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Preliminary Specification Final Specification Title BUYER MO
Top Searches for this datasheetLC260W01 Liquid Crystal Display Preliminary Specification Final Specification Title BUYER MODEL Sanyo 26.0" WXGA SUPPLIER *MODEL SUFFIX LG.Philips Co., Ltd. LC260W01 A5K1 *When obtain standard approval, please above model name without suffix APPROVED SIGNATURE DATE APPROVED Park Manager SIGNATURE DATE REVIEWED Manager PREPARED J.H.Yoon Engineer Please return copy your confirmation with your signature comments. Products Engineering Dept. Philips Co., Ver. Dec. 2003 LC260W01 Liquid Crystal Display Contents COVER CONTENTS RECORD 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 PACKING DESIGNATION MARK PACKING FORM PRECAUTIONS ITEM Page Ver. Dec. 2003 LC260W01 Liquid Crystal Display RECORD REVISIONS Revision Revision Date Dec.10. 2003 Page Preliminary Specification DESCRIPTION Ver. Dec. 2003 LC260W01 Liquid Crystal Display General Description LC260W01 Color Active Matrix Liquid Crystal Display with integral Cold Cathode Fluorescent Lamp(CCFL) backlight system. matrix employs a-Si Thin Film Transistor active element. transmissive type display operating normally black mode. This TFT-LCD 26.0 inch diagonally measured active display area with WXGA resolution (768 vertical 1280 horizontal pixel array). Each pixel divided into Red, Green Blue sub-pixels dots which arranged vertical stripes. Gray scale brightness sub-pixel color determined with 8-bit gray scale signal each dot, thus, presenting palette more than 16.7M(true) colors with 8Bit. LC260W01 been designed apply 8Bit LVDS interface. intended support PCTV where high brightness, wide viewing angle, high color saturation, high color important. LVDS Source Driver Circuit S1280 Gate Driver Circuit 5pair (20pin) Timing Controller (LVDS integrated) +12.0V Panel (1280 pixels) G768 Power Circuit Block +24V (14Pin) Inverter Block 2pin 7CNs (High) Back light Assembly (Direct Light Type_14CCFL) General Features Active Screen Size Outline Dimension Pixel Pitch Pixel Format Color Depth Luminance, White Viewing Angle(CR>10) Power Consumption Weight Display Operating Mode Surface Treatment 26.0 inches(660.40mm) diagonal 622.0(H) 389.0(V) 53.0(D) mm(Typ.) 0.1475mm 0.4425mm 1280 horiz. vert. Pixels strip arrangement 16.7M colors cd/m2 (Center points typ.) View Angle Free (R/L 176(Typ.), 176(Typ.)) Total Watt (Typ.) [LCM 4.14W Inverter (Typ.) Transmissive mode, Normally Black Hard coating(3H), Anti-glare treatment front polarizer, Ver. Dec. 2003 LC260W01 Liquid Crystal Display Absolute Maximum Ratings following maximum values which, exceeded, cause faulty operation damage unit. Table ABSOLUTE MAXIMUM RATINGS Parameter Symbol VLCD Values -0.3 +14.0 Units Notes Power Input Voltage Operating Temperature Storage Temperature Operating Ambient Humidity Storage Humidity Notes Temperature relative humidity range shown figure below. bulb temperature should Max, condensation water. Ver. Dec. 2003 LC260W01 Liquid Crystal Display Electrical Specifications 3-1. Electrical Characteristics LC260W01 requires power inputs. employed power electronics drive array liquid crystal. second input power CCFL/Backlight, power inverter. Table 2_1. PANEL ELECTRICAL CHARACTERISTICS Parameter Module Power Supply Input Voltage Power Supply Input Current Power Consumption Rush current VLCD ILCD PLCD IRUSH 11.4 12.0 4.14 12.6 Watt Symbol Values Unit Notes Notes: specified current power consumption under VLCD=12.0V, 25°C,fV=60Hz condition whereas mosaic pattern(8 displayed frame frequency. current specified maximum current pattern. duration rush current about rising time Power Input 1ms(min). White Gray Black Gray Ver. Dec. 2003 LC260W01 Liquid Crystal Display Table 