IP Library Granted Patent US 7,351,963
Granted Patent B2
US 7,351,963 · App. 11/187,692 · Granted Apr 1, 2008

Multiple rod systems produced by wire erosion

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Quick Facts
Patent No.
US 7,351,963
App. No.
11/187,692
Granted
Apr 1, 2008
Kind
B2
Abstract

The invention relates to a method of creating multipole systems carrying RF voltage which can be used as ion guides, mass-selective quadrupole filters or collision cells to fragment ions; and multipole systems manufactured according to this method. The invention provides a method which produces particularly inexpensive multipole systems by spark erosion with a wire cathode. The multipole rod system comprises only two pieces of metal for connection to the two phases of the RF voltage, and the two pieces of metal are adjusted with respect to each other by one or more identical insulating rings.

Claims (17)

1. Method for the manufacture of a multipole rod system which can be used, for instance, as an ion guide, mass filter or collision cell when connected to a two-phase RF voltage, comprising the following steps:

a) manufacture of a plurality of elongated metal blocks, each block having an external retaining ring which will later hold together multipole rod electrodes for one RF phase,

b) manufacture of a plurality of single-piece multipole rod bodies, each rod body being manufactured from one of the metal blocks with all the longitudinal rod electrodes that are to be connected to one of the two RF phases formed integrally with the retaining ring of that block, by wire erosion,

c) manufacture of insulating rings with precision surfaces to accommodate the longitudinal rod electrodes, and

d) joining of two multipole rod bodies and at least one insulating ring to form a multipole system.

2. Method according to claim 1 , wherein the precision surfaces of the insulating rings hold those surfaces of the electrodes which were created by wire erosion.

3. Multipole system with longitudinal rod electrodes, comprising

two single-piece monolithic metal multipole rod bodies, each comprising an external retaining ring, and all the longitudinal rod electrodes for one of the two phases of an RF voltage, and at least one insulating ring with precision surfaces to accommodate the longitudinal rod electrodes.

4. Multipole rod system according to claim 3 , wherein the single-piece multipole rod bodies and the insulating rings have the same coefficient of thermal expansion.

5. Multipole rod system according to claim 3 , wherein the single-piece multipole rod bodies are manufactured from aluminum or an aluminum alloy.

6. Multipole rod system according to claim 3 , forming a quadrupole rod system made of four hyperbolic rod electrode surfaces on two quadrupole rod bodies.

7. Multipole rod system according to claim 6 , wherein an insulated resistance layer is applied to the hyperbolic electrode surfaces.

8. Method for the manufacture of a multipole rod system which can be used as an ion guide when connected to a multi-phase RF voltage, comprising the following steps:

a) manufacture of elongated metal blocks, each block having an external retaining ring which will later hold together multipole electrodes of one RF phase,

b) manufacture of a plurality of single-piece multipole rod bodies, each rod body being manufactured from one of the metal blocks with all longitudinal electrodes that are to be connected to one of the RF phases formed integrally with the retaining ring of that block, by wire erosion,

c) manufacture of insulating rings with precision mounting surfaces to accommodate the longitudinal electrodes, and

d) joining of as many multipole rod bodies as there are phases of the RF voltage and at least one insulating ring to form a multipole system.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 18, 2021
From: BRUKER DALTONIK GMBH
To: BRUKER DALTONICS GMBH & CO. KG
Reel/Frame 057209/0070 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2005
From: REBETTGE, JENS; WEHKAMP, THOMAS
To: BRUKER DALTONIK GMBH
Reel/Frame 016676/0836 →