SPECIFICATION FOR APPROVAL

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1 SPECIFICATION FOR APPROVAL ( ) Preliminary Specification ( ) Final Specification Title 0. UXGA TFT LCD BUYER MODEL SUPPLIER *MODEL Suffix LG.Philips LCD Co., Ltd. LM0U0 AM *When you obtain standard approval, please use the above model name without suffix SIGNATURE DATE SIGNATURE DATE S.W.Lee / G.Manager / REVIEWED BY / H. S. Baek / G. Manager PREPARED BY / K.G Park / Manager Please return copy for your confirmation with your signature and comments. MNT/TV Products Engineering Dept. LG. Philips LCD Co., Ltd The preliminary document is subject to change without prior notice. / 8

2 Contents No ITEM Page COVER CONTENTS RECORD OF REVISIONS GENERAL DESCRIPTION ABSOLUTE MAXIMUM RATINGS ELECTRICAL SPECIFICATIONS ELECTRICAL CHARACTREISTICS INTERFACE CONNECTIONS SIGNAL TIMING SPECIFICATIONS SIGNAL TIMING WAVEFORMS COLOR INPUT DATA REFERNECE POWER SEQUENCE OPTICAL SFECIFICATIONS MECHANICAL CHARACTERISTICS RELIABLITY INTERNATIONAL STANDARDS SAFETY EMC 8 PACKING DESIGNATION OF LOT MARK PACKING FORM PRECAUTIONS APPENDIX / 8

3 RECORD OF REVISIONS Revision No Revision Date Page DESCRIPTION 0.0 Nov..00 First Draft (Preliminary) 0. Nov Interface Chip changed PTFP40A(Ti) Sil5(Silicon Image) Jan Outline Dimension: 4.5(D) mm > 4.(D) mm 5 Weight: 4,00 g (typ.) >,700 g (typ.) 0 Outline Dimension: 4.(D) mm(max) > 4.(D) mm(typ) 0 Weight: 4,00 g (Typ) >,700 g (Typ) 4,00 g (Max) >4,000 g (Max) Front View Update Rear View Update 7,8 Electrical Characteristics Notes Update 0. Mar Front View Update(Lamp Wire:65mm>75mm) Rear View Update 0. Mar TMDS signal interface connector FIWEPHFE (JAE) >FIWEPHFE (JAE) GTPLD ( LG CABLE) 6 Added the table 8 Luminance Uniformityangulardependant L R (TCO 99) :.7(max) 0.4 May.0, 00 6 Added at the table 8 Viewing angle: 85 degree(typ) Crosstalk :.5%(max) Gray Scale Value:. Jun..00 Table 5; the color of backlight connector pin(lv) changed CN: Pin (Blue > Sky Blue), Pin 5(white > Dark blue) CN: Pin (white > black) CN: Pin (white > black) CN4: Pin (Blue > Sky blue), Pin 5(white > Dark blue) Table 6: Notes Vertical frequency (50Hz) is available in PAL. 6 Added the table 8 Luminance Variation (δ WHITE Max:.54) / 8

4 RECORD OF REVISIONS Revision No Revision Date Page DESCRIPTION Jun..00 Front View Update Rear View Update 0.5 Jul..00 Changed CNT (BHR05VS BHR05VS) Changed PANEL SHIFT SPEC : X direction.4mm.0mm 4/ 8

5 ATETiming 600 X 00GLM0U0. General Description The LM0U0 LCD is a Color Active Matrix with an integral Cold Cathode Fluorescent Lamp(CCFL) back light system. The matrix employs asi Thin Film Transistor as the active element. It is a transmissive type display operating in the normally black mode. This TFTLCD has a 0. inch diagonally measured active display area with UXGA resolution(00 vertical by 600 horizontal pixel array). Each pixel is divided into Red, Green and Blue subpixels or dots which are arranged in vertical stripes. Gray scale or the luminance of the subpixel color is determined with a 8bit gray scale signal for each dot, thus, presenting a palette of more than 6,777,6 colors. The LM0U0 has been designed to apply the TMDS TM (Transition Minimized differential Signaling) as the interface method to enables a simple and lowcost implementation in both the host and monitor. RGB (48BIT) CLK RGB (48BIT) VCC, VDD V0~V7 SOURCE (Left) SOURCE (Right) USER CON (0PIN) RXC +/ RX0 +/ RX +/ RX +/ Controller CLK PANEL VCC,VGH,VGL INPUT 8V POWER CON (5PIN) GND DC/DC Converter GAMMA General Features Active Screen Size Outline Dimension Pixel Pitch Pixel Format Color Depth Luminance, White Power Consumption Weight Display Operating Mode Surface Treatment Interface LAMP 0. inches(5cm) diagonal 467.8(H) x 6.0(V) x 4.(D) mm(typ.) 0.55 mm x 0.55mm 600 horiz. By 00 vert. Pixels RGB stripes arrangement 8bit, 6,777,6 colors 50 cd/m (Typ.) Total 4.0 Watt(Typ.),700 g (typ.) Transmissive mode, normally black Hard coating(h) Antiglare treatment of the front polarizer, TMDS 6 CCFL s(cold Cathode Fluorescent Lamp) 5/ 8

