Embedded Linux Engineer (Port Phillip City)

Embedded Linux Engineer (Port Phillip City)

24 Sep
|
Andromeda
|
Port Phillip City

24 Sep

Andromeda

Port Phillip City

The Bigger Picture At Andromeda, we're building the social intelligence layer for humanoid robots - technology that allows robots to understand people, build relationships and become a meaningful part of everyday life.

Our first robot, Abi, is already doing this in aged care and healthcare, where she brings conversation, companionship and engagement to people every day.

Now we're scaling from early deployments into a platform that can operate across thousands of real-world environments. We're looking for individuals who want to tackle hard problems across robotics and AI, and help define what it means for robots to live and interact alongside people.

Our Values

Empathy - Kindness and compassion are at the heart of everything we do

Play - Play sharpens focus. It keeps us curious, fast and obsessed with the craft

Never Settle - A relentless ambition, bias toward action, and uncomfortable levels of curiosity

Tenacity - Tenacious under pressure, we assume chaos and stay in motion to adapt and progress

Unity - Different minds. Shared mission. No passengers

The Role We're looking for an Embedded Linux / Kernel Engineer to strengthen the software platform that runs on Abi and deepen our capability in one of the most foundational parts of the stack.

You’ll join the team responsible for the platform software that runs on Abi, including firmware and other onboard software. The team works across the hardware/software boundary to make the robot reliable, deployable, and easier to develop, while partnering closely with electrical, autonomy, AI, and product engineering on real-world robotic systems.

You’ll own the Linux platform that runs on our Jetson-based robots, from NixOS and kernel configuration through device bring-up and hardware integration. You’ll improve the provisioning and flashing tools that turn a new Jetson into a working robot, make OTA and platform upgrades safer and easier to test, and debug failures across boot, networking and Wi‑Fi, cameras, storage, and other peripherals. You’ll also help define the compute and hardware/software interfaces for next‑generation robots, and build the diagnostics, testing, and recovery paths needed to keep them reliable in the field.

You’ll help us make Abi easier to develop, deploy, debug, and scale. That means getting hands‑on with real hardware, tracking down tricky issues across the stack, improving our platform foundations, and building cleaner, more reliable interfaces for the rest of engineering.

This is a strong fit for someone who likes working close to the metal, enjoys debugging real systems, and wants ownership in a robotics product where Linux platform work directly affects reliability, manufacturing, deployment, and customer outcomes.

Key Responsibilities

Own and improve the Linux platform that powers Abi, including OS‑level behaviour, kernel‑adjacent integration points, hardware interfaces, and software deployment

Investigate and resolve low‑level system issues across boot, provisioning, upgrades, peripherals, networking, storage, and device stability

Support bring‑up and integration of embedded hardware and compute platforms, including working across device trees, drivers, boot configuration, vendor platform constraints,



and the definition of clean interfaces and platform expectations for next‑generation robots where required

Improve the robustness and usability of provisioning, flashing, and deployment flows for engineers, manufacturing, and field operations

Work closely with firmware, electrical, autonomy, AI, and product engineering teams to define clean interfaces between hardware and software

Contribute to OS and platform upgrade work, including kernel, JetPack, ROS, and related platform dependencies

Build or improve tooling, automation, logging, and diagnostics that make low‑level issues easier to detect, reproduce, and fix, whether working in virtualised development environments or on physical robot hardware

Support validation and testing of platform changes on real robots, including regression testing and hardware‑in‑the‑loop style workflows where useful

Produce clear technical documentation for setup, deployment, debugging, and recovery procedures so the team can operate more independently

Raise the team's depth in embedded Linux and platform engineering through reviews, pairing, and pragmatic knowledge‑sharing

Your First 3 Months at Andromeda First 30 days

Complete onboarding and induction, including core systems, tools, and ways of working

Deeply understand Abi's software and hardware architecture, with particular focus on the Linux platform, provisioning flows, update mechanisms, and hardware/software boundaries

Shadow key teammates and review the most important current pain points across kernel/platform work, deployment workflows, and active hardware integration efforts

Set up the development environment across both virtual machines and physical hardware targets, and begin making small, low‑risk fixes or improvements to platform or tooling issues

Build context on current roadmap items that touch the platform layer, such as OS upgrades, reliability work, current hardware integration, and interface/platform definition work for next‑generation robots

Days 31-60

Take ownership of one meaningful platform workstream, such as a provisioning, upgrade, hardware integration, or system reliability improvement

Begin independently debugging and resolving low‑level issues on real robots and dev hardware

Identify quick wins that reduce friction for other engineers working with Abi's Linux platform

Collaborate with adjacent teams to improve at least one hardware/software interface or operational workflow, and contribute to defining cleaner platform boundaries for next‑generation robot development

Contribute to platform testing, validation, and rollout planning for changes that affect system stability

Days 61-90

Become a go‑to engineer for a meaningful part of Abi's Linux and embedded platform

Deliver a visible improvement in at least one of reliability, deployment speed, provisioning quality, observability, or upgrade safety





Propose a short platform roadmap for the next 3-6 months, based on concrete technical debt, reliability risks, and scaling needs

Document and standardise key procedures so fewer platform tasks depend on tribal knowledge

Help level up the broader robotics software team's understanding of embedded Linux and system‑level debugging

Requirements What We're Looking For

Bachelor's degree in Computer Science, Software Engineering, Electrical Engineering, Robotics, or a related field, or equivalent practical experience

3-6 years of relevant experience in embedded Linux, systems programming, robotics software, platform software, or a closely related area

Strong Linux fundamentals, including comfort debugging system behaviour across userspace, services, device interfaces, and OS configuration

Experience working close to hardware on embedded or robotics systems

Strong programming skills in C, C++, Rust, or Python, with the ability to work effectively in at least one systems‑level language

Experience debugging real‑world issues using logs, shell tools, hardware documentation, schematics, datasheets, and disciplined root‑cause investigation

Familiarity with one or more of the following areas: kernel drivers, boot processes, device trees, BSPs, networking, storage, update systems, or hardware interface protocols

Strong ownership and execution skills in ambiguous, fast‑moving environments

Ability to work cross‑functionally with engineers from firmware, electrical, autonomy, AI, and product teams

Clear technical communication and documentation habits

Bonus Points

Experience with Linux kernel development, kernel module work, or upstream/open‑source Linux contributions

Experience with embedded ARM platforms such as NVIDIA Jetson, Raspberry Pi, or similar systems

Experience with robotics or other reliability‑critical embedded products

Experience with provisioning, OTA updates, secure boot, disk encryption, rollback, or recovery workflows

Experience with hardware‑in‑the‑loop testing, manufacturing support tools, or field diagnostics

Experience with Nix or NixOS, or strong interest in learning it

Familiarity with ROS/ROS2 or adjacent robotics tooling

Experience improving internal developer tooling for low‑level or embedded teams

Experience using systemd to configure, operate, and debug services on embedded Linux systems, including boot ordering, dependencies, logs, and recovery behaviour

Benefits The salary for this position may vary depending on factors such as job-related knowledge, skills, and experience. The total compensation package may also include additional benefits or components based on the specific role. Details will be provided if an employment offer is made.

At Andromeda Robotics, we celebrate diversity and are committed to creating an inclusive environment for all employees.

Let's build the future together.

We are an equal opportunity employer and value diversity at our company. We do not discriminate on the basis of race, religion, colour, national origin, gender, sexual orientation, age, marital status, veteran status, or disability status.

Please note: At this time, we are generally not offering visa sponsorship for this role.

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📌 Embedded Linux Engineer (Port Phillip City)
🏢 Andromeda
📍 Port Phillip City

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