LMT101DNLFDW-NAC-1
LCD Module User Manual
Prepared by:
Checked by:
Approved by:
Song Mao
Date: 2020-09-29
Date:
Date:
Rev. Descriptions
Edit
Release Date
0.1
Preliminary release
Yrj
2020-07-25
0.2
Revise Outline
Song Mao
2020-09-29
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LMT101DNLFDW-NAC-1
Table of Content
1. General Specification ........................................................................................................................... 3
2. Block Diagram ........................................................................................................................................ 3
3. Terminal Function .................................................................................................................................. 4
3.1
K1 LVDS Terminal ....................................................................................................................................................................... 4
3.2
K2 BackLight Connector ............................................................................................................................................................ 4
3.3
K3(J1) Touch Panel ..................................................................................................................................................................... 4
3.4
K4(J2) Touch Panel ..................................................................................................................................................................... 5
4. Absolute Maximum Ratings ................................................................................................................ 5
5. Electrical Characteristics ..................................................................................................................... 5
5.1
Driving TFT LCD Panel ............................................................................................................................................................... 5
5.2
LED Backlight Circuit Characteristics ...................................................................................................................................... 6
5.3
Power On/Off Sequence ............................................................................................................................................................. 6
6. LVDS Signal timing characteristic .................................................................................................... 7
6.1
Electrical characteristics ............................................................................................................................................................. 7
6.2
LVDS input timing ........................................................................................................................................................................ 7
6.2.1
LVDS signal timing characteristics ........................................................................................ 7
6.2.2
Input Clock and Data timing Diagram: .................................................................................. 8
6.2.3
LVDS data input format ........................................................................................................... 8
7. Optical Characteristics ......................................................................................................................... 9
8. LCD Module Design and Handling Precautions .......................................................................... 12
9. CTP Mounting Instructions ............................................................................................................... 13
10. RTP Mounting Instructions ............................................................................................................... 14
11. Warranty ................................................................................................................................................. 16
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1. General Specification
Signal Interface :
LVDS 24bit(VESA)
Color Depth :
16.7M color
Display Mode :
Transmissive / Normal Black
Screen Size(Diagonal) :
10.1”
Outline Dimension :
260.0 x 170.6x 13.0 (mm)
(see attached drawing for details)
