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
By
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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㪙㩷
㪚㩷
㪛㩷
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
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
㪚㪟㪜㪚㪢
K.Tanaka
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TITLE
FLC51UXC8V-11L
DRAW. NO.
Tech Bes LCD-00251
FUJITSU DISPLAY TECHNOLOGIES
CORPORATION
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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
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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)
㪙㩷
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
㪛㩷
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.
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
㪜㪛㪠㪫㩷
㪛㪘㪫㪜㩷
㪛㪜㪪㪠㪞㪅㩷
Chan
e Response time.
㪛㪜㪪㪠㪞㪅㩷 㪛㪜㪪㪚㪩㪠㪧㪫㪠㪦㪥
㪚㪟㪜㪚㪢
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Note 1) Definition of Viewing Angle (1)
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Based on Figure 9-1.
*0(Front)
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷Y+
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.
㪘㩷
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
㪚㩷
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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㪛㪜㪪㪠㪞㪅㩷 㪛㪜㪪㪚㪩㪠㪧㪫㪠㪦㪥
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Note 6) Definition of Optimum Viewing Angle
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MAX
Contrast Ratio
10
䋨-䋩
6 o’clock
0
iewing Angle
+
12 o’clock
Figure 9-6 Definition of Viewing Angle
Note 7) Definition of Brightness Uniformity
Brightness uniformity is defined by the following formula. Brightness (I1I9) art measured at the following 9 points (㽲䌾㽺) on the display area
that is shown in Figure 9-7.
Min. In
Brightness Uniformity (L) 100 (%) , n = 1 to 9
Max. In
160 800 1440 Dot
㽲㩷
120
㽳㩷
600
1080
Note) Each measurement point (㽲䌾㽺) defines the center spot of view of Brightness Meter. The tolerance of measurement position is㫧3mm.
Figure 9-7 Measurement Points
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10. INTERFACE SPECIFICATIONS
10-1 Signal descriptions
Table 10-1 shows the description and configuration of interface signals (CN1).
Pin No. Symbol I/O Function
1
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Table 10-1 Interface signals (CN1)
RxO0
-I
Negative differential input
2 RxO0+
RxO1
3
- I
4 RxO1+
RxO2
5
-I
6 RxO2+ 7 GND
RxOC
8
-I
I
Positive differential input Negative differential input
I
Positive differential input Negative differential input
I
Positive differential input
―Gound
Negative differential input
9 RxOC+ I Positive differential input
RxO3
10
-
I Negative differential input
11 RxO3+ I Positive differential input
RxE0
RxE1
-
I Negative differential input
Positive differential input
―Gound
-
I Negative differential input
12 13 RxE0+ 14 GND
15 16 RxE1+ I Positive differential input 17 GND
RxE2
18
-
―Gound
Negative differential input
19 RxE2+ I Positive differential input
RxEC
20 21 RxEC+ 22
23 24 GND 25 SELL LVDS 26 PD 27 HRCOFF 28 Vcc 29 Vcc 30 Vcc
-
RxE3
-
RxE3+
I Negative differential input
Positive differential input Negative differential input
I Positive differential input
―Gound
I
Select LVDS data order *1
LVDS Core Power Down
Fast response function control*2
+12V power supply
+12V power supply
+12V power supply
Connector : FI-X30S-HF(Japan A viation Electronics) User’s connector : FI-X30M

(Japan A viation Electronics)
FI-X30H, FI-X30C
*1: 3.3V CMOS Signal input. (High or Low) *2: The fast response function is OFF at “H”. Refer to item 10.4 for change over of timing.
*3: When using a connector other than the recommended one, a defect in the initial stage or
a problem concerning long term reliability may occur.
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10-2 LVDS Data Assignment
Table 10-2 shows the LVDS Data Assignment.
