Eccotarp to showcase ET-Roller 7 electric fire hose winder at INTERSCHUTZ

Eccotarp has said that it will showcase its ET-Roller 7 electric fire hose winder at the INTERSCHUTZ exhibition, which takes place next month.

While many end users still manually wind fire hoses, the company said winding various types of fire hoses doesn’t always have to be hard and physically demanding work. The ET-Roller 7 electric fire hose winder enables userrs to wind fire hoses up to 6 inches in diameter.

The winder features a motor powered by Milwaukee batteries, a telescopic handle, a stable four-wheel chassis and a Quick-Release mechanism for fast exchange of adapters for winding different types of fire hoses.

It also features two types of removable carriers (DRUM or 2 FORKS) according to the size of the hose to be wound up and is suitable for various winding methods such as smooth winding of the hose by the coupling as well as hoses folded in half.

The company, based in the Czech Republic, has also confirmed that it will showcase its range of magnetic leak patches, folding spill containment berms and tanks and drain covers at the event.

Visit the Eccotarp Booth E13, Hall 17 and try the ET-Roller 7 in person.

Why Rosenbauer’s smallest FOX might be its most practical pump yet

Rosenbauer launches FOX S portable fire pump

Rosenbauer has presented its new FOX S portable fire pump at the FLORIAN trade fair in Dresden.

The company said the FOX S delivers 1,050 litres per minute at 10 bar, allowing a B-hose line to be supplied with 1,000 litres per minute over long distances.

Weighing 154 kilograms, the pump is compact and easier to handle and transport than the larger FOX model.

Rosenbauer confirmed that the FOX S completes its portable pump portfolio, joining the FOX, BEAVER and OTTER models.

Roland Weber, Product Manager at Rosenbauer, said: “The FOX S is the ideal choice when every kilo of weight counts, but all the functions of a FOX are important.
“It impresses with the robust technology that fire departments around the world appreciate about our products.”

Lightweight design with robust efficiency

According to Rosenbauer, the FOX S features a single-stage centrifugal pump developed specifically for this application.

Its impeller, designed with spatially curved blades and a light metal spiral housing, delivers high efficiency.

A stainless-steel pump shaft, lubricant-free mechanical seal and clamping ring design make the unit easy to maintain.

The company said the FOX S is operated at the push of a button and uses the Rosenbauer Logic Control System (RBC LCS) interface for user feedback and fault reporting.

Cavitation warning and inlet pressure monitoring protect the pump from damage during use.

The system also includes mechanical overheating protection that drains hot water above 60°C and allows cooler water to flow in.

Power and control for global conditions

Rosenbauer said the FOX S is powered by a two-cylinder BRP-Rotax in-line engine with electronic control.

The water-cooled engine is designed for use in both hot and cold climates.

A 20-litre fuel tank supports extended operation, and refuelling during use allows continuous pumping.

Rubberised, foldable handles enable safe carrying, and quick-fit wheels allow one-person transport.

Lighting can be fitted to the carrying frame for night operation, and an external control unit allows pump-and-roll or vehicle-based operation.

Expanding Rosenbauer’s portable pump family

Rosenbauer stated that the FOX S and the larger FOX share a unified operating concept, meeting performance standards across the PFPN 10-1000, 10-1500 and 10-2000 classes.

The FOX remains Rosenbauer’s most powerful portable pump, with a flow rate of 2,050 litres per minute at 10 bar and a suction lift of three metres.

The BEAVER model was also updated in 2025 with a new engine, redesigned controls and improved ergonomic handles.

The company said the BEAVER, weighing 133 kilograms, exceeds its PFPN 10-750 class requirements with an output of over 900 litres per minute.

At 58 kilograms, the OTTER serves as the lightweight entry-level model, providing easy handling and reliable water delivery in the field.

Weber added: “BEAVER and OTTER stand out for their exceptional ease of use and maintenance.
“They can be transported to the scene with minimal effort and provide firefighting crews with a reliable and long-lasting water supply.”

Availability and delivery timeline

Rosenbauer confirmed that the FOX S will be available to order from January 2026.

Deliveries are expected to begin at the end of the first quarter of 2026, depending on order intake.

Relevance for fire and safety professionals

The FOX S is designed for firefighting teams requiring portable pumping solutions with high output and low weight.

Its compact size and simplified transport features could support municipal, rural and volunteer fire departments that operate in terrain where vehicle access is limited.

Procurement officers and operations managers may find the shared control interface across the FOX family useful for training standardisation and equipment compatibility.

The pump’s mechanical safety systems, including cavitation protection and automatic cooling, are relevant for maintenance personnel overseeing prolonged or remote pumping operations.

The January 2026 release date provides a clear window for equipment planners considering replacements or upgrades ahead of the next procurement cycle.

Safety you can count on: Armstrong Fluid Technology advances containerised fire pump technology

Mike DeMille, Global Offering Manager, Fire Systems at Armstrong Fluid Technology outlines how prefabricated fire pump solutions offer faster installation, lower operational costs and dependable fire protection for buildings worldwide

Fire safety systems are a critical safeguard in protecting people, property and business continuity.

