--- title: 'Senior Low-level Control Engineer - End-Effectors at Humanoid' canonical: 'https://feeny.ai/job/senior-low-level-control-engineer-end-effectors-humanoid-london-bxkk2xsgxmwa' type: 'job' last_seen: '2026-09-10' --- # Senior Low-level Control Engineer - End-Effectors at Humanoid - **Company:** [Humanoid](https://feeny.ai/companies/humanoid) - **Location:** London, United Kingdom - **Employment:** full-time - **Work type:** onsite - **Posted:** 2026-08-23 - **Last confirmed live:** 2026-09-10 - **Apply:** https://jobs.ashbyhq.com/humanoid/c08fb643-c84c-4e48-a731-349e7acad6b8 ## Job description Here at Humanoid, we believe in a future where robots amplify human potential. That’s why we’ve set out on a mission to build the world’s most capable, commercially-scalable, and safe humanoid robots. We’re bringing that mission to life with HMND‑01 Alpha - our rapidly developed humanoid platform now running in real industrial pilots - and we’re growing the team to take it even further. ## About the Role We are looking for a Senior Low-level Control Engineer to join our Control Team in London, focusing on control development and integration for our end-effectors. You will design, implement and validate actuator- and joint-level controllers and grasp-level behaviours across a family of end-effector variants - parallel and multi-finger grippers, vacuum and suction tooling, and purpose-built tooling for specific customer tasks. Each variant brings different actuation, different sensing and, critically, different transmission mechanisms: geared direct drives, cable- and tendon-driven routings, differential and coupled linkages, and underactuated designs where few actuators must produce adaptive, compliant grasping across many degrees of freedom. The ideal candidate has a solid background in control theory, strong software engineering skills in C++, and comfort working from real-time embedded control up through kinematics/dynamics and hardware debugging. You will work closely with mechanical and hardware engineers - early enough in the design cycle that your input shapes actuation and transmission choices rather than merely inheriting them. ## What You'll Do Low-Level Control Development: - Tune and validate actuator- and joint-space control loops (PID, feedforward, impedance/admittance, observers, state feedback) for multi-DoF end-effectors in ROS2. - Develop grasp-level behaviours: grasp force control, compliant closing, slip detection and correction, and adaptive grasping on underactuated grippers. - Implement safety and fault-handling mechanisms — thermal and over-current protection, stall and jam detection, grip-loss detection, safe behaviour on fault. Transmission Mechanisms, Modeling & System Identification: - Build and identify models of actuators, transmissions and mechanisms - geared, cable/tendon-driven, differential, coupled and underactuated - including compliance, friction, backlash, hysteresis, cable stretch and pretension effects. - Own the joint-to-actuator abstraction for these mechanisms and the correct exposure of joint versus actuator state through the control stack. - Contribute directly to transmission mechanism design: work with mechanical engineers on routing, reduction ratios, DoF coupling and underactuation strategy, bringing the controllability and observability consequences of each option into the conversation early. Sensor & Hardware Integration: - Integrate and calibrate end-effector sensing (F/T, tactile, encoders, temperature/current, vacuum feedback) with real-time acquisition across the control stack. - Hands-on bring-up and debugging of new end-effectors, including test-stand work and vendor-supplied units. Cross-Disciplinary Collaboration: - Close the loop with mechanical/electronics engineers across sites on actuation, transmission and sensing requirements. - Work with data collection, applications and deployment teams so end-effectors work reliably in real use. ## What We're Looking For - Shipped real-time-safe, object-oriented C++ control software running on real hardware. - Tuned and validated controllers on physical actuators, including sensor calibration and bring-up. - Modelled, identified and controlled through real mechanical transmissions - gearing, cables/tendons, differentials, coupled linkages or underactuated mechanisms - and dealt with the compliance, friction and backlash they introduce. - Worked on end-effectors or comparable multi-DoF mechanisms, including grasp control and supporting sensing. - Debugged at the fieldbus and OS layer: e.g. EtherCAT or CAN, on an RTOS or real-time Linux. - Strong control theory foundation (linear/nonlinear control, stability, observers, state estimation, feedback/feedforward, filtering, frequency-domain analysis) applied to multi-DoF mechanisms via Jacobians, numerical IK/FK, and URDF/Xacro. Nice to have: - BLDC motor control (commutation, current control, torque optimization). - ros2_control internals (hardware interfaces, controllers, controller_manager, plugins, lifecycle nodes). - Tendon- or cable-driven mechanisms specifically, including pretension management, routing friction and wear behaviour. - Tactile sensing integration; vacuum and suction tooling, including multi-cup arrays and grip-loss handling. - System identification toolchains and simulation environments (MATLAB/Simulink, MuJoCo, Isaac Sim). ## What We Offer - Competitive equity: stock options with meaningful upside as we scale. - 30+ paid days off, including 23 days of annual leave, all UK bank holidays, and additional company closure days (including Christmas–New Year shutdown). - Private healthcare, including virtual and in-person care. - Pension scheme with 8% total contribution (5% employee, 3% employer) on full earnings. - Free daily breakfast, catered lunch, and snacks in-office. - Work at the frontier - collaborate daily with world-class engineers, researchers, and product experts building the next generation of AI and humanoid robotics. - Real ownership - direct access to founding leadership, meaningful input on product direction, and the ability to drive key initiatives from day one. ## About Humanoid ## Company Overview - **One-liner**: Humanoid builds commercially scalable, safe, and reliable humanoid robots designed to automate