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    FibreSeeker 3 desktop 3D printer — front-left three-quarter view with door open on white/transparent background

    FibreSeek FibreSeeker 3 – Desktop composite 3D printer with continuous fiber

    FibreSeeker 3 desktop 3D printer — front-left three-quarter view with door open on white/transparent background
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    FibreSeek FibreSeeker 3 – Desktop composite 3D printer with continuous fiber

    €4 099.59
    €3 388.09 excl. BTW
    Pre-order, estimated delivery date early June 2026! FibreSeek FibreSeeker 3 is a next-generation desktop 3D printer that combines classic FFF printing with continuous carbon and glass fiber (CFC – Composite Fibre Coextrusion). It allows the production of functional parts with strengths up to 900 MPa, which is at the level of aluminum alloys, but at half the weight. Thanks to its large build volume of 300 × 300 × 245 mm, speeds up to 500 mm/s, enclosed chamber, and intelligent Aura slicer, FibreSeeker 3 is ideal for producing prototypes, fixtures, holders, robotic arms, UAV frames, and small series of parts right on the workbench in the workshop or office.
    Beschikbaarheid:In bestelling

    €4 099.59

    In bestelling

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    FibreSeek FibreSeeker 3 – personal 3D printer with continuous fiber

    FibreSeeker 3 from FibreSeek (the team behind Anisoprint) brings industrial composite technology to the standard desktop. It combines classic FFF printing with continuous carbon or glass fiber, allowing you to produce parts with a static strength of up to 900 MPa, with a weight significantly lower than aluminum. It is designed for makers, developers, small businesses, workshops, R&D teams, robotics, automotive, and education who need not only fast prototypes but especially fully functional, mechanically stressed components.

    Main advantages for users

    • Strength like metal, weight like carbon Continuous carbon fiber in a plastic matrix provides tensile strength up to 900 MPa – more than double that of common 6061 aluminum alloy – at roughly half the weight.
    • Dual-nozzle system: CFC + FFF Two independent extruders – one for classic filaments, the second for continuous fiber coextrusion. In one part, you can combine:
      • base material (PLA, PETG, PA, PC, ABS etc.)
      • continuous carbon or glass fiber
      • optionally also support/soluble material
    • Three intelligent printing modes Cover a wide range of tasks with a single machine:
      • High Speed Mode – high-speed FFF printing up to 500 mm/s for fast prototypes
      • High Strength Mode – balanced ratio of speed and fiber reinforcement
      • Hyper Strength Mode – maximum proportion of continuous fiber for extremely stressed parts
    • Large build volume in a compact body The build space of 300 × 300 × 245 mm offers the possibility to print large functional parts (arms, holders, fixtures, reinforcements) without splitting into multiple parts.
    • Enclosed chamber and high temperatures The enclosed print space stabilizes the temperature for engineering plastics. The printer reaches:
      • nozzle temperature up to 320 °C (plastics)
      • specialized fiber nozzle up to approx. 350 °C (according to manufacturer)
      • heated bed up to 110 °C This enables reliable printing of PA, PC, ABS, PACF, PETGF and other composites.
    • Smart lattice infill Special composite lattice infill places the fiber only where it is needed. Parts are:
      • strong in critical areas (holes, transitions, silent blocks)
      • lighter and more economical on material where full strength is not required
    • Precision and speed for everyday use
      • declared accuracy up to ±0,05 mm thanks to active vibration compensation
      • standard layers from 50 μm
      • fiber tension sensors, breakage and clog detection
    • Aura Slicer & AI monitoring Proprietary Aura Slicer Suite software automatically calculates fiber paths and optimizes the part structure:
      • pre-set templates (print mode, lattice infill type, density)
      • view of material and fiber distribution in cross-sections
      • remote supervision using an integrated HD camera with AI error analysis

    Typical uses for FibreSeeker 3

    • Robotics and automation Sensor holders, grippers, mounting fixtures, manipulator arms, parts for collaborative robots.
    • Automotive / motorsport Mounting brackets, pedals, levers, hinges, cable and hose holders, suspension components for RC models and test prototypes.
    • Drones and UAV Multicopter frames, arms, reinforcements, hardpoints for camera mounting, gimbal parts.
    • In the workshop and production Fixtures, templates, clamps, mounting blocks, jigs, replacements for milled aluminum parts.
    • Education and R&D Educational projects on the topic of composite structures, topological optimization, assembly and strength prototypes.

    Key features of FibreSeeker 3

    • Printing technology: FFF + CFC (Composite Fibre Coextrusion)
    • Dual-nozzle system: one extruder for plastic filament, the second for continuous fiber
    • Max. part strength: up to 900 MPa in tension (according to manufacturer)
    • Three print modes: High Speed, High Strength, Hyper Strength
    • Large build volume: 300 × 300 × 245 mm
    • FFF print speed: up to 500 mm/s (declared)
    • Minimum layer height: from 0,05 mm (50 μm)
    • Enclosed chamber: stable environment for engineering plastics
    • Heated bed: up to 110 °C, automatic leveling
    • Max. nozzle temperature: up to 320 °C for plastic, special fiber nozzle up to approx. 350 °C
    • Active vibration compensation: higher precision at high speeds
    • Sensors and safety: fiber breakage detection, flow monitoring, print watchdog
    • Integrated HD camera: remote print supervision, AI error recognition
    • Supported materials (plastic): PLA, PETG, PA (nylon), PACF (nylon with carbon fiber), PETGF (PETG with glass fiber), PC, ABS and others
    • Supported continuous fiber: carbon fiber (Carbon Fibre), glass fiber (Fiberglass), proprietary FibreSeek composite fibers
    • Software: Aura Slicer (Windows / macOS), support for STL, STEP/STP, 3MF
    • Connection: local network / USB (according to manufacturer configuration)
    • Target audience: makers, small and medium enterprises, prototyping workshops, schools, universities, design offices

    Why include FibreSeeker 3 in your 3D printing workshop

    • Significantly lower price for continuous fiber compared to industrial systems – suitable even for smaller companies and schools.
    • Replacement for milled aluminum parts in fixtures and single-purpose equipment.
    • High-speed FFF mode allows common plastic prototypes to be printed much faster than on standard desktops.
    • One machine handles the prototype, tested piece, and final functional part – significant reduction in time from design to usable product.

    Package contents (typical configuration)

    • 3D printer FibreSeek FibreSeeker 3
    • Maintenance tool set
    • Basic starter set of filaments and continuous fiber (according to manufacturer packaging)
    • Power cable
    • User documentation (online / PDF)
    Note: Exact accessories and configurations may vary by specific edition and campaign. Always verify the current specification in the product detail on our e-shop before ordering.

    Key features:

    • Continuous carbon and glass fiber for parts with strength up to 900 MPa
    • Dual-nozzle system: combination of FFF printing and CFC coextrusion in one machine
    • Large build volume 300 × 300 × 245 mm in a compact desktop design
    • Three intelligent modes (High Speed, High Strength, Hyper Strength) for speed or maximum strength
    • Enclosed chamber, nozzle temperature up to 320 °C and bed up to 110 °C for engineering materials
    • Special composite lattice infill for ideal strength / weight / material consumption ratio
    • Active vibration compensation with accuracy up to ±0,05 mm even at high speeds
    • Integrated HD camera and AI print monitoring for early error detection
    • Proprietary Aura Slicer with automatic fiber path optimization and STL/STEP/3MF support
    • More affordable price for continuous fiber compared to industrial composite systems