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PARYLENE C
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Parylene is a polymer with a backbone of para-benzenediyl rings and ethylene bridges. Parylene C is a chlorinated variant with low cost and good dielectric and moisture barrier properties, but also insolubility and RoHS compliance issues.
Learn about the electrical, barrier, corrosion and optical properties of Parylene coatings, including Parylene C. Compare Parylene with other conformal coating types using tables of values and technical data sheets.
Learn about Parylene C, a unique polymer that can be deposited as a conformal coating with excellent electrical and physical properties. Find out how Parylene C is produced, tested and used for electronic devices and other applications.
Parylene C. Parylene C is a versatile variant that combines excellent electrical and physical properties with low permeability to moisture and corrosive gases. It is suitable for a broad range of applications, from electronics to defense.
Parylene C - parylene C has proven itself to be incredibly useful, boasting an impressively low permeability to moisture, corrosive gases, and chemicals. Parylene N - parylene N is a wonderful option when a more intense coat of protection is important to your use of the polymer. Its constants don't react when there are changes in frequency.
Parylene C is a biocompatible, corrosion-resistant polymer coating with excellent barrier and thermal properties. Learn about its deposition, etching and characterization equipment, processes and relevant material information on this LNF Wiki page.
Learn about Parylene, a unique polymer conformal coating with excellent protective properties and ability to coat complex surfaces. Discover the steps and science behind the Parylene coating process, and how it can be used for various industries and applications.
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant microelectromechanical systems (MEMS) devices. Historically, Parylene C has been employed as an encapsulation material for medical implants, such as stents and pacemakers, due to its strong barrier properties and biocompatibility.
Parylene C's composition and material properties make it a superior conformal coating in several key areas: Parylene C has high biocompatibility. Parylene C has long been used as a protective coating for medical devices due to its FDA-approved biocompatibility—its ability to exist alongside living tissue without negatively interacting with it.
Parylene C. Parylene C is the most commonly used of all parylene types. Its benefits come mainly from its unique chemistry: a single chlorine atom in place of Parylene N's aromatic hydrogen atom creates an entirely different combination full of efficient electrical properties.