripe
Display Mode Normally White
White Luminance 300 typical cd/m^2 (CCFL@6.5mA)
Contrast Ratio 1000 : 1 typical
Response Time 5 typical msec
Input Voltage + 5.0 typical v
Logic Power Consumption 3.0 typical (Black pattern, 60Hz) watt
Backlight Power Consumption 19.5 typical (CCFL current 6.5mA) watt
Weight 2,120 typ. g
Outline Dimension 428 (W) x 278 (H) x15.5 (T) typical mm
Electrical Interface (Logic) 6bit+Hi-FRC dual LVDS
Support Color 16.7M
Lamp Life Time
50,000(Ta=25+/-3degC and
ICCFL=6.5mA, brightness becomes
lower than 50% of initial value)
hours
Luminance Uniformity 1.3 typical (@9 points)
Optimum Viewing Direction 6 o’clock
Surface Treatment Anti Glare + HC
For Evaluation Only.
Copyright (c) by Foxit Software Company, 2004 - 2007
Edited by Foxit PDF Editor
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Document Title M190MWW3 Product Specification Page No. 5/30
Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 5 of 30
1.4 Functional Block Diagram
.
Figure 1 shows the functional block diagram of the LCD module.
Figure 1 Block Diagram
VCC
GND
RXinO0+/-
RXinO1+/-
RXinO2+/-
RXinO3+/-
RXinOC+/-
RXinE0+/-
RXinE1+/-
RXinE2+/-
RXinE3+/-
RXinEC+/-
TFT LCD Module
LCD Drive Card
Backlight Unit
S
ig
n
a
l C
o
n
n
e
c
to
r F
I-X
B
3
0
S
R
L
-1
1
DC/DC Converter
Reference Voltage
Timing Controller
Y
-D
riv
e
r
X-Driver
TFT Array/Cell
1,440(R/G/B) x900
(o
r e
q
u
iv
a
le
n
t)
Lamp Connector type: 35001HS-02
Lamp
Connector
Lamp
Connector
Lamp
Connector
Lamp
Connector
For Evaluation Only.
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Edited by Foxit PDF Editor
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Document Title M190MWW3 Product Specification Page No. 6/30
Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 6 of 30
2.0 Absolute Maximum Ratings
Item Symbol Min Max Unit Conditions
Supply Voltage VDD -0.3 +6.0 V
Input Signal -0.3 +2.7 V LVDS signals
Operating Temperature TOP 0 +50 Deg. C (Note)
Operating Humidity HOP 10 80 %RH (Note)
Storage Temperature TST -20 +60 Deg. C (Note)
Storage Humidity HST 10 90 %RH (Note)
Vibration 1.5
10-200-10
G
Hz
30min for X, Y, Z axis
Shock 70
11
G
Ms
Half sign wave
Note (1)Storage /Operating temperature. Maximum Wet-Bulb should be 39 degree C.
No condensation.
100
80
40
20
0
0 20 40 60 -20 -40
10
50
90
Humidity (%)
Temperature (
o
C)
Operating Range
Storage Range
65
60
For Evaluation Only.
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Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 7 of 30
3.0 Pixel Format Image
Figure 2 shows the relationship of the input signals and LCD pixel format image.
Figure 2 Pixel Format
899
900
1439 1440
For Evaluation Only.
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Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 8 of 30
4.0 Optical Characteristics
The optical characteristics are measured under stable conditions as following notes
Table 1 Optical characteristics
Specification
Item Conditions
Min Typ. Max Note
Horizontal (Right + Left) 140 160 -- Viewing Angle [degrees]
K=Contrast Ratio>10 Vertical (Up + Down) 140 160 --
A, B
Contrast ratio 750 1000 -- A, C
Response Time [ms] Rising + Falling -- 5 10 A, D
Red x 0.640 A,
Red y 0.329 A,
Green x 0.283 A,
Green y 0.598 A,
Blue x 0.144 A,
Blue y 0.068 A,
White x 0.313 A,
Color Chromaticity
(CIE1931)
White y
-0.03
0.329
+0.03
A,
White Luminance [cd/m^2] ICCFL=6.5mA 250 300 -- Center A, E
Luminance Uniformity ICCFL=6.5mA, 9points -- 1.3 1.5 A, F
Note:
A. Measurement Setup:
The LCD module should be stabilized at given temperature for 20 minutes to avoid
abrupt temperature change during measuring. In order to stabilize the luminance, the
measurement should be executed after lighting backlight for 20 minutes in a windless
room.
