Ajanex

India'sPrecisionMotor
Design
&Manufacturing

About Ajanex

Ajanex is a technology-driven engineering company designing high-performance electric motors — engineered for power, efficiency, and precision at every RPM.

Your Motor Engineering Partner

WeBuildtheNextGenerationofMotorandMotionTechnologies.

End-to-end innovation across electromagnetic design, thermal modelling and prototype validation—all engineered to match your exact duty cycle and deliver a reliable, efficient motor for every application.

01

Electromagnetic Design

Slot-pole optimisation, winding configuration, flux analysis

02

Thermal Engineering

Insulation class, duty cycle, cooling strategy

03

Acoustic Optimisation

Modal analysis, rotor balance, noise budget < 52 dB(A)

04

Prototype & Validation

Bench instrumentation, torque-speed, thermal rise

05

Production Engineering

BOMs, drawings, process notes, ramp-up support

06

Custom Drive Systems

AC · BLDC · PMSM — fully specified from brief

How we work

Engineered process. Consistent by design.

View custom solutions
  1. 01.

    Consultation & Specification

    Requirements

    We map your load profile, duty cycle, ambient environment, and cost target into a precise motor specification — before any design work begins.

  2. 02.

    Design & Modelling

    Engineering

    Electromagnetic, thermal, mechanical, and acoustic engineering carried out together through FEA — efficiency, size, heat rise, and noise optimised as one system, not in isolation.

  3. 03.

    Build, Test & Validate

    Validation

    Prototypes are instrumented and tested against real operating conditions — torque curves, noise floors, thermal rise — before any production tooling is cut.

  4. 04.

    Design for Manufacturing

    DFM

    Drawings, BOMs, and process FMEA translate the validated design into a build that's ready for your production line, not just a lab bench.

  5. 05.

    Production and Commercialisation

    Delivery

    On-site ramp-up support and ongoing engineering partnership — through our manufacturing network or your own in-house line — so production starts right and scales cleanly.

Engineering in Practice

Our capabilities.

Die-Stamped Lamination Stacks, Validated Against the FEA Model
Motor Stamping Prototyping

Die-Stamped Lamination Stacks, Validated Against the FEA Model

Stamping Prototype

Selecting a Magnet Grade That Holds Up Under Continuous Load
Magnet Manufacturing

Selecting a Magnet Grade That Holds Up Under Continuous Load

Magnet Material

Machining and Dial-Gauge Validation of the Motor Housing
Housing Prototyping

Machining and Dial-Gauge Validation of the Motor Housing

Housing Validation

High-Fill Coil Winding Built for Compact, Efficient Motors
Precision Winding

High-Fill Coil Winding Built for Compact, Efficient Motors

Winding Engineering

Compact PCB-Stator Integration for the Drive Electronics
Motor Control Hardware Design

Compact PCB-Stator Integration for the Drive Electronics

Hardware Design

Mapping Flux Distribution to Minimise Torque Ripple
Electromagnetic Field Analysis

Mapping Flux Distribution to Minimise Torque Ripple

Electromagnetic Simulation

Bench-Validating Torque Output Against the Simulated Curve
Dyno Testing

Bench-Validating Torque Output Against the Simulated Curve

Dynamometer Testing

Die-Stamped Lamination Stacks, Validated Against the FEA Model
Motor Stamping Prototyping

Die-Stamped Lamination Stacks, Validated Against the FEA Model

Stamping Prototype

Selecting a Magnet Grade That Holds Up Under Continuous Load
Magnet Manufacturing

Selecting a Magnet Grade That Holds Up Under Continuous Load

Magnet Material

Machining and Dial-Gauge Validation of the Motor Housing
Housing Prototyping

Machining and Dial-Gauge Validation of the Motor Housing

Housing Validation

High-Fill Coil Winding Built for Compact, Efficient Motors
Precision Winding

High-Fill Coil Winding Built for Compact, Efficient Motors

Winding Engineering

Compact PCB-Stator Integration for the Drive Electronics
Motor Control Hardware Design

Compact PCB-Stator Integration for the Drive Electronics

Hardware Design

Mapping Flux Distribution to Minimise Torque Ripple
Electromagnetic Field Analysis

Mapping Flux Distribution to Minimise Torque Ripple

Electromagnetic Simulation

Bench-Validating Torque Output Against the Simulated Curve
Dyno Testing

Bench-Validating Torque Output Against the Simulated Curve

Dynamometer Testing

Let's build it right.

Tell us what you're building — we'll reply within one business day.

info@ajanex.com