diff --git a/resume.json b/resume.json index aba148e..43b1208 100644 --- a/resume.json +++ b/resume.json @@ -2,9 +2,9 @@ "$schema": "https://raw.githubusercontent.com/jsonresume/resume-schema/v1.0.0/schema.json", "basics": { "name": "Jacques Thomazo", - "label": "Battery Systems Technical Lead · Backend & Data Platform Developer · 15+ years from cell chemistry to fleet data", + "label": "Battery Systems & Data Platform Technical Lead", "email": "jacques.thomazo@gmail.com", - "summary": "Battery systems engineer turned platform builder: 15 years across cell selection, pack design & validation, system sizing & modelling, now building the telemetry and diagnostics platform that turns fleet data into battery engineering decisions.", + "summary": "15+ years of experience from cell chemistry to connected-fleet diagnostics. I design and build the telemetry, diagnostic and engineering-data systems that turn vehicle data into battery decisions.", "location": { "postalCode": "86000", "city": "Poitiers", @@ -16,62 +16,57 @@ "network": "LinkedIn", "username": "jacques-thomazo-battery", "url": "https://www.linkedin.com/in/jacques-thomazo-battery/" + }, + { + "network": "GitHub", + "username": "JayTeeBat", + "url": "https://github.com/JayTeeBat" } ] }, "skills": [ { - "name": "Battery Systems sizing", + "name": "Battery system design", "keywords": [ - "Requirements analysis", - "Duty-cycle interpretation", + "Requirements & duty-cycle analysis", + "System sizing", "Ragone analysis", "Cell selection", - "Series/Parallel topology definition", - "Matlab/Simulink/Python" + "Series/parallel architecture" ] }, { - "name": "Battery Systems modelling", + "name": "Battery modelling & analytics", "keywords": [ "SOH estimation & prediction", "Energy management strategies", - "Power/Energy performance simulation", - "Matlab/Simulink/Simscape/Python" + "Power/energy simulation", + "MATLAB/Simulink/Simscape", + "Python" ] }, - { - "name": "Backend & data platform", - "keywords": ["Python", "FastAPI", "Pydantic", "REST & WebSocket APIs", "OpenAPI", "MongoDB", "Docker", "Linux"] - }, - { - "name": "Software architecture, quality & delivery", - "keywords": ["Multi-repo component boundaries", "Versioning & schema evolution", "Dependency locking & packaging", "ruff", "ty", "pytest", "pre-commit", "CI/CD gates"] - }, { "name": "Vehicle diagnostics & IoT", - "keywords": ["CAN", "ISO-TP", "UDS", "OBD2", "J1939", "DID/DTC", "Gateway configuration", "Telemetry pipelines"] + "keywords": ["CAN", "ISO-TP", "UDS", "OBD-II", "J1939", "DID/DTC", "Gateway configuration", "Telemetry pipelines"] }, { - "name": "AI-assisted engineering", - "keywords": ["Agentic CLI workflows (Claude Code & ChatGPT Codex)", "Subagent orchestration", "Spec-driven prompting", "AGENTS.md rule systems", "AI code review & CI gating"] + "name": "Backend platforms & software delivery", + "keywords": ["Python", "FastAPI", "Pydantic/OpenAPI", "REST/WebSocket APIs", "MongoDB", "Docker/Linux", "Versioned schemas", "Testing & CI/CD"] } ], "work": [ { "name": "Forsee Power", "position": "Senior Battery Data Scientist", - "location": "Poitiers, France", + "location": "Chasseneuil-du-Poitou, Nouvelle-Aquitaine, France", "startDate": "2024-05", "summary": "Build an IoT telemetry service and data platform end-to-end.", "highlights": [ - "Implement a remote diagnostic reporting service for telemetry-equipped vehicles, cutting report generation from 2 days & €1,000 down to 200 seconds & €0.50.", - "Build the IoT backend services in Python and FastAPI — REST and WebSocket APIs, Pydantic models published as OpenAPI, MongoDB persistence, and retry and failure handling for external API requests.", - "Lead a cross-functional team of 5 managers, with 19 department ambassadors to implement a 100+ strong company-wide resources SharePoint service.", - "Specify diagnostic strategy over CAN (UDS, J1939, OBD2, DID/DTC) and configure gateways across a fleet of 100 vehicles (8 customers, 7 products, 2 generations).", - "Define the architecture and technical stack of the IoT toolchain platform: component boundaries across a multi-repo toolchain, with versioning and schema evolution rules that keep services compatible as the data model changes.", - "Set the team's CI enforced software quality bar: ruff formatting and static analysis, ty type checking, pytest, pre-commit.", - "Run an AI agent-based development workflow (CLI agents/subagents) behind the CI quality gates above — the leverage that lets me deliver the full platform as its main developer, in a team of two." + "Automate remote diagnostic reporting for telemetry-equipped vehicles, cutting per-report turnaround from 1 day to 200 seconds and cost from €1,000 to €0.50.", + "Build the IoT backend in Python and FastAPI: REST and WebSocket APIs, Pydantic/OpenAPI models, MongoDB persistence, and resilient external API integrations.", + "Define CAN diagnostic strategy (UDS, J1939, OBD-II, DID/DTC) and configure gateways for 100 vehicles across 8 customers, 7 products and 2 generations.", + "Architect and deliver a versioned, multi-repository IoT platform as the primary developer in a two-person team, using CI-gated AI workflows to preserve service compatibility and software quality.", + "Lead a cross-functional team of 5 managers and 19 departmental