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LC470EUD
Product Specification
CONTENTS
COVER
CONTENTS
GENERAL DESCRIPTION1
ABSOLUTE MAXIMUM RATINGS2
ELECTRICAL SPECIFICATIONS3
ELECTRICAL CHARACTERISTICS3-1
INTERFACE CONNECTIONS3-2
SIGNAL TIMING SPECIFICATIONS3-3
COLOR DATA REFERENCE3-5
POWER SEQUENCE3-6
OPTICAL SPECIFICATIONS4
MECHANICAL CHARACTERISTICS5
RELIABILITY6
ITEMNumber
Page
1
2
3RECORD OF REVISIONS
4
5
6
6
8
11
12SIGNAL TIMING WAVEFORMS3-4
15
16
18
24
27
Ver.0.2
INTERNATIONAL STANDARDS7
SAFETY7-1
PACKING8
DESIGNATION OF LOT MARK8-1
PACKING FORM8-2
28
28
28EMC7-2
28Enviroment7-3
29
29
29
30PRECAUTIONS9
30MOUNTING PRECAUTIONS9-1
30OPERATING PRECAUTIONS9-2
31ELECTROSTATIC DISCHARGE CONTROL9-3
31PRECAUTIONS FOR STRONG LIGHT EXPOSURE9-4
31STORAGE9-5
31HANDLING PRECAUTIONS FOR PROTECTION FILM9-6
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LC470EUD
Product Specification
RECORD OF REVISIONS
DescriptionPageRevision DateRevision No.
Preliminary Specification-Aug 26, 20100.0
Update the power sequence16Sep 28, 20100.1
Update the optical specification18
Correct the weight information4,24
Update the mechanical drawings25,26
Add the operating condition guide31
Add the Appendix III,stanadard specification of eyeglasses44
Update the Backlight Module10Nov.02.20100.2
Update the sequence of LED driver17
Update the optical specification18
Update the mechanical drawings25
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1. General Description
The LC470EUD is a Color Active Matrix Liquid Crystal Display with an integral Light Emitting Diode (LED)
backlight system. The matrix employs a-Si Thin Film Transistor as the active element.
It is a transmissive display type which is operating in the normally black mode. It has a 46.96 inch diagonally
measured active display area with WUXGA resolution (1080 vertical by 1920 horizontal pixel array).
Each pixel is divided into Red, Green and Blue sub-pixels or dots which are arrayed in vertical stripes.
Gray scale or the luminance of the sub-pixel color is determined with a 10-bit gray scale signal for each dot.
Therefore, it can present a palette of more than 1.06Bilion colors.
It has been designed to apply the 10-bit 4-port LVDS interface.
It is intended to support LCD TV, PCTV where high brightness, super wide viewing angle, high color gamut,
high color depth and fast response time are important.
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LC470EUD
Product Specification
LVDS
CN2
(41pin)
2Port
LVDS 3,4
LVDS
2Port
LVDS
Select
Bit
Select
+12.0V
SIN, SCLK, V_Sync
+24.0V, GND, On/Off
CN1
(51pin)
ExtV
LVDS 1,2
Option
signal
I2C
BR-B
General Features
Active Screen Size
EEPROM
SCL
SDA
Timing Controller
LVDSRx+L/Dim+DGA+ODC
Integrated
Power Circuit
Power Signals
Block
LED Driver
46.96 inch (1192.78mm) diagonal
1078.6(H) x 626.0 (V) x 10.8(B) / 24.0 mm (D) (Typ.)Outline Dimension
0.5415 mm x 0.5415 mm x RGBPixel Pitch
1920 horiz. by 1080 vert. Pixels, RGB stripe arrangementPixel Format
Total 101.1W(Typ.) [Logic= 8.0W, LED Driver=93.1W (ExtVbr_B=100% )]Power Consumption
12.8Kg(TBD)Weight
Transmissive mode, Normally blackDisplay Mode
Hard coating(TBD), Anti-glare treatment of the front polarizer (Haze 10%)Surface Treatm ent
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2. Absolute Maximum Ratings
The following items are maximum values which, if exceeded, may cause faulty operation or permanent damage
to the LCD module.
