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AUTONOMOUS MOBILE ROBOTICS (AMR's)

Using sophisticated sensors, artificial intelligence, and machine learning, autonomous mobile robots (AMRs) can support many tasks, including delivering items, carrying out safety and security checks, inventory automation, rescue missions, crop harvesting, and even space exploration. Unmanned aerial vehicles, or drones, can work as autonomous mobile robots, too. As AMRs, they’re typically found inspecting hard-to-reach areas like dams and other infrastructure, conducting surveillance or helping out in search and rescue operations. In some areas, you may even see them flying through the air delivering food and other items.  

AUTOMATED GUIDED VEHICLES (AGV's)

As a form of autonomous mobile robots, automated guided vehicles (AGVs) are movable robots capable of navigating mapped routes via wires on a floor, radio waves, cameras, magnets, or lasers. These robots have several applications, including transporting heavy materials in factories and warehouses. An automatic guided vehicle can also be fitted with IIoT industry 4.0 smart-technology, which allows the manufacturer and the facility operator to track each unit’s health in real-time. Operator control panels also assist in locating the unit within the facility, alerting when it requires charging, planned maintenance, and all through an advanced human-machine interface (HMI) screen.

ARTICULATED & COBOTIC SYSTEMS (ACS's)

One of the main features of an articulated robot is rotary joints that can range from simple two-jointed structures to complex systems of multiple interacting joints and materials. The articulated robot is a typical type of industrial robot and often resembles a human arm. A cobot is a contracted term for a collaborative robot. These robots work side-by-side with human workers. They differ from other robots because their function is not intended to do work in place of human employees. Often they are compact and perform a variety of tasks in the metal industry, automotive, electronics, laboratories, and hospitals.

AUTONOMOUS FLYING SYSTEMS (AFS's)

An autonomous flight system is a technology that allows aircraft to fly without human intervention. 

Autonomous flight systems use sensors, GPS, and artificial intelligence to navigate, communicate, and make decisions. 

How autonomous flight systems work 

  • Sensors: Use radar, lidar, and vision cameras to sense the environment
  • GPS: Provides navigation
  • Computers: Process real-time data
  • AI: Uses machine learning to develop algorithms that control flight.

Meet our team​ - Dedicated professionals driving our success​​

Praveen Ramachandran Nair

Founder & Chief Executive Officer


Praveen comes with a combined 25 years of rich Global Technology Business Expertise.

He was associated with various Tech Companies from the U.S.A(Silicon Valley), Europe (Switzerland, France,Belgium & The Netherlands) & The Middle-West regions (Israel). 

He has played a vital role with these Major Tech Companies in colloborating and making Strategic Partnerships with OEM's & Tier - 1 & 2 Suppliers from most of the Industry verticals and Positioning a wide range of Products & Technology Solutions across the MENA SAARC, SEA & the APAC Regions during his tenure as their Technical Manager, Product Manager, Program Manager, Country Manager, Regional Business Director & Vice President between (2008 - 2025), He has worked closely with most of the International Automotive OEM's & their Development Centres by successfully introducing wide range of Digital Simulation & Hardware Test solutions for Active & Passive Safety Solutions (Post Crash Systems using Human Crash Dummies for protocol rating & crash worthiness, Pre-Crash Systems including Sensor & Model Based simulations with ADAS Systems) specifically for Ride & Handling, Acoustics & NVH Solutions (Noise Vibration & Harshness), Fatigue & Durability Solutions, Most of the OEM's & their development centres also worked in proximity with their suppliers for Optical Technology Solutions for the design & development of lighting Systems Head & Tail Lamps, Vehicle Interiors, Automation & Robotics were offered as a turnkey service to us directly by the OEM's for which the complete solutions were offered through our Digital Manufacturing Platforms,which included Setting up of various high defenition Test (Hardware) & Simulation (Software) based User Experience (UE) centres through VR enabled Human Machine Interface (HIM) platforms for developing products susch as Head Up Display Units for Civilian Aircrafts & Digital Vision Surveillance Systems for the Defense, Military & Home Land Security Applications & Noise Cancellation Technology Products & Solutions used in eliminating low & Mid frequency Noises for Automotive, Aerospace, Defense, FMCG, Heavy Engineering, Energy & Power Industries with the relevant software & hardware in Loop using propreitary Process Integration & Design Optimization Platform. He has also worked with many AI enabled Technology and Products company from the U.S.A & Israel in positioning High-Performance, Cost-Effective Navigation & Multi-Terrain Mobility Solutions & Autonomous Vehicle Technology Solutions to the Asia & Pacific Regions.

