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Design Tools

Welcome to the CWC Portal

Wood Design Tools & Calculators

The Canadian Wood Council (CWC) offers simple, easy-to-use, and free design tools to help architects, engineers, and builders work more efficiently with wood. From electronic design calculators to practical construction guides, our resources make wood design more accessible and straightforward.

Design Tools

Discover the WoodWorks® Software

Learn how the WoodWorks Software supports design and construction professionals with expert resources, tools, and free technical support for innovative wood building projects.

Design Tools

Exposed Mass Timber Calculator

This interactive tool intends to help users determine if their encapsulated mass timber construction (EMTC) compartment designs are code-compliant with the 2025 edition of the National Building Code of Canada (NBC).

Wind & Seismic Bracing Calculator

This interactive tool intends to aid in the design of the minimum braced wall panel length required for the houses based on seismic and wind forces.

Effective R Calculator

Climate zone-appropriate insulated wall assembly solutions that are easily comparable with national and provincial energy efficiency prescriptive provisions.

Canadian Beam Calculator

Calculate load-carrying capacity for wood beams efficiently. Provides quick, code-compliant results for safe and reliable designs.

Dimension Calculator

Easily convert lumber dimensions for accurate planning. Ideal for ensuring precise cuts and minimizing waste.

Board Foot Calculator

Estimate lumber volume for your projects. Simplify material planning and cost estimation with accurate results.


Code CHEK

Ensure your designs meet safety standards. Verify compliance with the latest building codes for hassle-free projects.

FRR & STC Tool

Evaluate fire resistance and sound performance. Optimize designs to meet safety and acoustic standards easily.

Bolt Calculator

Performs design calculations for bolted connections in accordance with CSA O86:24 Clause 12.4.

The Canadian Wood Council’s Design Tools have been developed for information purposes only. Although all possible efforts have been made to ensure that the information on these tools is accurate, the CWC cannot under any circumstances guarantee the completeness, accuracy or exactness of the information. Reference should always be made to the appropriate Building Code and/or Standard. This tool should not be relied upon as a substitute for legal or design advice, and the user is responsible for how the tool is used or applied.

Additional Tools

Cecobois Online
Tools

Climate zone-appropriate insulated wall assembly solutions that are easily comparable with national and provincial energy efficiency prescriptive provisions.

 

AWC Online Tools

Discover innovative tools designed to streamline your wood construction projects. Optimize design processes and explore solutions crafted for modern timber engineering.

Offsite Manufacturing: Driving Efficiency, Quality, and Sustainable Construction

Course Overview

Offsite construction is transforming the building industry by shifting key processes from traditional sites to controlled factory environments. This approach enhances productivity, quality, and sustainability, addressing challenges like labor shortages and environmental impact. The delivery process emphasizes early collaboration, integrated design, and robust project management to optimize efficiency and risk management. Durability and energy efficiency are achieved through advanced material selection, moisture management, and airtight, highly insulated assemblies. Construction logistics, quality control, and commissioning are tailored for offsite methods, ensuring rapid, reliable project delivery. Life cycle analysis shows offsite construction can reduce embodied carbon and waste, supporting climate goals. Canada’s evolving policies and market trends position offsite construction as a key solution for affordable, sustainable housing.

Learning Objectives

  1. Explain the difference between predesigned and custom steel hangers, and describe situations where a custom connection offers practical advantages in mass timber construction.
  2. Describe in plain terms how structural loads travel through a steel hanger assembly, from the supported beam through to the primary supporting member.
  3. Recognize why eccentricity occurs in hanger connections and understand, at a conceptual level, how it affects the design of the surrounding structure.
  4. Understanding the role the Ontario Structural Wood Association plays in advancing offsite construction in Ontario, including industry coordination, advocacy, and best practices.

Course Video

Speakers Bio

Cassandra Lafond
Senior Scientist and Project Leader
FPInnovations

Cassandra Lafond is a Senior Scientist and Project Leader at FPInnovations, specializing in wood construction systems and industrialized building solutions. Her work combines applied research, innovation, and industry practice to support the advancement of sustainable wood construction. She is particularly focused on the development of practical building solutions that help accelerate the adoption of efficient and scalable offsite construction approaches.

