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Design & Development Labs

Schematic Design

Our team converts your circuit ideas, hand-drawn diagrams, or reference designs into clear and accurate digital schematics. We ensure proper component selection, correct connectivity, and well-organized circuit documentation — all following industry standards.

Using advanced EDA tools, we simulate and verify circuits at the schematic level before PCB design. This reduces errors, saves cost, and improves design reliability throughout the entire product development lifecycle.

Schematic Entry

Digital conversion of hand-drawn ideas

Component Selection

Optimal parts for cost & performance

Circuit Simulation

Pre-layout verification via EDA tools

Design Documentation

Standards-compliant circuit docs

PCB Layout Design

Our PCB Design team delivers high-quality printed circuit board layouts tailored to your product requirements. We ensure optimized component placement, efficient routing, and compliance with industry standards for signal integrity, power management, and manufacturability.

Using advanced CAD software, we design critical PCBs ranging from single-sided to multilayer boards — many already in mass production. DXF files are generated to share board outlines with the mechanical team for enclosure design and CNC machining.

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Firmware Development

Parallel to PCB design, firmware is developed for the microcontroller. We have the expertise in designing the Embedded hardware and firmware for various platforms like Renesas, Microchip, NXP, Atmel, AVR, etc. and have interfaces such as SD/MMC cards, GSM Modems, GPS Modules, Graphics LCD, etc.

Firmware Development

Our Firmware Development provide reliable and efficient embedded software solutions for electronic devices. We design and develop firmware that ensures smooth communication between hardware and software components. Our team focuses on performance, stability, and optimized code for microcontrollers and embedded systems. From development to testing, we deliver high-quality firmware tailored to your product requirements

Mechanical Design

Our Mechanical Design team focus on creating precise and functional components for electronic and industrial products. We develop detailed 3D models and technical drawings to ensure proper fit, strength, and manufacturability. Our designs consider material selection, durability, and production processes. This helps deliver reliable mechanical parts that integrate perfectly with electronic systems and final product assemblies.

LAB Testing

Dyno Setup

Our dyno setup accurately measures engine and motor performance, including torque, speed, and horsepower. It allows precise testing under simulated load conditions to evaluate real-world performance. Engineers can fine-tune systems for efficiency, durability, and reliability. Ideal for both prototype testing and final product validation.

Power Analyzer

The power analyzer measures voltage, current, power factor, and energy consumption with high precision. It is essential for testing electrical systems, ensuring optimal performance and safety compliance. It helps identify inefficiencies and validate power electronics in real-time.

Power Analyzer

The power analyzer measures voltage, current, power factor, and energy consumption with high precision. It is essential for testing electrical systems, ensuring optimal performance and safety compliance. It helps identify inefficiencies and validate power electronics in real-time.

Thermal Camera

The thermal camera provides accurate temperature mapping of components during operation. It detects hotspots and thermal anomalies to prevent failures and improve efficiency. Critical for validating cooling systems and ensuring safety in high-performance setups

Electronic Load

Our electronic load simulates varying electrical loads to test devices under controlled conditions. It can replicate real-world operating scenarios for batteries, power supplies, and other electronics. This ensures products meet performance specifications and reliability standards.

Electronic Load

Our electronic load simulates varying electrical loads to test devices under controlled conditions. It can replicate real-world operating scenarios for batteries, power supplies, and other electronics. This ensures products meet performance specifications and reliability standards.

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