2_2. INVERTER ELECTRICAL CHARACTERISTICS Parameter Symbol Condition Min. Inverter Input Voltage Input Current VDDB IDDB VON/OFF Lamp High Lamp =Low Brightness Lamp Life Time 50,000 VBR(max) 3.3V VBR(min) Input Power on/off control 22.8 24.0 25.2 Watt Values Typ. Max. Unit Notes Notes specified current power consumption under typical supply Input voltage, 16.5V. life determined time which luminance lamp compared that initial value typical lamp current condition continuous operating 2°C. Electrical characteristics determined after unit been `ON' stable approximately 2Hrs dark environment 2°C. Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-2. Interface Connections This employs interface connections, connector used module electronics 14Pin Connector used integral backlight system. 3-2-1. Module Connector DF14H-20P-1.25H(Manufactured Hirose) Equivalent Mating connector DF14-20S-1.25C(Manufactured Hirose) Equivalent Table MODULE CONNECTOR CONFIGURATION Symbol VLCD VLCD RARA+ RBRB+ RCRC+ RCLKRCLK+ RDRD+ Description Power Supply +12.0V Power Supply +12.0V Power Ground. Power Ground LVDS Receiver Signal(-) LVDS Receiver Signal(+) Ground LVDS Receiver Signal(-) LVDS Receiver Signal(+) Ground LVDS Receiver Signal(-) LVDS Receiver Signal(+) Ground LVDS Receiver Clock Signal(-) LVDS Receiver Clock Signal(+) Ground LVDS Receiver Signal(-) LVDS Receiver Signal(+) Ground Ground PIN#38 PIN#37 PIN#40 PIN#39 PIN#42 PIN#41 PIN#46 PIN#45 PIN#48 PIN#47 Output (LVDS Notes 20nd should ground. GND(ground) pins should connected together which should also connected LCD's metal frame. VLCD (power input) pins should connected together. Input Level LVDS signal based Standard. Rear view DF14H-20P-1.25H(Hirose) Ver. Dec. 2003 LC260W01 Liquid Crystal Display Table REQUIRED SIGNAL ASSIGNMENT FLATLINK'S Name Symbol Red0 [LSB] Red1 Red2 Red3 Red4 Red7 [MSB] Red5 Green0 [LSB] Green1 Green2 Green6 Green7 [MSB] Green3 Green4 Green5 Blue0 [LSB] Blue6 Blue7 [MSB] Blue1 Blue2 Blue3 Blue4 Blue5 Description Pixel Data Pixel Data Pixel Data Pixel Data Pixel Data Pixel Data Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Green Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data Blue Pixel Data RDRD+ connection, unnecessary connection, unnecessary Data Enable Pixel Data RCRC+ RDRD+ RCRC+ RDRD+ RBRB+ RBRB+ RDRD+ RARA+ RBRB+ RDRD+ RARA+ Output Hsync. Vsync. Red6 Notes: Refer LVDS Transmitter Data Sheet detail descriptions. means means R,G,B pixel data. Ver. Dec. 2003 LC260W01 Liquid Crystal Display Table REQUIRED SIGNAL ASSIGNMENT LVDS Transmitter (THC63LVDM83A LVDF83A) Compatible DS90C383/384 Host System RED0 RED1 RED2 RED3 RED4 RED5 RED6 RED7 GREEN0 GREEN1 GREEN2 GREEN3 GREEN4 GREEN5 GREEN6 GREEN7 BLUE0 BLUE1 BLUE2 BLUE3 BLUE4 BLUE5 BLUE6 BLUE7 Hsync Vsync Data Enable CLOCK THC63LVDM83A Compatible TATA+ DF14H-20P-1.25H Timing Controller RARA+ TBTB+ RBRB+ TCTC+ RCRC+ TCLKTCLK+ RCLKRCLK+ TDTD+ RDRD+ Module Notes Module uses 100Ohm resistor between positive negative lines each receiver input. Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-2-2. Backlight Inverter Inverter Connector S14B-PH-SM3 Side entry type (Manufactured JST) Equivalent Mating Connector PHR-14(Manufactured JST) Equivalent Table INVERTER CONNECTOR CONFIGULATION Symbol Panel Detect VON/OFF Description Power Supply +24V Power Supply +24V Power Supply +24V Power Supply +24V Power Supply +24V Backlight Ground Backlight Ground Backlight Ground Backlight Ground Backlight Ground Define Backlight On/off Signal Brightness Adjustable Voltage Signal Ground :2.0V~3.3V/Off :0.0~0.8V) (Max :3.3V :0.0V) Note Remarks Notes connected LCD's metal frame. Rear view S14B-PH-SM3-TB (JST Japan Solderless Terminal Co.,Ltd.) Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-3. Signal Timing Specifications This signal timing required input LVDS Transmitter. interface signal timing should satisfied with following specifications it's proper operation. Table TIMING TABLE ITEM DCLK Period Frequency Hsync Period Frequency Width Vsync Period Frequency Width (Data Enable) Horizontal Valid Horizontal Back Porch Horizontal Front Porch Horizontal Blank Vertical Valid Vertical Back Porch Vertical Front Porch Vertical Blank Symbol tCLK tHBP tHFP tVBP tVFP 12.2 1328 44.0 1280 12.5 1648 48.54 1280 1280 tCLK Unit tCLK tCLK Note 47~53Hz NTSC: 57~63Hz Note Notes Hsync period Hsync width-active should even number times tCLK. value number times tCLK, display control signal asynchronous. order operate this Hsync., Vsync DE(data enable) signals should used. performance electro-optical characteristics influenced variance vertical refresh rates. Vsync, Hsync should keep above specification. Hsync Period,Hsync Width, Horizontal Back Porch should times character number (8). Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-4. Signal Timing Waveforms 0.7Vcc 0.3Vcc Hsync, Vsync, Data DCLK tCLK Valid data First data Invalid data Pixel Pixel Invalid data Valid data Second data Invalid data Pixel Pixel Invalid data DE(Data Enable) HSync tHBP tHFP DE(Data Enable) VSync tVBP tVFP DE(Data Enable) Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-5. Color Input Data Reference Brightness each primary color(red,green,blue) based 8-bit gray scale data input color; higher binary input, brighter color. table below provides reference color versus data input. Table COLOR DATA REFERENCE Input Color Data Color GREEN BLUE Black (255) Green (255) Dark Dark Basic Color Blue (255) Cyan Magenta Yellow White (000) (001) (254) (255) GREEN (000) Dark GREEN (001) GREEN GREEN (254) GREEN (255) BLUE (000) BLUE (001) BLUE BLUE (254) BLUE (255) Ver. Dec. 2003 LC260W01 Liquid Crystal Display 3-6. Power Sequence Power Supply VLCD VDDB Interface Signal Valid Data Lamp Power LAMP(BRTC) Table POWER SEQUENCE Parameter Values Units Notes Please avoid floating state interface signal invalid period. When interface signal invalid, sure pull down power supply VLCD Lamp power must turn after power supply interface signal valid. Ver. Dec. 2003 LC260W01 Liquid Crystal Display Optical Specification Optical characteristics determined after unit been `ON' stable approximately 30min dark environment 25±2°C. values specified approximate distance 50cm from surface viewing angle equal FIG. presents additional information concerning measurement equipment method. FIG. Optical Characteristic Measurement Equipment Method Optical Stage(x,y) Module Pritchard equivalent 500mm Table OPTICAL CHARACTERISTICS Parameter Contrast Ratio Surface Luminance, white Luminance Variation Response Time Rise Time Decay Time GREEN BLUE WHITE Viewing Angle (CR>10) axis, right(=0°) axis, left (=180°) axis, (=90°) axis, down (=270°) Gray Scale degree Symbol WHITE -0.03 Values 0.285 0.293 +0.03 cd/m2 Ta:25±2 VLCD:12.0V, fV:60Hz, Dclk:80MHz, VBR=High Units Notes Color Coordinates Ver. Dec. 2003 LC260W01 Liquid Crystal Display Notes Contrast Ratio(CR) defined mathematically Surface Luminance with white pixels Contrast Ratio Surface Luminance with black pixels Surface luminance center point(1). Surface luminance center point(1) across surface 50cm from surface with pixels displaying white under condition IBL=6mArms. more information variation surface luminance WHITE defined measuring watch test position through then dividing maximum points luminance minimum each 5points luminance. more information WHITE Maximum (LON1, LON2, LON5 Minimum (LON1, LON2, LON5 Response time time required display transition from black white (Rise Time, TrR) from white black (Decay Time, TrD). additional information