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Data Scientist

Sbquantum · Sherbrooke, Quebec, J1H 1Z1, Canada · Hybrid · Active · BambooHR

Job facts

FieldValue
CompanySbquantum
TitleData Scientist
Normalized title-
Department / team-
LocationSherbrooke, Canada
Work modelHybrid / Hybrid
Employment typeFull Time
Salary-
Statusactive
ATS providerBambooHR
Posted / first seen2026-05-15 / 2026-05-30
Changed / last seen2026-05-30 / 2026-06-06

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PageWhat it containsOpen
Company jobsActive postings from Sbquantum.Open
Company breakdownsRole, location, ATS, and work model facets for this company.Open
ATS provider jobsActive postings observed through BambooHR.Open
Provider filtered searchThe same provider as a filtered job collection.Open
City jobsActive postings in Sherbrooke.Open
Work model jobsActive Hybrid postings.Open
Lifecycle eventsOpen, update, close, and reopen events for this posting.Open
Original postingCanonical source or apply URL captured from the ATS.Open

Linked records

CompanySbquantum
Source7ada67c4-7501-4acf-82f5-aebaa2d25315
ATS providerBambooHR

Description

Data Scientist Location: Sherbrooke / Boston / Montréal / Ottawa Employment Type: Full-Time in a fast-growing startup About Us SBQuantum is a seed-stage startup at the forefront of magnetic sensing innovation. Our vision is to unlock the full potential of magnetic intelligence through our proprietary quantum diamond technology and curated algorithms. By combining diamond-based quantum sensors with advanced AI-driven software, we transform complex magnetic field data into actionable, high-value insights. Our solutions enable accurate magnetic mapping, navigation and object detection in environments where traditional sensing technologies—like GPS, radar, imagery, or sonar—cannot perform. From public safety and defence to space exploration, our multidisciplinary team of engineers, physicists, and data scientists is redefining how the world perceives magnetic signals—turning invisible complexity into clear, useful intelligence. Why Join Us We’re a fast-growing deeptech startup building multiple bricks for the future of magnetic navigation. This is a unique opportunity to: Pioneer magnetic navigation for real world applications Bring your expertise in geophysics to collaborate with industry, government and contribute to an emerging product Deploy and test your solution on different platforms Have real ownership and impact in a high-growth, mission-driven environment Who We’re Looking For We’re looking for a proactive and hands-on person who thrives in building structure from the ground up and autonomous in making stuff happen. You bring a pragmatic, solution-oriented approach, with the autonomy and drive to move initiatives forward in a fast-paced environment. You’re highly collaborative, able to work seamlessly across technical and non-technical teams and motivated by delivering meaningful impact through strong execution. Key Responsibilities Vector magnetic compensation algorithm development - Design, implement, and validate vector magnetic compensation algorithms; including Tolles-Lawson and extended models to characterise and remove platform-induced magnetic interference across all three field components. Adopt a rigorous testing against ground truth and in-flight datasets, and an awareness of how compensation quality directly impacts end-user navigation performance. Pattern recognition & signal analysis - Interrogate large, multi-channel magnetic and inertial datasets to identify systematic patterns, interference signatures, and anomalous behaviour; applying statistical analysis, spectral methods, and machine learning techniques to extract actionable insight from complex, noisy signals in operational navigation contexts. Algorithm testing, benchmarking & iteration Build and maintain structured test frameworks to benchmark compensation performance across platforms, flight regimes, and environmental conditions; tracking residual error metrics, iterating on model parameters, and documenting improvement cycles with reproducible results that can be clearly communicated to navigation system integrators. Data pipeline development & management - Develop robust, well-documented Python pipelines for ingesting, synchronising, and pre-processing multi-sensor data streams — ensuring consistent data formats, calibration traceability, and version control across field campaigns and laboratory experiments, with outputs structured to meet the ingestion requirements of downstream navigation systems. Cross-disciplinary collaboration & end-user engagement - Work closely with geophysicists, INS/navigation engineers, and platform specialists to align compensation outputs with navigation requirements; engaging directly with end users in the navigation space to understand operational constraints, gather feedback on delivered data products, and ensure algorithm development remains grounded in real-world mission needs. Critical evaluation of models & assumptions - Critically assess the validity of compensation models and their underlying assumptions across varying operational contexts; challenging results that appear too clean, identifying failure modes under edge-case conditions, and proposing alternative modelling approaches where standard methods reach their limits, with findings fed back to relevant stakeholders and end users. Insight communication & technical reporting - Communicate findings clearly to both technical and non-technical stakeholders; including prospective and active end users in the navigation domain. Produce well-structured reports, visualisations, and presentations that distill complex compensation performance results into clear conclusions informing system design decisions, procurement discussions, and operational planning. What We’re Looking For 5 years of experience in a startup environment Background in magnetic compensation algorithms, ML processing pipelines and data science Experience in autonomous platforms deployment Drive to engage with prospective, current clients and engage at conferences to disseminate product knowledge Comfortable wearing multiple hats and switching contexts quickly Strong problem-solver with a bias toward action Excellent communication skills (written and verbal) Experience with custom Python code Nice-to-Haves Experience in deeptech, hardware, or scientific environments Bilingual English/French What We Offer Flexible hybrid work environment Opportunity to shape both the company and its culture Equity Growth opportunities as SBQuantum scales

