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Panel_HITACHI_TX38D18VM2BAA_0_[DS]


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     FOR MESSRS:                                                                    DATE : Oct. 8th ,2012


                      CUSTOMER'S ACCEPTANCE SPECIFICATIONS

                                        TX38D18VM2BAA

                                                   Contents
        No.                   ITEM                              SHEET No.                    PAGE
         1      COVER                                7B64PS 2701-TX38D18VM2BAA-1         1-1/1
         2      RECORD OF REVISION                   7B64PS 2702-TX38D18VM2BAA-1         2-1/1
         3      GENERAL DATA                         7B64PS 2703-TX38D18VM2BAA-1         3-1/1
         4      ABSOLUTE MAXIMUM RATINGS             7B64PS 2704-TX38D18VM2BAA-1         4-1/1
         5      ELECTRICAL CHARACTERISTICS           7B64PS 2705-TX38D18VM2BAA-1         5-1/2~2/2
         6      OPTICAL CHARACTERISTICS              7B64PS 2706-TX38D18VM2BAA-1         6-1/2~2/2
         7      BLOCK DIAGRAM                        7B64PS 2707-TX38D18VM2BAA-1         7-1/1
         8      RELIABILITY TESTS                    7B64PS 2708-TX38D18VM2BAA-1         8-1/1
         9      LCD INTERFACE                        7B64PS 2709-TX38D18VM2BAA-1         9-1/8~8/8
         10     OUTLINE DIMENSIONS                   7B64PS 2710-TX38D18VM2BAA-1         10-1/2~2/2
         11     APPEARANCE STANDARD                  7B64PS 2711-TX38D18VM2BAA-1         11-1/3~3/3
         12     PRECAUTIONS                          7B64PS 2712-TX38D18VM2BAA-1         12-1/1~2/2
         13     DESIGNATION OF LOT MARK              7B64PS 2713-TX38D18VM2BAA-1         13-1/1




             ACCEPTED BY:                                           PROPOSED BY:




                                           SHEET
     KAOHSIUNG OPTO-ELECTRONICS INC.        NO.         7B64PS 2701-TX38D18VM2BAA-1        PAGE      1-1/1

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     2. RECORD OF REVISION
         DATE         SHEET No.                                  SUMMARY




                                           SHEET
     KAOHSIUNG OPTO-ELECTRONICS INC.        NO.         7B64PS 2702-TX38D18VM2BAA-1        PAGE     2-1/1

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       3. GENERAL DATA
       3.1 DISPLAY FEATURES
       This module is a 15" XGA of 4:3 format amorphous silicon TFT. The pixel format is vertical stripe and
       sub pixels are arranged as R (red), G (green), B (blue) sequentially. This display is RoHS compliant,
       COF (chip on film) technology and LED backlight are applied on this display.

         Part Name                         TX38D18VM2BAA

         Module Dimensions                 326.5(W) mm x 253.5(V) mm x 11.5 (D) mm

         LCD Active Area                   304.1(H) mm x 228.1(V) mm

         Pixel Pitch                       0.297(W) mm x 0.297 (H) mm

         Resolution                        1024 x 3(RGB)(W) x 768(H) dots

         Color Pixel Arrangement           R, G, B Vertical stripe

         LCD Type                          Transmissive Color TFT; Normally White; Anti-Glare Polarizer

         Display Type                      Active Matrix

         Number of Colors                  16.7M / 262k Colors

         Backlight                         39 LEDs (13 series x 3)

         Weight                            (850g)

         Interface                         1ch - LVDS / Receiver; 20 pins

         Power Supply Voltage              3.3V for LCD; 12V and 5V for Backlight

         Power Consumption                 (1.7W) for LCD; (13.2 W) for Backlight

         Viewing Direction                 12 O'clock (without image inversion and least brightness change)




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       4. ABSOLUTE MAXIMUM RATINGS
                        Item                   Symbol       Min.         Max.       Unit        Remarks
                   Supply Voltage               VDD         -0.3             4       V              -
               Input Voltage of Logic            VI         -0.2       VDD+0.3       V           Note 1
                                                                                     $
              Operating Temperature             Top          -30             80          C       Note 2
                                                                                     $
               Storage Temperature               Tst         -30             80          C       Note 2
               Backlight Input Voltage          VLED         10              30       V             -
          Input Voltage of backlight control    VLEDC         0           6.0        V           Note 3


       Note 1: The rating is defined for the signal voltages of the interface such as DE, DCLK, FRC and pixel
               data signal.
       Note 2: The maximum rating is defined as above based on the temperature on the panel surface and
               LED driver board, which might be different from ambient temperature after assembling the
               panel into the application. Moreover, some temperature-related phenomenon as below needed
               to be noticed:
              - Background color, contrast and response time would be different in temperatures other than
                25 $ C .
             - Operating under high temperature will shorten LED lifetime.

             - Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to
               such conditions may adversely impact product reliability and result in failures not covered by
               warranty.

       Note 3: The Backlight control signal voltage of the interface such as EN,DDIM and ADIM signal.




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     KAOHSIUNG OPTO-ELECTRONICS INC.            NO.        7B64PS 2704-TX38D18VM2BAA-1           PAGE     4-1/1

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       5. ELECTRICAL CHARACTERISTICS
       5.1 LCD CHARACTERISTICS                                                             Ta    25 $C , VSS    0V
                Item             Symbol      Condition          Min.    Typ.     Max.     Unit       Remarks
        Power Supply Voltage      VDD            -              3.0      3.3     3.6       V              -
        Ripple Voltage            VRP            -               -        -      100     mVp-p
        Rush Current              IRUSH          -               -        -      2.0       A           Note 1
        Differential Input                      VIH              -        -      +100
        Voltage for LVDS           VI                                                     mV           Note 2
        Receiver Threshold                      VIL             -100      -       -
                                          White Pattern          -      410      510
        Power Supply Current       IDD                                                    mA          Note 3,4
                                          Black Pattern          -      590      690
        DCLK Frequency            f CLK          -               -       65       80      MHz             -


       Note 1: Rush current is set maximum 2A. Current capacity for VDD power supply should be larger than
               5A, so that fuse built in the LCM could appropriately work under the abnormal condition.
       Note 2: VCM=+1.2V
              The input terminal of LVDS transmitter is terminated with 100.

                             IN+
                                             LVDS
                                 100
                             IN-            Receiver


       Note 3: fCLK=65.0MHz, and VDD=3.3V, are the test conditions.

                           DC Ampere Meter
                                                 IDD      TFT-LCM
                                                          VDD
                                   VDD
                                                          VSS



       Note 4: For LVDS Transmitter Input




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       5.2 BACKLIGHT CHARACTERISTICS                                                                Ta   25 $C

                Item            Symbol        Condition         Min.     Typ.     Max.      Unit    Remarks
          LED Input Voltage      VLED                           10.8     12.0     13.2               Note 1
               Enable            EN                              4.5       5       5.5                   -
                                            Backlight Unit
           Analog Dimming
                                ADIM                              0        5       5.5       V
               Function
           Digital Dimming                     "H" Level         4.0       5       5.5
                                DDIM
               Function                        "L" Level          0        0       0.2
                                                                                                     Note 2,3
                                             ADIM = 0V,
                                                                  -     (1100)      -
         LED Driving Current               DDIM = 0% Duty
                                 ILED                                                       mA
            (DIM Control)                    ADIM = 5V,
                                                                  -       (55)      -
                                          DDIM = 100% Duty
             LED Lifetime          -          110mA x 3           -      (50k)      -       hrs      Note 4


       Note 1: As Fig 5.1 shown, all LEDs are controlled by the LED Driver when applying 12V VLED.
       Note 2: Dimming function can be obtained by applying DC voltage or PWM signal from the display
               interface CN2. The recommend PWM signal is 1KHz~10KHz with 5V amplitude. The
               brightness is increased when applied DC voltage of ADIM or PWM duty of DDIM is decreased.
       Note 3: 4A fuse is built in the LED voltage control board, current capacity for VLED power supply should
              be larger than 10A, so that the fuse built in the LED voltage control board could appropriately
              work under the abnormal condition.
       Note 4: The estimated lifetime is specified as the time to reduce 50% brightness by applying 110mA x 3
               at 25 $ C .




