* Update 0.25mm Standard @E3NG v1.2S.json * Create 0.20mm Fast @Virtu E3.json * Update 0.20mm Fast Virtu E3.json * Create 0.20mm SLOW Virtu E3.json * Update and rename 0.20mm Fast @Virtu E3.json to 0.20mm FAST @Virtu E3.json * Update and rename 0.20mm Fast @E3NG v1.2S.json to 0.20mm FAST @E3NG v1.2S.json * Update and rename 0.20mm Slow @E3NG v1.2S.json to 0.20mm SLOW @E3NG v1.2S.json * Update and rename 0.20mm Standard @E3NG v1.2S.json to 0.20mm STANDARD @E3NG v1.2S.json * Create 0.20mm STANDARD @VIRTU E3 * Update and rename 0.20mm FAST Virtu E3.json to 0.20mm FAST VIRTU E3.json * Rename 0.20mm SLOW Virtu E3.json to 0.20mm SLOW VIRTU E3.json * Update 0.20mm STANDARD @VIRTU E3 * Update 0.20mm STANDARD VIRTU E3 * Update and rename 0.25mm Fast @E3NG v1.2S.json to 0.25mm FAST @E3NG v1.2S.json * Create 0.25mm FAST VIRTU E3 * Update and rename 0.15mm Standard @E3NG v1.2S.json to 0.15mm STANDARD @E3NG v1.2S.json * Update and rename 0.10mm Standard @E3NG v1.2S.json to 0.10mm STANDARD @E3NG v1.2S.json * Create 0.15mm STANDARD VIRTU E3 * Create 0.10mm STANDARD VIRTU E3.json * Rename 0.15mm STANDARD @VIRTU E3 to 0.15mm STANDARD @VIRTU E3.json * Update 0.15mm STANDARD VIRTU E3.json * Update 0.20mm STANDARD VIRTU E3 * Update and rename 0.25mm FAST VIRTU E3 to 0.25mm FAST VIRTU E3.json * Rename 0.20mm STANDARD VIRTU E3 to 0.20mm STANDARD VIRTU E3.json * Update 0.15mm STANDARD VIRTU E3.json * Update and rename 0.25mm Standard @E3NG v1.2S.json to 0.25mm STANDARD @E3NG v1.2S.json * Create 0.25mm STANDARD VIRTU E3.json * Create process_common_VIRTU E3.json * Create process_FAST_VIRTU E3.json * Update 0.20mm FAST VIRTU E3.json * Update 0.25mm FAST VIRTU E3.json * Create process_SLOW_VIRTU E3.json * Update 0.20mm SLOW @VIRTU E3.json * Update 0.20mm SLOW VIRTU E3.json * Update and rename process_common_VIRTU E3.json to process_STANDARD_VIRTU E3.json * Update 0.10mm STANDARD VIRTU E3.json * Update 0.15mm STANDARD VIRTU E3.json * Update 0.20mm STANDARD VIRTU E3.json * Update 0.25mm STANDARD @VIRTU E3.json * Update process_STANDARD_VIRTU E3.json * Update 0.25mm STANDARD VIRTU E3.json * Update 0.20mm STANDARD VIRTU E3.json * Update 0.15mm STANDARD @VIRTU E3.json * Update 0.10mm STANDARD VIRTU E3.json * Update 0.15mm STANDARD VIRTU E3.json * Update 0.20mm SLOW VIRTU E3.json * Update RH3D.json * Update RH3D.json * Create VIRTU E3 - 0.2 nozzle.json * Create VIRTU E3 - 0.3 nozzle.json * Create VIRTU E3 - 0.4 nozzle.json * Create VIRTU E3 - 0.5 nozzle.json * Create VIRTU E3 - 0.6 nozzle.json * Create VIRTU E3,json * Update fdm_common_E3NG v1.2S.json * Update fdm_machine_common.json * Create fdm_common_VIRTU E3.json * Create Generic ABS VIRTU E3.json * Create Generic ASA @VIRTU E3.json * Update Generic ASA VIRTU E3.json * Create Generic PCCF VIRTU E3.json * Create Generic PETG @VIRTU E3.json * Create Generic PLA VIRTU E3.json * Create Generic TPU VIRTU E3.json * Update Generic ASA VIRTU E3.json * Update Generic PETG VIRTU E3.json * Update 0.20mm SLOW VIRTU E3.json * Update 0.15mm STANDARD VIRTU E3.json * Rename VIRTU E3,json to VIRTU E3.json * Add files via upload * Update VIRTU E3 - 0.2 nozzle.json * Update E3NG v1.2S - 0.2 nozzle.json * Update E3NG v1.2S - 0.3 nozzle.json * Update E3NG v1.2S - 0.4 nozzle.json * Update E3NG v1.2S - 0.5 nozzle.json * Update E3NG v1.2S - 0.6 nozzle.json * Update 0.10mm STANDARD @E3NG v1.2S.json * Update 0.15mm STANDARD @E3NG v1.2S.json * Update 0.20mm STANDARD @E3NG v1.2S.json * Update 0.25mm STANDARD @E3NG v1.2S.json * Delete resources/profiles/RH3D/VIRTU-bed.stl * Update fdm_common_VIRTU E3.json * Add files via upload * Delete resources/profiles/RH3D/E3NG-bed-texture.svg * Add files via upload * Delete resources/profiles/RH3D/VIRTU E3_cover.png * Add files via upload * Add files via upload * Create process_STANDARD_E3NG.json * Create process_SLOW_E3NG.json * Update and rename process_STANDARD_E3NG.json to process_STANDARD_E3NG v1.2S.json * Update and rename process_SLOW_E3NG.json to process_SLOW_E3NG v1.2S.json * Create process_FAST_E3NG v1.2S.json * Update 0.25mm STANDARD @E3NG v1.2S.json * Update 0.20mm STANDARD @E3NG v1.2S.json * Update 0.15mm STANDARD @E3NG v1.2S.json * Update 0.10mm STANDARD @E3NG v1.2S.json * Update 0.20mm SLOW @E3NG v1.2S.json * Update 0.20mm FAST @E3NG v1.2S.json * Update 0.25mm FAST @E3NG v1.2S.json * Update 0.20mm STANDARD @E3NG v1.2S.json * Update 0.20mm STANDARD VIRTU E3.json * Delete resources/profiles/RH3D/process/process_common_E3NG v1.2S.json * Update RH3D.json * Update fdm_process_common.json * Update fdm_filament_common.json * Update fdm_filament_abs.json * Update fdm_filament_abs.json * Update fdm_filament_asa.json * Update fdm_filament_pccf.json * Update fdm_filament_petg.json * Update fdm_filament_pla.json * Update fdm_process_common.json * Update fdm_common_VIRTU E3.json update speeds * Update fdm_common_E3NG v1.2S.json update speeds * Update fdm_process_common.json fix accel_to_decel * Update fdm_machine_common.json fix speed profile output * Create 0.10mm SLOW @E3NG v1.2S.json * Create 0.10mm FAST @E3NG v1.2S.json * Create 0.15mm FAST @E3NG v1.2S.json * Create 0.15mm SLOW @E3NG v1.2S.json * Create 0.25mm SLOW @E3NG v1.2S.json * Create 0.10mm SLOW VIRTU E3.json * Create 0.10mm FAST VIRTU E3.json * Create 0.15mm SLOW VIRTU E3.json * Create 0.15mm FAST VIRTU E3.json * Create 0.25mm SLOW VIRTU E3.json * Update RH3D.json add more slow and fast profiles * Update 0.20mm FAST @E3NG v1.2S.json * Update 0.20mm SLOW @E3NG v1.2S.json * Update 0.20mm FAST @VIRTU E3.json * Update 0.20mm SLOW @VIRTU E3.json * Update fdm_process_common.json * Update fdm_process_common.json * Update Generic