6 . Absolute Maximum Ratings The following are maximum values which, if exceeded, may cause operation or damage to the unit. Table. ABSOLUTE MAXIMUM RATINGS Parameter Symbol Min Values Max Units Notes Power Input Voltage Vcc 0. Vdc at 5 ± 5 C Operating Temperature TOP 0 50 C Storage Temperature HST 0 60 C Operating Ambient Humidity HOP 0 90 %RH Storage Humidity HST 0 90 %RH Note :. Temperature and relative humidity range are shown in the figure below. Wet bulb temperature should be 9 C Max, and no condensation of water. 6/ 8

7 . Electrical Specifications. Electrical Characteristics The LM0U0 requires two power inputs. One input is employed to power the LCD electronics and to drive the voltages to drive the TFT array and liquid crystal. And the second input which powers the CCFL, is typically generated by an inverter. The inverter is an external unit to the LCD. Table. ELECTRICAL CHARACTERISTICS Parameter Symbol Min Values Typ Max Unit Notes MODULE : Power Supply Input Voltage Power Supply Input Current Power Consumption Vcc Icc Pc Vdc A Watt Differential Impedance Zm Ohm Inrush Current I Rush A LAMP : Operating Voltage Operating Current Established Starting Voltage at 5 C at 0 C Operating Frequency Power Consumption Discharge Stabilization Time Life Time V BL I BL Vs F BL P BL Ts 740(8mA) , (7.5mA) (mA) V RMS ma V RMS V RMS khz Watt min Hrs Notes :. The input current shall be measured at V AA of 8.0Vdc at 5, refresh rate of 60Hz, and pixel clock frequency of 5MHz under 56gray(B/W) (typ). This impedance value is needed to proper display and measured from TMDS Tx output and input connector of module.. The measuring condition The duration of rush current is about 0ms, and rising time of Power input is ms. 4. Operating voltage is measured at 5 C. The variance of the voltage is ±0%. 5. The output voltage at the transformer in the inverter must be high considering to the loss of the ballast capacitor in the inverter. The voltage above V S should be applied to the lamps for more than second for startup. Otherwise, the lamps may not be turned on. 6. Lamp frequency may produce interface with horizontal synchronous frequency and as a result this may cause beat on the display. Therefore lamp frequency shall be as away possible from the horizontal synchronous frequency and from its harmonics in order to prevent interference. 7/ 8

8 7. The lamp power consumption shown above does not include loss of external inverter at 5 C. lamp current is the lamp typical current. 8. Let s define the brightness of The used the lamp after being lighted for 5 minutes as 00%. TS is the time required for the brightness of the center of the lamp to be not less than 95%. The used lamp current is the lamp typical current. 9. The life time is defined as the time at which brightness of lamp is 50% compare to that of initial value at the typical lamp current on condition of continuous operating at 5± C. Note. Do not attach a conducting tape to connecting wire. If the lamp wire attach to a conducting tape, TFTLCD Module has a low luminance and the inverter has abnormal action. Because leakage current is occurred between lamp wire and conducting tape. The design of the inverter must have specifications for the lamp in LCD Assembly. The performance of the Lamp in LCM, for example life time or brightness, is extremely influenced by the characteristics of the DCAC inverter. So all the parameters of an inverter should be carefully designed so as not to produce too much leakage current from highvoltage output of the inverter. When you design or order the inverter, please make sure unwanted lighting caused by the mismatch of the lamp and the inverter(no lighting, flicker, etc) never occurs. When you confirm it, the LCD Assembly should be operated in the same condition as installed in you instrument Requirements for a system inverter design, which is intended to have a better display performance, a better power efficiency and a more reliable lamp. It shall help increase the lamp lifetime and reduce its leakage current. a. The asymmetry rate of the inverter current and voltage waveform should be 0% below; b. The distortion rate of the current and voltage waveform should be within ±0%; c. The ideal sine current and voltage waveform shall be symmetric in positive and negative polarities. * Asymmetry rate = I p I p / I rms * 00% I p * Distortion rate = I p (or I p ) / I rms I p 8/ 8

