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Tin Soldering Course
More than 2 million students worldwide

Tin Soldering Course

Master tin soldering from the ground up — tools, alloys, technique, and inspection all in one course. You'll build real skills for electronics, plumbing, and surface-mount work that hold up on the job. This course covers everything from your first wire joint to fine-pitch ICs and copper pipe fittings.

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What you will learn:

You'll start with soldering fundamentals — tool selection, alloy properties, flux types, and safety — then move into hands-on technique for wire, through-hole components, and surface-mount devices. You'll learn how to read joint quality against industry standards and use magnification tools to catch defects early. The course covers desoldering and rework so you can fix mistakes without scrapping boards. Plumbing applications teach you to solder copper pipe joints that pass pressure testing. You'll also get into process troubleshooting, ESD protection, and professional documentation practices used in real production environments.

How you study in practice Tin Soldering Course

How you practise Tin Soldering Course

For businesses looking to train their team

With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.

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Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Tin Soldering

  • Lesson 1 • Safety and Hazard Awareness

    Identifies thermal, chemical, and fume hazards associated with tin soldering. Establishes mandatory safety practices that apply throughout the entire course.

  • Lesson 2 • Flux: Purpose and Types

    Explains how flux removes oxides and promotes wetting, covering rosin, no-clean, and water-soluble types. Proper flux choice directly affects joint integrity.

  • Lesson 3 • What Soldering Is and Does

    Defines soldering as a metallurgical joining process and distinguishes it from welding and brazing. Establishes the conceptual baseline for all subsequent technique chapters.

  • Lesson 4 • Tools and Equipment Overview

    Introduces soldering irons, stations, tips, solder wick, and pumps. Students learn to match tool specifications to task requirements.

  • Lesson 5 • Tin-Based Solder Alloys

    Covers tin-lead, tin-silver-copper, and other tin alloys, including melting points and mechanical properties. Connects alloy selection to joint quality outcomes.

Chapter 2See details

Equipment Setup and Maintenance

  • Lesson 1 • Workstation Ergonomics and Layout

    Establishes an organised, ergonomic bench layout that reduces fatigue and errors. Proper layout supports safe, efficient soldering sessions.

  • Lesson 2 • Equipment Inspection and Storage

    Defines pre-use inspection routines and proper storage procedures for irons and consumables. Routine maintenance extends equipment life and prevents mid-task failures.

  • Lesson 3 • Temperature Calibration and Control

    Covers setting and verifying iron temperature using thermometers and test joints. Accurate temperature control is the single largest factor in consistent joint quality.

  • Lesson 4 • Selecting the Right Soldering Iron

    Guides selection based on wattage, tip style, and application type. Correct iron choice prevents thermal damage and poor wetting.

  • Lesson 5 • Tip Preparation and Tinning

    Teaches cleaning, tinning, and reshaping tips to maintain heat transfer efficiency. A well-maintained tip is essential for repeatable soldering results.

Chapter 3See details

Core Soldering Technique

  • Lesson 1 • Through-Hole Component Soldering

    Applies heat and feed technique to PCB through-hole pads and component leads. Students practise forming consistent fillet joints on real boards.

  • Lesson 2 • Joint Cooling and Handling

    Explains natural cooling, movement prevention, and post-solder handling to avoid cold joints. Correct cooling habits lock in joint quality.

  • Lesson 3 • Solder Feed and Flow Control

    Teaches correct solder introduction angle, feed rate, and volume control. Proper feed technique prevents bridging, voids, and excess solder.

  • Lesson 4 • Heat Application Principles

    Explains how to heat the joint, not the solder, and why thermal mass affects technique. This principle underpins every soldering task in the course.

  • Lesson 5 • Soldering Wire and Stranded Conductors

    Covers tinning wire ends, joining conductors, and insulation management. Wire soldering is the most common entry-level task and reinforces basic technique.

Chapter 4See details

Joint Quality and Inspection

  • Lesson 1 • Using Magnification Tools

    Covers loupe, stereo microscope, and digital microscope use for detailed joint analysis. Magnification reveals defects invisible to the naked eye.

  • Lesson 2 • Common Defect Types

    Catalogues cold joints, bridges, voids, tombstoning, and insufficient solder with root causes. Recognising defects is prerequisite to correcting them.

  • Lesson 3 • Visual Inspection Criteria

    Defines surface appearance indicators—shine, contour, and wetting angle—for acceptable joints. Visual inspection is the primary quality gate in production and repair.

  • Lesson 4 • Industry Quality Standards Overview

    Summarises widely adopted workmanship standards for electronics and plumbing solder joints. Aligning to standards ensures professional-grade output.

