Mechanical Engineer - Solutions

CynLr

Bengaluru

On-site

INR 900,000 - 1,650,000

Full time

14 days+

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Job summary

CynLr in Bengaluru seeks a mechanical engineer to translate customer needs into complete robotic system designs, guiding integration and deployment.

Own the entire solution lifecycle—from architecture to on-site refinement—delivering repeatable, configurable products for real factory environments.

You will work with design, simulation, electronics, and manufacturing teams, balancing theory with hands-on reality to turn advanced capability into practical machines.

Qualifications

  • End-to-end mechanical ownership of customer-facing solutions.
  • Hands-on deployment in factory, lab, or field.
  • Ability to translate requirements into mechanical architectures.
  • Comfort with evolving customer needs and incomplete requirements.

Responsibilities

  • Design customer-facing applications and solutions for factory environments.
  • Model product integration into machines and workflows.
  • Define mechanical system architectures from requirements.
  • Support deployment with interfaces, mounting, and APIs.
  • Iterate on-site to refine deployments.
  • Collaborate with design, simulation, electronics, and manufacturing teams.

Skills

Mechanical fundamentals
Customer deployment engineering
Special‑purpose machine design
Robotics application design
End‑of‑arm tooling
Robotic system simulation

Tools

Fusion 360
Robotics simulation
Validation workflows
Robot arms/grippers
Scripting/automation

Job description

About the Role

This role focuses on applying CynLr’s products to real‑world customer and internal R&D use cases.

You will work at the intersection of product capability and customer reality, translating application needs, constraints, and workflows into complete mechanical solutions. The work begins with a deep understanding of customer problems, rather than jumping straight to parts or prototypes, and evolves into system‑level designs that guide integration, deployment, and iteration.

Strong engineering here lives in the balance between theory, system understanding, and hands‑on reality. You will use first‑principles thinking to frame application problems, identify constraints, and design practical, testable solutions that work reliably in real customer environments.

You will own the entire solution lifecycle, from application definition and system architecture to mechanical design, integration, testing, and on‑site refinement. The goal is not one‑off demos, but repeatable, deployable solutions that feed back into scalable and configurable product offerings.

This role suits engineers who enjoy system‑level thinking, working close to customers and hardware, and seeing solutions through to real‑world deployment.

What You Will Do
  • Design customer‑facing applications and solutions, including:
  • Visualising and modelling product integration into real factory environments, machines, and workflows
  • Translating abstract customer requirements and constraints into complete mechanical system architectures
  • Designing end‑to‑end mechanical solutions that account for installation, operation, and long‑term use
  • Support integrator‑driven deployment through:
  • Mechanically customizable interfaces and mounting strategies
  • Clear physical APIs, tolerances, and integration logic for repeatable field deployment
  • On‑site or near‑field iteration, troubleshooting, and refinement
  • Evolve solutions from:
  • Configurable, teachable, and repeatable productized systems
  • Collaborate closely with product design, simulation, electronics, algorithms, manufacturing, and applications teams
  • Support validation, testing, and feedback from deployed systems
What We Look For

This role spans end‑to‑end mechanical ownership of customer‑facing solutions, without expecting universal expertise. We look for engineers with deep, hands‑on strength in designing and deploying real systems, supported by working knowledge across adjacent domains.

Core Strengths
  • Strong grounding in mechanical fundamentals applied to real‑world deployments
  • Deep expertise in one or more of:
    • Customer application and deployment engineering
    • Special‑purpose machine and station design
    • Robotics application design and work cell integration
    • End‑of‑arm tooling and gripper customisation
    • Robotic system simulation for reach, cycle time, and risk
    • Designing systems under installation, service, and uptime constraints
Mindset
  • Hands‑on experience with factory, lab, or customer deployments
  • Ability to think in workflows, use cases, and failure modes
  • Comfort with incomplete requirements and evolving customer needs
  • Strong bias toward documentation, validation, and repeatability
  • Ability to translate application logic, algorithms, or control behaviour into mechanical architectures
Tools
  • Proficiency with CAD drafting and 3D modelling tools (Fusion 360 preferred)
  • Working familiarity with robotics simulation and validation workflows
  • Exposure to robot arms, grippers, sensors, motion components, wiring, and integration hardware
  • Experience with scripting or automation tools is a plus
Team Structure & Growth

You will be part of a multi‑specialised mechanical team, working alongside design engineers, simulation engineers, and general mechanical engineers.

The role is highly cross‑functional, with close collaboration across electronics, algorithms, software, manufacturing, and applications teams. Even as a solutions‑focused engineer, your work remains tightly connected to product design and long‑term evolution.

As CynLr grows, you will have opportunities to own larger solution spaces, build deployment playbooks, mentor teams, or expand into product architecture, operations, or customer applications leadership.

Why This Role Matters

Object manipulation has remained unsolved because real‑world applications refuse to behave like clean lab problems. This role exists to bridge that gap.

Your work will turn cutting‑edge capability into systems that actually work on factory floors, and in the process, redefine what mechanical solutions engineering means in robotics.

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