Apptronik Apollo 2 is a modular industrial humanoid platform built for goods movement, kitting, packout, inspection, sorting, machine tending, and physical AI training.
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Apptronik Apollo 2 is the current generation of the Apollo humanoid platform, designed for real-world mobility, manipulation, industrial workflows, and large-scale physical AI development.
It is available in bipedal and wheeled-base configurations and combines dexterous object handling, patented high-efficiency actuators, human-centred communication, swappable batteries, Artemis robot intelligence, and Fleet Connect operations software.
Apollo 2 is being used across Apptronik Robot Park locations and customer sites for data collection and applications including goods-to-person, packout, kitting, inspection, sorting, and machine or tool tending.
Its modular form factors, operational software, and emphasis on data-driven deployment position Apollo 2 as an enterprise humanoid platform for scaling physical AI in structured environments.
Choose a bipedal configuration or wheeled base according to the workflow.
Designed for real-world manipulation, object handling, and industrial tasks.
Supports 7x22 operation, opportunity charging, and tethered power options.
Patented actuator platform designed for over 90% energy efficiency and serviceability.
Coordinates perception, planning, control, safety, tasks, and human interaction.
Monitors robots, orchestrates tasks, collects data, and manages fleet operations.
Humanoid robot
Warehouse and factory tasks
Indoor warehouses and factories
Enterprise pilot and data-collection platform
Not publicly specified
Apollo 2 arm reach is not published
Bipedal or wheeled-base configuration
Dexterous object handling
Not publicly specified
7×22 via battery swaps
Swappable batteries; flexible charging
Autonomous operation
Perception system; not specified
Apollo 2 overall dimensions are not published
Apollo 2 mass is not published



The Apptronik Apollo 2 price has not been published as a standard retail figure. Apollo 2 was unveiled as the current platform in June 2026 and is being used in Apptronik Robot Parks and customer or partner sites. Commercial cost is therefore expected to depend on the configuration, pilot scope, bipedal or wheeled base, supported task, number of robots, Artemis intelligence, Fleet Connect software, charging, integration, training and service. Earlier public information about the Apollo platform described a human-scale robot, but it did not establish a purchase price for Apollo 2.
Buyers should not rely on speculative humanoid price lists. A valid proposal should state whether it covers a research collaboration, paid pilot, enterprise deployment, hardware purchase, service agreement or data-collection programme. It should also define success criteria, customer responsibilities and the path from pilot to scale.
You can request an Apollo 2 availability and pricing enquiry through Anton Robots to review the current commercial route and compare alternatives.
You can request the Apptronik Apollo 2 through Anton Robots as a pilot, enterprise deployment or strategic programme enquiry. Apollo 2 is not currently presented as a standard off-the-shelf robot with a public checkout price and general delivery. Apptronik is working with manufacturing, logistics, retail and 3PL partners, and the platform is operating in Robot Park and customer environments to collect data and develop skills.
A serious buyer should prepare the target workflow, facility, objects, throughput, safety constraints and systems that Apollo must connect to. Apptronik can then determine whether the opportunity fits its current capabilities and deployment priorities. Before signing, confirm the exact mobility configuration, task scope, hardware access, software, data rights, integration, service, pilot duration and commercial scale-up terms.
To begin the process, request an Apptronik Apollo 2 consultation through Anton Robots and compare it with other humanoid robots.
You can find Apptronik Apollo 2 deployment information through Apptronik and specialist robot marketplaces such as Anton Robots, but the robot should not be represented as widely available retail stock. The current platform is being used in controlled Robot Park and customer-site programmes, and no public list price or standard reseller package has been announced. Be cautious with third-party pages that claim Apollo 2 is immediately for sale without identifying a supported configuration, contract or delivery route.
A genuine commercial opportunity should define the bipedal or wheeled platform, current skill, software stack, charging method, safety plan, integration and service. It should also explain whether the customer receives ownership of hardware or access under a pilot, service or partnership agreement. Earlier Apollo specifications may not describe the final Apollo 2 configuration, so buyers should request current documentation.
If you are looking for Apollo 2 for an industrial project, contact Anton Robots with the use case so availability can be checked accurately.
Yes. You can request a quote or pilot proposal for Apptronik Apollo 2 through Anton Robots. Because Apollo 2 is an emerging enterprise platform, the quote should begin with the application rather than a generic robot price.
Provide the industry, facility location, target task, object dimensions and weight, pickup and drop-off points, throughput, shift pattern, floor conditions and required integrations. The proposal should identify the robot configuration, Artemis capabilities, Fleet Connect access, batteries or charging, implementation, training, data collection, support and acceptance criteria. It should also explain which capabilities are already available and which require development.
