DEVELOPER L4
Role Purpose
The purpose of this role is to design, test and maintain software programs for operating systems or applications which needs to be deployed at a client end and ensure its meet 100% quality assurance parameters
Do
1. Instrumental in understanding the requirements and design of the product/ software
- Develop software solutions by studying information needs, studying systems flow, data usage and work processes
- Investigating problem areas followed by the software development life cycle
- Facilitate root cause analysis of the system issues and problem statement
- Identify ideas to improve system performance and impact availability
- Analyze client requirements and convert requirements to feasible design
- Collaborate with functional teams or systems analysts who carry out the detailed investigation into software requirements
- Conferring with project managers to obtain information on software capabilities
2. Perform coding and ensure optimal software/ module development
- Determine operational feasibility by evaluating analysis, problem definition, requirements, software development and proposed software
- Develop and automate processes for software validation by setting up and designing test cases/scenarios/usage cases, and executing these cases
- Modifying software to fix errors, adapt it to new hardware, improve its performance, or upgrade interfaces.
- Analyzing information to recommend and plan the installation of new systems or modifications of an existing system
- Ensuring that code is error free or has no bugs and test failure
- Preparing reports on programming project specifications, activities and status
- Ensure all the codes are raised as per the norm defined for project / program / account with clear description and replication patterns
- Compile timely, comprehensive and accurate documentation and reports as requested
- Coordinating with the team on daily project status and progress and documenting it
- Providing feedback on usability and serviceability, trace the result to quality risk and report it to concerned stakeholders
3. Status Reporting and Customer Focus on an ongoing basis with respect to project and its execution
- Capturing all the requirements and clarifications from the client for better quality work
- Taking feedback on the regular basis to ensure smooth and on time delivery
- Participating in continuing education and training to remain current on best practices, learn new programming languages, and better assist other team members.
- Consulting with engineering staff to evaluate software-hardware interfaces and develop specifications and performance requirements
- Document and demonstrate solutions by developing documentation, flowcharts, layouts, diagrams, charts, code comments and clear code
- Documenting very necessary details and reports in a formal way for proper understanding of software from client proposal to implementation
- Ensure good quality of interaction with customer w.r.t. e-mail content, fault report tracking, voice calls, business etiquette etc
- Timely Response to customer requests and no instances of complaints either internally or externally
Deliver
| No. | Performance Parameter | Measure |
| 1. | Continuous Integration, Deployment & Monitoring of Software | 100% error free on boarding & implementation, throughput %, Adherence to the schedule/ release plan |
| 2. | Quality & CSAT | On-Time Delivery, Manage software, Troubleshoot queries, Customer experience, completion of assigned certifications for skill upgradation |
| 3. | MIS & Reporting | 100% on time MIS & report generation |
Data Analysis – MDM
Role Purpose
The purpose of this role is to facilitate application solutions by developing and reviewing module-level codes, creating replication patterns, performing root cause analysis to identify recurring issues and collaborating with internal and external stakeholders to ensure stable, well-documented deliverables that meet business objectives.
Areas of responsibility
Gathering of requirements-Participate in gathering requirements for specific modules and ensure clear, structured documentation. Work across multiple business processes to capture linkages, dependencies, and required changes.
Solution Design-Facilitate creation of application solution designs for a specific module under the guidance of the Project Manager, ensuring alignment with business requirements and technical standards.
Coding and Configuration-“Review the developed codes, resolve technical queries of the team for the assigned module and create consistent replication patterns, to ensure that the developed code aligns with the project standards.Collaborate with project managers through all phases of software development life cycle.”
Perform root-cause analysis to identify and troubleshoot recurring technical issues. Modify software codes to resolve errors, adapt to new hardware and software, enhance performance, and upgrade interfaces.”
Implementation-“Collaborate with technical teams to validate configurations, facilitate integration of new applications, and address dependencies during deployment. Prepare user training documents and related frameworks to ensure smooth adoption new applications and minimize transition risks.”
LEAD ADMINISTRATOR L1
Role Purpose
The purpose of this role is to resolve high-priority incidents through advanced troubleshooting, ensure SLA compliance, analyse system performance trends, and create mitigation measures by collaborating with internal and external stakeholders.
