⚙️ SolidWorks 3D CAD Course — Dwarka Mor, Delhi

Best SolidWorks Course in Dwarka Mor Delhi

Master SolidWorks 3D CAD — the world's #1 parametric mechanical design software — covering Part Modeling, Assembly Design, Engineering Drawing & Detailing, Sheet Metal Design, Surface Modeling and FEA Simulation — with live project work on real engineering models and CSWA Certification preparation at MMIIT's expert-led CAD training centre opposite Dwarka Mor Metro, New Delhi.

Duration: 3 Months
Certification: CSWA Preparation
Mode: Online + Offline
Placement: 100% Assistance
Location: Dwarka Mor, Delhi

Course Overview

Course Duration3 Months
CertificationCSWA & CSWP Preparation
Batch OptionsMorning / Evening / Weekend
ModeOffline + Online
ModulesPart + Assembly + Sheet Metal + FEA
Course Fee₹12,000 (Instalment Available)
Placement100% Assistance
Rating★★★★★ 4.9/5 (98 reviews)
3Month Programme
CSWACert. Preparation
FEASimulation Included
4.9★Student Rating
SheetMetal Design
LiveEngineering Projects
100%Placement Assistance
About the Programme

Why Learn SolidWorks at MMIIT Delhi?

SolidWorks is the world's most widely used parametric 3D CAD software — developed by Dassault Systèmes and trusted by over 6 million engineers across automotive, aerospace, machinery, consumer products, defence, and medical device companies worldwide. In India, SolidWorks is the standard design tool for companies like Maruti Suzuki, Tata Motors, L&T, Bharat Forge, DRDO, ISRO vendors, and thousands of SME manufacturers in Delhi NCR's industrial belt (Manesar, Faridabad, Noida, Greater Noida, Bahadurgarh).

Every Mechanical, Production, Automobile, and Manufacturing engineer is now expected to have hands-on SolidWorks skills. MMIIT's SolidWorks course in Dwarka Mor Delhi is a complete 3-month programme covering the full mechanical design workflow — from 2D Sketch fundamentals to 3D Part Modeling (Extrude, Revolve, Sweep, Loft, Shell, Rib, Draft, Hole Wizard), Assembly Design (mates, exploded views, interference detection), Engineering Drawings & GD&T, Sheet Metal Design (flat pattern, DXF), Surface Modeling, SolidWorks Simulation FEA (static stress, thermal, frequency analysis), and PhotoView 360 Rendering — with CSWA & CSWP certification preparation.

Located directly opposite Dwarka Mor Metro Gate 2 (Blue Line), MMIIT's faculty are working mechanical design engineers who bring real engineering models, industry project challenges, and live software sessions to every class.

📞 Call for Free Demo Class
🏗️

Complete Mechanical Design Workflow

MMIIT teaches the full design pipeline — Sketch → Part Model → Assembly → Drawing → Sheet Metal → Simulation → Render — exactly how mechanical engineers work in industry. Students graduate with a complete engineering project portfolio, not isolated skill demos.

🏆

CSWA & CSWP Certification Preparation

Dassault Systèmes' CSWA (Certified SolidWorks Associate) and CSWP (Certified SolidWorks Professional) are globally recognised credentials. MMIIT provides dedicated CSWA/CSWP mock tests, timed exercises, and exam strategy — significantly boosting placement probability and starting salary.

🔬

FEA Simulation — Test Before You Build

SolidWorks Simulation FEA is one of the most valuable skills for design engineers — testing structural strength (Von Mises stress), thermal performance, and vibration (frequency analysis) virtually before physical prototyping. MMIIT includes a full FEA module that most institutes skip.

🏭

Industry-Standard Sheet Metal & GD&T

Sheet Metal design (flat pattern, DXF for CNC cutting) and GD&T (Geometric Dimensioning & Tolerancing) in engineering drawings are the two most-asked skills in mechanical design job interviews. MMIIT covers both with dedicated modules and real fabrication-ready drawings.