Table 10-2 LVDS Data Assignment
Input signal *1
SEL LVDS Low High
RO2 RO3 RO4 RO5 RO6 RO7 GO2 GO3
LVDS
Odd
LVDS
Even
GO4 GO5 GO6 GO7 BO2 BO3 BO4 BO5 BO6 BO7 RSVD RSVD ENAB RO0 RO1 GO0 GO1 BO0 BO1 RSVD
DCLK 31 TxCLK IN
RE2 RE3 RE4 RE5 RE6 RE7 GE2 GE3 GE4 GE5 GE6 GE7 BE2 BE3 BE4 BE5 BE6 BE7 RSVD RSVD RSVD RE0 RE1 GE0 GE1 BE0 BE1 RSVD
DCLK 31 TxCLK IN
RO0 RO1 RO2 RO3 RO4 RO5 GO0 GO1 GO2 GO3 GO4 GO5 BO0 BO1 BO2 BO3 BO4 BO5 RSVD RSVD ENAB RO6 RO7 GO6 GO7 BO6 BO7 RSVD
RE0 RE1 RE2 RE3 RE4 RE5 GE0 GE1 GE2 GE3 GE4 GE5 BE0 BE1 BE2 BE3 BE4 BE5 RSVD RSVD RSVD RE6 RE7 GE6 GE7 BE6 BE7
Transmitter
DS90CF383,C385
Interface connector
pin INPUT System side
51
TxIN0 52 54 55 56
3 4 6
7 11 12 14 15 19 20 22 23 24 27 28 30 50
2
8 10 16 18 25
51 52 54 55 56
3
4
6
7 11 12 14 15 19 20 22 23 24 27 28 30 50
2
8 10 16 18 25
TxIN1 TxIN2 TxIN3 TxIN4 TxIN6 TxIN7 TxIN8 TxIN9 TxIN12 TxIN13 TxIN14 TxIN15 TxIN18 TxIN19 TxIN20 TxIN21 TxIN22 TxIN24 TxIN25 TxIN26 TxIN27 TxIN5 TxIN10 TxIN11 TxIN16 TxIN17 TxIN23
TxIN0 TxIN1 TxIN2 TxIN3 TxIN4 TxIN6 TxIN7 TxIN8 TxIN9 TxIN12 TxIN13 TxIN14 TxIN15 TxIN18 TxIN19 TxIN20 TxIN21 TxIN22 TxIN24 TxIN25 TxIN26 TxIN27 TxIN5 TxIN10 TxIN11 TxIN16 TxIN17 TxIN23
Tx OUT0+
Tx OUT0
Tx OUT1+
Tx OUT1
Tx OUT2+
Tx OUT2
Tx OUT3+
Tx OUT3
TxCLK OUT+ TxCLK OUT
Tx OUT0+
Tx OUT0
Tx OUT1+
Tx OUT1
Tx OUT2+
Tx OUT2
Tx OUT3+
Tx OUT3
TxCLK OUT+ TxCLK OUT
-
-
-
-
-
-
-
-
-
-
LCD module
pin
2
1
4
3
6
5
11
10
9 8
13
12
16
15
19
18
23
22
21 20
RxO0+
RxO0
RxO1+
RxO1
RxO2+
RxO2
RxO3+
RxO3
RxCLK IN+ RxCLK IN
RxE0+
RxE0
RxE1+
RxE1
RxE2+
RxE2
RxE3+
RxE3
RxCLK IN+ RxCLK IN
Receiver
DS90CF386
pin OUTPUT
27 29 30 32
-
-
-
-
-
-
-
-
33 35 37 38 39 43 45 46 47 51 53 54 55
1 3 5 6
7 34 41 42 49 50
2 26 RxCLK OUT DCLK
-
27 29 30 32 33 35 37 38 39 43 45 46 47 51 53 54 55
1
3
5
6
7 34 41 42 49 50
2
26 RxCLK OUT Not use
-
RxOUT0 RxOUT1 RxOUT2 RxOUT3 RxOUT4 RxOUT6 RxOUT7 RxOUT8 RxOUT9 RxOUT12 RxOUT13 RxOUT14 RxOUT15 RxOUT18 RxOUT19 RxOUT20 RxOUT21 RxOUT22 RxOUT24 RxOUT25 RxOUT26 RxOUT27 RxOUT5 RxOUT1 RxOUT11 RxOUT16 RxOUT17 RxOUT23
RxOUT0 RxOUT1 RxOUT2 RxOUT3 RxOUT4 RxOUT6 RxOUT7 RxOUT8 RxOUT9 RxOUT12 RxOUT13 RxOUT14 RxOUT15 RxOUT18 RxOUT19 RxOUT20 RxOUT21 RxOUT22 RxOUT24 RxOUT25 RxOUT26 RxOUT27 RxOUT5 RxOUT10 RxOUT11 RxOUT16 RxOUT17 RxOUT23
LCD input
(Sel LVDS)
Low High
RO2 RO3 RO4 RO5 RO6 RO7 GO2 GO3 GO4 GO5 GO6 GO7 BO2 BO3 BO4 BO5 BO6 BO7 Not use Not use ENAB RO0 RO1 GO0 GO1 BO0 BO1 Not use
RE2 RE3 RE4 RE5 RE6 RE7 GE2 GE3 GE4 GE5 GE6 GE7 BE2 BE3 BE4 BE5 BE6 BE7 Not use Not use Not use RE0 RE1 GE0 GE1 BE0 BE1 Not use
RO0 RO1 RO2 RO3 RO4 RO5 GO0 GO1 GO2 GO3 GO4 GO5 BO0 BO1 BO2 BO3 BO4 BO5 Not use Not use ENAB RO6 RO7 GO6 GO7 BO6 BO7 Not use
RE0 RE1 RE2 RE3 RE4 RE5 GE0 GE1 GE2 GE3 GE4 GE5 BE0 BE1 BE2 BE3 BE4 BE5 Not use Not use Not use RE6 RE7 GE6 GE7 BE6 BE7 Not use
*1 ・RSVD (reserved) pin on a transmitter should be connected with Ground.