ambassadors to implement a company-wide SharePoint service containing 100+ resources." ], "x-highlights": { "SharePoint": ["full", "lead"] @@ -85,9 +80,9 @@ "endDate": "2024-05", "highlights": [ "Reworked SOH estimation and prediction algorithms for the embedded application, bringing accuracy to ±3%.", - "Built a hybrid Fuel-Cell Battery System model to explore optimised Energy Management Strategies (Matlab/Simulink/Simscape, Git).", - "Led development of the Next Generation high cell integration density Battery Platform (Cell-to-pack mass ratio >80%).", - "Delivered in-house manufactured prototype packs (5 units, 17kWh/800V/LTO) for a key railway project." + "Built a hybrid fuel-cell battery system model to explore optimised energy management strategies (MATLAB/Simulink/Simscape, Git).", + "Led development of a next-generation, high-cell-integration-density battery platform (cell-to-pack mass ratio >80%).", + "Delivered five in-house manufactured prototype packs (17 kWh, 800 V, LTO) for a key railway project." ] }, { @@ -96,9 +91,9 @@ "location": "Woking, United Kingdom", "startDate": "2019-08", "endDate": "2020-08", - "summary": "Technical lead on a top tier, high performance racing EV battery concept.", + "summary": "Technical lead on a top-tier, high-performance racing EV battery concept.", "highlights": [ - "Simulated and optimised battery system sizing against tender requirements — 43kWh/600kW/284kg/220L/800V.", + "Simulated and optimised battery system sizing against tender requirements — 43 kWh, 600 kW, 284 kg, 220 L, 800 V.", "Defined, tracked and analysed results of a cell performance test plan." ] }, @@ -118,7 +113,7 @@ "location": "London, United Kingdom", "startDate": "2018-01", "endDate": "2018-08", - "summary": "Owned the development lifecycle for HV & LV batteries, PCBs and electrical systems: requirements, concepts, design reviews, testing and validation. Modular 2kWh/400V architecture.", + "summary": "Owned the development lifecycle for HV & LV batteries, PCBs and electrical systems: requirements, concepts, design reviews, testing and validation. Modular 2 kWh, 400 V architecture.", "highlights": [ ] }, @@ -128,7 +123,7 @@ "location": "Greenford, Greater London, United Kingdom", "startDate": "2017-07", "endDate": "2017-12", - "summary": "Implemented a long-term (6 months) cell-level test bench (0-5V & 25A/channel × 16 channels) for performance and durability testing, from specifications through to continuous data monitoring pipelines.", + "summary": "Implemented a long-term (6 months) cell-level test bench (0–5 V and 25 A/channel × 16 channels) for performance and durability testing, from specifications through to continuous data monitoring pipelines.", "highlights": [ ] }, @@ -138,7 +133,7 @@ "location": "Greenford, Greater London, United Kingdom", "startDate": "2015-07", "endDate": "2017-06", - "summary": "Multidisciplinary battery engineer, tackling from HV components sizing (600V architecture) and selection to small batch battery production (4 × 15kWh battery systems) through 3D prototyping (10-batch PDU enclosure parts, PETG) and Cooling System simulation (dual 15kWh pack system, immersion cooling).", + "summary": "Multidisciplinary battery engineer working across HV component sizing and selection (600 V architecture), small-batch production (4 × 15 kWh battery systems), 3D prototyping (10-part batch of PETG PDU enclosures) and cooling-system simulation (dual 15 kWh pack system, immersion cooling).", "highlights": [ ] }, @@ -148,7 +143,7 @@ "location": "Guyancourt, France", "startDate": "2011-04", "endDate": "2015-06", - "summary": "Built, led and owned battery safety validation (mechanical, thermal, electrical) for hybrid and electric vehicles battery systems, from 48 to 400V — Projects: Twizy, Fluence, Kangoo, Zoe Gen 1 & 2, 48V LTO mild-hybrid battery.", + "summary": "Built, led and owned battery safety validation (mechanical, thermal, electrical) for hybrid and electric vehicle battery systems, from 48 to 400 V — projects: Twizy, Fluence, Kangoo, ZOE Gen 1 & 2, 48 V LTO mild-hybrid battery.", "highlights": [ ] }, @@ -158,10 +153,10 @@ "location": "Chatou, France", "startDate": "2010-03", "endDate": "2010-08", - "summary": "Synthesis and characterisation of the zinc-oxide front layer of CIGS thin-film photovoltaic cells.", + "summary": "Synthesis and characterisation of the zinc oxide front layer of CIGS thin-film photovoltaic cells.", "highlights": [ "Electrochemical synthesis in aqueous solution.", - "Characterisation of the resulting layers (Hall effect, electrochemical impedance, four-point resistivity, Schottky-diode impedance).", + "Characterisation of the resulting layers (Hall effect, electrochemical impedance, four-point resistivity, Schottky diode impedance).", "Characterisation of the completed cells." ], "x-tags": ["full"] @@ -211,8 +206,8 @@ "education": [ { "institution": "École Nationale Supérieure de Chimie de Paris (Chimie ParisTech)", - "area": "Renewable Energies, Chemistry, Electrochemistry, Physical Chemistry, Semiconductors", - "studyType": "Master of Science", + "area": "Renewable Energy, Chemistry, Electrochemistry, Physical Chemistry and Semiconductors", + "studyType": "French Engineering Diploma (Diplôme d’Ingénieur)", "startDate": "2007", "endDate": "2010" },