Ender 3 V2 Neo Hotend Kit Extruder Hot End Nozzle + 1pc Bimetal Heatbreak w/PTFE Tubing, Silicone Cover Compatible with Creality Ender 3 Neo, Ender 3 V2 Neo 3D Printer Upgrades
Cables length is 1.4meters, It is the direct for Creality Ender 3 V2 Neo, Ender 3 Neo 3D Printer. But if applied for Ender 3 neo Max printer, you may need to extend the cable length to be 1.5meters, so please know if used for Ender 3 Neo Max printer. This extruder hotend kit is pre-assembled with 100k NTC thermistor, 24v 40w heating element and Stainless steel heatbreak with straight through hole. One piece Bimetal Heatbreak will come in this parcel, which is made from two components, Copper and Titanium TC4. Titanium TC4 reduces heat upward conduction at the heating position, and copper for heat dissipation to accelerate heat Heatbreak melts filament faster , The inner wall of the titanium is very smooth so that the filament can pass through and reduce clogging Package: 1set preinstalled hotend kit; 1piece Bimetal heatbreak NOTE: We found that many customers do not know how to properly install the nozzle. Remember the core issues in the installation process. Just make sure your nozzle and HEAT BREAK front end are tight and sealed. Otherwise, the melted consumables will leak along the screw holes. One Bimetal Heatbreak will come while installed one is stainless steel One piece Bimetal Heatbreak will come in this parcel, which is made from two components, Copper and Titanium TC4. Titanium TC4 reduces heat upward conduction at the heating position, and copper for heat dissipation to accelerate heat conduction.
Bi-Metal Heatbreak Bi-Metal Heatbreak melts filament faster , The inner wall of the titanium is very smooth so that the filament can pass through and reduce clogging
Drawings for bimetal heatbreak high precision, higher temperature, if you wanna print the filaments which temperature is over 260C degree, please replace the installed stainless steel heatbreak with this one
High Precision Smooth reduce blocking, high temperature resistance and slow heat conduction