ABS @VIRTU E3.json * Update Generic ABS VIRTU E3.json * Update Generic PCCF VIRTU E3.json * Update Generic PETG VIRTU E3.json * Update Generic PLA VIRTU E3.json * Update Generic ASA VIRTU E3.json * Update Generic TPU VIRTU E3.json * Update 0.20mm SLOW @E3NG v1.2S.json * Update 0.25mm SLOW @E3NG v1.2S.json * Update 0.15mm FAST @VIRTU E3.json * Update 0.20mm FAST VIRTU E3.json * Update 0.20mm STANDARD @E3NG v1.2S.json * Update 0.15mm SLOW @E3NG v1.2S.json * Update 0.25mm STANDARD @VIRTU E3.json * Update 0.20mm STANDARD VIRTU E3.json * Update 0.20mm FAST @E3NG v1.2S.json * Update 0.25mm FAST VIRTU E3.json * Update 0.10mm FAST VIRTU E3.json * Update 0.10mm SLOW VIRTU E3.json * Update 0.15mm SLOW VIRTU E3.json * Update 0.20mm SLOW VIRTU E3.json * Update 0.25mm FAST @E3NG v1.2S.json * Update 0.10mm SLOW @E3NG v1.2S.json * Update 0.10mm STANDARD @E3NG v1.2S.json * Update 0.15mm STANDARD @VIRTU E3.json * Update 0.25mm STANDARD @E3NG v1.2S.json * Update 0.15mm STANDARD @E3NG v1.2S.json * Update 0.25mm SLOW @VIRTU E3.json * Update 0.10mm STANDARD VIRTU E3.json * Update 0.15mm FAST @E3NG v1.2S.json * Update 0.10mm FAST @E3NG v1.2S.json * Update VIRTU E3 - 0.4 nozzle.json * Update VIRTU E3 - 0.5 nozzle.json * Update VIRTU E3 - 0.6 nozzle.json * Update VIRTU E3 - 0.3 nozzle.json * Update VIRTU E3 - 0.2 nozzle.json * Replace cover PNGs for edge to edge images * Update 0.10mm STANDARD @E3NG v1.2S.json added alias with previous name * Update 0.10mm STANDARD @E3NG v1.2S.json update aliases * Update and rename 0.10mm STANDARD @E3NG v1.2S.json to 0.10mm Standard @E3NG v1.2S.json * Update RH3D.json update naming * Update and rename 0.10mm FAST @E3NG v1.2S.json to 0.10mm Fast @E3NG v1.2S.json * Update and rename 0.10mm FAST VIRTU E3.json to 0.10mm Fast VIRTU E3.json * Update and rename 0.15mm FAST @E3NG v1.2S.json to 0.15mm Fast @E3NG v1.2S.json * Update and rename 0.15mm FAST VIRTU E3.json to 0.15mm Fast VIRTU E3.json * Update and rename 0.20mm FAST @E3NG v1.2S.json to 0.20mm Fast @E3NG v1.2S.json * Update and rename 0.20mm FAST VIRTU E3.json to 0.20mm Fast VIRTU E3.json * Update and rename 0.25mm FAST @E3NG v1.2S.json to 0.25mm Fast @E3NG v1.2S.json * Update and rename 0.25mm FAST @VIRTU E3.json to 0.25mm Fast @VIRTU E3.json * Update and rename process_FAST_E3NG v1.2S.json to process_Fast_E3NG v1.2S.json * Update and rename process_FAST_VIRTU E3.json to process_Fast_VIRTU E3.json * Update and rename 0.10mm SLOW @E3NG v1.2S.json to 0.10mm Slow @E3NG v1.2S.json * Update and rename 0.10mm SLOW @VIRTU E3.json to 0.10mm Slow @VIRTU E3.json * Update and rename 0.15mm SLOW @E3NG v1.2S.json to 0.15mm Slow @E3NG v1.2S.json * Update and rename 0.20mm SLOW @E3NG v1.2S.json to 0.20mm Slow @E3NG v1.2S.json * Update and rename 0.15mm SLOW VIRTU E3.json to 0.15mm Slow VIRTU E3.json * Update and