FUJITSU FLC51UXC8V-11L Specification

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Specification of FUJITSU TFT-LCD module
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FLC51UXC8V-11L
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㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷Specification No. : Tech Bes LCD-00251
Issue Date : September 14, 2004
Date
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This Product is designed, developed and manufactured as contemplated for general use, including without limitation, general office use, personal use, household use, and ordinary industrial use, but is not designed, developed and manufactured as contemplated for use accompanying fatal risks or dangers that, unless extremely high safety is secured, could lead directly to death, personal injury, severe physical damage or other loss (hereinafter “High Safety Required Use”), including without limitation, nuclear reaction control in nuclear facility, aircraft flight control, air traffic control, mass transport control, medical life support system, missile launch control in weapon system. If customer’s product possibly falls under the category of High Safety Required Use, please consult with our sales representatives in charge before such use. In addition, Fujitsu shall not be liable against the Customer and/or any third party for any claims or damages arising in connection with the High Safety Required Use of the Product without permission
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Issued by : Katsunori. Tanaka Project Director
LCD Products Div.
FUJITSU DISPLAY TECHNOLOGIES CORPORATION
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REVISION HISTORY
Revision Date Prepared Checked Approved Summary
㪘㩷
02B Jan.7.2004 M.Nishido Y.Furukoshi K.Tanaka 1st issue
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02 20040914
㪜㪛㪠㪫㩷
㪛㪘㪫㪜㩷
㪛㪜㪪㪠㪞㪅㩷
Furukoshi
㪛㪜㪪㪠㪞㪅㩷 㪛㪜㪪㪚㪩㪠㪧㪫㪠㪦㪥
20040107 M.Nishido㩷㩷㩷㩷㩷㩷㩷Furukoshi 㩷㩷㩷㩷㩷㩷K.Tanaka
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K.Tanaka
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TITLE
FLC51UXC8V-11L
DRAW. NO.
Tech Bes LCD-00251
FUJITSU DISPLAY TECHNOLOGIES
CORPORATION
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-11L
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TABLE OF CONTENTS
20030725
1.APPLICATIONS
Furukoshi
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K.Tanaka
2.PRODUCT NAME AND MODEL NUMBER
2-1.Product Names 2-2.Model Numbers
3.OVERVIEW
4.CONFIGURATION
B
5.MECHANICAL SPECIFICATIONS
6.ABSOLUTE MAXIMUM RATING
7.RECOMMENDED OPERATING CONDITIONS
8.ELECTRICAL SPECIFICATIONS
9.OPTICAL SPECIFICATIONS
10.INTERFACE SPECIFICATIONS
10-1.Signal Descriptions 10-2.LVDS Data Assignment 10-3. Color Data Assignment 10-4. Input Signal Timing 10-5. Correspondence between Data and Display Position 10-6.Power Supply Sequence
3 3 3
3 3 4 5 5 6
8 12
12 13 14
15 17 17
11.BACK-LIGHT SPECIFICATIONS
11-1.Pin configurations for Back-light 11-2.CCFL 11-3.Life
12.APPEARANCE SPECIFICATIONS
12-1.Appearance 12-2.Dot defects
13.ENVIRONMENTAL SPECIFICATIONS
14.INDICATIONS
15.PACKAGING
15-1.Packing Specifications 15-2.Packing Method
16.WARRANTY
17.PRECAUTIONS
18.OTHERS
18 18 18 18
19 19 20
21 22 22
22 23
27 27 33
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1. APPLICATION
This specification is applied to the 20.1-inch UXGA supported TFT-LCD module.
2ɽPRODUCT NAME AND MODEL NUMBER
2–1 Product Name: LCD Module 2–2 Model Name: FLC51UXC8V-11L
B
3. OVERVIEW
This LCD module has a TFT active matrix type liquid crystal panel 1600x1200 pixels, and diagonal size of 51cm(20.1-inch). This LCD has a LVDS dual interface and can display 16,777,216 colors.
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The power supply of this LCD module is +12V DC single. This module has the characteristics for applying TCO’99.
This module has equivalent to 100% EBU color filter.
This module has high response time circuit.
4. CONFIGURATION
This LCD module consists of a color TFT-LCD panel that is mounted with TFT driver ICs, a cold-cathode fluorescent tube back-light. The inverter for the backlight is not included. Figure 4-1 shows a block diagram of this LCD module.
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RXO0
Vcc
(+12V)
RXE0
SEL LVDS
Input signals (LVDS Dual)
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RXE0 RXE1 RXE1 RXE2 RXE2 RXE3 RXE3 RXEC RXEC
+
- +
­+
- +
- +
-
S
LVD
Receiver
converter
DC/DC
Bias voltage
Supply circuit
Internal
Circuit
Gate Driver
Data driver
TFT color LCD panel 1600x3(RGB) x1200
+
RXO0
-
RXO1
+
RXO1
-
RXO2
+
RXO2
-
RXO3
+
RXO3
-
RXOC
B
RXOC
+
-
PD
HRCOFF
Back-light
(6 CCFL)
(Separate)
Power
Inverter circuit
supply
Figure 4-1 Block Diagram
5. MECHANICAL SPECIFICATIONS
Table 5-1 shows the mechanical specifications of this LCD module.