       Note 5: ILED vs DIM Voltage (Reference only)




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       6. OPTICAL CHARACTERISTICS
       The optical characteristics are measured based on the conditions as below:
       - Supplying the signals and voltages defined in the section of electrical characteristics.
       - The backlight unit needs to be turned on for 30 minutes.
       - The ambient temperature is 25 $ C .
       - In the dark room around 100~200 lx, the equipment has been set for the measurements as shown in
         Fig 6.1.
                                                                                                                         Ta     25 $C , VDD     3.3V
                    Item                Symbol              Condition            Min.        Typ.           Max.              Unit        Remarks
                                                                                                                                     2
          Brightness of White              -                                     (960)       1200             -             cd/m           Note 1
                                                        I     0$ ,T     0$ ,
         Brightness Uniformity             -                                     (70)         80              -               %            Note 2
                                                        110mA x 3
           Contrast Ratio                 CR                                     (450)       700              -                -           Note 3
           Response Time
            (Rising + Falling)          Tr  Tf          I      0$ ,T    0$         -          25             35               ms           Note 4

                                          Tx        I       0$ , CR t 10         (70)         80              -
                                                                  $
                                         T xc       I 180 , CR t 10              (70)         80              -
            Viewing Angle                                     $
                                                                                                                         Degree            Note 5
                                          Ty        I       90 , CR t 10         (60)         70              -
                                         T yc       I       270$ , CR t 10       (70)         80              -
                                          X                                      (0.57)      0.62          (0.67)
                            Red
                                          Y                                      (0.30)      0.35          (0.40)
                                          X                                      (0.29)      0.34          (0.39)
                           Green
            Color                         Y                                      (0.55)      0.60          (0.65)
                                                        I      0$ ,T    0$                                                     -           Note 6
        Chromaticity                      X                                      (0.10)      0.15          (0.20)
                            Blue
                                          Y                                      (0.05)      0.10          (0.15)
                                          X                                      (0.28)      0.33          (0.38)
                           White
                                          Y                                      (0.30)      0.35          (0.40)

       Note 1: The brightness is measured from the panel center point, P5 in Fig. 6.2, for the typical value.
       Note 2: The brightness uniformity is calculated by the equation as below:
                                                                      Min. Brightness
                                   Brightness uniformity                              u 100%
                                                                      Max. Brightness

       , which is based on the brightness values of the 5 points measured by BM-5 as shown in Fig. 6.2.

                                                                                                          Horizontal Line
                                                                                                                D

                                        Photo Detector: BM-5                                        D/4           D/2         3D/4

                                                                                           W/4       1                          2

                     Field: 1$
                                        Distance: 500 mm                               W   W/2                     5



                                                                                           3W/4      3                          4
                                                LCD panel
                             Fig. 6.1                                                                         Fig. 6.2



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       Note 3: The Contrast Ratio is measured from the center point of the panel, P5, and defined as the
               following equation:

                                                                      Brightness of White
                                                                CR
                                                                      Brightness of Black

       Note 4: The definition of response time is shown in Fig. 6.3. The rising time is the period from 90%
               brightness to 10% brightness when the data is from white to black. Oppositely, Falling time is
               the period from 10% brightness rising to 90% brightness.

                                           White                        Black                         White


                                                          Tr    Rising time        Falling time        Tf
                              100 %
                                 90
                         Brightness




                                      10
                                       0
                                                                      Fig . 6.3


       Note 5: The definition of viewing angle is shown in Fig. 6.4. Angle I is used to represent viewing
               directions, for instance, I 270 $ means 6 o'clock, and I 0 $ means 3 o'clock. Moreover, angle
               T is used to represent viewing angles from axis Z toward plane XY.
               The viewing direction of this display is 12 o'clock, which means that a photograph with gray
               scale would not be reversed in color and the brightness change would be less from this
               direction. However, the best contrast peak would be located at 6 o'clock.


