We offer unique NVH testing solutions with particle velocity for sound visualization, noise control and troubleshooting using particle velocity sensors
Revolutionize the way you localize sound with Scan&Paint 2D 💡 Join our upcoming webinar on March 16th and discover all the exciting new features of our most popular solution.
📅Register for 8:30 CET : https://t.co/PXAX488xgE
📅Register for 17:30 CET : https://t.co/HTZUANcw93
🫢Did you miss our latest webinar on sound power? Don't worry, 🎥Get access to the recording here: https://t.co/PGK2CScLg8
Explore the fundamentals of sound power, why it's so important, and how Microflown products can help you with your sound power challenges!
⬆️Elevate your measurement toolkit these month's. When you invest in Scan&Paint 2D, we've got an essential tool ready to complement it.
📅Dive into our latest offer before November ends. Achieve maximum accuracy with every measurement.
Learn more: https://t.co/Mf42PfBiaF
🔊 Say goodbye to boring noise analysis! 🚫 Meet Scan&Paint 3D - the ultimate tool that transforms complex acoustics into stunning 3D visuals. 🤩Don't just predict, ascertain with Scan&Paint 3D and replace guesswork with knowledge. 🔍
#Acoustics#Innovation
Microflown Technologies is back on Twitter! 🥳We're excited to connect with our followers once again and share the latest updates, news and behind the scenes from our company. Follow us to stay up-to-date on all things #Microflown!"
Enjoying your the quietness of the office thanks to your ANC Headphones? It's time to learn about one of our favorite office gadgets. Why does the microphone position play a role?
All this in our the new case study from @fanyu_meng!
https://t.co/mD5O5xYXHy
TECHNICAL AREA PICK
This Architectural Acoustics article uses sound scattering theory to characterize finite samples of surfaces: https://t.co/OLhgWAYWqz
#architecture#acoustics@DTUtweet@Microflown
@ROMSOC_ITN can help to improve the accuracy of sound measuring by modelling #DigitalTwins and simulating the physical processes for the design of windscreens. Ashwin Nayak @4sh_N describes his work @ITMATI@Microflown in 15s, taking part in the #MyJobinResearch video challenge.
TECHNICAL AREA PICK
From Architectural Acoustics, this article uses sound scattering theory to characterize finite samples of surfaces: https://t.co/OLhgWBgxP9
#architecture#acoustics@DTUtweet@Microflown
Have you ever been annoyed by the #noise your #kitchen machine makes? Do comparable devices have a similar #sound characteristics? We’ve compared two kitchen machines and asked ourselves who is louder @vorwerk_gruppe#Thermomix#tm6 or @lidl Monsieur Cuisine Connect?
The full paper ‘Characterization of sound scattering using near-field pressure and particle velocity measurements’ is now available until August 31st!
Thanks Antoine Richard,Jonas Brunskog, Cheol Ho Jeong and Efren Fernandez-Grande for the great work!
Have fun reading! :)
We had the pleasure of collaborating @DTUtweet integrating Scan& Paint 3D data with an new method to estimate acoustic scattering.
The paper was recently chosen by @ASA_JASA as the latest Technical Area Pick for Architectural Acoustics.
Check it out: 🧐
https://t.co/RM3KtLt8VD
Do you want to do a 3D acoustic measurement in less than 15 min?
Easy to set up, applicable in operating environment and intuitive handling make a complete 3D measurement in a few minutes possible.
Our latest video shows how easy it can be! :)
#acoustic#Engineering
Last time we showed how to visualize the sound distribution around us using the unique features of Scan&Paint 3D. To gain a better overview of the system we have created an oversight with the most significant functions! Check out the Scan&Paint 3D at a glance!
New case study!
For every car journey, the audio system is indispensable. Be it for listening to music or the news, an even sound distribution and good quality are key. Also, it is becoming a more increasing role for sound masking and enhancement.
https://t.co/bQfd79HQmn