Ask how pilot results are measured, who owns task data and learned models, what happens if performance targets are not reached, and what commercial terms apply to a scaled deployment. Anton Robots can help compare Apollo 2 with Digit, Atlas, AMRs, cobots or fixed automation before you enter a development programme.
The exact Apptronik Apollo 2 package is programme-specific, but buyers should expect the commercial discussion to cover the complete humanoid platform rather than only the physical robot. Confirm whether the proposal includes:
The buyer may need to provide fixtures, standard containers, machine interfaces, network, safe work zones and operational staff. Apollo 2 is a platform under active development, so the agreement should separate currently supported capabilities from roadmap items. Request an itemised Apollo 2 proposal through Anton Robots.
Apptronik has not published a complete public Apollo 2 specification sheet with final height, weight, payload and runtime figures as of July 2026. The previous Apollo platform was publicly described at approximately 5 ft 8 in, 160 lb, with the ability to lift about 55 lb and four-hour swappable battery packs. Those figures provide useful context but should not automatically be treated as the final specification of every Apollo 2 configuration. Apollo 2 is available with both bipedal and wheeled mobility, and the current platform has redesigned hardware, actuation and operational systems. Payload can also depend on the hand, task pose, object geometry and mobility base.
Buyers should ask Apptronik to provide the current datasheet, duty cycle, permitted load, reach, battery configuration, charging method and environmental limits for the offered unit. Do not build a business case from the older Apollo announcement alone.
Anton Robots can help you request verified Apollo 2 specifications before a pilot is approved.
The right Apollo 2 mobility configuration depends on the facility and task. The bipedal version is intended for environments built around people, where stepping, human-scale reach and movement through existing work areas are important. The wheeled-base version offers greater stability and efficiency for high-throughput workflows on suitable flat floors. A wheeled robot may use less energy, simplify control and provide more predictable movement when stairs or uneven terrain are not required. A bipedal robot can provide greater environmental compatibility but introduces more dynamic motion and recovery considerations.
Buyers should compare route distance, floor quality, thresholds, work height, load, cycle time, charging, safety and the need to move between levels or around obstacles. The task may also be better served by an AMR with a manipulator rather than a humanoid. Ask for a layout simulation and current capability demonstration using representative items.
Request Apollo 2 configuration advice through Anton Robots before selecting the platform.
Yes, Apollo 2 is being developed for warehouse, distribution and 3PL workflows. Apptronik presents solutions including goods-to-person, person-to-goods, packout, kitting, inspection and sorting. Its modular mobility and manipulation are intended to help with tasks that combine movement through human-oriented facilities with object handling. The strongest first applications are structured, repeatable and based on standard containers or products.
Buyers should not assume Apollo 2 can immediately perform every warehouse job shown in a concept video. The current skill, object range, cycle time and exception handling must be validated.
Compare the bipedal and wheeled versions against AMRs, conveyors and fixed robotic arms. A humanoid may add value when workstations, shelves and tools are already designed for people, but a simpler robot can be more efficient for long-distance transport or one repetitive station. Supply real items and process data during the pilot. Anton Robots can help define a warehouse use case that is narrow enough to test and valuable enough to scale.
Yes, Apollo 2 is designed for manufacturing applications and Apptronik has partnerships and customer programmes in industrial environments. Potential workflows include line-side material handling, kitting, packout, inspection, sorting, goods movement and support around machines or tools. The platform’s human-scale form and modular mobility are intended to work with spaces and equipment already designed for employees.
However, manufacturing value depends on repeatability, cycle time, safety, uptime and integration, not only humanoid appearance. The proposed task must be demonstrated with real components, fixtures and production constraints. Apollo 2 should not be assumed to replace skilled assembly, welding or quality personnel without a validated application. The pilot should define acceptable errors, human recovery, changeover, shift coverage and the path to production support. Compare the humanoid with cobots, industrial arms and AMRs that may solve the same task with lower technical risk.
Request an Apollo 2 manufacturing assessment through Anton Robots.
Apptronik lists machine and tool tending among the target solutions for Apollo 2. A humanoid can be relevant when the process uses controls, doors, trays and work heights designed for people, especially if the robot must move between several machines.
The actual feasibility depends on part weight, gripper or hand capability, door force, machine interface, reach, precision, cycle time, contamination, safety and fault recovery. The robot may need fixtures, automatic doors, vision, force control or a dedicated end effector even if it has dexterous hands. A wheeled Apollo 2 may provide stable and efficient movement on flat floors, while a bipedal configuration may fit more varied spaces.
Before a pilot, document every interaction with the machine and separate what is autonomous from what requires teleoperation or development. Production acceptance should include long-duration testing and recovery from jams, misloads and network loss. Anton Robots can help compare Apollo 2 with a conventional cobot machine-tending cell.
