Hardware to Cloud Telemetry
We bridge physical hardware with cloud infrastructure, designing low-latency MQTT & CoAP data pipelines for real-time sensor monitoring.
BitHorizonTech has big plans for the future, working with amazing clients and advancing software development. Let's start your next project together.
Bridge your physical hardware with scalable cloud intelligence. BitHorizonTech engineers custom IoT systems — from low-power microcontroller firmware (C/C++, FreeRTOS, Zephyr) and edge AI inference (TensorFlow Lite) to MQTT message brokers, time-series data pipelines, and real-time fleet management dashboards. Built for industrial IIoT, smart medical devices, and commercial hardware products.

Full-Stack Hardware & Firmware Engineering for Connected IoT Ecosystems
From embedded firmware and edge computing to cloud telemetry pipelines and live fleet dashboards, BitHorizonTech connects physical devices to actionable digital intelligence.
We bridge physical hardware with cloud infrastructure, designing low-latency MQTT & CoAP data pipelines for real-time sensor monitoring.
Our IoT architectures implement hardware root-of-trust, mutual TLS device authentication, and secure cryptographic OTA firmware deployments.
We provide complete device provisioning tools, edge computing rule engines, time-series database tuning, and 24/7 hypercare support.
Connect physical sensors, industrial machinery, and consumer devices to high-performance cloud backends. As an end-to-end IoT engineering company, BitHorizonTech delivers hardware selection guidance, RTOS firmware, MQTT brokers, and predictive analytics dashboards.
Develop low-power, crash-resilient C/C++ firmware on FreeRTOS and Zephyr for ESP32, STM32, and Raspberry Pi.
Engineer high-concurrency MQTT brokers, InfluxDB time-series storage, and live Grafana telemetry dashboards.
Harden connected hardware with X.509 device certificates, encrypted storage, secure boot, and rollback-safe OTA updates.

Our Custom IoT Development Services
Modernize your hardware ecosystem with custom IoT solutions tailored to your unique requirements, connecting devices to real-time analytics.
We write robust bare-metal C/C++ firmware and RTOS kernels (FreeRTOS, Zephyr) for ESP32, STM32, Nordic nRF52, and Raspberry Pi with sub-microamp sleep modes.
We implement low-power wireless protocols including BLE 5.0, Wi-Fi 6, LoRaWAN, NB-IoT, Zigbee, and cellular M2M telemetry for long-range connectivity.
We deploy TensorFlow Lite and Edge Impulse AI models directly onto edge hardware for real-time acoustic signal processing, computer vision, and predictive maintenance.
We architect high-concurrency MQTT brokers (Mosquitto, EMQX), InfluxDB time-series storage, and AWS IoT Core stream processing pipelines for millions of device messages.
We implement cryptographically signed A/B dual-bank OTA firmware update systems with automatic rollback protection for zero-downtime fleet deployment.
We enforce hardware root-of-trust, encrypted flash storage, X.509 mutual TLS authentication, and OWASP IoT security guidelines to protect connected hardware.
How We Build With You
Discover our streamlined development process, designed to deliver high-quality applications efficiently, collaboratively, and with full transparency at every stage.
Deep process mapping workshops with every department — documenting workflows, pain points, and must-have requirements.
Module design, data model, integration architecture, and UI wireframes — reviewed and approved before development starts.
Core modules first, then extensions — delivered in bi-weekly sprints with user acceptance testing at every phase.
Parallel run with existing systems, data migration, team training, and 90-day hypercare support post go-live.
Agile Development Process
Our agile methodology ensures flexibility, transparency, and rapid delivery at every stage of your software project, adapting to your evolving business needs.
We create concepts based on the logical approach & ensure its feasibility with major technologies.
Our Concepts are turned down into technical models with the help of the innovative ideas.
Technical models get life through architecture, coding, developing, designing and testing.
Development has the complex procedure Therefore, we refine the project before deployment.
Project is thoroughly examined on different parameters including the core client requirements.
Our Approach
Flexible and efficient project delivery through agile methodology
Regular sprint planning sessions to define goals, tasks, and timelines for each development cycle.
Daily team meetings to track progress, address challenges, and ensure smooth collaboration.
Regular demonstrations of completed work to gather feedback and ensure alignment with requirements.
Quickly adapt to changing requirements and market conditions while maintaining project momentum.
Regular delivery of working software increments, ensuring steady progress and early feedback.
Clear visibility into project progress and regular stakeholder engagement throughout development.
Technologies & Platforms
We leverage cutting-edge technologies and platforms to build robust and scalable solutions.
High-performance time-series database optimized for high-volume sensor metrics & analytics
Amazon Web Services suite for scalable cloud compute, storage & managed services
Containerization platform and Kubernetes orchestration for reliable cloud-native deployments
High-performance systems programming languages for bare-metal microcontroller firmware
Market-leading real-time operating system kernel for microcontrollers & edge nodes
Modular Linux Foundation RTOS engineered for resource-constrained hardware
Low-cost, feature-rich Wi-Fi & Bluetooth microcontrollers for IoT prototyping & production
Single-board Linux computer for edge gateways, local compute & sensor hubs
Lightweight pub/sub messaging protocol designed for low-bandwidth, constrained networks
Managed cloud service for connecting billions of IoT devices & routing telemetry data
Real-time telemetry dashboards, alert management & hardware fleet monitoring
Deep learning framework for running on-device AI inference on edge microcontrollers
Long-range, low-power wireless networking protocol for wide-area IoT sensor deployments
FAQ's on IoT Development Services
Find answers to common questions about IoT Development, our services, and how we can help bring your app idea to life.
Yes. As part of our IoT architecture phase, we evaluate microcontrollers (ESP32, STM32, Nordic nRF), sensors, radios, and power budgets based on unit cost (BOM), battery life targets, and global supply chain availability.
It depends on your bandwidth, range, and battery requirements. BLE 5.0 is ideal for short-range smartphone-paired devices, LoRaWAN for long-range outdoor sensors with multi-year battery life, Wi-Fi for high-throughput video/data streams, and NB-IoT/LTE-M for cellular asset tracking.
We implement secure boot via hardware root-of-trust, flash encryption, mutual TLS authentication using unique X.509 client certificates per device, disable debug ports (JTAG/SWD) in production, and enforce signed OTA firmware rollouts.
Yes. Our cloud IoT data platforms leverage AWS IoT Core or cluster-managed MQTT brokers, coupled with distributed time-series databases (InfluxDB / TimescaleDB) and Redis pub/sub buffers capable of ingesting over 100,000 telemetry payloads per second.
We use dual-bank (A/B) flash partition schemes with hardware watchdog timers. If a network interruption occurs or the new firmware fails validation on startup, the device automatically rolls back to the known working firmware image in Bank A.
What Our Clients Say
Hear from our satisfied clients about their experience working with us.