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Hilti Jaibot Review: Price, Specs & Productivity

Hilti Jaibot is a BIM-to-field construction robot built to automate repetitive drilling and marking for MEP and interior installations. With up to 8 hours of operation, robotic total-station positioning and support for ceiling and wall drilling, it brings digital construction data directly into physical execution on site.

Image Credits:
Hilti

Miguel Anton

Editor

Short verdict: Hilti Jaibot is one of the most specialised construction robots available for turning coordinated BIM data into physical work on site. Its strength is simple: it can automatically mark and drill large numbers of planned MEP and interior-fit-out holes while removing much of the repetitive overhead drilling from the installer. The trade-offs are equally important—it is a highly specialised system, needs good digital planning and survey control, weighs roughly 850 kg according to Hilti’s previously published technical data, and is generally supplied through a project-based rental rather than as a conventional robot purchase.


For large commercial projects with thousands of repeated drilling points, mature BIM coordination and suitable floor access, Jaibot can turn a slow, physically demanding workflow into a more predictable digital-to-field process. For small projects, poorly coordinated drawings, constantly changing drilling locations or buyers looking for a general-purpose construction robot, the mobilisation and planning requirements may outweigh the benefit.

Best for: large commercial buildings, hospitals, offices, data centres, parking structures and other projects with high volumes of coordinated MEP, HVAC, electrical, fire-protection or interior-fit-out drilling.

Not for: small drilling packages, uncoordinated projects, general construction manipulation, material transport, outdoor rough-terrain work or teams without the BIM/VDC and surveying capability needed to feed the robot reliable drilling data.

Reviewed and fact-checked 11 September 2026. This is an independent, documentation-based buyer review, not a claim of hands-on laboratory testing. Current Hilti product pages, commercial terms, company documentation and published customer deployments were reviewed. Some physical specifications originate from Hilti’s earlier published technical material because current regional product pages do not republish every hardware dimension; buyers should confirm the exact configuration supplied for their project.

Hilti Jaibot: Quick Buyer Verdict

Jaibot should be evaluated as a BIM-to-field drilling system, not simply as a mobile robot. The business case starts with coordinated drilling points, then asks whether automating their physical execution can reduce labour, layout work, overhead drilling, rework or schedule risk enough to justify the rental, mobilisation and digital-preparation cost.

Hilti Jaibot at a glance
Decision factorVerdictWhy it matters
Overhead drillingExcellentPurpose-built for repetitive drilling and marking of BIM-defined installation points.
BIM-to-field workflowExcellentConnects coordinated digital drilling data with robotic total-station positioning and physical execution.
Worker ergonomicsExcellentMoves sustained overhead rotary-hammer drilling away from the installer.
Dust controlStrongIntegrated extraction captures drilling dust close to the source.
RuntimeStrongHilti publishes up to eight hours of cordless operation between charges.
Task flexibilityLimitedJaibot is designed around drilling and marking rather than broad construction manipulation.
Site mobilityProject-dependentThe approximately 850 kg machine needs suitable floors, access routes, lifts and work zones.
Digital readinessCriticalBad coordinates or an outdated model can simply automate the wrong drilling location faster.
Commercial modelProject-basedHilti’s US terms describe Jaibot as a rental system with project-specific usage fees rather than a normal retail purchase.

Pros

  • Highly focused automation for one of the most repetitive and physically demanding construction activities.
  • Uses coordinated digital data instead of manually measuring every drilling point.
  • Combines drilling, marking, dust extraction and progress reporting in one workflow.
  • Up to eight hours of published cordless operation.
  • Can substantially increase drilling throughput on suitable high-volume projects.
  • Creates digital traceability between planned and completed drilling points.
  • Backed by Hilti’s global construction, fastening, surveying and service organisation.
  • Current Hilti material supports both overhead applications and additional wall-drilling workflows.

Cons

  • Very specialised—it does not become a general construction robot after the drilling package is complete.
  • Good BIM and survey data are prerequisites rather than optional extras.
  • Heavy equipment logistics can matter as much as robot performance.
  • Published productivity varies dramatically between projects and should not be reduced to one “holes per day” number.
  • Consumables, training, logistics and some services can sit outside the headline usage fee.
  • Operators must be trained, and human supervision remains part of the workflow.
  • It drills and marks; the wider installation process still needs tradespeople.
  • A small drilling package may never generate enough savings to justify mobilisation.

Our recommendation: shortlist Jaibot when a project has thousands of coordinated drilling points, an experienced BIM/VDC team and a genuine need to remove repetitive overhead drilling from the critical path. Start with one representative floor or zone and measure total holes completed per shift—including setup and repositioning—not just the robot’s fastest drilling cycle. Review the Hilti Jaibot listing at Anton Robots before requesting a project-specific proposal.