Input odd or even data depending on the display position of the LCD module.
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:
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:
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:
: : : : : : : : : : : : : : : : : : : : : : : :
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:
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:
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10-3 Color Data Assignment
Table 10-3 shows the Color Data Assignment.
Table 10-3 Color Data Assignment
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Color
Odd
Even
Black Blue Green Cyan
Red Magenta
BasicColor
Yellow White Black 0
× ×
1
Red
Ø
Brighter 253
Ø
Red 255
254
Black 0
× ×
1
Green
Ø
Brighter 253
Ø
254
Green 255
Black 0
× ×
1
Blue
Ø
Brighter 253
Ø
254
Blue 255
R Input data
R7 R6 R5 R4 R3 R2 R1 R0 R7 R6 R5 R4 R3 R2 R1 R0
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 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 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 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 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 1 1 1 1 1 1 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 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 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
1 1 1 1 1 1 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
1 1 1 1 1 1 1 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 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 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 1 1 1 1 1 1 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 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 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
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 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
G Input data B Input data
G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Note.1) Definition of gray scale:Color (n)…”n” indicates gray scale level.
Larger number means brighter level.
Note.2) Data; 1:High, 0:Low
Note 3) Color data consist of 8 bit red, green and blue data of odd and even number pixel data.
Total data number is 48 signals. This module is able to display 16,777,216 colors because each red, green and blue data is controlled independently.
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10-4 Input Signal Timing
Table 10-4 and Figure 10-1 shows the Input Signal Timing at LVDS transmitter.
Table 10-4 Timing Characteristics
Item Symbol Min. Typ. Max. Unit Remark
Period DCLK signal (Clock)
Frequency
Duty
High time
Low time DCLK-Data Timing
Setup time
Hold time
Horizontal Period
Hor. Period
Hor. Display period
Vertical Period
Ver. Frequency ENAB
signal
Ver. Display period
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(Ta=0~45ºC, Vcc=12±0.5V)
Tc
1/Tc
Tch/Tc
TclkH
TclkL
Tset
Thold
Th Th
Thd
Tv
1/Tv
Tvd
11.765
50.000 45
3.5
3.5 3 2
*1
865
13.0 800
*1
1207
50
1200
12.345
81.000 50
— — — —
1080
13.3 800
1250
60
1200
20.000
85.000 55
— — — —
*1
1130
14.65 800
*1
1280
62
1200
ns
MHz
% ns ns ns ns
DCLK
µs
DCLK
Th Hz Hz Hz Th
*2
Data-ENAB timing Tdn 0 DCLK *3 Vertical ENAB
*1)•horizontal display position is specified by the rise of ENAB.
The data latched at falling edge of DCLK after rise of ENAB is displayed at the left edge of the display area.
•Vertical display position is specified by the rise of ENAB after low level continuation over 5500 DCLK. The data latched at the rise of ENAB is displayed at the top line of the display area.
*2)•If the “High” level period of ENAB is less than 800 DCLK, black color is displayed at the rest of the display area.
*3)•If ENAB does not synchronize with the effective display data, the display position does not fit to the
Please keep ENAB blank at anytime. (ex.: Change display mode. )
display area.
*4)•If Vertical ENAB blank time shorter than 5500DCLK, LCD unit may stop display.
blank.
ENAB
blank
5500 DCLK *4
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DCLK
ENAB
RO7-0, RE7-0 GO7-0, GE7-0 BO7-0, BE7-0
RO7-0, RE7-0 GO7-0, GE7-0 BO7-0, BE7-0
ENAB
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Tc
TclkL
0.9V
Tc1 Tset
Tclk
2.3V
1.65
Tch
Thold
2.3V
0.9V
Th
Thd
RO7-0, RE7-0
C001 C1200
GO7-0, GE7-0 BO7-0, BE7-0
ENAB
Tvd
Tv
ENAB blank
Tc
DCLK
0001
RO7-0, RE7-0
0003
0005
0007
0009
0011
1587
1589
1593 1597
1591
1595
1599
GO7-0, GE7-0 BO7-0, BE7-0
ENAB
0002
0004
0006
0008
0010
0012
1588
1590
1592
1594
1596
1598
1600
Tdn Tdn
Figure 10-1 Input Signal Timing Chart
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)
10-4 Correspondence between Data and Display Position
Figure 10-2 shows the Correspondence between Data and Display Position.
