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waterproof raspberry pi 7 inch touch screen display

Short Description:


  • Min.Order Quantity: 1 Piece/Pieces ( just for sample order )
  • Supply chain: at least 3~5 years
  • Payments: VISA,Pay Latre,L/C,D/A,D/P,T/T,Western Union,MoneyGram,Paypal/cash payments etc.
  • Shipping: Support Express/Sea freight/Land freight/Air freight
  • Customization: Customized Shape/logo/packaging, etc
  • Product Detail

    Product Tags

        The 7 inch touch screen display is a 10 points PCAP touch screen equipped with IPS 1024*600 lcd display which is delivers outstanding image quality, vibrant colors and excellent ALL viewing angles with the comfortable and wonderful using experience.
        The 7 inch touch screen display use industrial grade chip CYPRESS IC, which has strong anti-interference performance and can be used in a variety of complex application environments. Such as work well with 3-10mm thickness tempered glass, water, gloves, seawater, 5% saline and PC onside.
         The 7 inch touch screen display: PCAP touch screen interface is I2C interface, but we can convert I2C interface to USB interface through USB converter and could connect to raspberry pi; LCD screen interface is LVDS interface, and we can convert LVDS interface to HDMI interface through HDMI converter.

    TPM

    Model Number HX0701820
    Brand Grahowlet
    Size 7.0 inch
    Operating Temperature -20℃ ~ 70℃
    Storage Temperature -30℃ ~ 80℃
    Outline Dimension 165.00(W)x100.00(H)x5.00(D) mm 
    Viewing Area 154.88(W)x86.72(H) mm 
    Active Area 154.21(W)x85.92(H) mm 
    Support Systems Windows/Android/Linux etc.
    Warranty 1 year

    CTP

    Interface Type IIC/USB
    Structure G+G
    Controller IC Cypress
    Touch Points 10 points
    Transparency ≥85%
    Surface Hardness ≥6H
    Power Supply Voltage 2.8V ~ 3.3V

    TFT

    Resolution 1024x600
    Interface Type LVDS/HDMI/VGA
    Luminance 350-1000 cd/m²
    Viewing Angle ALL

    Our Service

    programe evsluation
    1 to 2 morking days
    Drawings
    2 to 3 working days
    Customized products
    3 to 4 weeks(after drawings confirmed)
    Mass Production delivery
    4 to 6 weeks
    Software debugging
    Capacity
    100K per month(10.1 inches as a reference)
    Process capability
    G+G, G+F+F, shielding process, overall module joint process(Optical Bonding)(maximum 65 ") Cover glass surface treatment AR, AG, AF
    Technical support

     
    Engineers to provide door-to-door or remote access service within 24 hours 
    Stable supply chain for at least 3 years guarantee
    One year warranty time for all of our products

    Packing & Delivery
    waterproof raspberry pi 7 inch touch screen display - Packing & Delivery

    Technical Q & A
    Q: What is the reason why the capacitive screen module appears blurred when in the assembly process or when the whole completed end product falls? What need to do to improve the situation?
     A: The screen shows normal before assembled, and get to blurred when in assemble or with the whole device falling down, the reason for this is that the glass on the corner of the display is broken or the FPC is scratched , which will lead to the bad of the channels. The specific reason need to be discussed with our technicians. 
    The corresponding measure should be taken is to strengthen for the protection of the LCM corners: 
    first, iron frame is ensured to be wrapped on the corners of the LCM to strengthen the corner strength and reduce the corner damage caused by the deformation. 
    Second, There should be more space left for the weaker area(like corners) of the LCM to avoid brokenness caused by collision with the adjacent support due to small deformation;
    The third is that the glue on the glass step is thickened to be as high as the polarizer surface, reducing the amount of deformation of the glass during the drop.

    Q: When the capacitive screen module is lightening, white spots, bright spots, dirty spots can be seen in the backlight, what is the reason? How to avoid it?
    A: White spots and highlights are generally caused by impurities entering or damage to the backlight material. If there is impurity entering, what should be done is to trace the impurities from the LCM itself and find out where it comes from, and focus on the clean room assembly environment; if the backlight is damaged, it should be considered from the LCM structure, especially the product structure to find out what area of the structure poses a risk of injury or scratching to the LCM, and then eliminates it.


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