How Much Does Hilti Jaibot Cost in 2026?

Hilti does not publish a standard retail price for Jaibot. In the United States, Hilti’s current Jaibot commercial terms describe the system as being rented to the customer for a defined project period, with usage fees and additional services specified in the individual order form. Unless otherwise agreed, those terms specify a minimum usage period of one month, or 20 working days.

This is important because Jaibot should not be compared with a construction robot that is quoted as a straightforward capital purchase. The commercial package can include the robot, tools, transportation, training, consumables, support and project services in different ways depending on region and agreement.

Is Hilti Jaibot $300,000?

No public Hilti source reviewed for this article identifies US$300,000 as the purchase price of Jaibot.

The US$300,000 figure appears in Hilti’s US Jaibot terms as the customer’s replacement liability if the robot is stolen, lost or damaged beyond repair through misuse or negligence. Jaibot remains Hilti property under those terms. It should therefore not be quoted online as the robot’s selling price.

What can affect Jaibot project cost?
Cost layerPossible componentsBuyer question
Robot usageRental period and number of working days.What is the exact usage fee and minimum project duration?
MobilisationDelivery, pickup, transport box and movement to the project.Who pays freight and inter-floor movement?
TrainingOn-site operator training by Hilti.How many operators are included and what does retraining cost?
Digital preparationBIM coordination, drilling-point generation, revisions and survey control.Who prepares and validates production-ready drilling data?
Survey equipmentRobotic total station, controller and associated layout workflow.Which positioning equipment is included in the project package?
ConsumablesDrill bits, filters, vacuum bags, marking materials and related items.Which consumables are included and which are billed separately?
SupportService, repairs, project consulting and downtime response.What happens if the robot becomes unavailable during a critical drilling period?
Internal labourOperator, BIM/VDC preparation, logistics and site supervision.How many internal hours are needed per robot shift?

Budget the workflow, not the machine

A useful Jaibot comparison should calculate:

Cost per completed, accepted hole = total project robot cost ÷ accepted production holes.

Then compare that with the complete manual process: layout, drilling, access equipment, labour, dust controls, rework, coordination and schedule impact.

For current project availability and commercial terms, see the Hilti Jaibot product page.

What Is Hilti Jaibot?

Hilti Jaibot is a semi-autonomous mobile construction robot designed primarily for mechanical, electrical, plumbing and interior-finishing installation workflows. It takes drilling locations from a coordinated digital plan, positions the drilling system relative to the construction coordinate system, automatically drills accessible points and marks the completed locations for the installation team.

Hilti introduced Jaibot in 2020 as its first construction robot. The original concept focused on ceiling drilling. Later updates expanded the system to vertical concrete walls and added software, sensing and dust-control improvements.

What Jaibot is

  • A BIM-to-field construction robot.
  • A robotic drilling and marking system.
  • A way to automate repetitive MEP and interior-fit-out drilling.
  • A digital execution tool that can report progress back to the project workflow.
  • A method of reducing sustained overhead drilling performed manually by tradespeople.

What Jaibot is not

  • It is not a fully autonomous general-purpose construction worker.
  • It is not a robot for transporting construction materials.
  • It is not primarily a floor-layout printer.
  • It does not eliminate the need for BIM coordination or survey control.
  • It does not decide independently where building services should be installed.
  • It does not make every following installation task autonomous.

If you are comparing the wider category rather than one machine, see Anton Robots’ guide to construction robots.

How Does Hilti Jaibot Work?

The important part of Jaibot is not simply the rotary hammer. Its value comes from connecting the digital model, site coordinate system, physical drilling process and completion data.

A simplified workflow is:

  1. Coordinate the design. MEP and interior installation locations are planned digitally.
  2. Create drilling data. Hole position, diameter, depth and identification data are prepared for field execution.
  3. Transfer the job file. Hilti describes workflows using AutoCAD or Revit data, the Hilti Cloud and the PLC field controller.
  4. Establish site position. A Hilti robotic total station provides the reference required to connect Jaibot with the project’s coordinate system.
  5. Execute the drilling. The operator positions and supervises the system while Jaibot automatically executes reachable drilling points.
  6. Record progress. Completed work is synchronised back into the digital system so the project team can monitor drilling status.

Hilti’s current Spanish product information also states that Jaibot can scan its planned path before drilling when required to identify obstacles such as pipes or beams. That does not make the robot an autonomous decision-maker; clashes and design changes still need a controlled construction process.

