Available for mechanical design & engineering projects
KineticLattice / 2026
Mechanical systems / design engineering

Make it
move right.

I design mechanical systems where geometry, materials, motion and manufacturability have to agree. My work turns engineering requirements into robust, testable hardware.

02 / Profile

Systems thinker.
Hardware builder.

Mechanical engineering is a discipline of relationships: force to structure, heat to material, tolerance to assembly, and concept to production. I work across the design loop with a bias toward clear models, useful prototypes and measurable validation.

8Years in product & mechanical engineering
42Design iterations validated
18Production-ready assemblies
03 / Engineering lattice

Every node
has a job.

KineticLattice treats the engineering workflow like a connected system. The visual language uses nodes, axes and concentric tolerances to echo CAD constraints, kinematic chains and design reviews.

Load path
Thermal loop
Tolerance stack
Motion envelope

Product design

Concept development, mechanism architecture, CAD assemblies, tolerance thinking and design-for-manufacture decisions.

CADDFMGD&T

Mechanisms

Linkages, joints, actuators and motion systems developed from functional requirements through prototype testing.

KinematicsActuationFEA

Validation

Engineering calculations, test planning, failure analysis and iterative hardware refinement grounded in evidence.

TestingRoot causeReliability

Consulting

Expert guidance on architecture and best practices.

04 / Selected work

Hardware
with intent.

A selection of representative engineering programs showing how requirements become mechanisms, assemblies and validated physical systems.

02 / Thermal hardware

Passive cooling assembly

Designed a fin-and-interface system around real operating loads and manufacturable sheet and extrusion processes.

THERMAL / DFM
03 / Structural design

Lightweight support frame

Iterated load paths and joint geometry using simulation-informed design reviews before prototype fabrication.

FEA / FATIGUE
05 / Work method

From brief
to bench.

01

Frame

Clarify requirements, interfaces, loads, constraints and what success must measure.

02

Model

Build the mechanism and geometry, compare concepts and expose trade-offs early.

03

Test

Prototype the riskiest assumptions and collect physical evidence before over-polishing.

04

Refine

Close the loop with root-cause analysis, tolerance updates and production-minded details.

06 / Experience

A practical
engineering path.

Lead Mechanical Engineer · Product Systems

Own mechanical architecture for electromechanical products, from early concepts and supplier conversations through prototype validation and production release.

Mechanical Design Engineer · Advanced Hardware

Developed mechanisms, fixtures and structural assemblies, collaborating closely with electrical, manufacturing and test teams.

Graduate Mechanical Engineer · Industrial Design

Built a foundation in CAD, engineering calculations, tolerance analysis, prototype fabrication and design documentation.

07 / Contact

Let's engineer
the next thing.

For product development, mechanism design, engineering collaboration or technical consulting, send a concise brief. I'm especially interested in projects where a physical constraint is the interesting part.

Email
arjun@example.com

Phone
+1 555 0177

Location
Pune, India

Typical response: within 2 business days

ARJUN MEHTA / MECHANICAL ENGINEERMirror portfolio system ·