CONNECTED DEVICES THAT DELIVER USEFUL, RELIABLE BEHAVIOUR

IoT and connected product engineering from sensing to deployment

Build connected devices whose electronics, power, embedded intelligence, wireless links, diagnostics, security and production strategy work together in the real operating environment.

ABTC engineers the physical product and its communication behaviour as one system. Clients gain dependable data, controlled energy use, robust connectivity and an architecture prepared for updates, variants and future services.

  • Reliable data from the real world
  • Connectivity designed into the product
  • Lifecycle decisions made early

CLIENT OUTCOMES

Connected-product value begins below the application layer

A dashboard cannot compensate for unstable sensing, poor power design, weak RF performance or firmware that cannot recover. We strengthen the complete chain from physical signal to usable information.

Trustworthy sensing and control

Integrate sensors, actuators, analogue front ends, timing and calibration around the accuracy and response the use case needs.

Power aligned with deployment

Design operating states, wake sources, radios, power conversion and firmware behaviour around realistic autonomy and maintenance goals.

Wireless performance engineered as a system

Coordinate antenna, RF layout, coexistence, protocol behaviour, provisioning, diagnostics and validation instead of treating the radio as a checkbox.

A device ready for its lifecycle

Plan identity, secure boot, configuration, updates, logging, failure recovery, variants and production from the first architecture.

WHEN WE ADD THE MOST VALUE

For products that must sense, decide and communicate reliably

Our connected-product work ranges from compact battery devices to industrial sensors, gateways, positioning systems and secure proximity applications.

  • Battery-powered sensors and monitoring devices.
  • Industrial IoT equipment operating in demanding physical or RF environments.
  • BLE and Wi-Fi products requiring reliable provisioning and coexistence.
  • UWB ranging, RTLS, secure proximity and access applications.
  • Gateways and devices integrating embedded protocols with remote systems.

A CONTROLLED ENGINEERING PATH

Engineer the complete information path

  1. Define useful behaviour

    Clarify what must be sensed, decided, transmitted and acted upon, under which environmental, energy and latency constraints.

  2. Design device and communication architecture

    Select sensors, processing, power, radios, protocols, security boundaries, interfaces and validation criteria as one system.

  3. Integrate and measure

    Develop hardware and firmware, validate RF and power behaviour, exercise failures and confirm data quality on representative prototypes.

  4. Prepare deployment and production

    Define provisioning, updates, diagnostics, manufacturing test, calibration, traceability and technical integration with remote platforms.

TANGIBLE PROGRESS

A connected device architecture the wider system can trust

The project package connects board-level engineering with product operations, deployment and long-term support.

  • Sensing, control, power and connectivity architecture
  • Custom electronics, PCB, RF integration and antenna strategy
  • Embedded firmware, protocol integration and device state behaviour
  • Provisioning, identity, security, diagnostics and update design
  • Power, RF, connectivity and system-validation evidence
  • Manufacturing test, calibration and deployment documentation

DECISION SUPPORT

Choosing an IoT product-development partner

Can ABTC develop the complete connected device?

Yes. ABTC can cover architecture, electronics, PCB, embedded firmware, wireless integration, validation and industrialisation, and collaborate with app, remote-platform, mechanical and manufacturing teams.

How do you choose between BLE, Wi-Fi, UWB and other technologies?

Selection begins with range, throughput, latency, power, positioning, security, infrastructure, certification and user-flow requirements. Multi-radio architectures are considered when they create clear product value.

Can you optimise battery life?

Yes. Autonomy is addressed through the complete energy budget: hardware leakage, power conversion, sensors, radio use, operating states, wake sources, firmware timing and real duty cycles.

Do you also develop cloud platforms and mobile apps?

ABTC's core responsibility is the electronic product and embedded system. We define dependable interfaces and collaborate with the client's or specialist application and platform teams so the complete solution integrates correctly.

Connect the product around the outcome, not around a radio part number

Tell us what must be sensed, where the product operates, how it is powered and what the user or system must receive. We will help shape the architecture from those requirements.

Discuss your connected product