The operator still matters

Jaibot is deliberately described as semi-autonomous. An operator is still responsible for preparing the work zone, operating the robot, managing the total station, changing consumables when required and responding to exceptions.

Hilti’s US commercial terms require the system to be used only by Hilti-trained operators.

Hilti Jaibot Specifications

Hilti’s current regional product pages do not publish every physical specification in one consolidated 2026 datasheet. The table below therefore separates specifications still confirmed on current Hilti pages from figures published in Hilti’s earlier technical material.

Published Hilti Jaibot specifications
Robot typeSemi-autonomous mobile construction drilling robot
Primary applicationBIM-guided drilling and marking for MEP and interior-finishing installation
Ceiling working height2.65–5.0 m (8.3–16.5 ft)
Wall working heightApproximately 1.2–4.8 m for the vertical drilling capability introduced in 2022
Published drilling diameterEarlier Hilti technical material lists approximately 6–16 mm (1/4–5/8 in); confirm the current project configuration
Published drilling depthEarlier Hilti technical material lists up to approximately 100 mm (4 in)
Operating timeUp to 8 hours between charges
Published recharge timeEarlier Hilti material lists approximately 6 hours, with run-charge operation possible
Robot dimensionsEarlier Hilti technical data: approximately 1.64 × 0.90 × 1.67 m
Robot weightEarlier Hilti technical data: approximately 850 kg (1,874 lb)
Transport weightEarlier Hilti technical data: approximately 1,150 kg (2,535 lb) including transportation box
Dust extractionIntegrated; current European Hilti material references the VC 10-22 high-performance vacuum
MarkingIntegrated marking of drilling points according to the project workflow
Digital inputDigital drilling data derived from construction plans/BIM; Hilti describes AutoCAD and Revit workflows
PositioningHilti robotic total-station workflow
Typical substratesCurrent Hilti material describes concrete walls/ceilings and corrugated metal deck applications

Why the specification date matters

Do not treat every historic Jaibot specification as guaranteed for a 2026 rental unit. Hilti has continued updating components and software. For example, older US contractual material references a VC 75 vacuum, while current Spanish product material names the newer VC 10-22 dust extractor.

The safest procurement approach is to request the exact equipment list, drill range, tool version, batteries, dust system and supported application limits for the unit assigned to your project.

Hilti Jaibot Drilling Capability and Working Range

Jaibot was built around repetitive serial drilling rather than occasional holes. That distinction is fundamental to its economics.

For its original overhead workflow, Hilti’s US terms specify ceiling heights between 2.65 and 5 metres. Once the robot is positioned and referenced, holes within its working area can be executed automatically according to the drilling data.

Ceiling drilling

This is Jaibot’s strongest and most established application. Examples include holes for:

  • HVAC suspension systems.
  • Pipe supports.
  • Electrical services.
  • Cable trays.
  • Fire-protection installations.
  • Suspended ceilings.
  • Modular support systems.
  • Other repetitive overhead fixings.

Wall drilling

Hilti’s 2022 productivity update extended Jaibot to drilling and marking vertical concrete walls at approximately 1.2–4.8 m working height. Current Hilti regional pages continue to describe wall and ceiling applications.

Does Jaibot install anchors?

Jaibot’s core public workflow is drilling and marking. The downstream fixing or installation operation remains a separate part of the construction process.

This distinction matters when comparing Jaibot with systems such as fischer BauBot, which can be configured for drilling, hole preparation and anchor-setting workflows.

How Many Holes Can Hilti Jaibot Drill Per Day?

There is no responsible single answer.

Hilti and project teams have published substantially different Jaibot productivity figures over time:

  • Hilti’s 2021 company report described approximately 500 overhead holes per day and customer productivity around three to four times manual drilling.
  • Hilti’s 2022 robotics report stated that Jaibot can exceed 1,000 holes per day under suitable conditions.
  • Earlier Hilti product communications described approximately 300–600 holes per day depending on the project.
  • A 2025 Hilti North America project example reported up to 600 holes per day versus roughly 50 manually for that particular workflow.

The range is not necessarily contradictory. Drilling productivity changes dramatically with hole depth, diameter, concrete condition, bit changes, ceiling geometry, robot repositioning, work-zone congestion and the quality of the drilling plan.

What buyers should measure instead

Ask for production data using your own mix of holes:

Jaibot productivity metrics that actually matter
MetricWhy it matters
Accepted holes per shiftCaptures the complete workflow rather than theoretical drilling speed.
Robot drilling timeShows how much time is actually spent producing holes.
Repositioning timeLarge open zones may perform very differently from congested ceilings.
Setup timeIncludes survey reference, data loading and daily commissioning.
Exception rateTracks inaccessible points, reinforcement, clashes and failed holes.
Rework rateA fast robot has little value if coordinates are wrong.
Operator hoursNeeded to compare against the real manual labour baseline.