                                                                          T       Viewing angle
                                                        I 90$
                                                 12 o'clock
                                                                                              I (x, y ,0)
                                                                                                             $
                                           x'                                                         x I 0
                                           I 180$                                                       3 o'clock
                                            9 o'clock


                                                                                         I 270$
                                                                                          6 o'clock



                                                                          Fig 6.4
       Note 6: The color chromaticity is measured from the center point of the panel, P5, as shown in Fig. 6.2.
       Note 7: Relative Brightness V.S DIM Voltage (Reference only)




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       8. RELIABILITY TESTS
                  Test Item                                                                               Condition
                                     1) Operating
              High Temperature                                                                                                    240 hrs
                                     2) 80
                                     1) Operating
              Low Temperature                                                                                                     240 hrs
                                     2) -30
                                     1) Storage
             High Temperature                                                                                                     240 hrs
                                     2) 80
                                     1) Storage
             Low Temperature                                                                                                      240 hrs
                                     2) -30
                                     1) Non-Operating
               Thermal Shock         2) -30 l 80                                                                                  240 hrs
                                     3) 0.5 hr l 0.5 hr
                                     1) Operating
             High Temperature &      2) 40 & 85%RH
                                                                                                                                  240 hrs
                  Humidity           3) Without condensation
                                     (Note3)
                                     1) Non-Operating
                                     2) 10 300 Hz                                                                          10 min / cycle, 3cycles
                  Vibration
                                     3) 1.5G                                                                                   each direction
                                     4) X, Y, and Z directions
                                     5) Operating
                                     6) Tip: 150 pF, 330 ,1 sec / cycle
                    ESD                                                                                                              -
                                     7) Condition 1:Panel contact r 8KV
                                     8) Condition 2:Panel non-contact r 15KV

       Note 1: Display functionalities are inspected under the conditions defined in the specification after the
               reliability tests.
       Note 2: The display is not guaranteed for use in corrosive gas environments.
       Note 3: Under the condition of high temperature & humidity, if the temperature is higher than 40                                         , the
               humidity needs to be reduced as Fig. 8.1 shown.
       Note 4: Temperature of panel display surface area should be 80                                           Max.
                                       Relative Humidity RH (%)




                                                                  90
                                                                  80
                                                                  70
                                                                  60
                                                                  50
                                                                  40
                                                                  30
                                                                  20
                                                                  10
                                                                   0
                                                                       20   25 30   35   40 45 50    55 60 65 70      75
                                                                                                      $
                                                                                    Temperature Ta ( C)
                                                                                          Fig. 8.1




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       9. LCD INTERFACE
       9.1 INTERFACE PIN CONNECTIONS
       The display interface connector is MSB240420G made by STM and more details of the connector are
       shown in the section of outline dimension.
       Pin assignment of LCD interface is as below:
         Pin No.    Signal            Function             Pin No.         Signal                    Function
           1         VDD                                      11           IN2-
                               Power Supply for Logic                                   Pixel Data
           2         VDD                                      12           IN2+
           3         VSS       GND                            13            VSS         GND
           4         NC        No Connection                  14        CLK IN-
                                                                                        Clock
           5         IN0-                                     15      CLK IN+
                               Pixel Data
           6        IN0+                                      16            VSS         GND
           7         VSS       GND                            17           IN3-
                                                                                        Pixel Data
           8         IN1-                                     18           IN3+
                               Pixel Data
           9        IN1+                                      19            VSS         GND
                                                                                        High : 6 bit Mode (Note 2)
           10        VSS       GND                            20           FRC
                                                                                        Low or NC : 8 bit Mode (Note 2)

       Note 1: IN n- and IN n+ (n=0,1,2,3),CLK IN- and CLK IN+ are recommended to be twisted or
               side-by-side FPC patterns, respectively.
       Note 2:"High" stands for 3.3V, "Low" stands for 0V and "NC" stands for no connection.
       The backlight interface connector is SM08B-SRSS-TB made by JST, and pin assignment of backlight is
       as below:

         Pin No.      Signal         Level                                          Function
           1,2         VLED+           -         Power Supply for LED
            3          NC              -         No Connection
                                                 Enable Pin
            4           EN             -         High : Backlight Enable
                                                 Low : Backlight Disable
            5         ADIM             -         Analog Voltage Dimming Function (Voltage Control)
            6         DDIM             -         PWM Dimming Function
           7,8         VLED-           -         GND




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       9.2 LVDS INTERFALE
           (1) 8Bit Mode
             FRC=Low or NC




          (2) 6Bit Mode
            FRC=High                                              CN1

