The invention discloses a FAIMS based on 
ion wind pumps, which comprises an electrical 
system and an 
ion mobility tube, wherein the 
ion mobility tube comprises an 
ion source, a separation detection 
system and an 
ion wind pumping 
system; a tube body of the ion mobility tube is composed of two substrates which are plated with electrodes and connected tightly with supporting beams to form air flow channels, and the electrodes comprise separation electrodes, detection electrodes, 
discharge electrodes and traction electrodes; wherein the separation electrodes, the detection electrodes and 
airflow channels among the separation electrodes and the detection electrodes form the separation detection system, the 
discharge electrodes, and the traction electrodes and 
airflow channels among the 
discharge electrodes and the traction electrodes form the 
ion wind pumping system; and the 
ion source is arranged on the inner side of an air inlet end of the substrate. A gaseous sample enters the ion mobility tube under the drive of the 
ion wind and is separated and detected by the separation detection system after being ionized by the 
ion source. According to the FAIMS based on ion wind pumping systems, monolithic integration can be achieved, the FAIMS based on ion wind pumping systems has the advantages of being high in integration, having no movable parts, and being simple in structure and easy to control, and highly integrated and stable FAIMS detections can be achieved.