9 . Interface Connections This LCD employs three kinds of interface connections. A pin connector is used for TMDS signals from the host computer. A 5pin connector is used for LCD module power and LCM controls signal from external monitor control circuits. And four connectors, a three pin and two pin connector, are used for the integral backlight system.. Signal Interface The TMDS signal interface connector is FIWEPHFE by JAE and GTPLD by LG CABLE. Interface chip in host side, must be used TMDS TM, part No. SiI60, designed by Silicon Image Inc., or its equivalent. The pin configuration for the pin connector is shown in the table below. Table PIN CONNECTOR (CNC) PIN CONFIGURATION Pin Symbol Description Pin Symbol Description TX+ SHLD SHLDC TXC+ GND +5V NC NC TMDS positive differential output (channel) TMDS negative differential output (channel) Shield for TMDS channel Shield for TMDS clock TMDS positive differential output (reference clock) TMDS negative differential output (reference clock) Logic Ground Logic +5V Supply (See note ) No Connection No Connection TX+ SHLD SHLD0 TX0+ TX TXC TX TX0 NC HPD DDC_DAT DDC_CLK NC TMDS positive differential output (channel) TMDS negative differential output (channel) Shield for TMDS channel Shield for TMDS channel 0 TMDS positive differential output (channel 0) TMDS negative differential output (channel 0) No Connection Hot Plug Detection (See note ) DDCB Data (See note 4) DDCB Clock (See note 5) No connection. Interface chips. LCD : Sil5(Silicon Image). Connector. LCD : FIWEPHFE,GTPLD. Mating : FIWS or FIWM or compatible. Connector pin arrangement CNC Notes:. All shield pins and GND(ground) pin should be connected together and should also be connected to the LCD s metal frame.. This +5V is only for external monitor control circuits and directly connected to pin of CNC connector.. This pin is internally connected to pin 8 (+5V) in LCM circuits. 4, 5. These pins are only for external monitor control circuits and directly connected to CNC connector. 9/ 8

10 . Power Interface A 5 pin connector (CNC) for external monitor control circuits, is a model 56 manufactured by Molex. The mating connector part number is 50 or its equivalent. The pin configuration for this connector is shown in the table below. Table 4 5 PIN CONNECTOR (CNC) PIN CONFIGURATION Pin Symbol Description Notes GND NC GND V AA V AA GND NC NC GND NC NC +5V_DDC SDA SCL GND Ground No connection (Reserved) Ground LCM power supply, +8V ±5% LCM power supply, +8V ±5% Ground No connection (Reserved) No connection (Reserved) Ground No connection (Reserved) No connection (Reserved) +5V out for DDC DDC data line out DDC clock line out Ground Connector pin arrangement 5 CNC Notes:. All GND(ground) pins should be connected together and should also be connected to the LCD s metal frame.. Pin,, 4 are for DDCB communication between host computer and external monitor control circuits. These pins are directly connected to CNC connector. 0 / 8

11 . Backlight Interface The backlight interface connector is a model BHSR0VS(CN/CN) and BHSR05VS (CN/CN4) manufactured by JST. The mating connector part number are SM0BBHSSTB(pin), SM04(9E)B BHSTB or equivalent. The pin configuration for the connector is shown in the table below. Table 5 BACKLIGHT CONNECTOR PIN CONFIGURATION No Pin Symbol Description Notes CN HV HV Power supply for lamp (High voltage side) Pink Power supply for lamp (High voltage side) Sky Blue NC NC 4 LV Power supply for lamp (Low voltage side) White CN 5 LV Power supply for lamp (Low voltage side) Dark Blue HV Power supply for lamp (High voltage side) Gray LV Power supply for lamp (Low voltage side) Black CN HV Power supply for lamp 4(High voltage side) Gray LV Power supply for lamp 4(Low voltage side) Black CN4 HV HV Power supply for lamp 6(High voltage side) Pink Power supply for lamp 5(High voltage side) Sky Blue NC NC 4 LV Power supply for lamp 6(Low voltage side) White 5 LV Power supply for lamp 5(Low voltage side) Dark Blue Notes:. The high voltage power terminal is colored pink,blue,gray. Ground pin color is white,blue,black.. The backlight ground should be common with LCD metal frame. Up Side Lamp Lamp <BACKLIGHT CONNECTOR DIAGRAM> CN Down Side Lamp Lamp 4 Lamp 5 Lamp 6 CN CN CN 4 / 8