Dorian Tung
Manager of Technology Assessment
FPInnovations

Dorian Tung is currently the Manager of Technology Assessment at FPInnovations. Prior to this, he worked as a structural consultant in Canada and the US. As a manager, he has been working with scientists on projects related to structure, seismic, durability, energy, fire, acoustic, and vibration. With the evolving ecosystem, Dorian is active in many working groups to facilitate discussions, remove duplicates, accelerate processes, with the goal to maximize impacts for the forest industry NOW using research data. He is also the editor of the Offsite Wood Construction Handbook published by FPInnovations.

Sadegh Mazloomi
Senior Scientist
FPInnovations

Sadegh (pronounced Saa-dek) is a Senior Scientist at FPInnovations working on different timber engineering topics, including building vibration and acoustics, as well as non-destructive testing of mass timber structures. He is also experienced in the development of sampling and testing plans for lumber and engineered wood products.

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Welcome to the Canadian Wood Council

Technical & Educational Resource Hub for Wood Construction

Easy guides, helpful tools, and all the support you need to build with wood. Discover the latest codes, standards, and innovative ideas for building better, safer, and stronger projects. Find resources that make every step easier and more efficient.

Upcoming Events

Stay informed about industry-leading events, workshops, webinars and more designed to keep you at the forefront of wood construction innovation.

Woodworks 2025
$210 / yearly subscription (CAD)

A 10-day trial period activates upon installation
Conforms to CSA O86-24 and NBC 2020

Image for illustrative purposes only. This is a digital product. No physical item will be provided.

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Talk to Our Technical Experts
Get tailored help with codes, design tools, and wood construction questions from the Canadian Wood Council’s technical team.​

Challenging Convention With Innovative Timber Applications

Course Overview

This dynamic session explores cutting-edge applications of mass timber in Canadian construction through three compelling case studies that showcase how timber is revolutionizing the building industry. Attendees will discover Spearhead’s visionary approach to next-generation manufacturing through their innovative glulam facility in British Columbia. This groundbreaking project challenges conventional thinking and reimagines timber production processes, setting new standards for what’s possible in wood manufacturing. The session will also feature Intelligent City’s remarkable achievement—Canada’s first tall timber Passive House facade. This case study reveals how mass timber building envelopes can deliver exceptional environmental performance while meeting the most demanding energy efficiency standards, creating sustainable structures that perform as beautifully as they look. Finally, the session will present ETRO’s 837 Beatty project, where heritage preservation meets modern timber innovation. This thoughtful integration creates a harmonious dialogue between historical architecture and forward-thinking construction methodologies, demonstrating timber’s versatility across different building contexts.

Learning Objectives

  1. Describe innovative timber applications across three case studies, including prefabricated mass timber envelope systems on tall wood buildings, next-generation glulam manufacturing, and heritage adaptive reuse with new timber additions.
  2. Identify key technical considerations for prefabricated timber building envelopes—panel sizing, air/water tightness strategies, moisture risk reduction through rapid enclosure, and crane sequencing/logistics constraints.
  3. Recognize construction and detailing approaches highlighted in the case studies, including NLT and glulam integration, concealed connection strategies (e.g., glued-in rod concepts as discussed), and coordination methods that support efficient, low-carbon timber delivery.

Course Video

Speakers Bio

Shaun St-Amour
Retrofit (Revive) Manager
ETRO Construction

Shaun brings a unique combination of expertise, leadership, and passion for high-performance buildings. With extensive knowledge of high-performance building standards and hands-on experience with sustainable materials and methods, he bridges the gap between design intent and construction execution. Beyond ETRO, Shaun contributes to the Passive House Accelerator, organizes Zero Carbon Building Tours with ZEBx, and hosts building science meet-ups. His expertise plays a key role in driving decarbonization, resiliency, and efficiency in both new and existing buildings.

Josh Hall
Partner, Director of Business Development
Spearhead

Josh is a Partner and Director of Business Development at Spearhead, where he helps shape the company’s vision and strategic direction. With over fifteen years of experience spanning architecture, digital fabrication, and commercial construction, his knowledge of design, process, and project delivery plays a key role in guiding Spearhead’s continued growth and evolution. Josh holds a Master of Architecture from the University of British Columbia and a Bachelor of Architectural Science from the British Columbia Institute of Technology.