Table 1. ABSOLUTE MAXIMUM RATINGS
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LC470EUD
Product Specification
ParameterNote
Power Input Voltage
Driver Control Voltage
Note
1. Ambient temperature condition (Ta =
ON/OFF
Brightness
Symbol
VLCDLCD Circuit
VOFF / VON
TOPOperating Temperature
25 ± 2 C )
Value
MaxMin
+14.0-0.3
+5.5-0.3
+500
Unit
VDC
VDC+27.0-0.3VBLDriver
VDC
VDC+5.50.0EXTVBR-B
VDC+4.0-0.3VLOGICT-Con Option Selection Voltage
C
C+60-20TSTStorage Temperature
C+68-TSURPanel Front Temperature
%RH9010HOPOperating Ambient Humidity
%RH9010HSTStorage Humidity
2. Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be Max 39C, and no condensation of water.
3. Gravity mura can be guaranteed below 40C condition.
4. The maximum operating temperatures is based on the test condition that the surface temperature
of display area is less than or equal to 68C with LCD module alone in a temperature controlled chamber.
Thermal management should be considered in final product design to prevent the surface temperature of
display area from being over 68. The range of operating temperature may be degraded in case of
improper thermal management in final product design.
90%
1
2,3
4
2,3
60
60%
40
50
40%
Humidity [(%)RH]
10%
C]
Wet Bulb
Temperature [
0
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C]
30
20
10
10203040506070800-20
Dry Bulb Temperature [
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Storage
Operation
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3. Electrical Specifications
3-1. Electrical Characteristics
It requires two power inputs. One is employed to power for the LCD circuit. The other Is used for the LED
backlight and LED Driver circuit.
Table 2. ELECTRICAL CHARACTERISTICS
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LC470EUD
Product Specification
ParameterSymbol
Value
Circuit :
Power Input Voltage
Power Input Current
Power Consumption
Rush current
LCD
I
LCD
LCD
RUSH
Note : 1. The specified current and power consumption are under the V
condition whereas mosaic pattern(8 x 6) is displayed and f
is the frame frequency.
V
2. The current is specified at maximum current pattern.
3. The duration of rush current is about 2ms and rising time of power input is 0.5ms (min.).
White : 1023 Gray
Black : 0 Gray
MaxTypMin
13.212.010.8V
=12.0V, 25 ± 2C, fV=120Hz
LCD
V
DC
NoteUnit
1mA871670-
2mA1261970-
1Watt10.58.04-P
3A5.0--I
Mosaic Pattern(8 x 6)
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Table 3. ELECTRICAL CHARACTERISTICS (Continue)
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LC470EUD
Product Specification
ParameterSymbol
LED Driver :
Power Supply Input VoltageVBL22.824.025.2Vdc1
Power Supply Input CurrentIBL
Power Supply Input Current (In-Rush)In-rush--5.3A
Power ConsumptionPBL-
On/Off
Input Voltage for
Control System
Signals
LED :
Life Time30,000Hrs2
Brightness AdjustExtV
PWM Frequency for
NTSC & PAL
Pulse Duty Level
(PWM)
OnV on2.5-5.0Vdc
OffV off-0.30.00.7Vdc
BR-B1-100%
PAL100Hz3
NTSC120Hz3
High Level2.5-5.0
Low Level0.0-0.7
MinTypMax
Values
-
3.87
93.1101.8
4.24
UnitNotes
A1
BL =22.8V
V
BR-B = 100%
Ext V
W1
Vdc
Vdc
HIGH : on duty
LOW : off duty
4
On Duty
6
Notes :
1. Electrical characteristics are determined after the unit has been ‘ON’ and stable for approximately 60
minutes at 252C. The specified current and power consumption are under the typical supply Input voltage
24Vand V
BR (ExtVBR-B : 100%), it is total power consumption.
2. The life time (MTTF) is determined as the time which luminance of the LED is 50% compared to that of initial
value at the typical LED current (ExtVBR-B :100%) on condition of continuous operating in LCM state at
252C.
3. LGD recommend that the PWM freq. is synchronized with One time harmonic of V_sync signal of system.
Though PWM frequency is over 120Hz (max 252Hz), function of LED Driver is not affected.
4. The duration of rush current is about 200ms.
5. Even though inrush current is over the specified value, there is no problem if I
2
T spec of fuse is satisfied.
6. Ext_PWM Signal have to input available duty range.
Between 99% and 100%
But
ExtVBR-B 0% and 100% is possible.
High
ExtVBR-B duty have to be avoided. ( 99% < ExtVBR-B < 100%)
Available duty range
Low
0%1%
Ver.0.2
99% 100%Ext_PWM Input Duty
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Product Specification
3-2. Interface Connections
This LCD module employs two kinds of interface connection, 51-pin connector and 41-pin connector are used
for the module electronics and 14-pin connector is used for the integral backlight system.
