Automation and Embedded Engineering

Automation Engineering

  • Increases productivity by enabling faster, continuous, and repeatable operations
  • Reduces human error, improving quality, consistency, and reliability
  • Lowers operational costs through optimized resource usage and reduced labor dependency
  • Enhances workplace safety by removing humans from hazardous or repetitive tasks
  • Enables scalability, allowing systems to grow without proportional increases in manpower
  • Supports Industry 4.0 and smart manufacturing initiatives
  • Integrates digital technologies such as IoT, AI, and data analytics into physical processes

Why Automation Engineering and Embedded Systems Matter today?

Embedded systems are at the core of smarter, connected products

As products become more intelligent and interconnected, embedded systems drive innovation across industries:

  • Devices must operate reliably in real time, often in harsh and demanding environments
  • Firmware must evolve rapidly without compromising long-term stability
  • Connectivity, security, and regulatory compliance are no longer optional
  • Intelligence is moving closer to the device through edge computing

BWC partners with you to address these challenges through deep embedded expertise combined with disciplined engineering execution.

Industrial Automation

  • PLC, SCADA, HMI development
  • IIoT connectivity & predictive maintenance

Embedded Automation

  • Firmware & RTOS integration
  • Sensor/actuator interfacing & edge computing

Robotics & Motion Control

  • Industrial robotics programming
  • Motion control systems & RPA

Test Automation

  • HIL testing & automated functional tests
  • CI/CD for embedded systems

Building & Home Automation

  • Smart building (HVAC, lighting, security)
  • IoT-based home automation

Cloud & Data Integration

  • Cloud-based monitoring/control
  • AI/analytics for automation

Our Embedded Engineering Services

Embedded Product Engineering

We take ownership of embedded product development from idea to production.Our teams work closely with product owners, system architects, and manufacturing teams to define and deliver robust embedded solutions.

What we deliver :

  • System architecture and hardware–software co-design
  • MCU/MPU selection optimized for performance, power efficiency, and product lifecycle
  • Real-time and safety-critical system design
  • Rapid prototyping and proof-of-concept development
  • Complete lifecycle ownership—from concept and development to validation and release

Firmware & Embedded Software Development

BWC builds high-performance, maintainable, and scalable firmware across a wide range of platforms.

Our firmware capabilities include :

  • Bare-metal and RTOS-based development (FreeRTOS, Zephyr, VxWorks)

  • Board Support Package (BSP) bring-up and customization

  • Bootloader development, secure boot, and firmware hardening

  • Device driver development for sensors, actuators, displays, and communication modules

  • Power, memory, and performance optimization for resource-constrained devices

  • OTA firmware update frameworks with rollback and version control

Hardware Design & Prototyping

Our hardware engineering teams design production-ready electronics with reliability, manufacturability, and compliance in mind.

Hardware services include :

  • Schematic design and multi-layer PCB layout

  • Digital, analog, RF, and mixed-signal designs

  • Power supply design, thermal analysis, and EMI/EMC considerations

  • Rapid prototyping with iterative design cycles

  • EVT / DVT / PVT validation and production readiness support

Connectivity & IoT Enablement

We enable devices to communicate securely and reliably—across short-range, long-range, and cellular networks.

Wireless & connectivity expertise :

  • BLE (4.x / 5.x), Zigbee, and Thread
  • LoRa and Wi-Fi connectivity solutions
  • Cellular IoT: NB-IoT and LTE-M
  • Custom protocol stacks and scalable gateway architectures

Edge AI & Intelligent Devices

We help bring intelligence directly onto embedded devices—reducing latency, bandwidth usage, and cloud dependency.

Edge AI services include :

  • TinyML and embedded machine learning model deployment

  • Model optimization, quantization, and compression for constrained devices

  • DSP-based signal processing for vibration, acoustics, and anomaly detection

  • Real-time inference on MCUs and embedded processors

  • Hybrid edge + cloud intelligence architectures

Testing, Validation & Certification

Quality and compliance are built into every stage of our development process.

Validation services include:

  • Unit, integration, and system-level firmware testing

  • Hardware-in-the-Loop (HIL) testing for real-time and safety-critical systems

  • Signal Integrity (SI) and Power Integrity (PI) analysis

  • EMI/EMC pre-compliance testing

  • Certification readiness support: CE, FCC, UL, RoHS

Device-to-Cloud Integration

We ensure devices remain secure, manageable, and updatable throughout their lifecycle.

Cloud & lifecycle services:

  • Secure device provisioning and identity management

  • Device twins and shadow models for state synchronization

  • Scalable OTA firmware rollout and lifecycle management

  • Remote diagnostics and telemetry analytics

  • Predictive maintenance enablement

Obsolescence Management (Re-engineer the Customer's Product)

  • Use latest semiconductor devices in place of obsolete components
  • Retain the form, fit and finish wherever possible, to ensure backward compatibility
  • Add features for a better User Experience
  • Add Machine Learning and IoT capabilities
  • Improve Safety and Reliability by implementing the latest Technology
  • Design for Compliance with the latest Industry Standards and Norms

End-to-end Electronic Product Design and Development Services

  • Component Identification and Selection

  • Schematic Design and Simulation

  • Multilayer PCB Layout, Signal Integrity & Power Integrity Analysis

  • Firmware Development

  • UI/UX Development

  • Datalogging and retrieval
  • Enclosure Design
  • Environmental and EMI-EMC Compliance

Why Partner with BWC

Deep expertise across Embedded + Cloud + PLM

Proven delivery across industrial, energy, automotive, and IoT domains

Proven delivery across industrial, energy, automotive, and IoT domains

Flexible engagement models: turnkey, co-development, or dedicated teams

Ability to take full ownership from concept to production

Products for Transformation

3d Experience

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Enovia

ENOVIA includes a comprehensive and robust set of capabilities, including CAD & document management (PDM), product lifecycle management (PLM), change and configuration management and approvals, design review, IP protection and reuse, product definition, and release management (eBOM) and quality and compliance.

Delmia

DELMIA’s solutions cover all aspects of Industrial Engineering, Manufacturing & Operations and Planning & Optimisation. This comprehensive solution portfolio connect the virtual and real worlds to empower our customers worldwide to collaborate, model, optimize, and execute supply chains, manufacturing, logistics, and service to achieve strategic business results.

Netvibes

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Partner with seasoned experts to accelerate your digital transformation and engineering workflows across industries with cutting-edge solutions.

FAQ

Clear Answers to Help You

Automation engineering services involve designing, implementing, and maintaining systems that automate processes to improve efficiency, accuracy, and reliability.

Embedded systems are used in industrial machines, consumer electronics, automotive systems, medical devices, and smart infrastructure.

Automation and Embedded services include control system design, embedded hardware and firmware development, system integration, industrial communication, IoT solutions, and performance optimization.

 

Automation and embedded services are important because they reduce human intervention, enhance safety, improve performance, and enable scalable, intelligent systems.

Embedded systems support smart products by enabling real-time sensing, processing, connectivity, and intelligent decision-making within the device.