Areas of responsibility
Triaging and resolution of tickets-Provide resolution to high priority incident (P2) tickets, performing advanced troubleshooting and root cause analysis to ensure timely closure.
SLA Monitoring-Ensure SLA compliance for assigned technology areas and ensure proactive escalation management.
Performance tuning and optimization-Analyse system performance data, coordinate findings on system behaviour, and support capacity planning initiatives to enhance overall system efficiency.
Perform system Improvements-Create mitigation measures to evaluate new tools or improvements by collaborating with technical teams.
Handling disaster recovery-Perform security assessments and recovery drills, and implement necessary controls to ensure compliance with established security standards.
Reporting and stakeholder engagement-Participate in weekly and monthly service review meetings, provide updates on performance and issues, and support stakeholder communication to ensure transparency and service alignment.
Team Management-Collaborate with team members to resolve open tickets and service requests.
Knowledge base and continuous learning Contribute to updating SOPs, knowledge articles and maintaining the knowledge repository for the purpose of future ticket resolution.
MRO Engineer
Responsibilities
Investigate service damages on aero engine components and determine root causes.
Define and validate acceptance limits for repair and serviceability of components.
Develop and implement repair procedures in compliance with aerospace standards.
Create detailed inspection manuals, repair manuals, and technical documentation for engine components and assemblies.
Collaborate with cross-functional teams to ensure adherence to aeronautical engineering principles and mechanical processes.
Support continuous improvement initiatives for MRO workflows.
Ensure compliance with regulatory guidelines, OEM standards, and aviation safety regulations.
Additional Responsibilities
Bachelor’s degree in Aeronautical Engineering, Mechanical Engineering, or Aircraft Maintenance Engineering (AME).
Proven experience in aerospace MRO processes and technical documentation.
Technical and Professional Requirements
Experience in aerospace maintenance, repair, and overhaul (MRO).
Strong knowledge of aero engines, inspection procedures, and repair standards.
Experience in creating inspection manuals, cleaning manuals, and repair documentation for aerospace components.
Excellent problem-solving, root cause analysis, and decision-making skills.
Familiarity with OEM manuals, regulatory compliance, and aviation safety standards.
Experience in component life assessment, reliability analysis, and performance benchmarking.
Strong documentation, reporting, and technical writing skills.
Preferred Skills
- Airframe
- MRO
- TechPub
- Technical documentation
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science (Engg),Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology
Senior Technical Author
Responsibilities
Manage and deliver Technical Variance responses and outputs within defined cost, quality, and timelines.
Perform technical execution and approve documentation as a Competent Author.
Analyze technical data and recommend solutions, including technical publication changes.
Ensure compliance with aerospace documentation standards and safety/reliability requirements.
Collaborate with cross-functional teams and external customers to ensure clarity and accuracy.
Exercise engineering judgment to identify Safety, Reliability, and Cost issues and provide solutions.
Additional Responsibilities
Bachelor’s degree in Mechanical, Aerospace, or related engineering discipline.
Experience: 5–14 years in aero-engine technical documentation or engineering roles.
Hands-on experience in technical variance management, documentation, and compliance.
Certifications in AS9100, S1000D, or Reliability Engineering are a plus.
Proven ability to work independently and manage multiple priorities.
Technical and Professional Requirements
Strong knowledge of Aero Engine modules, parts, and terminology.
Expertise in technical documentation standards (e.g., S1000D, AS9100).
Ability to interpret engineering drawings and technical publications.
Familiarity with DFMEA / PFMEA, safety analysis, and reliability engineering.
Excellent communication and networking skills for stakeholder engagement.
Strong analytical and problem-solving skills with attention to detail.
Preferred Skills
- Airframe
- MRO
- TechPub
- Technical documentation
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science (Engg),Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology
Senior Stress Engineer (FEA) – Turbomachinery
Responsibilities
Perform stress analysis and FEA simulations to validate mechanical integrity of components such as fans, compressors, casings, combustors, turbines, and structures.