Complete 3D CAD Design Workflow

SolidWorks Design Pipeline You Will Master

⚙️ From 2D Sketch to Finished Manufactured Product — Taught at MMIIT

✏️
2D Sketch
🧱
Part Model
🔩
Assembly
📐
Drawing & GD&T
🏗️
Sheet Metal
🔬
FEA Simulation
🎨
Rendering
🧱

3D Part Modeling

Create complex 3D solid parts using Boss/Cut Extrude, Revolve, Sweep, Loft, Shell, Rib, Draft, Hole Wizard, and Pattern features — the core skill of any SolidWorks designer.

🔩

Assembly Design

Assemble multiple parts using Standard and Advanced Mates — simulate how parts fit and move together, detect clashes with Interference Detection, and create exploded views for documentation.

📐

Engineering Drawings & GD&T

Generate standard 3-view engineering drawings with section views, BOM, tolerances, surface finish, and GD&T symbols — production-ready drawings that go directly to manufacturing.

🏗️

Sheet Metal Design

Design sheet metal parts with Base Flange, Edge Flange, Miter Flange, Hems, and Lofted Bends — generate Flat Pattern and export DXF files for CNC laser cutting and punching machines.

🔬

FEA Simulation & Testing

Run Static Structural Analysis (Von Mises stress, displacement, factor of safety), Thermal Analysis (temperature distribution), and Frequency/Modal Analysis — validate designs before physical prototyping.

🎨

PhotoView 360 Rendering

Create photorealistic product renders using PhotoView 360 — apply appearances (materials, textures), set up lighting environments, position camera angles, and produce high-quality render images for presentations and marketing.

Complete Course Curriculum

SolidWorks Course Syllabus at MMIIT Delhi

Sketch → Part Modeling → Assembly → Drawing → Sheet Metal → Surface → Simulation → Rendering → CSWA

M1

SolidWorks Interface & 2D Sketch Fundamentals

  • SolidWorks interface overview — Command Manager, Feature Manager Design Tree, Property Manager, Task Pane, graphics area, view orientation (Ctrl+1 to Ctrl+7, Isometric, Normal To)
  • SolidWorks file types — Part (.SLDPRT), Assembly (.SLDASM), Drawing (.SLDDRW) — creating, saving, opening, templates
  • 2D Sketch tools — Line, Circle, Arc (3-Point, Tangent, Centre Point), Rectangle (Corner, Centre, 3-Point Corner), Polygon, Ellipse, Spline, Point, Slot
  • Sketch relations — Coincident, Horizontal, Vertical, Parallel, Perpendicular, Tangent, Equal, Symmetric, Midpoint, Collinear, Concentric, Fix — adding and deleting relations
  • Smart Dimension — dimensioning lines, circles, arcs, angles — driven vs driving dimensions, fully defined sketch (black) vs under-defined (blue) vs over-defined (red)
  • Sketch editing tools — Trim Entities (Power Trim, Trim to Closest), Extend Entities, Offset Entities, Convert Entities, Mirror Entities, Linear Sketch Pattern, Circular Sketch Pattern
  • Sketch planes — Front Plane, Top Plane, Right Plane, creating a new Reference Plane (Offset, Angled, Through Lines), 3D Sketch basics
  • Sketch best practices — sketch intent, minimum entities, avoiding redundant relations, checking sketch status before applying a feature
M2

