Files
3D model format
Stereolithography (.stl)
Total files
Slicer settings
Mesh error check
not specified
Support
Lifetime support from Gambody team
Update requests
not specified
Model versions
FFF/FDM
Assembly method
Connectors
Features
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Some model parts use separate connectors (part "7_ge_lock_7S(x4)_FDM", requires 4 copies);
DLP/SLA
Assembly method
Connectors
Features
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
SLS
Assembly method
Solid
Features
Contains one solid-piece Stone Pillar pose of the Casper model;
FFF/FDM
Assembly method
Connectors
Features
Casper leaning playfully on a weathered stone pillar;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Some model parts use separate connectors (part "6_ge_lock_7S(x2)_FDM", requires 2 copies);
DLP/SLA
Assembly method
Connectors
Features
Casper leaning playfully on a weathered stone pillar;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
SLS
Assembly method
Solid
Features
Contains one solid-piece Stairs pose of the Casper model;
FFF/FDM
Assembly method
Connectors
Features
Casper floating above a fallen lantern, a hollowed version prepared for LED installation;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots;
FFF/FDM
Assembly method
Connectors
Features
Casper floating above a fallen lantern;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Some model parts use separate connectors (part "7_ge_lock_7S(x2)_FDM", requires 2 copies);
DLP/SLA
Assembly method
Connectors
Features
Casper floating above a fallen lantern;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
SLS
Assembly method
Solid
Features
Contains one solid-piece Lantern pose of the Casper model;
DLP/SLA
Assembly method
Connectors
Features
Contains some hollowed out parts to save resin;
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
DLP/SLA
Assembly method
Connectors
Features
Contains some hollowed out parts to save resin;
Casper leaning playfully on a weathered stone pillar;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
DLP/SLA
Assembly method
Connectors
Features
Contains some hollowed out parts to save resin;
Casper floating above a fallen lantern;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
Additional details
Part of diorama
No
Special pack included
No
You can get the STL files of Casper Flying Pose for 3D printing immediately after the purchase! Just click the green Buy button in the top-right corner of the model’s page. You can pay with PayPal or your credit card.
Watch the tutorial on how to assemble the 3D printed Casper Flying Pose from the provided 3D print files on Gambody YouTube channel.
Also, you may like Cartoons3D Printing Designs, as well asMovie 3D Print Models.
________
FAQ:
This 3D model comes with StereoLithography (.STL) files optimized for 3D printing. You'll get digital files, not a physical product
Before printing, take a look at Printing Details for recommended settings and tips to achieve better results.
Casper Flying Pose 3D Printer Files | Assembly includes 3 version(s) for the supported 3D printer type(s): FFF/FDM, DLP/SLA, SLS. Files are available for download after purchase.
See the Description and Specifications sections for more details about this model.
3D model history
What if the scariest thing about a ghost wasn't its power to frighten, but its loneliness? Casper the Friendly Ghost has always answered that question with a smile. Born in classic cartoons and celebrated in comics and movies ever since, Casper is a rare kind of hero—a gentle figure who chooses friendship over fear and turned fantasy into something warm and approachable.
This Casper 3D model captures his spirit with three charming flying scenes: waving on the Stairs, hovering above a fallen Lantern (with an LED-ready version for a soft internal glow), or leaning playfully by a weathered Stone Pillar. Whether you want a cute ghost STL to brighten a shelf, a movie hero 3D print for nostalgia, or an addition to a 3D printed cartoon collection, this character 3D modelbalances expressive, friendly design with clean, printable geometry. It's a small piece of pop-culture fantasy you can hold—Casper's kindness, now in STL format.
3D printing model features
Model-specific features:
- Inspired by the Casper character, this is a contributing artist's vision of the most famous friendly ghost;
- This 3D print model captures Casper in his classic, fluid form across three different poses: soaring over a flight of Stairs, floating playfully over a Lantern, or perched on a weathered Stone Pillar;
- The model perfectly recreates Casper's kind-hearted expression and gentle, waving poses;
- Features a separate Lantern LED-Ready version that is hollowed and prepped for adding internal LED lighting to create a soft, ghostly glow.
Printing & assembly details:
- Provided as error-free STL files compatible with most 3D printers;
- Optimized part division minimizes support material and ensures smooth surface detail;
- The assembly parts in the FFF/FDM version come in the recommended print orientations for easy bed placement;
- Assembly manual in PDF and video formats is included for the FFF/FDM and DLP/SLA versions;
- The model is available in recommended scales of 1:8 for the FFF/FDM version and 1:16 for the DLP/SLA/SLS versions.
What will you get after purchase?
