Architecture and interface definition
Agree system boundaries, operating requirements and the interfaces between subsystems.
Markets
Connecting electronics, software, equipment and operations into complete working systems.
Bryantech approach
We bring the relevant engineering disciplines together around the application, measurable requirements and a realistic path to production.
Agree system boundaries, operating requirements and the interfaces between subsystems.
Connect electronics, embedded software and application functions into a working system.
Evaluate integrated behaviour and prepare the configuration and handover information.

Engineering in practice
We coordinate mechanical interfaces, electrical systems, controls and monitoring around the intended process. Existing equipment and mature subsystems can be integrated where they meet the application requirements.
Applications
Production equipment, material handling, automated warehouses and building systems.
Technical scope tailored to your system and development stage.
Define physical interfaces, sensing, actuation and material or product flow. Review maintenance access and installation constraints.
Coordinate power distribution, control logic, communication interfaces and equipment status signals.
Build HMI and monitoring functions around operator tasks, process visibility and exception handling.
Check interfaces and operating sequences, record functional tests and prepare handover documentation.
A structured sequence with review points and recorded decisions.
Map equipment, workflows and constraints.
Define power, controls and interfaces.
Coordinate installation and commissioning.
Verify functions and document operation.
The agreed package supports design review, integration and the next project stage.
Architecture, interface schedules and control/monitoring documentation.
Functional test records, operating instructions and resolved issue lists.

Engineering in practice
We coordinate mechanical interfaces, electrical systems, controls and monitoring around the intended process. Existing equipment and mature subsystems can be integrated where they meet the application requirements.
Applications
Production equipment, material handling, automated warehouses and building systems.
Technical scope tailored to your system and development stage.
Define physical interfaces, sensing, actuation and material or product flow. Review maintenance access and installation constraints.
Coordinate power distribution, control logic, communication interfaces and equipment status signals.
Build HMI and monitoring functions around operator tasks, process visibility and exception handling.
Check interfaces and operating sequences, record functional tests and prepare handover documentation.
A structured sequence with review points and recorded decisions.
Map equipment, workflows and constraints.
Define power, controls and interfaces.
Coordinate installation and commissioning.
Verify functions and document operation.
The agreed package supports design review, integration and the next project stage.
Architecture, interface schedules and control/monitoring documentation.
Functional test records, operating instructions and resolved issue lists.

Engineering in practice
Satellite programmes connect payload objectives with platform, integration and launch requirements. Bryantech provides engineering support and technical coordination with the specialist partners needed for the agreed programme.
Applications
Satellite payload programmes and custom space-system engineering work packages.
Technical scope tailored to your system and development stage.
Capture mission objectives and payload needs, then organize the key system constraints and interfaces.
Support electronics, control, data handling and relevant design interfaces within the contracted work package.
Coordinate payload integration planning, functional checks and engineering documentation.
Support technical communication with launch-service partners and the exchange of agreed interface information.
A structured sequence with review points and recorded decisions.
Establish mission and payload requirements.
Resolve platform and subsystem interfaces.
Plan assembly and functional verification.
Consolidate programme documentation.
The agreed package supports design review, integration and the next project stage.
Requirements, subsystem interfaces and integration plans.
Review actions, functional verification documentation and coordination records.

Engineering in practice
An IoT system includes more than wireless connectivity. Device identity, data handling, user interfaces and ongoing operation must be designed together so the platform fits its application and support model.
Applications
Smart buildings, energy monitoring, parking, industrial equipment and connected devices.
Technical scope tailored to your system and development stage.
Integrate sensors, processing, local interfaces and gateways. Select BLE, Wi-Fi, cellular, NB-IoT or UWB according to the deployment requirements.
Define device messages, APIs, storage and telemetry processing. Organize data for monitoring, analysis and application workflows.
Develop web, iOS and Android interfaces for device visibility, configuration, control and alerts.
Plan device management, access control, remote support and deployment on the agreed cloud environment, including AWS or Microsoft Azure.
A structured sequence with review points and recorded decisions.
Identify users, devices and data flows.
Develop device, gateway and API integration.
Implement applications and monitoring.
Verify connectivity, access and operations.
The agreed package supports design review, integration and the next project stage.
Device integration, application code and API documentation.
Environment configuration, operating guidance and integration results.
Build what comes next