IP Library Patent Application 14615207
Patent Application
App. No. 14/615,207

JET ASSEMBLY FOR USE IN DETECTORS AND OTHER DEVICES

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Quick Facts
Patent No.
US None
App. No.
14/615,207
Abstract

Certain embodiments described herein are directed to jet assemblies that include a substantially inert fluid flow path. In some examples, a jet assembly includes a fluid flow path comprising a substantially inert metal in a fluid flow path. Devices and systems using the jet assembly are also described. In other embodiments, a brazeless or weldless jet assembly is provided. In some embodiments, the brazeless jet assembly may include an inert material or coating, e.g., a silica coating, in a fluid flow path.

Claims (20)

1 - 136 . (canceled)

137 . A method of facilitating chromatographic analysis, the method comprising providing a flame detector comprising a flame jet, and a fluid flow path that is constructed and arranged to be fluidically coupled to a chromatography column at one end and to the flame jet at an opposite end, the fluid flow path comprising a substantially inert metal material.

138 . A method of facilitating chromatographic analysis, the method comprising providing a flame detector comprising a flame jet, and a fluid flow path that is constructed and arranged to be fluidically coupled to a chromatography column at one end and to the flame jet at an opposite end, the fluid flow path comprising a non-catalytic metal material present in an effective amount to deter catalysis in the fluid flow path.

139 . A method of facilitating chromatographic analysis, the method comprising providing a flame detector comprising a flame jet, and a fluid flow path that is constructed and arranged to be fluidically coupled to a chromatography column at one end and to the flame jet at an opposite end, the fluid flow path comprising a substantially inert metal oxide material.

140 - 155 . (canceled)

156 . The method of claim 137 , further comprising configuring the entire fluid flow path from the one end to the opposite end to be formed from the substantially inert metal material.

157 . The method of claim 156 , further comprising configuring the flame jet without any brazes or welds.

158 . The method of claim 157 , further comprising configuring the substantially inert metal material to comprise titanium, aluminum, yttrium or combinations thereof.

159 . The method of claim 157 , further comprising configuring the substantially inert metal material to comprise nickel or chromium.

160 . The method of claim 157 , further comprising configuring the fluid flow path as a tube assembly comprising an inner tube coupled to an outer tube, in which the inner tube is formed from the substantially inert metal material.

161 . The method of claim 138 , further comprising configuring the entire fluid flow path from the one end to the opposite end to be formed from the non-catalytic metal material.

162 . The method of claim 161 , further comprising configuring the flame jet without any brazes or welds.

163 . The method of claim 162 , further comprising configuring the non-catalytic metal material to comprise titanium, aluminum, yttrium or combinations thereof.

164 . The method of claim 162 , further comprising configuring the non-catalytic metal material to comprise nickel or chromium.

165 . The method of claim 162 , further comprising configuring the fluid flow path as a tube assembly comprising an inner tube coupled to an outer tube, in which the inner tube is formed from the substantially inert metal material.

166 . The method of claim 139 , further comprising configuring the entire fluid flow path from the one end to the opposite end to be formed from the substantially inert metal oxide material.

167 . The method of claim 166 , further comprising configuring the flame jet without any brazes or welds.

168 . The method of claim 167 , further comprising configuring the substantially inert metal oxide material to comprise titanium oxide, aluminum oxide, yttrium oxide or combinations thereof.

169 . The method of claim 167 , further comprising configuring the substantially inert metal oxide material to comprise nickel or chromium.

170 . The method of claim 167 , further comprising configuring the fluid flow path as a tube assembly comprising an inner tube coupled to an outer tube, in which the inner tube is formed from the substantially inert metal oxide material.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2023
From: MANNINO, ROSARIO
To: PERKINELMER HEALTH SCIENCES, INC.
Reel/Frame 064093/0597 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2023
From: PERKINELMER HEALTH SCIENCES INC.
To: PERKINELMER U.S. LLC
Reel/Frame 063172/0900 →
SECURITY INTEREST Recorded Mar 13, 2023
From: PERKINELMER U.S. LLC
To: OWL ROCK CAPITAL CORPORATION
Reel/Frame 066839/0109 →