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 DATA SHEET
TFT COLOR LCD MODULE
NL3224AC35-10
14 cm (5.5 inches), 320 x 240 Pixels, Full color Incorporated backlight with inverter
NL3224AC35-10 is a TFT (thin film transistor) active matrix color liquid crystal display (LCD) comprising amorphous silicon TFT attached to each signal electrode, a driving circuit and a backlight. NL3224AC35-10 has a built-in backlight. The 14 cm diagonal display area contains 320 x 240 pixels and can display full-color (more than 16 million colors) simultaneously.
FEATURES
* High luminance * Analog RGB interface * Reversible horizontal and vertical scanning * Incorporated edge type backlight with Inverter * Smooth polarizer surface
APPLICATIONS
* TV monitors * Video games * Monitors for process controller
Document No. EN0440EJ1V0DS00 Date Published May 1999 P Printed in Japan
(c)
1999
NL3224AC35-10
STRUCTURE AND FUNCTIONS
A color TFT (thin film transistor) LCD module is comprised of a TFT liquid crystal panel structure, LSIs for driving the TFT array, and a backlight assembly. The TFT panel structure is created by sandwiching liquid crystal material in the narrow gap between a TFT array glass substrate and a color filter glass substrate. After the driver LSIs are connected to the panel, the backlight assembly is attached to the backside of the panel. RGB (red, green, blue) data signals from a source system is modulated into a form suitable for active matrix addressing by the onboard signal processor and sent to the driver LSIs which in turn addresses the individual TFT cells. Acting as an Electro-optical switch, each TFT cell regulates light transmission from the backlight assembly when activated by the data source. By regulating the amount of light passing through the array of red, green, and blue dots, color images are created with clarity.
OUTLINE OF CHARACTERISTICS (at room temperature)
Display area Drive system Display colors Number of pixels Pixel arrangement Pixel pitch Module size Weight Contrast ratio 111.36 (H) x 83.52 (V) mm a-Si TFT active matrix Full-color 320 x 240 RGB vertical stripe 0.348 (H) x 0.348 (V) mm 134.0 (H) x 110.0 (V) x 23.0 max. (D) mm 330 g (typ.) 85:1 (typ.)
Viewing angle (more than the contrast ratio of 10:1) * Horizontal: 50 (typ. left side, right side) * Vertical: 25 (typ. up side), 25 (typ. down side) Designed viewing direction * wider viewing angle with contrast ratio * optimum grayscale ( = 2.2) Polarizer Pencil-hardness Color gamut Response time Luminance Signal system Supply voltage Backlight Power consumption : down side (6 o'clock) : perpendicular * wider viewing angle without image reversal : up side (2 and 10 o'clock) 2H (min. at JIS K-5400) 50 % (typ. center, to NTSC) 16 ms (typ.), "white" to "black" 250 cd/m2 (typ.) Analog RGB signals, synchronous signals (Hsync and Vsync), CLK 12 V, 12 V (Logic/LCD driving, Backlight) Edge light type: one cold cathode fluorescent lamp 6.5 W (typ.)
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Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
BLOCK DIAGRAM
I/F LCD module
R G B
DC clamp
Gamma correction AMP
DC shift clamp-puls
H-Driver
960lines HS VS CLK V-Driver + controller
LCD panel 240lines H:320 x 3 (R, G, B) V:240
COM signal
VDC (+12V)
DC/DC Converter
ICS Driver
Backlight
VDCB (+12V) Inverter BPLS GNDB
GNDA GNDD
Note Frame is connected with GNDB in the LCD module. GNDA should be separated from GNDD to avoid display noise with I/F connection.