Buyer rule: never base the business case on Jaibot’s maximum published holes per day. Base it on a representative pilot zone containing the same hole diameters, depths, slab conditions and congestion as the production project.

BIM, Positioning and Drilling Accuracy

Jaibot’s competitive advantage is not simply drilling faster. It closes part of the gap between digital coordination and physical installation.

The typical Hilti workflow uses design data from tools such as AutoCAD or Revit, transfers the project information through the Hilti digital environment, and references the robot using a robotic total station.

The result is that the installer no longer needs to manually interpret a drawing, measure a point, mark it and then drill it one hole at a time.

Do not confuse total-station accuracy with final hole accuracy

The PLT 300 digital layout tool has published distance-measurement specifications around ±3 mm plus 10 ppm. That is a specification for the surveying instrument—not a promise that every completed Jaibot hole will be within ±3 mm.

Final accuracy also depends on:

  • Survey control.
  • Robot localisation.
  • Mechanical positioning.
  • Ceiling or wall geometry.
  • Drilling behaviour.
  • BIM coordinate accuracy.
  • Project revisions.

The model can be the biggest risk

Hilti’s US terms explicitly place responsibility for the accuracy and completeness of supplied drilling data on the customer and state that Hilti does not verify whether the coordinates correspond to the design plans or the actual building.

That creates an important rule:

Jaibot can automate execution; it cannot make an uncoordinated model correct.

Before production, validate a representative set of robot drilling points against approved-for-construction drawings and independent field checks.

2022 software improvements

Hilti’s 2022 update added capabilities including 2D structural or installation-plan uploads, filtering drilling paths by diameter, improved progress reporting, Field-to-BIM information and data export for potential field rework. It also introduced additional sensing intended to improve drilling-depth and distance measurement.

Hilti Jaibot Battery Life and Charging

Hilti currently advertises up to eight hours of cordless operation between charges. This makes Jaibot capable of supporting a conventional construction shift without being continuously tethered to mains power.

Earlier Hilti technical material listed approximately six hours for a full recharge and stated that the robot can operate while charging.

Eight hours does not mean eight hours of drilling

A working shift also includes:

  • Daily preparation.
  • Survey setup.
  • Robot movement.
  • Changing drill bits.
  • Changing vacuum consumables.
  • Responding to inaccessible or problematic points.
  • Moving between zones.
  • Operator breaks and site restrictions.

The correct comparison is accepted holes per paid working shift, not nominal battery endurance.

Multiple-shift operation

Hilti’s US terms state a normal maximum operating time of eight hours per day and require the customer to inform Hilti when multiple-shift operation is planned. That is a commercial and service consideration in addition to a battery question.

Dust, Ergonomics and Construction Safety

Safety is one of the strongest reasons to consider Jaibot.

Traditional overhead rotary-hammer drilling combines several undesirable exposures: sustained work above shoulder level, tool vibration, dust, noise and—in many conventional workflows—working from ladders or access equipment.

Jaibot moves the rotary hammer and dust extraction onto the machine while the operator supervises the process from the floor.

Dust extraction

Current Hilti product material describes integrated high-performance dust extraction. The system is intended to capture drilling dust at the source rather than allowing the operator to work immediately beneath the hole.

This is valuable, but a robot does not eliminate the site’s broader silica-dust obligations. Dust-system condition, filters, bags, drill-tool selection and local workplace controls still need to be managed.

Ergonomics

The biggest change is straightforward: the worker no longer needs to hold a rotary hammer above their head for hundreds of repetitive holes.

That can be particularly valuable on projects where the drilling package would otherwise occupy multiple installers for weeks.

Safety responsibilities remain

A Jaibot deployment still needs:

  • A controlled work zone.
  • Trained operators.
  • Suitable floor loading and access.
  • Safe robot transport between levels.
  • Procedures for changing tools and consumables.
  • Survey equipment positioned safely.
  • Management of other workers entering the operating area.
  • A recovery procedure if the robot or drilling system stops.

Hilti’s US terms specifically require restricting access to non-operating personnel while Jaibot is working.

What Does a Construction Site Need Before Using Jaibot?

Jaibot performance begins before the robot arrives.

1. Production-ready drilling data

The project needs reliable coordinates, drilling attributes and revision control. If points are still moving between design teams, automation may simply create expensive rework faster.

2. Survey control

The robotic total station must be able to reference the robot accurately within the construction coordinate system.