12 . Signal Timing Specifications This is signal timing required at the input of the TMDS transmitter. All of the interface signal timing should be satisfied with the following specifications for it s proper operation. Table 6. Timing Table ITEM SYMBOL Min Typ Max Unit Note DCLK Period tclk ns Frequency fclk 5 7 MHz Hsync Period thp WidthActive twh tclk Vsync Period tvp thp Frequency fv Hz WidthActive twv thp 4 Data Horizontal Valid thv Enable Horizontal Back Porch thbp 6 tclk Horizontal Front Porch thfp Horizontal Blank twh+ thbp+ thfp Vertical Valid tvv Vertical Back Porch tvbp Vertical Front Porch tvfp thp Vertical Blank twv+ tvbp+ tvfp Notes:. Hsync period shall be a double number of 8. Horizontal sync shall be active high.. Vertical frequency(50hz) is available in PAL. 4. Vertical sync shall be active high. / 8

13 4. Signal Timing Waveforms Hsync, Vsync, DE, DATA 0.7Vcc 0.Vcc t CLK 0.5V CC Dclk VALID DATA INVALID INVALID DE(Data Enable) Data are latched at the falling edge of DCLK Hsync t WH t HP DE(Data Enable) t HBP t HV t HFP t VP Vsync t WV t VBP t VV t VFP DE(Data Enable) / 8

14 5. Color Input Data Reference The brightness of each primary color(red,green and blue) is based on the 8bit gray scale data input for the color ; the higher the binary input, the brighter the color. The table below provides a reference for color versus data input. Table 7. COLOR DATA REFERENCE Input Color Data Color MSB RED LSB MSB GREEN LSB MSB BLUE LSB R7 R6 R5 R4 R R R R0 G7 G6 G5 G4 G G G G0 B7 B6 B5 B4 B B B B0 Black Red (55) Green (55) Basic Color Blue (55) Cyan Magenta Yellow White RED (000) RED (00) RED RED (54) 0 RED (55) GREEN (000) GREEN (00) GREEN GREEN (54) 0 GREEN (55) BLUE (000) BLUE (00) BLUE BLUE (54) 0 BLUE (55) 4 / 8

15 6. Power Sequence Power Supply For LCD V AA 0% 0V 90% 90% 0% T T T 5 T 6 T 7 Interface Signal, V i (TMDS Signal of Transmitter) 0V Valid Data T T 4 Power for Lamp OFF LAMP ON OFF Parameter Values Min. Typ. Max. Units T T T T 4 T 5 T 6 T ms ms ms ms ms ms ms Notes :. Please avoid floating state of interface signal at invalid period.. When the interface signal is invalid, be sure to pull down the power supply for LCD V AA to 0V.. Lamp power must be turn on after power supply for LCD and interface signal are valid. 5 / 8

16 4. Optical Specifications Optical characteristics are determined after the unit has been ON and stable for approximately 0 minutes in a dark environment at 5 C. The values specified are at an approximate distance 50cm from the LCD surface at a viewing angle of Φ and θ equal to 0 and aperture degree. FIG. presents additional information concerning the measurement equipment and method. FIG. Optical Characteristic Measurement Equipment and Method Optical Stage(x,y) LCD Module Field = Prichard 880 or equivalent Luminance Uniformity (TCO 99) Response Time Color Coordinates Viewing Angle Crosstalk Gray Scale Value Rise Time Decay Time RED 500mm GREEN BLUE WHITE Table 8. OPTICAL CHARACTERISTICS δ WHITE L R Tr Tr D RX RY GX GY BY WX WY (Ta=5 C, V CC =8.0V, f V =60Hz Dclk=5MHz, I BL =7.5mA) Parameter Symbol Values Min Typ MAx Units Notes Contrast Ratio CR Surface Luminance, white L WH cd/m Luminance Variation δ WHITE.4.54 Tr R BX x axis, right(φ=0 ) θr degree 6 x axis, left (φ=80 ) θl y axis, up (φ=90 ) θu y axis, down (φ=70 ) θd % ms / 8