                                                  2)
                                                                   1)
               Controll                     THC63LVDM83R
                               7 TA0-6                                                RA0-6
                  R0-R5,G0                                        IN0+
                               7 TB0-6                            IN0-                RB0-6
              G1-G5,B0,B1                                         IN1+
                               7 TC0-6                            IN1-                RC0-6
          B2-B5,GND,GND,DE
                                                                  IN2+                         LCD Panel
                                                                                      RD0-6
                                                                  IN2-                          controller
                                                                  IN3+
                                                                  IN3-

                                                                   CLK IN+
                               CLK IN                                                CK OUT
                          CK                PLL                    CLK IN-     PLL



                                                           470          820
                                                         470            820
                                                                        3.3V




       Note 1) LVDS cable impedance should be 100 ohms per signal line when each
               2-lines(+,-) is used in differential mode.
       Note 2) Transmitter Made by Thine : THC63LVDM83R equivalent.
               Transmitter is not contained in Module.




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       9.3 LVDS DATA MAPPING
       1) THC63LVDM83R Pin Assignment (8 Bit Mode)

                 Transmitter             FRC                     Transmitter             FRC
          Pin No.           Date      Low or NC           Pin No.          Date        Low or NC
            51              TA0        R0 (LSB)             20                 TC0        B2
            52              TA1           R1                22                 TC1        B3
            54              TA2           R2                23                 TC2        B4
            55              TA3           R3                24                 TC3        B5
            56              TA4           R4                27                 TC4       GND
             3              TA5           R5                28                 TC5       GND
             4              TA6        G0 (LSB)             30                 TC6        DE
             6              TB0           G1                50                 TD0        R6
             7              TB1           G2                2                  TD1     R7 (MSB)
            11              TB2           G3                8                  TD2        G6
            12              TB3           G4                10                 TD3     G7 (MSB)
            14              TB4           G5                16                 TD4        B6
            15              TB5        B0 (LSB)             18                 TD5     B7 (MSB)
            19              TB6           B1                25                 TD6        NA




       DE : Display Enable

       NA : Not Available




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       2) THC63LVDM83R Pin Assignment (6 Bit Mode)

                 Transmitter                  FRC                           Transmitter                 FRC
          Pin No.            Date             High               Pin No.                Date            High
            51               TA0          R0 (LSB)                     20                 TC0           B2
            52               TA1              R1                       22                 TC1           B3
            54               TA2              R2                       23                 TC2           B4
            55               TA3              R3                       24                 TC3         B5 (MSB)
            56               TA4              R4                       27                 TC4          GND
             3               TA5          R5 (MSB)                     28                 TC5          GND
             4               TA6          G0 (LSB)                     30                 TC6           DE
             6               TB0              G1                       50                 TD0           NA
             7               TB1              G2                       2                  TD1           NA
            11               TB2              G3                       8                  TD2           NA
            12               TB3              G4                       10                 TD3           NA
            14               TB4          G5 (MSB)                     16                 TD4           NA
            15               TB5          B0 (LSB)                     18                 TD5           NA
            19               TB6              B1                       25                 TD6           NA




                                                             1 cycle

            CLK IN-


            CLK IN+

              IN0+
                               R1   R0   G0     R5      R4      R3          R2     R1       R0   G0
              IN0-

              IN1+
                               G2   G1   B1     B0      G5      G4          G3     G2       G1   B1
              IN1-

              IN2+
                               B3   B2   DE    GND GND          B5          B4     B3       B2   DE
              IN2-


       DE : Display Enable

       NA : Not Available.




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       9.6 POWER SEQUENCE




                                                 Power Sequence Timing


       Note 1: In order to avoid any damages, VDD has to be applied before all other signals. The opposite is
               true for power off where VDD has to be remained on until all other signals have been switch off.
               The recommended time period is 1 second. Hot plugging might cause display damage due to
               incorrect power sequence, please pay attention on interface connecting before power on.
       Note 2: In order to avoid showing uncompleted patterns in transient state. It is recommended that
               switching the backlight on is delayed for 1 second after the signals have been applied. The
               opposite is true for power off where the backlight has to be switched off 1 second before the
               signals are removed.
       Note 3: The floating state of interface signal shonld be avoid at invalid period.
       Note 4: When the interface signal is invalid, please set the power supply of VDD to 0V.