3. Suitable floor access

Earlier Hilti technical information places robot weight around 850 kg. Check floor capacity, ramps, openings, temporary works and transitions before mobilisation.

4. Inter-floor logistics

Hilti has designed Jaibot with building logistics in mind and has described it as fitting in most elevators, but “most” is not an acceptance criterion. Confirm cabin dimensions, door width, lift capacity and floor loading for the exact site.

5. Compatible ceiling or wall conditions

Confirm substrate, ceiling height, geometry, drilling depth, diameter, reinforcement strategy and whether the final structure falls inside Hilti’s supported application.

6. Clear working zones

Stored materials, temporary services, mobile plant, scaffolding and other trades can reduce productivity even when the robot itself is capable of drilling the point.

7. Charging and storage

Provide a secure location for the robot and transportation system and confirm the electrical supply required for charging.

8. Consumables

Drill bits, filters, vacuum bags and marking consumables have to be available when required. Hilti’s US terms place responsibility for timely replenishment on the customer.

9. A trained operator

Do not assume any site worker can take over immediately. Hilti requires operator training for the system.

Real-World Hilti Jaibot Results

Jaibot has accumulated meaningful commercial deployment evidence since its 2020 launch. The results below come from Hilti, contractors or project teams rather than independent controlled trials, so they demonstrate what can be achieved rather than guaranteeing the same outcome on another site.

Selected published Jaibot deployments
ProjectApplicationPublished resultBuyer lesson
Überseequartier, HamburgLarge BIM-coordinated building-services installationProject scope referenced approximately 55,000 holes; Hilti described Jaibot operating from digital planning and being capable of night work.Very large repetitive drilling packages create the clearest automation opportunity.
Temple Quarter Enterprise Campus, UKSlab-soffit drillingAround 22,000 holes; project team reported approximately 500 holes per day.Mature BIM coordination was identified as a prerequisite for successful production.
Central Health HQ, AustinOverhead electrical penetrationsA 2025 contractor pilot reported 355 of 378 holes completed in 12 working hours and approximately two weeks of programme benefit.Schedule value can matter as much as raw drilling speed.
Countess of Chester HospitalMEP drilling near live hospital areasA 2025 project submission reported 40% lower drilling time, 95% less rework and 20% lower costs versus its traditional comparison.Accuracy and reduced disruption can be important in complex occupied environments.

What successful projects have in common

The strongest Jaibot deployments are not random technology pilots. They usually combine:

  • A large quantity of repetitive holes.
  • Coordinated digital design.
  • Stable construction geometry.
  • A clear production sequence.
  • Enough open floor space for the robot.
  • An operator and digital team that understand the complete workflow.

That pattern is more useful to a buyer than any headline productivity number.

Best Hilti Jaibot Use Cases

1. Large-scale MEP overhead installation

Best overall use case. Repetitive hanger and support locations across commercial floorplates are exactly the type of work Jaibot was designed to automate.

2. HVAC and ventilation support drilling

Ductwork can require large quantities of regularly spaced suspension points. Automating the drilling stage can improve consistency and remove a major ergonomic burden.

3. Electrical and cable-tray installation

Large office, hospital, data-centre and infrastructure projects may contain thousands of overhead electrical support points that can be prepared digitally before drilling starts.

4. Plumbing and pipe supports

Coordinated pipework creates another high-volume overhead fixing workflow where digital drilling information can transfer directly from model to field.

5. Fire-protection installation

Sprinkler and fire-services contractors can benefit where support points are coordinated early and repeated across large floor areas.

6. Interior finishing

Suspended ceilings and related fit-out systems can create regular drilling grids that are well suited to robotic execution.

7. Hospitals and occupied-project environments

Projects with high safety, cleanliness, coordination and schedule requirements can make automation particularly attractive when access conditions are suitable.

8. High-repeat buildings

Data centres, offices, car parks, hotels and other projects with repeated floors or modules can spread the mobilisation and planning cost across a larger drilling package.

When Hilti Jaibot Is Not the Right Robot

Jaibot is strong because it is specialised. The same specialisation creates clear rejection cases.

  • Small drilling volume: mobilisation, training and BIM preparation can overwhelm the productivity saving.
  • Poorly coordinated BIM: automation does not solve incorrect drilling coordinates.
  • Constant late design changes: repeated digital revisions can destroy the planned production sequence.
  • General construction automation: Jaibot is not a universal mobile manipulator.
  • Material handling: use equipment designed to transport or lift material instead.
  • Floor layout only: a layout robot such as Dusty Robotics FieldPrinter may match the problem more directly.
  • Anchor installation required in the same automated cycle: compare broader drilling-and-fastening systems such as fischer BauBot.
  • Unsuitable access: an approximately 850 kg robot needs a viable logistics plan.
  • Highly irregular or congested work areas: robot repositioning and inaccessible points can erode productivity.
  • No digital construction owner: somebody must control drilling data, revisions and site execution.

