19Update Color shift Typ & Color Gamut(CIE1931) & GTG
29Update Safety Standards
1.0Sep. 13. 201019,21Add G to G BW(σ) spec(19page) & Note 11, 12(21page)
Final Specification
Ver. 1.0Sep. 13. 2010
BW
3 / 32
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
www.panelook.com
Global LCD Panel Exchange Center
1. General Description
LM215WF3 is a Color Active Matrix Liquid Crystal Display with a Light Emitting Diode ( White LED) backlight
system without LED driver. The matrix employs a-Si Thin Film Transistor as the active element.
It is a transmissive type display operating in the normally black mode. It has a 21.5 inchdiagonally
measured active display area with FHD resolution (1080 vertical by 1920horizontal pixel array)
Each pixel is divided into Red, Green and Blue sub-pixels or dots which are arranged in vertical stripes.
Gray scale or the brightness of the sub-pixel color is determined with a 8-bit gray scale signal for each dot,
thus, presenting a palette of more than 16,7M colors with A-FRC (Advanced Frame Rate Control).
It has been designed to apply the 8Bit 2 port LVDS interface.
It is intended to support displays where high brightness, super wide viewing angle,
high color saturation, and high color are important.
www.panelook.com
Product Specification
Mini-LVDS (RGB)
RGB
LM215WF3
Liquid Crystal Display
Source Driver Circuit
LVDS
2port
+5.0V
CN1
(30pin)
Timing
Controller
S1S1920
G1
TFT - LCD Panel
(1920 Ý RGB Ý 1080 pixels)
G900
+5.0V
Power Circuit
Block
V
LED
General Features
CN2 (6PIN)
[ Figure 1 ] Block diagram
Back light Assembly
(LED)
Active Screen Size21.46 inches(545.22mm) diagonal
Outline Dimension495.6(H) x 292.2(V) x 10.2(D) mm (Typ.)
Pixel Pitch0.2475 mm x 0.2475mm
Pixel Format1920 horiz. By 1080 vert. Pixels RGB stripes arrangement
Power ConsumptionTotal 22.29 Watt (Typ.) (3.99 Watt
@VLCD, 18.3 Watt @W/O Driver)
Weight1300 g (typ.)
Display Operating ModeTransmissive mode, normally black
Surface TreatmentHard coating(3H), Anti-Glare treatment of the front polarizer
Ver. 1.0Sep. 13. 2010
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
4 / 32
www.panelook.com
Global LCD Panel Exchange Center
2. Absolute Maximum Ratings
The following are maximum values which, if exceeded, may cause faulty operation or damage to the unit.
Table 1. ABSOLUTE MAXIMUM RATINGS
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
ParameterSymbol
Power Input Voltage
Operating Temperature
Storage Temperature
Operating Ambient Humidity
Storage Humidity
VLCD-0.36.0Vdc
TOP050
TST-2060
HOP1090%RH
HST1090%RH
Values
UnitsNotes
MinMax
¶C
¶C
Note : 1. Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39 ¶C Max, and no condensation of water.
2. Maximum Storage Humidity is up to 40, 70% RH only for 4 corner light leakage Mura.
3. Storage condition is guaranteed under packing condition
FIG.2 Temperature and relative humidity
90%
60
60%
at 25 2¶C
1, 2, 3
Wet Bulb
50
Temperature [C]
40
30
20
10
0
10203040506070800-20
Dry Bulb Temperature [C]
Ver. 1.0Sep. 13. 2010
40%
10%
Storage
Operation
Humidity [(%)RH]
5 / 32
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
www.panelook.com
Global LCD Panel Exchange Center
3. Electrical Specifications
3-1. Electrical Characteristics
It requires two power inputs. One is employed to power the LCD electronics and to drive the TFT array and
liquid crystal. The second input power for the LED/Backlight, is typically generated by a LED Driver.
The LED Driver is an external unit to the LCDs.
Table 2-1. ELECTRICAL CHARACTERISTICS
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
ParameterSymbol
MODULE :
Power Supply Input VoltageV
Permissive Power Input RippleV
Differential ImpedanceZm90100110Ohm
Power Supply Input CurrentI
Power Consumption
Rush currentI
LCD
dRF100mVp-p1
LCD
P
c TYP-
c MAX-
P
RUSH--3.0A4
MinTypMax
4.55.05.5
-
-
Values
797917
10631223
3.994.59
5.326.12
UnitNotes
Vdc
mA2
mA3
Watt2
Watt3
Note :
1. Permissive power ripple should be measured under V
=5.0V, 25¶C, fV(frame frequency)=MAX
LCD
condition and At that time, we recommend the bandwidth configuration of oscilloscope is to be under
20Mhz. See the next page.
2. The specified current and power consumption are under the V
=5.0V, 25 2¶C,fV=60Hz condition
LCD
whereas Typical Power Pattern[Mosaic] shown in the [ Figure 3 ] is displayed.
3. The current is specified at the maximum current pattern.
4. Maximum Condition of Inrush current :
The duration of rush current is about 5ms and rising time of power Input is 500us 20%.(min.).
Ver. 1.0Sep. 13. 2010
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
6 / 32
www.panelook.com
Global LCD Panel Exchange Center
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
• Permissive Power input ripple (V
White pattern
• Power consumption (V
=5.0V, 25¶C, fV (frame frequency=60Hz condition)
LCD
=5.0V, 25¶C, fV(frame frequency)=MAX condition)
LCD
Black pattern
Typical power Pattern
FIG.3 Mosaic pattern & White Pattern for power consumption measurement
Ver. 1.0Sep. 13. 2010
Maximum power Pattern
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
7 / 32
www.panelook.com
Global LCD Panel Exchange Center
Table 2-2. LED Bar ELECTRICAL CHARACTERISTICS
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
ParameterSymbolCondition
LED :1,7
LED String CurrentIs-110120mA2,7
LED String VoltageVs39.041.644.2V3,7
Power Consumption
LED Life TimeLED_LT30,000--Hrs5,7
PBar17.218.319.5Watt4,6,7
Min.Typ.Max.