Shawn Keyes
VP, Strategic Growth & Business Development
Intelligent City

Shawn is a structural engineer and commercial executive with more than a decade of experience leading innovation in mass timber and industrialized construction. As Vice President of Strategic Growth at Intelligent City, he leads commercialization, market strategy, and partnerships to scale the company’s prefabricated housing systems. Previously, Shawn served as Executive Director of WoodWorks BC, where he led a strategic transformation that strengthened partnerships, technical leadership, and influence across the development, AEC, and policy sectors. Before that, he spent over six years at Fast + Epp, developing deep expertise in mass timber and hybrid structural systems. Shawn’s teams have supported more than 150 mass timber projects across Canada, and he has served on advisory councils for BC Housing, BCIT, and the BC Office of Mass Timber Implementation. He holds an MBA from UBC Sauder, a Master of Engineering from Carleton University, and is a licensed Professional Engineer in BC and Ontario.

Tall Timber and Affordable Housing: A Case Study

Course Overview

As cities face growing pressures around affordability, climate resilience, and livability, innovative projects like Catalyst’s 18-storey CLT rental development in North Vancouver offer necessary solutions. Targeted toward architects, engineers, developers, and municipal leaders, this session explores sustainable mass timber construction and affordable housing. Attendees will gain insights into using CLT in construction and the unique challenges. In-depth review of challenges such as structural grid constraints, moisture protection, and prefabricated balcony systems, and how the team transformed these into creative solutions. Furthermore, it will provide insight into integrated mixed-use programming, BIM-enhanced coordination, and the permitting process for tall wood buildings, with practical takeaways for implementing similar projects in other cities.

Learning Objectives

  1. Identify how and why hybridization is commonly required at height when it comes to mass timber buildings.
  2. Explain key technical constraints and solutions for tall CLT buildings, including structural grid/panelization limits, diaphragm load paths to the core, rolling shear considerations, and balcony-to-envelope integration strategies.
  3. Apply practical construction and coordination lessons for tall mass timber—moisture management, prefabricated enclosure sequencing, BIM-based clash detection, and early supplier/contractor involvement—to reduce risk and protect the CLT during construction.

Course Video

Speakers Bio

Rhys Leitch
Principal
Integra Architecture Inc.

Rhys Leitch has been a principal at Integra since 2018, he has worked on award-winning projects ranging from sustainable design, high-end single-family, multi-family, and mixed-use residential developments. Originally from Australia, Rhys brings a unique approach to contemporary west coast architecture, paying special attention to the way materials, massing, and design respond to the context of a site. Recently his focus has been CLT mid and high rise projects, pushing the boundaries in different mass timber housing typologies.

Sean Binns
Project Director
Kindred Construction

Sean is a proven construction leader with over 20 years of experience delivering major residential and commercial projects across the UK and Canada. As Project Director at Kindred Construction, he leads complex builds and champions innovation in mass timber, Passive House, and modular construction. A mentor and speaker, Sean fosters industry talent through strong partnerships with local universities.

Harrison Glotman
Principal
Glotman Simpson Consulting Engineers

Harrison Glotman is a Principal at Glotman Simpson with several years of experience working on complex projects across Canada and the U.S. Prior to joining Glotman Simpson, Harrison worked on high-end homes and retrofits in some of the most iconic buildings in New York and San Francisco. He completed his Master of Science in Structural Engineering with a full scholarship to Stanford University where he specialized in seismic engineering. The knowledge gained through this degree has proven to be incredibly valuable in building design on the West Coast.

The Business Case for Mass Timber

Course Overview

Mass timber is redefining how we design and deliver buildings. This session spotlights two projects at the forefront: The Exchange office building in Kelowna and a planned residential tower in Vancouver. Alongside these case studies, the speakers will present a business case analysis, breaking down costs, risks, and opportunities. Together, the speakers will share how mass timber is being applied today, the lessons learned, and why it is becoming a viable choice for development in today’s market.

