LMT035KDH03-NJN
LCD Module User Manual
Prepared by:
Checked by:
Approved by:
Caiwei
Date: 2022-06-08
Date:
Date:
Rev.
Descriptions
Release Date
0.1
New release
2021-10-09
0.2
Add LCD Module design picture
2021-01-04
0.3
Updata Outline Dwg
2022-06-08
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Table of Content
1.
General Specification ............................................................................................................ 3
2.
Block Diagram ........................................................................................................................ 3
2.1
Terminal Functions ............................................................................................................... 4
3.
Absolute Maximum Ratings .................................................................................................. 4
4.
Electrical Characteristics ...................................................................................................... 4
4.1
DC Characteristics ............................................................................................................... 4
4.2
AC Characteristics ................................................................................................................ 5
4.2.1
8080 Mode Timing ....................................................................................................... 5
4.2.2
Reset Timing ............................................................................................................... 6
5.
Optical Characteristics .......................................................................................................... 7
6.
Function Specifications ......................................................................................................... 9
6.1
Command Summary ............................................................................................................ 9
7.
LCD Module Design and Handling Precautions ................................................................. 10
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1. General Specification
Screen Size(Diagonal) :
3.5 inch
Active Area :
70.08 x 52.56 (mm)
Number of dots :
320(RGB) x 240
Pixel Pitch :
0.219 x 0.219 (mm)
Color Depth:
2bpp
Display Technology :
a-Si TFT active matrix
Display Mode :
Normal White, Transmissive
Display Interface :
MCU Interface
Viewing Direction :
6 o ’clock (Gray scale Inversion) (*1)
12 o’cl ock (*2)
Operating Temperature :
-20 ~ +70°C
Storage Temperature :
-30 ~ +80°C
Note:
*1. For saturated color display content (eg. pure-red, pure-green, pure-blue or pure-colors-combinations).
*2. For “color scales” display content.
2. Block Diagram
Figure 1
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2.1
Terminal Functions
Terminal (K1/K2)
Pin
Pin
Pin
8bit MCU Mode (Default)
No.(K1)
No.(K2)
Name
I/O
Description
1
1,2
VSS
Power Input
Power Supply GND (0V)
2
3,4
VDD
Power Input
Positive Power Supply
3
NC
-
No Connect
4
18
/WR
Input
Write Enable, active Low
5
17
/RD
Input
Read Enable, active Low
6
6
/CS
Input
Chip Select /CS=Low: Data IO is enabled
Access Mode
7
5
A0
Input
A0=High: Accessing Data
A0=Low: Accessing Address
7
Reset
8
/RES
Input
/RES=Low: Reset
/RES=High: Normal operation
9
8
DB0
:
:
DB1
14
13
:
Bi-directional
I/O
8-bit Bi-directional data bus
15
14
DB6
16
15
DB7
17
16
/WAIT
Output
WAIT Signal
18
NC
-
No Connect
19
19
BL_ADJ
Input
Backlight Driver enable signal, active High, PWM(*1) can be possible
20
20-24
NC
-
No Connect
Note:
*1. The PWM frequency is between 200Hz and 500Hz
3. Absolute Maximum Ratings
Items
Symbol
Min.
Max.
Unit
Condition
Supply Voltage
V DD
-0.2
3.6
V
V SS = 0V
Input Voltage
V IN
-0.2
VDD
V
V SS = 0V
Operating Temperature
T OP
-20
+70
℃
No Condensation
Storage Temperature
T ST
-30
+80
℃
No Condensation
Caution:
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.
4. Electrical Characteristics
4.1
DC Characteristics
V SS =0V, V DD =3.3V, T OP =25 ℃
Items
Symbol
MIN.
TYP.
MAX.
