Abstract:
A mounting apparatus (102) comprises a plurality of flexible interconnected spacer segments (104) for receiving the antenna (106), the plurality of flexible interconnected spacer segments provide a continuous offset (114) between the antenna and another surface. Each of the plurality of flexible interconnected spacer segments (104) comprises a unitarily molded flexible link, each link having a triangular cross sectional geometry (350) having an opening (108) on top (302) for receiving the antenna, and the top leading to a wider base for mounting to a surface. The links are separable (312) providing for a customizable length and form factor.
Abstract:
An enclosure includes a seal co-molded to a first material to form a sub-assembly in which the first material is securely adhered to the seal. The seal is designed to collapse in a specific direction during an injection molding process. The enclosure also includes a second material over-molded on the sub-assembly during the injection molding process. The seal is compressed in the specific direction during the injection molding process to produce a consistent wetting at least at one desired perimeter joint between the seal and the over-molded second material, forming the bi-material enclosure. The first material and the second material are dissimilar materials with different thermal expansion qualities.