Mass spectrometer
A sampling period of an A/D converter is set in accordance with an ion pulse ejection operation of a collision cell of an accumulation type. Start timing of the sampling period is changed in accordance with a selected m/z of a second mass analysis unit. In addition, end timing of the sampling period may be changed in accordance with the selected m/z of the second mass analysis unit. In place of the sampling period, a data cut-out period may be changed.
1. A mass spectrometer comprising:
a first mass analysis unit;
an accumulation unit that accumulates ions ejected from the first mass analysis unit, and ejects the accumulated ions, the accumulation unit being a collision cell;
a second mass analysis unit that causes, among the ions ejected from the accumulation unit, ions having a selected mass-to-charge ratio to pass therethrough;
a detector that detects the ions having passed through the second mass analysis unit;
a sampling circuit that samples an output signal from the detector;
a data processing unit that is provided in a post stage of the sampling circuit;
a table that stores a plurality of pieces of coefficient information corresponding to a plurality of mass-to-charge ratio ranges; and
a control unit that specifies coefficient information, from among the plurality of pieces of coefficient information, corresponding to the selected mass-to-charge ratio, specifies time information corresponding to the selected mass-to-charge ratio by substituting the selected mass-to-charge ratio and the specified coefficient information into a prescribed function, and controls a sampling operation period of the sampling circuit based on the specified time information to thereby control a data capturing period when data to be processed by the data processing unit is delimited,
wherein each of the pieces of coefficient information comprises a slope and an intercept.
2. The mass spectrometer according to claim 1 , wherein the control unit adjusts the data capturing period to the period of valid data that is derived from the ions having the selected mass-to-charge ratio.
3. The mass spectrometer according to claim 2 , wherein the control unit adjusts the data capturing period to the period of valid data, by increasing a delay time at start timing in the data capturing period with an increase in the selected mass-to-charge ratio.
4. The mass spectrometer according to claim 2 , wherein the control unit adjusts the data capturing period to the period of valid data, by increasing a delay time at end timing in the data capturing period with an increase in the selected mass-to-charge ratio.
5. The mass spectrometer according to claim 1 , further comprising a deflector that is provided between the second mass analysis unit and the detector, and configured to bend an orbit of the ions having passed through the second mass analysis unit.