Learning Objectives

  1. Explain how mass timber systems are being applied in commercial and residential projects to achieve cost competitiveness with concrete construction.
  2. Identify key design, supply chain, and construction decisions that influence risk, schedule, and cost outcomes in mass timber buildings.
  3. Evaluate the business case drivers – cost, schedule, risk, and market acceptance – that affect developer decision-making for mass timber projects.

Course Video

Speakers Bio

Annabelle Hamilton
Executive Director
WoodWorks BC

Following the completion of her postgraduate degree from Ulster University in Northern Ireland, Annabelle has worked for several multi-family development companies, overseeing various multi-million dollar projects through the project lifecycle from acquisitions and municipal approvals to construction completion.

Graham Brewster
Director of Development
Wesgroup Properties

Graham is Director of Development at Wesgroup Properties, one of Western Canada’s largest private real estate organizations. Graham is leading Wesgroup’s mass timber exploration and execution, with an eye to not only build better buildings, but building the understanding to build a robust and sustainable industry in BC.

Tim McLennan
CEO
Faction Projects

As co-founder and CEO of Faction Projects Inc., Tim oversees a vertically integrated group of companies including Faction Architecture Inc., Faction Construction, and multiple subsidiaries—delivering full-spectrum project services from concept to construction. He leads the company’s long-term strategy, corporate governance, and financial stewardship. His leadership drives innovation across the group’s project delivery platforms—anchoring Faction’s reputation for integrated, regionally responsive, and technically advanced solutions.

Neil McGowan
Partner, Senior Advisor
BTY Group

Neill is a Partner at BTY and is responsible for providing planning and cost consulting services to financial institutions, government agencies, real estate developers and contractors. He has over 35 years of experience in British Columbia providing cost and risk advisory services. Neill is a sustainability leader and has led BTY’s team on a wide variety of projects advancing the understanding of capital and life-cycle costs of energy conservation and GHG-reduction measures for government and institutional clients.

Mass Timber Insurance Action Plan Phase 1 Report

Mass Timber Insurance Action Plan – Phase 1 Report examines one of the most significant barriers to scaling mass timber construction in Canada: access to affordable and reliable insurance.

While mass timber offers clear advantages in sustainability, performance, and long-term value, course-of-construction insurance rates remain disproportionately high—often several times those of concrete and steel—driven largely by limited data and insurer unfamiliarity rather than demonstrated risk.

Led by the Climate Smart Buildings Alliance and the Canadian Wood Council, and supported by Natural Resources Canada, this report summarizes the findings from Phase 1 of a national action plan developed in collaboration with insurance and building industry stakeholders. It evaluates the feasibility of four targeted solutions focused on data sharing, insurer-relevant research, contractor verification, and expanding insurance capacity.

Bringing together technical insight and industry perspectives, the report outlines practical pathways to reduce risk perception, improve market confidence, and unlock greater adoption of mass timber construction across Canada.

How We Will Make Construction More Affordable

Course Overview

Follow a panel of leading developers as they explore innovative strategies to reduce construction costs. Drawing from their extensive portfolios, the panelists will discuss offsite manufacturing, prefabrication, hybrid construction, and repeatable solutions that are transforming the construction industry. Discover practical approaches that streamline project delivery and drive affordability in future developments.

Learning Objectives

  1. Identify strategies used to reduce construction costs through prefabrication, modular construction, and offsite manufacturing.
  2. Explain how hybrid wood systems, including CLT and lightweight panelized assemblies, are applied in mid-rise and multi-residential projects.
  3. Evaluate how standardization, repeatable building solutions, and factory-based production can improve housing affordability and project delivery efficiency.

Course Video

Speakers Bio

Samantha Eby
Executive Director
ReHousing

Samantha Eby is the Executive Director of ReHousing, a non-profit organization dedicated to housing creation through applied research, consultation, and education. Her work through ReHousing, developed in partnership with Michael Piper and Janna Levitt, was awarded the 2023 CMHC President’s Medal for Outstanding Housing Research. Samantha holds a Master of Architecture from the University of Toronto and a Bachelor of Architectural Studies from the University of Waterloo School of Architecture. As an architect and researcher, she explores the intersection of design, policy frameworks, and ownership models, focusing on their impact on housing projects. In 2020, she was awarded the Canada Council for the Arts Prix de Rome for Emerging Practitioners. Alongside her role at ReHousing, Samantha is a sessional instructor at the University of Toronto and an adjunct professor at the University of Waterloo School of Architecture.

