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SMD Soldering Course
More than 2 million students worldwide

SMD Soldering Course

4.1

Master every stage of SMD soldering, from reading datasheets and printing solder paste to reflowing BGA packages and inspecting joints to industry standards. This course gives electronics technicians and hobbyists the hands-on skills to build, rework, and quality-control surface-mount assemblies with confidence. If you work with modern PCBs, this is the training you need.

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What you will learn:

You will learn how to identify SMD component packages, set up an ESD-safe workspace, and select the right tools and solder alloys for each job. The course covers solder paste application with stencils, precise hand placement, and reflow soldering using hot air stations, hotplates, and benchtop ovens. You will practice hand soldering passives, QFP ICs, and fine-pitch devices, then move into rework techniques for removing and replacing components without damaging pads. Inspection methods — including stereo microscope, AOI, and X-ray — are covered alongside IPC workmanship standards. You will also explore advanced topics such as BGA reballing, high-reliability assembly, and emerging technologies like laser soldering and AI-assisted inspection.

How you study in practice SMD Soldering Course

How you practice SMD Soldering Course

For companies that want to train their team

With Dedika for Business, 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 • 35 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of SMD Technology

  • Lesson 1 • PCB Anatomy for SMD Work

    Explains PCB layers, pad geometry, solder mask, and silkscreen as they relate to SMD assembly. Provides the vocabulary needed for all subsequent soldering and inspection tasks.

  • Lesson 2 • Datasheets and Component Specifications

    Teaches how to extract soldering-relevant data from manufacturer datasheets. Students locate land patterns, thermal ratings, and reflow profiles for any given component.

  • Lesson 3 • SMD Component Types and Packages

    Identifies passive and active SMD components and their standard package designations. Connects component recognition to correct handling and placement techniques.

  • Lesson 4 • Introduction to Surface-Mount Technology

    Covers the history and advantages of SMT over through-hole technology. Establishes context for why SMD skills are essential in modern electronics manufacturing.

Chapter 2See details

Tools, Materials, and Workspace Setup

  • Lesson 1 • Auxiliary Tools and Consumables

    Introduces desoldering tools, tweezers, PCB holders, and cleaning supplies used in SMD work. Proper tool selection reduces component damage and rework time.

  • Lesson 2 • ESD Safety and Workspace Organization

    Establishes electrostatic discharge prevention practices and ergonomic workspace layout. Students configure a compliant ESD-safe bench before beginning any soldering practice.

  • Lesson 3 • Soldering Irons and Temperature Stations

    Covers iron types, tip geometries, and temperature control for SMD work. Students match tip selection to component package size and thermal mass.

  • Lesson 4 • Solder Alloys and Flux

    Explains lead-free and tin-lead alloy properties and flux chemistry relevant to SMD soldering. Students choose the correct solder wire and flux type for each application.

Chapter 3See details

Solder Paste and Stencil Application

  • Lesson 1 • Solder Paste Properties and Handling

    Explains paste viscosity, particle size, and shelf-life requirements critical to print quality. Correct handling prevents voids, bridging, and poor reflow results.

  • Lesson 2 • Paste Inspection and Defect Recognition

    Identifies common paste printing defects and their root causes. Students use visual and 2D inspection methods to accept or reject prints before component placement.

  • Lesson 3 • Manual Stencil Printing Technique

    Teaches board registration, squeegee angle, speed, and pressure for consistent paste prints. Students practice the print-inspect-clean cycle to achieve repeatable results.

  • Lesson 4 • Stencil Types and Design Principles

    Covers laser-cut and electroformed stencil construction and aperture design rules. Students relate stencil thickness and aperture ratio to paste volume and transfer efficiency.

Chapter 4See details

Manual SMD Component Placement

  • Lesson 1 • Placement Accuracy and Alignment

    Covers acceptable placement tolerances for various package types and self-alignment during reflow. Students evaluate placement quality against industry acceptance standards.

  • Lesson 2 • Vacuum Pickup Tools and Nozzles

    Introduces manual vacuum pens and nozzle selection for larger SMD packages. Students match nozzle size to component body and practice controlled placement.

  • Lesson 3 • Tweezer Technique and Component Handling

    Builds hand control for picking, orienting, and placing SMD components without damage. Proper grip and release technique prevents component loss and ESD events.

  • Lesson 4 • Polarity and Orientation Verification

    Teaches methods for confirming correct component polarity and pin-1 orientation before reflow. Errors caught at placement prevent costly rework after soldering.