Active Area :
216.96x 135.60 (mm)
Number of dots :
1280 x 800
Pixel Pitch :
0.1695 x 0.1695 (mm)
Pixel Configuration :
R.G.B. Vertical Stripe
Backlight :
White LED
Surface Treatment :
HC
Viewing Direction :
Full
Operating Temperature :
-10 ~ +50°C
Storage Temperature :
-20 ~ +60°C
Note:
*1. For saturated color display content (eg. pure-red, pure-green, pure-blue, or pure-colors-combinations).
.
2. Block Diagram
GND_E,VDD(5.0V),GND
D+,D-
Touch Panel
BL_VI, BL_GND
Backlight
BL_EN, BL_ADJ
1280 x 800 pixels
Source Driver
RX0+,RX0-,RX1+,RX1-
RX2+, RX2-, RXC+, RXC-
LVDS interface
Power Circuit
RX3+,RX3-
VCC_IN, GND
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3. Terminal Function
3.1 K1 LVDS Terminal
Pin No. Pin Name
IO
Descriptions
1
RX3+
-
LVDS receiver negative signal channel 3
2
RX3-
-
LVDS receiver positive signal channel 3
3
NC
-
No connection
4
NC
-
No connection
5
GND
Power
Ground
6
RXC+
Input
LVDS receiver negative signal clock
7
RXC-
Input
LVDS receiver positive signal clock
8
GND
Power
Ground
9
RX2+
Input
LVDS receiver negative signal channel 2
10
RX2-
Input
LVDS receiver positive signal channel 2
11
GND
Power
Ground
12
RX1+
Input
LVDS receiver negative signal channel 1
13
RX1-
Input
LVDS receiver positive signal channel 1
14
GND
Power
Ground
15
RX0+
Input
LVDS receiver negative signal channel 0
16
RX0-
Input
LVDS receiver positive signal channel 0
17
NC
-
No connection
18
NC
-
No connection
19
VCC_IN
20
VCC_IN
Power
Positive Power Supply
Terminal STARCONN 076B20-0048RA-G4 or Equivalent
3.2 K2 BackLight Connector
Pin No. Pin Name
IO
Descriptions
1
BL_VI
Power
Positive Power Supply
2
BL_ADJ
Backlight dimming control(High actives)
Input
PWM may be used to adjust the output brightness
3
BL_EN
Backlight Driver Control
Input
BLON=Hi, Backlight Driving Booster enable
BLON=Lo, Backlight Driving Booster disable
4
BL_GND
Power
Power Supply GND (0V)
Terminal LM123S004HTF13 or Equivalent
3.3 K3(J1) Touch Panel
Pin No. Pin Name
IO
Descriptions
1
GND_E
P
Ground(0V), S hielding layer
2
VDD(5.0V)
P
Power supply (5V)
3
GND
P
Ground, (0V)
4
D+
I/O
USB DATA positive signal
5
D-
I/O
USB DATA negative signal
Terminal ZX62-B-5PA or Equivalent
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3.4 K4(J2) Touch Panel
Pin No. Pin Name
IO
Descriptions
1
RST
I
Reset signal, active low reset
2
VDD
P
Power supply (3.3V)
3
GND
P
Ground, (0V)
4
INT
O
Interrupt signal
5
SDA
I/O
I2C data
6
SCL
I
I2C clock
Terminal FH34SRJ-6S-0.5SH or Equivalent
4. Absolute Maximum Ratings
Items
Symbol
Min.
Max.
Unit
Condition
Power Supply voltage
VCC_IN
-0.3
+3.6
V
Backlight Supply voltage
BL_VI
-0.3
+15.0
V
CTP USB Supply voltage
VDD(5.0V)
-0.3
+5.5
V
CTP IIC Supply voltage
VDD
-0.3
+3.6
V
Operating Temperature
T OP
-10
50
No Condensation
Storage Temperature
T ST
-20
60
No Condensation
Operating and Storage Humidity
HSTG
10%
90%
%(RH)
Note:
*1. This rating applies to all parts of the module. And should not be exceeded.
*2. The operating temperature only guarantees operation of the circuit. The contrast, response speed,
and the other specification related to electro-optical display quality is determined at the room temperature, T OP =25
*3. Ambient temperature when the backlight is lit (reference value)
*4. Any Stresses exceeding the Absolute Maximum Ratings may cause substantial damage to the device. Functional
operation of this device at other conditions beyond those listed in the specification is not implied and prolonged
exposure to extreme conditions may affect device reliability.
5. Electrical Characteristics
5.1 Driving TFT LCD Panel
Top=25 , GND=0V
Items
Symbol
MIN.
TYP.
MAX.
Unit
Note
Supply Voltage
VCC_IN
3.0
3.3
3.6
V
Input Signal Low Level
V IL
GND
--
0.2VCC_IN
V
Voltage
High Level
V IH
0.8VCC_IN
--
VCC_IN
V
VCC Power Consumption
I VCC-IN
-
250
-
mA
*1
Note.
*1. Normal display condition
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5.2 LED Backlight Circuit Characteristics
BL_GND=0V, T OP =25
Parameter
Symbol
MIN.
TYP.
MAX.
Unit
Note
Operating Voltage
BL_VI
11.5
12.0
12.5
V
Input High Voltage
V IH
3.0
-
BL_VI
V
BL_EN, BL_ADJ
Input Low Voltage
V IL
BL_GND
-
0.3
V
BL_EN, BL_ADJ
Operating Current(*1)
I BL_VI
-
200
-
mA
BL_VI
Cautions:
Exceeding the recommended driving current could cause substantial damage to the backlight and shorten its lifetime.
