Unity Physics (Rigidbody / PhysX)

SkillAI & models

This skill gives your AI working knowledge of 3D physics in Unity 6.3 LTS, so it can help you get movement, collisions, and object interactions working in your game. Once added, it can guide setup of Rigidbodies, colliders, triggers, rays, and joints when you ask for those features. It comes from the gamedev-skills collection on GitHub.

Available today. Use it from your connected AI after setup.

Add the skill, then describe the physics behavior you want, such as making an object move or react when it hits something. Mention Unity physics or Rigidbody in your request so your AI knows to apply this guidance.

Then ask your AI: use the Unity Physics (Rigidbody / PhysX) skill

What your AI can do with it

  • Add Rigidbodies and move objects with forces
  • Set up colliders and choose between triggers and solid collisions
  • React to hits and overlaps using OnCollisionEnter and OnTriggerEnter
  • Tune which objects collide by configuring collision layers
  • Cast rays to detect objects along a line
  • Connect objects with joints

What this skill tells your AI

The instructions your AI receives, as published by gamedev-skills/awesome-gamedev-agent-skills in skills/unity/unity-physics/SKILL.md and read by ahel’s review.

Make objects move, collide, and detect each other with Unity 6.3 LTS's built-in 3D physics (PhysX). Get the FixedUpdate discipline, trigger-vs-collision rules, and collision layers right. Targets Unity 6.3 LTS (6000.3).

Unity 6.3 LTS rename: Rigidbody.velocity is now Rigidbody.linearVelocity (the old name is deprecated). Code copied from older tutorials will warn or fail to compile.

When to use

  • Use when giving an object physical motion (forces, velocity, gravity), responding to collisions or triggers, setting up collision layers/masks, raycasting for ground checks or line-of-sight, or connecting bodies with joints.
  • Use when scenes/prefabs contain Rigidbody + Collider components.

When not to use: 2D physics (Rigidbody2D, Collider2D) is a separate API — adapt the concepts but the types differ. Cross-engine feel tuning (timestep, jitter, tunnelling) → physics-tuning. Reading input that drives movement → unity-input-system.

Core workflow

  1. Add a Rigidbody to anything that should be simulated; add a Collider to anything that should be hit. A collision needs a Collider on both, and at least one Rigidbody.
  2. Do all physics in FixedUpdate. Read input in Update, store intent, then apply forces / set linearVelocity / call MovePosition in FixedUpdate.
  3. Move bodies through the physics API, not the Transform. Use AddForce, linearVelocity, or MovePosition — never assign transform.position to a non-kinematic Rigidbody (it teleports and breaks collision resolution).
  4. Pick collision vs trigger. A solid collision blocks and calls OnCollisionEnter; a Collider with Is Trigger checked passes through and calls OnTriggerEnter.
  5. Organise interactions with layers. Put objects on layers and edit the Layer Collision Matrix (Project Settings → Physics) so unrelated things don't test against each other.
  6. Verify with the Physics Debugger (Window → Analysis → Physics Debugger) and by watching for jitter; if fast objects pass through walls, raise Collision Detection mode.

Patterns

1. Force-based movement in FixedUpdate (with a speed clamp)

using UnityEngine;

[RequireComponent(typeof(Rigidbody))]
public class Mover : MonoBehaviour
{
    [SerializeField] private float accel = 30f, maxSpeed = 8f;
    private Rigidbody _rb;
    private Vector3 _input;   // set from Update / input system

    private void Awake() => _rb = GetComponent<Rigidbody>();

    private void FixedUpdate()
    {
        _rb.AddForce(_input * accel, ForceMode.Acceleration);     // mass-independent accel
        // Unity 6.3 LTS: linearVelocity (was 'velocity'). Clamp horizontal speed.
        Vector3 flat = new(_rb.linearVelocity.x, 0, _rb.linearVelocity.z);
        if (flat.magnitude > maxSpeed)
        {
            flat = flat.normalized * maxSpeed;
            _rb.linearVelocity = new Vector3(flat.x, _rb.linearVelocity.y, flat.z);
        }
    }
}

ForceMode: Force (continuous, mass-scaled), Acceleration (continuous, ignores mass), Impulse (instant, mass-scaled — jumps), VelocityChange (instant, ignores mass).

2. Collision vs trigger callbacks

// Solid hit: both have colliders, this one has a (non-kinematic) Rigidbody.
private void OnCollisionEnter(Collision col)
{
    Debug.Log($"Hit {col.gameObject.name} at {col.contacts[0].point}");
}

// Overlap: one collider has 'Is Trigger' = true. Requires a Rigidbody on at least one party.
private void OnTriggerEnter(Collider other)
{
    if (other.CompareTag("Pickup")) Destroy(other.gameObject);
}

3. Ground check with a layer-masked raycast

[SerializeField] private LayerMask groundMask;   // set to your "Ground" layer in the Inspector

private bool IsGrounded()
{
    // Cast a short ray down; only test colliders on groundMask.
    return Physics.Raycast(transform.position, Vector3.down, out RaycastHit hit,
                           1.1f, groundMask);
}

4. Kinematic platform that still pushes bodies

// isKinematic Rigidbody: not driven by forces, but MovePosition interpolates and carries
// resting bodies correctly (unlike moving the Transform directly).
private void FixedUpdate() => _rb.MovePosition(_rb.position + Vector3.right * (2f * Time.fixedDeltaTime));

Pitfalls

  • Rigidbody.velocity doesn't exist in Unity 6.3 LTS — use linearVelocity (and angularVelocity is unchanged).
  • Setting transform.position on a dynamic Rigidbody — teleports it, skips collision. Use MovePosition (kinematic/interpolated) or apply forces.
  • Applying forces in Update — frame-rate-dependent and jittery. Physics goes in FixedUpdate.
  • Trigger callbacks never fire — triggers need a Rigidbody on at least one of the two colliders, and both colliders enabled; two static triggers don't report overlaps.
  • Fast objects pass through walls (tunnelling) — set the Rigidbody's Collision Detection to Continuous (or Continuous Dynamic) for bullets/fast movers.
  • Non-uniform-scaled MeshColliders or scaled colliders misbehave; prefer primitive colliders and keep scale uniform.
  • Everything collides with everything — wasted cost; assign layers and prune the Layer Collision Matrix.

References

  • For raycast variants (SphereCast, RaycastAll, OverlapSphere, LayerMask bit math) and joints (FixedJoint, HingeJoint, ConfigurableJoint, breakable joints), read references/raycasting-and-joints.md.
  • Primary docs: Unity Manual "Physics" section and ScriptReference/Rigidbody, ScriptReference/Physics.Raycast.

Related skills

  • physics-tuning — engine-agnostic feel: fixed timestep, mass/drag, CCD, stability.
  • unity-csharp-scripting — the FixedUpdate/Update split these patterns rely on.
  • unity-navmesh — agent movement that is not force-driven.

Signals

GitHub stars
967
Forks
76
Last commit
Sep 2026
Advanced
Catalog kind
skill
Gateway key
unity-physics
Source
github.com/gamedev-skills/awesome-gamedev-agent-skills