Apply FEA tools (e.g., Abaqus, Ansys, LS-Dyna) to predict mechanical behavior under various loading conditions including fatigue (low & high cycle), creep, vibration, thermal loads, and extreme operating scenarios (blade-out, over-speed, burst duct).
Conduct mechanical integrity assessments to ensure product robustness and compliance with design requirements.
Support in-service engine safety through stress analysis and mechanical evaluations.
Lead Design of Experiments (DoE) and mechanical testing to validate stress predictions and improve design reliability.
Collaborate with multi-disciplinary teams to ensure designs meet performance, manufacturability, cost, and weight targets.
Define and execute analysis plans aligned with project milestones, cost, and quality goals.
Recommend design optimizations using Robust Engineering principles and stress analysis insights.
Drive continuous improvement in FEA methods, stress analysis processes, and mechanical integrity tools.
Act as a subject matter expert in stress analysis and FEA, sharing knowledge across engineering functions.
Additional Responsibilities
Degree in Mechanical, Aerospace, or Structural Engineering (BE/BTech/MSc/MEng).
6 to 12 years of hands-on experience in FEA, stress analysis, and mechanical integrity in aerospace or related industries.
Technical and Professional Requirements
Strong experience in Finite Element Analysis (FEA) using tools such as Abaqus, Ansys, LS-Dyna.
Proficiency in stress analysis, mechanical behavior prediction, and failure mechanism evaluation.
Familiarity with meshing tools (e.g., Hypermesh, Unigraphics) and data management systems (e.g., Teamcenter).
Understanding of material science, crack propagation, contact mechanics, and thermo-mechanical fatigue.
Ability to communicate complex FEA and stress analysis results to internal and external stakeholders.
Knowledge of aerospace product integrity, liability, and certification frameworks.
Preferred Skills
- Gas Turbine
- Steam Turbine
- ANSYS
- Pro – Mechanica
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science,Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology
Senior Design Engineer – Turbomachinery
Responsibilities
Design and integrate components and assemblies for turbomachinery systems.
Create 3D models, digital assemblies, GA drawings, stress models, and manufacturing instructions using traditional drawings or Model-Based Definition (MBD).
Apply principles of robust design, system engineering, DFX, design for manufacturability (DFM), and design for reliability (DFR).
Collaborate with cross-functional teams including design, manufacturing, stress, fluid systems, and materials to mature designs through gated reviews.
Interface with subsystem owners (e.g., lubrication, cooling, structural, aerothermal) to ensure design compatibility.
Apply GD&T (ASME Y14.5) and mass property principles to ensure design integrity and performance.
Support root cause analysis, fleet issue resolution, and design updates based on field performance and service feedback.
Ensure Right First Time (RFT) and On-Time Delivery (OTD) of all design and definition deliverables.
Maintain documentation workflows and drawing change control in PLM systems.
Additional Responsibilities
Bachelor’s or Master’s in Mechanical / Aerospace / Industrial / Production / Design Engineering.
5 – 12 years of experience in turbomachinery design, product definition, or rotating equipment engineering.
Technical and Professional Requirements
Experience in gas turbines, steam turbines, compressors, pumps, expanders, or other rotating equipment.
Strong proficiency in CAD modeling, drafting, and MBD workflows using UG NX, Teamcenter, and PDM Metaphase.
Deep understanding of thermal, mechanical, and dynamic behavior of turbomachinery components.
Knowledge of GD&T (ASME Y14.5), tolerance stack analysis, and mass properties.
Familiarity with APQP, PPAP, and AS9145 frameworks.
Strong analytical, problem-solving, and process improvement skills.
Preferred Skills
- Aerospace Basics
- Gas Turbine
- Steam Turbine
- Airframe
Educational Requirements
Bachelor of Engineering,Bachelor of Mechanical Engg,Bachelor Of Technology
Senior Stress Engineer – Aerostructures
Responsibilities
Perform static, fatigue, and damage tolerance analysis using classical hand calculations.
Apply Boeing Static and Book 1, 2, and 3 Fatigue Analysis methodologies.
Use Boeing stress tools: IAS, XSA/SA+, FEADMS, IDTAS, Moss-Duberg, FAMOSS.
