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Prusa

Prusa CORE One L

Regular price $2899.00
Regular price Sale price $2899.00
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The Prusa CORE One L is a large-format enclosed CoreXY 3D printer built for reliable printing across hobby, studio, business, education, and production use. With a 300 × 300 × 330 mm build volume, an actively heated chamber up to 60°C, and a new AC convection heatbed, the printer is designed for effortless, warp-free printing with demanding materials while remaining open, offline-capable, and free from vendor lock-in.

Prusa positions this machine as a versatile all-in-one tool for home workshops, shared makerspaces, design studios, and manufacturing environments. The printer supports high-quality output with any compatible material, works with any slicer, and can run completely offline if required. When you get a Prusa, you own the machine rather than a licence to use it.

Large-format enclosed 3D printer for demanding materials

The CORE One L expands on the CORE One platform with a substantially larger print area and features aimed at easier large-format printing. Prusa states the machine is not simply a scaled-up version, but a redesigned system that keeps what worked in the CORE One and adds improvements for bigger, more demanding jobs.

The outer structure uses a solid steel frame with aluminum panels, creating a lighter take on the proven exoskeleton design. According to Prusa, the outside dimensions are only 10% larger than the CORE One, the weight remains the same, and the print volume is doubled.

The printer also adds a detachable 1080p camera with night vision, fully automatic chamber temperature management, easier FLEX filament feeding, and two included nozzles in the box. The result is a machine intended to cover everything from ambitious personal projects to highly demanding manufacturing tasks.

300 × 300 × 330 mm print volume for larger one-piece parts

Think big and fit more on the bed

The 300 × 300 × 330 mm print volume is intended as a practical large-format size for a wide range of applications. Prusa describes it as the sweet spot for projects that need more room without moving into oversized industrial equipment.

This larger build area allows the printer to produce large functional parts, production fixtures, architectural models, full-size cosplay helmets, and other big components in a single piece. The new heatbed is designed to maintain strong heat distribution across the full surface, allowing prints from edge to edge with less concern about lifted corners.

AC convection heatbed for even heat and faster chamber warm-up

No cold corners and no cold spots

The new AC heatbed is built from a thick block of aluminum for more uniform thermal performance across the print surface. Prusa highlights this design as a way to achieve edge-to-edge heat consistency, so models can be placed anywhere in the print area without the typical risk of colder zones.

Two fans underneath the heatbed create a convection effect by pulling in cooler air and moving it across the heated surface. This setup helps the chamber quickly reach up to 60°C, supporting more stable printing conditions for advanced materials and reducing issues such as warping and corner lift.

Quick setup and first print in minutes

Factory-prepared for immediate use

The printer arrives assembled and pre-calibrated, reducing setup to a short sequence after unboxing. Prusa describes the process as unpacking the machine, clicking the display into place, and plugging it in, without requiring self-tests, manual calibration, or extra tinkering.

The CORE One L manages its internal print environment on its own, including chamber conditions. For a simple first workflow, users can download a model from Printables.com, process it with EasyPrint, and begin printing almost immediately.

Designed for long runs, overnight jobs, and larger production batches

More parts per plate and less downtime

A larger build volume benefits not only single big parts but also batch production. Prusa notes that the print plate is 63% larger than the one in the CORE One, allowing significantly more parts to be arranged on the bed for overnight runs and larger series production.

The included 1080p night vision camera supports remote visual checks during longer jobs, while phone notifications help monitor progress. This makes the machine suited to users who need more printing and less interruption between jobs.

Dimensional accuracy and overhang performance for functional parts

What you design is what you get

The CORE One L uses Prusa’s internally developed print profiles with a focus on dimensional accuracy. Prusa states that output accuracy has been proven by CT scans, making the printer suitable for applications where parts need to match the original design closely.

The machine also uses the proven Nextruder with 360° cooling, enabling clean printing of 75° overhangs. That overhang performance can reduce the need for support material, saving both print time and material use.

Improved surface finish for end-use parts

Cleaner walls and fewer visible artefacts

With the latest updates to PrusaSlicer and Prusa’s internally tuned print profiles, the CORE One L is aimed at stronger-looking final output. Prusa says the system has all but eliminated VFAs (Vertical Fine Artifacts) and unwanted vertical stripes on printed parts.

That surface quality matters for users producing display pieces, customer-ready components, fixtures, prototypes, or small-run products. The intended outcome is a print that can be taken from the heatbed and used as the final product.

High-speed CoreXY printing without restricting material choice

Fast output with standard and advanced filaments

The CORE One series is presented as Prusa’s fastest printer line to date. The platform combines robust CoreXY kinematics, a high-flow nozzle, Input Shaper, and factory-tuned print profiles for more than 200 filaments.

Prusa emphasises that speed does not depend on niche high-speed materials alone. The printer is intended to run common PLA and PETG as well as many advanced materials, while still maintaining solid, durable prints rather than chasing speed records at the expense of part strength or quality.

