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project:runaikal:scratchpad

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Runaikål Project Documentation

:!: This page is a draft for the main project page :!:

This project covers the development of MangoTrain's Runaikål, a 12-tone circular instrument utilising electronic synthesis and physical resonance to achieve a Shepard tone effect.

An interactive demo can be found here: [ Demo | Source Code ]

Hardware Specifications

Core Components

Component Specification
Microcontroller ATMega328 (chosen over ATTiny45 for scaling and pin count)
Power 2x AA Rechargeable batteries
Output 4x Piezo buzzers (2 per chip)
Amplification TL072 Op-amp with RC circuit and relay
Input Contact button located in the “Gem”

Circuitry & Power Management

  • Signal Path: PWM Output → RC Circuit/TL072 (Sine conversion) → Piezo Buzzers.
  • Energy Saving: * The chip enters Sleep Mode immediately after all note tails have faded.
    • Relay Switch: A dedicated “waker” pin triggers a relay to connect the battery to the op-amp only when the chip is active.
  • Current Issues: * Volume is insufficient on AA battery power.
    • Potential need for capacitor boosting to increase rounding and volume.

Software & Sound Logic

Synthesis Principle

  • Shepard Tone: The chip produces three simultaneous sinusoidal frequencies.
    • Higher harmonics decrease in amplitude as the scale ascends.
    • Lower harmonics increase in amplitude as the scale ascends.
    • Result: A “circular” or “donut-like” soundscape.
  • Dynamics: * Variable Decay: Sound fades based on contact duration.
    • Muting Simulation: Longer contact increases decay speed to simulate a percussive “mute.”
  • Processing: PWM values are processed off-cycle upon a flag to ensure timing delivery is prioritized.

Tuning Compromise

  • Perfect 5ths: 6 of the 12 tones are shifted just enough to allow half of the notes to be in perfect 5ths with the other half.
  • Timbre: Current sound is described as “Grüüüüm.” Needs further “softening” to move away from a harsh electronic tone toward a more organic “cave” sound.

Physical Design & Manufacturing

Case & Aesthetics

  • Geometry: The design is based on a truncated dodecagon.
  • The Gems: 12 symmetrical designs that provide the necessary working surface for play.
  • Resonance: Flat surfaces are designed for speakers/piezos to vibrate against to increase volume.
  • Portability: The current case design is foldable.

Placeholder for <3D render of the truncated dodecagon case>

The Physical Shepard Tone Conundrum

An alternative “acoustic-first” approach was considered but deemed extremely difficult:

  • Requires modifying the strength of specific partials/overtones physically without changing the whole timbre.
  • Velocity must be perfectly controlled across three separate tones to maintain the circular illusion.
  • Standard “tongues” (like a tongue drum) do not allow for the necessary overtone division.

Placeholder for <Floral/Spiral tiered design iterations>

Current Project Concerns

  • Volume: Solving the “louder for those in the back” requirement.
  • Waterproofing: Balancing cheap battery access vs. a sealed/wireless unit.
  • Manufacturing: Goal is to refine the design for a limited production run of ~100 units.
project/runaikal/scratchpad.1770051273.txt.gz · Last modified: (external edit)