Extract loads from Finite Element Models and determine critical failure modes.
Analyze primary and secondary metallic and composite structures.
Interpret engineering drawings and coordinate with cross-functional teams.
Prepare Engineering Stress Reports ensuring compliance and safety.
Collaborate with onsite coordinators to meet customer expectations.
Additional Responsibilities
Experience in metallic and composite structural analysis.
Proficiency in Finite Element Analysis tools (Nastran, Patran).
Knowledge of MRB and SRM processes.
Experience with CATIA V5, Enovia.
Strong communication and technical report writing skills.
Technical and Professional Requirements
Bachelor’s degree in Mechanical or Aerospace Engineering.
6–12 years of experience in aerospace stress analysis.
Expertise in static, fatigue, and damage tolerance calculations.
Familiarity with Boeing stress methodologies and tools.
Preferred Skills
- Aerospace Basics
- CATIA V5
- Finite Element Analysis – Others
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science,Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology
Senior Design Engineer – Aerospace Structures
Responsibilities
Design aerospace structures and payloads considering tolerance stack-up, cost-effectiveness, and manufacturability.
Create manufacturing drawings (detail, assembly, installation) and 3D MBD as per ASME standards.
Perform V4/Mylar Sheet to V5 conversion for both 3D and 2D/MBD.
Work on Relational and Parametric Modeling and interpret engineering drawings in 2D/MBD.
Collaborate with cross-functional teams and manage change requests and sustenance projects.
Utilize PLM tools (Enovia) and CAD automation for design optimization.
Experience in Boeing projects and CATIA Composite Part Design (CPD) is an advantage.
Additional Responsibilities
Experience on Airbus or Boeing commercial programs.
Knowledge of metallic and composite aero structures.
Familiarity with CAD automation and CATIA CPD workbench.
Strong communication and collaboration skills.
Technical and Professional Requirements
Bachelor’s degree in Mechanical or Aerospace Engineering.
Minimum 5 years of experience in aerospace design activities.
Strong knowledge of CATIA V5 (Part Design, Assembly Design, Sheetmetal, GSD, FTA).
Expertise in GD&T, ASME standards, and aircraft lifecycle.
Experience with Enovia PLM and CAD automation.
Preferred Skills
- Aerospace Basics
- CAD – Others
- CATIA V5
- Enovia
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science,Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology
Manufacturing Engineer
Responsibilities
Develop Work Instructions, Work Plans, and Process Plans using DELMIA DM tool on the 3DExperience platform for Aircraft Components and Assemblies build sequence.
Perform process planning, methods planning, and producibility checks for aerospace structures.
Interpret Engineering Drawings, EBOM & MBOM, Task Lists, Build/Routing Sequence, and Process Flow.
Create and standardize Detail Work Statements (DWS), prepare business cases, and ensure process planning standardization.
Work extensively on DELMIA DM tool, 3DX platform, and CATIA V5 for aerospace manufacturing engineering activities.
Collaborate with customers to understand scope, resolve queries, and deliver quality manufacturing engineering outputs per schedule.
Interface with offshore teams, guide engineers, and ensure compliance with aerospace manufacturing standards.
Additional Responsibilities
Knowledge of Aerospace industry standards and compliance requirements.
Experience in metallic and composite aero structures/components.
Familiarity with CAD tool CATIA V5 and PLM tool ENOVIA.
Strong oral and written communication skills for customer interaction and team coordination.
Technical and Professional Requirements
Bachelor’s degree in Mechanical or Aerospace Engineering.
5+ years of experience in Manufacturing Engineering (ME) activities for aerospace programs.
Strong knowledge of Aircraft life cycle, Fuselage, and Systems.
Hands-on experience with DELMIA, 3DX platform, CATIA V5, and MS Office.
Preferred Skills
- Aerospace Basics
- CATIA V5
- DELMIA
Educational Requirements
Master Of Comp. Applications,Master Of Engineering,Master Of Science,Master Of Technology,Bachelor Of Comp. Applications,Bachelor Of Science,Bachelor of Engineering,Bachelor Of Technology