Unit
Applicable Pin
Operating Voltage
V DD
3.0
3.3
3.6
V
VDD
Input High Voltage
V IH
0.8VD
D
-
VDD
V
Input pins, Bi-direction pins
Input Low Voltage
V IL
VSS
-
0.2VDD
V
Input pins, Bi-direction pins
Operating Current
I DD
-
155
200
mA
On Backlight Power on status
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4.2
AC Characteristics
4.2.1 8080 Mode Timing
A0
/CS Control
cONTROL
/CS
/WR
/RD
/RD,WR/ Control
cONTROL
/CS
/WR
/RD
Figure 2
3.3 Volt
Symbol
Parameter
Units
Min
Max
t1
A0 setup time to /CS (/WR, /RD)
1
-
ns
t2
/WR, /RD (/CS) setup time to /CS (/WR, /RD)
1
-
ns
t3
DB[7:0] setup time to /CS (/WR) rising edge: write cycle
1
-
ns
t4
DB[7:0] hold time from /CS (/WR) rising edge: write cycle
7
-
ns
t5w
/WR (/CS) hold time from /CS (/WR) rising edge: write cycle
3
-
ns
t5r
/RD (/CS) hold time from /CS (/RD) rising edge: read cycle
0
-
ns
t6
A0 hold time from /CS (/WR, /RD) rising edge
4
-
ns
t7
/CS (/RD) falling edge to DB[7:0] driven: read cycle
-
15
ns
t8
/CS (/RD) falling edge to valid Data: read cycle
-
4xT mclk +17
ns
t9
DB[7:0] hold time from /CS (/RD) rising edge: read cycle
2
12
ns
t10w
End of write to next read/write
5
-
ns
t10r
End of read to next read/write
T mclk +9
-
ns
t11w
/CS (/WR) pulse width for write cycle
3
-
ns
t12w
/CS (/WR) rise to next /CS (/WR) rise: write cycle
3xT mclk +6
-
ns
Note: T mclk = period of internal MCLK clock signal.
Indirect 8-bit Function Select:
A0
/WR
/RD
Comments
0
0
1
Command Write (register address)
1
0
1
Data (Parameter) Write
0
1
0
inhibit
1
1
1
Data (Parameter) Read
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4.2.2 Reset Timing
/RES
Figure 3
Symbol
Parameter
Min
Max
Units
t1
Oscillator stable delay
Note 1
-
ms
t2
Reset pulse duration
100(Note 2)
-
ns
Note:
1. When using an external oscillator, a delay is required following the rising edges of both RESET#
and VDD to allow for system stabilization. This delay allows the clock used by the internal
oscillator circuit to become stable before use. The delay time depends on a crystal. The
S1D13709 must not be accessed before the oscillation circuit is stable.
When using the internal oscillator with an external crystal, a delay is required after exiting power
save mode. For direct mode, writing REG[08h] bit 0 will exit power save mode and start the
internal oscillator. For indirect mode, writing the SYSTEM SET command will exit power save
mode and start the internal oscillator.
2. The S1D13709 requires a reset pulse of at least 100 ns after power-on in order to re-initialize its
internal state. For maximum reliability, it is not recommended to apply a DC voltage to the LCD
panel while the S1D13709 is reset. Turn off the LCD power supplies for at least one frame
period after the start of the reset pulse.
Note that during the reset period the S1D13709 cannot receive commands. Commands to
initialize the internal registers should be issued soon after a reset. During reset, the LCD drive
signals FPDAT, LP and FR are halted.
For more information and details please refer to LCD controller (S1D13709) datasheet.
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5.
Optical Characteristics
Note : The parameter may slightly change over temperature, driving voltage and materials.
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Note 1:
The data are measured after LEDs are turned on for 5
minutes. LCM displays full white. The brightness is the
average value of 9 measured spots. Measurement
equipment PR- 705 (Φ8mm)
Measuring condition:
- Measuring surroundings: Dark room
- Measuring temperature: Ta=25 ℃ .
- Adjust operating voltage to get optimum
contrast at the center of the display.
Measured value at the center point of LCD panel after more
than 5 minutes while backlight turning on.
Note 2: reference Figure4
The luminance uniformity is calculated by using following
formula.
△ Bp = Bp (Min.) / Bp (Max.)×100 (%)
Bp (Max.) = Maximum brightness in 9 measured
Figure 4
spots
Bp (Min.) = Minimum brightness in 9 measured spots .
