Open Source · MetatronHarmonic.info

Metatron Harmonic
Phase Field Analyzer

Phase is not a property of signals.
Phase is the substrate of reality.

6
Sensor Pillars
25+
UI Pages
RTL-SDR
MIT
Open Source
MTD
Metatron Units
14
Arduinos

The Phase Field Analyzer

Built on Godot 4 + C#. 25+ dedicated UI pages. Real-time multi-sensor acquisition with the proprietary Metatron Framework for cross-domain normalization.

Godot 4C#25+ PagesMetatron Framework
Explore Software

Open-Source Hardware

6 sensor pillars, 14 Arduinos, 20+ sensor modalities. Full schematics, BOM, and firmware on GitHub. Build your own rig from scratch.

6 Pillars14 ArduinosFull SchematicsMIT License
View Hardware Docs

Ready-to-Go Kits

Don't want to build from scratch? Pre-assembled pillar sets ship ready to connect. Every sale is reinvested directly into R&D.

Pre-AssembledPlug & PlayR&D FundedTwo Pillar Types
Shop Kits
Software Platform

One App. Every Sensor. Real-Time.

The Metatron Harmonic Phase Field Analyzer is a research-grade sensor acquisition platform. It connects to an array of physical sensor pillars over USB serial, ingests data from software-defined radio receivers, captures video from UVC cameras, measures radiation via Geiger counter audio-pulse counting, and displays everything in a unified, navigable desktop UI.

Built on Godot 4 (C#, .NET 6) with a custom binary packet protocol featuring CRC8 integrity checking, module IDENT handshaking, and automatic COM port scanning. Every sensor stream can be monitored live, logged to disk, replayed, and exported.

Godot 4 + C#RTL-SDROpenCvSharp4MathNet.NumericsNAudiolibsigrokMKL-accelerated DSPMicrosoft.MLTorchSharpSerilog
Core Architecture
UI runtimeGodot 4.4 (res://scenes/main.tscn)
LanguageC# / .NET 6, nullable-enabled
Serial protocolBinary packets · CRC8 · IDENT handshake
Audio captureNAudio WaveInEvent, 44100 Hz mono 16-bit
Computer visionOpenCvSharp4 + Windows Media Foundation
DSP / MLMathNet.Numerics + MKL + Microsoft.ML
RFRTL-SDR · librtlsdr · SDR# feature-set in C#
LoggingSerilog · rotating files · binary packet archive
Pillar Type 1·Electromagnetic & Acoustic Sensing·3 pillars (A + B sides)
P1.A

Hall + Ultrasonic

MOD_HALL_ULTRA (0x17)
  • Magnetic flux density mapping
  • Ultrasonic time-of-flight distance
  • Real-time 2D/3D field visualization
  • Acoustic proximity alerts
P1.B

Video + Audio

MOD_VIDEO_AUDIO (0x1A)
  • Live UVC camera feed (OpenCvSharp4)
  • Real-time audio frequency analysis
  • Acoustic event timestamping
  • Video frame export & recording
Pillar Type 2·Thermal, Environmental & Spatial Sensing·3 pillars (A + B sides)
P2.A

Thermal + Gas

MOD_THERMAL_GAS (0x1C)
  • Non-contact IR temperature mapping
  • Multi-gas VOC concentration logging
  • Thermal anomaly detection
  • 3D thermal surface interpolation
P2.B

LiDAR + IMU

MOD_PILLAR_LIDAR (0x1D–1F)
  • VL53L5CX ToF swept 0–90°
  • BNO08x 9-DoF IMU fusion
  • Madgwick quaternion filter
  • World-frame 3D point cloud
Proprietary Framework

The Metatron Framework

ALT Phase Algorithm

The proprietary ALT Phase Algorithm is the core of the Metatron Framework. It computes phase coherence, magnitude relationships, and cross-sensor correlation in real time — normalizing outputs to Metatron Units so that magnetic flux, ultrasonic amplitude, LiDAR distance, thermal gradient, impedance phase angle, and RF power can all be plotted on the same scale and compared directly.

The Phase Singularity at (0,0) — where amplitude collapses to zero and phase becomes undefined — is not a problem to be filtered out. It is the most important feature in any signal. The topological interface between observable and hidden information domains.

  • Cross-domain phase coherence measurement
  • Magnitude normalization to MTD scale
  • Real-time multi-channel correlation matrix
  • Phase tuning exposed in Phase Tuning page

Metatron Units (MTD)

MTD is the common unit of measure produced by the normalization pipeline. Raw sensor readings — from Hall sensors, LiDAR, impedance sweeps, radiation CPM, RF power dBm — are all scaled to MTD via domain-specific calibration matrices, enabling the Fusion View to overlay heterogeneous data meaningfully.

Magnetic → MTDAcoustic → MTDLiDAR → MTDThermal → MTDRF Power → MTDImpedance → MTDRadiation CPM → MTD

The Central Equation

Ψ(0,0) = 0  ⟹  REALITY
Open-Source Hardware

Build It Yourself.
Everything on GitHub.

Voltage Monitor Pods ×2

MOD_VOLTAGE (0x18)

ADS1115 16-bit ADC, 4-channel voltage monitoring of supply rails and coil drive voltages.

Impedance Analyzers ×2

MOD_IMPEDANCE (0x19)

AD5933 network analyzer, 1 kHz–100 kHz sweep. Magnitude, phase, and Nyquist plot.

Geiger Counter

NAudio · SBM-20 Tube

Audio-pulse counting via PC mic-in. Live CPM, µSv/h conversion, configurable tube factors.

USB Oscilloscope

libsigrok

Multi-channel waveform capture. Time-domain and FFT frequency-domain views.

RTL-SDR Receivers ×3

2.048 MS/s · SDR#

Three independent RF receivers. FFT waterfall, demodulation (NFM/WFM/AM/USB/LSB/CW).

UVC Camera Array

OpenCvSharp4

Hi-res + lo-res UVC cameras via Windows Media Foundation. CV analysis and recording.

Hardware Store

Ready-to-Go
Pillar Kits

Don't want to source components, solder boards, and flash firmware yourself? We offer pre-assembled pillar sets that ship ready to connect to your PC.

Every sale is reinvested directly into R&D — helping us push the phase frontier further. Buying a kit is a direct contribution to the project.

100% of revenue reinvested into R&D

Pillar Kit — Type A

Hall + Ultrasonic · Thermal + Gas

Coming Soon

Electromagnetic + environmental sensing. Magnetic field mapping, ultrasonic ranging, IR thermal imaging, and VOC gas detection — pre-assembled and tested.

Pillar Kit — Type B

LiDAR + IMU · Video + Audio

Coming Soon

Spatial + optical sensing. VL53L5CX LiDAR sweep, BNO08x IMU fusion, UVC camera, and audio spectrum — the full spatial awareness stack, ready to go.

The Central Commitment
"We will not stop at 87.1% closure.
We will not accept that the last 12.9% is noise."

We will find the geometry in every residual, name every pole and well, and close every gap — in signal processing, in physics, and in our understanding of what phase actually is.

Metatron Harmonic logo

An open-source multi-sensor acquisition, analysis, and visualization platform built on Godot 4 + C#. Phase is not a property of signals. Phase is the substrate of reality.

MIT License · Open Source

Metatron Research Project · Thousand Oaks, California

© 2026 Metatron Research Project · R. Careaga · Thousand Oaks, California

MIT License · MetatronHarmonic.info