S0001 S0002 S0003 S0004 S0005 S0006 S0007
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S4799 S4800
C001
RO 0001 GO0001 BO0001 RE0002 GE0002 BE0002 RO0003 GO0003
GE 1600 BE1600
C1200
RO 0001 GO0001 BO0001 RE0002 GE0002 BE0002 RO0003 GO0003
GE 1600 BE1600
Figure 10-2 Correspondence Data and Display Position
10-5 Power Supply Sequence
The sequence of input signals and On/Off of the power supply of this LCD module should be in the specification shown in Figure 10-3 to prevent latch-up of the driver ICs and DC driving of the LCD panel.
Vcc
PD LVDS
Input
Note) If Power Supply Sequence not followed, the CMOS-IC may cause a latch-up, or DC voltage
ON
OFF (0V)
1msT420ms
10.8V
0msT7
T5㻡20ms(Voltage descent
10.8V (10.5V)
10.8V
0.5V
0.5V
2.4V
H
90%
10%
L
T1 T2
1msT140ms 1msT240ms
0msT340ms
Figure 10-3 Power Supply Sequence(Logic)
may be applied to the liquid crystal, which cause a failure or serious deterioration in display quality.
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11. BACK-LIGHT SPECIFICATION
11-1 Pin configuration for Back-light
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Table 11-1 shows the description and Pin assignment of the connectors (CN-A to D) for the Back-light of this LCD module.
Table 11-1 Pin Assignment of CN-A to CN-D
CN-A
CN-B
CN-C
CN-D
Pin No.
1 2
Symbol Function Cable Color
H1
H2
3 - NC 4
5 1 2
1 2 3 4 5 1 2
V V
V V V
V V
1
2
H3
3
H4 H5
-
4
5
H6
6
Power supply (High voltage) Power supply (High voltage)
Power supply (Low voltage) Power supply (Low voltage)
Power supply (High voltage)
Power supply (Low voltage)
Power supply (High voltage) Power supply (High voltage)
NC
Power supply (Low voltage) Power supply (Low voltage)
Power supply (High voltage)
Power supply (Low voltage)
Pink
Orange
Blue
Gray
Red
White
Pink
Orange
Blue
Gray
Red
White
Connector : Housing(CN-A, CN-C):BHR-05VS-1 (CN-B, CN-D):BHSR-02VS-1
Contact : SBH-001T-P0.5
SBHS-002T-P0.5 User’s Connector : Post with base: SM04(9-E2)B-BHS-1 SM02B-BHSS-1-TB
Supplier : Japan Solder less Terminal manufacturing Company LTD. (J.S.T.)
11-2 CCFL
Supplier: SANKEN ELECTRONICS Co.LTD. Part No.: SS26E4175E8550C2882710S
11-3 Life
The life of the back-light is a minimum of 50,000 hours at the following conditions.
(1) Working conditions
Ambient temperature: 25±5
Tube current (I
) : (6mA or less)
L
(2) Definition of life
Brightness becomes 50% or less than the minimum brightness value shown in Table 9-1.
Flashing.
11-4 Lamp assembly set (for replacement)
Lamp assembly set (with charge) is prepared for replacing old lamp to new one. This set consists of an upper lamp assembly and a lower lamp assembly. Type number: FLCL-26
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12. APPEARANCE SPECIFICATIONS
g
g
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12-1 Appearance
12-1-1 Appearance specification
No. Item Jud
ment method and standard 1 Bright spot (high and Low) <6 dots (Note 1 ) 2 Bright spot connection
h and low)
(hi
<
2 pair (Note 1)
3 Total of bright spot <6 dots 4 Dark spot <10 dots (Note 2)
5 Dark spot connection <4pairs (Note 2) 6 Total of dark spot <10 dots (Note 2)
7 Total of dot defect
(bright and dark)
8 high-hgh >15mm
Distance of bright spot
others >
<
10 dots
5mm
9 Distance of dark spot > 5mm
10 Scratch on polarizer,
line shape
W<0.03
0.03<W<0.05
――――
Ld6
Ignore
Ignore
6<L<12 <7
12<L 0
L<0.6 Ignore
0.05<W<0.10
0.6<L<5
<
5
5<L 0
11 Dent on polarizer,
dot shape
0.10<W
――――
Dd0.3
0.3<D<0.4 <9
0
Ignore
0.4<D 0
12
Bubble in polarizer
D<0.3 Ignore
0.3<D<0.5 <4
0.5<D 0
13
Black white spot (Foreign circular matter)
D<0.15 Ignore
0.15<D<
0.5 <5
0.5<D 0
14 Light leakage by foreign
articles
D<0.3 Ignore
0.3<D<0.6 <5
0.6<D 0
15
Lints, black/white line
W<0.03
0.03<W<0.05
――――
Ld6
6<L<12 <6
Ignore
Ignore
12<L 0
Ignore
0.05<W<0.10
Ld0.6
0.6<L<5 <3 5<L 0
0.10<W (W+L)/2=D Conform to No.13
16 Mura
Invisible under 6% ND filter from center of display. (Display pattern: Black, White, 50%gray)
D: Average diameter [mm], W: Width [mm], L: Length [mm], S=(bright spot size)/(dot size)
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12-1-2 Light leakage outside the active area.