Heated chamber printing for ABS, ASA, PC, PA, and other advanced filaments

Stable thermal control for durable models

The compact chamber layout and active heat circulation are designed specifically to improve performance with engineering materials. Using the new high-performance heatbed and its two-fan convection system, the chamber heats up quickly to 60°C.

This thermal stability helps the printer handle materials such as ASA, ABS, PC, and PA (Nylons) with reduced cracking, reduced corner lift, and reduced warping. The printer is therefore suited to stronger functional parts, workshop tools, fixtures, and parts used in more demanding environments.

Flexible filament loading with a dedicated path option

Less restrictive feeding for FLEX materials

The CORE One L includes a practical feature for easier handling of flexible filaments. A physical switch changes the side filament sensor into a flexible filament loading mode, which disables that sensor and opens a wider, less restrictive path for the material.

A second filament sensor in the print head remains active to monitor filament runout. This approach gives the machine a more suitable feed path for soft materials while preserving runout monitoring during printing.

Steel exoskeleton design for rigidity and long-term serviceability

Stable construction with straightforward maintenance

The printer is built around an all-steel exoskeleton, with the enclosure forming an integral part of the structure. That design supports overall stability and rigidity, which directly contributes to print quality in a CoreXY machine.

Maintenance remains simple because the machine can be disassembled with a screwdriver. Prusa also notes that replacement parts are kept in stock for years, making the CORE One L easier to maintain over a longer service life.

Factory calibration and included tools for performance tuning

Ready to run with built-in adjustment features

The CORE One L comes pre-calibrated from the factory, but it also includes features to support re-tuning after larger maintenance work. An onboard accelerometer and a firmware wizard for optimal belt tension help restore performance without requiring complex manual procedures.

The package includes two nozzles: a high-flow nozzle and an abrasive-resistant nozzle. Together, these extend material coverage and make it easier to switch between faster general printing and more wear-resistant applications.

Built for print farms and industrial-style workflows

Lower downtime in larger-scale production settings

Prusa draws on experience from operating a print farm with more than 600 of its own 3D printers producing parts for new machines. That background informs the CORE One L’s focus on reliability, throughput, and practical operation in production environments.

For users who need larger parts or more parts per cycle, the machine is positioned as a strong fit for print farms and industrial applications. Prusa specifically states that the CORE One L offers the lowest downtime ratio compared with the MK4S and CORE One.

Open ecosystem without vendor lock-in

You control the machine and the workflow

The CORE One L is designed around ownership and user control rather than dependency on a closed platform. It does not require a user account, it does not depend on cloud access, and it can be used for as long as the owner chooses in the way that best fits the application.

This open approach also means freedom to choose software and operating style. The printer can be integrated into Prusa’s ecosystem while still allowing use with any slicer and offline workflows.

Offline 3D printing for privacy-sensitive environments

Full operation without network access

The CORE One L can be configured and operated completely offline, including slicing and firmware update installation. Prusa states that there is no need to connect the machine to a network, even once, to access the full experience.

For environments with strict security requirements, the Wi-Fi module can be physically unplugged by releasing a single screw on the back of the printer and removing the module. This makes the printer relevant for high-security industries, sensitive manufacturing, government use, and other privacy-critical workflows where data isolation matters.

Built on the CORE One platform and recognised by industry awards

Strong foundation with established credibility

The CORE One L builds on the Prusa CORE One platform, which Prusa describes as a significant step forward in the CoreXY market. The existing platform has been recognised for its build quality, speed, accuracy, and professional-grade feature set.

Prusa cites TechRadar calling the CORE One “by far the most advanced and functional printer of this type on the market at present.” The platform was also awarded “Best Enclosed 3D Printer of 2025” by All3DP and has received a Red Dot Award, combining functional performance with a strong industrial design standard.

Customisable hardware and open-source software

Designed to be modified, repaired, and adapted

The printer comes assembled and calibrated, but the platform remains open to modification. No parts are glued together, the machine can be taken apart with standard screwdrivers, and the design leaves room for add-ons, organisers, magnetic holders, and other custom accessories.

Prusa’s software and firmware are open-source, with source code available on GitHub. That gives users the ability to modify the code, create their own tweaks, and participate in a development model that often includes community collaboration on new features.

Use cases for the Prusa CORE One L

  • Functional prototypes: Dimensional accuracy, CT-scan-verified precision claims, and improved surface quality support design validation and fit-checking.
  • Production fixtures and batch parts: The 63% larger plate area compared with the CORE One allows more parts per run for overnight or repeat production.
  • Large-format one-piece prints: The 300 × 300 × 330 mm volume suits cosplay helmets, architectural models, machine guards, jigs, and larger workshop components.
  • Engineering materials: The heated chamber and convection heatbed are intended for ABS, ASA, PC, PA, and other warp-prone filaments.
  • Educational and makerspace environments: Fast setup, simple operation, and compatibility with offline use fit shared spaces and classrooms.
  • Security-conscious organisations: Full offline operation and removable Wi-Fi hardware support use in privacy-sensitive or restricted networks.

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