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Shenzhen FRIDA LCD Co., Ltd

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10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits

    Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers
     
    Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers
    • Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers
    • Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers
    • Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers
    • Buy cheap 10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits from wholesalers

    10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits

    Ask Lasest Price
    Brand Name : BOE
    Model Number : BP101WX1-206
    Certification : ROHS
    Price : USD37
    Payment Terms : T/T
    Supply Ability : 5000pcs
    Delivery Time : 10work days
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    10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits

    10.1 Inch 1280x800 Tft Lcd Display 40 Pins Lvds BP101WX1-206 330 Nits

    General Description:

    The manufacturer of BP101WX1-206 is BOE /BOE, the resolution is 1280×800, the display ratio is 16:10, the pixel arrangement is RGB vertical strip, and the point distance is 0.0565× 0.1695mm, panel type is A-SI TFT-LCD, prominent features are white LED, built-in LED driver, wide viewing Angle. Display mode is ADS, normal black display, transmission type. Contrast ratio is 600:1, color saturation is 50%NTSC, response time is 25 ms, optimal viewing Angle is symmetrical up and down, drive screen voltage is 3.3V, panel input current is 303mA,The operating temperature is 0°C to 50 °C, the storage temperature is -20°C to 60°C, the backlight type is WLED, the backlight life is 15K Hours, the single tube voltage is 16.8V, the single tube current is 120mA, the LED driver module is included, the backlight interface brand is I-PEX. The model of the backlight interface is 20455-040E-12, and the backlight interface is defined as LVDS-40P1C6B-050H.


    Features:


    • 1 Channel LVDS Interface with 1 pixel / clock
    • Thin and light weight
    • Display 16.7M colors (Hi FRC)
    • High luminance and contrast ratio, low reflection and wide viewing angle
    • DE (Data Enable) signal mode
    • 3.3V for Logic Power and 3.7V for LED Back Light Power
    • RoHS Compliant

    Specifications:

    ParameterSpecificationUnitRemarks
    Active area216.96(H) × 135.60(V)mm
    Number of pixels1280(H) × 800(V)pixels
    Pixel pitch169.5
    Pixel arrangementPixels RGB stripe arrangement
    Display colors16.7M(6bits + Hi-FRC)colors
    Display modeTransmission mode. Normally Black
    Outline Dimension228.6 × 149.2 × 2.39typ.mm
    Weight150 (max)gram
    Surface TreatmentHard Coating, 3H, Low Reflection (Front Polarizer)
    Back-lightBottom edge side, 1-LED Lighting Bar Type36* LED Array

    ParameterSymbolMin.Max.UnitRemarks
    Power Supply Voltage (LCD Module)

    VDD

    -0.34.2V
    Back-light Power Supply VoltageHVDDOUT-0.318V
    Back-light LED Current

    IHVDD

    -96mA
    Back-light LED Reverse Voltage

    VR

    -2V
    Operating TemperatureTOP0+50C
    Storage Temperature

    TST

    -20+60C


    Electrical Specifications:

    Parameter

    Symbol

    Values

    Unit

    Notes

    MinTyp.Max
    Power Supply Input VoltageVDD3.03.33.6VNote 1
    Power Supply CurrentIDD-303-mA
    LED Driver Power Supply VoltageHVDD3

    -

    18V


    Note 2

    LED Driver Power Supply CurrentIHVDD

    -

    568

    -

    mA
    LED Driver Efficiencyη-85-%
    Positive-going Input Threshold Voltage

    VIT+

    -

    -

    +100mV

    Vcom = 1.2V

    typ.

    Negative-going Input Threshold Voltage

    VIT-

    -100

    -

    -

    mV
    Differential input common mode voltage

    Vcom

    -

    1.2

    -

    VVIH=100mV, VIL=-100mV

    Power Consumption

    PD

    -1.0W

    PBL

    -2.4WHave Driver

    PTotal

    -3.4W













    Notes: 1.The supply voltage is measured and specified at the interface connector of LCM.The current draw and power consumption specified is for 3.7V at 25C Max value at White Pattern. 2.Calculated value for reference(VLED X ILED) 3.CTF of Power Supply Current:PD/PBL.


