Presentation-ready visuals from Leapfrog Geo geological model views.
Seequent Leapfrog Geo is 3D geological modelling software used to bring drilling data, surfaces, points, topography, sections, and geological interpretations into a project scene. Its views can communicate the spatial relationship between observed data and a subsurface model, from a focused drillhole area to a broader site-scale interpretation.
Seequent Leapfrog Geo is 3D geological modelling software used to bring drilling data, surfaces, points, topography, sections, and geological interpretations into a project scene. Its views can communicate the spatial relationship between observed data and a subsurface model, from a focused drillhole area to a broader site-scale interpretation.
Use RENDERCAD when an approved Leapfrog Geo scene needs to read clearly beyond the technical workspace. A useful input is a deliberately framed viewport showing a geological model or contact surface with enough supporting evidence to orient the viewer: selected drillhole traces or lithology intervals, a topographic surface, a section plane, and only the labels or legend needed for the story. This is well suited to exploration updates, concept reports, project reviews, proposals, and stakeholder briefings where the aim is to explain the spatial interpretation rather than ask the audience to navigate the model. RENDERCAD can develop a more polished still from that view while retaining purposeful geological colors, cutaway relationships, and the visible context that makes the image intelligible. It should not invent geology, remove uncertainty, or replace the underlying Leapfrog model, source data, measurements, or geological review.
In Leapfrog Geo, first build and check the technical scene around a single question: show how drillhole-supported lithologies relate to a model, how a contact surface sits below topography, or how structures appear in a cross-section. Filter or hide competing objects, choose a camera angle that exposes the relevant volume or section, and keep selected drillholes, a restrained legend, scale, or orientation cue where they prevent misreading. Capture a clean viewport after the geological team has approved what it represents. Upload that image to RENDERCAD with direction for clearer depth, lighting, framing, and presentation finish, without changing the evidential relationship between data and interpretation. Place the resulting still beside the original view when clarity matters, and return to Leapfrog Geo for data checks, model updates, section evaluation, measurements, and any decision based on the subsurface interpretation.
Modeled by CADSharp in Onshape. Rendered with RENDERCAD.
Add | Change | or Remove referenced objects with the stroke of a brush.
RENDERCAD uses a maintained selection of image-generation models for different rendering tasks. Results can vary by model and input, so compare generated output with the source design before relying on geometry, materials, or dimensions.
| Feature | RENDERCAD | Competitor |
|---|---|---|
| Engine | Generative AI | Varies by tool |
| Output | Images + Video | Varies by tool |
| Resolution | HD / 4K | Varies by workflow |
| Image Speed | Image renders complete in 60 seconds. | Varies by scene/tool |
| Video Speed | Videos complete in 2-5 minutes. | Varies by workflow |
| Scene Set Up | No separate local scene | Varies by workflow |
| Input | Screen Snip | Varies by tool |
| Hardware | Cloud GPU | Often local GPU/CPU |
| Install | None | Varies (web or app) |
| Cost | from $9/mo | Varies widely |
Read the numbers. We trust you to know theirs.
Skip a separate local scene build. Pick a condition, material, and background while RENDERCAD handles the image-generation step. Image renders complete in 60 seconds.
Common solutions for Seequent Leapfrog users
Describe the velvet color, pile direction, and lighting, or add an authorized material reference. Review the generated texture because fiber scale and light response can vary.
Upload a clear image, choose the Realistic engine, and describe a large soft light source or overcast lighting. Generated shadows are visual approximations, not a physical lighting calculation.
Choose the Orbit camera preset and keep the source image as the authority for product shape and visible details. Generated parallax and newly revealed areas can vary.
No local NVIDIA rendering GPU is required. Use a supported browser to upload an image or a current capture tool to select a screenshot; generation runs on cloud infrastructure.
The Render History page lets you browse and download retained images and videos. Storage duration depends on the account plan, so download assets you need before they expire.
Choose a White background and describe a grounded subject with a soft contact shadow. Inspect the generated shadow for alignment and plausibility.
The core workflow starts from a selected 2D view, so it does not require native CAD-file conversion or source-model upload.
Reuse a clear history image and change the color instruction or reference. Treat the results as visual options rather than color-managed proof.
Describe the finish, gloss, grain direction, and lighting, or provide an authorized material reference. Generated reflections are visual approximations rather than physically verified material behavior.
It uses generative image models with screenshot or image inputs. Models and features can change over time, so current product documentation is the source of truth.
Video jobs consume credits based on current duration and model settings. Check the pricing page for current costs rather than comparing with an assumed outsourcing price.
A photo of an actual sample or color chip can guide the palette. Verify final color in a color-managed workflow rather than treating generated output as a color match.