3D Part Modeling — Features & Operations

  • Boss Extrude — Blind, Through All, Through All Both, Up To Surface, Up To Next, Up To Vertex, Mid Plane — draft angle in extrude, thin feature option
  • Cut Extrude — same end conditions as Boss Extrude, Flip Side to Cut, feature scope for multi-body parts
  • Revolve Boss/Cut — revolving a sketch around a centreline, partial revolves (180°, 270°), revolve with thin feature
  • Sweep Boss/Cut — Profile + Path (Guide Curve), Twist Along Path, Keep Normal Constant, Follow Path and First/Second Guide Curve options
  • Loft Boss/Cut — multiple profile loft, guide curves for loft, centreline loft, closed loft — complex organic shape creation
  • Applied Features — Fillet (Constant, Variable, Face, Full Round), Chamfer (Angle-Distance, Distance-Distance, Vertex), Shell (equal and multi-thickness), Rib (Linear and Natural), Draft (Neutral Plane, Parting Line), Hole Wizard (Counterbore, Countersink, Straight, Tapered, Legacy holes)
  • Patterns & Mirror — Linear Pattern (feature and body), Circular Pattern, Curve Driven Pattern, Sketch Driven Pattern, Fill Pattern, Mirror Feature — saving modeling time with patterns
  • Feature Manager & Design Editing — rolling back features, suppressing/unsuppressing, reordering features, editing a sketch within a feature, Show/Hide features, design intent and parametric modeling best practices
M3

Assembly Design — Mates, Exploded Views & Motion

  • Assembly overview — bottom-up assembly (designing parts separately then assembling), top-down assembly (designing parts in assembly context using In-Context design)
  • Inserting Components — Insert Component from file, drag-drop from Feature Manager, fixing the first component (origin alignment), floating vs fixed components
  • Standard Mates — Coincident (face-to-face, edge-to-edge, point-to-plane), Parallel, Perpendicular, Tangent (face-to-face, edge-to-face), Concentric, Distance, Angle — fully defining an assembly
  • Advanced Mates — Symmetric, Width, Path Mate, Linear/Linear Coupler, Limit Angle/Distance — constraining complex mechanical mechanisms
  • Sub-assemblies — creating and inserting sub-assemblies, flexible vs rigid sub-assemblies, editing sub-assembly within parent assembly
  • Assembly Evaluation — Interference Detection (checking clashes between components), Clearance Verification, Hole Alignment, Mass Properties (assembly weight, centre of gravity), Component Statistics
  • Exploded View — creating exploded steps (Radial Explode, Regular Explode), editing explode distance and direction, animating the explode/collapse, generating exploded view in drawing
  • Motion Study — Animation (rotating assembly, camera walkthrough), Basic Motion (gravity, contact, spring, motor), explode animation — creating assembly motion videos for presentations
M4

Engineering Drawing & Detailing — GD&T & BOM

  • Drawing Setup — creating a drawing from part/assembly, sheet format (title block, border), sheet size (A4, A3, A2, A1, A0), multiple sheets in one drawing, drawing properties
  • Standard Views — Front, Top, Right, Isometric, Named View, Projected View — automatic view creation from model, view alignment and locking
  • Section Views — Full Section, Half Section, Offset Section, Aligned Section, Broken-Out Section — section line types, section display options
  • Auxiliary, Detail & Crop Views — Auxiliary View from inclined surface, Detail View (circular/sketch profile), Crop View for focusing on a feature area
  • Dimensions and Annotations — Smart Dimension in drawings (linear, radial, angular, ordinate), dimension display options, reference dimensions, model items (import from 3D model)
  • Tolerances — Bilateral tolerance (±), Limit tolerance, Fit tolerance (H7/h6, H7/p6), ISO tolerance system, adding tolerances to SolidWorks dimensions
  • GD&T Symbols — Flatness, Straightness, Circularity, Cylindricity, Profile of a Line/Surface, Perpendicularity, Parallelism, Angularity, Position, Concentricity, Symmetry, Runout — adding GD&T feature control frames in SolidWorks drawings
  • Bill of Materials (BOM) — inserting BOM in assembly drawing, BOM table types (Top Level Only, Parts Only, Indented), item numbers, balloons, revision table — generating a production-ready drawing package
M5

