GF5006 JHE | Alldatasheet
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7" Color TFT-LCD Module Model Name: GF5006 JEWELHILL ELECTRONIC CO.,LTD Customer's Confirmation Customer Date: 2005-07-01 Ver.: 1.0 Date By
SummaryPageRevision DateRevision No. GF5006 Ver.:1.0 Date:07/01/2005
- Summary 3. General Specification This module utilizes amorphous silicon thin film transistors and a 16:9 aspect ratio. A 7.0” active matrix liquid crystal display allows full color to be displayed. The applications are Portable DVD, Multimedia applications and others AV system. Analog Video InterfaceVideo Signal Interface 7.0” (17.78cm)Screen Size (Diagonal) 0.107mm (W) X 0.370mm (H)Dot Pitch Anti-Glare TreatmentSurface Treatment CCFL with 3 wave-length spectrum (L Type)Backlight 162g (TYP.)Weight RGB vertical stripesColor Filter Array 480(W) X 3(RGB) X 234(H)Number Of dots 154.08mm (W) X 86.58mm (H)Active Area 164.9mm (W) X 100mm (H) X 5.7mm (D)Outline Dimension TN Type Full Color / Transmitting Type / Normally White Display Mode a-Si TFT active matrixDisplay Technology SPECIFICATIONCHARACTERISTIC ITEM 2. Features
- Utilizes a panel with a 16:9 aspect ratio, which makes the module suitable for use in wide-screen systems.
- The 7.0” screen produces a high resolution image that is composed of 112,320 pixel elements in a stripe arrangement. By adopting an active matrix drive, a picture with high contrast is realized.
- A thin, light and compact module is accomplished through the use of COG mounting technology. GF5006 Ver.:1.0 Date:07/01/2005
I I I I I I I I I/O I/O I I I I I I I I I/O I/O I I I I/O Alternated video signal input (Blue)VB24 Supply voltage for analog circuitAVDD25 Ground for analog circuitAVSS26 Alternated video signal input (Green)VG23 Alternated video signal input (Red)VR22 Ground for logic circuitGND21 Supply voltage of logic control circuitVCC20 Sampling and shifting clock pulse for data driverCHP119 Sampling and shifting clock pulse for data driverCPH218 Sampling and shifting clock pulse for data driverCPH317 Start pulse for horizontal scan lineSTHR16 Start pulse for horizontal scan lineVDD215 Output enable input for data driverSTHL14 Analog signal rotate inputMOD13 LEFT/RIGHT scan control inputL/R12 Common electrode driving signalVCOM11 Common electrode driving signalVCOM10 Output enable input for scan driverOEV9 UP/DOWN scan control inputU/D8 Shift clock input for scan driverCKV7 Vertical start pulseSTVL6 Vertical start pulseSTVR5 Positive power for scan driverVGH4 Negative power for scan driverVGL3 Supply voltage for logic control circuitVCC2 Ground for logic circuitGND1 REMARKFUNCTIONSYMBOLPin No. 4. Interface (Input terminal) 4.1. TFT-LCD Panel Driving Part GF5006 Ver.:1.0 Date:07/01/2005
The backlight interface connector is a model BHSR-02VS-1 manufactured by JST or a model 1674817-1 manufactured by AMP. The matching connector part number is SM02B-BHSS-1-TB manufactured by JST or equivalent. [Note 4-1] The wire color of high voltage side is pink. [Note 4-2] The wire color of low voltage side is white. Connect the low voltage side of the DC/AC inverter used to drive the fluorescent tube to GND of the inverter circuit. 4.2. Backlight Fluorescent Tube Driving Part [Note 4-2]Ground for backlight unitGND2 [Note 4-1] REMARK Power supply for backlight unit (high voltage)HI1 FUCTIONSYMBOLPin No. GF5006 Ver.:1.0 Date:07/01/2005
