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MOP-TFT1024600W-101A/G -IPS
Hardware Manual
Revision 1.0

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Summary of Contents for Matrix Orbital MOP-TFT1024600W-101A/G -IPS

  • Page 1 MOP-TFT1024600W-101A/G -IPS Hardware Manual Revision 1.0...
  • Page 2: Table Of Contents

    Contents Contents ....................................... 1 1 Contact ......................................2 2 Customization ....................................2 3 General Information ..................................3 Part Numbering ....................................4 4 Dimensions ......................................5 4.1 MOP-TFT1024600W-101A TPN............................... 5 4.2 MOP-TFT1024600W-101A TPR ............................... 6 4.3 MOP-TFT1024600W-101A TPC ............................... 7 4.4 MOP-TFT1024600W-101G TPC ............................... 8 5 Electrical Characteristics ..................................
  • Page 3: Contact

    Contact On Shore and In-House Design In-House Manufacturing In-House Sales In-House Support In Calgary, Canada Sales Support Online Phone: (403) 229-2737 Phone: (403) 229-2737 Purchasing: www.matrixorbital.com Email: sales@matrixorbital.ca Email: support@matrixorbital.ca Support: www.matrixorbital.com Free support forums https://www.lcdforums.com/forums Example Code on GitHub https://github.com/MatrixOrbital Customization Need a custom solution? No problem! Since we manufacture our products in-house, we are highly flexible, have...
  • Page 4: General Information

    3 General Information The MOP-TFT1024768W-121 is a 12.1” IPS TFT. Item Contents Unit Display Size (Diagonal) 10.1” inch Display type IPS TFT Resolution 1024x600 Pixels Display Mode Transmissive, Normally Black Backlight LED, 1100 cd/m2, 50,000 hours View Direction Free Gray Scale Inversion Direction None Module Outline 235.0 (W) x 143.0 (H)
  • Page 5: Part Numbering

    Part Numbering 1024 Designator Options Product Line MOP: Matrix Orbital Parallel Display Screen Type TFT: Graphic TFT Display Columns 1024 Display Rows Model 39: 3.9” 43: 4.3” Display Size 50: 5.0” 70: 7.0” 101: 10.1” A: Standard TFT Display Form Factor...
  • Page 6: Dimensions

    4 Dimensions 4.1 MOP-TFT1024600W-101A TPN...
  • Page 7: Mop-Tft1024600W-101A Tpr

    4.2 MOP-TFT1024600W-101A TPR...
  • Page 8: Mop-Tft1024600W-101A Tpc

    4.3 MOP-TFT1024600W-101A TPC...
  • Page 9: Mop-Tft1024600W-101G Tpc

    4.4 MOP-TFT1024600W-101G TPC...
  • Page 10: Electrical Characteristics

    Electrical Characteristics ITEM SYMBOL UNIT NOTE Digital Power Supply Voltage For LCD Note1 Analog Power Supply Voltage AVDD 9.89 10.2 10.5 Gate On Power Supply Voltage 19.4 20.0 20.6 Gate Off Power Supply Voltage -10.3 -10.0 -9.7 Common Power Supply Voltage VCOM Note2 Input logic high voltage...
  • Page 11: Optical Characteristics

    Optical Characteristics Item Symbol Condition. Typ. Max. Unit Response time θ=0°、Φ=0° Contrast ratio At optimized 1000 viewing angle Color White 0.263 0.313 0.363 θ=0°、Φ=0 Chromaticity 0.279 0.329 0.379 Viewing angle Hor. ΘR CR≧10 Deg. ΘL Ver. ΦT ΦB Uniformity Brightness 1100 cd/m2 Values at 25°C, 60% RH, at 50k hours backlight will be at 50% brightness...
  • Page 12: Touch Panel Characteristics

    Touch Panel Characteristics Coordinate Origin: top left corner Parameter -TPR (resistive) -TPC (capacitive) Touch Points Hardness 8.1 Resistive Touch Item Typ. 60 – 100 grams Operation Force X: 300 - 1000 Resistance Y: 100 - 450 *Note: Do not operate it with a thing except a polyacetal pen (tip R0.8mm or less) or a finger, especially those with hard or sharp tips such as a ball point pen or a mechanical pencil.
  • Page 13: Interface Description

    Interface Description 9.1 40 pin LVDS Pin No. Symbol Description VCOM Common voltage Digital power Digital power Not connect Global reset pin. Active low to enter reset state. Suggest to connecting with an RC reset Reset circuit for stability. Normally pull high. (R=10KΩ,C=1μF) Standby mode, normally pull high STBYB=”1”, normal operation STBYB...
  • Page 14: Capacitive Touch

    When U/D=”1”,set bottom to top scan direction. 9.2 Capacitive Touch MOP-TFT1024600W-101A TPC Suggested mating FFC connector, 10 position, 0.5mm pitch, Bottom contact. FFC Header Part Number Matrix Orbital Molex Name Description USB GND Ground USB VCC 5.0V...
  • Page 15: Interface Pixel Timing

    Matrix Orbital Molex Name Description I2C Data I2C Clock Power /RST External Reset, Low is active /INT Interrupt Ground *Note: Pull up resistors of 10K ohms to VDD are recommended for RST and INT **Note: Pull up resistors of 1k-10k ohms to VDD are required for SCL and SDA...
  • Page 16: Power Sequence

    Power Sequence Power-On/Off Timing Sequence Power On/Off timing chart...
  • Page 17: Timing Characteristics

    Timing Characteristics Parameter Symbol condition Min. Typ. Max. Unit Clock frequency R xFCLK |VID|=400mV Input data skew margin T RSKM RxVCM=1.2V RxFCLK=71MHz Clock high time T LVCH 4/(7* R xFCLK ) T LVCL Clock low time 3/(7* R xFCLK ) PLL wake-up-time TenPLL Environmental...
  • Page 18: Inspection Criterion

    Inspection Criterion Description This specification is made to be used as the standard acceptance/rejection criteria. Sample plan Sampling plan: 1999 and ANSI/ASQC Z1.4-1993 Single sampling, normal inspection Visual inspection: AQL 1.5% Electrical functional: AQL 0.65% Inspection condition Viewing distance for cosmetic inspection is about 30±2 cm with bare eyes, and under a 1000~1500lux environment for •...
  • Page 19: Handling Precautions

    Judgment criterion Checking item Figure Diameter(mm)\LCD Size S ≤5.0 Inch D≤0.10 Allowed 0.10<D≤0.15 0.15<D≤0.25 Dot defect 0.25<D Total D=(a+b)/2 Distance between 2 defects should be more than 3mm apart. Length(mm) Width(mm) Judgment criterion W≤0.03 allowed L≤2.5 0.03<W≤0.05 L≤2.5 0.05<W≤0.10 Line defect 0.1<W Total Distance between 2 defects should more than 3mm apart.
  • Page 20: Revision History

    Precautions during Operation It is an indispensable condition to drive the LCD module within the specified voltage limits. Applying voltage higher than • the limit will reduce the life span of the LCD. Using direct drive current should be avoided, as it will induce an electrochemical reaction causing undesirable •...

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