$1,139.00
Summary The INDX is an extremely fast, highly efficient toolchanger system with up to eight independent toolheads that seamlessly integrates with your CORE One+ 3D printer. Each material gets its own dedicated path, so you can combine rigid and flexible parts, use easy-to-remove or dissolvable supports, switch nozzle sizes in the same print, and...
$786.50
Summary High-impact denture base material for lifelike, long-lasting prosthetics Denture Base Resin V2 is a high-impact, Class II biocompatible material for producing durable, natural-looking dentures that exceed ISO standards. Three semi-translucent pink shades, broad workflow compatibility, and a streamlined post-processing protocol give den...
$499.99
Summary BioMed Flex 50A Resin is a soft, elastic, and transparent material for biocompatible applications requiring comfort and long-term skin (>30 days) or short-term mucosal membrane contact (<24 hours). BioMed Flex 50A Resin is manufactured in our FDA-registered, ISO 13485-certified facility. Description Why Choose BioMed Flex 50A Resin...
$31.99
Matte black Original PrusaSlicer Mug, printed with PrusaSlicer keyboard shortcuts that make it easier for you to slice 3D models. Enamel mug with handle Diameter 8 cm (3,15 inches) Height 8 cm (3,15 inches) Volume 400 ml (13.5 oz) Weight 158 g Color: Matte black with glossy text Do not wash in dishwasher*
$23.99
Summary If you miss your 3D printer every time you lose sight of your heatbed, you can now place it right on your workbench and enjoy looking at it every day with the Original Prusa MousePad.
$559.00
Summary Introducing Original Prusa Enclosure: Modular box for your 3D printer. Enclosures mainly help with stabilizing the inner environment and raising ambient temperatures, which is vital for printing materials such as ASA, PC-CF, PP, and others that have a tendency to warp. Prusa Research also prepared a handful of add-ons that cater to any...
$194.99
Summary The heatbed has embedded high Curie temperature magnets. These magnets are able to firmly hold removable spring steel sheets. This print sheet is specially designed to print polyamide-based filaments, especially the Prusament PA11 Carbon Fiber Black. The PA11-type materials have generally a lower adhesion on textured or satin print she...
$104.99
Summary Double-sided Smooth PEI spring steel sheet for Prusa CORE One L Description You can leave small marks on the print surface with your nozzle or tools, they will typically be shinier than the rest. It does not affect functionality or adhesion. However, if you want to have the same surface look on the whole printbed you can resurface it. Th...
$90.99
Summary Double-sided textured PEI powder-coated spring steel sheet for Prusa CORE One L. Description Powder coating directly on metal makes it very hard to damage this build plate. If a heated nozzle crashed into it, the metal can dissipate the heat. Powder coating also gives the surface a distinct textured look that will be visible on your prin...
$98.99
Summary Double-sided satin powder-coated spring steel sheet for Prusa CORE One L Description In terms of printing properties, the Satin sheet sits between the smooth and textured variants. Its powder-coated surface with lightly textured matte finish offers an optimal level of adhesion, especially when printing PLA and PETG materials. It is fully...
$41.99
Summary Prusament is a premium-grade material made by the same people who build the printers. Every spool is manufactured in-house with consistent color and high diameter precision. You can verify it yourself, down to the last meter. Description Why To Choose Prusament Guaranteed Color Consistency Every Prusament color is formulated and lo...
$41.99
Summary The Filament Buffer is used to regulate the filament movement, ensuring an appropriate and stable supply of filament to the hotend. Description Installation Learn more about the H2D/H2C Filament Buffer on Bambu Lab Wiki. In the Box - Filament Buffer*1 - BT3-8 Screw*4 Compatibility H2D & H2C Specifications Pa...
Painting intricate models is a thing of the past — the H2C brings your designs to life with six-color printing and a versatile seventh nozzle for support or an additional color. This whole thing is printed in 2 parts. The main raptor is 6-color and the base is another 6-color.
Purge Saving Multi-Material Printing With the H2C, you can print up to seven different materials in a single run — no nozzle purging required. Combine multiple material properties in one seamless structure and take integrated design to a whole new level.
Integrated TPU Joints for Multi-Color Parts Print durable TPU ball joints for your robot models — flexible, long-lasting, and built for endless motion.
In traditional single-nozzle multi-material printing, purging is needed to clear leftover material between filament changes.Vortek changes that with an intelligent hotend-swapping system that replaces the entire hotend — delivering faster, cleaner prints with minimal waste.