Hilti Jaibot vs BauBot, Dusty FieldPrinter and Manual Drilling

Jaibot has relatively few direct like-for-like competitors because its workflow is unusually specific. Buyers should therefore compare the underlying construction problem rather than looking only for machines labelled “construction robot.”

Jaibot alternatives
SolutionPrimary jobMain advantageKey difference vs Jaibot
Hilti JaibotBIM-guided drilling and markingIntegrated Hilti BIM, survey, drilling, dust and service ecosystemHighly specialised around drilling execution
fischer BauBotRobotic drilling and fasteningBroad multi-direction drilling capability and automated fastening workflowsMore general robotic manipulation architecture with different tooling and service model
Dusty Robotics FieldPrinterFull-scale construction layout printingTransfers multi-trade digital information directly onto floorsPrints layout; does not replace the drilling operation
Robotic total station + manual drillingDigital point layout followed by manual executionLower mobilisation and maximum human flexibilityWorker still performs the repetitive drilling
Traditional manual layout and drillingMeasure, mark and drill manuallyMinimal technology dependencyHighest exposure to manual layout, repetitive overhead work and variability

Jaibot vs fischer BauBot

This is the most meaningful robotic comparison.

Jaibot has the advantage of being tightly integrated into Hilti’s construction ecosystem and is highly optimised around MEP drilling. BauBot is a more general mobile robotic platform and can support drilling in multiple orientations and automated anchor-setting workflows.

In 2025, fischer reported that a BauBot completed 3,717 concrete holes during a 24-hour continuous record attempt. That is impressive, but a record run should not be compared directly with a normal Jaibot construction shift. The deciding factors are project geometry, fixing system, service coverage and accepted production output.

Jaibot vs Dusty Robotics FieldPrinter

These robots solve different stages of the digital-to-field workflow.

Choose Jaibot when the expensive problem is repetitive drilling.

Choose Dusty FieldPrinter when the expensive problem is transferring coordinated floor layout to the jobsite.

On a sufficiently digitised project, the technologies can be complementary rather than competitors.

See more systems in Anton Robots’ construction robot marketplace.

Is Hilti Jaibot Worth It?

Jaibot can be worth it when a project contains enough repetitive, coordinated drilling that labour savings, reduced layout effort, improved ergonomics, lower rework or schedule acceleration exceed the complete rental and deployment cost.

The robot is much harder to justify when the project has only a few hundred holes or the BIM model still requires significant coordination.

A better Jaibot ROI equation

Annual or project benefit = manual drilling labour avoided + manual layout avoided + access-equipment savings + rework avoided + schedule value + safety/productivity value − total Jaibot deployment cost.

The deployment cost should include:

  • Robot usage fees.
  • Delivery and collection.
  • Operator training.
  • BIM/VDC preparation.
  • Survey equipment and setup.
  • Operator labour.
  • Consumables.
  • Internal logistics.
  • Charging and storage.
  • Project support.

Calculate cost per accepted hole

Suppose the complete Jaibot package costs C for the project and produces H accepted holes.

Robot cost per accepted hole = C ÷ H.

Then calculate the equivalent complete manual cost—not only the seconds required to physically drill the hole.

The hidden value: schedule

On a major project, reducing drilling duration can allow following trades to begin earlier. If Jaibot removes several days from a critical activity, the programme value may exceed the direct labour saving.

Conversely, a robot that produces holes quickly but spends half the project waiting for revised coordinates may deliver poor ROI.

Go/no-go threshold

Before committing to a large deployment, require a representative pilot to prove:

  1. Digital data can be transferred reliably.
  2. Drilling accuracy meets the project tolerance.
  3. Throughput beats the relevant manual baseline.
  4. Exception rates are manageable.
  5. Robot logistics work on the actual floorplate.
  6. Completed drilling data is useful to the project team.
  7. The complete project economics remain positive after mobilisation and digital preparation.