Data Sheet EN0440EJ1V0DS00
3
NL3224AC35-10
GENERAL SPECIFICATIONS
Item Module size Display area Number of dots Dot pitch Pixel pitch Pixel arrangement Display colors Weight Specifications 134.00.5 (H) x 110.00.5 (V) x 23.0 max. (D) 111.36 (H) x 83.52 (V) 320 x 3 (H) x 240 (V) 0.116 (H) x 0.348 (V) 0.348 (H) x 0.348 (V) RGB (Red, Green, Blue) vertical stripe Full-color 335 (max.) Unit mm mm dot mm mm - color g
ABSOLUTE MAXIMUM RATINGS
Parameter Supply voltage Symbol VDC VDCB Logic input voltage Analog RGB input signal Storage temp. Operating temp. Humidity (no condensation) VIN1 VIN2 TST TOP Ratings -0.5 to 16.0 -0.5 to 16.0 -0.5 to 5.5 -2.5 to 2.5 -20 to 65 0 to 65 90 % relative humidity Unit V V V V C C Ta = -20 to 65 C VDC = 12 V - Module surface* Ta 60 C Remarks Ta = -20 to 65 C
* measured at the center of the display area
ELECTRICAL CHARACTERISTICS
(1) Power supply, logic input
Parameter Supply voltage Symbol VDC VDDB Logic input "L" voltage Logic input "H" voltage Supply current VIL VIH IDC min. 11.0 11.0 0 3.15 - typ. 12.0 12.0 - - 145 max. 13.0 13.0 0.9 5.0 200 Unit V V V V mA At pixel-checkered pattern (VDC = 12.0 V) Maximum luminance (VDCB = 12.0 V) Remarks For Logic and LCD driving For backlight -
Ta = 25 C
IDCB
-
395
450
mA
(2) Video signal (R, G, B) input
Item Maximum amplitude (white - back) DC input level (black) min. 0 -1.0 typ. - - max. 0.7 +1.0 Unit Vp-p V Remarks -
Ta = 25 C
4
Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
SUPPLY VOLTAGE SEQUENCE
Voltage
Logic signalsNote VDC, VDCB
Time 20ms 0ms<
Note Synchronous signal, Control signals, CLK CAUTION Wrong power sequence may damage to the module. a) Logic signals (synchronous signals and control signals) should be "0" voltage (V), when VDC is not input. If higher than 0.3 V is input to signal lines, the internal circuit will be damaged. b) The backlight power supply (VDCB) is not related to the power supply sequence. However, unstable data will be displayed when the backlight power is turned ON with no logic signals. d) Analog RGB input are independent from this power supply sequence. f) Apply VDCB within the LCD operation period. When the backlight turns on before LCD operation or the LCD operation turns off before the backlight turns off, the display may momentarily become white.
Data Sheet EN0440EJ1V0DS00
5
NL3224AC35-10
INTERFACE PIN CONNECTION
Connector (CN1) Part no. Supplier Supplier
Pin No. 1 2 3 4 5 6 7 8
: 52610-2417 : Molex : SUMITOMO ELECTRIC INDUSTRIES, LTD.
Symbol GNDD ECLK GNDD HS VS BPLS GNDD GNDD Pin No. 9 10 11 12 13 14 15 16 Symbol GNDD U/D GNDD VDC VDCB VDCB GNDB GNDB Pin No. 17 18 19 20 21 22 23 24 Symbol GNDD GNDA R GNDA G GNDA B GNDA
Adaptable cable : SUMI-CARD 1.0 mm pitch 24 wick 80 C quality

Upper side
CN1 1
24
Lower side
6
Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
PIN FUNCTIONS
Symbol ECLK Hsync Vsync R G B U/D I/O Input Input Input Input Input Input Input Logic - Negative Negative - - - - Description External clock input. (CMOS level) This timing-signal is for display data. Horizontal synchronous signal input (CMOS level) Vertical synchronous signal input (CMOS level) Analog Red signal input (0.7Vp-p, 75 ) Analog Green signal input (0.7Vp-p, 75 ) Analog Blue signal input (0.7Vp-p, 75 ) Scan direction select signal. Default value is H (CMOS level) H: down scanning L: up scanning Luminance control signal (pulse input) Luminance is controlled by the pulse width Power supply for processor, controller and driver (+12 V) Power supply for backlight (+12 V) Ground for analog RGB signal Ground for logic (VDC) Ground for backlight. (VDCB) Note Note
BPLS
Input
-
VDC VDCB GNDA GNDD GNDB
Input Input - - -
- - - - -
Note GNDA should be separated from GNDD to avoid display noise.
