LMT101DNLFDW-NND [TOPWAY]
LCD Module User Manual;型号: | LMT101DNLFDW-NND |
厂家: | TOPWAY |
描述: | LCD Module User Manual CD |
文件: | 总18页 (文件大小:1159K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
LMT101DNLFDW-NND
LCD Module User Manual
Prepared by:
Checked by:
Approved by:
Yu
Date: 2019-01-07
Date:
Date:
Rev. Descriptions
Release Date
2018-06-08
0.1
Preliminary
0.2
Update section 5.4
2019-01-07
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Table of Content
Table of Contents ............................................................................................................................ 2
1
General Specifications.............................................................................................................. 3
2
Input/Output Terminals ............................................................................................................. 4
3 Absolute Maximum Ratings...................................................................................................... 6
4 Electrical Characteristics .......................................................................................................... 7
5 Power ON/OFF sequence ...................................................................................................... 10
6 Optical Characteristics ........................................................................................................... 13
7 Environmental / Reliability Test............................................................................................... 16
8 Precautions for Use of LCD Modules...................................................................................... 18
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1
General Specifications
Feature
Spec
Size
10.1 inch
1280(RGB)Ø800
a-Si TFT
Resolution
Technology Type
Pixel Configuration
Pixel pitch(mm)
Display Spec.
R.G.B. Vertical Stripe
0.1695x0.1695
Display Mode
Transmissive, Normally Black
244.5x168.1x4.9
216.96 x 135.60
Projective Capacitive Touch
5 points
LCM (W x H x D) (mm)
Active Area(mm)
Touch method
Number of simultaneous touches
Minimum Touch Area(mm)
CTP Structure
φ
6
G+G
Mechanical
Characteristics
Lamination method
Surface hardness
Optical bonding
6H
LCD: F62240-H1210A
CTP: FH34SRJ-6S-0.5SH
33 LED
Matching Connection Type
LED Numbers
Weight (g)
355
Interface
Color Depth
Capacitive TP interface
Capacitive TP IIC address
LVDS 8bit
16.7M
IIC
Electrical
Characteristics
LCD:ST5821CA*3 + ST5084CA*1
Driver IC
Note1: Requirements on Environmental Protection: Q/S0002
Note2: LCM weight tolerance: ± 5%
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2
Input/Output Terminals
2.1 LCD pin definition
Recommended connector: F62240-H1210A
Pin
Symbol
I/O
Description
Remark
1
Vcom
P
P
P
Common Voltage
Power Supply
Power Supply
No Connect
No Connect
No Connect
Ground
2
3
4
5
6
7
VDD
VDD
NC
NC
NC
GND
P
8
9
Rxin0-
Rxin0+
GND
I
I
-LVDS differential data input
+LVDS differential data input
Ground
R0~R5,G0
G1~G5,B0,B1
10
P
11
12
13
Rxin1-
Rxin1+
GND
I
I
-LVDS differential data input
+LVDS differential data input
Ground
P
14
15
16
Rxin2-
Rxin2+
GND
I
I
-LVDS differential data input
+LVDS differential data input
Ground
B2~B5,HS,VS,DE
LVDS clock
P
17
18
19
RxCLK-
RxCLK+
GND
I
I
-LVDS differential clock input
+LVDS differential clock input
Ground
P
20
21
22
Rxin3-
Rxin3+
GND
I
I
-LVDS differential data input
+LVDS differential data input
Ground
R6,R7,G6,G7,B6,B7
P
23
24
25
26
27
28
29
30
31
32
33
NC
NC
No Connect
No Connect
Ground
GND
NC
P
No Connect
No Connect
No Connect
Power for Analog Circuit
Ground
NC
Or LED_PWM
NC
AVDD
GND
LED-
LED-
NC
P
P
LED Cathode
LED Cathode
No Connect
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34
35
36
37
38
39
40
NC
VGL
NC
No Connect
Gate OFF Voltage
No Connect
P
NC
No Connect
Or CABC_EN
VGH
LED+
LED+
Gate ON Voltage
LED Anode
LED Anode
Note1: P: Power/GND
I:input pin;
O:output
Note2: CABC_EN should be set as follow
Pin
Enable
Disable
CABC_EN
High voltage
Low voltage or open
2.2 Capacitive TP pin definition
Recommended connector: FH34SRJ-6S-0.5SH
No
Symbol
I/O
Description
Remark
1
SCL
I
IIC clock
2
3
4
5
SDA
INT
I
IIC data
I
Interrupt pin
Ground
GND
Vcc
P
P
Power Supply +3.3V
Reset pin
6
RESET
I
Note1: P: Power/GND;
I:input pin; O: output
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3
Absolute Maximum Ratings
GND=0V
Remark
Item
Symbol
VCC
MIN
-0.3
MAX
3.9
Unit
V
Power Voltage
Power For Analog
Circuit
AVDD
-0.3
14
V
V
Note1
Gate On Voltage
VGH
VGL
Top
-0.3
-19
-10
42
0.3
50
Gate Off Voltage
V
℃
Operating Temperature
℃
Storage Temperature
Tst
-20
60
--
--
--
≤
≤
≤
95
85
55
%
%
%
≤ ℃
Ta 40
40℃<Ta
50℃<Ta
Relative Humidity
Note2
RH
≤
≤
50
60
℃
℃
Table 3 Absolute Maximum Ratings
Note1: Input voltage include Rxin0-/ Rxin0+ Rxin1-/ Rxin1+ Rxin2-/ Rxin2+
RxCLK-/ RxCLK+ INT SDA SCL RESET
、
、
、
、 、
Rxin3-/ Rxin3+
、
、
、
Note2: Ta means the ambient temperature.