Figure 3 Measurement Setup
LCD Module
LCD Panel
Center of the Screen
1000mm
Photometer(SR-3L1)
Light Shield Room
*Ambient Luminance < 2lux
*Ambient Temperature 25 +/-3degC
For Evaluation Only.
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Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 9 of 30
B. Definition of Viewing Angle
Figure 4 Definition of Viewing Angle
Normal
θx = θy = 0°
θy- θy+
θx-
θx+
y+
y-
x-
x+
6 o'clock
θy- = 90°
θx- = 90°
θx+ = 90°
12 o'clock direction
θy+ = 90°
C. Definition of Contrast Ratio (CR)
The contrast ratio can be calculated by the following expression
Contrast Ratio (CR) = L255 / L0
L255: Luminance of gray level 255, L0: Luminance of gray level 0
D. Definition of Response Time (TR, TF)
Figure 5 Definition of Response Time
time
Optical
Response
white(TFT OFF) black (TFT ON) white(TFT OFF)
100%
90%
10%
0%
TR TF
For Evaluation Only.
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________________________________________________________________________
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InfoVision Optoelectronics (Kunshan) Co., LTD
Page 10 of 30
E. Definition of Luminance White
Measure the luminance of gray level 255 at center point
F. Definition of Luminance Uniformity(Variation)
Measure the luminance of gray level 255 at 9 points.
)9,2,1min(
)9,2,1max(
UNF(9pts)
LLL
LLL
L
L
=
Figure 6 Measurement Locations of 9 Points
For Evaluation Only.
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Document No. A-M190MWW3-R0-23-02 Issue date 2009/03/09 Revision 00
________________________________________________________________________
NO.1 Long Teng Road, KunShan City, JiangSu, China
InfoVision Optoelectronics (Kunshan) Co., LTD
Page 11 of 30
5.0 Backlight Characteristics
5.1 CCFL Connector
Table 2 Connector Name / Designation
Manufacturer Yeonho
Type / Part Number 35001HS-02 or equivalent
Table 3 Signal assignment
Pin # Signal Name
1 Lamp High Voltage
2 Lamp Low Voltage
5.2 Parameter Guideline for CCFL Inverter
Table 4 Parameter guideline for CCFL Inverter
SYMBOL PARAMETER Min Design Point Max UNITS CONDITION
ICCFL CCFL current 3 6.5 8 [mArms] Ta=25[deg C]
(Note A)
FCCFL CCFL Frequency 40 50 60 [kHz] Ta=25[deg C]
(Note B)
1560 -- -- [Vrms] Ta=0[deg C]
(Note C)
VCCFLi Inverter Ignition Voltage
1200 -- -- Ta=25[deg C]
(Note C)
VCCFL CCFL Voltage 648 720 792 [Vrms] @ ICCFL=6.5mA
Ta=25[deg C]
Note:
A. If it exceeds MIN/MAX values, then "CCFL Life", "ON/OFF Cycle", and "SAFETY" will not
be guaranteed.
B. CCFL Frequency should be carefully determined to avoid interference between inverter
and TFT LCD.
C. The voltage over specified value (VCCFLi) should be applied to the lamp more than 1
second after startup. Otherwise, the lamp may not be turned on. The used lamp current is
the lamp typical current. The inverter should be able to give out a power that has a
generating capacity of over 1560 voltage. Lamp units need to over 1560 voltage for
ignition.
For Evaluation Only.
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Page 12 of 30
D. The distortion tae of the waveform should be within √2±10%
The inverter output waveform should be better similar to the ideal sine wave.
Asymmetry rate = |Ip-I-p| / Irms x 100%
Distortion rate = Ip (or I-p) / Irms
Figure 7 Recommendation of Lighting Waveform
Ip
I-p
For Evaluation Only.