Data Sheet EN0440EJ1V0DS00
7
NL3224AC35-10
INPUT SIGNAL TIMING
Parameter External-CLK Frequency Symbol 1/tc min. - 118.75 - 0.4 60.38 - - - 1.0 - - - 10.0 10.0 1.5 10.0 - 15.85 - Display tvd - - 158.89 - - - tvrf tdas tdah - 10.0 10.0 typ. 8.0 125.00 - 0.5 63.56 508 40.00 320 4.7 38 9.63 77 - - - - - 16.68 262.5 15.25 240 190.67 3 1.33 21 - - - max. - 131.25 10 0.6 66.74 - - - - - - - - - - - 10.0 17.51 - - - - - - - 10.0 - - ms H Unit MHz ns ns - Remarks -
Rise/fall Duty HS Period
tcrf tch/tc th
- - 15.734 kHz (typ.) -
s CLK s CLK s CLK s CLK
ns ns CLK CLK ns ns
Display
thd
Pulse-width
thp
-
Pulse-width +Back-porch CLK-Hsync timing hold/setup time V-Hsync timing hold/setup time Rise/fall VS Period
thpb
240 line
thch thcs thvh thvs thrf tv
- - - - - 59.94 Hz (typ.) 240 line
Pulse-width
tvp
s H
ms H ns ns ns
-
Pulse-width +Back-porch Rise/fall Analog R, G, B Setup time Hold time
tvpb
-
- - -
Note
In the display start period (pulse-width + back-porch), analog RGB signals should be blanking level.
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Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
DEFINITION OF INPUT SIGNAL TIMING
tc tch
VIH* ECLK 1.5 V VIL*
tcrf tdas tdah
R G B
thch
thcs
VIH* HS 1.5 V VIL*
thrf
VIH* VS 1.5 V VIL* tvrf
thvh
thvs
VIH* HS 1.5 V VIL*
VIH* 1.5 V VIL*
* VIH = 3.15 V (min.) to 5.00 V (max.) VIL = 0.00 V (min.) to 0.90 V (max.)
Data Sheet EN0440EJ1V0DS00
9
NL3224AC35-10
tvp tv
VS
Display period tvpb tvd
thp
th
HS
Display period thpb thd
Note Refer to OPTICAL CHARACTRISTICS Note 6 about BPLS.
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Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
OPTICAL CHARACTERISTICS
Item Luminance Contrast ratio Luminance control range Symbol Lvmax CR - Condition White Perpendicular max. = 100 %
(Ta = 25 C, VDD = 12 V, VDDB = 12 V) Note 1
Min. 200 70 10 Typ. 250 85 - Max. - - 100 Unit cd/m2 - - Remark Note 1 Note 2 Note 6
Reference data
Item Contrast ratio Color gamut Luminance uniformity Viewing angle range Symbol CR C - Condition
(Ta = 25 C, VDD = 12 V, VDDB = 12 V)
Min. 80 40 - 45 45 18 18 - - Typ. 100 50 - 50 50 25 25 16 44 Max. - - 2.0 - - - - 30 60 - deg. deg. deg. deg. ms ms Note 5 Note 5 Note 4 Unit - Remark Note 2 - Note 3
R = 0, L = 0, U = 0, D = 5
at center, to NTSC White CR > 10, U = 0, D = 5 white/black CR > 10, R = 30, L = 30 white/black white to black black to white
R L U D
Response time
Ton Toff
Notes 1. The luminance is measured after 20 minutes from the module works, with all pixels in "white". The typical value is measured after luminance saturation. 2. The contrast ratio is calculated by using the following formula. Luminance with all pixels in "white" Luminance with all pixels in "black"
Contrast ratio (CR) =
50cm Photo-detector(TOPCON BM-5A)
LCD module
1
3. Luminance uniformity is calculated by using the following formula. Minimum Luminance Maximum Luminance
Luminance uniformity =
The luminance is measured at near the five points shown below.
