Parker Chomerics electrically conductive paints and coatings deliver critical EMI/RFI shielding on plastic and composite housings of electronic assemblies, as well as aircraft and airframe components. Choose from a variety of electrically conductive filler and binder configurations, each designed for durable, reliable and high performing EMI/RFI shielding in various applications. Our versatile EMI shielding paints and coatings are suitable for use across a diverse range of applications, with many options to choose from.
Parker Chomerics PRO-SHIELD® 7100 is a nickel filled acrylic, electrically conductive paint providing cost-effective EMI shielding for plastic parts or electronic enclosures.
Parker Chomerics PRO-SHIELD® 7103 is a silver-plated copper paint providing good EMI shielding at a reasonable price.
Parker Chomerics PRO-SHIELD® 7108 is a silver filled, electrically conductive high performance coating designed to provide premier EMI shielding and surface conductivity for plastic parts and enclosures.
Parker Chomerics PRO-SHIELD® 7113 is a two component electrically conductive epoxy coating which provides good adhesion to a variety of substrates.
Parker Chomerics PRO-SHIELD® 7118 is a silver filled electrically conductive two component epoxy coating designed to provide the highest level of EMI shielding and grounding for electronics.
Parker Chomerics PRO-SHIELD 7128 is a silver-filled, high performance polyester coating that provides superb EMI shielding and a very thin dry film thickness.
Parker Chomerics CHO-SHIELD® 2044 EMI coating is a one-component, nickel-filled acrylic coating that provides modest EMI shielding and a highly durable coating on plastic housings
Parker Chomerics CHO-SHIELD® 2056 EMI coating is a one-component, silver and silver-plated copper filled acrylic paint designed for high levels of EMI shielding on plastic substrates
Parker Chomerics CHO-SHIELD® 2040 EMI coating is a one-component, silver-filled conductive acrylic coating that is specially formulated to provide premium EMI shielding on plastic substrates
Parker Chomerics CHO-SHIELD® 610 EMI coating is a three-component, silver-plated copper filled conductive epoxy that provides a cost effective and environmentally stable EMI shield on plastics and composite substrates
Parker Chomerics CHO-SHIELD® 568 conductive coating is a two-component, nickel-filled epoxy specially formulated to accept an electrolytic plating layer
Parker Chomerics CHO-SHIELD® 571 is a highly conductive, advanced coating developed for high volume, precise spray application on circuit boards and semiconductor packages.
Parker Chomerics CHO-SHIELD® 576 conductive coating is a two-component, silver-filled epoxy specially formulated to accept an electrolytic plating layer
Parker Chomerics CHO-SHIELD® 579 EMI coating is a two-component, silver-filled conductive epoxy that adheres well to chemical resistant plastic sand provides the added benefit of low volatile organic compounds (VOCs)
Parker Chomerics CHO-SHIELD® 596 EMI coating is a two-component, silver-filled conductive epoxy that adheres well to chemical resistant plastics and other hard to adhere to substrates
Parker Chomerics CHO-SHIELD® 608 EMI coating is a one-component, silver-filler conductive polyester coating that provides superb EMI shielding and a very thin dry film thickness
Parker Chomerics CHO-SHIELD® 604 is a highly conductive, flexible, advanced coating developed for high volume, precise spray applications on circuit boards and semiconductor packages.
Parker Chomerics CHO-SHIELD® 4994 conductive coating is a very smooth, highly conductive, silver-filled polyurethane designed for military/aerospace airframe applications
Parker Chomerics CHO-SHIELD® 2000 Series electrically conductive coatings provide a corrosion resistant conductive surface coating on aluminum or composite substrates.
Parker Chomerics CHO-SHIELD® 1091 primer is an air-drying liquid coating for enhancing the adhesion of CHO-SHIELD® 2000 series electrically conductive coatings and CHO-BOND® 2165 to chemically treated aluminum, and most composite surfaces.