• Colorado Plateau · Field Telemetry

Remote monitoring for sites beyond reliable cell coverage.

Field-tested to 130 miles line of sight. One platform can move water level, temperature, moisture, pH, EC, trail-counter, and Bluetooth logger data from remote sites to a usable dashboard.

Integrated Architecture

A system, not just a sensor

Field sensors

Low-power radio links

Solar power & storage

Dashboard & export

TEMPERATURE, SOIL AND ROCK MOISTURE, PH, EC, TRAIL COUNTERS, AND NONCONTACT WATER LEVEL.

MESHTASTIC-COMPATIBLE LORA, FIELD-TESTED TO 130 MILES LINE OF SIGHT.

SOLAR POWER, BATTERY TELEMETRY, LOCAL QUEUES, AND STORE-AND-FORWARD RECOVERY.

LIVE MAPS, SENSOR HISTORY, NODE HEALTH, ALERTS, AND EXPORTABLE DATA.

— Current Field Deployments
Development Pipeline

Water and watershed monitoring

Continuous Water Quality Testing

Current field work includes noncontact water level sensors, continuous temperature logging, soil-moisture arrays, repeatable field calibration, and wireless HOBO Bluetooth logger integration for site-level telemetry.

System architecture is currently being developed for continuous automated monitoring of turbidity, electrical conductivity, water temperature, pH, and dissolved oxygen.

Conventional water-quality work relies on calibrated hand instruments, fully documented sampling protocols, and rigorous chain-of-custody handling for lab submission.

These parameters are active development projects subject to bench validation and field calibration, not completed commercial deployments.

/ LoRa Mesh Hardware
/ Field Diagnostics

LoRa mesh and custom firmware

Built around field recovery

Meshtastic-compatible LoRa radios move compact observation packages through steep desert terrain where a single cellular link is unreliable or non-existent.

Remote stations are engineered to be diagnosed and recovered without removing hardware enclosures from difficult-access field sites.

Hardware builds utilize RAK4631 and RAK19007 radios coupled with custom firmware designed specifically for low-power hydrologic duty cycles.

System firmware integrates explicit sensor polling commands, hardware watchdog circuits, power status checks, and non-volatile configuration preservation during over-the-air updates.

The custom software stack executes sensor reads, scheduled reporting routines, remote node configuration, health checks, battery status monitoring, local error recovery, and store-and-forward queueing.

A remote firmware-recovery workflow has been physically tested end to end. All new hardware builds are treated as development versions until bench-tested and field-verified.

• Project Intake

Evaluation Process

Planning a remote monitoring project?

Share your site location, terrain and access constraints, target parameters, desired reporting interval, and project timeline.

We will review your requirements to identify what telemetry components are ready now, what requires field testing, and what should remain manual field monitoring.

1. Site & terrain review 2. Power & radio line-of-sight analysis 3. Ready vs. experimental triage 4. Field deployment plan