Column 80 160 240 60 120 5 180
Line
1 3 4
2
Data Sheet EN0440EJ1V0DS00
11
NL3224AC35-10
Notes 4. Definitions of viewing angle are as follows.
Perpendicular 12 o'clock -x
L
U
+y
D
R
-y
+x
5. Definitions of response time is as follows. Photo-detector output signal is measured when the luminance changes "white" to "black" and "black" to "white". Response time are Ton and Toff of the photo-detector output amplitude. Ton is the time between 100 % and 10 %. Toff is the time between 0 % and 90 %.
100% White 90%
Luminance
10% Black 0% Ton Toff
6. The pulse signal for luminous control needs to feed BPLS-pin in the white-color data. (CMOS level)
3.5 to 5.0 V (H level) 0 to 0.5 V (L level) (A) (B) Recommendation: (A) = 500 s to 3.7ms (B) = 3.7ms 10%
Pulse (A) duty 100 %: Pulse (A) duty 20 %:
Relative luminance is 100 % Relative luminance is 10 % (reference value)
12
Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
RELIABILITY TEST
Test item High temperature (operation) Test condition 1 652 C at the display aria 2 192 hours 3 Others are based on JASO-D001. 1 04 C at the display aria 2 192 hours 3 Others are based on JASO-D001. 1 652 C at the display aria 2 192 hours 3 Others are based on JASO-D001. 1 -204 C at the display aria 2 192 hours 3 Others are based on JASO-D001. 1 602 C, 90 % relative humidity 2 192 hours 3 Others are based on JASO-D001. 1 First step : 653 C, 30 minutes Second step : -203 C, 30 minutes 2 100 cycles 3 Others are based on JASO-D001. 1 5-200 Hz, 3G 2 10 minute/sweep, 3 X and Y direction : 2 hours Z direction : 4 hours 4 Others are based on JASO-D001. Mechanical shock (non-operation) 1 100G, 11ms 2 X, Y, Z direction: 3 times each direction 3 Others are based on JASO-D001. 1 150 pF, 150 , 10 KV 2 9 places on a panel *3 3 10 times each place at one-second intervals *1, *2 Judgment *1
Low temperature (operation)
*1
High temperature (non-operation)
*1
Low temperature (non-operation)
*1
High temperature/humidity (operation)
*1
Thermal shock (non-operation)
*1
Vibration (non-operation)
*1, *2
ESD (operation)
*1
JASO: Japanese Automobile Standards Organization *1: Display function is checked by the same condition as LCD module out-going inspection. *2: Physical damage *3: Discharge points are shown in the figure.
Data Sheet EN0440EJ1V0DS00
13
NL3224AC35-10
GENERAL CAUTIONS
Next figures and sentence are very important. Please understand these contents as follows.
This figure is a mark that you will get hurt and/or the module will have damages when you make a mistake to operate.
CAUTION
This figure is a mark that you will get an electric shock when you make a mistake to operate.
This figure is a mark that you will get hurt when you make a mistake to operate
CAUTION
Do not touch an inverter, on which is stuck a caution label, while the LCD module is under the operation, because of dangerous high voltage.
