IP Library Granted Patent US 10,153,149
Granted Patent B2
US 10,153,149 · App. 15/697,333 · Granted Dec 11, 2018

Ion trap mass spectrometer

Inventor: Anatoly N. Verenchikov (St. Petersburg, RU)
Assignee: LECO Corporation
H01J49/282H01J49/0031H01J49/0036H01J49/062H01J49/40H01J49/401H01J49/406H01J49/4245
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Quick Facts
Patent No.
US 10,153,149
App. No.
15/697,333
Granted
Dec 11, 2018
Kind
B2
Abstract

An apparatus 41 and operation method are provided for an electrostatic trap mass spectrometer with measuring frequency of multiple isochronous ionic oscillations. For improving throughput and space charge capacity, the trap is substantially extended in one Z-direction forming a reproduced two-dimensional field. Multiple geometries are provided for trap Z-extension. The throughput of the analysis is improved by multiplexing electrostatic traps. The frequency analysis is accelerated by the shortening of ion packets and either by Wavelet-fit analysis of the image current signal or by using a time-of-flight detector for sampling a small portion of ions per oscillation. Multiple pulsed converters are suggested for optimal ion injection into electrostatic traps.

Claims (14)

1. An ion injector for directionally-extended ion injection into an analyzer comprising:

an ion source;

an ion guide arranged to receive ions from said ion source; and

a converter receiving radiofrequency pulses, said converter extended in a direction that is locally orthogonal to an initial path of ions ejected from said converter,

wherein said converter accepts ions from said ion guide with the accepted ions spatially spreading within said converter prior to ejection from said converter, and wherein the initial path of ejected ions directs ions into the analyzer.

2. The ion injector of claim 1 , wherein said converter is extended for at least one meter in the locally orthogonal direction.

3. The ion injector of claim 1 , wherein said converter comprises a first end for receiving ions from said ion guide and a second end, said second end having an RF or a DC barrier for reflecting ions within said converter that reach said second end of said converter.

4. The ion injector of claim 1 , wherein said converter comprises a mirror cap extending along with said converter in the locally orthogonal direction and preventing ions from traveling in a direction of the initial path until a potential applied to said mirror cap is lowered to introduce ions from said converter to the analyzer.

5. The ion injector of claim 1 , wherein said converter comprises a rectilinear quadrupole.

6. The ion injector of claim 1 , wherein said converter comprises an electrostatic sector.

7. The ion injector of claim 1 , wherein said converter comprises:

two parallel rows of electrodes; and

a power supply feeding a potential to said electrodes to retain ions within said converter.

8. The ion injector of claim 7 , wherein said power supply comprises a switched power supply that applies to equal and opposite polarity static potentials to said electrodes and switches the opposite polarity to eject the ions from said converter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2017
From: VERENCHIKOV, ANATOLY N.
To: LECO CORPORATION
Reel/Frame 043636/0158 →
Priority Claims (1)
GB 1000649.2 · Jan 15, 2010 · national
Continuity (3)
Division 14798260 · Jul 13, 2015
Division 13522458
Related Publication 20170372883A1 · Dec 28, 2017
Cited By (2)
US 12,578,307 US 12,665,179