The light leakage that occurs minimum of 2.0mm outside the peripheral of the active area is
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overlooked.
A leakage of light may occur between the BM section and the bezel at the peripheral of the active area.
12-2 Dot defects (Bright spots, Dark spots)
12-2-1 Zone
· Inside display dot area (408.0 X 306.0mm)
· Display dot area means active area.
· One pixel consists of 3 dots (red, green and blue).
· Foreign particle and scratch unharmful to display image, such as the foreign particle under polarizer film but outside of the display area and scratch on metal bezel, backlight module or polarizer film out of the display area, etc., are not counted.
12-2-2 Bright spots
(1) Bright spots by the defect of TFT.
· Visible under bias of 2% ND filter...................................High bright spot R•G
· Visible under 5% but invisible under 2% ND filter........Low bright spot R•G•B
· Invisible under bias of 5% ND filter................................Not counted
(2) Bright spots by the light passing through tears, breaks, etc in color filter.
· Exceed size of a half dot...................................................High bright spot
· A half dot or less...............................................................Not counted
(3) Bright spots by the light passing through tears, breaks, etc in chromium mask.
· Exceed 50Pm....................................................................High bright spot
· 50Pm or less ....................................................................Not counted
12-2-3 Test condition
· Inspector must observe the LCD screen from the normal direction under the illumination by a single 20W fluorescent lamp. The distance between the LCD screen and the inspector should be a height of 50cm above the worktable.
The vertical illuminance is 300 to 600lux (reference value).
· Bright spot should be counted under entire black screen.
· Dark spot should be counted under entire white screen.
· Input signal timing should be typical value.
(Note1) Please do not mistake a single bright spot for a bright spot connection due to
Cs(supplemental capacitance) line at the center of each dot.
(Note2) If a pixel is dark partially, it connects into the number of dark spots in accordance with
following rule.
(a) A<1/3 : Not count. Only one of 4 dark connection is allowed. (b) 1/3<
(c) 2/3<
A<2/3 : Considered as 0.5 dot.
A : Considered as 1 dot.
(A=Dark spot size/dot size)
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13. ENVIRONMENTAL SPECIFICATIONS
)
)
)
(
)
(
)
A(
)
Table 13-1 show the environmental specifications.
Table 13-1 Environmental specifications
Item Condition Remark
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Temperature
Humidity
Operation 0~45ºC Storage –20~60ºC Operation
20~85%RH
Storage 5~85%RH
Temperature on surface of LCD panel should be under54℃.
Maximum wet-bulb temperature should not exceed 29ºC. No condensation.
10~500Hz, 1octave/20minute,
Vibration Non-operation
2G, 1.5mm max, 1hour each X, Y and Z directions
For single module without package.
Shock Non-operation
30G, 6ms, 1time each ±X, ±Y and ±Z directions.
NOTE: Table 13-2 and Figure 13-1 show the shock resistance standard when module is packaged.
Table 13-2 Shock resistance standard when module is packaged
Dropping location Dropping height Count
A~J 60cm 1 time
G (Top face) J(Rear face
C (Edge)
F(Side face
E(Side face
B (Edge)
Corner
Front face
I
D (Edge) H
Bottom face
Figure 13-1 Direction to apply shock to package
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DESIG.
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DESIG. DESCRIPTION
CHECK
APPR.
CHECK
APPR.
TITLE
DRAW. NO.
FUJITSU DISPLAY TECHNOLOGIES
FLC51UXC8V-11L
Tech Bes LCD-00251
CORPORATION
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14. INDICATIONS
LCD
unit
.
FLC51UXC8V-11L
NA19025-C454
4 1 0 0 0 0 1
02B
FUJITSU DISPLAY TECHNOLOGIES CORPORATION
15. PACKAGING
㪣㪚㪛㩷㫌㫅㫀㫋
This module has the following indications.
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(1) Product name : L (2) Model Number : F (3) Product Drawing Number : N
(4) Manufacturing Number : 4
(See Figure 14-2)
(See Figure 14-2)
(See Figure 14-2)
Serial number (To be reset every month on 1st.)
Manufacturing month (Oct. = X, Nov. =Y, Dec. =Z)
Last digit of manufacturing year.
(5) Version number : 0
(Example)
-1st 2 digits “02” means operational version.
-3rd alphabet means functional version.