17 Notes :. Contrast Ratio(CR) is defined mathematically as : Surface Luminance with all white pixels Contrast Ratio = Surface Luminance with all black pixels Contrast ratio shall be measured at the center of the display (Location P).. Surface Luminance (L WH )is measured at the center point (location P) with all pixels displaying white. The variation in surface luminance, δwhite is defined as : Maximum (P, P,...P 9 ) δwhite = Minimum (P, P,...P 9 ) Where P to P9 are the luminance with all pixels displaying white at 9 locations ( pixel) H/ H/ H/0 H/0 P P7 P4 P6 P P9 P P8 P V P P P P4 P5 P6 P7 P8 P9 V/0 V/0 V/ V/ H (a) δ WHITE =.4 (b) δ WHITE = TCO 99 Certification Requirements and test methods for environmental labeling of display [flat]report No. (.5.. Luminance Uniformity) LR = (LMAX.+0deg. / LMIN.+0deg.) + (LMAX.0deg. / LMIN. 0deg.) ) / 7 / 8

18 5. The response time is defined as the following figure and shall be measured by switching the input signal for black and white. Tr D Tr R % Optical Response 0 0 white black white 6. Viewing angle is the angle at which the contrast ratio is greater than 0. φ = 90 (:00) yu θ = 0 z θ A φ xl φ = 80 (9:00) φ = 0 (:00) xr TFT LCD MODULE z' yd φ = 70 (6:00) 8 / 8

19 7. Crosstalk : Cross talk = (Luminance at pattern A Luminance at pattern B) Luminance at pattern A 00% / /6 / /6 /6 V / /6 V / H / H / Pattern : A (Background : 7Gray or White) Pattern : B (Window : Black) (Background : 7Gray or White) 8. Gray Scale Gray Level Relative Luminance (%) Typ / 8

20 5. Mechanical Characteristics The contents provide general mechanical characteristics for the model LM0U0. In addition the figures in the next page are detailed mechanical drawing of the LCD. Outside dimensions Bezel area Active display area Weight(approximate) Surface Treatment Horizontal Vertical Depth Horizontal Vertical Horizontal Vertical 700g(Typ.), ± 0.7mm 6 ± 0.7mm 4.(Typ)mm 4 mm mm 408.0mm 06.0mm 4000g(Max.) Hard coating(h) Antiglare treatment of the front polarizer 0 / 8

21 <FRONT VIEW> / 8

22 <REAR VIEW> / 8

23 6. Reliability Environment test condition No. Test Item Conditions High temperature storage test Ta= 60 C 40h Low temperature storage test Ta= 0 C 40h High temperature operation test Ta= 50 C 60%RH 40h 4 Low temperature operation test Ta= 0 C 40h 5 Vibration test (nonoperating) 6 Shock test (nonoperating) 7 Altitude storage / shipment operating Waveform : Random Vibration level :.0G RMS Bandwidth : 0 ~ 500Hz Duration : X,Y,Z 0min One time each direction Shock level : 00G Waveform: half sine wave, ms Direction : ±X, ±Y, ±Z One time each direction 0 40,000 feet(,9m) 0,000 feet (657.6m) { Result Evaluation Criteria } There should be no change which might affect the practical display function when the display quality test is conducted under normal operating condition. / 8

24 7. International Standards 7. Safety a) UL 950 Third Edition, Underwriters Laboratories, Inc. Jan. 8, 995. Standard for Safety of Information Technology Equipment Including Electrical Business Equipment. b) CAN/CSA C. No Third Edition, Canadian Standards Association, Jan. 8, 995. Standard for Safety of Information Technology Equipment Including Electrical Business Equipment. c) EN : 99+A: 99+A: 99+A: 995+A4: 997+A: 997 IEC 950 : 99+A: 99+A: 99+A: 995+A4: 996 European Committee for Electrotechnical Standardization(CENELEC) EUROPEAN STANDARD for Safety of Information Technology Equipment Including Electrical Business Equipment. 7. EMC a) ANSI C6.4 Methods of Measurement of RadioNoise Emissions from LowVoltage Electrical and Electrical Equipment in the Range of 9kHZ to 40GHz. American National Standards Institute(ANSI), 99 b) C.I.S.P.R Limits and Methods of Measurement of Radio Interface Characteristics of Information Technology Equipment. International Special Committee on Radio Interference c) EN 550 Limits and Methods of Measurement of Radio Interface Characteristics of Information Technology Equipment. European Committee for Electrotechnical Standardization (CENELEC), / 8

