Phillips Medisize Launches Medical Connectors to Support Next-Gen Device Integration

They offer high pin count and voltage clearance.

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Phillips Medisize

Phillips Medisize introduced TheraVolt Medical Connectors, the first medical connectors launched under the Phillips Medisize brand. The company said they're engineered to optimize device integration, functionality, reliability and performance.

Emerging trends in electrophysiology (EP), most notably the rapid adoption of pulsed field ablation (PFA) technology, are driving increased demand for advanced medical connectors that support higher pin count densities and compact design. With enhanced cross-platform compatibility, TheraVolt Medical Connectors help simplify medical device integration, increase longevity of capital equipment, reduce customization development time and lower costs. This can enable more efficient solutions and greater flexibility for medical device companies developing PFA treatment for patients living with atrial fibrillation.

These tailored offerings for medical applications leverage 80+ years of global leadership in interconnect solutions from Molex, combined with more than 60 years of medical experience from Phillips Medisize. TheraVolt Medical Connectors support next-generation medical device integration and performance through:

  • High Pin Count and Voltage Clearance: Enables the integration of more functionalities, allowing medical device engineers to design multi-therapy medical devices with expanded capabilities, advanced functions and increased data collection.
  • Design Flexibility and Customization: Available off-the-shelf with the flexibility to be tailored to meet diverse application demands, with customizable configurations for specific pin counts and precise electrical requirements.
  • Sterilization Compatibility: Engineered to withstand multiple autoclave cycles, maintaining integrity and performance even under repeated exposure to harsh sterilization processes.
  • Safety and Reliability: Designed to support compliance with IEC and IPC requirements, helping to promote dependable operation in medical applications.
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