Apollo 2 uses swappable batteries and flexible charging options to support operational uptime. Apptronik describes the platform as designed for 7×22 operation, meaning long daily availability with planned interruptions rather than uninterrupted 24-hour work. Opportunity charging and tethered power can be used according to the facility and task. The exact runtime per battery for the current Apollo 2 configuration has not been publicly specified on the product page, so buyers should request duty-cycle data for the bipedal or wheeled version, load and workflow.
A successful deployment must account for productive work, battery swaps, charging, human or automated handling of batteries, spare packs and fault conditions. Ask whether batteries are manually changed, what safety procedures apply, how health is monitored and what replacement costs are expected. Uptime also depends on software, end effectors, network and service support. A pilot should measure completed tasks per battery and total availability, not only nominal hours.
Request Apollo 2 battery and fleet planning through Anton Robots.
Artemis and Fleet Connect are core parts of the Apollo platform. Artemis is Apptronik’s intelligence layer coordinating perception, planning, controls, safety, task execution and human-robot interaction.
It is intended to translate high-level goals into coordinated whole-body behaviour. Fleet Connect is the operational layer used to monitor robot status, orchestrate tasks, manage deployments, collect data and optimise a fleet. Enterprise buyers should treat these systems as part of the solution, not optional marketing features.
Ask which functions are available in the current release, how the platform integrates with WMS, MES, PLCs or customer APIs, where data is stored, what cybersecurity controls apply and how software updates are validated. For a data-collection or AI partnership, clarify ownership and permitted use of images, sensor data, task demonstrations and learned models. Also define what happens when connectivity is lost and how operators intervene. Anton Robots can help include software, data and security requirements in an Apollo 2 proposal.
Apollo 2 is commercially engaged but not generally available as an off-the-shelf product. Apptronik unveiled the current version in June 2026 and said fleets were operating across Robot Park locations and customer sites for data collection and real-world work. The company has announced industrial partnerships and presents a “get started” route for organisations, but it has not published a standard price, open delivery schedule or retail purchase process.
The practical status is best described as pilot-limited or available to selected enterprise and development partners. A buyer with a well-defined manufacturing, logistics, retail or 3PL use case may be able to enter a discussion, while a consumer or small lab seeking one unit for general experimentation may not fit the current programme. Ask for a written description of the available configuration, capability, schedule and commercial model.
Request current Apollo 2 availability through Anton Robots rather than assuming a promotional page means immediate supply.
The Apptronik Apollo 2 is worth considering for an enterprise that wants to help develop and deploy humanoid automation in a structured industrial workflow. Its bipedal and wheeled configurations, manipulation focus, efficient actuator platform, swappable batteries, Artemis intelligence and Fleet Connect software create a credible full-stack approach. Apptronik’s work with industrial partners and Google DeepMind also makes Apollo 2 relevant to organisations interested in physical AI and data-driven skill development.
The risk is maturity. Public pricing and final specifications are limited, and the robot is not a standard product with general delivery. Buyers must be willing to define tasks, provide site and operational support, accept development work and evaluate a pilot before scaling. A conventional AMR, cobot or industrial robot may deliver faster payback for a narrow task. Apollo 2 is most compelling when flexibility, human-space compatibility and long-term AI capability justify the additional uncertainty.
Compare other humanoid robots and non-humanoid alternatives before entering a programme.
International Apollo 2 deployment may be possible through selected Apptronik customer and partner programmes, but it is not a standard global shipping product. Availability depends on the target country, application, local service coverage, import rules, safety requirements, wireless approvals, data governance and Apptronik’s deployment priorities. An enterprise project will usually require Apptronik or an approved partner to assess the site, configure the robot, integrate software, train operators and support the pilot.
Buyers should confirm the contracting entity, delivery timeline, taxes, customs, local technical response, replacement strategy and whether Artemis or Fleet Connect data can be hosted and processed in the required jurisdiction. Multi-country companies should avoid assuming that a successful U.S. pilot can be copied without local validation. Start with one facility that represents the intended operating conditions and document the scale-up requirements.
Request Apollo 2 international availability through Anton Robots so the current regional position can be checked.
An Apollo 2 deployment requires a task-specific safety and integration plan. Apptronik describes hardware-level safety zones, an immediate impact zone, configurable perimeter behaviour and AI-supported reasoning, but the complete application still determines risk.
A pilot should include long-duration operation and failure conditions, not only successful demonstrations. The agreement should state which safety functions are certified for the delivered version and which remain application controls. Request an Apollo 2 deployment review through Anton Robots before committing.
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