Systems Engineering and Integration


I2T integrates commercial off-the-shelf and government off-the-shelf components into systems. We have the capability to design and fabricate these parts as needed.

With an in-office integration and testing lab, I2T can support any customer from prototype build to limited production, whether it's milling metal panels, designing custom boards, or writing custom controller software.

    Key Capabilities:
  • Full lifecycle management from requirements to fielding
  • Interface development (physical, digital, software, power)
  • Software/firmware development
  • Hardware fabrication and testing
  • Component trade studies

See Our Projects
I2T designed a hybrid power system from the ground up for an elevated sensor system.

This smart power system meets stringent environmental field standards, soldier carry restraints, and modularity requirements.

Our scalable, modular, and configurable system is the foundation for the Army's hybrid power architecture, allowing for standardized configurations for any number of small power system customers.

The GBOSS system is currently being tested as part of its transition to a Program of Record and will be fielded in short order.
Leveraging the Army's hybrid power architecture, we designed and integrated a power sub-system for a lightweight elevated sensor system.

The smart power system meets stringent environmental field standards, soldier carry restraints, and modularity requirements. The scalable, modular, and configurable system uses the Army's hybrid power architecture allowing for standardized configurations and easy to support logistical needs.

The TSS system is scheduled for testing in late 2019 with fielding to follow.
I2T redesigned launcher power sub-system while addressing reliability, maintainability, and fuel use issues.

We prototyped, integrated and demonstrated a smart hybrid power sub-system that improved silent run time, reduced fuel use by half, and reduced mean time between failure by two thirds.

Allows THAAD Launcher to far exceed system requirements.

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