- Absolute Maximum Ratings Note 1 : VR, VG, VB Note 2 : STHL, STHR, Q1H, OEH , L/R , CPH1-CPH3, STVR , STVL ,OEV ,CKV ,U/D Item Symbol Condition Min. Max. Unit Remark Vcc GND=0 -0.3 7 V AVDD AVSS=0 -0.3 7 V VGH -0.3 18 V VGL -15 0.3 V VGH -VGL - 33 V Vi -0.3 AVDD+0.3 VN o t e 1 Vl -0.3 Vcc+0.3 V Note 2 VCOM -2.9 5.2 V Operating Temperature Top -10 60 ℃ Ambient temperature Storage Temperature Tst -20 70 ℃ Ambient temperature Power v oltage GND=0 Input signal volt age GF5006 Ver.:1.0 Date:07/01/2005
- Electrical Characteristics 6.1. Recommended Operating Conditions
6.1.1 TFT-LCD Panel Driving Section T a=25 ℃
Note 1 : The same phase and amplitude with common electrode driving signal (VCOM) . Note 2 : Refer to Fig.4-(a) . Note 3 : The brightness of LCD panel could be changed adjusting the AC component of VCOM . Note 4 : STHL,STHR,Q1H,OEH,L/R,CPH1∼CPH3,STVR,STVL,OEV,CKV,U/D . Note 5 : Be sure to apply GND, Vcc and VGL (VGL must lower than 0 volt) to the LCD first, and then apply VGH . Symbol Min. Typ. Max. Unit Remark Vcc 3 5 5.2 V AVDD 4.8 5 5.2 V VGH 14.3 15 15.7 V VGL -10.5 -10 -9.5 V ViA 0.4 - AVDD-0.4 V Note 2 ViAC - 3.2 - V AC component ViDC - AVDD/2 - V DC component VCAC 3.5 4.8 6.1 V AC component, Note 3 VCDC 1.7 2 2.3 V DC component H Level VIH 0.8Vcc - Vcc V L Level VIL 0 - 0.2Vcc V VGH=15V IGH - 0.2 0.5 mA VGL=-10V IGL - 0.8 1.5 mA VCC=5V ICC - 3.0 6.0 mA AVDD=5V IDD - 17 30 mA Item Note 4Input Signal volt age Current for driver Power supply Video signal amplitude (VR, VG, VB) VCOM GF5006 Ver.:1.0 Date:07/01/2005
6.1.2 Backlight Driving Section
Parameter Symbol Min. T yp. Max. Unit Remark Lamp voltage VL - (555) (670) Vrms Note 1 Lamp current IL 4 (6) (7) mArms Note 1 Power consumption PL - (3.33) (3.71) W Note 2 - - (1350) T=25 ℃ Frequency FL - (70) - KHZ Note 3 Lamp life time LL (20,000) - Hr Note 1, 4 Vrms Lamp starting voltage Note 1: T= 25℃, IL = 6.0mA Note 2: Inverter should be designed with the characteristic of lamp. When you are designing the inverter, the output voltage of the inverter should comply with the following conditions. (1). The area under the positive and negative cycles of the waveform of the lamp current and lamp voltage should be area symmetric(the symmetric ratio should be larger than 90%). (2). There should not be any spikes in the waveform. (3). The waveform should be sine wave as possible. (4). Lamp current should not exceed the maximum value within the operating Temperature (It is prohibited to over the maximum lamp current even if operated in the non-guaranteed temperature). When lamp current over the maximum value for a long time, it may cause fire. Therefore, it is recommend hat the inverter should have the current limited circuit. Note 3: Lamp frequency may produce interference with horizontal synchronous frequency and this may cause line flow on the display. Therefore lamp frequency shall be detached from the horizontal synchronous frequency and its harmonics as far as possible in order to avoid interference. Note 4: Brightness (IL=6.0mA) to be decrease to the 50% of the initial value. Note 5: CN2 connector(backlight): JST BHSR-02VS-1 Mating connector: JST SM02B-BHSS-1-TB GF5006 Ver.:1.0 Date:07/01/2005
