Mechatronic grippers

The two new mechatronic grippers EGU and EGK combine all the advantages of mechatronic gripping and offer flexible workpiece handling due to their long and freely programmable jaw stroke with infinitely variable gripping force adjustment. Read more

Graphene, how can we produce it on a larger scale?

Graphene can be produced using different methods. One of the most used methods in single-layered graphene product is plasma enhanced chemical vapour deposition (PE-CVD). Flow control devices are being used to dose gases and liquids into the process.In this blog I would like to share the story of our Spanish distributor, Iberfluid Instruments S.A, who cooperated with the University of Cordoba…

Vacuum Generation 2 motors for powerful and precise processes

Generation 2 vacuum ironless linear motor series is designed with the unique challenges of vacuum applications in mind and based on years of collaboration with high-end semiconductor manufacturers. The portfolio is suitable for even the strictest vacuum requirements with a large force range. Read more

Major News in COMSOL Multiphysics® Version 6.1

COMSOL Multiphysics® version 6.1 introduces new functionality for detached eddy simulation, thermal analysis of satellites, winding layouts for electric motors, and robust mechanical contact. A new interface enables the analysis of battery packs with several hundred cells. Simulation of acoustically driven flows is made possible by a new acoustic streaming interface. New mesh repair tools for the handling of misaligned models provide…

How to get a reliable production planning

The production process within machining companies consists of countless variables that influence production planning. Cellro’s automation solutions speaks of “data intelligence” when it comes to collecting, unlocking and streamlining all these variables. This intelligent data presents itself to the user with the right information at the right time. This provides insights, that are the basis on which preventive…

Flowmeting in microfluïdica

Een fabrikant van microfluïdesystemen zocht een flow-oplossing om microfluïden efficiënter te meten. In eerste instantie maakte de fabrikant gebruik van thermische massflowmeters. De thermische massflowmetingen bleken echter niet stabiel genoeg voor deze toepassing en een hogere reproduceerbaarheid was gewenst. Bronkhorst stelde een alternatieve oplossing voor, waarbij werd gekozen voor een op Coriolis-technologie gebaseerde microfluïdeflowmeter. Lees verder