Senior Systems & Electronics Engineer · UK

I understand what happens between systems.

I design, integrate and troubleshoot complex electronic systems across hardware, embedded software, communications and real-world behaviour.

EV battery systems · BMS · electronics · CAN/UDS diagnostics · IoT · sensing · validation · system integration

MM / SYSTEMComplete
system view
ACTIVE
Electronics
Embedded
CAN / UDS
Diagnostics
Integration
Validation
ELECTRONICSSENSORSEMBEDDEDCANUDSBMSMQTTINTEGRATIONVALIDATIONROOT CAUSE

Engineering at system scale

Technical range backed by programme delivery

5+Vehicle programmes
10+BMS and ECU variants
1200VDC system experience
1500+Requirements managed

Engineering journey

From electronic control to complete-system ownership.

The progression is not away from hands-on engineering. It is toward owning more of the system, its interfaces and the evidence needed to deliver it.

01
2018 — 2020

Electronics Engineer

Potenza Technology

Electronic control and embedded-system development for EV and energy-storage applications, from prototype bring-up through integration.

02
2020 — 2023

Electronics Engineer

IVECO Group / FPT Industrial

Electronics, BMS, CAN/UDS diagnostics, vehicle integration and production release across multiple control-system variants.

03
2023 — Present

Senior Systems Engineer

IVECO Group / FPT Industrial

System-level BMS delivery, architecture, requirements, interfaces, validation and cross-functional technical ownership.

04
Personal projects

Systems & Product Engineering

Independent engineering

Connected sensing, industrial IoT, diagnostics and prototype architectures that extend the complete-system approach.

Capability matrix

Depth at the interfaces

The hardest failures rarely sit neatly inside one discipline. They emerge where electronics, embedded behaviour, communications and validation meet.

01

Systems architecture

Requirements, interfaces and technical decisions that hold across the complete system.

02

EV battery & BMS

Architecture, SoC/SoH, HVIL, high-voltage integration, diagnostics and validation.

03

CAN UDS diagnostics

Network architecture, DBC, diagnostic behaviour, programming workflows and fault isolation.

04

Electronics & sensing

Analogue and digital interfaces, acquisition, instrumentation and embedded integration.

05

Connected products

Sensor gateways, edge processing, MQTT, wireless connectivity and remote monitoring.

06

Verification & safety

MiL, SiL, HiL, requirements-based testing, ISO 26262 and integration evidence.

Engineering work

Systems, products and investigations

Professional experience is presented at high level; all remaining case studies are personal projects.

01Professional experience / EV / Battery Systems

Battery Management System Development & Integration

Professional involvement across the BMS engineering lifecycle, from requirements and electronics design through embedded development, validation, vehicle integration and customer support.

SYS / 01BMS Engineering Lifecycle architecture
01RequirementsSystem · interfaces
02Electronics designSchematic · PCB · simulation
03Embedded & diagnosticsDevelop · integrate · test
04ValidationHardware · software · functional
02Personal project / IoT / Industrial Systems

Mesher Vector — Industrial IoT Gateway

A connected gateway concept for bringing useful machine and sensor data into remote monitoring and analysis workflows.

SYS / 01Mesher Vector architecture
01Sensors / equipmentAnalogue · digital
02Mesher VectorAcquisition gateway
03Edge processingFilter · contextualise
04MQTT / cloudTransport · storage
03Personal project / Automotive Diagnostics

CAN / UDS Diagnostic & ECU Programming Tool

A Windows engineering tool for controlled diagnostic communication and ECU programming workflows over CAN.

SYS / 01CAN / UDS Tool architecture
01PC applicationWorkflow · operator UI
02Kvaser CANlibInterface layer
03CAN networkTransport
04UDS servicesSession · security · transfer
04Personal project / Electronics / Sensing

Multi-Sensor Biomedical Data Acquisition Platform

A synchronised embedded acquisition platform spanning ECG, acoustic and inertial sensing, local display and wireless/storage paths.

SYS / 01Multi-Sensor Acquisition architecture
01ECG · PCG · IMUMulti-rate sensors
02AcquisitionSample · timestamp
03Embedded processingBuffer · synchronise
04Storage / radioSD · BLE · Wi-Fi

Operating method

Instrument.
Understand.
Resolve.

01

Model the system

Requirements, constraints, interfaces and intended behaviour.

02

Find the evidence

Measurements, traces, logs, failure modes and reproducible conditions.

03

Close the gap

Architecture, electronics, firmware, communications and integration.

04

Prove the outcome

Verification, validation evidence, documentation and handover.

Recurring system challenges

Where system-level thinking matters.

01An electronic prototype is not behaving reliably.
02Battery or BMS behaviour cannot be explained.
03CAN or UDS integration is blocking delivery.
04A connected product needs a defensible architecture.
05Hardware and software teams disagree on the root cause.
06A system needs validation evidence before release.

Explore further

A portfolio built around complete-system understanding.

Explore the case studies, engineering journey and technical methods behind work across electronics, embedded systems, diagnostics and integration.