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Surface acoustic wave (SAW)-based acoustofluidics combines microfluidics with active microacoustic fields. This allows to realize numerous Lab-on-a-Chip operations, reaching from fluid manipulation including mixing, droplet and aerosol generation to the manipulation of cells and (bio-)particles.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_53fee87577.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_53fee87577.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_410638478d.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_410638478d.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/blood-cell-sorting.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/blood-cell-sorting.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_40f8af8b07.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_40f8af8b07.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/1\/csm_blood-cell-sorting_53fee87577.jpg","alt":"","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/manipulation-of-complex-fluids-with-saw-based-acoustofluidics","origUid":6758,"readingTime":"3 min","subline":"Sample preparation for biomedicine","tags":[{"title":"Micro & nanotechnology","uid":10},{"title":"Acoustics & ultrasonics","uid":2},{"title":"Biology & medical","uid":4},{"title":"General R&D","uid":6}],"technologies":[{"title":"Vibrometry","uid":214}],"title":"Manipulation of complex fluids with SAW-based acoustofluidics","uid":6763,"visits":42},{"authors":[],"datetime":null,"description":"

Acoustofluidics is the active manipulation of fluids as well as of immersed particles or cells at the micro- and nanoscale and is a key technology for life sciences. Acoustic waves, more precisely, ultrasonic waves featuring high frequencies far beyond the audible range, are predestined for this purpose...<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_7c48b4dcc1.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_7c48b4dcc1.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_a5a8957241.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_a5a8957241.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_e02974d77b.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_e02974d77b.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_caf392babf.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_caf392babf.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/7\/csm_surface-acoustic-wave-devices_7c48b4dcc1.jpg","alt":"","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/selective-polarization-conversion-of-surface-acoustic-waves","origUid":6724,"readingTime":"5 min","subline":"Selective polarization conversion of surface acoustic waves","tags":[{"title":"Micro & nanotechnology","uid":10},{"title":"Acoustics & ultrasonics","uid":2},{"title":"General R&D","uid":6}],"technologies":[{"title":"Vibrometry","uid":214}],"title":"A new driving mechanism for acoustofluidics*","uid":6727,"visits":122},{"authors":[{"fullName":"Jan Carstens","fullOfficialName":"Dipl.-Phys. Jan Carstens"}],"description":"

The excitation of a multi-cantilever MEMS structure by molecular Brownian motion is investigated by ultra-high resolution optical vibrometry. This novel approach to testing enables applications such as the calibration of AFM tips.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/d\/e\/csm_exciting-vibration_ea804d9097.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/d\/e\/csm_exciting-vibration_ea804d9097.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/exciting-vibration.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/exciting-vibration.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/exciting-vibration.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/exciting-vibration.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/d\/e\/csm_exciting-vibration_ec774a07d6.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/d\/e\/csm_exciting-vibration_ec774a07d6.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/d\/e\/csm_exciting-vibration_ea804d9097.jpg","alt":"","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/%E7%B2%BE%E5%AF%86%E6%B5%8B%E9%87%8F%E8%87%AA%E6%BF%80%E5%8A%B1%E5%A4%9A%E6%82%AC%E8%87%82%E6%A2%81mems%E5%BE%AE%E5%99%A8%E4%BB%B6%E7%9A%84%E6%8C%AF%E5%8A%A8","origUid":6697,"readingTime":"4 min","subline":"Exciting vibration","tags":[{"title":"Micro & nanotechnology","uid":10}],"technologies":[{"title":"Vibrometry","uid":223}],"title":"精密测量自激励多悬臂梁MEMS微器件的振动","uid":6697,"visits":1425},{"authors":[],"datetime":null,"description":"

For applications where tactile surface measurement techniques have shortcomings, non-contact optical instruments have been developed to overcome these shortcomings. Especially with the development of computing capability, these methods provide surface information quickly and with high resolution.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_c19daa5f98.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_c19daa5f98.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_dc6fa2e482.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_dc6fa2e482.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/precision-surfaces.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/precision-surfaces.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_50211e5069.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_50211e5069.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/6\/csm_precision-surfaces_c19daa5f98.jpg","alt":"precision surfaces","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/overview-of-optical-methods-for-surface-metrology","origUid":6326,"readingTime":"5 min","subline":"Have a closer look on precision surfaces","tags":[{"title":"Electronics, semicon, solar","uid":5},{"title":"Mechanical & precision engineering","uid":8},{"title":"Micro & nanotechnology","uid":10}],"technologies":[{"title":"Surface Metrology","uid":212}],"title":"Overview of optical methods for surface metrology","uid":6557,"visits":117},{"authors":[{"fullName":"Greenlay B. et al.","fullOfficialName":" Greenlay B. et al."}],"description":"

Next generation ultrasound imaging research is focused on a new sensor technology which utilizes large arrays of small membrane sensors. Accurate performance from these sensors can enable a new suite of medical imaging applications, allowing doctors to more rapidly test and diagnose their patients.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_91addd3a98.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_91addd3a98.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_5ae0f8b4c1.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_5ae0f8b4c1.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/cmut-ultrasound.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/cmut-ultrasound.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_88de47a4fd.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_88de47a4fd.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/d\/csm_cmut-ultrasound_91addd3a98.jpg","alt":"cmut ultrasound","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/%E5%BF%AB%E9%80%9F%E6%B5%8B%E9%87%8F%E8%B6%85%E5%A3%B0%E6%8D%A2%E8%83%BD%E5%99%A8%E7%9A%84%E6%80%A7%E8%83%BD","origUid":6696,"readingTime":"4 min","subline":"无损检测","tags":[{"title":"Micro & nanotechnology","uid":10}],"technologies":[{"title":"Vibrometry","uid":223}],"title":"快速测量超声换能器的性能","uid":6696,"visits":1614},{"authors":[{"fullName":"S.P. Mao et al.","fullOfficialName":" S.P. Mao et al."},{"fullName":"Xavier Rottenberg et al.","fullOfficialName":"Dr. Xavier Rottenberg et al."}],"description":"

超声成像是医学影像技术的主要工具之一,通常被称为医学超声波诊断法。产生超声波的超声换能器技术的发展是医学超声研究的热门课题。<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/0\/csm_fem-ultrasound-transducers_b4f45914e1.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/0\/csm_fem-ultrasound-transducers_b4f45914e1.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/fem-ultrasound-transducers.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/fem-ultrasound-transducers.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/fem-ultrasound-transducers.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/vibrometry\/image\/fem-ultrasound-transducers.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/0\/csm_fem-ultrasound-transducers_eab18513ee.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/0\/csm_fem-ultrasound-transducers_eab18513ee.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/0\/0\/csm_fem-ultrasound-transducers_b4f45914e1.jpg","alt":"ultrasound transducers","title":""}},"link":"https:\/\/magazine.polytec.com\/cn\/%E8%B6%85%E5%A3%B0%E6%8D%A2%E8%83%BD%E5%99%A8%E7%9A%84%E6%9C%89%E9%99%90%E5%85%83%E9%AA%8C%E8%AF%81","origUid":6692,"readingTime":"6 min","subline":"仿真VS实测","tags":[{"title":"Micro & nanotechnology","uid":10}],"technologies":[{"title":"Vibrometry","uid":223}],"title":"超声换能器的有限元验证","uid":6692,"visits":1528},{"authors":[],"datetime":null,"description":"

We talked with Prof. Dr. Albert Weckenmann of the University of Erlangen-Nuremberg, Germany, about the limitations of tactile surface measurement technology and the opportunities of non-contact 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