3-2-1. LCD Module
- LCD Connector(CN1): FI-R51S-HF(manufactured by JAE) or compatible
Note 1. All GND(ground) pins should be connected together to the LCD module’s metal fram e.
NC
NC
NC
NC
NC
NC
LVDS Select
NC
NC
GND
R1BP
R1CN
R1CP
GND
R1CLKN
R1CLKP
GND
R1DP
R1EN
R1EP
NC
2. All V
No Connection
No Connection
No Connection
No Connection (Note 4)
No Connection (Note 4)
No Connection (Note 4)
‘H’ =JEIDA , ‘L’ or NC = VES A
No Connection (Note 4)
No Connection (Note 4)
‘H’ = Enable , ‘L’ or NC = Dis ableL-DIM Enable
Ground
FIRST LVDS Receiver Signal (A-)R1AN
FIRST LVDS Receiver Signal (A+)R1AP
FIRST LVDS Receiver Signal (B-)R1BN
FIRST LVDS Receiver Signal (B+)
FIRST LVDS Receiver Signal (C-)
FIRST LVDS Receiver Signal (C+)
Ground
FIRST LVDS Receiver Clock Signal(-)
FIRST LVDS Receiver Clock Signal(+)
Ground
FIRST LVDS Receiver Signal (D-)R1DN
FIRST LVDS Receiver Signal (D+)
FIRST LVDS Receiver Signal (E-)
FIRST LVDS Receiver Signal (E+)
No Connection
LCD (power input) pins should be connected together.
3. All Input levels of LVDS signals are based on the EIA 644 Standard.
4. #1~#6 & #8~#9 NC (No Connection): These pins are used only for LGD (Do not connect)
5. Specific pins(pin No. #10) are used for Local Dimming function of the LCD module.
If not used, these pins are no connection. (Please see the Appendix V for more information.)
6. LVDS pin (pin No. #24,25,40,41) are used for 10Bit(D) of the LCD module.
If used for 8Bit(R), these pins are no connection.
7. Specific pin No. #44 is used for “No signal detection” of system signal interface.
It should be GND for NSB(No Signal Black) during the system interface signal is not.
If this pin is “H”, LCD Module displays AGP(Auto Generation Pattern).
No
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
-
Symbol
Bit Select
R2AN
R2AP
R2BN
R2BP
R2CN
R2CP
GND
R2CLKN
R2CLKP
GND
R2DN
R2DP
R2EN
R2EP
NC
NC
GND
GND
GND
NC
VLCD
VLCD
VLCD
VLCD
-
LC470EUD
Description
‘H’ or NC= 10bit(D) , ‘L’ =8bit
SECOND LVDS Receiver Signal (A-)
SECOND LVDS Receiver Signal (A+)
SECOND LVDS Receiver Signal (B-)
SECOND LVDS Receiver Signal (B+)
SECOND LVDS Receiver Signal (C-)
SECOND LVDS Receiver Signal (C+)
Ground
SECOND LVDS Receiver Clock Signal(-)
SECOND LVDS Receiver Clock Signal(+)
Ground
SECOND LVDS Receiver Signal (D-)
SECOND LVDS Receiver Signal (D+)
SECOND LVDS Receiver Signal (E-)
SECOND LVDS Receiver Signal (E+)
No Connection
No Connection
Ground
Ground
Ground
No connection
Power Supply +12.0V
Power Supply +12.0V
Power Supply +12.0V
Power Supply +12.0V
-
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-LCD Connector (CN2) : FI-RE41S-HF (manufactured by JAE) or compatible
Note :1. All GND(ground) pins should be connected together to the LCD module’s metal frame.
2. LVDS pin (pin No. #22,23,38,39) are used for 10Bit(D) of the LCD module.
If used for 8Bit(R), these pins are no connection.
CN3
#1
#8
CN3
#1#8
CN1 CN2
#1#51#1#41
CN1CN2
#1#51
#1#41
Rear view of LCM
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3-2-2. Backlight Module
Master
-LED Driver Connector
: 20022WR - H14B1(Yeonho) or Equivalent
- Mating Connector
: 20022HS - 14B2 or Equivalent
Table 5. LED DRIVER CONNECTOR PIN CONFIGURATION
Pin NoSymbolDescriptionNote
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LC470EUD
Product Specification
1
2
3
4
5
6
7
8
9
10
11
12
13
14
VBLPower Supply +24.0V
VBLPower Supply +24.0V
VBLPower Supply +24.0V
VBLPower Supply +24.0V
VBLPower Supply +24.0V
GNDBacklight Ground
GNDBacklight Ground
GNDBacklight Ground
GNDBacklight Ground
GNDBacklight Ground
Status
ON/OFF
V
NC
EXTVBR-B
Back Light Status
Backlight ON/OFF control
Don’tcare
External PWM
Notes : 1. GND should be connected to the LCD module’s metal fram e.
