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Intamsys

Intamsys Funmat HT Enhanced

Regular price $7499.00
Regular price Sale price $7499.00
Sale

High-temperature 3D printing for PEEK, ULTEM, and engineering thermoplastics

The Intamsys Funmat HT Enhanced is a high-temperature 3D printer built for functional parts in advanced materials such as PEEK, ULTEM, and PPSU. The printer combines a heated chamber, high-temperature extrusion, and industrial-quality resolution to support demanding engineering applications.

Users can achieve 50-micron high-resolution 3D printing while working with a broad range of engineering thermoplastics. The 260 x 260 x 260 mm build volume provides space for larger prototypes and end-use parts without moving into a much larger machine footprint.

Key features for high-performance material printing

Thermal system built for demanding polymers

The advanced thermal system includes a 90°C constant temperature chamber, a 160°C heated build plate, and a 450°C high-temperature extruder. An all-metal hotend supports the elevated temperatures required for high-performance functional materials.

50-micron ultra-high resolution

The Funmat HT is capable of 50-micron ultra-high resolution for industrial-quality 3D printing. The printer is designed to deliver detailed surface definition for parts that require precision and consistent output.

High-precision and high-speed motion control

Four high-performance independent drivers help ensure high-precision and high-speed printing. This motion system supports detailed results while maintaining the performance needed for industrial-quality production work.

Spectacular details are a core part of the machine's design focus, especially when printing functional components in advanced engineering materials.

Multi-material and open materials flexibility

Multi-material capability

The Intamsys printer is positioned for multi-material capability, making it suitable for users who need flexibility across different engineering-grade polymers and project requirements.

Open materials system

An open materials system gives users broader material choice beyond a closed ecosystem. That approach supports experimentation, process tuning, and workflow adaptation across a broad range of engineering thermoplastics.

Use cases for the Intamsys Funmat HT Enhanced

  • Functional prototypes: Print robust prototypes in PEEK, ULTEM, PPSU, and other engineering thermoplastics when standard desktop materials are not sufficient.
  • Industrial-quality parts: Use 50-micron resolution and controlled chamber heating for detailed, high-performance components.
  • Engineering applications: Produce parts that benefit from elevated-temperature processing and compatibility with advanced thermoplastics.
  • Material development workflows: Use the open materials system and multi-material capability to test different polymers and refine print parameters.

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