Values
UnitNotes
LED driver design guide
: The design of the LED driver must have specifications for the LED in LCD Assembly.
The performance of the LED in LCM, for example life time or brightness, is extremely influenced by
the characteristics of the LED driver.
So all the parameters of an LED driver should be carefully designed and output current should be
Constant current control.
Please control feedback current of each string individually to compensate the current variation
among the strings of LEDs.
When you design or order the LED driver, please make sure unwanted lighting caused by
the mismatch of the LED and the LED driver (no lighting, flicker, etc) never occurs.
When you confirm it, the LCD module should be operated in the same condition as installed in
your instrument.
1. Specified values are for a single LED bar.
2. The specified current is input LED chip 100% duty current.
3. The specified voltage is input LED string and Bar voltage at typical 110 mA 100% duty current.
4. The specified power consumption is input LED bar power consumption at typical 110 mA 100% duty current.
5. The life is determined as the time at which luminance of the LED is 50% compared to that of initial
value at the typical LED current on condition of continuous operating at 25 2¶C.
6. The LED bar power consumption shown above does not include loss of external driver.
The used LED bar current is the LED typical current.
Min Power Consumption is calculated with PBar = Vs(Min.) x Is(Typ.) x Nstring
Max Power Consumption is calculated with PBar = Vbar(Max.) x Is(Typ) x Nstring
7. LED operating DC Forward Current must not exceed LED Max Ratings at 25 2¶C
Ver. 1.0Sep. 13. 2010
8 / 32
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
- Mating Connector : FI-X30C2L (Manufactured by JAE) or Equivalent
Table 3. MODULE CONNECTOR(CN1) PIN CONFIGURATION
NoSymbolDescriptionNoSymbolSymbol
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
FR0M
FR0P
FR1M
FR1P
FR2M
FR2P
GND
FCLKINM
FCLKINP
FR3M
FR3P
SR0M
SR0P
GND
SR1M
Minus signal of odd channel 0 (LVDS)
Plus signal of odd channel 0 (LVDS)
Minus signal of odd channel 1 (LVDS)
Plus signal of odd channel 1 (LVDS)
Minus signal of odd channel 2 (LVDS)
Plus signal of odd channel 2 (LVDS)
Ground
Minus signal of odd clock channel (LVDS)
Plus signal of odd clock channel (LVDS)
Minus signal of odd channel 3 (LVDS)
Plus signal of odd channel 3 (LVDS)
Minus signal of even channel 0 (LVDS)
Plus signal of even channel 0 (LVDS)
Ground
Minus signal of even channel 1 (LVDS)
16
SR1P
17
GND
18
SR2M
19
SR2P
20
SCLKINM
21
SCLKINP
22
SR3M
23
SR3P
24
GND
25
NC
26
NC
PWM_OUTFor Control Burst frequency of Inverter
27
28
VLCD
29
VLCD
30
VLCD
Plus signal of even channel 1 (LVDS)
Ground
Minus signal of even channel 2 (LVDS)
Plus signal of even channel 2 (LVDS)
Minus signal of even clock channel (LVDS)
Plus signal of even clock channel (LVDS)
Minus signal of even channel 3 (LVDS)
Plus signal of even channel 3 (LVDS)
Ground
No Connection (I2C Serial interface for LCM)
No Connection.(I2C Serial interface for LCM)
Power Supply +5.0V
Power Supply +5.0V
Power Supply +5.0V
Note: 1. All GND(ground) pins should be connected together and to Vss which should also be connected to
the LCD’s metal frame.
2. All V
LCD (power input) pins should be connected together.
3. Input Level of LVDS signal is based on the IEA 664 Standard.
4. PWM_OUT signal controls the burst frequency of a inverter.
This signal is synchronized with vertical frequency.
It’s frequency is 3 times of vertical frequency, and it’s duty ratio is 50%.
If you don’t use this pin, it is no connection.
GT103-30S-HF15
#1#30
#1
Rear view of LCM
FIG.3 Connector diagram
Ver. 1.0Sep. 13. 2010
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
#30
9 / 32
www.panelook.com
Global LCD Panel Exchange Center
Table 4. REQUIRED SIGNAL ASSIGNMENT FOR Flat Link (TI:SN75LVDS83) Transmitter
Pin #Require SignalPin NamePin #Require SignalPin Name
1Power Supply for TTL InputVCC29Ground pin for TTLGND
2TTL Input (R7)D530TTL Input (DE)D26
3TTL Input (R5)D631TTL Level clock InputTXCLKIN
4TTL Input (G0)D732Power Down InputPWR DWN
5Ground pin for TTLGND33Ground pin for PLLPLL GND
6TTL Input (G1)D834Power Supply for PLLPLL VCC
www.panelook.com
LM215WF3
Liquid Crystal Display
Product Specification
7TTL Input (G2)D935Ground pin for PLLPLL GND
8TTL Input (G6)D1036Ground pin for LVDSLVDS GND
9Power Supply for TTL InputVCC37Positive LVDS differential data output 3TxOUT3ు
10TTL Input (G7)D1138Negative LVDS differential data output 3TxOUT3ృ