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       9.7 DATA INPUT for DISPLAY COLOR(8 BIT MODE)
                                          Red   Data                                 Green   Data                                Blue   Data

        Input color       R7    R6   R5    R4   R3     R2   R1   R0    G7   G6   G5   G4     G3   G2    G1   G0   B7   B6   B5    B4    B3     B2   B1    B0

                          MSB                                    LSB MSB                                     LSB MSB                                     LSB

               Black       0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

             Red(255)      1    1    1     1     1     1    1     1    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

             Green(255)    0    0    0     0     0     0    0     0    1    1    1     1     1      1   1     1   0    0    0      0    0      0    0     0

     Basic   Blue(255)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   1    1    1      1    1      1    1     1

     Color     Cyan        0    0    0     0     0     0    0     0    1    1    1     1     1      1   1     1   1    1    1      1    1      1    1     1

              Magenta      1    1    1     1     1     1    1     1    0    0    0     0     0      0   0     0   1    1    1      1    1      1    1     1

               Yellow      1    1    1     1     1     1    1     1    1    1    1     1     1      1   1     1   0    0    0      0    0      0    0     0

               White       1    1    1     1     1     1    1     1    1    1    1     1     1      1   1     1   1    1    1      1    1      1    1     1

               Black       0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

               Red(1)      0    0    0     0     0     0    0     1    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

               Red(2)      0    0    0     0     0     0    1     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :
     Red
                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :

             Red(253)      1    1    1     1     1     1    0     1    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

             Red(254)      1    1    1     1     1     1    1     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

             Red(255)      1    1    1     1     1     1    1     1    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

               Black       0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

              Green(1)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     1   0    0    0      0    0      0    0     0

              Green(2)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   1     0   0    0    0      0    0      0    0     0

                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :
     Green
                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :

             Green(253)    0    0    0     0     0     0    0     0    1    1    1     1     1      1   0     1   0    0    0      0    0      0    0     0

             Green(254)    0    0    0     0     0     0    0     0    1    1    1     1     1      1   1     0   0    0    0      0    0      0    0     0

             Green(255)    0    0    0     0     0     0    0     0    1    1    1     1     1      1   1     1   0    0    0      0    0      0    0     0

               Black       0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     0

              Blue(1)      0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    0     1

              Blue(2)      0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   0    0    0      0    0      0    1     0

                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :
     Blue
                 :         :    :    :     :     :     :    :     :    :    :    :     :     :      :   :     :   :    :    :      :     :     :    :      :

             Blue(253)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   1    1    1      1    1      1    0     1

             Blue(254)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   1    1    1      1    1      1    1     0

             Blue(255)     0    0    0     0     0     0    0     0    0    0    0     0     0      0   0     0   1    1    1      1    1      1    1     1

       Note 1: Definition of gray scale : Color(n) Number in parenthesis indicates gray scale level. Larger
               number corresponds to brighter level.
       Note 2: Data Signal : 1 : High, 0 : Low

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       9.8 DATA INPUT for DISPLAY COLOR (6 BIT MODE)

                 COLOR &                Red   Data                         Green   Data                       Blue   Data

                 Gray Scale
                              R5   R4   R3    R2     R1    R0   G5    G4    G3     G2     G1   G0   B5   B4   B3     B2     B1   B0

                   Black      0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      0    0

                  Red (63)    1    1     1     1     1     1    0      0     0     0      0    0    0    0     0     0      0    0

                 Green (63)   0    0     0     0     0     0    1      1     1     1      1    1    0    0     0     0      0    0

        Basic    Blue (63)    0    0     0     0     0     0    0      0     0     0      0    0    1    1     1     1      1    1

        Color      Cyan       0    0     0     0     0     0    1      1     1     1      1    1    1    1     1     1      1    1

                  Magenta     1    1     1     1     1     1    0      0     0     0      0    0    1    1     1     1      1    1

                  Yellow      1    1     1     1     1     1    1      1     1     1      1    1    0    0     0     0      0    0

                   White      1    1     1     1     1     1    1      1     1     1      1    1    1    1     1     1      1    1

                   Black      0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      0    0

                  Red (1)     0    0     0     0     0     1    0      0     0     0      0    0    0    0     0     0      0    0

                  Red (2)     0    0     0     0     1     0    0      0     0     0      0    0    0    0     0     0      0    0