- 13 versions of Casper Flying Pose STL files for FFF/FDM, DLP/SLA, DLP/SLA Eco, and SLS — files for all versions are available for download after the purchase;
- STL files of high-poly Casper Flying Pose model for 3D printing consist of 44 files;
- Sizes for:
- FFF/FDM Stairs: 113 mm wide, 245 mm high, 85 mm deep;
- FFF/FDM Lantern: 138 mm wide, 270 mm high, 102 mm deep;
- FFF/FDM Stone Pillar: 118 mm wide, 220 mm high, 88 mm deep;
- DLP/SLA/SLS Stairs: 57 mm wide, 123 mm high, 43 mm deep;
- DLP/SLA/SLS Lantern: 69 mm wide, 135 mm high, 51 mm deep;
- DLP/SLA/SLS Stone Pillar: 59 mm wide, 110 mm high, 44 mm deep;
- Assembly Manual for 1.0 FFF/FDM and 1.0 DLP/SLA versions in PDF and video formats;
- Detailed settings that we provide as a recommendation for Bambu Studio, Cura, Orca Slicer, PrusaSlicer, Simplify3D, and Slic3r for the best print;
- Full technical support from the Gambody Support Team.
Average customer rating (1 reviews)
5
Ratings breakdown
Click a star rating to filter reviews
Overall experience
Level of detail in the model
5
Model cut quality and assembly guide
5
Clarity and accuracy of the model page
5
Level of detail in the model
5
Model cut quality and assembly guide
5
Clarity and accuracy of the model page
5
Below you'll find detailed slicing settings for Bambu Studio 2.0+, Orca Slicer 2.0+, UltiMaker Cura 5.0+, PrusaSlicer 2.0+, Slic3r 1.3+, Simplify3D 5.0+ to help you get the best results when printing this model. These settings are optimized specifically for this 3D model, but please note they may need slight adjustments depending on your printer or filament. When in doubt, refer to your printer's user manual.
To avoid printing issues and achieve the best quality, we highly recommend applying the following settings:
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
120-150% of your Layer Height
But you can paint the seam if you want.
You have to calibrate this parameter
You have to calibrate this parameter
You have to calibrate this parameter
For pins and power elements of the structure, such as the vehicle frame, use 3 loop
Disabled for vehicles and enabled for characters
For 0,2 Layer Height
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example Anycubic cobra 3 v2, you can select the maximum recommended values
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise
Enable this parameter if your model requires supports
We also recommend placing and removing supports manually in some places using special button
1-2 loops for more thick support
Top Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Bottom Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
You have to calibrate this parameter which one is better for your filament
Increase this parameter if the supports are hard to remove from walls
For PLA and PETG filament types
5-8 mm is optional for small prints that have bad adhesion to the build plate
You have to calibrate this parameter
Read the description on your filament roll
Read the description on your filament roll and increase this parameter for fast printers
Read the description on your filament roll and increase this parameter for fast printers
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
120-150% of your Layer Height
But you can paint the seam if you want.
0.01-0.05 You have to calibrate this parameter
0.01-0.05 You have to calibrate this parameter
0.1-0.2 You have to calibrate this parameter
For pins and power elements of the structure, such as the vehicle frame, use 3 loop
Disabled for vehicles and ships, enabled for characters
For 0,2 Layer Height
For 0,2 Layer Height
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example, Anycubic Kobra 3 Or Bambulab A1, you can select the maximum recommended values.
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise
Enable this parameter if your model requires supports
We also recommend placing and removing supports manually in some places using special button
Top Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Bottom Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Increase this parameter if the supports are hard to remove from walls
For PLA and PETG filament types
5-8 mm is optional for small prints that have bad adhesion to the build plate
Read the description on your filament roll
Read the description on your filament roll and increase this parameter for fast printers
You have to calibrate this parameter
Read the description on your filament roll and increase this parameter for fast printers
Read the description on your filament roll
This field is filled in according to your printer specifications when you add it to the slicer.
You can add custom G-code here for the start and end of the print. However, be careful - this is for advanced users only!
You have to calibrate your printer using Ge retraction test models
Retraction Length: For direct-drive setups use 0.5 mm to 2.5 mm; for Bowden extruders use 5 to 7 mm
This is how fast the filament is pulled back—40-60 mm/s for direct drive and 30-50 mm/s for Bowden setups.
You have to calibrate this parameter: Reduce it until the printer starts to hit the parts with the nozzle during printing, then increase it by 0.2.
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
120-150% of your Layer Height
To increase the strength of the print parts, use wall line count: 3
For pins and connectors use 50% Infill
These parameters are for standard PLA plastic. If you are using a different type of plastic, check the printing temperature recommended by the manufacturer. Also, read the description on your filament spool. For fast printers, add +30 °C to the current parameters.
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example Anycubic cobra 3 v3, you can select the maximum recommended values
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise.
You need to calibrate this parameter using Gambody test models. These values are average values for a Direct Drive extruder; for a Bowden extruder, the values should be increased.
You need to calibrate this parameter using Gambody test models. These values are average values for a Direct Drive extruder; for a Bowden extruder, the values should be increased.
Use this value other than 0 if your nozzle catches on the internal infill during travel moves. Try to keep this value as low as possible in height.
Use normal supports to support large, straight surfaces (most mechanical or technical parts).
You have to calibrate this parameter according to the capabilities of your printer and your filament, using a Gambody test models.
Use 1 instead of 0 if your supports are thin and tall. They will be harder to remove, but much stronger.