Hilti Jaibot Buying and Rental Checklist

  1. Count the holes. Break them down by diameter, depth, floor and trade.
  2. Check ceiling and wall heights. Confirm every production zone falls within the supported working range.
  3. Confirm substrates. Identify concrete, metal deck and any other ceiling conditions.
  4. Review BIM maturity. Only release approved, coordinated drilling points.
  5. Define tolerances. Agree how final hole position and depth will be accepted.
  6. Plan survey control. Confirm robotic total-station locations and reference points.
  7. Survey access. Measure doors, lifts, ramps and transitions before the robot arrives.
  8. Check structural loading. Include the robot, transport method and temporary floor conditions.
  9. Plan other trades. Protect the robot work zone from simultaneous congestion.
  10. Choose operators. Arrange Hilti training before production begins.
  11. Stock consumables. Prevent drill bits, filters or marking supplies from becoming the bottleneck.
  12. Define exceptions. Decide what happens when a hole hits reinforcement, is inaccessible or conflicts with installed services.
  13. Request itemised pricing. Separate usage, logistics, training, consumables and project services.
  14. Measure a pilot zone. Record total operator hours, setup time, holes, failures and rework.
  15. Calculate cost per accepted hole. Compare it with the complete manual alternative.
  16. Scale only after proof. Release additional floors once the digital-to-field process is stable.

Pro tip: do not ask “How fast is Jaibot?” Ask “How many of our actual holes can one Jaibot complete and have accepted during one paid shift on this floorplate?” That is the number that belongs in the business case.

How to Buy or Rent Hilti Jaibot

Jaibot is not normally presented as a conventional retail robot with an online purchase price.

Hilti’s US terms describe the system as remaining Hilti property and being rented to the customer for a defined usage period. Project-specific fees are set out in the order form. The standard US terms currently state a minimum period of one month or 20 working days unless another arrangement is agreed.

Prepare this information before requesting a proposal

  • Project location.
  • Construction programme.
  • Number of floors.
  • Number of drilling points.
  • Hole diameters and depths.
  • Ceiling and wall heights.
  • Substrate information.
  • BIM/Revit or CAD status.
  • Representative coordinated model or drawings.
  • Access and lift information.
  • Expected drilling start date.
  • Current manual productivity.
  • Required installation tolerance.

Review the Hilti Jaibot page at Anton Robots and contact Anton Robots for current project availability and commercial guidance.

If your requirement is still open, use Find My Robot to compare Jaibot with other construction automation approaches.

What Is New With Hilti Jaibot in 2026?

Jaibot remains commercially active

Jaibot is still actively promoted on Hilti’s regional websites in 2026, including the United States, Australia, Europe and Asia-Pacific. This matters because some early construction robots disappear after pilot programmes; Jaibot remains part of Hilti’s current BIM-to-field automation offering.

No public “Jaibot 2” generation identified

We found no current Hilti announcement of a completely new Jaibot hardware generation replacing the existing platform. Buyers should therefore distinguish between software/application updates and a fundamentally new robot model.

The 2022 expansion remains important

The largest publicly documented feature expansion added:

  • Vertical wall drilling and marking.
  • Higher-performance dust extraction.
  • Improved drilling-depth and distance sensing.
  • 2D plan upload.
  • Improved drilling-path planning.
  • Expanded reporting and Field-to-BIM functions.

Recent projects show continued production use

Contractor examples published in 2025 continued to show Jaibot being deployed for real project drilling rather than demonstration-only work. Hilti Asia-Pacific also highlighted Jaibot during robotics activity and awards in 2026.

Buyer implication: Jaibot should now be evaluated as a specialised production technology with several years of field history—not as an experimental robot. But that maturity does not remove the need to validate each new site’s BIM readiness, logistics and drilling economics.

Hilti Jaibot FAQ

How much does Hilti Jaibot cost?

Hilti does not publish a universal retail price for Jaibot. Hilti’s US terms describe a project rental model with usage fees specified in the individual order form. Logistics, training, consumables and other services can also affect project cost.

Does Hilti Jaibot cost $300,000?

Do not treat US$300,000 as Jaibot’s purchase price. Hilti’s US terms use that figure as the replacement cost payable if the robot is stolen, lost or damaged beyond repair because of misuse or negligence. The same terms state that Jaibot remains Hilti property.

Can you buy a Hilti Jaibot?

Jaibot is generally offered as a supported project deployment rather than a normal retail capital purchase. Commercial structure can vary by country, so buyers should request current local terms.

Can you rent Hilti Jaibot?

Yes. Hilti’s US Jaibot terms explicitly describe the system as being rented for a defined usage period. Unless otherwise agreed, the stated minimum usage time is one month or 20 working days.

Is Hilti Jaibot fully autonomous?

No. Hilti describes Jaibot as semi-autonomous. The operator controls and supervises the system, establishes the work zone and positioning workflow, and Jaibot then executes approved drilling points automatically within its working range.

Does Jaibot require BIM?

