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New AAT Hydrojet brings high speed, state-of-the-art performance to "in-line" cleaning

Keywords AAT, Cleaning

AAT's new Hydrojet brings high speed, state-of-the-art, superior cleaning performance as well as easy maintenance to in-line cleaning applications. Available in Mach I, II, or III models, it employs revolutionary flow dynamics. Even the toughest cleaning applications can be accomplished in half the footprint (16ft) and twice the speed of other in-line cleaners. The system can effectively clean high-density assemblies at speeds up to 6-8ft./min. The Mach III can effectively dry at a rate of 14 feet per minute.

The advanced Hydrojet consists of a prewash stage, wash, chemical isolation, three rinse stages, plus drying. The wash chamber includes an optional prewash and patent-pending three-stage spray manifold designed for high speed cleaning. The chemical isolation between wash and rinse includes an optional blower for 98-99 percent efficiency. An optional Mach I, II or III patent-pending drying chamber offers three different drying speeds up to 10ft./min. on densely populated assemblies­ without adding to the system's footprint. Each system is PLC controlled with a color touch screen interface. The all new flow technology (wash, rinse and dry) is patent pending. No IR panels or additional dryer modules are needed!

All items requiring routine maintenance are readily accessible. Plumbing systems are built with quick-connects, etc. for tool free disassembly. Pumps and blowers are readily accessible and removable for repair. Filter/strainers are designed to be cleaned while the cleaner is in operation to minimize down time. Options for the Hydrojet Series include view windows and lighting for all process sections; a chemical injection system for the main wash; a foam sensor; resistivity monitors on both inlet and effluent of final rinse; and more.

For further information please contact Austin American Technology Corporation, 12201-160 Technology Blvd., Austin, TX 78727-6102 USA, Tel: +1 (512) 335-6400, Fax: +1 (512)335-5753.

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