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Ion Traps that Apply an Inverse Mathieu q Scan

总结
Researchers from Purdue University have developed a method of waveform generation suitable for miniature mass spectrometers that have lower power requirements, simpler electronics, and extended mass range for better mass calibration. This method performs a nonlinear sweeping scan on a quadrupole ion trap for the uses of ion isolation, excitation, or ejection. This method allows for greater spectrometry performance through simpler electronics and efficient spectrometry scans.
技术优势
Efficient waveform generation Simplified operations
技术应用
Mass spectrometry Linear ion traps
详细技术说明
R. Graham CooksPurdue ChemistryAston Labs
*Abstract

*Background
With the continual search for smaller instruments and machines, there is a constant need to decrease the magnitude of multiple characteristics such as power supply, vibrations, or interference. Smaller-sized mechanisms cannot handle the same qualities used for larger sizes as the forces often misdirect the calibration of these instruments. For example, mass spectrometers, which have been reduced to table top instruments, need greater power-efficient electronics due to the calibration requirements. This is often circumnavigated by ramping the amplitude of the ion-trapping waveform while fixed frequencies are used for resonance ejection.
*IP Issue Date
None
*IP Type
Provisional
*Stage of Development
Proof of concept
*Web Links
Purdue Office of Technology CommercializationPurdueInnovation and EntrepreneurshipR. Graham CooksPurdue ChemistryAston Labs
国家
United States
申请号码
None
国家/地区
美国

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