Antropi Robotics is building the future of manufacturing with AI-powered robotics and software. Their system aims to create highly efficient, continuously operating factories, described as the…
Antropi Robotics is building the future of manufacturing with AI-powered robotics and software. Their system aims to create highly efficient, continuously operating factories, described as the…
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About Antropi Robotics
We are building the
Factory of the Future
. Based in
Bengaluru
, we are redefining manufacturing by integrating
intelligent robotic systems, vision-driven automation, and AI-powered scheduling software
into real production environments.
Our goal is to enable factories to operate with significantly higher uptime, better machine utilization, and more autonomous workflows.
You will be joining a
talent-dense robotics team
consisting of individuals from top institutions in India and abroad, including
IITs and Ivy League universities
, as well as high-caliber engineers and operators who have built in
robotics, manufacturing, automation, deep-tech, and startup environments
.
About the Role
We are looking for a high-ownership Mechanical Engineering
to help design, build, manufacture, test, and improve mechanical systems for Antropi’s autonomous factory.
This is not a pure CAD or desk-design role. The ideal candidate should enjoy the full engineering cycle:
Understanding the problem
Designing the system
Getting parts manufactured
Assembling prototypes
Testing them inside our factory
Finding failures
Improving the design through multiple iterations
You will work closely with the founders and engineering team on real hardware systems that will be deployed in manufacturing environments.
This role is best suited for someone who likes building things with their hands, solving practical mechanical problems, and taking responsibility for whether a design actually works in the real world.
Key Responsibilities
Required Skills & Traits
Preferred Background
Pursuing or recently completed a degree in
Mechanical Engineering, Mechatronics, Robotics, Manufacturing Engineering, or a related field
.
Prior experience with
student engineering teams, robotics teams, or hardware startups
is a strong advantage.
Experience with
SolidWorks, Fusion 360, or similar CAD tools
is preferred.
Hands-on exposure to
machining, fabrication, prototyping, 3D printing, CNC, welding, sheet metal, or assembly
will be highly valued.
Role Details
Location:
Bengaluru, on-site and factory-based
Role Type:
6-month internship with potential full-time conversion
Conversion Opportunity:
High-performing interns who demonstrate strong ownership, hands-on problem-solving ability, mechanical design skill, and the ability to take systems from design to manufacturing and testing may be considered for a full-time role at Antropi Robotics.
Why Join Antropi
This is not a role where you only design parts and hand them off to someone else. You will work on real mechanical systems that are built, tested, broken, improved, and deployed inside an autonomous factory environment.
You will work directly with a high-caliber robotics team, get exposure to the complete hardware development cycle, and help build the mechanical backbone of a deep-tech company bringing robotics and AI into real manufacturing environments.
Mechanical Design & Prototyping:
Design mechanical systems, fixtures, assemblies, mounts, mechanisms, and supporting structures for robotic automation inside CNC factories.
Manufacturing & Vendor Coordination:
Work with fabricators, machinists, vendors, and suppliers to get parts manufactured, sourced, modified, and assembled.
Assembly & Testing:
Participate directly in assembling prototypes, testing systems in our own factory setup, identifying mechanical issues, and improving performance.
Design Iteration:
Use test results, failures, and real-world constraints to improve designs across multiple iterations.
Factory Automation Systems:
Work on mechanical subsystems for autonomous factory workflows involving robotic arms, CNC machines, gantry systems, AMRs, fixtures, sensors, and machine interfaces.
Documentation & Drawings:
Create clear CAD models, manufacturing drawings, BOMs, assembly notes, and test observations so that designs can be built, reviewed, and improved reliably.
Cross-Functional Collaboration:
Work closely with robotics, software, electronics, and manufacturing teams to ensure mechanical systems integrate properly with the overall automation stack.
Strong Mechanical Fundamentals:
Good understanding of mechanisms, materials, machine design, manufacturing processes, tolerances, fasteners, structures, and practical design constraints.
CAD & Design Ability:
Comfortable using CAD tools to create parts, assemblies, and manufacturing-ready drawings.
Hands-On Builder Mindset:
Excited to work beyond the screen by assembling, testing, debugging, and improving real mechanical systems.
Manufacturing Awareness:
Basic understanding of machining, sheet metal, fabrication, welding, 3D printing, laser cutting, and vendor-driven manufacturing processes.
Problem-Solving Ability:
Can break down ambiguous mechanical problems, generate practical solutions, test quickly, and improve based on results.
High Ownership:
Takes responsibility for outcomes, follows through without constant reminders, and cares deeply about whether the final system works reliably.
Comfort with Iteration:
Understands that real engineering involves failures, redesigns, field testing, and continuous improvement.
Structured Execution:
Can maintain design files, BOMs, task trackers, vendor notes, and clear updates for the team.