End-to-End IoT & Embedded Engineering
From custom PCB carrier boards to cloud telemetry platforms—we design hardware, program microcontrollers and SBCs, write bare-metal and RTOS firmware, and engineer resilient IIoT networks.
Industrial IoT Architecture: Custom Silicon to Cloud Telemetry
We engineer ruggedized hardware and resilient connectivity layers that eliminate field truck rolls, guarantee 99.9% telemetry uptime, and provide zero-touch remote fleet management.
- Custom Carrier Board Design: Schematic capture, multi-layer PCB layout, and thermal modeling for compute modules.
- Firmware & OS Customization: Hardened Yocto/Buildroot Linux distributions and FreeRTOS/Zephyr firmware.
- Resilient Connectivity: Multi-carrier cellular integration, LoRaWAN, BLE, and autonomous failover networking.
- Cloud Ingestion & Digital Twins: High-throughput MQTT pipelines into AWS IoT Core, Azure IoT Hub, or custom brokers.
- RTLS & Lone Worker Tracking: Ultra-Wideband (UWB) indoor positioning, BLE beacons, and fall detection. Explore Industrial RTLS & Lone Worker Safety.
Need a Comprehensive IIoT Platform?
Explore our specialized offering for building secure, multi-tenant Industrial IoT Platforms with automated device onboarding, MQTT telemetry, and role-based command dashboards.
Architecting for Resilience
Eliminate Field Blind Spots
Don't let carrier outages disrupt your data pipeline. We implement dual-SIM architectures and autonomous baseband switching logic to ensure your devices stay connected regardless of geographic network constraints.
Zero-Touch Remote Updates
Never dispatch a technician for a firmware update again. Our cryptographically signed, A/B partitioned Over-The-Air (OTA) architecture pushes firmware globally with automatic rollback safeguards against bricked devices.
Survive Harsh Industrial Environments
Stop replacing failed consumer-grade hardware. We design custom SBC carrier boards with thermal dissipation, conformal coating, ESD protection, and mechanically staked connectors built for heat, moisture, and vibration.
Guaranteed Telemetry Integrity
Protect critical sensor streams over intermittent networks. We utilize lightweight MQTT/Protobuf payloads with local ring-buffer persistence, ensuring zero data loss during dead-zone transit.
Client Perspective
How we partner with engineering and operations leaders on mission-critical deployments.
"AdaptNXT people know our language, know our business, and understand our domain. They provide the development acumen and 24x7 implementation support around the globe."
"Their developers are skilled and capable of delivering complex solutions while staying up to date with modern technologies and frameworks. The project manager was highly responsive."
Technologies & Platforms
Silicon & Compute
Microcontrollers, SoMs & Industrial Gateways
EDA & Embedded Firmware
Schematic capture, PCB layout & RTOS
Protocols & Fieldbus
Industrial & wireless telemetry transport
Cloud & Fleet Ops
Ingestion, digital twins & A/B OTA updates
IoT in the Real World
From high-speed rail safety telemetry to autonomous perimeter security systems.
OMS Modernization
Eliminating manual intervention with autonomous, GPS-synchronized track oscillation monitoring systems for rail networks.
Explore Case Study →
Axle Thermal Monitoring
Preventing catastrophic derailments through real-time thermal telemetry at the edge for high-speed rail networks.
Explore Case Study →
Smart Intrusion Detection
Deploying TARA, an autonomous edge security unit that integrates thermal and optical surveillance with real-time alerting.
Explore Case Study →Latest in IoT & Connectivity
The Heart of Industrial IoT
Why the MQTT protocol remains the industry standard for lightweight, reliable sensor communication.
Read Article →Protecting the Edge
Strategic approaches to IoT security, from hardware-level cryptographic elements to signed firmware updates.
Read Article →Connectivity Comparison
Technical evaluation of Wi-Fi vs. LoRa vs. Cellular for high-reliability field deployments.
Read Article →Frequently Asked Questions
Common questions on industrial protocols, hardware security, offline edge buffering, and PCB-to-cloud integration.
Ask an IoT Architect directlyTalk Directly to an IoT Solutions Architect
Book a zero-pitch, 20-minute engineering session to review your PCB schematics, validate sensor protocols (MQTT/CoAP), evaluate edge compute constraints, or scope your telemetry pipeline.
Book a 20-Min Technical Strategy Call
Discuss your architecture, feasibility, hardware sizing, or custom software requirements directly with a senior engineer.
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