Note 3: reference Figure5
The definition of viewing angle:
Refer to the graph below marked by θ and Ф
Note 4:
The definition of contrast ratio (Test LCM using PR-705):
Figure 5
Contrast
Luminance When LCD is at “White” state
Ratio(CR)=
Lumi nance When LCD is at “Black” state
(Contrast Ratio is measured in optimum common electrode
voltage)
Note 5: reference Figure6
Definition of Response time. (Test LCD using DMS501):
The output signals of photo detector are measured
when the input signals are changed from
Figure 6
“black” to “white”(falling time)
and from “white” to “black”(rising time), re spectively.
The response time is defined as
the time interval between the 10% and 90% of
amplitudes.Refer to figure as below.
Note 6: reference Figure7
Definition of Color of CIE Coordinate and NTSC Ratio.
Color gamut:
Area of RGB triangle
S=
X100%
Area of NTSC triangle
Figure 7
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6. Function Specifications
6.1
Command Summary
For more information and details please refer to S1D13709 datasheet.
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7.
LCD Module Design and Handling
7. 液晶显示模块设计和使用须知
Precautions
-
Please ensure V0, VCOM is adjustable, to enable LCD module get
-
请注意 V0, VCOM 的设定 , 以确保液晶显示模块在不同
the best contrast ratio under different temperatures, view angles
的使用温度下以及在不同的视角和位置观察模块显
and positions.
示,均能达到最佳对比度,请务必将应用电路上设置
为对比度可调。
-
Normally display quality should be judged under the best contrast
-
请注意液晶显示模块的显示品质判定是指在正常对比
ratio within viewable area. Unexpected display pattern may come
度下以及视窗 (V.A) 范围内进行的,非正常对比度下液
out under abnormal contrast ratio.
晶可能会出现非预期的显示不良,应注意区分。
-
Never operate the LCD module exceed the absolute maximum
-
请勿在最大额定值以外使用液晶显示模块。
ratings.
-
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
信号。
-
Keep signal line as short as possible to reduce external noise
-
请尽可能缩短信号线的连接,以避免对液晶显示模块
interference.
的信号干扰。
-
IC chip (e.g. TAB or COG) is sensitive to light. Strong light might
-
集成电路因 IC 芯片 ( 如 TAB 或 COG) 对紫外线极为敏
cause malfunction. Light sealing structure casing is recommended.
感,强光环境下可能会引起液晶显示模块功能失效,
故应采用不透光的外壳。
-
Make sure there is enough space (with cushion) between case and
-
请在液晶显示模块与外壳之间保留足够的空间 ( 可使用
LCD panel, to prevent external force passed on to the panel;
衬垫 ) ,以缓冲外力对液晶显示模块的损坏或因受力不
otherwise that may cause damage to the LCD and degrade its
均而产生的显示不匀等异常现象。
display result.
-
Avoid showing a display pattern on screen for a long time
-
避免液晶显示屏在某一画面下长时间点亮,否则有出
(continuous ON segment).
现残影的风险;请通过软件每隔一段时间改变一次画
面。
-
LCD module reliability may be reduced by temperature shock.
-
液晶显示模块的可靠性可能因温度冲击而降低。
-
When storing and operating LCD module, avoids exposure to direct
-
请勿在阳光直射、高湿、高温或低温下储存和使用液
sunlight, high humidity, high or low temperature. They may damage
晶显示模块,这将造成液晶显示模块的损坏或失效。
or degrade the LCD module.
-
Never leave LCD module in extreme condition (max./min
-
请勿在极限环境 ( 最大 / 最小存储 / 工作温度 ) 下使用或
storage/operate temperature) for more than 48hr.
放置液晶显示模块超过 48 小时以上。
-
Recommend LCD module storage conditions is 0 C~40 C
-
液晶显示模块建议存储条件为 : 0 C~40 C <80%RH 。
<80%RH.