Note:
*1: BL_EN=Hi, BL_ADJ=Hi;
*2: Recommended BL_ADJ PWM Freq. is 3kHz
*3: Terminal circuit Fig.1 :
Fig.1 Terminal circuit
5.3 Power On/Off Sequence
Item
Symbol
Min
Typ
Max
Unit
Remark
VDD on to VDD stable
Tp1
0.5
-
10
ms
VDD stable to signal on
Tp2
0
-
50
ms
Signal on to VLED_EN on
Tp3
200
-
-
ms
PWM on to VLED_EN on
Tp4
0
-
200
ms
VLED to PWM on
Tp5
10
-
-
ms
VLED on to VELD stable
Tp6
0.5
-
10
ms
VDD off time
Tp7
0
-
10
ms
VDD off to next VDD on
Tp8
500
-
-
ms
Signal off before VDD off
Tp9
0
-
50
ms
VLED_EN off before signal off
Tp10
200
-
-
ms
VLED_EN off before PWM off
Tp11
0
-
200
ms
PWM off before VLED off
Tp12
10
-
-
ms
Figure 5.3 Interface Power On/Off Sequence
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6. LVDS Signal timing characteristic
6.1 Electrical characteristics
Value
Parameter
Symbol
Unit
Note
min
typ
max
LVDS differential input high
RxVTH
-
-
+100
mV
threshold voltage
LVDS differential input low
RxVCM=1.2V
RxVTL
-100
-
-
mV
threshold voltage
LVDS differential input
RxVCM
0.7
1.2
1.6
V
common mode voltage
LVDS differential voltage
VID
200
-
600
mV
6.2 LVDS input timing
6.2.1 LVDS signal timing characteristics
VCC=3.3V, GND=0V, Ta=25
Parameter
Symbol Min
Typ
Max
Unit
Remark
CLK frequency
t clk
62.6 68.2
78.1
MHz
Horizontal blanking time
t HBT
20
69
164
t clk
t hbp + t HFP
Horizontal back porch
t HBP
-
5
164- t HFP
t clk
Horizontal display area
t HD
1280 1280
1280
t clk
Horizontal front porch
t HFP
15
64
159
t clk
Horizontal period
t H
1300 1349
1444
t clk
Horizontal pulse width
t HPW
1
1
256
t clk
Vertical blanking time
t VBT
5
42
101
t H
t VBP + t VFP
Vertical back porch
t VBP
2
2
101- t VFP
t H
Vertical display area
t VD
800
800
800
t H
Vertical front porch
t VFP
3
40
99
t H
Vertical period
t V
803
842
901
t H
Vertical pulse width
t VPW
-
1
128
t H
Frame Rate
F
-
60
-
HZ
Table 5.1 timing parameter
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6.2.2 Input Clock and Data timing Diagram:
Figure 6.2.2 Input signal data timing
6.2.3 LVDS data input format
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7. Optical Characteristics
Ta=25
Item
Symbol Condition Min
Typ
Max
Unit
Remark
View Angles
θT
75
85
-
θB
75
85
-
θL
CR 10
75
85
-
Degree Note 2,3
θR
75
85
-
Contrast Ratio
CR
θ =0 °
600
800
-
-
Note 3
Response Time
TON
-
1
20
25
ms
Note 4
TOFF
-
15
30
Chromaticity White
x
0.250
0.300
0.350
y
0.274
0.324
0.374
Note 1,5
Red
x
0.530
0.580
0.630-
y
Backlight is 0.274
0.324
0.374
Note 1,5
Green
x
on
0.299
0.349
0.399
y
0.538
0.588
0.638
Note 1,5
Blue
x
0.104
0.154
0.204
Note 1,5
y
0.045
0.095
0.145
Uniformity
U
-
75
80
-
%
Note 6
NTSC
-
-
-
50
-
%
Note 5
Luminance
L
300
350
-
cd/m 2
Note 7
Test Conditions:
1. I F =20 mA, and the ambient temperature is 25 .
2. The test systems refer to Note 1 and Note 2.
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)
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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.
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 (T ON ) is the time between photo detector output intensity changed from 90%
to 10%. And fall time (T OFF ) 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
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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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8. LCD Module Design and
8. 液晶显示模块设计和使用须知
Handling Precautions
- Please ensure V0, VCOM is adjustable, to enable LCD
- 请注意 V0, VCOM 的设定, 以确保液晶显示模块在不同
module get the best contrast ratio under different
的使用温度下以及在不同的视角和位置观察模块显
temperatures, view angles and positions.
示,均能达到最佳对比度,请务必将应用电路上设置
- Normally display quality should be judged under the
为对比度可调。
best contrast ratio within viewable area. Unexpected - 请注意液晶显示模块的显示品质判定是指在正常对比
display pattern may com out under abnormal contrast
度下以及视窗(V.A)范围内进行的,非正常对比度下液
ratio.
