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US Patent 6859277 Particle counter with strip laser diode

Patent 6859277 was granted and assigned to Particle Measuring Systems on February, 2005 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Current Assignee
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Particle Measuring Systems
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
68592771
Patent Inventor Names
Gregg A. Wagner1
Thomas Bates1
Date of Patent
February 22, 2005
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Patent Application Number
102285771
Date Filed
August 27, 2002
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Patent Citations Received
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US Patent 12130222 Condensation particle counters and methods of use
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US Patent 11946852 Particle detection systems and methods for on-axis particle detection and/or differential detection
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US Patent 11988591 Modular optical particle counter sensor and apparatus
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US Patent 11988593 Advanced systems and methods for interferometric particle detection and detection of particles having small size dimensions
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US Patent 11835443 Real time monitoring of particle count data
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US Patent 11841313 Power management for optical particle counters
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Patent Primary Examiner
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Zandra Smith
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Patent abstract

A fluid particle counter comprising an inlet jet tip producing an air flow, a strip laser diode producing a laser beam, and a beam shaping system that includes an aspheric collimating lens, an achromatic spherical lens, a cylinder lens, and a series of cascading apertures. A retarder rotates the polarization so that the TE mode is along the direction of fluid flow. The optical system is designed so that along the flow axis the laser beam is single mode, while the multimodes due to the strip laser are constrained to the dimension perpendicular to the flow. The beam is pinched to a 35 micron waist and has a Gaussian profile along the flow direction which permits locating the beam within 3.5 mm of the flow tip while preventing stray light scattering from the tip. The beam profile along the axis perpendicular to the flow is closer to a square wave than a Gaussian. The particle counter output is substantially free of all noise except noise created by light scattered from molecules of the fluid, even for volumetric particle counters.

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