(6) Manufacturer Country Name : MADE IN JAPAN
(7) Company Name : F (8) Disposal method of cold-cathode tubes. (See Figure 14-1) (9) Caution when changing cold-cathode tubes. (See Figure 14-1)
䊶㩷㪮㪟㪜㪥㩷㪚㪟㪘㪥㪞㪠㪥㪞㩷㪚㪦㪣㪛㩷㪚㪘㪫㪟㪦㪛㪜㩷㪝㪣㪬㪦㪩㪜㪪㪚㪜㪥㪫㩷㪣㪘㪤㪧㪪㪃㩷㪝㪦㪣㪣㪦㪮㩷㪦㪧㪜㪩㪘㪫㪠㪥㪞㩷
㪪㪧㪜㪚㪠㪝㪠㪚㪘㪫㪠㪦㪥㪪㪅㩷㪜㪪㪧㪜㪚㪠㪘㪣㪣㪰㩷㪙㪜㩷㪚㪘㪩㪜㪝㪬㪣㩷㪘㪙㪦㪬㪫㩷㪫㪟㪜㩷㪣㪘㪤㪧
䊶㩷Ⱟశ▤䈱឵䈲૞ᬺ઀᭽ᦠ䈮ᓥ䈦䈩ⴕ䈦䈩䈘䈇䇯․䈮Ⱟశ▤䊖䊦䉻஥㕙䈱䉣䉾䉳䈮᳇䉕䈧䈔䈩
䈘䈇䇯㩷 㩷 䊶㩷㪫㪟㪠㪪㩷㪫㪝㪫㩷㪚㪦㪣㪦㪩㩷㪣㪚㪛㩷㪚㪦㪥㪫㪘㪠㪥㪪㩷㪚㪦㪣㪛㩷㪚㪘㪫㪟㪦㪛㪜㩷㪝㪣㪬㪦㪩㪜㪪㪚㪜㪥㪫㩷㪣㪘㪤㪧㪪㪅㩷
㪧㪣㪜㪘㪪㪜㩷㪝㪦㪣㪣㪦㪮㩷㪣㪦㪚㪘㪣㩷㪦㪩㪛㪠㪥㪘㪥㪚㪜㪪㩷㪦㪩㩷㪩㪜㪞㪬㪣㪘㪫㪠㪦㪥㪪㩷㪝㪦㪩㩷㪠㪫㪪㩷㪛㪠㪪㪧㪦㪪㪘㪣㪅㩷
䊶㩷ᒰ⹥ᶧ᥏䊂䉞䉴䊒䊧䉟䊡䊆䉾䊃䈮䈲Ⱟశ▤䈏⚵䉂ㄟ䉁䉏䈩䈇䉁䈜䈱䈪䇮㩷
࿾ᣇ⥄ᴦ૕䈱᧦଀䉁䈢䈲ⷙೣ䈮ᓥ䈦䈩ᑄ󰩩䈚䈩䈘䈇䇯㩷
Figure 14-1
㪪㩷㪪㪠㪛㪜㪄㪜㪛㪞㪜㪅㩷
Figure 14-2
15-1 Packing specifications
(1) 4LCD modules/1package. (2) Weight: approximately 17kg/1package. (3) Outline dimensions: 576mm(W)x316mm(D)x508mm(H)
15-2 Packing method
㩷 㩷 㩷㩷㩷㪝㪣㪚㪌㪈㪬㪯㪚㪏㪭㩷㩷㩷㩷㪄㪈㪈㪣㩷 㩷 㪋㪈㪇㪇㪇㪇㪈 㩷㩷㩷㪥㪘㪈㪐㪇㪉㪌㪄㪚㪋㪌㪋㩷 㩷 㩷 㩷 㩷 㩷 㩷 㩷 㪇㪉㪙㩷
㪝㪬㪡㪠㪫㪪㪬㩷㪛㪠㪪㪧㪣㪘㪰㩷㪫㪜㪚㪟㪥㪦㪣㪦㪞㪠㪜㪪㩷㪚㪦㪩㪧㪅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㪤㪘㪛㪜㩷㪠㪥㩷㪡㪘㪧㪘㪥㩷
Figure 15-1,2 shows the packing method.
DATE DOCUMENT CONTROL SECTION
EDIT
DESIG.
DATE
DESIG. DESCRIPTION
CHECK
APPR.
CHECK
APPR.
TITLE
DRAW. NO.
FUJITSU DISPLAY TECHNOLOGIES
FLC51UXC8V-11L
Tech Bes LCD-00251
CORPORATION
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TITLE
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-
00251
FUJITSU DISPLAY TECHNOLOGIES
CORPORATION
B
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Protective sheet
Front side
Anti-Electric Bag
Rear side
Front side
Fig.15-2 (a) Packaging Method
DATE
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DATE
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FUJITSU DISPLAY TECHNOLOGIES
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Taping
anti
-
electrostatic type.
N JAPAN
508
Bar code
Bar code
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Holder (bottom)
LCD unit
B
Holder (top,left)
Holder (top,right)
DATE
EDIT
DESIG.
Label (example)
型格
(TYPE) FLC51UXC8V -11L
図番
(DRWG. NO.) (REV. NO.)
