ICP DAS-BMP Showcases Innovations in Medical TPU
ICP DAS-BMP, a renowned manufacturer from Taiwan, will be showcasing its cutting-edge thermoplastic polyurethane (TPU) technologies at an upcoming international exhibition. The event, known as COMPAMED 2025, will take place in Düsseldorf, providing an ideal platform for industry professionals to explore the latest advancements in medical-grade materials.
Details About the Event
From November 17 to 20, attendees can find the ICP DAS-BMP team at their designated booth, Hall 8b, Booth C09-4. This year, visitors can expect a focus on two significant innovations: the Low-Migration Series and the Low-Friction Series of TPU, both designed to enhance the manufacturing and performance of medical devices.
Low-Migration TPU Series Highlights
The Low-Migration TPU, identified as Arothane™ ARP-B20, meets ISO 10993 standards and is suitable for internal use in medical devices for up to 90 days. Its design minimizes the migration of additives during processing, which is crucial for retaining the smooth surface integrity of catheters throughout their shelf life. With an array of 15 color options, this product allows manufacturers to implement custom designs while ensuring safety.
Exploring the Low-Friction Series
Addressing the need for smoother functional surfaces in medical applications, the Low-Friction Series eliminates the requirement for additional surface treatments. Composed solely of TPU and devoid of harmful PFAS or plasticizers, this series guarantees long-lasting stability with no risk of surface exudation. Its exceptional low-friction properties make it ideal for devices requiring easy insertion, such as nasogastric tubes equipped with guidewires.
Diverse TPU Portfolio for Medical Applications
ICP DAS-BMP’s extensive TPU portfolio caters to various medical applications. The ARP, ALP, and ALC series cover most body-contact devices, with specific products qualified for long-term implantation. The ARP-W series enhances radiopacity by integrating tungsten into the TPU formulation, improving visibility in guidewires and other thin-walled medical devices. Additionally, the Engineering Arothane™ EARP series stands out for its clarity and tensile strength, making it an excellent choice for orthodontic applications and Luer-Lock connectors.
Commitment to Quality and Innovation
ICP DAS-BMP remains dedicated to developing safe, reliable, and innovative TPU solutions that empower manufacturers within the healthcare industry to adapt to the continuously evolving landscape. By prioritizing research and development, the company aims to surpass the expectations of medical device producers worldwide.
About ICP DAS-BMP
As a leading manufacturer and supplier of TPU-based materials, ICP DAS-BMP has achieved ISO 13485 certification, underscoring its commitment to quality in medical applications. With over 30 years of experience deriving from its parent company, ICP DAS, the firm utilizes advanced technologies and smart factory practices to ensure high standards in production efficiency and customer service. ICP DAS-BMP emphasizes responsive after-sales support and effective solutions, making it a preferred partner for customers with small order requirements.
Frequently Asked Questions
What will ICP DAS-BMP showcase at COMPAMED 2025?
They will showcase their Low-Migration and Low-Friction TPU innovations aimed at enhancing medical device manufacturing.
Where can visitors find ICP DAS-BMP at the event?
Attendees can visit ICP DAS-BMP at Hall 8b, Booth C09-4 during the event.
What is the significance of the Low-Migration TPU series?
The Low-Migration series is designed to minimize additive migration, ensuring safety and durability in medical devices.
How does the Low-Friction TPU series benefit medical applications?
This series features an inherently smooth surface, eliminating the need for coatings, making it perfect for applications requiring easy insertion.
What certifications does ICP DAS-BMP hold?
ICP DAS-BMP is ISO 13485 certified, ensuring their products meet high-quality standards for medical applications.