Overview of Platinum Iridium Wire Pt90/Ir10
Our Superior Radiopacity Pt90/10 Iridium Alloy Wire is engineered for demanding applications in interventional and minimally invasive instruments, providing unmatched X-ray opacity for precise diagnostic imaging. This high-performance medical alloy wire, composed of 90% platinum and 10% iridium, excels in guidewire cores, marker bands, and catheter components, ensuring reliable visibility during fluoroscopic procedures. Widely used in global healthcare settings from North American interventional suites to European endovascular labs, it supports advanced minimally invasive therapies by enhancing procedural safety and efficiency in diagnostic radiology equipment.

Features of Pt90/Ir10 Platinum Iridium Alloy Wire
Exceptional Radiopacity in Interventional Radiology Wire Applications: Delivers superior X-ray visibility, outperforming standard materials in minimally invasive diagnostic tools for clear fluoroscopy imaging.
High-Density Platinum Iridium Composition for Medical Device Durability: 90/10 Pt-Ir alloy ensures corrosion resistance and mechanical strength, ideal for long-term use in guidewires and endovascular instruments across international markets.
Precision Manufacturing for Minimally Invasive Procedure Compatibility: Available in custom diameters and lengths, supporting seamless integration into diagnostic catheters and interventional guidewires with biocompatible properties.
Enhanced Biocompatibility in Global Endovascular Wire Solutions: Meets stringent ISO standards for medical alloys, reducing tissue irritation in interventional procedures from US-based hospitals to Asian medical facilities.
Versatile Thermal and Electrical Conductivity for Diagnostic Imaging Tools: Facilitates efficient heat dissipation and signal transmission in minimally invasive instruments, optimizing performance in radiology and cardiology applications.


Implantable Medical Applications of Platinum Iridium Wire
Interventional Radiology Guidewires for Precise Vessel Navigation: Utilized in diagnostic angiography to provide high-contrast imaging, aiding in accurate catheter placement during minimally invasive vascular procedures in North American and European clinics.
Marker Bands for Endovascular Stents and Catheters: Enhances visibility in fluoroscopy-guided interventions, supporting global minimally invasive therapies for conditions like atherosclerosis and aneurysms.
Core Components in Diagnostic Medical Devices: Integral to building reliable guidewires for cardiology and neurology applications, ensuring safety in international interventional suites.
Minimally Invasive Biopsy and Aspiration Tools: Improves imaging precision in oncology diagnostics, facilitating targeted tissue sampling with reduced patient risk across Asian and Western healthcare systems.
Hybrid Use in Radiology Equipment and Implantable Devices: Compatible with advanced imaging modalities, promoting effective use in global markets for interventional procedures and diagnostic wire assemblies.


ABOUT US
Victory Alloy Co., Ltd. is a professional manufacturer specializing in medical alloy materials, with a dedicated focus on the research, development and production of high-performance biomedical alloys.
Our primary product range includes medical-grade titanium alloys, Nitinol (nickel-titanium alloy), cobalt-chromium (CoCr) alloys, platinum-iridium (Pt-Ir) alloys, and medical stainless steel. These high-quality alloys are widely applied in a broad spectrum of medical fields, such as cardiovascular stents, orthopedic implants, interventional guidewires, dental implants, surgical instruments, and disposable medical auxiliary devices. Boasting outstanding biocompatibility, strong corrosion resistance and excellent mechanical properties, our products have won consistent praise from customers across the board.

Client Visits
We welcome client visits to showcase our manufacturing and testing processes. Clients can explore our facility, discuss specific needs, and learn about our quality control methods. Our team ensures a personalized experience to meet your exact requirements for medical applications.

Our Factory

Quality Testing of the Product
Our product undergoes strict testing for tensile strength, corrosion resistance, and biocompatibility to ensure reliable performance in joint implants. We use advanced methods to verify its safety and durability, and all products meet international medical standards for consistent, long-term use in the body.


FAQs About Medical Grade Platinum Iridium Wire for Interventional Guidewires
1.What makes Pt90/10 iridium alloy wire superior for radiopacity in diagnostic guidewires?
The 90% platinum and 10% iridium composition provides exceptional density, ensuring clear visibility under X-ray in interventional radiology and minimally invasive procedures, outperforming alternatives like tungsten in global medical device applications.
2.How does this platinum iridium wire support minimally invasive interventional instruments?
It offers high mechanical strength and biocompatibility, making it ideal for guidewire cores and marker bands in diagnostic catheters, enhancing precision in endovascular therapies across US, European, and Asian healthcare environments.
3.Is the Pt90/10 iridium alloy wire customizable for specific interventional radiology needs?
Yes, we provide tailored diameters, lengths, and finishes to fit various minimally invasive diagnostic tools, ensuring compatibility with international standards for medical alloy wire manufacturing.
4.What are the biocompatibility standards for this radiopaque wire in global endovascular applications?
It complies with ISO 10993 and USP Class VI, minimizing risks in interventional procedures and supporting safe use in diagnostic imaging equipment worldwide.
5.Can this iridium alloy wire be used in high-volume production for minimally invasive medical devices?
Absolutely, its durability and consistent performance make it suitable for scalable manufacturing of guidewires and catheters, catering to demands in interventional radiology markets from North America to emerging Asian regions.






