Technology

Transparent architecture for practical Earth intelligence.

The technology story is deliberately clear: sensors collect evidence, ground systems move it, pipelines prepare it, analytics interpret it, and delivery interfaces place it in operational hands.

Sensor modalities

Choose the observation layer the mission needs.

Missions can combine radar, optical, spectral, and complementary sources when the decision requires multiple kinds of evidence.

SAR

Active radar sensing for observation through darkness and many cloud conditions when dependable collection matters.

Multispectral Optical

Readable visual and near-infrared context for mapping, classification, and change interpretation.

Hyperspectral

Narrow-band spectral information for material, vegetation, and environmental indicators.

Complementary Sensing

Low-light, thermal, aerial, or partner data sources can be configured when the mission requires them.

Architecture

Ground and processing flow.

The architecture separates mission control, processing, geospatial infrastructure, analytics, and customer delivery so each layer can be scoped, secured, and improved independently.

01Space segment
02Ground stations
03Mission ops
04Processing
05Geospatial core
06Analytics
07Customer delivery

Pipeline

From collection to distribution.

Processing levels and review depth are configured to the mission, data source, decision timeline, and delivery format.

01Ingestion02Calibration and preprocessing03Georeferencing04Enhancement05Feature extraction06Change detection07Analyst review08Distribution

Delivery interfaces

Interfaces that fit the customer workflow.

Delivery can include secure portals, API access, event alerts, standard geospatial formats, custom integrations, and operational reporting.

Discuss a Mission

Security and reliability

  • Role-based access patterns
  • Encryption in transit
  • Audit-friendly workflows
  • Regional deployment options
  • Data-retention controls
  • System observability
  • Resilient processing queues