2. Normal : Low (under 0.7V) / Abnormal : High (upper 3.0V)
3. High : on duty / Low : off duty, Pin#14 can be opened. ( if Pin #14 is open , EXTVBR-B is 100% )
4. Each impedance of pin #12 and 14 is over 50[K]
1
2
3
Rear view of LCM
PCB
1
14
…
1
14
…
<Master>
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3-3. Signal Timing Specifications
Table 6 shows the signal timing required at the input of the LVDS transmitter. All of the interface signal
timings should be satisfied with the following specification for normal operation.
Table 6. TIMING TABLE (DE Only Mode)
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LC470EUD
Product Specification
Symbol
Display
Period
Horizontal
Vertical1Lines
Frequency
Blank
Total
Display
Period
DCLK
Horizontal
Vertical
tHV
tHB
HP
t
VV
VBBlank
t
VPTotal
t
fCLK
fH
V
f
20
(228)
1100
(1308)
108
(95)
45
(270)
1125
(1350)
120
(100)
86
(300)
1166
(1380)
122
(104)
tCLK680550520
Lines108010801080t
Lines
NoteUnitMaxTypMinITEM
1920 / 4tCLK480480480
1tCLK2007040
NoteUnitMaxTypMinSymbolITEM
MHz78.0074.2566.97
2KHz140135121.8
2
NTSC :
Hz
108~122Hz
(PAL : 95~104Hz)
Note 1. The Input of HSYNC & VSYNC signal does not have an effect on normal operation(DE Only Mode).
If you use spread spectrum for EMI, add some additional clock to minimum value for clock margin.
2. The performance of the electro-optical characteristics may be influenced by variance of the vertical
refresh rate and the horizontal frequency.
3. Timing should be set based on clock frequency.
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3-4. LVDS Signal Specification
3-4-1. LVDS Input Signal Timing Diagram
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LC470EUD
Product Specification
DCLK
First data
Second data
Third data
Forth data
DE(Data Enable)
tCLK
0.5 VDD
Invalid data
Invalid data
Invalid data
Invalid data
DE, Data
Valid data
Pixel 0
Pixel 1
Pixel 2Pixel 6
Pixel 3Pixel 7
Pixel 4
Valid data
Pixel 5
Valid data
Valid data
0.7VDD
0.3VDD
Invalid data
Invalid data
Invalid data
Invalid data
* tHB = tHFP + tWH +tHBP
* tVB = tVFP + tWV +tVBP
11080
DE(Data Enable)
tVV
tVP
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NoteUnitMaxMinSymbolDescription
t
RF
t
eff
t
eff
NoteUnitMaxMinSymbolDescription
3-4-2. LVDS Input Signal Characteristics
1) DC Specification
LVDS -
LVDS +
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LC470EUD
Product Specification
0V
LVDS Common mode Voltage
LVDS Input Voltage Range
2) AC Specification
LVDS Clock
LVDS Data
LVDS 1’st Clock
LVDS 2nd/ 3rd/ 4thClock
t
SKEW _mintSKEW _max
# VCM= {( LVDS +) + ( LVDS - )} /2
CM
A
tSKEW
tSKEW
(Fclk =1/Tclk )
T
clk
V
CM
V
IN _MAXVIN _MIN
N
-V1.51.0V
IN
-V1.80.7V
-mV250VCMChange in common mode Voltage
T
clk
A
80%
20%
t
RF
LVDS Differential Voltage
High Threshold
Low Threshold
LVDS Clock to Data Skew Margin
LVDS Clock/DATA Rising/Falling time
Effective time of LVDS
LVDS Clock to Clock Skew Margin (Even to Odd)
1. All Input levels of LVDS signals are based on the EIA 644 Standard.
Note
2. If t
isn’t enough,
should be meet the range.
3. LVDS Differential Voltage is defined within
TH
TL
SKEW
RF
eff
t
SKEW_EO
260ps(0.3*T
0.25*T
1/7* T
clk
clk
clk
mV300100V
mV-100-300V
)/7|t
)/7t
T
clk
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-ps|(
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-ps360t
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LC470EUD
Product Specification
360ps
V+
data
Vcm
Vdata
V+
clk
Vcm
tui0.5tui
VTH
VTL
360ps
teff
tui : Unit Interval
Vclk
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