Coated & Ablated Pull Wire
Our PTFE Natural® Flex coating solutions are specifically engineered to provide optimal lubricity and durability for your Pull-Wire applications, enabling smooth catheter articulation during critical procedures.
A Solution for Every Design
Coated Pull Wire
Our proprietary PTFE Natural® Flex coating solutions deliver optimized lubricity, durability, and adhesion for the most demanding steerable catheter systems, ensuring smooth, consistent, and reliable articulation.
-
Superior Lubricity: Engineered to promote smooth articulation during navigation.
-
Excellent Durability: engineered for consistent performance during procedures.
-
Unmatched Adhesion: Coating remains intact without flaking, even under extreme conditions.
Coating: PTFE Natural® Flex
Substrate Material: 304 Stainless Steel, Hyten
Diameter Range: 0.008" to 0.012"
Key Characteristics: Low-friction, superior coating adhesion, ideal durability for Pull-Wire performance demands.
Length : Cut to customer specification
Laser Ablation
Our precision laser ablation process removes coating at one end of the wire, creating a clean, "no-flake" surface ready for welding, soldering, or bonding to a handle hub, ring, or other assembly.
-
Precision Termination: Provides an exact, bondable surface for reliable anchor points.
-
Clean Transitions: A proprietary process ensures a clean edge with no residue.
-
Enhanced Bond Strength: Creates the ideal surface for welding.
Ablation Process: Automated C02 Laser
Positional Accuracy: End-of-wire ablation tolerance of +/- 0.010"
Ablation Quality: Clean, residue-free surface with a "no-flake" transition zone
Applications: Creating termination points for welding, soldering, and bonding
Length Capabilities: 0.080" to 1.500"
Diameter Capabilities: 0.006" to 0.020"
Pull Wire Downloads
PTFE Natural® Flex Sell Sheet
Simplify Your Supply Chain
We know that speed and reliability are critical to your success. Our online tools are designed to accelerate your innovation and provide the responsiveness your projects demand.