Full job record

Job ID5b2a707225567f3b4d6e7d38300c49bf26a90d12
Org ID5aa5fe14-383c-466c-8cd2-9bb2616881d2
Source ID7ada67c4-7501-4acf-82f5-aebaa2d25315
Board ID7ada67c4-7501-4acf-82f5-aebaa2d25315
Providerbamboohr
Provider Job Key46
TitleData Scientist
Normalized Title
Statusactive
Activeyes
Location TextSherbrooke, Quebec, J1H 1Z1, Canada
Department
Team
Employment Typefull_time
Workplace Typehybrid
Remote Policyhybrid
CountryCanada
Region
CitySherbrooke
Salary Raw
Salary Min
Salary Max
Salary Currency
Salary Period
Source URLhttps://sbquantum.bamboohr.com/careers/46
Apply URLhttps://sbquantum.bamboohr.com/careers/46
First Seen At2026-05-30 05:53:32Z
Last Seen At2026-06-06 10:24:39Z
Last Checked At2026-06-06 10:24:39Z
Last Changed At2026-05-30 05:53:32Z
Inactive At
Source Posted At2026-05-15 00:00:00Z
Source Updated At
Raw Payload Uris3://job-postings-prod-raw-590183727216/raw/provider=bamboohr/board=sbquantum/date=2026-06-06/2026-06-06T10-24-39-005Z-c0124b9a2fcd72874f5997acbf69fb61cc1b0235126e678ddef99fa57e237ed9.json
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    "description": "<p><span style=\"font-weight: bold\">Data Scientist</span></p>\n<p><span style=\"font-weight: bold\">Location:</span> Sherbrooke / Boston / Montréal / Ottawa<br><span style=\"font-weight: bold\">Employment Type:</span> Full-Time in a fast-growing startup </p>\n<p><span style=\"font-weight: bold\">About Us</span></p>\n<p>SBQuantum is a seed-stage startup at the forefront of magnetic sensing innovation. Our vision is to unlock the full potential of magnetic intelligence through our proprietary quantum diamond technology and curated algorithms.</p>\n<p><br></p>\n<p>By combining diamond-based quantum sensors with advanced AI-driven software, we transform complex magnetic field data into actionable, high-value insights. 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This is a unique opportunity to:</p>\n<ul>\n<li><br><span><span style=\"font-weight: bold\">Pioneer magnetic navigation for real world applications</span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Bring your expertise in geophysics to collaborate with industry, government and contribute to an emerging product</span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Deploy and test your solution on different platforms</span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Have real ownership and impact in a high-growth, mission-driven environment</span></span></li>\n</ul>\n<p><br></p>\n<p><span style=\"font-weight: bold\">Who We’re Looking For</span></p>\n<p>We’re looking for a proactive and hands-on person who thrives in building structure from the ground up and autonomous in making stuff happen. You bring a pragmatic, solution-oriented approach, with the autonomy and drive to move initiatives forward in a fast-paced environment. You’re highly collaborative, able to work seamlessly across technical and non-technical teams and motivated by delivering meaningful impact through strong execution.</p>\n<p><br></p>\n<p><span style=\"font-weight: bold\">Key Responsibilities</span><br></p>\n<p><br></p>\n<ul>\n<li>Vector magnetic compensation algorithm development - Design, implement, and validate vector magnetic compensation algorithms; including Tolles-Lawson and extended models to characterise and remove platform-induced magnetic interference across all three field components. Adopt a rigorous testing against ground truth and in-flight datasets, and an awareness of how compensation quality directly impacts end-user navigation performance.</li>\n<li>Pattern recognition &amp; signal analysis - Interrogate large, multi-channel magnetic and inertial datasets to identify systematic patterns, interference signatures, and anomalous behaviour; applying statistical analysis, spectral methods, and machine learning techniques to extract actionable insight from complex, noisy signals in operational navigation contexts.