Webinar: Redefining Excellence in the Era of AI and Human Collaboration
Discover your potential savings with our ROI Calculator
Self-guided Product Tours
Product Demo Videos
Pricing
Recent Analyst Insights
Featured Analyst Insights
2026 Gartner® Magic Quadrant™ for Quality Management System Software
Recent Blogs
Recent Infographics
Recent Case Studies
Featured Case Study
ComplianceQuest Medical Devices QMS Success Stories eBook
Recent Checklists
Featured Checklist
Complaint Handling Process for MedTech and Life Science Companies
Course Offerings
Recent CQ Guides
Datasheets
Brochures
Demo Center
Videos
Podcasts
Recent Webinars
Webinar
Unlocking the Value of Complaints
Recent Whitepapers
Whitepaper
Why You Need to Digitally Transform Your QMS
Compliance
Toolkits
Infographic
Safety Technology Trends to Watch in 2023 (Infographic)
Recent Toolkits
Events and Webinars
Events
Upcoming Webinars
Featured Event
PDA/FDA Joint Regulatory Conference 2026
14 Sep, 2026
Washington, DC
About
About ComplianceQuest
ComplianceQuest is the #1 AI-powered Quality, Risk, and Compliance (QRC) platform that connects Product, Quality, Manufacturing, People, Suppliers and Customers in a single system.
Built on Salesforce, the platform delivers end-to-end visibility, AI-driven intelligence, and enterprise-scale execution, enabling organizations to manage risk, ensure regulatory compliance, and turn quality into a driver of growth.
Meet the Leadership Team
Careers
Where Your Career Takes Flight: Join our dynamic team and be part of an innovative, collaborative and rewarding workplace culture.
Corporate Citizenship
Impact Through Action: How the ComplianceQuest team supports social causes and community engagement
Customers & Testimonials
Newsroom
The Pulse of ComplianceQuest: Our newsroom shares stories of innovation, progress, and change
Partners
Stronger Together: How our partnerships drive success and innovation
Upcoming Events
ComplianceQuest Design Control Software connects design inputs, outputs, reviews, verification and validation, design transfer, and DHF records in one traceable workflow.
Design control software is a digital system for managing and documenting the complete product design lifecycle for regulated products. Instead of tracking design inputs, outputs, reviews, verification and validation (V&V), and design transfer across spreadsheets, shared drives, and email threads, design control software keeps every design record connected, version-controlled, and traceable inside one system.
For medical device, pharmaceutical, and other regulated product teams, that means a single source of truth for the Design History File (DHF), with approvals, audit trails, and document control built in, tying every design decision back to a requirement, a risk, or a test result.
CQ connects requirements, risk, V&V, CAPA, and document control to improve traceability, compliance, and audit readiness.
Requirements management Capture user needs and design inputs in one structured system, so every requirement has an owner, a status, and a link to the design outputs meant to satisfy it. Keeps requirements current instead of buried in static documents.
Traceability matrix Automatically maintain a live traceability matrix connecting user needs, design inputs, outputs, test protocols, and results. Removes the manual, spreadsheet-built matrix that goes stale the moment a requirement changes.
Design review workflows Route design reviews through configurable, stage-gated workflows with built-in approvals and e-signatures. Keeps reviews consistent and on schedule instead of tracked over email.
Risk linkage Connect risk assessments and controls directly to design inputs, outputs, and changes. Gives risk teams visibility into which design elements a given risk affects, and vice versa.
DHF control Compile Design History File records automatically as design activities are completed, rather than assembled after the fact. Reduces the scramble to reconstruct a DHF ahead of an audit or submission.
CAPA connection Link corrective and preventive actions directly to the design records that triggered them, keeping design issues and their resolution in one system instead of a separate CAPA log.
Document control Manage design specifications, protocols, and reports with version control, approval routing, and training tie-ins built in, so teams always work from the current, approved version.
Real-time dashboards Give quality, regulatory, engineering, and leadership visibility into design review status, open actions, and release readiness as it happens, not at month-end.
