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PDF LC315TU3A Data sheet ( Hoja de datos )

Número de pieza LC315TU3A
Descripción TFT-LCD Open cell
Fabricantes PANDA 
Logotipo PANDA Logotipo



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No Preview Available ! LC315TU3A Hoja de datos, Descripción, Manual

TO
规格书编号
File No.
作成日 Issue Date:
改订日 Revision Date:
PN-RD-0023B
2012 年(Y)09 月(M)25 日(D)
2012 年(Y)11 月(M)02 日(D)
《新规 · 变更》
New Revision
产品规格书
Product Specification
产品名
Product
TFT-LCD OPEN CELL
机种名
Model
LC315TU3A
【接收印栏】
※ 本基准书由封面、附件等全 23 页构成。
如果对该规格书有异议,请在下订单前提出。
※This Product Specification have 23 pages including the coversheet and Appendices. Please negotiate
the objection point before purchase order.
中电熊猫集团
南京中电熊猫液晶显示科技有限公司
研发中心 设计整合部
CEC PANDA GROUP
NANJING CEC PANDA LCD TECHNOLOGY CO., LTD.
R&D CENTER, DESIGN INTEGRATION SECTION.

1 page




LC315TU3A pdf
PANDA
LC315TU3A Specification Version 1.0
4. PIXEL ARRAY AND MEMBER LOCATION
Pixel array and member located as below.
There are 4 Source Drivers (1026 input terminals S-Dr) on this panel.
BGR
(1,1)
(1366,768)
COF 4
Fig.4-1 Pixel array and member location
Please use this Open Cell like following figure.
COF 1
Scan direction
Fig.4-2 Scan direction
5. INPUT TERMINALS
5.1 TFT PANEL DRIVING
CN1 (Interface signals and +12V DC power supply) shown on the next table.
Using connector:FI-X30SSLA-HF-R2500(Japan Aviation Electronics Ind.,Ltd) or equivalent device.
Matching connector: FI-X30C2L(Japan Aviation Electronics Ind., Ltd) or equivalent device.
Matching LVDS transmitter: THC63LVDM83R (THine) or equivalent device.
Pin No.
Symbol
Remark
1 VCC
+12V Power Supply
2 VCC
+12V Power Supply
3 VCC
+12V Power Supply
4 VCC
+12V Power Supply
5 GND
Ground
6 GND
Ground
7 GND
Ground
8 WP
EEPROM Write Protection (for P-Vcom)
(0V~0.7V_Disable,2.7V~3.3V/Open _Enable)
9 SELLVDS Select LVDS data format[Note1]
Default: pull down
(L:GND) [Note2]
10 Reserved
Not Available
11 GND
Ground
12 RIN0-
Negative(-) LVDS differential data input
LVDS
13 RIN0+
Positive(+) LVDS differential data input
LVDS
5

5 Page





LC315TU3A arduino
PANDA
LC315TU3A Specification Version 1.0
[Note 5] The Rush current corrugation at the time of power on.
0.9 Vcc
500us
Ton: Vcc(+12V) Rising Time
From 10%Vcc to 90%Vcc
I: Current of Vcc(+12V)
IRUSH: The max current
After Vcc rise.
0.1 Vcc
Vcc=12V
IRUSH
[HOW TO]
Measure the Vcc(12V) when you turn
the power on. At the same time,
measure the current of Vcc(12V).
The single mode of the oscilloscope is
useful in this case.
Current of Vcc 12V
Fig. 6-5 The waveform of rush current
7. TIMING CHARACTERISTICS OF INPUT SIGNALS
7.1 TIMING CHARACTERISTICS
Parameter
Symbol
Min
Typ.
NTSC PAL
Frequency
Fclk=1/Tc 72 82 82
Clock
Spread Spectrum
Modulation range
Spread Spectrum
Modulation frequency
Fclk_mod Fclk-3%
FSSM
30
-
-
-
-
Horizontal period
TH
1540
17.15
1696
20.68
1696
20.68
Data
enable
signal
Horizontal period
(High)
Horizontal Blanking
period
Vertical period
THd
TH-THd
TV
1366
174
778
47.7
1366
330
806
60
1366
330
967
50
Vertical period (High) TVd
768 768 768
Vertical Blanking
period
TV-TVd
10
38 199
*Timing diagrams of input signal are shown in Fig. 7-1.
* SSCG (Spread spectrum clock generator) is defined as Fig. 7-2.
Max. Unit
85 MHz
Fclk+3% MHz
100
1940
21.42
1366
KHz
clock
µs
clock
574
972
62.35
768
204
clock
line
Hz
line
line
11

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