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Page 13 of 30
6.0 Electrical Characteristics
6.1 Interface Connector
Table 5 Connector Name / Designation
Manufacturer JAE (or equivalent)
Type / Part Number UJU IS100-L30R-C23(A)
Mating Receptacle/Part Number JAE FI-X30H(L), JAE FI-X30C*(L), JAE FI-X30M*
Table 6 Signal pin assignment
Pin # Signal Name Description Remarks
1 RXinO0- LVDS differential data input
2 RXinO0+ LVDS differential data input
3 RXinO1- LVDS differential data input
4 RXinO1+ LVDS differential data input
5 RXinO2- LVDS differential data input
6 RXinO2+ LVDS differential data input
7 GND Ground
8 RXOC- LVDS differential data input
9 RXOC+ LVDS differential data input
10 RXinO3- LVDS differential data input
11 RXinO3+ LVDS differential data input
12 RXinE0- LVDS differential data input
13 RXinE0+ LVDS differential data input
14 GND Ground
15 RXinE1- LVDS differential data input
16 RXinE1+ LVDS differential data input
17 GND Ground
18 RXinE2- LVDS differential data input
19 RXinE2+ LVDS differential data input
20 RXEC- LVDS differential data input
21 RXEC+ LVDS differential data input
22 RXinE3- LVDS differential data input
23 RXinE3+ LVDS differential data input
24 GND Ground
25 GND Ground
26 NC Reserved for LCD manufacturer.
For Evaluation Only.
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27 GND Ground
28 VCC Power Supply
29 VCC Power Supply
30 VCC Power Supply
All input signals shall be low or Hi-Z state when VDD is off.
For Evaluation Only.
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Page 15 of 30
6.2 LVDS Receiver
6.2.1 Signal Electrical Characteristics for LVDS Receiver
The built-in LVDS receiver is compatible with ANSI/TIA/TIA-644 standard.
Table 7 LVDS Receiver Electrical Characteristics
Parameter Symbol Min Typ Max Unit Conditions
Differential Input High Threshold Vth -- -- +100 mV Vcm=+1.2V
Differential Input Low Threshold Vtl -100 -- -- mV Vcm=+1.2V
Magnitude Differential Input Voltage |Vid| 100 -- 600 mV
Common Mode Voltage Vcm 1.0 1.2 1.4 V Vth - Vtl = 200mV
Common Mode Voltage Offset ∆Vcm -50 -- +50 mV Vth - Vtl = 200mV
Note:
A. Input signals shall be low or Hi-Z state when VDD is off.
B. All electrical characteristics for LVDS signal are defined and shall be measured at
the interface connector of LCD.
Table 8 Timing Requirements
Parameter Symbol Min Typ Max Unit Conditions Note
Clock
Frequency
Fc 41.5 44.5 65.7 MHz
Input Data
Skew
Margin
Trskm -850
+850
ps Fc=44.5MHz, |Vth-Vtl| =
400mV
Vcm = 1.2V, ∆Vcm = 0
(Figure 11)
Note: All values are at VDD=5.0V, Ta=25 degree C.
For Evaluation Only.
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InfoVision Optoelectronics (Kunshan) Co., LTD
Page 16 of 30
Figure 8 Voltage Definitions
Figure 9 Measurement System
For Evaluation Only.
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Page 17 of 30
Figure 10 Data
mapping
RX(O/E)C
RXinO0 OG0 OR5 OR4 OR3 OR2 OR1 OR0
RXinO1 OB1 OB0 OG5 OG4 OG3 OG2 OG1
RXinO2 DE VS HS OB5 OB4 OB3 OB2
RXinO3 RSVD OB7 OB6 OG7 OG6 OR7 OR6
RXinE0 EG0 ER5 ER4 ER3 ER2 ER1 ER0
RXinE1 EB1 EB0 EG5 EG4 EG3 EG2 EG1
RXinE2 DE VS HS EB5 EB4 EB3 EB2
RXinE3 RSVD EB7 EB6 EG7 EG6 ER7 ER6
Current cycle
For Evaluation Only.
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Page 18 of 30
Figure 11 Timing Definition
Note: Tsu and Thd is internal data sampling window of receiver. Trskm is the system skew
margin; i.e., the sum of cable skew, source clock jitter, and other inter-symbol
interference, shall be less than Trskm.
For Evaluation Only.
Copyright (c) by Foxit Software Company, 2004 - 2007
Edited by Foxit PDF Editor
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