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Detailed Instrumentation Design Engineering Online Course

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Detailed Instrumentation Design & Engineering

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25 hrs
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English
1582 views
Sawrabh Raj
Sawrabh RajSr Instrumentation Design Engineer, Global Trainer- Instrumentation Design
  • 7-day money-back guarantee
  • Session recordings included
  • Certificate of completion

Why enroll

This course offers participants the opportunity to gain specialized knowledge and practical skills in designing and engineering instrumentation systems for industrial applications. Whether you're looking to enhance your career prospects, improve your technical expertise, or prepare for real-world project challenges, this course is designed to equip you with the tools necessary for success in the field of instrumentation engineering.

Value the Course Brings to Participants:

  • Industry-Relevant Skills: The course provides up-to-date knowledge on designing and implementing instrumentation systems, covering all the details an instrumentation engineer should know. It equips participants with hands-on expertise that can be applied directly to their current or future projects in diverse industries such as oil & gas, manufacturing, power generation, and pharmaceuticals.

  • Practical Application of Theory: Through case studies and real-world examples, participants will learn how to apply theoretical concepts to practical situations. This includes designing systems, preparing engineering drawings, and ensuring compliance with industry standards, all of which are critical for success in any instrumentation engineering role.

  • Enhanced Career Opportunities: With the increasing demand for skilled professionals in automation, process control, and instrumentation, completing this course will make participants more competitive in the job market. They will gain the ability to contribute to high-value projects, design complex systems, and manage instrumentation projects from start to finish.

  • Increased Confidence in Project Execution: By understanding the complete design process participants will feel confident in handling the technical challenges and intricacies of real-world instrumentation projects.

  • Exposure to International Standards and Best Practices: The course provides exposure to global standards, including safety codes and regulations. This ensures that participants understand how to design systems that meet industry and regulatory requirements, enhancing their credibility as professionals.

  • Improved Problem-Solving Abilities: Participants will develop critical thinking and troubleshooting skills, learning how to solve common design issues, improve system performance, and ensure long-term reliability of instrumentation systems in industrial environments.

  • Career Advancement and Leadership Skills: For those already in the field, the course offers the chance to advance to leadership positions by providing knowledge on managing instrumentation projects, cost estimation, procurement, and coordination between different engineering teams.

Is this course for you?

You should take this if

  • You work in Oil & Gas Downstream or Energy & Utilities
  • You're a Instrumentation Engineering / Electrical Engineering professional
  • You have 3+ years of hands-on experience in this field
  • You prefer live, instructor-led training with Q&A

You should skip if

  • You're new to this field with no prior experience
  • You need a different specialisation outside Instrumentation Engineering
  • You need fully self-paced, on-demand content

Course details

The Instrumentation Design and Details Engineering course aims to provide a comprehensive understanding of the principles, methodologies, and practices involved in designing and engineering instrumentation systems for various industrial applications. The course covers the entire design process, from selecting components and creating detailed design drawings to understanding the integration of control systems and instrumentation for efficient performance. By the end of this course, participants will be equipped with the technical skills to design instrumentation systems, prepare detailed documentation, and ensure the functionality, safety, and compliance of these systems within industrial environments.

The instructor-led online course on Instrumentation Design and Details Engineering will upscale your skills, you will be industry-ready and able to join as an Instrumentation Design Engineer in any EPC company worldwide. The 25 hours of life will add so much value to your learning journey that you will cherish these moments forever. The course will be suitable for:

  • Instrumentation Engineers

  • Control System Engineers

  • Professionals involved in the design, installation, or maintenance of automated systems.

  • Anyone who wants to learn instrumentation engineering.

Course suitable for

Key topics covered

Course Index from Basic to Advance Level-

  • Introduction about EPC Company and How to do FEED Engineering.

  • Work Culture and How to work in EPC Company

  • Study of Legends and General Notes

  • Study and understanding of P&ID

  • Preparation of Instrument Index

  • Preparation of IO List

  • Codes and Standards

  • Hazardous Area Classification ( Includes Temperature Class, SIL Ratings, Intrinsic safety, Weather Protection)

  • Pressure Instruments

  • Temperature Instruments

  • Level Instruments

  • Flow Instruments

  • Control Valve ( Cv and on off Valve)

  • Pressure safety Valve

  • Wire and Cables, Cable schedule, Drum Schedule

    • Details Design Engineering

    • Discussion about Overall Plot plan and cutting of sectional drawings

    • Instrument Location Plan

    • JB Location plan

    • Field Instrument Wiring Layout

    • Main Cable and Cable Tray Layout

    • Field Instrument Air Piping and Tubing Layout

    • FGS Instrument Location Plan

    • Level Sketch

  • Hookup Drawings

  • Control System Overview

  • FGS Instruments Basic discussion.

