EP1539333B1

Method and apparatus for control of mobility-based ion species identification

Abstract

This record has no abstract on file.

EP1539333B1, drawing sheet 1
Sheet 1 of 44

Term

Term ended

Expired 17 July 2023, 3.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

17 claims: 3 independent, 14 dependent

  1. 1
    A DMS method for identifying chemical species in a sample (S), including the steps of:a) providing a DMS filter field (F), said filter field being adjustable to a plurality of DMS filter operating conditions, said DMS filter operating conditions being characterized as influencing mobility behavior of ion species (17+,17-) in said field, b) processing an ionized sample in said filter field (F) at a first set of said operating conditions, said ionized sample including at least one ion species, said processing being based upon aspects of mobility behavior of said at least one ion species in said first set of operating conditions, c) detecting a spectral peak associated with said at least one ion species and said first set of operating conditions, characterized in that the method further includes the steps of: d) provisionally identifying said at least one ion species based upon said detection and said association and by reference to a store of detection data, e) changing said operating conditions of said filter to a second set of operating conditions based upon said provisional identification and predicting the effect of such change upon said provisionally identified-at least one ion species-measured in terms of change in at least one characteristic of said spectral peak, f) detecting again said spectral peak associated with said at least one ion species at said second set of operating conditions and confirming said predicted effect, g) based upon said first detection and said confirmation, verifying said provisional identification of said detected at least one ion species for identifying said at least one ion species.
  2. 9
    A DMS filter system (10) for identifying chemical species in a sample (S), comprising a) a DMS filter (24), including at least a pair of electrodes (20,22) between which is established a DMS filter field (F), said filter field being adjustable to a plurality of DMS filter operating conditions, said DMS filter operating conditions being characterized as influencing mobility behavior of ion species in said filter field, b) an sample supply, including an inlet for receipt of a sample, said supply providing said sample in an ionized condition to said DMS filter field at a first set of said operating conditions, said ionized sample including at least one ion species, c) a processor for analysis of said ionized sample based upon aspects of mobility behavior of said at least one ion species in said first set of operating conditions, d) a detector (32) downstream from said DMS filter for detecting a spectral peak associated both with said at least one ion species and said first set of operating conditions, characterized in that the DMS filter system further comprises, e) an intelligent controller (40) for provisionally identifying said at least one ion species based upon said detection and said association and by reference to a store of detection data, f) said controller adjusting said operating conditions to a second set of operating conditions based upon knowledge of said provisional identification and predicting the effect of such change upon-said provisionally identified at least one ion species measured in terms of change in at least one characteristic of said spectral peak, g) said controller instructing detector to redetect said spectral peak associated with said at least one ion species at said second set of operating conditions to make a confirmation of said predicted effect, and h) said controller verifying said provisional identification of said detected at least one ion species based upon said first detection and said confirmation, and said controller enabling identifying said at least one ion species based on said verification.
  3. 10
    The system claim 9 wherein said operating conditions include the parameters of RF field strength and field compensation level.