Abstract:
An apparatus and method for automatedly detecting the presence of one or more chemical contaminants, such as 2,4,6-trichloroanisole, in/on a plurality of cork wine bottle stoppers in rapid succession using electronic nose chips. The apparatus moves the nose chips and the cork stoppers independently to align the cork stopper and a corresponding electronic nose chip with one another for testing. The automated apparatus and method provides a low-cost, reliable process for testing 100% of cork wine bottle stoppers in a fast and cost-effective manner.
Abstract:
An apparatus and method for automatedly detecting the presence of one or more chemical contaminants, such as 2,4,6-trichloroanisole, in/on a plurality of cork wine bottle stoppers in rapid succession using electronic nose chips. The apparatus moves the nose chips and the cork stoppers independently to align the cork stopper and a corresponding electronic nose chip with one another for testing. The automated apparatus and method provides a low-cost, reliable process for testing 100% of cork wine bottle stoppers in a fast and cost-effective manner.
Abstract:
A customizable system (100) made up of a plurality of individual modules for dispensing minor wound-care products with one hand. The modules are easily attached to and disconnected from each other to provide an integrated dispensing device of variable size that may be accessed quickly and efficiently. The system includes one or more disposable bandage modules (110) having a top wall (111), a bottom wall (112), a front wall (113), a back wall (114), a right side wall (115), and a left side wall (116). The walls are permanently joined together to form a body (117) having an internal cavity (118). The bandage modules include an opening (119) on the front wall, a cutting edge (120) within the opening, and one or more module-joining attachments (121) on said side walls (115) and (116). The system may also include one or more accessory modules.
Abstract:
An apparatus (100) and method (400) for detecting the presence of one or more chemical contaminants in/on a plurality of items, e.g., cork stoppers (110), using nose chips (310). The apparatus utilizes detection sensor electronics (225) that are separate from the nose chips such that each nose chip can be either reused or discarded after use. The apparatus moves the nose chips and the cork stoppers independently to align the cork stopper and a corresponding nose chip with one another. The testing apparatus uses multiple sensor units (135) to simultaneously test multiple cork stoppers for chemical contaminants (e.g., TCA). The invention provides a low-cost, reliable process for testing 100% of cork stoppers in a fast and cost-effective manner that is scalable to the general consumer product market.
Abstract:
An apparatus (100) and method (400) for detecting the presence of one or more chemical contaminants in/on a plurality of items, e.g., cork stoppers (110), using nose chips (310). The apparatus utilizes detection sensor electronics (225) that are separate from the nose chips such that each nose chip can be either reused or discarded after use. The apparatus moves the nose chips and the cork stoppers independently to align the cork stopper and a corresponding nose chip with one another. The testing apparatus uses multiple sensor units (135) to simultaneously test multiple cork stoppers for chemical contaminants (e.g., TCA). The invention provides a low-cost, reliable process for testing 100% of cork stoppers in a fast and cost-effective manner that is scalable to the general consumer product market.