  • Preparation of Requisition ( RFQ)

  • Technical Bid Evaluation (TBE/TBA) Procedure

  • VDR ( vendor Document Review) Procedure.

It will upscale your skills, you will be industry ready and able to join as Instrumentation Design Engineer in any EPC companies world wide.

To know more about what is covered in the course visit the following:

https://www.youtube.com/watch?v=cjFkIUobZgo

To learn feedback about the course and trainer visit:

https://www.youtube.com/watch?v=YhgEuWa8itA

Opportunities that await you!

Career opportunities

Training details

This is a live course that has a scheduled start date.

Live session

Starts

Mon, Jun 9, 2025

4:00 PM UTC· your timezone

Duration

1 hour per day

25 days total

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities-all in a flexible and supportive environment.

What learners say about this course

SKIETECH GROUP
SKIETECH GROUP Principal
May 3, 2026

Came in skeptical about the overhead for a beginner track, but the framing around instrumentation arch vs plant infra worked better than expected. The section on P&ID symbols and the 4–20 mA loop check around the midpoint stuck, especially the example tracing a bad transmitter through a control valve in an oilgas plant. I’ve built prod systems on k8s and CI pipelines, so mapping legacy loops to modern obs thinking helped, though I wasn’t sold on the short bit about PLC brands.

SUNNY IJARDAR
SUNNY IJARDAR
May 3, 2026

Module 2’s ISA symbols + loop diagram walkthrough (mapping a pressure transmitter through the P&ID to the control valve) stuck. it's a fine on-ramp for beginners, but I wasn't sold on the thin coverage of vendor datasheets and calc sheets, and wished there was more on real handoffs into prod.

MOTLAQ ALSUBAIEI
MOTLAQ ALSUBAIEI Engineer
May 3, 2026

Good refresher for day-to-day instr work; the control valve sizing chapter with the Cv calc walkthrough and vendor datasheet check felt close to prod. It's mostly practical, but I wasn't sold on the skim over loop diagrams—ISA-5.1 symbols flew by, and I wished there was more on commissioning handover.

Kana Karmur
Kana Karmur Manager
May 3, 2026

Content runs dense without padding, which suits an intermediate pace when time's tight. The section on ISA‑5.1 tagging and the I/O list walk‑through stuck, especially the example tracing a loop from spec to hook‑up drawing; it felt like a clean PR checklist you can reuse. Mostly good, though I wasn't sold on the cable sizing bit and wished there was a short note on energy utilities edge cases. I've already reused the tag conventions and loop checks on a live job, cutting rework before it hits prod.

COMPLETED

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Questions and Answers

A: Governing principle: three-phase separation with foam and wax favors buoyancy-based devices that average local turbulence. Here the limited nozzle stick-out and sour service push you toward a caged displacer that’s insensitive to dielectric swings and coating, even if response is slow. Engineers who pick guided wave radar know it handles interfaces, but miss how wax deposition and foam collapse the return signal in this geometry.

A: Governing principle: a safety function has to survive its design basis events, including fire exposure. In this case, the shutdown valve air supply must remain intact long enough to reach a safe state, and IEC 61508 treats fire as a common cause threat. Engineers often argue pressure decay or EMC, which are real issues elsewhere, but they don’t drive the SIL hardware constraints here.

A: Governing principle: DP scales with mass flux squared divided by density, with a compressible correction. At 40 barg the density is high, but a 0.6 beta still drives a noticeable DP in the tens of kPa range. Engineers who go for single-digit kPa remember viscosity effects, but forget velocity and beta dominate here.

A: Governing principle: mechanical and hydraulic references get validated before signal interpretation. With a flooded glass and conflicting readings, you isolate and check the sensing lines and zero condition first. Engineers who jump to re-ranging know scaling matters, but skip the physical reference that tells you which signal is lying.