    Optical Specification:


    ParameterSymbolConditionMin.Typ.Max.UnitRemark
    Viewing Angle rangeHorizontalΘ3CR > 107080-Deg.Note 1
    Θ97080-Deg.
    VerticalΘ127080-Deg.
    Θ67080-Deg.
    Color Gamut-50-%
    Luminance Contrast ratioCRΘ = 0.600--Note 2
    Luminance of White5 PointsY

    Θ = 0.

    280330-cd/m2

    White

    Luminance

    uniformity

    5 PointsΔY5-80-
    White ChromaticityWxΘ = 0.Typ. -0.030.313Typ. +0.03
    Wy0.329
    Reproduction of colorRedRxΘ = 0.

    Typ. -0.03

    0.600

    Typ. +0.03

    R0.340
    GreenGx0.315
    G0.565
    BlueBx0.150
    By
    0.125
    Response Time (Rising + Falling)TRT

    Ta= 25.C

    Θ = 0.

    -25-ms
    Cross TalkCTΘ = 0.--2.0%

    Notes :

    1. Viewing angle is the angle at which the contrast ratio is greater than 10. The viewing angles are determined for the horizontal or 3, 9 o’clock direction and the vertical or 6, 12 o’clock direction with respect to the optical axis which is normal to the LCD surface.

    2. Contrast measurements shall be made at viewing angle of Θ= 0 and at the center of the LCD surface. Luminance shall be measured with all pixels in the view field set first to white, then to the dark (black) state . Luminance Contrast Ratio (CR) is defined mathematically.

    Interface Connection:


    The electronics interface connector is 20455-040E-12.

    TerminalSymbolFunctions
    Pin No.SymbolDescription
    1NCNon Connection
    2VDDINPower supply VDDIN=3.3V (Typ.)
    3VDDIN
    4VDCPower supply VDC=3.3V (Typ.)
    5NCNon Connection
    6CLK EDIDCLK for EDID function use
    7Data EDIDCLK for EDID function use
    8RIN0-LVDS Negative data signal (-)
    9RIN0+LVDS Positive data signal (+)
    10GNDGROUND
    11RIN1-LVDS Negative data signal (-)
    12RIN1+LVDS Positive data signal (+)
    13GNDGROUND
    14RIN2-LVDS Negative data signal (-)
    15RIN2+LVDS Positive data signal (+)
    16GNDGROUND
    17LVDS_CLK-LVDS Negative CLK signal (-)
    18LVDS_CLK+LVDS Positive CLK signal (+)
    19GNDGROUND
    20RIN3-

    LVDS Negative data signal (-)

    21RIN3+LVDS Positive data signal (+)
    22CE_ENColor engine enable
    23NCNon Connection
    24NCNon Connection
    25GNDGROUND
    26NCNon Connection
    27NCNon Connection
    28GNDGROUND
    29NCNon Connection
    30NCNon Connection
    31LED_GND

    LED GROUND

    32LED_GND
    33LED_GND
    34NCNon Connection
    35LED_PWMLED driver PWM duty
    36LED_ENLED driver enable
    37CABC_ENCABC function enable
    38VLED

    Power supply VLED=3~18V (Typ.)

    39VLED
    40VLED

    Dimensional Requirements:


    ParameterSpecificationUnit
    Active Area216.96 (H) × 135.6 (V)
    Number of pixels1280(H) X800 (V) (1 pixel = R + G + B dots)
    Pixel pitch0.1695
    Pixel arrangementRGB Vertical stripe
    Display colors16.7M
    Display modeNormally Black
    Dimensional outline228.6*149.26*2.39 (Typ.)mm
    Weight150 (Max)gram
    Back-lightLED, Horizontal-LED Array type

    Matters Needing Attention:


    Cautions for handling the module:As the electrostatic discharges may break the LCD module, handle the LCD module with care. Peel a protection sheet off from the LCD panel surface as slowly as possible.As the LCD panel and back - light element are made from fragile glass material, impulse and pressure to the LCD module should be avoided.As the surface of the polarizer is very soft and easily scratched, use a soft dry cloth without chemicals for cleaning.

    Cautions for the module characteristics:Do not apply fixed pattern data signal to the LCD module at product aging.Applying fixed pattern for a long time may cause image sticking.

    Cautions for the operation:When the module is operating, do not lose CLK, ENAB signals. If any one of these signals is lost, the LCD panel would be damaged. Obey the supply voltage sequence. If wrong sequence is applied, the module would be damaged.


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