- Never operate the LCD module exceed the absolute
晶可能会出现非预期的显示不良,应注意区分。
maximum ratings.
- 请勿在最大额定值以外使用液晶显示模块。
- Never apply signal to the LCD module without power
supply.
- 请勿在没有接通电源的条件下,给液晶显示模块输送
- Keep signal line as short as possible to reduce external
信号。
noise interference.
- 请尽可能缩短信号线的连接,以避免对液晶显示模块
- IC chip (e.g. TAB or COG) is sensitive to light. Strong
的信号干扰。
light might cause malfunction. Light sealing structure
- 集成电路因 IC 芯片(如 TAB COG)对紫外线极为敏
casing is recommended.
感,强光环境下可能会引起液晶显示模块功能失效,
- Make sure there is enough space (with cushion)
故应采用不透光的外壳。
between case and LCD panel, to prevent external force - 请在液晶显示模块与外壳之间保留足够的空间(可使用
passed on to the panel; otherwise that may cause
衬垫),以缓冲外力对液晶显示模块的损坏或因受力不
damage to the LCD and degrade its display result.
- Avoid showing a display pattern on screen for a long
均而产生的显示不匀等异常现象。
time (continuous ON segment).
- 避免液晶显示屏在某一画面下长时间点亮,否则有出
- LCD module reliability may be reduced by temperature
现残影的风险;请通过软件每隔一段时间改变一次画
shock.
- When storing and operating LCD module, avoids
面。
exposure to direct sunlight, high humidity, high or low - 液晶显示模块的可靠性可能因温度冲击而降低。
temperature. They may damage or degrade the LCD - 请勿在阳光直射、高湿、高温或低温下储存和使用液
module.
晶显示模块,这将造成液晶显示模块的损坏或失效。
- Never leave LCD module in extreme condition
(max./min storage/operate temperature) for more than
48hr.
- 请勿在极限环境(最大/最小存储/工作温度)下使用或
- Recommend LCD module storage conditions is
放置液晶显示模块超过 48 小时以上。
0 C~40 C <80%RH.
- 液晶显示模块建议存储条件为: 0 C~40 C <80%RH
- LCD module should be stored in the room without acid,
alkali and harmful gas.
- 请勿让液晶显示模块存储于带有 酸性, 碱性, 有害气
- Avoid dropping & violent shocking during
体环境之中。
transportation, and no excessive pressure press, - 在运输过程中, 请勿让液晶显示模块跌落与猛烈震动,
moisture and sunlight.
同时避免 异常挤压, 高湿度, 与阳光照射.
- LCD module can be easily damaged by static
electricity. Please maintain an optimum anti-static
- 液晶显示模块极易受静电损坏,请务必保证液晶显示
working environment to protect the LCD module. (eg.
模块在防静电的工作环境中使用或保存。(如: 烙铁正
ground the soldering irons properly)
确接地,等)
- Be sure to ground the body when handling LCD
- 拿取液晶显示模块时需注意操作人员的接地情况。
module.
- Only hold LCD module by its sides. Never hold LCD
- 请手持液晶显示模块的边沿取放模块,防止热压纸或
module by applying force on the heat seal or TAB.
TAB 部位受力。
- When soldering, control the temperature and duration
- 焊接液晶模块时,请注意控制烙铁的温度、焊接时
avoid damaging the backlight guide or diffuser which
间,以免烫坏导光板或偏光片,导致显示不匀等不良
might degrade the display result such as uneven
display.
现象发生。
- Never let LCD module contact with corrosive liquids, - 请勿使用洗板水等腐蚀性液体接触液晶模块,以免腐
which might cause damage to the backlight guide or
蚀导光板或模块电路。
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the electric circuit of LCD module.
- Only clean LCD with a soft dry cloth, Isopropyl Alcohol
- 仅可使用柔软的干布, 异丙醇或乙醇清洁液晶屏表
or Ethyl Alcohol. Other solvents (e.g. water) may
damage the LCD.
面,其他任何溶剂(如:水)都有可能损坏液晶模块。
- Never add force to components of LCD module. It may - 请勿挤压液晶显示模块上的元器件,以避免产生潜在
cause invisible damage or degrade the module's
的损坏或失效而影响产品可靠性。
reliability.