Top Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Increase this parameter if the supports are hard to remove from walls
Use tree supports to support complex objects, such as characters.
You have to calibrate this parameter according to the capabilities of your printer and your filament, using a Gambody test models.
Top Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Increase this parameter if the supports are hard to remove from walls
Use a skirt for all parts when printing on outdated printers.
Use a brim when printing thin but tall parts, as well as parts with a small bed adhesion area.
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
120-150% of your Layer Height
for 0.2 Layer Height
But you can paint the seam if you want.
(for PLA and PETG)
(5-8 mm is optional for small prints that have bad adhesion to the build plate)
Enable this parameter if your model requires supports
(45-50 degree)You have to calibrate this parameter according to the capabilities of your printer
and your filament, using a Gambody test models.
Top contact Z distance = 1-1.3 layer Height. If the supports are hard to remove, try
increasing this setting by 0.1-0,4 mm
Top contact Z distance = 1-1.3 layer Height. If the supports are hard to remove, try
increasing this setting by 0.1-0,4 mm
Increase this parameter if the supports are hard to remove from walls
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example Anycubic cobra 3 v3, you can select the maximum recommended values
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise. Use the minimum value for outdated printers without acceleration calibration, and the maximum value for modern printers if you need it.
These settings only work for 3D printers with multiple extruders
You can try setting all parameters in this section, except the First layer, to values between 0.75% of your nozzle diameter and 1.25% of your nozzle diameter. Adjusting them will help you work out the optimal parameters for the best quality for your print. As for the First layer, you can set it to 150% of the diameter of your nozzle for better adhesion to the build plate (for a nozzle with a diameter of 0.4 mm, the First layer extrusion width can be from 0.3 mm to 0.5 mm)
For better printing quality you have to calibrate this parameter using Gambody test model.
Check your filament manufacturer's temperature recommendations on the spool.
Cooling parameters depends on the material you use for printing.
*for PLA
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
120-150% of your Layer Height
For 0.12 Layer Height
For 0.12 Layer Height
For pins and connectors use 50% Infill
Use skirt for outdated 3d printers
(5-8 mm is optional for small prints that have bad adhesion to the build plate)
Enable this parameter if your model requires supports
(45-60 degree)You have to calibrate this parameter according to the capabilities of your printer and your filament, using a Gambody test models
Contact Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example Anycubic cobra 3 v3, you can select the maximum recommended values
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise. Use the minimum value for outdated printers without acceleration calibration, and the maximum value for modern printers if you need it.
You have to calibrate this parameter from 0.9 to 1.1 according to the capabilities of your printer and your filament, using a Gambody test models.
Check your filament manufacturer's temperature recommendations on the spool.
Cooling parameters depends on the material you use for printing.
Calibrate this value if you need to reduce or improve the adhesion between the plastic and the heat bed
Your current nozzle diameter
You need to calibrate this parameter using Gambody test models. These values are average values for a Direct Drive extruder; for a Bowden extruder, the values should be increased.
Your current nozzle diameter
You have to calibrate this parameter using Gambody test models.
You need to calibrate this parameter using Gambody test models. These values are average values for a Direct Drive extruder; for a Bowden extruder, the values should be increased.
For better quality use 0.12 mm layer height, for fast printing use 0.2 mm layer height. For pins and the Ge connectors, use 0.2 layer height.
For 0,2 Layer Height
For 0,2 Layer Height
To increase the strength of the print parts, use Outline Perimeters: 3
You can enable this parameter to print rounded or spherical models, as well as character models.
Use this option only if your parts are too tight. but better calibrate your printer extrusion
Use this option only if your parts are too tight. but better calibrate your printer extrusion
Use 2 and more if you want to create skirt instead brim
1-2 for skirt and 10-20 for brim
Use for wipe nozzle if you need
Use For ABS filament
For pins and connectors use 50% Infill
Top Z distance = 1-1.3 layer Height. If the supports are hard to remove, try increasing this setting by 0.1-0,4 mm
Calibrate your filament and detect optimal temperature for it
Average temperature for PLA filament
The parameters in this tab vary greatly, it all depends on the quality of your printer. For example, if you have a classic Ender3, stick to the minimum parameters, but if you have a newer printer, for example Anycubic cobra 3 v3, you can select the maximum recommended values
Settings for advanced users, change these parameters only if you have sufficient 3D printing expertise.
SLS
Contains one solid-piece Stone Pillar pose of the Casper model;
DLP/SLA
Contains some hollowed out parts to save resin;
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
DLP/SLA
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Optionally, for added strength and rigidity, the static connections can be glued together;
FFF/FDM
Casper waving while resting on a staircase banister;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots. Some model parts use separate connectors (part "7_ge_lock_7S(x4)_FDM", requires 4 copies);
FFF/FDM
Casper floating above a fallen lantern, a hollowed version prepared for LED installation;
The assembly parts are connected using specially designed integrated connectors that fit securely into the corresponding slots;