DATE
DESIG.
NA19025-C454
Bar code
CHECK
APPR.
CHECK
4100001 4100002 4100003 4100004
576
数量
(QTY.) 4
版数
02B
Top : H or I method Bottom : H method
• Top and bottom holders should be
MADE I
Fig.15-2 (b) Packaging Method
DRAW. NO.
DESCRIPTION
APPR.
316
FLC51UXC8V-11L
SHE
E
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FUJITSU DISPLAY TECHNOLOGIES
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1652 (By Ship)
1144 (By Airplane)
Top Board
B
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Corrugated
PP Belt
900
Wrap Film
Up and Down : 3 times wrap Middle : 2 times wrap
Note:1) 4 boxes×3 layers (maximum 12 boxes) : by ship
4 boxes×2 layers (maximum 8 boxes) : by airplane
Note:2) This drawing shows marine transportation specification.
Carton Angle
900
E
Fig.15-2 (c) Packaging Method
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DATE
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Corrugated carton (A)
446
646
6
02
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Cushioning material
with LCD modules
B
(580)
(430)
(630)
Corrugated fiberboard shipping container (B)
Note 1) The carton (A) should be placed in the middle of the container (B) with enough cushioning
materials.
Note2) The figures in () show inside measurements of the container (B).
Figure.15-2 (d) Packing method
E
DATE
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16.WARRANTY
The warranty period is one year after shipping. Products which fail during this period are repaired or replaced without charge, unless the failure is caused by user.
17.PRECAUTIONS
Adhere to the following precautions to use this LCD module properly.
(1) Handling of LCD panel
Do not apply any strong mechanical shock to the LCD panel.
B
Since the LCD panel is made of glass, excessive shock may damage the panel or cause a malfunction.
Do not press hard on the LCD panel surface.
In the LCD panel, the gap between two glass plates is kept perfectly even to maintain display properties and reliability. The hard pressure on the LCD panel may cause the
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following problems. If the pressure is over 2kg/cm2, the problem don’t return to normal Condition.
Ununiformity of color
Disorder of orientation of liquid crystal
Problem
returns to normal condition after a while. Problem
returns to normal
condition by turning the power off and turning on again. However these operations should be avoided to insure reliability.
Do not scratch the polarizer film on the LCD panel surface.
Do not press or rub the display surface with a hard tool, tweezers, etc.
For handling, use cotton or conductive gloves so that the display surface is not soiled.
If dust or dirt soils the display surface, clean it as follows with a soft cloth (deerskin, etc.)
[Dust] Wipe off with a soft cloth. (do not rub.) [Dirt ] Apply clear water to a soft cloth and squeeze hard out of water drops, then lightly
wipe off the specified parts. Only if the dirt is hardly wiped off, use isopropyl alcohol
or ethanol. Be careful not to splash the water or the solvents on the edge of polarizer and in the LCD unit. The polarizer possibly exfoliates due to the solvent and water penetrated between the polarizer and the LCD panel. Do not use unspecified solvent such as ketone (acetone, etc.) and aromatics (xylene, toluene, etc.)
(Caution) Be careful not to allow the water or solvent to enter the module.
If saliva or water drops are left for a long period of time, the part may become
deformed or discolored.
Wipe off immediately in the same way as for dirt.
Do not allow oil to adhere to the module since excessive oil is hard to clean.
DATE
DRAW. NO.
FLC51UXC8V-11L
Tech Bes LCD-00251
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Do not place or contact objects on the display surface for a long period of time.
This may make some parts of the LCD module distorted and the quality of display may deteriorate.
(2) Handling of LCD module
Do not pull the cold-cathode tube cable strongly.
If the cable is pulled with the strength of 2kg or more, the cable may be damaged or may lose reliability.
Assemble the module into user’s system in a dust free environment.
Conductive foreign matter adheres to the module may cause failures.
Take anti-electrostatic measures for assembling the module.
B
Since the LCD module contains CMOS-ICs, the following points should be observed.
For assembling the module, operator should be grounded and wear cotton or conductive
gloves. Floor of work area and work table to assemble the LCD module should be covered with
electrostatic shielding in order to discharge static electricity via an earth wire.
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If necessary, ground operation tools (soldering iron, radio pliers, tweezers, etc.).
Do not take the module out of the conductive bag until the module is assembled.
Do not assemble the module under low humidity (50%RH or less).
Do not pull the connecting cable on the rear face of the LCD module strongly.
Do not disassemble or remodel the LCD module.
Disassembly or remodeling of the LCD module may result in malfunctions or deterioration of the display quality and reliability.
(3) Precautions in regards of operating the LCD module
Adhere to the specified power supply sequence.
If not followed, the CMOS-IC may cause a latch-up, or DC voltage may be applied to the liquid crystal, which cause a failure or serious deterioration in display quality.