25 8. Packing 8. Designation of Lot Mark a) Lot Mark A B C D E F G H I J K L M A,B,C : SIZE D : YEAR E : MONTH F,G : PANEL CODE H : ASSEMBLY CODE I,J,K,L,M : SERIAL NO. Note:. YEAR YEAR Mark MONTH MONTH Jan. Feb. Mar. Apr. May. Jun. Jul. Aug. Sep. Oct. Nov. Dec. Mark A B C. Serial No. Serial No. Mark ~ ~ ~ A000 ~ A9999,, Z9999 b) Location of Lot Mark Serial NO. is printed on the label. The label is attached to the backside of the LCD module. This is subject to change without prior notice. 8. Packing Form a) Package quantity in one box : pcs b) Box Size : 470mm 5mm 57mm 5 / 8

26 9. PRECAUTIONS Please pay attention to the following when you use this TFT LCD module. 9. MOUNTING PRECAUTIONS () You must mount a module using holes arranged in four corners or four sides. () You should consider the mounting structure so that uneven force(ex. Twisted stress) is not applied to the module. And the case on which a module is mounted should have sufficient strength so that external force is not transmitted directly to the module. () Please attach a transparent protective plate to the surface in order to protect the polarizer. Transparent protective plate should have sufficient strength in order to the resist external force. (4) You should adopt radiation structure to satisfy the temperature specification. (5) Acetic acid type and chlorine type materials for the cover case are not describe because the former generates corrosive gas of attacking the polarizer at high temperature and the latter causes circuit break by electrochemical reaction. (6) Do not touch, push or rub the exposed polarizers with glass, tweezers or anything harder than HB pencil lead. And please do not rub with dust clothes with chemical treatment. Do not touch the surface of polarizer for bare hand or greasy cloth.(some cosmetics are determined to the polarizer.) (7) When the surface becomes dusty, please wipe gently with absorbent cotton or other soft materials like chamois soaks with petroleum benzene. Normalhexane is recommended for cleaning the adhesives used to attach front / rear polarizers. Do not use acetone, toluene and alcohol because they cause chemical damage to the polarizer. (8) Wipe off saliva or water drops as soon as possible. Their long time contact with polarizer causes deformations and color fading. (9) Do not open the case because inside circuits do not have sufficient strength. 9. OPERATING PRECAUTIONS () The spike noise causes the misoperation of circuits. It should be lower than following voltage : V=±00mV(Over and under shoot voltage) () Response time depends on the temperature.(in lower temperature, it becomes longer.) () Brightness depends on the temperature. (In lower temperature, it becomes lower.) And in lower temperature, response time(required time that brightness is stable after turned on) becomes longer. (4) Be careful for condensation at sudden temperature change. Condensation makes damage to polarizer or electrical contacted parts. And after fading condensation, smear or spot will occur. (5) When fixed patterns are displayed for a long time, remnant image is likely to occur. (6) Module has high frequency circuits. Sufficient suppression to the electromagnetic interference shall be done by system manufacturers. Grounding and shielding methods may be important to minimized the interference. 6 / 8

27 9. ELECTROSTATIC DISCHARGE CONTROL Since a module is composed of electronic circuits, it is not strong to electrostatic discharge. Make certain that treatment persons are connected to ground through wrist band etc. And don t touch interface pin directly. 94. PRECAUTIONS FOR STRONG LIGHT EXPOSURE Strong light exposure causes degradation of polarizer and color filter. 95. STORAGE When storing modules as spares for a long time, the following precautions are necessary. () Store them in a dark place. Do not expose the module to sunlight or fluorescent light. Keep the temperature between 5 C and 5 C at normal humidity. () The polarizer surface should not come in contact with any other object. It is recommended that they be stored in the container in which they were shipped. 96. HANDLING PRECAUTIONS FOR PROTECTION FILM () The protection film is attached to the bezel with a small masking tape When the protection film is peeled off, static electricity is generated between the film and polarizer. This should be peeled off slowly and carefully by people who are electrically grounded and with well ionblown equipment or in such a condition, etc. () When the module with protection film attached is stored for a long time, sometimes there remains a very small amount of glue still on the bezel after the protection film is peeled off. () You can remove the glue easily. When the glue remains on the bezel or its vestige is recognized, please wipe them off with absorbent cotton waste or other soft material like chamois soaked with normalhexane. 7 / 8

28 APPENDIX : Required Signal Assignment for TMDS 8 / 8

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