- 装配液晶显示模块时,请务必注意避免液晶显示模块
- When mounting LCD module, please make sure it is
free from twisting, warping and bending.
的扭曲或变形。
- Do not add excessive force on surface of LCD, which - 请勿挤压液晶显示屏表面,这将导致显示颜色的异
may cause the display color change abnormally.
常。
- LCD panel is made with glass. Any mechanical shock
- 液晶屏由玻璃制作而成,任何机械碰撞(如从高处跌
(e.g. dropping from high place) will damage the LCD
module.
落)均有可能损坏液晶显示模块。
- Protective film is attached on LCD screen. Be careful - 液晶屏表面带有保护膜, 揭除保护膜时需要注意可能
when peeling off this protective film, since static
产生的静电。
electricity may be generated.
- 因液晶显示屏表面的偏光片极易划伤,安装完成之前
- Polarizer on LCD gets scratched easily. If possible, do
not remove LCD protective film until the last step of
请尽量不要揭下保护膜。
installation.
- 请缓慢揭除保护膜,在此过程中液晶显示屏上可能会
- When peeling off protective film from LCD, static
产生静电线,此为正常情况,可在短时间内消失。
charge may cause abnormal display pattern. The
symptom is normal, and it will turn back to normal in a
- 请注意避免被液晶显示屏的边缘割伤。
short while.
- 请不要试图拆卸或改造液晶显示模块。
- LCD panel has sharp edges, please handle with care.
- Never attempt to disassemble or rework LCD module.
- 当液晶显示屏出现破裂, 内部液晶液体可能流出;
- If display panel is damaged and liquid crystal
关液体不可吞吃, 绝对不可接触嘴巴, 如接触到皮肤
substance leaks out, be sure not to get any in your
或衣服, 请使用肥皂与清水彻底清洗.
mouth, if the substance comes into contact with your
skin or clothes promptly wash it off using soap and
water.
9. 电容触摸屏安装指导
9.1 面框安装(附图 1)
9. CTP Mounting Instructions
- 客户面框窗口应大于 CTP 动作区域,各边离动作区应
9.1 Bezel Mounting (Figure 1)
≥0.5mm.
- The bezel window should be bigger than the CTP
active area. It should be 0.5mm each side.
- 面框与 CTP 面板间应垫有胶垫,其最终间隙约为 0.5~
- Gasket should be installed between the bezel and the
1.0mm.
CTP surface.
- 建议必要时在背面提供附加支架(例如无安装结构的薄
The final gap should be about 0.5~1.0mm.
型 TFT 模块),应仅利用适当支撑以保持模块位置.
- It is recommended to provide an additional support
bracket for backside support when necessary (e.g. slim
type TFT module without mounding structure). They
should only provide appropriate support and keep the
- 安装结构应具有足够的强度,以防止外部不均匀力或
module in place.
扭曲力作用到模块上.
- The mounting structure should be strong enough to
prevent external uneven force or twist act onto the
module.
Figure 1
9.2 Surface Mounting (Figure 2)
9.2 嵌入安装(附图 2)
- As the CTP assembling on the countersink area with
- 客户面框应具有使用双面胶粘贴 CTP 的结构沉台面,
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double side adhesive.
其粘贴面要求平整且洁净无污以保证粘贴牢靠.
The countersink area should be flat and clean to
ensure the double side adhesive installation result.
- The Bezel is recommend to keep a gap ( 0.3mm each - 考虑到制作误差,建议面框与 CTP 盖板之间四周留有
side) around the cover lens for tolerance.
≥0.3mm 间隙.
- It is recommended to provide an additional support - 建议必要时在背面提供垫有胶垫附加支架(例如无安装
bracket with gasket for backside support when
结构的 TFT 模块),应仅利用适当支撑以保持模块位
necessary (e.g.
TFT module without mounding
置.
structure). They should only provide appropriate
support and keep the module in place.
- 安装结构应具有足够的强度,以防止外部不均匀力或
- The mounting structure should be strong enough to
扭曲力作用到模块上。
prevent external uneven force or twist act onto the
module
Figure 2
9.3 Additional Cover Lens Mounting (Figure 3)
9.3 覆加盖板(附图 3)
- For the case of additional cover Lens mounting, it is - 需要覆加玻璃盖板的安装,为确保其功能,有必要查
necessary to recheck with the CTP specification about
看产品规格书中有关盖板材料和厚度的说明.
the material and thickness to ensure the functionality.