-
请勿让液晶显示模块存储于带有 酸性 , 碱性 , 有害气
-
LCD module should be stored in the room without acid, alkali and
体环境之中。
harmful gas.
-
在运输过程中 , 请勿让液晶显示模块跌落与猛烈震动 ,
-
Avoid dropping & violent shocking during transportation, and no
同时避免 异常挤压 , 高湿度 , 与阳光照射 .
excessive pressure press, moisture and sunlight.
-
液晶显示模块极易受静电损坏,请务必保证液晶显示
-
LCD module can be easily damaged by static electricity. Please
模块在防静电的工作环境中使用或保存。 ( 如 : 烙铁正
maintain an optimum anti-static working environment to protect the
确接地 , 等 )
LCD module. (eg. ground the soldering irons properly)
-
拿取液晶显示模块时需注意操作人员的接地情况。
-
Be sure to ground the body when handling LCD module.
-
请手持液晶显示模块的边沿取放模块,防止热压纸或
-
Only hold LCD module by its sides. Never hold LCD module by
TAB 部位受力。
applying force on the heat seal or TAB.
-
焊接液晶模块时,请注意控制烙铁的温度、焊接时
-
When soldering, control the temperature and duration avoid
间,以免烫坏导光板或偏光片,导致显示不匀等不良
damaging the backlight guide or diffuser which might degrade the
现象发生。
display result such as uneven display.
-
请勿使用洗板水等腐蚀性液体接触液晶模块,以免腐
-
Never let LCD module contact with corrosive liquids, which might
蚀导光板或模块电路。
cause damage to the backlight guide or the electric circuit of LCD
module.
-
仅可使用柔软的干布 , 异丙醇或乙醇清洁液晶屏表
-
Only clean LCD with a soft dry cloth, Isopropyl Alcohol or Ethyl
面,其他任何溶剂 ( 如 : 水 ) 都有可能损坏液晶模块。
Alcohol. Other solvents (e.g. water) may damage the LCD.
-
请勿挤压液晶显示模块上的元器件,以避免产生潜在
-
Never add force to components of LCD module. It may cause
的损坏或失效而影响产品可靠性。
invisible damage or degrade the module's 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
的扭曲或变形。
twisting, warping and bending.
-
请勿挤压液晶显示屏表面,这将导致显示颜色的异
-
Do not add excessive force on surface of LCD, which may cause
常。
the display color change abnormally.
-
液晶屏由玻璃制作而成,任何机械碰撞 ( 如从高处跌
-
LCD panel is made with glass. Any mechanical shock (e.g.
落 ) 均有可能损坏液晶显示模块。
dropping from high place) will damage the LCD module.
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-
Protective film is attached on LCD screen. Be careful when peeling
-
液晶屏表面带有保护膜 , 揭除保护膜时需要注意可能
off this protective film, since static electricity may be generated.
产生的静电。
-
Polarizer on LCD gets scratched easily. If possible, do not remove
-
因液晶显示屏表面的偏光片极易划伤,安装完成之前
LCD protective film until the last step of installation.
请尽量不要揭下保护膜。
-
When peeling off protective film from LCD, static charge may cause
-
请缓慢揭除保护膜,在此过程中液晶显示屏上可能会
abnormal display pattern. The symptom is normal, and it will turn
产生静电线,此为正常情况,可在短时间内消失。
back to normal in a short while.
-
LCD panel has sharp edges, please handle with care.
-
请注意避免被液晶显示屏的边缘割伤。
-
Never attempt to disassemble or rework LCD module.
-
请不要试图拆卸或改造液晶显示模块。
-
If display panel is damaged and liquid crystal substance leaks out,
-
当液晶显示屏出现破裂 , 内部液晶液体可能流出 ; 相
be sure not to get any in your mouth, if the substance comes into
关液体不可吞吃 , 绝对不可接触嘴巴 , 如接触到皮肤
contact with your skin or clothes promptly wash it off using soap
或衣服 , 请使用肥皂与清水彻底清洗 .
and water.
Warranty
This product has been manufactured to our company’s specificatio ns as a part for use in y our 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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