Mike Maxwell
President
Maxwell Building Consultants

Mike was drawn to Waterloo for his degree from Laurier University and has seen local real estate development potential ever since. A combination of zoning bylaw rules, site data chart statistics and construction knowledge produce unique results for projects that he is involved with. He loves the math and the problem solving. In an advisory position with local governments, not-for-profit organizations, and CMHC, Mike has created strong partnerships to move the cause of affordable housing forward.

Tobias Oriwol
Senior Vice President, Investments
Tricon Residential

Tobias Oriwol is responsible for providing strategic oversight and day-to-day investment management for Tricon Residential’s Canadian purpose-built rental apartment platform, including sourcing new investment opportunities, acquisition execution, and capital raising. Prior to joining Tricon, Tobias worked at Forum Equity Partners in Toronto. Before that, he worked at Brookfield Asset Management, in both Toronto and New York, where he focused on residential housing investments and developments across market rate and affordable rental apartments, student housing, senior housing, and for-sale condominiums. Tobias has a Master’s degree in urban planning from Harvard University and an undergraduate degree in Urban Studies from Stanford University. He is also a two-time Canadian Olympian, having reached the semi-finals in both the 2008 and 2012 Summer Olympic Games.

Geoff Cape
CEO
Assembly Corp (previously R-Hauz)

For almost 35 years, Geoff Cape has been at the forefront of promoting urban innovation and environmental sustainability across diverse platforms. As CEO of Assembly Corp, Geoff has a long background in real estate and urban planning. Geoff began with a hammer, framing new builds and restoring century homes off the east coast at the age of 19. He has been a builder, planner, operator, and a long time advocate for sustainable cities, and green infrastructure. Geoff is most well known for starting Evergreen in 1991, and transforming the 42 acre site at Evergreen Brick Works in Toronto, into an internationally recognized centre for environmental excellence. Selected in 2018 as a Member of the Order of Canada, and in 1999 as “Top 40 Under 40”, Geoff has also been honoured with the Queen Elizabeth II Golden Jubilee Medal in recognition of “Canadians who have made outstanding and exemplary contributions to their communities or to Canada as a whole.” In 2007, Geoff won the prestigious Schwab Foundation’s “Social Entrepreneur of the Year” award. Geoff was founding Chair of the Sustainability Institute, past Board member of Sustainable Development Technology Canada, and the Peter F. Drucker Foundation Selection Committee. Geoff has been a regular participant and speaker at the World Economic Forum in Davos, Switzerland and on their “Future of Urban Development Advisory Board” and “Technology Pioneers Selection Committee”. Geoff is a Global Fellow of the Rockefeller Foundation. Geoff lives in the Annex neighbourhood in Toronto with his wife Valerie and three boys Toma, Ben and Sebastien, and cycles to work every day—even in blinding snow storms.

Custom Steel Connections for Mass Timber: Understanding the Basics Step by Step

Course Overview

As mass timber construction continues to grow in popularity, understanding how structural connections work is essential for anyone involved in the design and construction process. This course introduces custom steel hangers as a practical and flexible solution for connecting timber beams and columns, explaining why they are sometimes preferred over off-the-shelf options. Using clear, visual examples, participants will be guided through how forces travel through a connection, what needs to be checked to ensure safety, and how factors like fire performance and moisture are considered in real projects. No advanced engineering background is required to follow along and gain valuable insight into this important aspect of mass timber design.

Learning Objectives

  1. Explain the difference between predesigned and custom steel hangers, and describe situations where a custom connection offers practical advantages in mass timber construction.
  2. Describe in plain terms how structural loads travel through a steel hanger assembly, from the supported beam through to the primary supporting member.
  3. Recognize why eccentricity occurs in hanger connections and understand, at a conceptual level, how it affects the design of the surrounding structure.
  4. Identify key real-world considerations for custom steel connections in mass timber, including fire protection strategies and the importance of accounting for wood shrinkage.

