Hardware Design

a. Custom Hardware Design & Development

  • Product Design & Prototyping:End-to-end design services for custom hardware products from initial concept through prototype development.
  • System Design: Designing hardware systems with specific requirements and ensuring optimal functionality and performance.
  • Schematic Design: Creation of detailed circuit diagrams and system schematics for embedded electronics, power electronics, and other hardware systems.

b.PCB Design and Layout

  • Multilayer PCB Design: Design of complex printed circuit boards with high-speed signal integrity and power distribution analysis.
  • Component Selection & Integration: Optimizing the choice of components for performance, cost, and manufacturability.
  • Signal Integrity Analysis:Ensuring robust signal integrity for high- speed or high-frequency PCBs..
  • Design for Manufacturability (DFM): Ensuring the PCB design is ready for efficient mass production with a focus on reducing cost and time to market.

c.Embedded Systems Design

  • Microcontroller/Microprocess or-Based Systems: Design and development of embedded systems using microcontrollers or processors tailored to your product's needs.
  • Firmware Development: Writing embedded software/firmware to control hardware components, sensors, and actuators.
  • Sensor Integration: Integrating various sensors such as temperature, pressure, motion, and humidity into custom hardware solutions.

d. Power Electronics Design

  • Power Supply Design: Design and optimization of power supplies including AC/DC converters, DC-DC converters, battery management systems, etc.
  • Thermal Management:Designing for effective heat dissipation and ensuring long-term reliability of power electronics.
  • Energy Efficiency Solutions: Designing energy-efficient hardware that meets environmental and energy standards.

e. Hardware Testing & Validation

  • Prototyping & Test Bench Setup: Creation of testing platforms to validate hardware performance and functionality.
  • Signal Testing and Debugging: Using tools like oscilloscopes, logic analyzers, and multimeters to debug and fine-tune hardware.
  • Compliance Testing:Ensuring hardware meets industry standards and regulatory certifications (e.g., CE, UL, RoHS).
  • Stress Testing & Reliability Engineering: Performing tests to ensure hardware meets durability and operational standards under extreme conditions.

f. Mechanical Design for Electronics

  • Enclosure Design: Designing custom enclosures to house and protect sensitive electronic components.
  • Thermal Design and Simulation: Managing heat dissipation and airflow for devices to ensure reliability and performance.
  • 3D Modeling & CAD Design: Providing detailed 3D CAD models and simulations for mechanical and hardware integration.

g. IoT Hardware Design

  • Wireless Communication Systems: Designing hardware for Bluetooth, Wi-Fi, Zigbee, and other wireless communication protocols.
  • IoT Gateway & Edge Device Design: Building hardware solutions for IoT edge devices, gateways, and data acquisition systems.
  • Cloud Integration for IoT: Ensuring seamless data flow from IoT devices to cloud platforms for analysis and monitoring.

h. Reverse Engineering

  • Hardware Reverse Engineering: Analyzing and extracting design and functionality from existing hardware products.
  • Competitive Analysis: Understanding competitors’ products to provide insights into design improvements or innovations.
  • Obsolescence Management: Helping clients adapt or redesign hardware in response to discontinued or obsolete components.