rename 0.20mm SLOW @VIRTU E3.json to 0.20mm Slow @VIRTU E3.json * Update and rename 0.25mm SLOW @E3NG v1.2S.json to 0.25mm Slow @E3NG v1.2S.json * Update and rename 0.25mm SLOW @VIRTU E3.json to 0.25mm Slow @VIRTU E3.json * Update and rename process_SLOW_E3NG v1.2S.json to process_Slow_E3NG v1.2S.json * Update and rename process_SLOW_VIRTU E3.json to process_Slow_VIRTU E3.json * Update and rename 0.10mm STANDARD @VIRTU E3.json to 0.10mm Standard @VIRTU E3.json * Update and rename 0.15mm STANDARD @E3NG v1.2S.json to 0.15mm Standard @E3NG v1.2S.json * Update and rename 0.20mm STANDARD @E3NG v1.2S.json to 0.20mm Standard @E3NG v1.2S.json * Update and rename 0.15mm STANDARD @VIRTU E3.json to 0.15mm Standard @VIRTU E3.json * Update and rename 0.20mm STANDARD @VIRTU E3.json to 0.20mm Standard @VIRTU E3.json * Update and rename 0.25mm STANDARD @E3NG v1.2S.json to 0.25mm Standard @E3NG v1.2S.json * Update and rename 0.25mm STANDARD VIRTU E3.json to 0.25mm Standard VIRTU E3.json * Update and rename process_STANDARD_E3NG v1.2S.json to process_Standard_E3NG v1.2S.json * Update and rename process_STANDARD_VIRTU E3.json to process_Standard_VIRTU E3.json * Update E3NG v1.2S - 0.2 nozzle.json * Update E3NG v1.2S - 0.3 nozzle.json * Update E3NG v1.2S - 0.4 nozzle.json * Update E3NG v1.2S - 0.5 nozzle.json * Update E3NG v1.2S - 0.6 nozzle.json * Update VIRTU E3 - 0.2 nozzle.json * Update VIRTU E3 - 0.3 nozzle.json * Update VIRTU E3 - 0.4 nozzle.json * Update VIRTU E3 - 0.5 nozzle.json * Update VIRTU E3 - 0.6 nozzle.json * Update 0.15mm Slow @E3NG v1.2S.json * Update 0.10mm Fast VIRTU E3.json * Update 0.20mm Slow VIRTU E3.json * Update 0.10mm Standard @E3NG v1.2S.json * Update 0.10mm Fast @E3NG v1.2S.json * Update 0.25mm Standard @E3NG v1.2S.json * Update 0.15mm Standard @E3NG v1.2S.json * Update 0.15mm Standard VIRTU E3.json * Update 0.20mm Standard VIRTU E3.json * Update 0.20mm Standard @E3NG v1.2S.json * Update 0.25mm Slow VIRTU E3.json * Update 0.25mm Fast @E3NG v1.2S.json * Update 0.20mm Slow @E3NG v1.2S.json * Update 0.10mm Slow VIRTU E3.json * Update 0.25mm Slow @E3NG v1.2S.json * Update 0.25mm Standard VIRTU E3.json * Update 0.10mm Standard VIRTU E3.json * Update 0.20mm Fast @E3NG v1.2S.json * Update 0.10mm Slow @E3NG v1.2S.json * Update 0.15mm Fast @E3NG v1.2S.json * Update 0.15mm Fast VIRTU E3.json * Update 0.15mm Slow VIRTU E3.json * Update 0.20mm Fast VIRTU E3.json * Update 0.25mm Fast VIRTU E3.json * Update fdm_machine_common.json * Profile verification/fix Fixing profiles with orca_profile_tool.py * bump version --------- Co-authored-by: yw4z <ywsyildiz@gmail.com> Co-authored-by: SoftFever <103989404+SoftFever@users.noreply.github.com> Co-authored-by: SoftFever <softfeverever@gmail.com>
OrcaSlicer: an open source Next-Gen Slicing Software for Precision 3D Prints.