Course Video

Speakers Bio

Patrick Geers
Senior Structural Designer & Head of Quality Control
Western Archrib

Patrick Geers brings over 24 years of expertise in mass timber engineering to his role at Western Archrib, where he leads the design of innovative structural systems and maintains the company’s exceptional quality standards. A passionate carpenter with degrees from both Canadian and German institutions, Patrick combines hands-on craftsmanship with advanced engineering knowledge. His international career spans positions in Austria and Germany, providing him with unique cross-cultural perspectives on structural design and community-centered architecture. Patrick currently serves on multiple technical committees including the CSA 086 Committee for Wood Design Standards and acts as an industry advisor to the ARTS group at the University of Alberta. His work focuses on creating sustainable structures that navigate challenging environments while connecting communities. Through his leadership in both technical innovation and quality assurance, Patrick continues to advance the possibilities of mass timber construction for buildings that serve as community anchors and exemplars of sustainable design.

Files

This course contains several dozens of files.

Click Here to Access the Files!

Scaling Affordable Rental Housing with Tall Mass Timber

Course Overview

As cities face growing pressures around affordability, climate resilience and livability, innovative projects like Catalyst’s 18-storey CLT rental development in North Vancouver offer necessary solutions. Targeted toward architects, engineers, developers and municipal leaders this session explores mass timber construction as an affordable housing solution. Attendees will gain insight into the use of CLT in construction and the associated challenges, including structural grid constraints, moisture protection, and prefabricated balcony systems. The session will also highlight how the project achieved near cost parity with comparable concrete buildings, integrated mixed-use programming, and leveraged BIM to support coordination and the permitting process. Participants will leave with practical takeaways for applying these approaches to similar projects in other cities.

Learning Objectives

  1. Understand how tall mass timber hybrid systems can support affordable and mixed-use housing 
  2. Identify key architectural, structural, and construction challenges unique to CLT buildings 
  3. Learn practical strategies for permitting, procurement, coordination, and construction 

Course Video

Speakers Bio

Annabelle Hamilton  
Executive Director
WoodWorks BC

Harrison Glotman
Principal
Glotman Simpson Consulting Engineers

Rhys Leitch
Principal
Integra Architecture Inc.

Sean Binns
Project Director
Kindred Construction

Design Tools
Offsite Manufacturing: Driving Efficiency, Quality, and Sustainable Construction
Home – Copy
Challenging Convention With Innovative Timber Applications
Tall Timber and Affordable Housing: A Case Study
The Business Case for Mass Timber
Mass Timber Insurance Action Plan Phase 1 Report
How We Will Make Construction More Affordable
Custom Steel Connections for Mass Timber: Understanding the Basics Step by Step
Files
Lecture Notes
Scaling Affordable Rental Housing with Tall Mass Timber
Welcome to the CWC Portal Wood Design Tools & Calculators The Canadian Wood Council (CWC) offers simple, easy-to-use, and free design tools to help architects, engineers...
Course Overview Offsite construction is transforming the building industry by shifting key processes from traditional sites to controlled factory environments. This approach...
Welcome to the Canadian Wood Council Technical & Educational Resource Hub for Wood Construction Easy guides, helpful tools, and all the support you need to build with...
Course Overview This dynamic session explores cutting-edge applications of mass timber in Canadian construction through three compelling case studies that showcase how timber...
Course Overview As cities face growing pressures around affordability, climate resilience, and livability, innovative projects like Catalyst’s 18-storey CLT rental...
Course Overview Mass timber is redefining how we design and deliver buildings. This session spotlights two projects at the forefront: The Exchange office building in Kelowna...
Mass Timber Insurance Action Plan – Phase 1 Report examines one of the most significant barriers to scaling mass timber construction in Canada: access to affordable and...
Course Overview Follow a panel of leading developers as they explore innovative strategies to reduce construction costs. Drawing from their extensive portfolios, the...
Course Overview As mass timber construction continues to grow in popularity, understanding how structural connections work is essential for anyone involved in the design and...
This course contains several dozens of files. Click Here to Access the Files!
Building Information Modelling for Wood Buildings - Introductory GuideDownload
Course Overview As cities face growing pressures around affordability, climate resilience and livability, innovative projects like Catalyst's 18-storey CLT rental development...

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