💼 High-Paying Mech Design Engineer II Job India 2025 – Apply at Honeywell Now!

Apply now for Mech Design Engineer II job at Honeywell India 2025 – hybrid role in Bengaluru, ₹6–12 LPA salary, freshers with master’s welcome!

🏢 Why Choose Honeywell? – Mech Design Engineer II Job India 2025

Honeywell is a global technology leader that’s changing the way we live, work, and travel. From enabling Mars missions to smart automation in buildings, it offers cutting-edge projects and world-class training for engineers.

🔹 Over 130 years of innovation
🔹 Industry leadership in aerospace and automation
🔹 Inclusive culture + global career mobility
🔹 Strong support for early-career professionals


📋 Job Summary – Mech Design Engineer II Job India 2025

Honeywell is hiring a Mech Design Engineer II to join its Engine Systems and Components team. This hybrid position offers hands-on work in mechanical design, vibration analysis, and next-gen engineering tools.


🔧 Key Responsibilities – Mech Design Engineer II Job India 2025

🎯 As a Mech Design Engineer II, your key tasks will include:

  • 🔍 Conducting system dynamics & vibration analysis (linear & non-linear)
  • 🛠 Designing mechanical components with FEA techniques
  • 💻 Using Nastran, MATLAB, and Hypermesh for simulations
  • 💡 Improving design quality and execution speed
  • 📊 Preparing and presenting technical reviews
  • 🧪 Collaborating on rotor dynamics and machine design
  • 🔄 Supporting product validation and lifecycle improvements
  • 🤝 Working with global teams and customers
  • 🚀 Contributing to intellectual property and innovation

✅ Who Can Apply – Mech Design Engineer II Job India 2025

📌 Eligibility Criteria:

  • 🎓 Education: Master’s degree in Mechanical or Aerospace Engineering from a reputed university
  • 🧠 Skills:
    • Strong in mechanics of solids, vibrations, and rotor dynamics
    • Proficiency in: Nastran, MATLAB, Hypermesh
    • Bonus tools: Ansys, NX modeling
  • 💼 Experience: 0–2 years (freshers can apply)
  • 📈 Soft Skills: Communication, multitasking, and team collaboration

🌍 Location & Work Model – Mech Design Engineer II Job India 2025

📍 Location: Bengaluru and Hyderabad.
💼 Work Model: Hybrid
🏢 You’ll work both onsite and remotely with flexibility based on project needs.


💰 Salary Insights – Mech Design Engineer II Job India 2025

Based on data from and :

💸 Expected Salary Range: ₹6–12 LPA (for freshers to 2 years’ experience)
🚀 Performance bonuses and fast-track growth opportunities available
📈 Honeywell’s compensation is rated highly for early-career engineers


🎁 Perks & Benefits – Mech Design Engineer II Job India 2025

At Honeywell, you get access to world-class benefits including:

  • 🏥 Comprehensive health insurance
  • 💻 Hybrid work flexibility
  • 📚 Learning & certification programs
  • 🧘‍♀️ Mental wellness support
  • 🏖️ Paid time off & sick leave
  • 💸 Employee referral bonuses
  • 🛠 Access to Honeywell Forge & internal tools
  • 🌎 Global career pathways

📢 How to Apply for Honeywell Recruitment 2025?

To apply for this Off Campus Drive, interested candidates must follow the procedure outlined below:

  1. Click on “Apply”.
  2. If you have not registered before, create an account.
  3. After registration, log in and fill in the application form with all the necessary details.
  4. Submit all relevant documents, if requested (e.g. resume, mark sheet, ID proof).
  5. Verify that all the details entered are correct.
  6. Submit the application form after verification.

If you face any issues while applying. Do let us know in the comment section

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❓ FAQs – Mech Design Engineer II Job India 2025

Q1. Is this job open for freshers in 2025?
✅ Yes, candidates with 0–2 years of experience can apply.

Q2. What’s the expected salary range?
💰 ₹6–12 LPA depending on skills and qualifications.

Q3. Is this role fully remote?
❌ No, this is a hybrid role based in Bengaluru.

Q4. Do I need experience with all mentioned tools?
You must know Nastran, MATLAB, Hypermesh. Ansys and NX are optional but good to have.

Q5. What industries will I work in?
You’ll contribute to engine systems, aerospace design, and mechanical component optimization.

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