As low as $33/mo or 0% APR with Affirm. Prequalify now
As low as $33/mo or 0% APR with Affirm. Prequalify now
Make Multi-Color 3D Printing Real!! Color, the ultimate expression of emotions, is brought to you by Bambu Lab's Automatic Material System (AMS). You can now enjoy printing freely in multiple colors and materials.
Product Features:
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Introducing AMS, Evolved — a leap forward in multi-material 3D printing. The all-new 2nd-generation AMS systems, including the AMS 2 Pro and AMS HT, deliver faster, smarter, and more reliable filament management with cutting-edge enhancements.
Evolved, Polished Design Details: The AMS 2 Pro features a refined design with easier access, greater durability, and improved usability.
Tool-Free Filament Tubes Access: Filament tubes can now be accessed directly from the top without tools, speeding up maintenance.
RFID Sync: RFID technology automatically applies optimal drying settings for Bambu official filaments, eliminating manual setup.
Auto-Rotate Drying: Spools rotate automatically during drying to ensure consistent moisture removal across the entire filament.
Dry Filament Quickly and Intelligently: The system intelligently manages drying cycles for optimal speed and effectiveness.
Electro-Magnetic Air Vent: Automated venting enhances dehumidification and seals airtight for long-term filament preservation.
Ceramic Inlet: High-hardness ceramic inlets dramatically increase resistance to wear and tear over time.
SOTA Filament Monitoring sets a new standard in 3D printing precision with 15 integrated sensors along a single filament path. Unlike traditional systems that rely on a basic run-out detector, the H2D system uses this intelligent sensor network to monitor five critical parameters: feeding velocity, tension, filament tip location, extruder thermal environment, and dynamic extrusion pressure. This real-time data enables unmatched control over filament behavior from the AMS to the nozzle. The result is superior reliability, minimized print failures, and optimized material flow throughout the entire print job.
The DynaSense Extruder from Bambu Lab features intelligent sensing technology for highly precise extrusion control. Built on Bambu Lab’s proprietary PMSM servo architecture, it performs 20kHz torque, resistance, and position sampling to dynamically adjust electromagnetic torque vectors in real time. This ensures stable, consistent filament extrusion while actively detecting issues like filament grinding or clogging. The result is a smarter, more reliable 3D printing experience with minimal print failures.
PLA filament is a popular and eco-friendly material for 3D printing, derived from renewable resources like corn starch or sugarcane. It is easy to work with, offering low warping and the ability to produce detailed, high-quality prints, making it ideal for beginners and hobbyists. Commonly used for creating prototypes, decorative items, and educational models, PLA's biodegradable nature also makes it a sustainable choice for various applications.
Specialty PLA filaments, such as wood-textured, marble-textured, sparkle, metallic, silk, and silk dual-tone options, open up a world of creative possibilities in 3D printing. These filaments provide unique finishes and visual effects, from natural wood grain or stone-like patterns to shimmering metallic or glossy, vibrant silk appearances. Ideal for artistic projects, decorative pieces, and premium prototypes, specialty PLA filaments combine ease of use with stunning aesthetics, allowing makers to elevate their creations.
Carbon fiber reinforced filament is a high-performance material for 3D printing, combining the strength and stiffness of carbon fibers with the versatility of base thermoplastics like PLA, PETG, or ASA. This filament produces lightweight, durable, and rigid parts, making it ideal for aerospace, automotive, and prototyping applications. Its benefits include reduced warping, improved dimensional stability, and enhanced mechanical properties, perfect for functional and load-bearing components.
PETG filament is a versatile material for 3D printing, combining the strength of ABS with the ease of use of PLA. It offers excellent durability, impact resistance, and chemical resistance, making it ideal for functional prototypes, mechanical parts, and outdoor applications. Additionally, PETG's low shrinkage and good layer adhesion ensure smooth, reliable prints suitable for both beginners and professionals.
ASA and ABS are popular 3D printing filaments known for their durability and versatility. ASA offers excellent weather resistance, making it ideal for outdoor applications, while ABS is prized for its strength and heat resistance, often used in functional prototypes and mechanical parts. Both filaments are suitable for producing robust, high-quality prints in engineering and consumer goods.
PC (Polycarbonate) and TPU (Thermoplastic Polyurethane) filaments are versatile materials for 3D printing. PC filament is known for its exceptional strength, heat resistance, and transparency, making it ideal for engineering prototypes, functional parts, and lighting components. TPU filament is flexible and highly durable, offering benefits like elasticity and impact resistance, which are perfect for creating phone cases, seals, and wearable items.
PA (polyamide, commonly known as nylon) and PET (polyethylene terephthalate) filaments are versatile materials for 3D printing. PA offers high strength, flexibility, and resistance to wear, making it ideal for engineering parts, gears, and functional prototypes. PET, known for its ease of printing, chemical resistance, and food safety (in its PETG form), is commonly used for creating durable household items, containers, and mechanical components. Both filaments excel in producing strong, reliable parts for various applications.
Support filament for 3D printers is a specialized material used to create temporary structures that support overhanging or complex parts during the printing process. It allows for greater design freedom, enabling the creation of intricate geometries that would otherwise be impossible to print. Once the print is complete, support material can be easily removed, often by dissolving in water or a specific solvent, leaving a smooth and precise final product.