ComplianceQuest is Endorsed by Customers, Analysts and Partners Across the World
Salesforce
4.77/5
"ComplianceQuest is very user friendly and easy to adapt. The cross linking to records made the auditors very happy"
Luzi Gandhi
Document Controller
Standard BioTools Inc.
Ontario, Canada.
Capterra
4.7/5
"Keeps my quality processes well organized and my audit ready"
Brion
Lead Product and Design Manager in US
Computer Software, 11–50 Employees
Used the Software for: 6-12 months
G2
4.3/5
"Nicely integrated e-QMS. The integrations between modules: Complaints and Audits -> CAPA"
Dik H.
Manager Regulatory Affairs and QA
Enterprise (> 1000 emp.)
Getapp
“The support and expertise provided by ComplianceQuest along with their commitment to customer success is 5-star all the way.”
Bryan C.
Vice President of Cloud Technology
Digital Transformation SME
Connected design controls help cross-functional teams reduce manual work, strengthen audit readiness, and accelerate compliant product releases.
Faster audit prep: connected records pull DHF, review, and approval history automatically instead of requiring a manual document hunt before every audit.
Submission-ready documentation: traceability between requirements, V&V, and risk records supports FDA and ISO 13485 submissions without last-minute reconstruction.
Fewer rework cycles: connected requirements and design outputs surface gaps early, before they reach V&V or design transfer.
Risk visibility tied to design: risk files link directly to design inputs and outputs instead of living separately, so a design change triggers a visible risk review rather than a missed update.
Cleaner design transfer: design outputs carry their full traceability history into production specs, reducing handoff errors.
Real-time release visibility: dashboards show where design projects stand against schedule and compliance requirements, without waiting on status meetings.
CQ provides regulated industries with a unified, traceable system for managing product design, quality, risk, and compliance.
Design controls under FDA 21 CFR 820.30/QMSR and ISO 13485 demand tight traceability between requirements, risk, and V&V. CQ keeps that traceability connected end-to-end, from design input to DHF.
Fast release cycles make it easy to lose traceability between software requirements, verification testing, and risk controls. CQ links software design records to the same risk and V&V framework used for hardware devices.
Design and development of combination products and drug-delivery devices need documented design history alongside GMP records. CQ connects design control records to the broader quality system instead of a separate silo.
Fast-moving product development can outpace manual documentation. CQ gives biotech teams a connected system for tracking design changes and approvals as products evolve.
IVD design controls require tight linkage between analytical performance data and design outputs. CQ ties test results directly to the requirements and risks they verify.
Broader life sciences product teams need design records that stand up to both FDA and international regulatory review. CQ supports traceable, audit-ready design documentation across regulatory frameworks.
Design changes carry safety and configuration-control stakes similar to medical devices. CQ connects design records, risk, and change control so nothing releases without full traceability.
Fast product cycles and complex bills of materials make manual traceability difficult. CQ keeps design requirements and test data connected as products iterate quickly.
Design changes often ripple into supplier specs and production processes. CQ links design control records to supplier and manufacturing quality data.
Design decisions affect safety and compliance even outside heavily regulated markets. CQ gives consumer product teams the same traceable design record structure used in regulated industries.
Design and engineering changes need documented review and approval trails for safety and regulatory reasons. CQ provides that structure without adding a separate system.
Connected health tech products need design records that satisfy both software and hardware design control expectations. CQ supports both within one workflow.
Instrument design changes need to stay traceable to performance requirements and risk. CQ connects design outputs to the validation evidence that supports them.
Formulation and process design changes require documented review and risk assessment. CQ ties design and change records to the same audit trail used for compliance reporting.
Equipment design changes can affect food safety compliance. CQ connects design records to risk and quality processes so changes stay visible and controlled.
Manufacturing-side design changes need to trace back to the original design inputs and risk file. CQ keeps that link intact from design through production.
The product development cycle refers to the various stages involved in the product life cycle, right from design and development…
The ComplianceQuest Design Quality and Product Lifecycle Management solutions are designed to bring higher quality products to market faster with…
Technological development and breakthroughs in medical research have enabled medical technology companies to develop pioneering therapies and treatments for several…
Design controls exist to make sure a regulated product is designed, reviewed, and released the way it was intended — with evidence to prove it. For medical devices and other FDA-regulated products, that expectation traces back to design control requirements historically set out in 21 CFR 820.30, now folded into FDA's Quality Management System Regulation (QMSR). FDA states the revised Part 820 is now titled the Quality Management System Regulation (QMSR) and became effective on February 2, 2026; it incorporates ISO 13485:2016 by reference.