labor-intensive industrial tasks across warehousing, logistics, manufacturing, and retail. - **Entity Type**: Private (Seed stage) - **Headquarters**: London, United Kingdom (HQ) with offices in Cambridge, MA, USA; Burnaby, BC, Canada; and additional presence in Germany, Georgia, and the UAE. - **Founded**: 2024 - **Founders**: Artem Sokolov (CEO & Founder) ## Core Business - **Primary industry/industries**: Robotics Engineering, Humanoid Robotics, Industrial Automation, Artificial Intelligence - **Target customers**: B2B / Enterprise — industrial sectors including retail, e-commerce, third-party logistics (3PL), manufacturing, and automotive. - **Mission or purpose statement**: “Empowering humanity by building the most reliable, safe, and helpful humanoid robots.” The company aims to free people from repetitive, dangerous, and tedious work, allowing them to engage in more creative and meaningful activities. ## Products & Services - **HMND 01 Alpha Wheeled**: A robust industrial-grade wheeled humanoid robot designed for material handling, pick-and-place, and visual inspection in warehouses and factories. Prioritizes reliability, low total cost of ownership (TCO), and minimal maintenance. - **HMND 01 Alpha Bipedal**: A bipedal humanoid robot for more complex environments requiring advanced locomotion, navigation of confined spaces, and higher dexterity. Features human-level manipulation speeds and walking speeds up to 1.5 m/s. - **KinetIQ**: An AI framework for orchestrating fleets of humanoid robots across both wheeled and bipedal platforms, enabling centralized control and task optimization. - **Modular Garments**: Exchangeable protective “garments” that allow HMND 01 robots to adapt to different use cases and environments, minimizing contamination and collision damage while enabling functional customization. ## Market Standing - **Valuation/Market Cap**: Not disclosed. - **Key Metric**: Total funding of **$50 million** (Seed round closed October 2025, with 1 lead investor). - **Notable Investors/Partners**: Strategic partners include leading global companies in AI, cloud computing, and research. Specific partner names are not publicly listed on the website, but the company highlights collaboration with commercial partners to scale deployment. - **Growth Signals**: - Headcount grew **139.2% YoY** to ~182 employees (as of mid-2026), with 65 active job postings. - Opened offices in London, Boston, and Vancouver within its first year. - Team includes talent recruited from major robotics and AI firms: Sanctuary AI, Boston Dynamics, Dyson, Arrival, Ocado Technology, 1X, Wayve, Apptronik, and Brain Corp. - Focus on initial target sectors representing a combined $12 trillion in annual payroll and 250 million workers. ## Competitive Advantages - **Human-centric design**: The world is already designed for humans, so humanoids can seamlessly integrate into existing environments without costly redesign. - **Modularity**: HMND 01’s hardware/software modularity enables multi-task performance and easy repurposing, reducing the need for specialized robots. - **Reliability & low TCO**: Prioritizing hardware and software stability over raw performance to deliver industrial-grade robustness suitable for mass commercialization. - **KinetIQ fleet orchestration AI**: Proprietary framework for managing mixed fleets of wheeled and bipedal robots, differentiating from competitors focused on single-form-factor robots. - **Experienced leadership**: CEO Artem Sokolov previously scaled a family manufacturing business into a billion-dollar enterprise (EY Entrepreneur of the Year 2021). The CTO, Jarad Cannon, has extensive experience translating research into deployment-ready robotics systems. ## Strategic Focus - **Near-term (2027)**: Deploy robots for physical tasks in manufacturing, warehousing, logistics, and retail — tackling repetitive, dangerous, and tedious manual work. - **Medium-term (2029)**: Expand into the service sector, targeting the 70-80% of the global economy that will be services, with a focus on assisting an aging population (1.4B people over 60). - **Long-term (2031+)**: Enter households as assistants and companions, potentially revolutionizing everyday life across 3.5 billion homes. - **Core strategy**: Partner with leading global companies in AI, cloud, and research for technology development, and with commercial partners for scaled deployment. The company believes the humanoid TAM will reach $38 billion by 2035 and $1 trillion by 2050. ## Why Work Here - **High-growth environment**: Company grew headcount by 139% in a single year, indicating rapid scaling and opportunity for career advancement. 65+ open roles suggest strong hiring momentum. - **Talent from top robotics firms**: Team includes alumni from Boston Dynamics, Sanctuary AI, Dyson, Ocado Technology, Arrival, Wayve, and others — offering a deep learning and collaboration environment. - **Technical focus**: Engineering and technical roles represent 38% of the workforce, with senior-level hires at 23% of the team. The company emphasizes hardware, AI, machine learning, and control systems. - **Mission-driven**: Clear purpose to automate undesirable, unsafe, and repetitive work — appealing to candidates who want to make a tangible societal impact. - **Global presence**: Offices in London (HQ), Cambridge (USA), and Burnaby (Canada), plus operations in 16 countries — offering potential for international mobility and remote collaboration. - **Innovation culture**: Described as a place where engineers and researchers “move from demo to deployment” and “not just in the lab.” The CTO emphasizes building systems that perform in the real world from day one. - **Office/Hybrid policy**: Not explicitly stated, but the company has physical offices in three countries and a distributed team across 16 nations — likely supports hybrid/remote with in-office collaboration for engineering roles. ## Sources 1. [thehumanoid.ai](https://thehumanoid.ai/) 2. [thehumanoid.ai/about-us/](https://thehumanoid.ai/about-us/) 3. [thehumanoid.ai/team/](https://thehumanoid.ai/team/) 4. [thehumanoid.ai/careers/](https://thehumanoid.ai/careers/) 5. [LinkedIn Company Page](https://www.linkedin.com/company/humanoidai) 6. 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