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 


 


        The range includes series 670 (subminiature) and 770 (miniature), including dedicated versions for medical applications. With these, the contacts of the female panel mount connector are protected by an integrated, spring-loaded plastic cover which seals the interface as soon as


the connector is unmated, effectively preventing the ingress of dirt, dust and liquids. Series 670 achieves a degree of protection of IP54 when unmated and IP67 when mated, while series 770 provides IP67 protection in both conditions. Additional features include a bayonet


locking system that enables fast, secure and tool-free connection. With more than 1,000 mating cycles (series 670) and more than 5,000 mating cycles (series 770), the system ensures long-term reliable performance even under frequent use. The female panel mount connectors are equipped with an integrated sealing cap. For series 770, a medical-grade


version in grey-white is also available. This is biocompatible in accordance with ISO 10993-5.


 





   These offer high reliability with numerous


transmission variants – there are eight docking frames in individually configurable lengths, and these can be equipped from a range of over 30 transmission modules to suit application demands. The optional quick- change head variant further increases the number of possible mating cycles. According to the company, the reliable contact technology, together with the floating frame support, ensures a particularly long service life for the docking unit. Once the slide-in unit has been engaged, the ODU-MAC guidance system takes care of the fine tuning. With the range, you can choose between different frames, from the smallest ‘Mini’ frame to the


largest ‘Power’ frame, each having a radial alignment tolerance of between 0.6mm and 4mm. There are also more than 30 data transmission modules available. The robust interfaces of the ODU-MAC Silver-Line enable transmission of pneumatics, high current and data in one connector.


  


 


   Built around a versatile snap-in modular architecture, these allow engineers to configure a variety of contact layouts within a single connector, enabling the transmission of power, signal and data through one interface.


Veam MOVE-MOD features an ultra-secure bayonet coupling mechanism, which incorporates a secondary locking feature to ensure connection integrity even in


the harshest environments. The connectors are IP67 rated for environmental sealing and employ a durable circular form factor that reduces weight while maximising space efficiency. Applications are in rail systems, off-road and specialty vehicles, energy and power distribution equipment, and factory automation environments.


  


    These simulators are high-precision machines


subjected to repeated accelerations, intense vibrations and constant mechanical stresses. Reliability depends as much on its algorithms and actuators as on the robustness of its technical components. In a growing market, driven by the increasing


sophistication of simulators and the growing demands of users, component quality is becoming a key performance factor. Simulator manufacturer Prosimu has therefore chosen LAPP technology to improve the reliability of its high-performance motion simulators. Prosimu’s simulators rely on complex dynamic


systems, integrating multiple actuators, sensors and data streams and, in these environments, the quality of cabling and harnesses is a key performance factor. Before collaborating with LAPP, the company


faced recurring electromagnetic compatibility (EMC) issues related to the insufficient quality of previously used cabling solutions. These interferences affected signal stability and could compromise the accuracy of movements, which is essential to the simulation experience. “Our simulators demand absolute precision and


reliability. LAPP’s cabling solutions have allowed us to secure our platforms and fully meet the requirements of our professional clients,” explained Mr. Kubieniec, founder and CEO of Prosimu. LAPP’s cabling and harnessing solutions are


integrated at the heart of the simulator, where the slightest failure could impact movement accuracy and system stability. Thiery Mazeran, sales director for Lapp in France,


commented: “Prosimu simulators incorporate high- precision actuators capable of delivering up to 2G of acceleration across six degrees of freedom! This is a highly constrained environment and, in this context, LAPP solutions have provided a set of game-changing advantages: first, optimal signal integrity thanks to resistance to vibration and mechanical stress; second, long-term reliability for intensive professional use.” Leveraging LAPP’s expertise, Prosimu strengthens


the reliability of its simulators and continues to develop increasingly high-performance simulation solutions for demanding international markets.


 


  45


  


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