It is necessary to limit the relative humidity to the specified temperature range.
Condensation on the module is not allowed.
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4
Electrical Characteristics
4.1 Driving TFT LCD Panel
GND=0V,Ta=25
℃
Item
Symbol
Min
Typ
Max
Unit
Remark
POWER Supply Voltage
VDD
2.80
3.30
3.60
V
Power For Analog Circuit
Gate On Voltage
AVDD
VGH
VGL
10.8
21
11
23
11.2
25
V
V
V
Gate Off Voltage
-6.5
4.25
-7.0
4.3
-7.5
4.35
Common Voltage
Vcom
Differential input voltage
|Vid|
VTL
200
-
-
600
-
mV
mV
Low level
High level
Differential
input
Threshold
Voltage
-100
VTL
VTH
VTH
-
-
-
100
-
mV
V
Differential input common
voltage
V
CM
1.2
Table 4.1 LCD module electrical characteristics
Figure4.1 LVDS DC characteristic
Note1: Very important voltage, exceed the scope may cause abnormal display.
4.2 Capacitive TP DC characteristics
Item
Symbol
MIN
TYP
MAX
Unit
Remark
Power supply Voltage
IO voltage
VDD
2.5
1.65
-
-
3.3
3.3
V
VIO
Power supply current
Operating
mode
I
TP
-
13
-
mA
Table 4.2 Capacitive TP electrical characteristics
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4.3 Driving Backligh
Ta=25
℃
Item
Symbol
Min
--
Typ
220
Max
330
10.8
--
Unit
mA
V
Remark
Forward Current
Forward Current Voltage
LED lifetime
I
F
9.0
9.6
V
F
--
20000
30000
Hr
Table 4.3 Backlight electrical characteristics
Note1: The LED driving condition is defined for each LED module.
Note2: Under LCM operating, the stable forward current should be input. And forward voltage is
for reference only.
Note3: Optical performance should be evaluated at Ta=25
℃ only If LED is driven by high
current, high ambient temperature & humidity condition. The life time of LED will be reduced.
Operating life means brightness goes down to 50% initial brightness. Typical operating life time
is estimated data.
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4.4 Power Supply Current
AGND=GND=0V, Ta = 25
℃
Item
Symbol Condition
Min
Typ
Max
Unit
Remark
VCC=3.3V
AVDD=11V
VGH=23V
VGL= -7V
VCOM=4.3V
-
-
54.1
65
mA
I
I
I
I
I
DVDD
-
-
-
-
-
47.6
663
663
2
55
700
700
3
mA
uA
AVDD
VGH
VGL
Power Supply Curren
uA
uA
VCOM
P
722
mW
841
Power consumption
NOTES: White picture, frame rate 60Hz.
