Describe the math.Watch it move.
- avg render
- 12s
- scenes shipped
- 5
- resolution
- 4k
scene · riemann.integral00:00 / 00:00
/ live feedrendered this week
02 scenes/ how it works
pipeline · prompt → compile → deliverThree steps between an idea and a rendered scene.
01
Prompt
Describe the scene in plain english. A derivative. A vector field. A poisson-distributed swarm of particles.
“show the derivative of sin(x) as a moving tangent line”
02
Compile
The model writes Manim, we type-check the scene graph, then run it on a GPU worker. No sandbox escapes, no half-rendered frames.
manim.Scene → .construct() → .render()
03
Deliver
You get a 1080p mp4 in under a minute. Share the link, drop it in Keynote, or re-prompt for a variant.
final.mp4 · h264 · 24fps
/ gallery
05 · sampled at randomReal scenes, one prompt each.
01 / kinematics
.mp4Collision of two rigid bodies
02 / fields
.mp4Electric field around a dipole
03 / calculus
.mp4Riemann sum → definite integral
04 / analysis
.mp4Exponential growth, rescaled
05 / simulation
.mp4Economic equilibrium
render latency · p509s
render latency · p9525s
scenes rendered5
model accuracy100.0%
/ start
Your first scene renders in under a minute.
Free tier includes 30 renders a month. No credit card, no watermark, no ffmpeg.
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