hirly

G2i

Head of Psysical AI

Europe

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Seniority
Lead / management
Work mode
Remote-friendly
First seen by hirly
16 Sept 2026

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the posting

Head of Physical AI

  • Location: Remote — Europe and the United States preferred; exceptional candidates globally will be considered
  • Employment: Full-time
  • Reports to: CEO
  • Role type: Hands-on technical leader and team builder
  • Travel: As needed

About our Client

Our client builds the data, evaluation, and deployment layer for Physical AI.

The company works across multimodal robot and human data, annotation and assurance, model evaluation, and the systems that turn physical-world experience into useful robot behavior.

Miraxis is hardware- and model-agnostic. What matters is whether a dataset, model, or method produces a measurable improvement on a real task. The company will build focused model and evaluation capabilities where they strengthen its data products, demonstrate the value of its data, or solve a clear customer or partner problem.

The role

Our client is looking for a Head of Physical AI to establish and lead its AI research and engineering function.

You will decide which Physical AI problems the company pursues, define how results are evaluated, and remain directly involved in the most important technical work. You will connect four areas that are often treated separately:

Multimodal and embodied data

Transformer-based models and robot policies

Rigorous offline and real-world evaluation

Deployment on physical systems

This is a player-coach role. During your first year, at least half of your time will be spent on direct technical work: designing models and experiments, writing or reviewing code, inspecting data, debugging training runs, analyzing failures, and reviewing robot rollouts.

You will also build a small, focused team of researchers and engineers as the work requires it.

What you’ll do

Define a focused Physical AI research and engineering roadmap with clear hypotheses, baselines, milestones, success measures, and stop criteria.

Select the model families Miraxis should train, adapt, or evaluate and determine when to build internally, use open models, license technology, or work through partners.

Personally design, adapt, train, and evaluate Transformer-based systems for embodied tasks.

Work across areas such as vision-language-action models, multimodal Transformers, robot foundation models, action representation, imitation learning, reinforcement learning, world models, cross-embodiment transfer, and robot-policy evaluation.

Define the sensors, modalities, annotations, data mixtures, coverage, and quality controls required to train and evaluate selected models.

Measure how data quality, diversity, and composition affect model behavior and real-world task performance.

Establish reproducible offline and real-world evaluation systems, baselines, held-out conditions, and release gates.

Protect evaluations against leakage, overfitting, and weak or misleading success criteria.

Take projects from problem definition through training, hardware integration, and real-world validation.

Analyze failures across data, perception, models, control, hardware, and the operating environment.

Design safe, staged physical testing and deployment plans with clear supervision and rollback mechanisms.

Recruit and lead a small team of complementary researchers and engineers.

Lead architecture, experiment, code, rollout, and failure reviews.

Translate customer and partner needs into testable technical requirements.

Communicate technical strategy, evidence, uncertainty, and limitations clearly to customers, partners, and investors.

What we’re looking for

Deep, hands-on Transformer expertise

This is a hard requirement. You must have personally made material architecture or training decisions in at least one substantial Transformer-based system, such as:

Vision Transformers

Vision-language or vision-language-action models

Multimodal foundation models

Decision Transformers

Diffusion Transformers

Video Transformers

World models

Transformer-based perception, planning, or control systems

You should be able to explain how you represented and tokenized inputs and outputs, fused modalities, structured attention and temporal context, selected losses, built data mixtures, distributed and monitored training, diagnosed failures, and changed the system to improve task performance.

Using hosted model APIs, prompting language models, or running an unchanged public training recipe does not meet this requirement.

Physical AI experience

You have worked on machine learning for a system that perceives or acts in the physical world, such as robotics, autonomous vehicles, drones, industrial automation, manipulation, mobile robots, humanoids, or wearable and egocentric systems.

At least one substantial project must have progressed beyond offline datasets or simulation into a real or operational physical system. Simulation experience qualifies only when paired with credible sim-to-real ownership and physical validation.

Hands-on technical ability

Strong Python engineering skills

Direct experience with PyTorch or an equivalent deep-learning framework

Ability to read and debug unfamiliar model and training code

Experience designing controlled experiments and analyzing rollout failures

Experience working with large multimodal datasets

Sound judgment around compute, memory, training stability, inference latency, and cost

Technical leadership

You have set the direction for a significant research, model-development, robotics, or cross-functional technical program. You have made architecture and resource decisions, mentored or hired technical talent, stopped weak lines of work, and helped take a result into deployment.

A management title is not required, but direct technical ownership is.

Strongly preferred

Candidates combining deep Transformer expertise with strong computer-vision experience will receive priority. Relevant areas include:

Visual representation learning

VLMs and video or temporal modeling

Detection, segmentation, and tracking

Multi-view and egocentric vision

3D and spatial reasoning

Pose estimation, calibration, and localization

Sensor fusion

Real-time vision systems

Additional valuable experience includes:

Vision-language-action models or robot foundation models

Action tokenization or continuous action generation

Diffusion or flow-matching policies

Imitation learning or reinforcement learning

World models and cross-embodiment training

Robot manipulation

Distributed training and inference optimization

ROS 2

Sim-to-real transfer

Safety-critical systems

Widely used open-source work or personally owned research publications

Early-stage company experience

Work with technical customers or research partners

A PhD in machine learning, computer vision, robotics, computer science, or a related field is valuable but not required. An equivalent record of original model work, technical leadership, and real-system delivery is equally relevant.

Miraxis cares most about what you personally designed, trained, evaluated, and deployed.

What success looks like

Within 90 days:

Audit Miraxis’s data, evaluation assets, partnerships, and model opportunities.

Select one or two focused research bets.

Establish a reproducible model baseline and initial evaluation suite.

Define a credible path to physical validation.

Present a practical 12-month roadmap supported by working technical evidence.

Within six months:

Train, adapt, or rigorously evaluate at least one relevant Transformer-based model or robot policy.

Confirm or reject at least one important technical hypothesis.

Establish a repeatable data-to-training-to-evaluation workflow.

Test on a real robot, directly or through a credible hardware partner.

Document representative failures and their implications.

Within twelve months:

Demonstrate a measurable improvement attributable to Miraxis data, methods, or assurance systems.

Clos

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