Internet of Things (IoT) Solutions
IoT has entered the scale phase, where managing millions of devices matters more than simply connecting them. Security risks, protocol fragmentation, and cloud costs are the key challenges. AkhilaFlex 2.0 delivers intelligence at the edge and unified interoperability to simplify large-scale IoT.

Differentiators
The AkhilaFlex Internet of Things (IoT) Solutions
Accelerate IoT deployment with AkhilaFlex 2.0. We enable unified device onboarding, fleet management, and edge intelligence—securely operating environments from tens to millions
of connected devices across industrial and enterprise use cases.

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The AkhilaFlex 2.0 Advantage

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Legacy-to-Cloud
Bridging

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Security-First
Architecture

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Embedded
Platforms delivered

Technology That Powers Our Solutions
The AkhilaFlex 2.0 Advantage:
A modular, distributed framework that provides pre-builtcomponents for every layer of the IoT stack. It includes aready-to-use cloud suite for devicemanagement, alert monitoring, and analytics, reducing Time-to-Market (TTM) by up to 50%.

Legacy-to-Cloud Bridging:
We specialize in “brownfield” deployments. We build gateways thatspeak ancient industrial protocols (Modbus RTU, BACnet, Profibus) and translate them into secure,modern MQTT/JSON streams for the cloud, unlocking value from assets that have been siloed fordecades.

Security-First Architecture:
We implement “Zero Trust” for IoT. This involves hardware-based rootsof trust (TPM/Secure Element), mutual TLS(mTLS) for device authentication, and encryptedfirmware updates to prevent the weaponization of your fleet. 1

Differentiators
The AkhilaFlex Accelerator
- Local Rules Engines: Running logic on the gateway to trigger immediate actions (e.g., “stop machine if vibration > threshold”) without cloud round-trip latency.
- Data Filtering Reducing cloud costs by filtering noise at the edge—sending only “insight” data rather than raw streams.
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- Sensor Nodes: Ultra-low-power designs using energy harvesting or coin-cell batteries, capable of running for years. We integrate diverse sensors: environmental (temp/humidity), inertial (accelerometers for vibration), and biosensors.
- Connectivity: Implementation of diverse radio stacks including LoRaWAN for long-range/low-power, NB-IoT/LTE-M for cellular penetration, and Wi-Fi 6/BLE 5.3 for local mesh networks.
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- Intelligent Gateways:Custom gateways based on Linux (i.MX, Raspberry Pi CM4) that aggregate sensor data, perform local edge processing, and manage upstream connectivity.
- Sensor Nodes: Ultra-low-power designs using energy harvesting or coin-cell batteries, capable of running for years. We integrate diverse sensors: environmental (temp/humidity), inertial (accelerometers for vibration), and biosensors.
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Moving intelligence closer to the data source.
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- Device Management: Automated provisioning workfl ows (Zero-Touch Provisioning), digital twin synchronization, and fl eet-wide OTA campaign management.
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- Data Pipelines: High-throughput ingestion using MQTT/CoAP. Storage in time-series databases (Infl uxDB, TimescaleDB) for effi cient retrieval of historical sensor data.
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- Visualization: Custom dashboards tailored to specifi c user roles (e.g., a “technician view” vs. an “executive view”).
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Tech Stack Powering Our Platforms

Hardware/Firmware
Nordic nRF52/53, ESP32, STM32WB, NXP i.MX,FreeRTOS, Zephyr, AkhilaFlex H/W 1.0 14

Communication Protocols
MQTT,MQTT-SN,CoAP,HTTP/HTTPS,WebSockets, Modbus, OPC-UA, BACnet,Matter/Thread

Wireless Standards
Bluetooth Low Energy (BLE), Wi-Fi 6, LoRaWAN,Zigbee,Cellular (4G/LTE/5G/NB-IoT), NFC

Cloud Platforms
AWS IoT Core, Azure IoT Hub,Google Cloud IoT,AkhilaFlex Cloud Suite

Databases
InfluxDB, DynamoDB, MongoDB, PostgreSQL,Redis

Security
TLS 1.3, X.509 Certificates, Hardware SecureElements (ATECC608), ARM TrustZone
Industries Served

Smart Agriculture
Soil moisture sensing networks, drone-based crop analysis, and automatedirrigation control systems.

Industrial IoT (Industry 4.0)
Predictive maintenance (vibration analysis), asset tracking in warehouses, and energy management systems for factories.

Smart Cities
Intelligent street lighting, waste bin level monitoring, and air quality index (AQI) sensor networks.
Frequently Asked Questions
At Akhila Labs, embedded engineering is the foundation of everything we build. We go beyond writing firmware that runs on hardware—we engineer systems that extract
maximum performance, reliability, and efficiency from the silicon itself.
Can you integrate LiDAR, cameras, and other sensors for autonomous navigation?
Yes. We design sensor fusion pipelines using EKF/UKF, implement SLAM for GPS-deniedenvironments, and integrate multiple sensor modalities (LiDAR, RGB, depth, radar) for robustautonomous navigation.
How do you test autonomous drone behavior before real-world deployment?
We use simulation-first development with PX4 SITL/HITL in Gazebo/Ignition for virtualenvironments, hardware-in-the-loop rigs, and staged field trials with progressive autonomylevels
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