Table 5-1 Mechanical Specifications
Item Specifications Unit Remark
Dimensions 432 x 331.5 x 25(TYP.) mm
Edge type back-light is used. (φ2.6 CCFLx6)
Display Resolution
Display Dot Area 408.0 x 306.0 mm Dot Pitch (0.085x3) x 0.255 mm Aspect Ratio 1:1 — Weight 3,700 (Max) FG-SG Short circuit
(1600x3) x 1200
For details on dimensions,
See dimensional outline drawing.
(At page 34,35) Excluding inverter.
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6. ABSOLUTE MAXIMUM RATING
Table 6-1 shows the absolute maximum rating of this LCD module.
Table 6-1 Absolute Maximum Rating
Item Symbol Condition MIN. TYP. MAX. Unit
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Supply Voltage V
Ta=25ºC –0.3 14.0 V
CC
B
Input Signal Voltage (LVDS signal, PD,
V
Ta=25ºC –0.3 3.6 V
IN
SEL LVDS,HRCOFF)
7. RECOMMENDED OPERATING CONDITIONS
Table 7-1 shows the recommended operating conditions of this LCD module.
Table 7-1 Recommended Operating Conditions
Item Symbol MIN. TYP. MAX. Unit
Supply Voltage (Logic) V
Ripple Voltage V
CC
CC
V
RP
11.5 12.0 12.5 V
0.1 V
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8. ELECTRICAL SPECIFICATIONS
Table 8-1 shows the electrical specifications of this LCD module. Figure 8-1 shows the measurement circuit. Figure 8-2(A) shows the equivalent circuit of the logic signal input area. Figure 8-2(B) shows the equivalent circuit of the supply voltage Input area.
Table 8-1 Electrical Specifications
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Item Symbol Condition MIN. TYP. MAX. Unit
Differential-input Voltage (High)
Differential-input
B
Voltage (Low) Supply Current I
Supply Rush Current I Supply Rush Current
Duration (1A excess)
BACK LIGHT
CCFL Turn on Voltage
Lighting Voltage V
Lighting Frequency f
(*3)
Tube Current
T
V
V
SCC
V
I
IH
IL
CC
SCC
S
L
L
L
Remark
100 mV
VCM=+1.2V
–100 mV
600 1200 mA *1
VCC=+12.0±0.5V
=0V
V
SS
DCLK=81MHz 60Hz
5.8 A
*2
0.2. ms
fL=50kHz, Ta=25ºC
fL=50kHz, Ta=0ºC
fL=50kHz
=6mA
I
L
1600 1800 Vrms *4
1850 Vrms *4
800 Vrms
VL=800Vrms 30 50 60 KHz fL=50kHz
=800Vrms
V
L
3
6 7
mArms
*3
DATE
(*1) Typical current situation : Color bar pattern. Vcc=12.0V
Maximum current situation: 2-pixel checker pattern. Vcc=11.5V Without rush current.
(*2) These items prescribe the rush current for starting internal DC/DC.
Charging current to capacitors of Vcc is not prescribed.
(*3) Tube current (I
) shows the value of the current that is consumed at one lamp.
L
This LCD module has 6 lamps. Each 3 lamps are placed at upper side and lower side of the display. 3 lamps are connected in parallel. Each low voltage terminals are connected with separate Cable to Back-light connecter.
(*4) The voltage above this value should be applied to the lamp for more than 1 second to startup.
Otherwise the lamp may not be turned on.
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Fuse
V
cc
FG
EMI Filter
100pF
Internal
Differential
100
Measurement circuit is based on Figure 8-1.
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+12V
GND
C
AC
B
V
s
GND
Input signals (LVDS Dual)
RXO0 RXO0 RXO1 RXO1 RXO2 RXO2 RXO3 RXO3 RXOC RXOC
+
- +
­+
- +
- +
-
RXE0 RXE0 RXE1 RXE1 RXE2 RXE2 RXE3 RXE3 RXEC RXEC
+
- +
­+
- +
- +
-
Icc
L
L
PD
Vcc
DC/DC Converter
Back-light
Figure 8-1 Measurement circuit
Input
Ω
+3.3V
10k
Ω
(pull-up)
Logic Analog Driver
LCD module
LVDS Receiver
Circuit
SEL LVDS HRC OFF
50k
Ω
(pull-down)
LVDS Receiver: DS90CF386 (National Semiconductor) or
THC63LVDF84B (Thine Electronics)
Figure 8-2(A) Equivalent circuit of logic signal Input
10μF
10μF
GND
Frame ground
Fuse: KAB240240-4A (Matsuo Electronics Co.LTD) EMI Filter: SGM45C1H222 (Sumitomo Metal Electronics Devices Inc)
Figure 8-2(B) Equivalent circuit of power supply
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Internal
Circuit
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9. OPTICAL SPECIFICATIONS
g
Table 9-1 shows the optical specifications of this LCD module.
