Hardware Design

Phase Computing
in Silicon.

From the physical six-pillar sensor array to the Mikros and Makros development boards, the hardware program brings the Metatron Framework into the physical world — testable, measurable, and real.

Phase Detection Array

Six-Pillar Sensor Array

A physical multi-sensor apparatus designed to detect and record phase anomalies across six independent channels. Built and operational. Interfaced with the Metatron Harmonics software platform.

Magnetic
Thermal
LiDAR
RF
Audio
Environmental
ARRAY

Magnetic

Sub-milligauss magnetic field mapping. Detects field anomalies, flux variations, and phase-correlated magnetic events.

  • 3-axis magnetometer
  • Sub-milligauss resolution
  • Phase-locked sampling
  • 1kHz acquisition rate

Thermal

Thermal gradient imaging with phase-coherent sampling. Captures temperature anomalies correlated with other sensor channels.

  • IR thermal array
  • Phase-coherent timing
  • Gradient mapping
  • Anomaly detection

LiDAR

Spatial mapping and distance measurement. Provides 3D environmental context for phase anomaly localization.

  • 360° spatial mapping
  • Millimeter resolution
  • Real-time 3D output
  • Phase-correlated timestamps

RF

Radio frequency spectrum monitoring. Captures RF anomalies, interference patterns, and phase-correlated electromagnetic events.

  • Broadband RF monitoring
  • Spectrum analysis
  • Phase correlation
  • Anomaly flagging

Audio

High-fidelity audio capture with phase-coherent sampling. Detects infrasound, ultrasound, and acoustic phase anomalies.

  • 20Hz–20kHz capture
  • Infrasound extension
  • Phase-coherent ADC
  • FFT analysis pipeline

Environmental

Atmospheric and environmental monitoring: pressure, humidity, ionization, and other environmental phase correlates.

  • Barometric pressure
  • Humidity and temperature
  • Ion density monitoring
  • Phase-correlated logging
Development Boards

Mikros & Makros

Native phase-computing development hardware. Designed to run the Golden Phase OS and KairOS phase kernel at the silicon level.

KairOSΦ-CORE
MIKROS — REV 0.1

Mikros

Embedded Phase Computing Board

Design Phase

A compact embedded development board designed natively for phase computing. Implements the KairOS Φ-state architecture in hardware, enabling four-state computation at the silicon level for embedded and IoT applications.

— Specifications

Architecture
Phase-native ISA
States
Φ₀–Φ₃ (four-state)
Form Factor
Compact embedded
OS
KairOS / Golden Phase OS
Interface
GPIO, I²C, SPI, UART
Target
IoT, embedded, research

— Capabilities

Native four-state phase computation in silicon
KairOS phase kernel support
Phase-coherent I/O interfaces
Low-power phase-state management
Research and development toolchain
KairOSΦ-CORE
MAKROS — REV 0.1

Makros

Full-Platform Phase Computing Board

Design Phase

A full-platform development board for phase computing research and application development. Designed to run the complete Golden Phase OS stack with full peripheral support, high-speed interfaces, and research-grade instrumentation.

— Specifications

Architecture
Phase-native full ISA
States
Φ₀–Φ₃ (four-state)
Form Factor
Full platform
OS
Golden Phase OS (full)
Interface
PCIe, USB, HDMI, Ethernet
Target
Desktop, research, server

— Capabilities

Full Golden Phase OS support
High-speed phase-coherent interfaces
Research-grade instrumentation outputs
Phase-native memory architecture
Full development toolchain and SDK

Mikros

Embedded / IoT

Makros

Full Platform

Both boards implement the same KairOS Φ-state architecture. Mikros targets constrained embedded environments; Makros runs the full Golden Phase OS stack with high-speed peripherals for desktop and research use.

Hardware Roadmap

The Build Timeline

2022

Sensor Array Designed

DONE

Architecture and specifications for the six-pillar array defined.

2023

Sensor Array Built

DONE

Physical construction of all six sensor pillars completed.

2023

Harmonics Integration

DONE

Metatron Harmonics software connected to the physical array.

2024

Mikros Board Design

Schematic and PCB design for the embedded phase computing board.

2024

Makros Board Design

Full-platform phase computing board architecture and design.

2025

Prototyping Station

Integrated desktop engineering station for hardware development.

Next

Commercial Hardware

Production-ready phase computing hardware for research and commercial use.

Partner on Hardware

Open to collaboration with hardware engineers, PCB designers, manufacturers, and investors interested in phase computing hardware development.