- It should keep a 0.2~0.3mm gap between the cover - 玻璃盖板与 CTP 表面之间应留有 0.2~0.3mm 间隙.
lens and the CTP surface..
- The cover lens window should be bigger than the - 玻璃盖板视窗应大于 CTP 动作区域,各边离动作区应
active area of the CTP.It should be 0.5mm each side.
≥0.5mm。
- It is recommended to provide an additional support - 建议必要时在背面提供附加支架(例如无安装结构的薄
bracket for backside support when necessary (e.g. slim
型 TFT 模块),应仅利用适当支撑以保持模块位置.
type TFT module without mounding structure). They
should only provide appropriate support and keep the
module in place.
- 安装结构应具有足够的强度,以防止外部不均匀力或
- The mounting structure should be strong enough to
扭曲力作用到模块上.
prevent external uneven force or twist act onto the
module.
Figure 3
10. RTP Mounting Instructions
10. 电阻触摸屏安装指导
- It should bezel touching the RTP Active Area (A.A.) to
- 为避免面框直接压在动作区(A.A.)上造成误动作,面框
prevent abnormal touch.It should left gab
与电阻触摸屏(RTP)之间应留有一定的空隙
D=0.2~0.3mm in between. (Figure 4)
D=0.2~0.3mm 之间.(附图 4)
- Outer bezel design should take care about the area
- 设计面框时,要注意用面框保护触摸屏四周的非保证操
outside the A.A. Those areas contain circuit wires
作区域,因为布线区域在此处形成一台阶,在此区域
which is having different thickness. Touching those
附近操作时 ITO Film 变形较大,容易导致 ITO 损坏而
areas could de-form the ITO film. As a result bezel the
降低寿命。为保护 RTP 和避免误操作,在 RTP 与面框
ITO film be damaged and shorten its lifetime.
之间垫缓冲物(Gasket),我们建议设计面框应覆盖
It is suggested to protect those areas with gasket
动作区的边缘,面框边缘到 V.A.区的距离 B≥0.50mm;
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(between the bezel and RTP).The suggested figures
垫圈内边缘到 V.A.区的距离 C≥0.50mm. (附图 4)
are B≥0.50mm; C≥0.50mm. (Figure 4)
- The bezel side wall should keep space E= 0.2 ~ 0.3mm - 在设计面框与 RTP 组装时,应考虑到面框内侧与 RTP
from the RTP. (Figure 4)
侧的间距 E≥0.2mm. (附图 4)
Figure 4
- In general design,
- 通常设计时:
RTP V.A. should be bigger than the TFT V.A.
RTP 的可视区 V.A. 应不小于 TFT 的可视区 V.A.
and RTP A.A. should be bigger than the TFT A.A.
及 RTP 的动作区 A.A. 应不小于 TFT 的动作区 A.A.
(Figure 5)
(附图 5)
Figure 5
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11. Warranty
This product has been manufactured to our company’s specifications as a part for use in your company’s general
electronic products. It is guaranteed to perform according to delivery specifications. For any other use apart from
general electronic equipment, we cannot take responsibility if the product is used in medical devices, nuclear power
control equipment, aerospace equipment, fire and security systems, or any other applications in which there is a direct
risk to human life and where extremely high levels of reliability are required. If the product is to be used in any of the
above applications, we will need to enter into a separate product liability agreement.
- We cannot accept responsibility for any defect, which may arise form additional manufacturing of the product
(including disassembly and reassembly), after product delivery.
- We cannot accept responsibility for any defect, which may arise after the application of strong external force to the
product.
- We cannot accept responsibility for any defect, which may arise due to the application of static electricity after the
product has passed our company’s acceptance inspection procedures.
- When the product is in CCFL models, CCFL service life and brightness will vary according to the performance of the
inverter used, leaks, etc. We cannot accept responsibility for product performance, reliability, or defect, which may
arise.
- We cannot accept responsibility for intellectual property of a third part, which may arise through the application of
our product to our assembly with exception to those issues relating directly to the structure or method of
manufacturing of our product.
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