The Vortek system works seamlessly with our highly reliable AMS (Automatic Material System), making the entire filament change process fully automatic — no need to manually load each filament into the toolhead.
The Vortek system can store filament information in the hotend’s memory, ensuring the correct filament is matched to each hotend. If you are printing with more than seven filament types, the system can calculate the optimal combination to minimize purge waste.
Because only the hotend is swapped, the system can house up to six replaceable hotends without significantly reducing the build volume.That means more materials, more colors, and more possibilities — all in one print.
Our industry-leading induction heating technology brings the nozzle to temperature in 8-sec, significantly reducing the preheating time for each material swap compared to traditional methods.
Our high standards for reliability led us to move away from contact-based metal pins, which are prone to oxidation and unstable connections.We developed a contactless solution that ensures a stable, high-frequency connection — the foundation for precise temperature control and intelligent hotend sync.
Unlike traditional toolchanger printers that limit color count by the number of toolheads, the H2C supports up to 24 materials in a single print through parallel-connected AMS units. Its intelligent algorithm optimizes filament-to-hotend allocation to minimize purge waste while delivering outstanding multi-color and multi-material results.
With its seamless enclosure and adaptive airflow system, the H2C maintains a stable chamber temperature for high-performance materials and filters the air to keep your workspace clean and safe.
Our inductive nozzle offset calibration is fully automated — no manual steps, no calibration plates, no extra setup. In just a few minutes, the H2C precisely calibrates nozzle offset to within 25 microns.*
The H2C's Vortek system lets you dedicate one of its six interchangeable hotends to specific filaments — a game-changer for valuable engineering materials.This ensures superior consistency and reliability across prints. Each hotend can even automatically store filament information, so the next time you load that material, it's instantly matched to the correct hotend.
The PMSM servo extruder delivers up to 10 kg of maximum extrusion force—70% more than stepper motor—dramatically improves high-flowrate extrusion stability. Our proprietary servo architecture samples resistance and position at 20 kHz, actively detecting filament grinding and clogs in real time.
With its Vision Encoder, the H2C achieves a distance-independent motion accuracy of less than 50 μm—thinner than human hair. The system automatically compensates for any mechanical drift during calibration, ensuring consistent precision and peak performance over time.*
The H2C leverages both the servo motor on the extruder and the high-resolution eddy current sensors on the nozzle to sense extrusion dynamics. This enables precise extrusion control and automatic calibration of Pressure Advance (PA) parameters for each filament, resulting in smoother surfaces and cleaner, sharper edges.
The H2C's 65 °C actively heated chamber & 350°C Nozzles minimizes warping and deformation while enhancing layer adhesion for high-performance, high-temperature filaments.

The H2C is equipped with an array of 59 sensors* and a quad-camera computer vision system, all orchestrated by our proprietary neural algorithm. This system delivers intelligent, real-time diagnostics that can detect even the most subtle print anomalies as they happen. You don't have to be an expert to solve problems—your printer does the job for you.
The H2C features an AI-backed camera system. This intelligent monitoring system continuously tracks extrusion patterns, immediately detecting material accumulation, filament deviations, and extrusion failures. Also runs a pre-flight scan to ensure a safe start.
The H2C's three-stage filtration system is essential for printing with engineering filaments. This powerful combination of a G3 pre-filter, an H12 HEPA filter, and a coconut shell activated carbon filter effectively minimizes the odors and harmful particulates often released by engineering materials.
The H2C's chamber is constructed entirely with flame-retardant material, providing robust, passive fire safety protection across the entire enclosure.
