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    Lifetime Assessment for Capacitors in EPS Application

    Passive Components J-STD-075 Process Sensitivity Level Classification And Labeling

    New EPN Dielectric Film Capacitors Featuring High Temp and Power Density

    E-Textile SMD-Ribbon Joints Protections Against Sweat

    Reliability of Tantalum Capacitors: the Role of Internal Stress

    Bourns Releases Semi-Shielded Power Inductor with Polarity Control

    Quality Challenges and Risk Mitigation for Passive Components in Harsh Environments

    Silicon Capacitors Reliable Performance in Harsh Conditions

    Tantalum Capacitor Technology Advantages for Harsh Environment

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    Ripple Steering in Coupled Inductors: SEPIC Case

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    Lifetime Assessment for Capacitors in EPS Application

    Passive Components J-STD-075 Process Sensitivity Level Classification And Labeling

    New EPN Dielectric Film Capacitors Featuring High Temp and Power Density

    E-Textile SMD-Ribbon Joints Protections Against Sweat

    Reliability of Tantalum Capacitors: the Role of Internal Stress

    Bourns Releases Semi-Shielded Power Inductor with Polarity Control

    Quality Challenges and Risk Mitigation for Passive Components in Harsh Environments

    Silicon Capacitors Reliable Performance in Harsh Conditions

    Tantalum Capacitor Technology Advantages for Harsh Environment

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    Ripple Steering in Coupled Inductors: SEPIC Case

    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

    Understanding Inductor Dot Markings and Their Application in LTspice

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Exxelia Unveils Advanced Components for the Medical Device Industry

9.7.2025
Reading Time: 3 mins read
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Exxelia, a leading partner to the world’s top medical device manufacturers, announces its latest innovations in high-reliability electronic passive components engineered for the most demanding medical applications.

With a commitment to precision, stability, and long-term performance, Exxelia’s products are essential for enhancing patient care and safety.

RelatedPosts

Lifetime Assessment for Capacitors in EPS Application

Passive Components J-STD-075 Process Sensitivity Level Classification And Labeling

New EPN Dielectric Film Capacitors Featuring High Temp and Power Density

High-Q Capacitors for Medical Imaging

Exxelia’s CH, SH, and CL series of High-Q ceramic capacitors are designed for high-frequency applications, delivering ultra-low ESR and exceptional stability. These non-magnetic components are perfectly aligned with FFF requirements and are ideal for MRI coils, ensuring signal integrity and reliability for high-resolution medical imaging.

Reliable Power Solutions for Critical Care

The Exxelia Alcon PG-PED2, ACC-120 DFC, FP Series, and KPF Series film capacitors provide robust energy storage, filtering, and charge/discharge capabilities for all medical imaging modalities, patient monitoring, ventilators, and defibrillators. Their high reliability and extended lifetime are crucial for demanding medical applications.

Advanced Magnetics for Medical Equipment

Exxelia offers a comprehensive range of magnetic components for medical equipment power management, including X-Ray Transformers that deliver precise high voltage for advanced X-ray systems, enhancing image quality and patient safety. The company also provides higher-level assemblies, such as complete Power Distribution Units (PDUs), and integrates precision mechanics for specialized applications, including oil tank use in clean room environments. Exxelia’s power inductors, including the 370uH 27Adc smoothing choke, ensure stable power filtering for reliable medical electronics. Custom stators power high-performance motors in applications requiring precise motion control, such as surgical tools and robotic systems.

NEW: Optimized Power Distribution with Exxelia SVM Bus Bars

Exxelia’s custom SVM bus bars offer a superior solution for power distribution in complex medical systems like CT and MRI scanners. With low inductance and a compact, reliable design, these bus bars enhance system efficiency and performance, replacing complex wiring harnesses. The SVM product range includes:

  • Laminated bus bars with up to 4 layers for complex requirements
  • Powder-coated bus bars using precise epoxy width for superior insulation
  • PVC molded bus bars overmolded with Kobasol-4 for soft and flexible insulation
  • Bare copper bus bars with multiple bends, formed using Copper as per ASTM B152 C11000 (ETP)

High Voltage Resistors & Dividers

Exxelia Ohmcraft resistors provide unparalleled precision and performance for cutting-edge diagnostic imaging. Manufacturers of CT, X-ray, ultrasound, mammography, nuclear imaging, PET, radiography, and MRI devices rely on our leaded and surface-mount resistors. With tightly controlled TCR and VCR, low noise, and enhanced ESD tolerance, these high-voltage and high-value resistors are premium components for ensuring the accuracy and reliability of advanced imaging methods.

Related

Source: Exxelia

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