Sheet Metal Design — Flat Pattern & DXF Export

  • Sheet Metal fundamentals — bend radius, K-factor, bend allowance, bend deduction — how SolidWorks calculates flat pattern accurately for different materials and thicknesses
  • Base Flange / Tab — starting a sheet metal part, defining thickness, bend radius, K-factor — the foundation of every sheet metal model
  • Edge Flange — adding flanges along straight edges, flange angle, position (Material Inside/Outside/Bend Outside), flange length, custom flange profile
  • Miter Flange — continuous flange along multiple adjoining edges with automatic mitered corners, gap specification, profile sketch for custom miter shape
  • Hem — folding edge of sheet metal (Closed, Open, Teardrop, Rolled hem types) for strength and edge finishing
  • Corner Relief — Square, Circular, Bend Waist, Rectangular corner reliefs — preventing material tearing at bend intersections during fabrication
  • Lofted Bend — creating sheet metal transition pieces between two different profile shapes — HVAC duct work, hoppers, transition boxes
  • Flat Pattern — flatten a sheet metal part to flat layout, Flat Pattern view in drawing, DXF/DWG export of flat pattern — direct input for CNC laser cutting, punching, and water jet machines
M6

Surface Modeling — Complex Shape Creation

  • Surface vs Solid modeling — when to use surfaces (complex organic shapes, consumer products, automotive body panels) vs solid features, hybrid solid-surface modeling
  • Extruded Surface — creating a surface by extruding an open or closed sketch, direction options, end conditions
  • Revolved Surface — revolving an open profile sketch around an axis, partial revolutions, multi-contour revolve
  • Swept Surface — sweeping a profile along a path, guide curves for swept surface, twist control, 2D and 3D sweep paths
  • Lofted Surface — complex surface through multiple profiles, guide curves, Start/End constraints (None, Direction Vector, Normal to Profile, Tangency to Face)
  • Surface Editing — Knit Surface (joining multiple surface bodies into one), Trim Surface (mutual trim, standard trim), Untrim Surface, Extend Surface, Fill Surface (filling a gap bounded by edges)
  • Thicken — converting a surface body into a solid by adding uniform thickness — surface to solid workflow
  • Practical surface project — model a consumer product (mouse, bottle, automotive mirror housing) using surface tools — hands-on complex shape creation exercise
M7

SolidWorks Simulation — FEA Structural & Thermal Analysis

  • FEA fundamentals — what is Finite Element Analysis, why engineers use simulation before prototyping, discretisation (mesh), nodes and elements, types of analysis (static, thermal, frequency, fatigue)
  • SimulationXpress — quick static analysis wizard for single-part models, applying material, fixtures, force/pressure load, running analysis, reading Von Mises stress and displacement results
  • SolidWorks Simulation Static Study — creating a static study, material assignment (from SolidWorks material library — Steel, Aluminium, Cast Iron, Polycarbonate), fixtures (Fixed Geometry, Roller/Slider, Pin, Elastic Support)
  • Loads — Force (normal and selected direction), Pressure (uniform and non-uniform), Torque, Gravity, Centrifugal Force — applying real-world loads to virtual model
  • Mesh — automatic mesh generation, mesh quality (draft vs high quality), mesh control (local refinement at critical areas), Mesh Advisor, Probe tool for stress at a specific point
  • Results Interpretation — Von Mises Stress plot (identifying high-stress regions), Displacement plot (maximum deflection), Strain Energy plot, Factor of Safety plot — reading simulation results and redesigning to meet safety requirements
  • Thermal Study — applying heat flux, temperature loads, convection — temperature distribution plot, heat flux result — used in electronic enclosure, heat sink, and engine component design
  • Frequency (Modal) Study — natural frequencies of a part or assembly, mode shapes, resonance avoidance — used in rotating machinery, vibration analysis, and structural design
M8