Optimize your prints with ultra-fast slicing, intelligent support generation, and seamless printer compatibility—engineered for perfection.
Official links and community
Official Website:
Github Repository:
Follow us:
Join our Discord community:
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⚠️ CAUTION: Several clickbait and malicious websites, such as orca-slicer[.]com and orcaslicer[.]net, are pretending to be the official OrcaSlicer site. These sites may redirect you to dangerous downloads or contain misleading information. Our only official website is www.orcaslicer.com. If you come across any of these in search results, please report them as unsafe or phishing to help keep the community secure with: - Google Safe Browsing - Microsoft Security Intelligence - IPThreat |
Main features
- Advanced Calibration Tools
Comprehensive suite: temperature towers, flow rate, retraction & more for optimal performance. - Precise Wall and Seam Control
Adjust outer wall spacing and apply scarf seams to enhance print accuracy. - Sandwich Mode and Polyholes Support
Use varied infill patterns and accurate hole shapes for improved clarity. - Overhang and Support Optimization
Modify geometry for printable overhangs with precise support placement. - Granular Controls and Customization
Fine-tune print speed, layer height, pressure, and temperature with precision. - Network Printer Support
Seamless integration with Klipper, PrusaLink, and OctoPrint for remote control. - Mouse Ear Brims & Adaptive Bed Mesh
Automatic brims and adaptive mesh calibration ensure consistent adhesion. - User-Friendly Interface
Intuitive drag-and-drop design with pre-made profiles for popular printers. - Open-Source & Community Driven
Regular updates fueled by continuous community contributions. - Wide Printer Compatibility
Supports a broad range of printers: Bambu Lab, Prusa, Creality, Voron, and more. - Additional features can be found in the change notes.
Wiki
The wiki aims to provide a detailed explanation of the slicer settings, including how to maximize their use and how to calibrate and set up your printer.
Download
Stable Release
📥 Download the Latest Stable Release
Visit our GitHub Releases page for the latest stable version of OrcaSlicer, recommended for most users.
Nightly Builds
🌙 Download the Latest Nightly Build
Explore the latest developments in OrcaSlicer with our nightly builds. Feedback on these versions is highly appreciated.
Belt Printer Builds
The nightly release ships two parallel builds: the standard build and a belt-printer build. Both are attached to the same release — tell them apart by the filename suffix:
- Standard — no suffix (e.g.
OrcaSlicer_Windows_Installer_x64_nightly.exe) - Belt —
_beltsuffix (e.g.OrcaSlicer_Windows_Installer_x64_nightly_belt.exe)
The _belt builds add experimental support for belt / conveyor (infinite-Z) printers, where the model is sliced against a tilted belt surface instead of a flat horizontal bed. They include ready-to-use belt printer profiles, the full belt slicing pipeline (mesh rotation and G-code transforms), belt-aware support generation, and a tilted-bed preview.
⚠️ Belt printer support is under active development and is not yet merged into
main— it currently ships only in these parallel_beltbuilds, produced from thebelt-printerbranch. See tracking PR #14394 and the original documentation in #12998.
How to install
Windows
Download the Windows Installer exe for your preferred version from the releases page. Both x64 and arm64 installers are published — pick the one matching your CPU.
-
For convenience there is also a portable build available.
Troubleshooting
- If you have troubles to run the build, you might need to install following runtimes:
- MicrosoftEdgeWebView2RuntimeInstallerX64
- vcredist2019_x64
- Alternative Download Link Hosted by Microsoft
- This file may already be available on your computer if you've installed visual studio. Check the following location:
%VCINSTALLDIR%Redist\MSVC\v142
Microsoft Store
Install from the Microsoft Store when you prefer a Store-signed package (helps on Windows 11 Smart App Control).