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5
Power ON/OFF sequence
5.1 Power sequence
Figure5.1.1 Power on sequence
Figure5.1.2 Power off sequence
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5.3 Timing table
Parameter
Value
typ
68.2
69
Symbol
Unit
Note
min
62.6
20
max
78.1
164
164- tHFP
1280
159
1444
256
101
CLK frequency
Horizontal blanking time
Horizontal black porch
Horizontal display area
Horizontal front porch
Horizontal period
Horizontal pulse width
Vertical blanking time
Vertical black porch
Vertical display area
Vertical front porch
Vertical period
t
clk
HBT
HBP
Mhz
t
t
t
t
t
t
t
t
t
t
t
t
t
t
clk
clk
clk
clk
clk
clk
H
t
hbp + HFP
t
5
5
tHD
1280
15
1300
1
5
2
800
3
803
1
1280
64
1349
1
42
2
800
40
842
1
tHFP
tH
tHPW
tVBT
t
VBP + VFP
t
tVBP
101- tVFP
800
H
tVD
H
tVFP
99
901
128
H
tV
H
Vertical pulse width
tVPW
H
Horizontal input timing
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5.4 LVDS data input format
8-bit mode data input
Note1: SW:Setup and hold time
Note2: tLVSKM=400ps at least
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6
Optical Characteristics
Item
Symbol Condition
Min
75
Typ
85
Max
Unit
Remark
θT
θB
θL
-
-
-
-
View Angles
75
85
CR
≧
10
Degree Note2,3
75
85
θR
CR
75
85
θ=0o
25
Contrast Ratio
Response Time
600
800
Note 3
T
ON
-
25
50
ms
Note 4
℃
T
OFF
x
0.250 0.300 0.350
0.274 0.324 0.374
0.530 0.580 0.630-
White
Note 1,5
Note 1,5
Note 1,5
Note 1,5
y
x
Red
Chromaticity
0.274
0.299
0.374
0.399
y
0.324
0.349
Backlight is
on
x
Green
Blue
y
0.538 0.588 0.638
0.104 0.154 0.204
0.045 0.095 0.145
x
y
Uniformity
NTSC
U
L
75
-
80
50
-
-
-
%
%
cd/m2
Note 6
Note 5
Note 7
Luminance
300
350
Test Conditions:
℃
1. = 220 mA, and the ambient temperature is 25 .
I
F
2. The test systems refer to Note 1 and Note 2.
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Note 1: Definition of optical measurement system.
The optical characteristics should be measured in dark room. After 5 Minutes operation, the optical
properties are measured at the center point of the LCD screen. All input terminals LCD panel must
be ground when measuring the center area of the panel.
Note 2: Definition of viewing angle range and measurement system.
viewing angle is measured at the center point of the LCD by CONOSCOPE(ergo-80)
。
Note 3: Definition of contrast ratio
“White state “: The state is that the LCD should drive by Vwhite.
“Black state”: The state is that the LCD should drive by Vblack.
Vwhite: To be determined Vblack: To be determined.
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Note 4: Definition of Response time
The response time is defined as the LCD optical switching time interval between “White” state and
“Black” state. Rise time (TON) is the time between photo detector output intensity changed from 90%
to 10%. And fall time (TOFF) is the time between photo detector output intensity changed from 10%
to 90%.
Note 5: Definition of color chromaticity (CIE1931)
Color coordinates measured at center point of LCD.
Note 6: Definition of Luminance Uniformity
Active area is divided into 9 measuring areas (Refer Fig. 2). Every measuring point is placed at the
center of each measuring area.
Luminance Uniformity (U) = Lmin/ Lmax
L-------Active area length W----- Active area width
Lmax: The measured Maximum luminance of all measurement position.
Lmin: The measured Minimum luminance of all measurement position.
Note 7: Definition of Luminance:
Measure the luminance of white state at center point.
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7
Environmental / Reliability Test
No
Test Item
High Temperature
Operation
Low Temperature
Operation
High Temperature
Storage
Low Temperature
Storage
Condition
Remarks
IEC60068-2-1:2007
GB2423.2-2008
IEC60068-2-1:2007
GB2423.1-2008
IEC60068-2-1:2007
GB2423.2-2008
IEC60068-2-1:2007
GB2423.1-2008
Ts= +50
Ta= -10
Ta = +60
Ta = -20
Ta=+40
℃
,120hrs
1
2
3
4
℃
,120hrs
℃
,120hrs
℃
,120 hrs
Storage at High
Temperature and
Humidity
IEC60068-2-78 :2001
GB/T2423.3—2006
5
℃
, 90% RH 120 hours
Start with cold
temperature,
End with high
Thermal Shock
(non-operation)
℃ ℃
-10 30 min~+50 30 min,
6
Change time:5min, 20 Cycles
temperature,
IEC60068-2-14:1984,G
B2423.22-2002
C=100pF, R=1500Ω,5points/panel
Air:± 4KV, 5times,
Contact:± 2KV, 5 times,
IEC61000-4-2:2001
GB/T17626.2-2006
7
ESD
(
Environment: 15℃~35
30% 60%, 86Kpa 106Kpa
Frequency 2~12~100~300Hz,
℃
,
~
~
)
:
IEC60068-2-6:1982
GB/T2423.10—1995
8
9
Package Vibration
PSD:0.0002~0.01~0.01~0.00001g
2/Hz,
Time
Mechanical Shock 60G 6ms, ± X,± Y,± Z 3times,
(Non OP) for each direction
:
30min/axis of X, Y, Z
IEC60068-2-27:1987
GB/T2423.5—1995
Note1: Ts is the temperature of panel’s surface.