         Red         :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                     :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                  Red (62)    1    1     1     1     1     0    0      0     0     0      0    0    0    0     0     0      0    0

                  Red (63)    1    1     1     1     1     1    0      0     0     0      0    0    0    0     0     0      0    0

                   Black      0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      0    0

                 Green (1)    0    0     0     0     0     0    0      0     0     0      0    1    0    0     0     0      0    0

                 Green (2)    0    0     0     0     0     0    0      0     0     0      1    0    0    0     0     0      0    0

        Green        :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                     :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                 Green (62)   0    0     0     0     0     0    1      1     1     1      1    0    0    0     0     0      0    0

                 Green (63)   0    0     0     0     0     0    1      1     1     1      1    1    0    0     0     0      0    0

                   Black      0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      0    0

                  Blue (1)    0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      0    1

                  Blue (2)    0    0     0     0     0     0    0      0     0     0      0    0    0    0     0     0      1    0

         Blue        :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                     :        :    :     :     :     :     :    :      :     :     :      :    :    :    :     :      :     :    :

                 Blue (62)    0    0     0     0     0     0    0      0     0     0      0    0    1    1     1     1      1    0

                 Blue (63)    0    0     0     0     0     0    0      0     0     0      0    0    1    1     1     1      1    1




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                                                                                                                  10-1/2
                                                                                                                   PAGE
                                                                                                                 7B64PS 2710-TX38D18VM2BAA-1
                                                                                                         KAOHSIUNG OPTO-ELECTRONICS INC. SHEET
                                                                                                                                           No.
   10. OUTLINE DIMENSIONS
                            10.1 FRONT VIEW




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                                                                                                                  10-2/2
                                                                                                                   PAGE
                                                                                                                 7B64PS 2710-TX38D18VM2BAA-1
                                                                                                         KAOHSIUNG OPTO-ELECTRONICS INC. SHEET
                                                                                                                                           No.
      9.2 FRAR VIEW




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       11. APPEARANCE STANDARD
       The appearance inspection is performed based on the conditions as below:
       - The distance between inspector's eyes and display is 35 cm.
       - Ambient illumination:100~200 lx for light on inspection.
       - The viewing angle to the front surface of display panel is 15 degree in vertical direction and 45 degree
        in horizontal direction.




                                                        T    T




                                                      Fig. 10.1

       11.1 THE DEFINITION OF LCD ZONE
       LCD panel is divided into 3 areas as shown in Fig.10.2 for appearance specification in next section. A
       zone is the LCD active area (dot area); B zone is the area, which extended 1 mm out from LCD active
       area; C zone is the area between B zone and metal frame.
       In terms of housing design, B zone is the recommended window area customers' housing should be
       located in.




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       11.2 LCD APPEARANCE SPECIFICATION
       The specification as below is defined as the amount of unexpected phenomenon or material in a zone
       (LCD active area) panel. The definitions of length, width and average diameter using in the table are
       shown in Fig. 11.3.
              Item                                         Criteria                               Applied zone
                              Length (mm)       Width (mm)      Maximum number    Minimum space
          Scratches on
                                   -                W 0.05          Ignored             -              A
            polarizer
                              0.3   L 10       0.05 W    0.1            4                -
                                 Average diameter (mm)                   Maximum number
         Bubbles / Dent                                                                                A
                                      0.15 D 0.5                                 4
                                                 Filamentous (Line shape)
                               Length (mm)                Width (mm)            Maximum number
                                                                                                       A
                                      -                       W 0.05                 Ignored
       1) Foreign Materials     0.3 L 2.0               0.05 W 0.1                      4
       2) Dark / White Spot                          Round (Dot shape)
                                 Average diameter (mm)                   Maximum number
                                             D 0.15                           Ignored                  A
                                      0.15 D 0.5                                 4
        Stain on polarizer                   Those wiped out easily are acceptable
                                                             Type               Maximum number
                                                             1 dot                      3
                              Bright dot-defect         2 adjacent dots                 1
                                                   3 adjacent dots or above        Not allowed
           Dot-Defect
                                                             1 dot                      5              A
            (Note 1)
                              Dark dot-defect           2 adjacent dots                 1
                                                    3 adjacent dots or above     Not allowed
                                                 In total                            5
                                            Minimum distance                       10 mm




                                                                                                       ab
                                                                                                        2



                                                        Fig 11.3




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       Note 1: The definitions of dot defect are as below:
              - The defect area of the dot must be bigger than half of a dot.
              - For bright dot-defect, the dot's appear bright and unchanged in size under showing black
                pattern.
              - For dark dot-defect, the dot's appear dark and unchanged in size under pure red, green, blue
                and white pattern.
              - The definition of 1-dot-defect is the defect-dot, which is isolated and no adjacent defect-dot.
              - The definition of adjacent dot is shown as Fig. 11.5 to Fig 11.8.