He is a Mentor with Niti Ayog, a Government of India Enterprise & a Business Strategy Mentor with the Kerala Start-up Mission, and a Mentor with We-Grow "a hybrid incubation program for women startups" initiated by the Government of Kerala.

" He is an Inventor holding patents " with most of his contributions in-line to Energy Management Systems and has Designed & Developed Various Mechanisms for the development of Smart Hybrid Energy Dampers with Coupled Elastomeric-Hydrodynamic Properties which is extremely effective in absorbing ​Shock's, Tractions, Anti-up Lift & Suctions & is used in the Structural & Geotechnical & Machine Building Industries - (2000 - 2002)

" He is also in recipient of various Meritorious awards"

He holds a Bachelors in Technology from The Government Engineering College - Thrissur and is an Expert in Digital Transformation from the International Business Management Institute, Berlin, Germany. He is a Structural Engineer with deep expertise in Computer Aided Engineering (CAE) & has more than 2 decades of consulting expertise in Structural Dynamics, Noise & Vibrations, Acoustics (NVH).

Ajith Gopi

Robotics & Autonomous Systems Specialist

Ajith is a Mechatronics Engineer having immense expertise in developing Robotic Systems & has been associated with Major Industrial Robotics Companies and have deep interests in Research Platforms. 

He is conversant with most of the Digital Simulation Platform's used for Product Engineering. He has also been a part of a prestigious project with our client overseas in developing Articulated Robots for various surgical applications. 

He is presently involved with us in the development of Automated Guided Vehicles, with tracked & belted Systems for various Industrial applications. He is a Major in Robotics from Anna University.

Mohammed Wazim Riyaz

Machine Learning Expert

Wazim is a Digital Signal Processing Engineer with more than 12 years of Technical Experience and has extensively worked with Lidar 3 d tracking, Radar, Sensor fusion, IMU Sensors, SLAM Algorithms etc for various applications for 3 D Multi Object Tracking for Autonomous Vehicles. He is an Expert in Pytorch for Deep Learning. 

He holds a Masters in Signal Processing from the Bangalore Institute of Technology.

Parth Jindal

Project Manager (Robotics & Autonomous Systems)

Parth is a highly Motivated & Experienced Technologist with expertise in Autonomous Systems. He is a Roboticst with deep expertise in Machine Learning, Deep Learning Neural Systems and have architected various Image processing Technologies. 

He has a Bachelor's in Mechatronics from University of Petroleum and Energy Studies & Holds a Masters Degree in Robotics from the James Clark School, University of Maryland (UMD)  

Prashanth B.R

Technical Director

Prashanth comes with a 22 Yrs of Technology Expertise and have been associated with Major European and American Companies such as GE Aviation, GE Healthcare, Rolls Royce, Pratt & Whitney and many other Aerospace Programs and has contributed most of his experience in Engines, Propulsions & Power Systems. 

He is a Master of Science (MSc) focused in Product Design & Management from University of Liverpool.

Fakkirappa Hottinavar

Director - Product Engineering 

Fakkirappa comes with a 24 Yrs of Technical Expertise and have been associated with Major European and American Companies and has contributed most of his experience in New Product Development.

He is a Masters in Production Technology from Government College of Engineering, Davanegere.

Kiran Nair

Chief Product Development Officer

Kiran has more than 22 years of turnkey experience in Product engineering services and manufacturing, starting his career with BPL Telecom as a Designer, involved in the complete Product Life Cycle Processes for various Telecom, Medical Devices, and other FMCG Products under the British Physical Laboratories Brand.

He is adept in leading high-performance teams to exceed productivity goals. He is proficient in Lean Manufacturing and Six Sigma methodologies and has been successful in executing more than 100's of Automotive, Aerospace, FMCG White Goods Industry Projects comprising of Domestic & International Brands.

Kiran majored in plastics molding engineering from Government Tool Room Technology Centre, Mysore & The Central Institute for Plastic Engineering & Technology, Mysore.

Palu Sione

Vice President - AI & Allied Technology

A Domain expert in numerical computing, which covers a wide range of advanced analytics' disciplines, ranging from artificial intelligence, neuro-fuzzy computing, neural network, machine learning (supervised, unsupervised, semi-supervised learning), Tensor Flow, Developing Deep Learning Systems for applications including, Automotive Retail Supply Chain & warehousing Systems, Healthcare industries in developing predictive intelligence systems for various diseases in focus to pandemic outbreak & Spread, Computational Finance for market predictions.

He is an Inventor with his patent registered for “System and Method for Predicting Specific Audience Response to New Entertainment Content”

He is a Double Major in Computational Mathematics & Numerical Physics from The University of Auckland.

Autonomous Mobile Robots for Wearhouse 
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