Windows Package Manager
winget install --id=SoftFever.OrcaSlicer -e
Mac
-
Download the universal DMG, which runs on both Apple Silicon and Intel Macs.
-
Drag OrcaSlicer.app to Application folder.
-
If you want to run a build from a PR, you also need to follow the instructions below:
Quarantine
-
Option 1 (You only need to do this once. After that the app can be opened normally.):
- Step 1: Hold cmd and right click the app, from the context menu choose Open.
- Step 2: A warning window will pop up, click Open
-
Option 2: Execute this command in terminal:
xattr -dr com.apple.quarantine /Applications/OrcaSlicer.app -
Option 3:
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Homebrew Cask
brew install --cask orcaslicer
The Homebrew cask installs the official macOS DMG from GitHub Releases.
Linux
Flathub (Recommended)
OrcaSlicer is available through FlatHub:
Install from the command line:
flatpak install flathub com.orcaslicer.OrcaSlicer
flatpak run com.orcaslicer.OrcaSlicer
It can also be installed through graphical software managers (KDE Discover, GNOME Software, etc.) when Flathub is enabled. Search for OrcaSlicer in your software center.
AppImage
AppImages are published for both x86_64 and aarch64 (ARM64). Pick the file matching your CPU — the ARM64 build has aarch64 in its name (e.g. OrcaSlicer_Linux_AppImage_Ubuntu2404_aarch64_*.AppImage).
-
Download App image from the releases page.
-
Double click the downloaded file to run it.
-
If you run into trouble executing it, try this command in the terminal:
chmod +x /path_to_appimage/OrcaSlicer_Linux.AppImage
How to Compile
All updated build instructions for Windows, macOS, and Linux are now available on the official OrcaSlicer Wiki - How to build page.
Please refer to the wiki to ensure you're following the latest and most accurate steps for your platform.
Klipper Note
If you're running Klipper, it's recommended to add the following configuration to your printer.cfg file.
# Enable object exclusion
[exclude_object]
# Enable arcs support
[gcode_arcs]
resolution: 0.1
Supports
OrcaSlicer is an open-source project, and we're deeply grateful to all our sponsors and backers.
Their generous support helps fund filaments and other essential 3D printing materials for the project.
Thank you! :)
Sponsors
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Backers:
Ko-fi supporters ☕: Backers list
Support the project
Some Background
Open-source slicing has always been built on a tradition of collaboration and attribution. Slic3r, created by Alessandro Ranellucci and the RepRap community, laid the foundation. PrusaSlicer by Prusa Research built on Slic3r and acknowledged that heritage. Bambu Studio in turn forked from PrusaSlicer, and SuperSlicer by @supermerill extended PrusaSlicer with community-driven enhancements. Each project carried the work of its predecessors forward, crediting those who came before.
OrcaSlicer began in that same spirit, drawing from BambuStudio, PrusaSlicer, and ideas inspired by CuraSlicer and SuperSlicer. But it has since grown far beyond its origins. Through relentless innovation — introducing advanced calibration tools, precise wall and seam control, tree supports, adaptive slicing, and hundreds of other features — OrcaSlicer has become the most widely used and actively developed open-source slicer in the 3D printing community. Many of its innovations have been adopted by other slicers, making it a driving force for the entire industry.
The OrcaSlicer logo was designed by community member Justin Levine.
License
- OrcaSlicer is licensed under the GNU Affero General Public License, version 3.
- The GNU Affero General Public License, version 3 ensures that if you use any part of this software in any way (even behind a web server), your software must be released under the same license.
- OrcaSlicer includes a pressure advance calibration pattern test adapted from Andrew Ellis' generator, which is licensed under GNU General Public License, version 3. Ellis' generator is itself adapted from a generator developed by Sineos for Marlin, which is licensed under GNU General Public License, version 3.
- The Bambu networking plugin is based on non-free libraries from BambuLab. It is optional to the OrcaSlicer and provides extended functionalities for Bambulab printer users.