Viewing angle angle which contrast ratio greater than angles determined horizontal axis vertical axis with respect axis which normal surface. more information Gray scale specification Gamma Value approximately 2.2. more information Table Table Gray Scale Specification Gray Level L111 L127 L143 L159 L175 L191 L207 L223 L239 L255 Ver. Dec. 2003 Luminance (Typ) 0.30 0.65 1.20 2.50 4.68 7.80 11.7 16.0 21.2 27.7 35.2 43.5 53.0 63.7 75.4 86.4 LC260W01 Liquid Crystal Display FIG. Luminance <measuring point surface luminance measuring point luminance variation> 566.4 339.84 Active Area Active Area FIG. Response Time response time defined following figure shall measured switching input signal "black" "white". Optical Response Ver. Dec. 2003 LC260W01 Liquid Crystal Display FIG. Viewing angle <Dimension viewing angle range> Normal 90°, 180°, Left Right 270°, Down Ver. Dec. 2003 LC260W01 Liquid Crystal Display Mechanical Characteristics contents provide general mechanical characteristics. addition figures next page detailed mechanical drawing LCD. Horizontal Outline Dimension Vertical Depth Horizontal Bezel Area Vertical Horizontal Active Display Area Vertical Weight Surface Treatment Hard coating(3H) Anti-glare treatment front polarizer 339.84mm 344.9mm 566.4mm 622.0mm 389.0mm 53.0mm 571.4mm Note Attached Drawing(Front Rear View) Ver. Dec. 2003 LC260W01 Liquid Crystal Display <FRONT VIEW> Ver. Dec. 2003 LC260W01 Liquid Crystal Display <REAR VIEW> Ver. Dec. 2003 LC260W01 Liquid Crystal Display Reliability Environment test condition Test Item Condition High temperature storage test temperature storage test High temperature operation test temperature operation test Vibration test (non-operating) 60°C 240h -20°C 240h 50°C 50%RH 240h 240h Wave form random Vibration level 1.0Grms Bandwidth 10-500Hz Duration X,Y,Z, time each direction Shock level 100Grms Waveform half sine wave, Direction time each direction ,90%RH 14,000 feet(4267.2m) 40,000 feet(12192m) Shock test (non-operating) Humidity condition Operation Altitude operating storage shipment Ver. Dec. 2003 LC260W01 Liquid Crystal Display International Standards 7-1. Safety 60950 Third Edition, Underwriters Laboratories, Inc. Dated Dec. 2000. Standard Safety Information Technology Equipment Including Electrical Business Equipment. CAN/CSA C22.2 60950, Third Edition, Canadian Standards Association, Dec. 2000. Standard Safety Information Technology Equipment Including Electrical Business Equipment. 60950 2000, Third Edition 60950 1999, Third Edition European Committee Electrotechnical Standardization(CENELEC) EUROPEAN STANDARD Safety Information Technology Equipment Including Electrical Business Equipment. 7-2. ANSI C63.4 "Methods Measurement Radio-Noise Emissions from Low-Voltage Electrical Electrical Equipment Range 9kHZ 40GHz. "American National Standards Institute(ANSI), 1992 C.I.S.P.R "Limits Methods Measurement Radio Interface Characteristics Information Technology Equipment." International Special Committee Radio Interference. 55022 "Limits Methods Measurement Radio Interface Characteristics Information Technology Equipment." European Committee Electrotechnical Standardization.(CENELEC), 1998 (Including A1:2000) Ver. Dec. 2003 LC260W01 Liquid Crystal Display Packing 8-1. Designation Mark Mark A,B,C SIZE YEAR MONTH PANEL CODE ASSEMBLY CODE I,J,K,L,M SERIAL Note YEAR Year Mark 2000 2001 2002 2003 2004 2005 2006 2007 MONTH Month Mark Serial Year Mark 99999 00001 99999 100000 A0001 A9999, Z9999 Location Mark Serial printed label. label attached backside module. This subject change without prior notice. 8-2. Packing Form Package quantity 4pcs Size 853X497X555 Ver. Dec. 2003 LC260W01 Liquid Crystal Display PRECAUTIONS Please attention followings when this module. 