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       12. PRECAUTIONS
       12.1 PRECAUTIONS of ESD
       1) Before handling the display, please ensure your body has been connected to ground to avoid any
          damages by ESD. Also, do not touch display's interface directly when assembling.
       2) Please remove the protection film very slowly before turning on the display to avoid generating ESD.


       12.2 PRECAUTIONS of HANDLING
       1) In order to keep the appearance of display in good condition, please do not rub any surfaces of the
          displays by using sharp tools harder than 3H, especially, metal frame and polarizer.
       2) Please do not stack the displays as this may damage the surface. In order to avoid any injuries,
          please avoid touching the edge of the glass or metal frame and wore gloves during handling.
       3) Touching the polarizer or terminal pins with bare hand should be avoided to prevent staining and
          poor electrical contact.
       4) Do not use any harmful chemicals such as acetone, toluene, and isopropyl alcohol to clean display's
          surfaces.
       5) Do not disassemble the module.
       6) Please wipe any unknown liquids immediately such as saliva, water or dew on the display to avoid
          color fading or any permanent damages.
       7) Do not have pressure or impulse on the module because the module will be damage.
       8) Please use soft cloth without chemicals to clean the display by gently wiping.




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       12.3 PRECAUTIONS of OPERATING
       1) Please input signals and voltages to the displays according to the values defined in the section of
          electrical characteristics to obtain the best performance. Any voltages over than absolute maximum
          rating will cause permanent damages to this display. Also, any timing of the signals out of this
          specification would cause unexpected performance.
       2) When the display is operating at significant low temperature, the response time will be slower than it
         at 25 C $ .
       3) The use of screen saver or sleep mode is recommended when static images are likely for long
          periods of time. This is to avoid the possibility of image sticking.
       4) Spike noise can cause malfunction of the circuit. The recommended limitation of spike noise is no
          bigger than 100 mV p-p.

       5) Moisture come into or contact the LCD module may damage LCD module when it is operating.
       6) The LED driver board with cable can't be pulled strongly or cable connector will be damaged.


       12.4 PRECAUTIONS of STORAGE
       If the displays are going to be stored for years, please be aware the following notices.
       1) Please store the displays in a dark room to avoid any damages from sunlight and other sources of
          UV light.
       2) Please store LCD module within the specified storage conditions.
       3) It would be better to keep the displays in the container, which is shipped from KOE, and do not
          unpack it.
       4) Please do not stick any labels on the display surface for a long time, especially on the polarizer.




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       13. DESIGNATION of LOT MARK
       1) The lot mark is showing in Fig.13.1. First 4 digits are used to represent production lot, T represented
          made in Taiwan, and the last 6 digits are the serial number.


                            2   1    0       1     T                     0     0     0      0     0     1

                                                                                           Serial number
                                                       T : Made in Taiwan
                                                       Week
                                                       Month
                                                       Year



        2) The tables as below are showing what the first 4 digits of lot mark are shorted for.

             Year    Mark            Month       Mark         Month     Mark               Week (Days)      Mark
             2012      2                 1         01          7         07                     1~7          1
             2013      3                 2         02          8         08                     8~14         2
             2014      4                 3         03          9         09                     15~21        3
             2015      5                 4         04          10        10                     22~28        4
             2016      6                 5         05          11        11                     29~31        5
                                         6         06          12        12


       3) Except letters I and O, revision number will be shown on lot mark and following letters A to Z.

       4) The location of the lot mark is on the back of the display shown in Fig. 13.1.




                                             TX38D18VM2BAA                         REV:A
                                             2101T                                 00001
                                             KOE                      MADE IN TAIWAN


                                                               Fig. 13.1




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