Regardless of which framework applies, design control software needs to support the same core expectations:
Design planning
Documenting how design and development activities will be managed and reviewed
Design inputs and outputs
Capturing requirements and translating them into outputs that can be verified against those requirements
Design reviews
Running formal, documented reviews at defined stages, with approvals and sign-off captured
Verification and validation
Proving design outputs meet design inputs (verification) and that the finished product meets user needs (validation)
Design transfer
Carrying design outputs into production specifications without losing traceability
Design changes
Controlling and documenting changes to design inputs, outputs, or related records after initial approval
DHF documentation
Compiling the Design History File as a complete, traceable record of the design process
Approval history and audit trails
Maintaining a time-stamped, attributable record of who reviewed, approved, or changed what, and when
For life sciences and medical device teams, ISO 13485 sets much of the underlying quality management system structure design controls sit within — and under the QMSR, that structure is now directly referenced in U.S. federal regulation. Design control software should help teams maintain controlled, traceable records for design and development that hold up under either framework, without duplicating work across systems.
Verification and validation is where design controls get proven out and where traceability gaps are most likely to surface during an audit or inspection. Design control software improves V&V traceability by linking user needs, design inputs, design outputs, test protocols, test results, risks, and approval records into one connected chain, instead of leaving reviewers to match test reports back to requirements manually.
Key traceability connections design control software should maintain:
Done well, this reduces missing records, speeds up reviews, strengthens audit readiness, and gives teams clearer visibility into release readiness before a product moves forward.
Follow these practical best practices to improve user adoption, maintain traceability, and establish compliant design control workflows.
Define clear ownership across QA, RA, engineering, and product teams before design control workflows go live, so no design record sits without an accountable owner.
Standardize design input, output, review, V&V, and DHF templates so records stay consistent across products and teams.
Connect risk management early in the design process rather than treating it as a parallel activity — link risk controls to design inputs and outputs from the start.
Use traceability dashboards to monitor gaps and pending actions instead of waiting for a pre-audit scramble to find them.
Validate design control workflows before full rollout, especially for regulated products where the system itself may need to meet software validation expectations.
Train users on approvals, documentation, and change control so the system gets used consistently, not just configured correctly.
Link design records with CAPA, document control, and audit trails so design issues, their resolution, and supporting documentation stay connected.
In practice: in medical devices and diagnostics, this often means tying DHF records directly to the risk files required under ISO 13485. In pharma and biotech, it can mean connecting design and development records for combination products to the broader GMP quality system rather than managing them separately.
Poor user adoption
Teams keep working in spreadsheets alongside (or instead of) the new system, reintroducing the disconnected records design control software is meant to eliminate.
Incomplete or inaccurate data migration
Legacy design records that are only partially or incorrectly migrated create traceability gaps from day one.
Disconnected design, quality, and regulatory processes
Implementing design control software as a standalone tool, separate from the rest of the QMS, recreates the same silos it was meant to remove.
Unclear ownership across teams
Without a defined owner for each design record or workflow step, reviews and approvals stall.
Lack of validation planning
Rolling out design control software without a validation plan can leave the system itself out of compliance in regulated environments.
Resistance from spreadsheet users
Teams comfortable with familiar templates may resist a new workflow, especially if training is rushed.
Most of these challenges trace back to the same root causes: unclear ownership, rushed rollout, and incomplete planning. Companies that avoid them tend to do a few things consistently: assign clear ownership before implementation starts, roll out in phases rather than all at once, validate workflows against real use cases, invest in proper user training, and plan data migration carefully rather than treating it as a technical afterthought.
Companies typically move from spreadsheets and templates to design control software once manual traceability starts costing them time they can't get back, when compiling a traceability matrix for an audit takes days instead of minutes, when a design review can't proceed because no one's sure which document version is current, or when a submission gets delayed while the team reconstructs a Design History File from scattered files. If any of that sounds familiar, it's usually a sign the design control process has outgrown manual tools.