9-1. MOUNTING PRECAUTIONS must mount module using holes arranged four corners four sides. should consider mounting structure that uneven force (ex. Twisted stress) applied module. case which module mounted should have sufficient strength that external force transmitted directly module. Please attach surface transparent protective plate surface order protect polarizer. Transparent protective plate should have sufficient strength order resist external force. should adopt radiation structure satisfy temperature specification. Acetic acid type chlorine type materials cover case desirable because former generates corrosive attacking polarizer high temperature latter causes circuit break electro-chemical reaction. touch, push exposed polarizers with glass, tweezers anything harder than pencil lead. please with dust clothes with chemical treatment. touch surface polarizer bare hand greasy cloth.(Some cosmetics detrimental polarizer.) When surface becomes dusty, please wipe gently with absorbent cotton other soft materials like chamois soaks with petroleum benzene. Normal-hexane recommended cleaning adhesives used attach front rear polarizers. acetone, toluene alcohol because they cause chemical damage polarizer. Wipe saliva water drops soon possible. Their long time contact with polarizer causes deformations color fading. open case because inside circuits have sufficient strength. 9-2. OPERATING PRECAUTIONS spike noise causes mis-operation circuits. should lower than following voltage V=±200mV(Over under shoot voltage) Response time depends temperature.(In lower temperature, becomes longer.) Brightness depends temperature. lower temperature, becomes lower.) lower temperature, response time(required time that brightness stable after turned becomes longer. careful condensation sudden temperature change. Condensation makes damage polarizer electrical contacted parts. after fading condensation, smear spot will occur. When fixed patterns displayed long time, remnant image likely occur. Module high frequency circuits. Sufficient suppression electromagnetic interference shall done system manufacturers. Grounding shielding methods important minimized interference. Please give mechanical and/or acoustical impact LCM. Otherwise, operated full characteristics perfectly. screw which fastened steels should machine screw not, causes metal foreign material deal fatal blow) Please edge. Ver. Dec. 2003 LC260W01 Liquid Crystal Display 9-3. ELECTROSTATIC DISCHARGE CONTROL Since module composed electronic circuits, strong electrostatic discharge. Make certain that treatment persons connected ground through wrist band etc. don't touch interface directly. 9-4. PRECAUTIONS STRONG LIGHT EXPOSURE Strong light exposure causes degradation polarizer color filter. 9-5. STORAGE When storing modules spares long time, following precautions necessary. Store them dark place. expose module sunlight fluorescent light. Keep temperature between 35°C normal humidity. polarizer surface should come contact with other object. recommended that they stored container which they were shipped. 9-6. HANDLING PRECAUTIONS PROTECTION FILM protection film attached bezel with small masking tape. When protection film peeled off, static electricity generated between film polarizer. This should peeled slowly carefully people electrically grounded with well ion-blown equipment such condition, etc. When module with protection film attached stored long time, sometimes there remains very small amount glue still bezel after protection film peeled off. remove glue easily. When glue remains bezel surface vestige recognized, please wipe them with absorbent cotton waste other soft material like chamois soaked with normal -hexane. Ver. 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