Table 9-1 Optical Specifications
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Item Symbol Condition
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Ta=25ºC,Signal timing=Typ.
Specifications Remark
MIN. TYP. MAX.
Unit
Note
Visual
Horizontal
Angle
Ver ti ca l All Direction
Contrast Ratio CR
䌌䋬䌒
䌕䋬䌄
CR10
䌌䋬䌒䋬䌕䋬䌄
䌕䋬䌄
䌌䋬䌒
=0
=0
85 — — deg
85 — — deg
80 deg
=0
400 600 — —
White/ Black
(1)(2) (3)(5) (6)
(1)(2) (3)(5)
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䂾2Response
Time (Rise+Fall) (B㸢W㸢B)
rise
+
fall
䌌䋬䌒䋬
䌕䋬䌄
=0
Ta=25ºC
Ta=0
ºC
— 16 — ms
— 34 — ms
(1) (4) (5)
Response Time (Rise or Fall)
avg
(All gray scale)
Brightness
Brightness Uniformity
䂦䌉
㪚㩷
W
䌌䋬䌒䋬
䌕䋬䌄
=0㫦 㱔
䌌䋬䌒䋬䌕䋬䌄
=12.0V
䌃䌃
I
L
=50kHz
f
l
=0
=6mA
Ta=25
50-60Hz
R*,G*,B*Signal =All”H”
ºC
2
10
— ms
200 250 cd/m
70 — —
0.283 0.313 0.343 —
0.299 0.329 0.359 —
Average of Response Time
2
White *1
Chromaticity
R G B
䋨䌸䋬䌹䋩
Red (0.641,0.350) Typ.
Green (0.287,0.595) Typ.
Blue (0.142,0.070) Typ.
(1)(5)
(1)(5) (7)
(1) (5)
LCD Panel Type TFT Color
Display Mode Normally Black
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Wide Viewing Angle Technology MVA
Optimum Viewing Angle — (Symmetry) (6)
Display Color 16,777,216 (8-bit color)
Color of non-display area Black
Surface Treatment
Anti-glare (Haze value:䋨25%䋩䋬2H)
(*1) Value at 1520 minutes after lighting on.
(Note) CS-1000 (MINOLTA Co. Ltd.) Field=1, L=500mm
Back-light current = 6mA, Dark room condition (1 lux or less)
Be careful that the luminance meter, which you use, may not be able to get correct brightness
If it’s no set correctly.
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02 20040914
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Chan
e Response time.
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Note 1) Definition of Viewing Angle (1)
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Based on Figure 9-1.
*0(Front)
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Top (12 o’clock Direction)
LCD module
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷X+
Right (3 o’clock Direction)
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷Y-
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷X-
Left (9 o’clock Direction)
䋪→㱔
䋽䋰㫦䋬㱔D䋽䋰㫦䋬㱔L䋽䋰㫦䋬㱔R䋽䋰㫦
U
㪙㫆㫋㫋㫆㫄㩷㩿㪍㩷㫆㪺㫃㫆㪺㫂㩷㪛㫀㫉㪼㪺㫋㫀㫆㫅㪀
Figure 9-1 Definition of Viewing Angle (1)
Note 2) Definition of Viewing Angle (2)
Based on Figure 9-2.
㪤㪠㪥
㪫㪰㪧
㪤㪘㪯
Display Surface
㪣㪃㪩㪃㪬㪃㪛
Display Surface
㩷 㪔㪇㫦
Figure 9-2 Definition of Viewing Angle (2)
Note 3) Definition of Contrast Ratio (CR)
L
W
White
Determined by Formula (1) based on Figure 9-3 Voltage-Brightness characteristics.
Brightness 䌛L䌝
0
Black
Panel Drive Voltage 䌛䌖䌝
(Brightness at white)
W
=
(Brightness at black) 㵺㵺(1)
L
B
Figure 9-3 Voltage-Brightness Characteristics
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䂾2Note 4) Definition of Response Time
Based on Figure 9-4.
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Relative Brightnes
1 frame
100%
90%
90%
1
fall
㪙㩷
0%
rise
10%
Rise Res
onse Time
Fall Res
onse Time
Figure 9-4 Definition of Response Time
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Note 5) Contrast Ratio and Response Measurement System
㪛㩷
Based on Figure 9-5.
+
Y
+
X
-
Z
-
X
-
Y
+
Z
Brightness Meter or Luminance colorimeter (with luminosity correction function)
Drive and Measurement System
Figure 9-5 Contrast Ratio and Response Time Measurement System
㪛㪘㪫㪜㩷 㪛㪦㪚㪬㪤㪜㪥㪫㩷㪚㪦㪥㪫㪩㪦㪣㩷㪪㪜㪚㪫㪠㪦㪥㩷
02 20040914 Change response time definition.
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