Do not operate the LCD module when condensation occurs.
If the LCD module is operated when condensation is on the terminals of the LCD panel, the terminals cause electrochemical reaction, and may reach disconnection. Condensation easily occurs especially when the module is moved from cold environment to warm environment.
.
DATE
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The following troubles occur when the LCD module is not used under recommended
temperature.
Operation under high temperature(>50ºC): Display colors shift to blue.
Storage under high temperature(>60ºC): The polarizer film deteriorates and contrast
decreases.
Operation under low temperature(< 0ºC): The response speed decreases considerably.
Storage under low temperature(<-20ºC): The liquid crystal may solidify and become
damaged.
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B
Be sure to input the control signals at the correct timing.
If control signals (DCLK, ENAB) are not input, or if the timing is out of the specified timing, DC voltage may be applied to the liquid crystal and, as a result, cause image sticking or deterioration of contrast.
(4) Precautions in regards of designing module mounting
Excessive force should not be applied to the screen or the rear side of the LCD module.
Excessive pressure on the screen caused by the installation of the LCD module may deteriorate display quality and reliability. Brightness uniformity and the reliability of CCFL may decrease if the pressure is applied to the backlight module.
Avoid twisting and bending the LCD module.
Excessive twist and bend may damage display quality and reliability.
Avoid extending the power cable between the LCD module and inverter.
This may cause the backlight to flicker or not to light.
Keep the backlight cable apart from the metal enclosure of the LCD module.
When frequency current for backlight driving leak to the metal enclosure, the desired brightness may not be assured.
When Mounting LCD module with M3 screws (x4), tighten the screws with torque below
29.4Nm(3kgf).
(5) Storage method
Do not store the LCD module in an atmosphere of organic solvent or corrosive gas.
In an organic solvent atmosphere, the polarizer film discolors and display quality deteriorates. In a corrosive gas environment, various parts of the module may corrode or deteriorate.
Store the LCD module in a Fujitsu package.
At storing, Fujitsu packages can be stacked up to 3 boxes. The LCD module is in an anti-static bag. Keep the module in that status.
DATE
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FLC51UXC8V-11L
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The LCD module is recommended to be stored in humidity controlled, cool and dark
locations.
Recommended storage environment
Place : Dark (avoid direct sunlight)
Temperature : 10〜35ºC
Humidity : 50〜60%RH
Note) If the module is left in an environment of 60ºC and above for a long period of time,
optical characteristics may deteriorate.
(6) Disposal Method
LCD module
B
The components of this LCD module can be grouped into metal, resin, glass and so on. As the backlight contains CCFL which includes mercury, it must be disposed according to the local ordinance or regulations.
Package
All the packages are made of recyclable papers except the anti-ESD bag.
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(7) Others
If the LCD panel is damaged, do not inhale and do not swallow the liquid crystal.
If the liquid crystal adhere to the body or cloths, wash it off with soap immediately. Follow regular precautions for electronic components.
Flux residue on the printed circuit board is harmless to the quality and reliability of LCD
module.
Fujitsu has adopted non-wash technology on module assembly process.
DATE
DRAW. NO.
FLC51UXC8V-11L
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Return method of the LCD unit requested for repair or analysis of the problem
ʢ8ʣ
When the LCD unit is packaged and returned, adhere to the following procedures not to
damage the LCD panel or the backlight cables. (Fig. 18-1(a)~(b)) When the LCD unit is returned without following the specified packaging procedures, FDTC will not take responsibility for the damages caused by the failure of the packaging method.
1
Attach protective sheet.
˓
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B
Protective sheet
Front side
2
Put the LCD unit into the anti-electric bag
˓
Anti-electric bag
Front side
Fig. 17-1(a) Packaging method
DATE
DRAW. NO.
FLC51UXC8V-11L
Tech Bes LCD-00251
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3
Storage into the container box
˓
When using the container box manufactured by FDTC
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Holder (bottom)
LCD unit
B
Holder (top)
* The front side of LCD units should
face the direction of the arrowhead on holder(bottom).
Seal by tape
DATE
EDIT
DESIG.
* The direction of the arrowhead on holder (top) should face the front side of the LCD units.
**The arrowheads are shown on the holders.**
Fig. 17-1(b) Packaging method
When not using the container box manufactured by FDTC
Please pack the LCD units one by one and make sure not to damage the LCD unit when transporting.
FLC51UXC8V-11L
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Tech Bes LCD-00251
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DESIG.
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18.OTHERS
Specifications of the TFT-LCD panel and other components used in this LCD module are subject to change. Both parties shall discuss together and make the best effort to reach agreement in case of the rising of any doubt to the contents of the specifications. This LCD module is not designed for the purpose where high reliability is required, such as for aero-space equipment, control system of nuclear power and medical life-support equipment.
B
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DRAW. NO.
FLC51UXC8V-11L
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DATE
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