(1) Caution when taking out the module a) Pick the pouch only, in taking out module from a carrier box. (2) Cautions for handling the module a) As the electrostatic discharges may break the LCD module, handle the LCD module with care against electrostatic discharges. b) As the LCD panel and backlight element are made from fragile glass material, impulse and pressure to the LCD module should be avoided. c) As the surface of polarizer is very soft and easily scratched, use a soft dry cloth without chemicals for cleaning. d) Do not pull the interface connectors in or out while the LCD module is operating. e) Put the module display side down on a flat horizontal plane. f) Handle connectors and cables with care. lost, the LCD panel would be damaged. h) Don't push or rub the surface of LCD module please. If you do, the scratches or the marks like rubbing may left on the surface of the module. (3) Cautions for the atmosphere a) Dew drop atmosphere must be avoided. b) Do not store and/or operate the LCD module in a high temperature and/or high humidity atmosphere. Storage in an Electro-conductive Polymer Packing Pouch and under relatively low temperature atmosphere is recommended. c) This module uses a cold cathode fluorescent lamp. Therefore, the life time of the lamp becomes short conspicuously at low temperature. d) Do not operate the LCD module in a high magnetic field. (4) Caution for the module characteristics a) Do not apply the fixed pattern data signal to the LCD module at product aging. Applying fixed pattem for a long time may cause image sticking. b) The noise from the inverter circuit may be observed in the luminance control mode. This is not defects not malfunctions. g) When the module is operating, do not lose ECLK, Hsync, or Vsync signal. If any one of these signals is
14
Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
(5) Other cautions a) Do not disassemble and/or reassemble LCD module. b) Do not readjust variable resistors nor switches etc. c) When returning the module for repair or etc., please pack the module not to be broken. We recommend the original shipping packages. Liquid Crystal Display has the following specific characteristics. There are not defects or malfunctions. The display condition of LCD module may be affected by the ambient temperature. This module has cold cathode tube for backlight. Optical characteristics, like luminance or uniformity, will be changed during time. Uneven brightness and/or small spots may be noticed depending on different display patterns.
Data Sheet EN0440EJ1V0DS00
15
NL3224AC35-10
OUTLINE DRAWING (Unit in mm) Front view
23 MAX.
134.0 0.5
(118.0)
Module center
(Active area : 83.52)
(89.5)
110.0 0.5
16
Data Sheet EN0440EJ1V0DS00
(Active area : 111.36)
Active area center
(2.25)
Name plate
NL3224AC35-10
1110.3
OUTLINE DRAWING (Unit in mm) Rear view
4-M3 DEPTH 4.0mm
860.3
860.1
CAUTION
HIGH VOLTAGE
(16)
THE TFT COLOR LCD PANEL CONTAINS COLD CATHODE FLOURESCENT LAMPS. PLEASE FOLLOW LOCAL ORDINANCES OR REGULATIONS FOR ITS DISPOSAL
NL3224AC35-10
A10 00A762802
Data Sheet EN0440EJ1V0DS00
(52.8)
17
NL3224AC35-10
[MEMO]
18
Data Sheet EN0440EJ1V0DS00
NL3224AC35-10
[MEMO]
Data Sheet EN0440EJ1V0DS00
19
NL3224AC35-10
No part of this document may be copied or reproduced in any form or by any means without the prior written consent of NEC Corporation. NEC Corporation assumes no responsibility for any errors which may appear in this document. NEC Corporation does not assume any liability for infringement of patents. Copyrights or other intellectual property rights of third parties by or arising from use of a device described herein or any other liability arising from use of such device. No license, either express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Corporation or others. While NEC Corporation has been making continuous effort to enhance the reliability of its Electronic components, the possibility of defects cannot be eliminated entirely. To minimize risks of damage or injury to persons or property arising from a defect in an NEC electronic components, customers must incorporate sufficient safety measures in its design, such as redundancy, fire-containment, and anti-failure features. NEC devices are classified into the following three quality grades: "Standard", "Special", and "Specific". The Specific quality grade applies only to devices developed based on a customer designated "quality assurance program" for a specific application. The recommended applications of a device depend on its quality grade, as indicated below. Customers must check the quality grade of each device before using it in a particular application. Standard: Computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots Special: Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support) Specific: Aircrafts, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems or medical equipment for life support, etc. The quality grade of NEC devices is "Standard" unless otherwise specified in NEC's Data Sheets or Data Books. If customers intend to use NEC devices for applications other than those specified for Standard quality grade, they should contact an NEC sales representative in advance. Anti-radioactive design is not implemented in this product.


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