Jaibot is fundamentally designed around digital drilling information. Hilti commonly describes AutoCAD, Revit and Hilti Cloud workflows. A project therefore needs reliable digital drilling coordinates, although later software updates also added support for additional 2D plan workflows.

How many holes can Hilti Jaibot drill per day?

It depends heavily on the project. Hilti has published figures ranging from approximately 300–600 holes per day to 500 holes per day and, under favourable conditions, more than 1,000. Buyers should test their own hole diameter, depth, substrate and work-zone conditions instead of using the highest published number.

How high can Hilti Jaibot drill?

Hilti’s US terms specify overhead drilling for ceiling heights from approximately 2.65 to 5 metres.

Can Hilti Jaibot drill walls?

Yes. Hilti added vertical concrete-wall drilling and marking in 2022, with a published working-height range of approximately 1.2 to 4.8 metres.

What hole diameter can Hilti Jaibot drill?

Earlier Hilti technical material lists approximately 6–16 mm or 1/4–5/8 inch. Because Hilti’s current regional pages do not republish a complete 2026 drill-range table, confirm the supported diameter and tool configuration for the specific deployment.

How deep can Jaibot drill?

Earlier Hilti technical material lists drilling depth up to approximately 100 mm or 4 inches. Confirm current limits for the assigned robot, substrate and drill-bit system.

How long does the Hilti Jaibot battery last?

Hilti currently advertises up to eight hours of operation between charges.

How long does Jaibot take to charge?

Earlier Hilti technical information listed approximately six hours for recharging and noted that run-charge operation was possible. Ask Hilti to confirm the current battery and charging configuration supplied with the project.

How much does Hilti Jaibot weigh?

Previously published Hilti technical information lists approximately 850 kg for the robot and around 1,150 kg including the transportation box.

Does Jaibot install anchors?

Jaibot’s core workflow is drilling and marking. The installation of anchors, hangers and the wider MEP system remains a separate construction operation.

Does Jaibot remove drilling dust?

Yes. Integrated dust extraction is a core feature of the system. Current Hilti European product information references a high-performance VC 10-22 vacuum configuration.

Can Jaibot work without an operator?

Not as a fully unattended general-purpose robot. Hilti-trained operators remain responsible for operating and supervising the robot, preparing the work area and handling exceptions and consumables.

What happens if the BIM model is wrong?

Jaibot follows supplied drilling data; it does not redesign the building. Hilti’s US terms place responsibility for drilling-data accuracy and completeness on the customer. Production data therefore needs proper approval and revision control.

Is Jaibot faster than manual drilling?

It can be substantially faster on large repetitive drilling packages. Hilti and contractors have published examples showing several-times-higher productivity than manual drilling, but the actual advantage varies with the project.

What is the difference between Hilti Jaibot and Dusty Robotics FieldPrinter?

Jaibot physically drills and marks installation points, mainly for MEP and interior systems. Dusty Robotics FieldPrinter prints digital construction layout directly onto floors. They solve different steps of the BIM-to-field process.

What is the closest alternative to Hilti Jaibot?

fischer BauBot is one of the closest current robotic alternatives for automated construction drilling. BauBot supports broader drilling orientations and can also support automated fastening workflows. Manual drilling supported by a robotic total station remains the simpler alternative for smaller projects.

Is Hilti Jaibot worth it?

Jaibot can be a strong investment when a project contains thousands of coordinated drilling points and can convert improved productivity, ergonomics, accuracy and schedule performance into measurable value. It is much less compelling for small, irregular or digitally immature projects.

Final Verdict: Is Hilti Jaibot Worth Using?

Use Hilti Jaibot when repetitive drilling has become an industrial-scale production problem rather than an occasional construction task.

Its biggest advantage is not the robot itself. It is the ability to connect coordinated design data directly with physical drilling and marking while removing much of the repetitive overhead work from installers.

On the right project, that combination can improve productivity, reduce manual layout, make drilling output more predictable, create digital progress records and reduce worker exposure to one of the construction industry’s least ergonomic activities.

But Jaibot is not automatic ROI.

The roughly 850 kg platform needs suitable site logistics. The workflow needs accurate drilling data. Operators need training. Consumables and survey control still matter. And a project with too few holes may never recover the mobilisation effort.

The best Jaibot project therefore has five characteristics: high drilling volume, stable BIM coordination, suitable access, repeatable geometry and a clear production baseline.

If those conditions exist, Jaibot is one of the most credible examples of construction robotics moving beyond demonstration and into real BIM-to-field production.

Ready to evaluate a project? View Hilti Jaibot at Anton Robots, compare other construction robots or request help matching the automation approach to your project.

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