</li>\n<li>Algorithm testing, benchmarking &amp; iteration Build and maintain structured test frameworks to benchmark compensation performance across platforms, flight regimes, and environmental conditions; tracking residual error metrics, iterating on model parameters, and documenting improvement cycles with reproducible results that can be clearly communicated to navigation system integrators.</li>\n<li>Data pipeline development &amp; management - Develop robust, well-documented Python pipelines for ingesting, synchronising, and pre-processing multi-sensor data streams — ensuring consistent data formats, calibration traceability, and version control across field campaigns and laboratory experiments, with outputs structured to meet the ingestion requirements of downstream navigation systems.</li>\n<li>Cross-disciplinary collaboration &amp; end-user engagement - Work closely with geophysicists, INS/navigation engineers, and platform specialists to align compensation outputs with navigation requirements; engaging directly with end users in the navigation space to understand operational constraints, gather feedback on delivered data products, and ensure algorithm development remains grounded in real-world mission needs.</li>\n<li>Critical evaluation of models &amp; assumptions - Critically assess the validity of compensation models and their underlying assumptions across varying operational contexts; challenging results that appear too clean, identifying failure modes under edge-case conditions, and proposing alternative modelling approaches where standard methods reach their limits, with findings fed back to relevant stakeholders and end users.</li>\n<li>Insight communication &amp; technical reporting - Communicate findings clearly to both technical and non-technical stakeholders; including prospective and active end users in the navigation domain. Produce well-structured reports, visualisations, and presentations that distill complex compensation performance results into clear conclusions informing system design decisions, procurement discussions, and operational planning.</li>\n</ul>\n<p><br></p>\n<p><span style=\"font-weight: bold\">What We’re Looking For</span></p>\n<ul>\n<li><br><span style=\"font-weight: bold\">5 years of experience in a startup environment </span></li>\n<li><span style=\"font-weight: bold\">Background in magnetic compensation algorithms, ML processing pipelines and data science</span></li>\n<li><span style=\"font-weight: bold\">Experience in autonomous platforms deployment</span></li>\n<li><span style=\"font-weight: bold\">Drive to engage with prospective, current clients and engage at conferences to disseminate product knowledge</span></li>\n<li><span style=\"font-weight: bold\">Comfortable wearing multiple hats and switching contexts quickly </span></li>\n<li><span style=\"font-weight: bold\">Strong problem-solver with a bias toward action </span></li>\n<li><span style=\"font-weight: bold\">Excellent communication skills (written and verbal) </span></li>\n<li><span style=\"font-weight: bold\">Experience with custom Python code</span></li>\n</ul>\n<p><br></p>\n<p><span style=\"font-weight: bold\">Nice-to-Haves</span></p>\n<ul>\n<li><br><span><span style=\"font-weight: bold\">Experience in deeptech, hardware, or scientific environments </span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Bilingual English/French</span></span></li>\n</ul>\n<p><br></p>\n<p><span style=\"font-weight: bold\">What We Offer</span></p>\n<ul>\n<li><br><span><span style=\"font-weight: bold\">Flexible hybrid work environment </span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Opportunity to shape both the company and its culture </span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Equity </span></span></li>\n<li><br><span><span style=\"font-weight: bold\">Growth opportunities as SBQuantum scales</span></span></li>\n</ul>\n<p><br></p>",
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