Rendering, CSWA Prep, Portfolio & Placement

  • PhotoView 360 Rendering — opening Render Manager, Appearances (material look — polished metal, rubber, glass, plastic, wood), applying appearances to faces/features/bodies/components
  • Environments & Lighting — Studio environments (white, outdoor, industrial), Background, Floor (reflections, shadows), HDRI lighting setup for photorealistic renders
  • Camera Setup — camera type (Perspective vs Orthographic), focal length, field of view, camera positioning for product shots, depth of field
  • Render Output — Preview render (fast) vs Final render (high quality), render resolution, output format (PNG, JPG, TIF, BMP), batch render for multiple views
  • CSWA Certification Preparation — CSWA exam format (14 questions in 3 hours, minimum 70% to pass), CSWA question types (Part Modeling: 5 questions, Basic Theory: 5 questions, Assembly Modeling: 4 questions), common CSWA mistakes and time management strategies
  • CSWA Mock Tests — 3 full timed CSWA practice tests covering Part Modeling (Mass Properties, features, design changes) and Assembly (Mate types, interference, exploded view, mass of assembly)
  • Design Portfolio — building a SolidWorks design portfolio (Part models, Assembly with exploded view, production-ready drawing, Sheet Metal flat pattern, FEA result screenshot, rendered product image), portfolio presentation tips for job interviews
  • Placement Preparation — SolidWorks interview questions (features, mates, sheet metal, GD&T, simulation), resume writing for CAD designer roles, placement referrals to automotive, machinery, and product design companies in Delhi NCR

🏆 Certifications Prepared at MMIIT SolidWorks Course

CSWA — Certified SolidWorks Associate CSWP — Certified SolidWorks Professional CSWA-SD Sheet Metal Design CSWA-AM Additive Manufacturing

📄 Download Full SolidWorks Course Syllabus PDF — free with course enquiry

SolidWorks Skills & Features You Will Master

SolidWorks Features & Tools Covered

✏️ 2D Sketch & Constraints
🧱 Boss/Cut Extrude, Revolve
🌊 Sweep & Loft Features
🔩 Assembly Mates (Std + Adv)
💥 Exploded View & BOM
📐 Engineering Drawing & GD&T
🏗️ Sheet Metal & Flat Pattern
🎨 Surface Modeling
🔬 FEA — Static & Thermal
📊 Frequency / Modal Analysis
🖼️ PhotoView 360 Rendering
🏆 CSWA / CSWP Certification
Career Opportunities

Jobs You Can Get After SolidWorks Course

⚙️

CAD Design Engineer

₹3.5–10 LPA

Design mechanical parts and assemblies in SolidWorks for automotive, machinery, and industrial equipment companies — the most common SolidWorks job in Delhi NCR

🏭

Mechanical Design Engineer

₹4–14 LPA

Lead full product design from concept to drawing release — part modeling, assembly, BOM, manufacturing drawings — at engineering companies and R&D departments

🏗️

Sheet Metal Designer

₹3.5–9 LPA

Design sheet metal enclosures, panels, brackets, and HVAC components with flat pattern and DXF output for fabrication shops, electrical panel makers, and HVAC companies

🔬

FEA / Simulation Engineer

₹5–16 LPA

Perform structural, thermal, and modal analysis using SolidWorks Simulation — validate product designs and optimise for safety and performance before prototyping

📦

Product Design Engineer

₹4–14 LPA

Design consumer products, industrial equipment, and appliances — from concept sketch to photorealistic render using SolidWorks Part + Assembly + PhotoView 360

💰

CAD Freelancer / Draughtsman

₹3K–40K/project

Freelance 3D modeling, assembly design, and engineering drawing projects for manufacturers, startups, and international clients via Fiverr and Upwork

Eligibility

Who Should Join SolidWorks Course?

🎓
B.Tech / BE Mechanical Engineers

Mechanical, Production, Automobile, Manufacturing, and Industrial Engineering graduates who want hands-on SolidWorks skills to match their theoretical degree — the #1 employability gap in mechanical engineering hiring today.

📜
Diploma in Mechanical / Polytechnic

Diploma holders in Mechanical, Production, Tool & Die, or Automobile Engineering who want 3D CAD skills to get design and draughting roles instead of shop-floor jobs — SolidWorks significantly upgrades the career trajectory for diploma engineers.

🔧
ITI (Fitter, Turner, Sheet Metal, Welder)

ITI pass-outs who understand manufacturing processes and want to move into the drawing and design office — knowing the manufacturing process already is a huge advantage when learning sheet metal and machined part design in SolidWorks.

