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The Bambu Lab H2C Induction Hotend is a complete hotend for the H2C and H2C Laser. It heats up using induction. As a result, the nozzle reaches temperature quickly and you experience less waiting time. The hotend is part of the Vortek system. This system can work with multiple hotends. This allows you to print multi-materials with less purge waste than with a single nozzle.
This version features a 0.8 mm hardened steel nozzle. This is ideal for large parts and fast prints. You lay down more material per layer, so your print finishes faster. Hardened steel is also suitable for abrasive filaments. Think of CF- and GF-filled materials such as PA6-GF, PA6-CF, PET-CF, and PPS-CF. At 0.8 mm, the risk of clogging is also lower with these types of filaments.
The hotend uses a contactless power and signal interface. Therefore, there are no contact pins that can oxidize. It also features protection against overheating, overvoltage, and short circuits. Two sensors measure the temperature of the nozzle and the heatsink. If the heatsink becomes too hot, the system automatically increases the cooling. This helps prevent heat creep and reduces the risk of clogging during long prints.
In stock
€35.89
SKU: BAMB3083 Categories: 3D Printer Parts , Bambu Lab
The Bambu Lab H2C Induction Hotend is a complete hotend for the H2C and H2C Laser. It heats up using induction. As a result, the nozzle reaches temperature quickly and you experience less waiting time. The hotend is part of the Vortek system. This system can work with multiple hotends. This allows you to print multi-materials with less purge waste than with a single nozzle.
This version features a 0.8 mm hardened steel nozzle. This is ideal for large parts and fast prints. You lay down more material per layer, so your print finishes faster. Hardened steel is also suitable for abrasive filaments. Think of CF- and GF-filled materials such as PA6-GF, PA6-CF, PET-CF, and PPS-CF. At 0.8 mm, the risk of clogging is also lower with these types of filaments.
The hotend uses a contactless power and signal interface. Therefore, there are no contact pins that can oxidize. It also features protection against overheating, overvoltage, and short circuits. Two sensors measure the temperature of the nozzle and the heatsink. If the heatsink becomes too hot, the system automatically increases the cooling. This helps prevent heat creep and reduces the risk of clogging during long prints.