Custom IoT engineering
End-to-end IoT product development for organisations that need connected hardware, device communications, cloud infrastructure and software shaped around a real operational requirement.
Explore IoT EngineeringT2K designs and develops complete IoT systems, from connected hardware and embedded software through connectivity, cloud platforms and operational applications.
T2K brings hardware, embedded software, connectivity, cloud services and operational applications into one engineering process.
End-to-end IoT product development for organisations that need connected hardware, device communications, cloud infrastructure and software shaped around a real operational requirement.
Explore IoT EngineeringA complete connected product bringing tracking hardware, embedded software, multi-network connectivity, cloud services, an operational dashboard and reporting together.
See ATLAS engineering in practiceA device affects connectivity. Connectivity affects data. Data affects the interface, workflow and evidence available to the people using the system. T2K Group considers those relationships from the start.
That approach helps identify constraints early and keeps the solution centred on the operational outcome rather than an isolated technical component.
How T2K Group worksATLAS is T2K Group’s principal product and a public example of our end-to-end IoT capability. It demonstrates a complete information path rather than an isolated prototype.
The system needs to connect field equipment with current operational information and retained journey history.
T2K is responsible for the tracker, firmware, connectivity behaviour, data path, platform, interfaces and reporting model.
Movement, intermittent mobile service, physical deployment, access control and clear data-age communication influence the complete design.
ATLAS combines live asset visibility, retained movement history, access controls and reporting in one connected product service.
IoT engineering is most effective when the problem, environment and definition of success are understood before a solution is selected.
Clarify the users, operating environment, constraints, dependencies and outcome that matters.
Choose an appropriate technical approach and make the interfaces between components explicit.
Develop in reviewable stages, test the important assumptions and respond to evidence from use.
Substantive articles about IoT requirements, connectivity, architecture and prototyping for real operating environments.
Compare options using coverage, mobility, power, data, infrastructure and offline behaviour.
Read articleDefine the decision, environment and evidence before choosing the technology.
Read articleMake the handovers between devices, connectivity, cloud software and people explicit.
Read articleTell us what needs to happen, where it needs to work and what a successful outcome looks like.