Audit-ready product development comes down to a few consistent capabilities:
CQ's design control software is built around these principles, so audit readiness is a byproduct of normal workflow rather than a separate pre-audit project.
9 Must-have Checklists for Effective Product Design Management
Checklist | January 27th, 2023
Understanding Design Controls “Input & Outputs” Requirements
Checklist | August 17th, 2022
Complying with the Regulatory Requirements During Design and Development Stages
Assessment of the Core Activities of Design and Development
Checklist | August 3rd, 2021
There isn't a single, universally recognized "four types" classification for design control software, worth noting since the phrase suggests an established framework that doesn't quite exist. Functionally, most solutions fall into a few categories: standalone design control tools built for a single product line, PLM platforms with a design control module attached, QMS platforms like ComplianceQuest built design control into a connected quality system, and manual spreadsheet or document-based approaches that predate dedicated software. The right category depends on whether you need design control connected to your broader quality, risk, and compliance processes, or as a separate point solution.
Key evaluation points include: support for FDA design control requirements and ISO 13485; a live traceability matrix connecting requirements, outputs, and V&V evidence; integration with the rest of the QMS (risk, CAPA, document control); support for software validation; and how well the system scales across product lines and sites as the company grows.
Requirements management, a traceability matrix, stage-gated design review workflows, risk linkage, DHF control, document control with version history, audit trails, and a direct connection to CAPA all support the recordkeeping and traceability expectations behind FDA-regulated device development.
ISO 13485 (and now the QMSR, which incorporates it by reference) expects design and development activities to be planned, reviewed, verified, validated, and documented as a controlled process. Design control software structures those activities, inputs, outputs, reviews, V&V, transfer, and changes, and keeps the resulting records tied to the rest of the quality management system instead of managed separately.
The core requirement is a shared data model: requirements, risk, V&V, CAPA, and document control need to reference the same underlying design records, so a change in one place is reflected everywhere it's connected, rather than requiring someone to manually update four different systems.
A phased approach works best: map current spreadsheet fields and templates to the new system's structure, migrate active projects first rather than the full historical archive at once, validate the new workflows against real use cases, train users thoroughly, and run a transition period before retiring the spreadsheets entirely.
By removing the time spent manually reconciling traceability across documents, catching gaps before V&V or design transfer, when they're cheaper to fix, and giving reviewers everything they need in one place instead of chasing down documents across teams.
Without proper design controls and supplier management, creating a digital footprint for your products – so you can improve quality,…
Today, it is critical that engineering and quality teams work…
The Food and Drug Administration1 (21CFR 820.30) defines Design Controls…
Key Highlights: Design Control can improve the product design, making…
Learn about all features of our Product, Quality, Safety, and Supplier suites. Please fill the form below to access our comprehensive demo video.
Please confirm your details
By submitting this form you agree that we can store and process your personal data as per our Privacy Statement. We will never sell your personal information to any third party.
Enter Captcha
Why take the guided tour of CQ Document Management
What you can expect
Agenda
Why take the guided tour of CQ Change Management
Why take the guided tour of CQ Training Management
Why take the guided tour of CQ CAPA Management
In this guided product walk-through tour, we will show you:
Why take the guided tour of CQ Nonconformance Management
Why take the guided tour of CQ CAPA 8D
Why take the guided tour of CQ Supplier Management
Why take the guided tour of CQ Safety Incidents
Why take the guided tour of CQ Audit Management
Why take the guided tour of CQ Complaints Product Tour
Why take the guided tour of Complaints Medical Device
Why take the guided tour of Operational Risk Management Software
Why take the guided tour of Equipment Management
In this guided product tour, we will show you:
Why take the guided tour of Product Inspection
Why take the guided tour of CQ Lab Issues
Why take the guided tour of CQ Management Review
Why take the guided tour of Product Design Control
In this guided product walkthrough tour, we will show you:
Why take the guided tour of Digital SOP
Why take the guided tour of Product Lifecycle Management