6.2. Timing Characteristics of input signals Parame te r Symbol Min. T yp. Max. Unit Remark Rising time tr - - (10) ns Note 1 Falling time tf - - (10) ns Note 1 High and low level pulse width tCPH (99) (103) (107) ns CPH1-CPH3 CPH pulse duty tCWH (40) (50) (60) % CPH1-CPH3 tC12 tC23 tC31 STH setup time tSUH (20) - - ns STHR,STHL STH hold time tHDH (200) - - ns STHR,STHL STH pulse width tSTH - (1) - tCPH STHR,STHL STH period tH (61.5) (63.5) (65.5) µs STHR,STHL OEH pulse width tOEH - (1.22) - tCPH OEH Sample and hold disable time tDIS1 - (8.28) - tCPH OEV pulse width tOEV - (5.4) - tCPH OEV CKV pulse width tCKV - (4.18) - tCPH CKV Clean enable time tDIS2 - (3.74) - tCPH Horizontal display start tSH - (0) - tCPH/3 Horizontal display timing range tDH - (1440) - tCPH/3 STV setup time tSUV (400) - - ns STVL,STVR STV hold time tHDV (400) - - ns STVL,STVR STV pulse width tSTV - - (1) tH STVL,STVR Horizontal lines per field tV (256) (262) (268) tH Note 2 Vertical display start tSV - (3) - tH Vertical display timing range tDV - (234) - tH VCOM rising time trCOM - - (5) µs VCOM falling time tfCOM - - (5) µs VCOM delay time tDCOM - - (3) µs RGB delay time tDRGB - - (1) µs ns CPH1-CPH3CPH pulse delay (30) tCPH/3 tCPH/2 Note 1: For all of the logic signals. Note 2: Please don’t use odd horizontal lines drive LCD panel for both odd even field simultaneously. Note 3: Timing diagram: Please refer to the attached drawing from Fig.2 to Fig.6. GF5006 Ver.:1.0 Date:07/01/2005
6.3. Signal For Reverse Scanning ***** H(High Level) =VCC / L(Low Level)=GND 6.4. Sampling Mode Change Sequential Sampling Mode L (Low Level) Simultaneous Sampling ModeMOD H (High Level)SEQ/SIM U/ D L/ R ST VR ST VL ST HR ST HL GND Vcc OUT I N OUT I N From up to down, f rom lef t to right. V cc G ND IN O UT IN O UT From down to up, from right to left. GND GND OUT I N I N OUT From up to down, f rom right to lef t V cc V cc IN O UT O UT IN From down to up, from left to right Setting of scan control input I N/OUT state For start pulse Scanning direction GF5006 Ver.:1.0 Date:07/01/2005
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- Electro-optical Characteristics ms ms cd/m2 UNIT (60)(20)-τdFall [Note 7-4] (50)(10)- Θ=0 。τrRiseResponse Time -(60)(50)ΘdΦ=270° -(40)(30)ΘuΦ=90° -(60)(50)ΘrΦ=0° [Note 7-2] [Note 7-3] -(60)(50) CR≥10 ΘlΦ=180° Viewing Angle [Note 7-1] (0.36)(0.31)(0.26) IBL=6mArms WxWhite Color Chromaticity [Note 7-2]-(200)-OptimalCRContrast Ratio [Note 7-1]-(350)-IBL=6mArmsYLuminance REMARKMAX.TYP.MIN.CONDITIONSYMBOLPARAMETER Ta=25 ℃ Photo detector Field = 1 ° Center LCD Module Optical Stage(x,y) ; BM-7 or equivalent 500mm Measuring Condition ; -Measuring surroundings : Dark Room -Measuring temperature : Ta=25℃ -Adjust operating voltage to get optimum contrast at the center of the display. -Measured value at the center point of LCD panel after more than 30 minutes while backlight turning on. GF5006 Ver.:1.0 Date:07/01/2005
[Note 7-1] Measured on the center area of the panel by TOPCON photometer BM-7 or equivalent. [Note 7-2] Contrast ratio is defined as follows ; Contrast Ratio(CR) = Photo detector output with LCD being “white” Photo detector output with LCD being “black” [Note 7-3] Viewing angle range is defined as follows; Φ=90°, UP Φ=0°, Right Φ=180°, LEFT Φ=270°, DOWN [ Normal scanning Mode view ] GF5006 Ver.:1.0 Date:07/01/2005 20 / 27
[Note 7-4] Response time is obtained by measuring the transition time of photo detector output, when input signals are applied so as to make the area “black” to and from “white”. 10% 90% White White Black Time Photo detector Output τr τd 100% GF5006 Ver.:1.0 Date:07/01/2005