Note2: Ta is the ambient temperature of sample.
Note3: Before cosmetic and function test, the product must have enough recovery time, at least 2
hours at room temperature.
Note 4: In the standard condition, there shall be no practical problem that may affect the display
function. After the reliability test, the product only guarantees operation, but don’t guarantee all of the
cosmetic specification.
Note 5: Capacitive TP mechanical test
No.
Item
Requirement
Remark
65g steel ball,30cm high dropped on
glass surface(1 time)
1
Impact test
No crack after test
2
Surface hardness test
6H
JIS-K5600
Note 6: Capacitive TP optical test
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NO.
Item
Min.
Typ.
Max.
Unit
Remark
1
Transmission
86
88
90
%
Note1,2
1: Measuring equipment: DMS-501, PR-705. @550nm
Measuring condition:
--After stabilizing and leaving the panel alone at a given temperature for 30 min, the
measurement should be executed,
--Measuring surroundings: a stable, windless and dark room,
--Measuring temperature: Ta=25
--30min after lighting the back-light.
C,
2: conform to National standard GB2410
Note 7: Capacitive TP electrical test
—80 /ASTM D1003—61(1997)
No.
Item
Specification
Remark
No open and no short for all X/Y
sensors
1
Function test
Ta=25℃
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8
Precautions for Use of LCD Modules
8.1
Handling Precautions
8.1.1 The display panel is made of glass. Do not subject it to a mechanical shock by dropping
it from a high place, etc.
8.1.2 If the display panel is damaged and the liquid crystal substance inside it leaks out, be
sure not to get any in your mouth, if the substance comes into contact with your skin or clothes,
promptly wash it off using soap and water.
8.1.3 Do not apply excessive force to the display surface or the adjoining areas since this
may cause the color tone to vary.
8.1.4 The polarizer covering the display surface of the LCD module is soft and easily
scratched. Handle this polarizer carefully.
8.1.5 If the display surface is contaMinated, breathe on the surface and gently wipe it with a
soft dry cloth. If still not completely clear, moisten cloth with one of the following solvents:
-
-
Isopropyl alcohol
Ethyl alcohol
Solvents other than those mentioned above may damage the polarizer. Especially, do not use the
following:
-
-
-
Water
Ketone
Aromatic solvents
8.1.6 Do not attempt to disassemble the LCD Module.
8.1.7 If the logic circuit power is off, do not apply the input signals.
8.1.8 To prevent destruction of the elements by static electricity, be careful to maintain an
optimum work environment.
8.1.8.1 Be sure to ground the body when handling the LCD Modules.
8.1.8.2 Tools required for assembly, such as soldering irons, must be properly ground.
8.1.8.3 To reduce the amount of static electricity generated, do not conduct assembly and
other work under dry conditions.
8.1.8.4 The LCD Module is coated with a film to protect the display surface. Be care when
peeling off this protective film since static electricity may be generated.
8.2
Storage precautions
8.2.1 When storing the LCD modules, avoid exposure to direct sunlight or to the light of
fluorescent lamps.
8.2.2 The LCD modules should be stored under the storage temperature range. If the LCD
modules will be stored for a long time, the recommend condition is:
℃ ≤
Temperature : 0℃ ~ 40 Relatively humidity: 80%
8.2.3 The LCD modules should be stored in the room without acid, alkali and harmful gas.
8.3
Transportation Precautions
8.3.1 The LCD modules should be no falling and violent shocking during transportation, and
also should avoid excessive press, water, damp and sunshine.
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