🏭
Working Engineers — 2D AutoCAD Users

Engineers who currently use 2D AutoCAD for drafting and want to upgrade to parametric 3D SolidWorks modeling — moving from 2D drafting to 3D design is the single biggest career upgrade a mechanical engineer can make.

🚗
Automotive & Manufacturing Industry Workers

Professionals in the automotive, sheet metal fabrication, precision engineering, and consumer product manufacturing industries in Delhi NCR's industrial belt (Manesar, Faridabad, Bahadurgarh, Noida) who need SolidWorks for their daily design work.

🌐
CAD Freelancers & Product Design Aspirants

Individuals who want to offer 3D product modeling, engineering drawing, and sheet metal design services to clients worldwide via Fiverr and Upwork — SolidWorks is the most-requested mechanical CAD skill in international freelancing marketplaces.

Student Reviews

What Our Students Say

★★★★★

"I am a Diploma in Mechanical Engineering pass-out from Delhi Polytechnic and joined MMIIT's SolidWorks course after struggling to find a job with only theoretical knowledge. The 3-month course transformed how I think about design — from 2D sketching basics all the way to Sheet Metal flat pattern and FEA simulation. The Assembly module with Exploded Views was exactly what employers ask about in interviews. I passed the CSWA certification exam 2 weeks after completing the course, which immediately upgraded my resume. I placed as a CAD Design Engineer at a machinery manufacturing company in Manesar at ₹4.5 LPA. Best SolidWorks training near Dwarka Mor Metro Delhi."

RY
Rohit YadavDiploma Mech → CAD Design Engineer ₹4.5 LPA (Manesar)
★★★★★

"I was a 2D AutoCAD draughtsman at a sheet metal fabrication company in Bahadurgarh for 4 years. I joined MMIIT to upgrade to SolidWorks 3D. The Sheet Metal module was the most relevant for my work — Base Flange, Edge Flange, Flat Pattern, and DXF export are exactly what my company now uses for CNC laser programs. The FEA Simulation module was completely new to me and opened my eyes to a whole new level of design validation. The CSWA preparation was thorough — practice tests under exam conditions really helped. I was promoted to Senior Design Engineer with a 45% salary increase after completing MMIIT's SolidWorks course. Excellent training!"

AS
Amit Sharma2D AutoCAD Draughtsman → Senior Design Engineer +45% Salary
★★★★★

"I completed my B.Tech in Mechanical Engineering but had no SolidWorks skills — only theoretical knowledge of Engineering Drawing. MMIIT's SolidWorks course gave me real practical skills within 3 months. The FEA Simulation module was my favourite — running Static Analysis, reading Von Mises stress plots, and redesigning the model to achieve a minimum Factor of Safety of 2.5 taught me to think like a real design engineer. The GD&T module in the Drawing section was also outstanding — my professor in college had barely covered GD&T but MMIIT taught it with live examples. I placed as a Mechanical Design Engineer at an automotive component company in Noida at ₹5.5 LPA and use SolidWorks every single day."

PT
Prateek TyagiB.Tech Mech → Mechanical Design Engineer ₹5.5 LPA (Noida)
FAQs

Frequently Asked Questions

Have more questions? Call us at +91-7838180031 or visit MMIIT at Dwarka Mor Metro, Delhi.
Free counselling & demo class available Mon–Sat, 9AM–8PM.