- Mechanical Characteristics g mm mm mm mm mm mm mm UNIT 162 (TYP.) 86.58 154.08 88.7 156.2 5.7 (TYP.) 100 164.9 Anti-Glare TreatmentSurface Treatment Weight Height Width Active Display Area Height Width Bezel Area Depth Height Width Outline Dimension REMARKSPECIFICATIONPARAMETER GF5006 Ver.:1.0 Date:07/01/2005
Ver.:1.0 Date:07/01/2005 GF5006 OUTLINE DRAWING
- Reliability Test Half sine wave, 180G, 2ms one shock of each six faces (I.e. run 180G 2ms for all six faces) Sine wave, 10 ~ 500 ~ 10Hz, 1.5G, 0.37oct/min 3 axis, 1hour/axis Ta=40℃ 90%RH 240h Ta=-10℃ 240h Ta=60℃ 50%RH 240h Ta=-20℃ 240h Ta=70℃ 240h Test Condition REMARK High Temperature and High Humidity Operation Test5 Shock Test (non-operating) Vibration Test (non-operating) Thermal Shock Test6 Low Temperature Operation Test4 High Temperature Operation Test3 Low Temperature Storage Test2 High Temperature Storage Test1 Test ItemsNo. ***** Ta= Ambient Temperature GF5006 Ver.:1.0 Date:07/01/2005
(H) double wall corrugated fibreboard Inner Box(2*3*3=18 boxes) P.P. Packing band Anti-Static Electricity Bag LCM double wall corrugated fibreboard (W) (H) (L) OPP Tape 10. Packing Form b. Outer package (1) Quantity : 540pcs/ 1Box (2) Size : (L)1040x(W)810x(H)950 ( unit :mm) a. Inner package (1) Quantity : 30pcs/ 1Box (2) Size : (L)488x(W)251x(H)253 ( unit :mm) (W) (L) GF5006 Ver.:1.0 Date:07/01/2005
- PRECAUTIONS Please pay attention to the following when you use this TFT LCD module. 11-1. MOUNTING PRECAUTIONS (1) You must mount a module using holes arranged in four corners or four sides. (2) 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. (3) 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 electro-chemical 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. Normal-hexane 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. 11-2. OPERATING PRECAUTIONS (1) The spike noise causes the mis-operation of circuits. It should be lower than following voltage : V=±200mV(Over and under shoot voltage) (2) Response time depends on the temperature.(In lower temperature, it becomes longer.) (3) 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. GF5006 Ver.:1.0 Date:07/01/2005
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. 11-3. ELECTROSTATIC DISCHARGE CONTROL Strong light exposure causes degradation of polarizer and color filter. 11-4. PRECAUTIONS FOR STRONG LIGHT EXPOSURE When storing modules as spares for a long time, the following precautions are necessary. (1) Store them in a dark place. Do not expose the module to sunlight or fluorescent light. Keep the temperature between 5°C and 35°C at normal humidity. (2) 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. 11-5. STORAGE (1) 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 ion-blown equipment or in such a condition, etc. (2) The protection film is attached to the polarizer with a small amount of glue. If some stress is applied to rub the protection film against the polarizer during the time you peel off the film, the glue is apt to remain on the polarizer. Please carefully peel off the protection film without rubbing it against the polarizer. (3) 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 polarizer after the protection film is peeled off. (4) You can remove the glue easily. When the glue remains on the polarizer surface or its vestige is recognized, please wipe them off with absorbent cotton waste or other soft material like chamois soaked with normal-hexane. 11-6. HANDLING PRECAUTIONS FOR PROTECTION FILM GF5006 Ver.:1.0 Date:07/01/2005 27 / 27