The H2C offers convenient cloud connectivity for remote control from any device. For security-sensitive applications, it also provides full offline functionality, ensuring complete physical isolation. Users can operate the printer, send files, and update firmware without an internet connection. For advanced users, Developer Mode enables MQTT port access for integrating third-party components and software.*

| Item | Specifications | |
|---|---|---|
| Printing Technology | Fused Deposition Modeling | |
| Body | Build Volume (W*D*H) | Single Nozzle Printing: 325*320*320 mm³ (Left) Single Nozzle Printing: 305*320*325 mm³ (Right) Dual Nozzle Printing: 300*320*325 mm³ Total Volume for Two Nozzles: 330*320*325 mm³ |
| Chassis | Aluminum and Steel | |
| Outer Frame | Plastic and Glass | |
| Physical Dimensions | Physical Dimensions | 492*514*626 mm³ (Recommended Space for Printer: 700mm*700mm*1100mm) |
| Net Weight | 32.5 kg | |
| Toolhead | Extruder Gear | Hardened Steel |
| Nozzle | Hardened Steel | |
| Max Nozzle Temperature | 350 °C | |
| Supported Nozzle Diameter | 0.2 mm, 0.4 mm, 0.6 mm, 0.8 mm | |
| Filament Cutter | Built-in | |
| Filament Diameter | 1.75 mm | |
| Extruder Motor | Bambu Lab High-precision Permanent Magnet Synchronous Motor | |
| Heatbed | Build Plate Material | Flexible Steel Plate |
| Included Build Plate Type | Textured PEI Plate | |
| Supported Build Plate Type | Textured PEI plate, Engineering Plate | |
| Max Heatbed Temperature | 120 ℃ | |
| Speed | Max Speed of Toolhead | 1000 mm/s |
| Max Acceleration of Toolhead | 20,000 mm/s² | |
| Max Flow for Hotend | 40 mm³/s (Test parameters: 250 mm round model with a single outer wall; Bambu Lab ABS; 280 °C printing temperature) | |
| Chamber Temperature Control | Active Chamber Heating | Supported |
| Max Temperature | 65 °C | |
| Air Purification | Pre-filter Grade | G3 |
| HEPA Filter Grade | H12 | |
| Activated Carbon Filter Type | Granulated Coconut Shell | |
| VOC Filtration | Superior | |
| Particulate Matter Filtration | Supported | |
| Cooling | Part Cooling Fan | Closed Loop Control |
| Cooling Fan for Hotend | Closed Loop Control | |
| Main Control Board Fan | Closed Loop Control | |
| Chamber Exhaust Fan | Closed Loop Control | |
| Chamber Heat Circulation Fan | Closed Loop Control | |
| Auxiliary Part Cooling Fan | Closed Loop Control | |
| Toolhead Enhanced Cooling Fan | Closed Loop Control | |
| Supported Filament Type | PLA, PETG, TPU, PVA, BVOH, ABS, ASA, PC, PA, PET, PPS;Carbon/Glass Fiber Reinforced PLA, PETG, PA, PET, PC, ABS, ASA, PPA, PPS | |
| Sensor | Live View Camera | Built-in; 1920*1080 |
| Nozzle Camera | Built-in; 1920*1080 | |
| BirdsEye Camera | Built-in; 3264*2448 (Equipped with Laser Edition) | |
| Toolhead Camera | Built-in; 1600*1200 | |
| Door Sensor | Supported | |
| Filament Run Out Sensor | Supported | |
| Filament Tangle Sensor | Supported | |
| Filament Odometry | Supported with AMS | |
| Power Loss Recovery | Supported | |
| Electrical Requirements | Voltage | 100-120 VAC / 200-240 VAC, 50/60 Hz |
| Max Power* | 1800 W@220 V/1250 W@110 V | |
| Typical Power | 200 W@220 V/200 W@110 V (Single Nozzle Printing PLA) | |
| Working Temperature | 10 °C-30 °C | |
| Electronics | Touchscreen | 5-inch 720*1280 Touchscreen |
| Storage | Built-in 8 GB EMMC and USB Port | |
| Control Interface | Touchscreen, mobile App, PC App | |
| Motion Controller | Dual-core Cortex-M4 and Single-core Cortex-M7 | |
| Application Processor | Quad-core ARM with NPU | |
| Neural Processing Unit | 2 TOPS | |
| Software | Slicer | Bambu Studio Supports third-party slicers which export standard G-code, such as Super Slicer, PrusaSlicer and Cura, but certain advanced features may not be supported. |
| Supported Operating System | MacOS, Windows, Linux | |
| Network Control | Ethernet | Not Available |
| Wireless Network | Wi-Fi | |
| Network Kill Switch | Not Available | |
| Removable Network Module | Not Available | |
| 802.1X Network Access Control | Not Available | |
| Wi-Fi | Operating Frequency | 2412 - 2472 MHz, 5150 - 5850 MHz (FCC/CE) 2400 - 2483.5 MHz, 5150 - 5850 MHz (SRRC) |
| Wi-Fi Transmitter Power (EIRP) | 2.4 GHz: <23 dBm (FCC); <20 dBm (CE/SRRC/MIC) 5 GHz Band1/2: <23 dBm (FCC/CE/SRRC/MIC) 5 GHz Band3: <30 dBm (CE); <24 dBm (FCC) 5 GHz Band4: <23 dBm (FCC/SRRC); <14 dBm (CE) | |
| Wi-Fi Protocol | IEEE 802.11 a/b/g/n | |
| H2C AMS Combo | H2C Laser Full Combo | Ultimate Set | |
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