  • Lesson 5 • Mechanical and Electrical Testing

    Introduces pull testing, continuity checks, and resistance measurement for joint verification. Mechanical and electrical tests confirm what visual inspection cannot.

Chapter 5See details

Desoldering and Rework

  • Lesson 1 • Through-Hole Component Removal

    Teaches sequential heating and extraction of through-hole components with minimal pad stress. Proper technique preserves board integrity for re-use.

  • Lesson 2 • Surface-Mount Component Removal

    Covers hot-air and iron drag techniques for removing SMD resistors, capacitors, and ICs. SMD removal requires precise temperature and airflow control.

  • Lesson 3 • Desoldering Tool Selection

    Compares solder wick, vacuum pumps, and hot-air stations for different desoldering tasks. Choosing the right tool prevents pad and component damage.

  • Lesson 4 • Rework Quality Verification

    Applies inspection and testing skills from Chapter 4 to verify reworked joints meet acceptance criteria. Rework is only complete when the joint passes all quality checks.

  • Lesson 5 • Pad and Land Repair

    Addresses lifted pad repair using conductive adhesive and jumper wires. Pad repair restores board function after desoldering damage.

Chapter 6See details

Surface-Mount Soldering Techniques

  • Lesson 1 • Fine-Pitch and BGA Considerations

    Introduces challenges of fine-pitch QFP and BGA soldering, including bridging risks and X-ray inspection. These advanced packages require heightened precision and verification.

  • Lesson 2 • Reflow and Hand-Iron SMT Soldering

    Covers hot-air reflow, toaster oven reflow, and iron drag soldering for SMD components. Multiple methods give students flexibility across different production environments.

  • Lesson 3 • Solder Paste Application

    Covers stencil printing and manual syringe application of solder paste for SMT work. Correct paste volume and placement determine reflow joint quality.

  • Lesson 4 • SMT Component Identification

    Identifies resistors, capacitors, diodes, SOICs, QFPs, and BGAs by package type and pitch. Component recognition is prerequisite to selecting the correct soldering approach.

  • Lesson 5 • Component Placement and Alignment

    Teaches manual tweezers placement and alignment verification for SMD components. Accurate placement prevents tombstoning and misalignment defects during reflow.

Chapter 7See details

Soldering in Plumbing Applications

  • Lesson 1 • Torch Selection and Flame Control

    Introduces propane and MAPP torches, flame adjustment, and safe torch handling for pipe work. Torch technique differs significantly from iron-based soldering.

  • Lesson 2 • Making the Plumbing Solder Joint

    Walks through the complete joint-making sequence: heat, feed, and cool for copper fittings. Correct sequence ensures full capillary fill and a watertight joint.

  • Lesson 3 • Flux Application for Plumbing

    Teaches correct flux type selection and application volume for copper pipe joints. Over- or under-fluxing causes corrosion or dry joints in plumbing systems.

  • Lesson 4 • Copper Pipe Preparation

    Covers cutting, deburring, and cleaning copper pipe and fittings to achieve oxide-free mating surfaces. Surface preparation is the most critical step in plumbing soldering.

  • Lesson 5 • Leak Testing and Inspection

    Covers pressure testing, visual bead inspection, and flux residue removal for completed plumbing joints. Testing confirms joint integrity before system commissioning.

Chapter 8See details

Process Optimization and Troubleshooting

  • Lesson 1 • Flux and Alloy Process Variables

    Analyses how flux activity level and alloy composition affect wetting, spread, and residue. Matching flux and alloy to the process reduces defect rates.

  • Lesson 2 • Continuous Improvement Practices

    Introduces defect rate tracking, yield metrics, and iterative improvement cycles for soldering operations. Continuous improvement sustains quality gains over time.

  • Lesson 3 • Process Documentation and Control

    Establishes written work instructions, parameter logs, and change control for soldering processes. Documentation enables consistent quality across operators and shifts.

  • Lesson 4 • Root Cause Analysis for Defects

    Applies structured problem-solving to trace defects back to process variables such as temperature, flux, and technique. Systematic analysis prevents defect recurrence.

  • Lesson 5 • Temperature Profile Optimization

    Covers profiling reflow ovens and adjusting iron temperature for different alloys and substrates. Optimised profiles reduce defects and improve throughput.

Certification

Your valid completion certificate

This course is for you:

  • Electronics hobbyists: ready to move beyond trial-and-error bench habits.

  • Career changers: entering PCB assembly or electronics manufacturing without formal training.

  • Apprentice plumbers: needing structured copper pipe soldering technique from the start.

  • DIY makers: building or repairing projects that demand reliable, inspectable joints.

  • Production technicians: filling gaps in formal training to meet workplace quality standards.

  • Vocational students: supplementing classroom instruction with comprehensive hands-on soldering knowledge.

What our students say

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