MMIIT's SolidWorks course is 3 months long, covering SolidWorks Interface & 2D Sketch, 3D Part Modeling (Extrude, Revolve, Sweep, Loft, Fillet, Chamfer, Shell, Rib, Draft, Hole Wizard, Patterns, Mirror), Assembly Design (Standard and Advanced Mates, sub-assemblies, Exploded View, Interference Detection, Motion Study), Engineering Drawing & Detailing (3-view, Section View, BOM, GD&T, tolerances), Sheet Metal Design (flanges, hems, flat pattern, DXF), Surface Modeling, SolidWorks Simulation FEA (static, thermal, frequency), PhotoView 360 Rendering, and CSWA certification preparation. Morning, evening, and weekend batches at Dwarka Mor.
The SolidWorks course is for Diploma in Mechanical / Production / Automobile / Manufacturing Engineering students, B.Tech/BE in Mechanical, Production, Automobile, Industrial, or Aerospace Engineering, ITI (Turner, Fitter, Sheet Metal) pass-outs, and working engineers in mechanical, manufacturing, or product design roles. Basic knowledge of engineering drawing (orthographic views, dimensions) is helpful but not mandatory — MMIIT covers drawing basics in the course. No prior SolidWorks or CAD experience required.
AutoCAD is primarily a 2D drafting tool — creating 2D layouts, floor plans, and engineering drawings. It is widely used in civil, architectural, and plant design. SolidWorks is a parametric 3D CAD software where you create 3D solid models — parts, assemblies, and simulation — and automatically generate 2D drawings from them. Dimensions in SolidWorks drive the 3D model (change one dimension and the entire model updates). For mechanical product design, manufacturing engineering, and R&D, SolidWorks is the industry standard. Mechanical engineers need SolidWorks; civil and architecture professionals need AutoCAD.
Yes — CSWA preparation is a dedicated part of Module 8. MMIIT covers the full CSWA exam format (14 questions in 3 hours, 70% passing score), question types (Part Modeling with mass properties, Basic Theory, Assembly modeling), common mistakes, and time management strategy. Students take 3 full timed CSWA mock tests before the actual exam. MMIIT also prepares students for CSWP (advanced part modeling and assembly questions). CSWA certification is globally recognised and significantly strengthens a mechanical engineer's resume.
MMIIT's SolidWorks course fee is approximately ₹12,000 for the full 3-month programme, with monthly instalment options. The fee includes all SolidWorks training, software access for practice, engineering model project files, CSWA mock tests, simulation exercises, portfolio guidance, and placement support. Call +91-7838180031 for the latest batch details.
Yes — Module 7 is a dedicated full FEA Simulation module. Students learn Static Structural Analysis (Von Mises stress, displacement, factor of safety), Thermal Analysis (temperature distribution, heat flux), and Frequency/Modal Analysis (natural frequencies, mode shapes). FEA simulation is one of the most valued skills for senior design engineer roles and is rarely included in other SolidWorks courses. MMIIT includes it as a core part of the programme.
After the SolidWorks course, you can apply for CAD Design Engineer, Mechanical Design Engineer, Product Design Engineer, Sheet Metal Designer, FEA Simulation Engineer, Draughtsman (CAD), and Design & Development Engineer at automotive companies, machinery manufacturers, sheet metal fabrication firms, consumer product companies, defence and aerospace organisations, and engineering consultancies — with salaries of ₹3.5–18 LPA depending on specialisation.
Yes. MMIIT offers both offline classroom SolidWorks training at Dwarka Mor and live online / hybrid classes with the same complete curriculum, live software practice, engineering project files, simulation exercises, CSWA preparation, and placement support. Call +91-7838180031 to check online batch availability.
MMIIT is at Plot No. 65, Opposite Gate No. 2, Dwarka Mor Metro Station, Uttam Nagar, New Delhi – 110059. Just 2 minutes walk from Dwarka Mor Metro Gate 2 (Blue Line) — easily reachable from Dwarka, Uttam Nagar, Nawada, Janakpuri, Vikaspuri, Rajouri Garden, and Karol Bagh. The Manesar and Bahadurgarh industrial belt is also well-connected to Dwarka Mor via NH-48.
For most mechanical engineering careers in India, learn SolidWorks first. SolidWorks is the most widely used 3D CAD tool across Indian SME manufacturers, machinery makers, sheet metal fabricators, consumer product companies, and mid-size engineering firms. CATIA is primarily used in large OEMs — Airbus, Boeing, Maruti Suzuki's tier-1 vendors — and requires a significantly higher learning curve. SolidWorks gives you faster employability across a much wider range of companies. Once established, adding CATIA is a natural senior-level upgrade if you work in automotive OEM supply chains.
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