Chapter 5See details

Reflow Soldering Fundamentals

  • Lesson 1 • Reflow Defect Identification and Causes

    Identifies tombstoning, bridging, solder balls, and cold joints produced by reflow errors. Students trace each defect to its root cause in paste, placement, or profile.

  • Lesson 2 • Reflow Profile Zones and Theory

    Explains preheat, soak, reflow, and cooling zones and their metallurgical effects. Students connect profile parameters to joint quality and component survival.

  • Lesson 3 • Benchtop Reflow Oven Operation

    Covers profile programming, board loading, and process monitoring for benchtop reflow ovens. Students program and validate a lead-free reflow profile for a mixed-component board.

  • Lesson 4 • Hot Air Rework Station Technique

    Teaches airflow, temperature, and nozzle selection for hot air reflow of SMD components. Students reflow individual components and small boards without disturbing adjacent parts.

  • Lesson 5 • Hotplate and Infrared Reflow Methods

    Introduces hotplate and infrared panel reflow as low-cost alternatives for prototyping. Students apply these methods to simple boards while managing thermal gradients.

Chapter 6See details

Hand Soldering SMD Components

  • Lesson 1 • Soldering Passive Components

    Covers tack-soldering one end, aligning, and completing the joint for 0402 to 1206 passives. Students achieve consistent fillet geometry on both pads of each component.

  • Lesson 2 • Soldering QFP and Fine-Pitch ICs

    Teaches tack, flux, and drag techniques for QFP packages with 0.5 mm and 0.65 mm pitch leads. Students achieve bridge-free joints on all four sides of a QFP.

  • Lesson 3 • Soldering SOT and Small IC Packages

    Applies hand soldering to SOT-23, SOT-223, and small SOIC packages with multiple leads. Students manage lead pitch and solder volume to avoid bridging.

  • Lesson 4 • Iron Control and Heat Transfer

    Develops iron tip contact technique, dwell time, and solder feed timing for SMD pads. Correct heat transfer prevents pad lifting, component damage, and cold joints.

Chapter 7See details

SMD Rework and Component Removal

  • Lesson 1 • Removing Passive and SOT Components

    Teaches simultaneous heating of both pads to remove passives and SOT devices cleanly. Students clear pads of excess solder and prepare them for replacement components.

  • Lesson 2 • Pad Repair and PCB Restoration

    Covers lifted pad repair, trace repair, and via restoration after rework damage. Students apply conductive epoxy and copper tape techniques to restore board functionality.

  • Lesson 3 • Rework Planning and Board Preparation

    Covers damage assessment, adjacent component protection, and flux application before rework. Proper preparation prevents collateral damage and improves rework success rates.

  • Lesson 4 • BGA Removal and Reballing

    Introduces BGA removal using infrared or hot air preheating and controlled top-side heating. Students remove BGA devices and reball them using stencil and solder spheres.

  • Lesson 5 • Removing SOIC and QFP Packages

    Applies hot air and specialized nozzles to remove multi-lead IC packages without pad lifting. Students control airflow and temperature to release all leads simultaneously.

Chapter 8See details

Inspection, Quality, and Process Control

  • Lesson 1 • Defect Root-Cause Analysis

    Applies structured root-cause methods to recurring SMD soldering defects. Students trace defects to process, material, or equipment variables and propose corrective actions.

  • Lesson 2 • Industry Acceptance Standards for SMD

    Introduces workmanship classes and acceptance criteria for SMD solder joints from recognized industry standards. Students classify joints as acceptable, process indicator, or defect.

  • Lesson 3 • Process Control and Continuous Improvement

    Introduces statistical process control concepts applied to SMD soldering yield and defect rates. Students track key metrics and use data to drive process improvements.

  • Lesson 4 • Visual and Optical Inspection Techniques

    Covers unaided eye, stereo microscope, and digital microscope inspection methods for SMD joints. Students identify and classify defects using proper lighting and magnification.

  • Lesson 5 • Automated Optical and X-Ray Inspection

    Introduces AOI and X-ray inspection principles for detecting hidden and surface defects. Students interpret AOI reports and X-ray images for BGA and hidden-joint evaluation.

Certification

Your valid completion certificate

This course is for you:

  • Electronics technician: ready to move beyond through-hole assembly work.

  • Hobbyist maker: building custom PCBs and needing reliable surface-mount skills.

  • Engineering student: bridging the gap between classroom theory and bench practice.

  • PCB repair technician: lacking formal SMD rework and inspection training.

  • Career changer: entering electronics manufacturing from an unrelated technical field.

  • Prototype engineer: assembling small-batch boards without a dedicated production team.

What our students say

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