At the heart of these systems, fire pumps ensure a reliable water supply and adequate pressure to suppress fires when every second counts.

The performance and dependability of these pumps can make the difference between a controlled incident and catastrophic loss.

The value of ongoing investment

For many building owners who haven’t faced a real fire emergency, it can be difficult to see the value in the ongoing investment and maintenance of fire safety systems.

Yet safeguarding occupants doesn’t have to mean committing excessive time and resources.

Containerised fire pump systems offer a practical, efficient alternative.

These pre-engineered units deliver the critical water supply needed for automatic sprinklers and standpipe systems, serving as a vital line of defense for both people and property during emergencies.

Beyond their role in enhancing safety and operational reliability, prefabricated fire pump solutions deliver measurable savings at every stage – from streamlined logistics and simplified installation to reduced operational costs over the system’s lifespan.

Modular benefits and global reach

Manufactured in a controlled factory environment and housed within a standard 20ft or 40ft shipping container, these systems are delivered as complete, ready-to-use units – perfectly suited for international shipment.

Their modular, self-contained design ensures not only easy portability but also simplified maintenance, resulting in cost efficiencies across the entire supply chain.

When a project needs change, the units can be quickly removed, relocated and reinstalled, offering exceptional flexibility to meet evolving requirements.

Installation is equally efficient.

By arriving fully assembled, these units can cut installation time by as much as 95%, removing the need for complex on-site construction.

Once delivered, the pump house simply needs to be positioned and connected to the existing sprinkler network – often requiring nothing more than two pipe connections and two power hookups.

Challenges of conventional builds

In contrast, conventional “stick-built” fire pump systems consist of multiple components sourced from different suppliers, all of which must be assembled on site.

This process can take weeks and typically demands the expertise of at least three certified tradespeople equipped with specialised tools.

It’s clear, then, why containerised fire pump solutions can deliver significant labor cost savings by streamlining both sourcing and installation.

Traditional sprinkler systems involve many complex components, making on-site construction inefficient and prone to delays.

Contractors must source, handle and coordinate all materials while ensuring each part meets code and works seamlessly together – a task that often exceeds the expertise of designers and architects.

Mechanical engineering consultants and specialist sprinkler contractors are typically required to ensure all components are correctly sized and meet standards for safety, performance and quality.

Armstrong fire pumps as a backbone

Armstrong Fire Pumps ensure that pressurised water is available at sprinkler heads to suppress fires and save lives, providing a reliable backbone for these complex systems.

Fire pumps themselves offer several benefits that make them integral to a robust system: they allow flexibility in mechanical room layout, are available in a wide range of flow and head capacities and come in both electric and diesel options.

Maintenance can be performed without disturbing piping or the driver and the system can be designed without concern for large differences between minimum and maximum water pressure.

However, conventional fire pumps also have drawbacks: they require a large floor space, restrict mechanical room layout due to direction of rotation, involve more components to service and are generally more costly.

Containerised solutions overcome many of these challenges, offering compact, pre-engineered designs that maintain all operational benefits while minimising the limitations of traditional installations.

Skills gap and cost pressures

Ensuring proper on-site assembly of traditional fire systems requires highly skilled labour – a requirement that is often overlooked in the Middle East due to cost pressures and shortages, based on my experience with Armstrong Fluid Technology.

Yet when it comes to fire safety, quality and performance cannot be compromised.

This is why factory-built, containerised solutions are ideal.

Prefabricated units are produced using precise engineering drawings that define exact dimensions and connection points, greatly reducing the risk of human error.

When manual testing, servicing, or repairs are needed, technicians benefit from convenient access via a dedicated service door.

Additionally, integrated fans and ventilation within the container create a comfortable working environment, even during extended maintenance tasks.

A new approach to fire protection

At Armstrong Fluid Technology, we’ve seen how containerised fire pump solutions are transforming the way organisations approach fire protection.

Unlike traditional on-site builds, containerised units are fully assembled, tested and certified off-site before delivery, combining all the operational advantages of high-performance fire pumps with the efficiencies of prefabrication.

Big water for big challenges: How US Fire Pump delivers high-volume water for major incidents

Chris Ferrara, Owner of US Fire Pump, shares how mobile systems, large-diameter hose and strategic foam storage combine to bridge capability gaps in major incidents

When major incidents demand massive volumes of water at speed, the limits of conventional fire equipment quickly become clear.

US Fire Pump was built around the idea that those limits could be extended.

At the centre of that work is Owner Chris Ferrara, whose manufacturing and operational experience has shaped some of the world’s largest firefighting systems.

In this interview, Ferrara explains what defines large pump capability, how it’s being applied in the field, and what’s still missing from wider industry preparedness.

How would you define US Fire Pump’s role and its unique position in emergency response today?

We operate as a specialist extension to municipal and industrial fire brigades, filling the gap when an incident demands water flow rates that standard pumpers cannot produce.

That role begins with scale: our fleet includes transport-ready boost pumps capable of delivering tens of thousands of litres per minute, submersible units that draw from almost any open source, and monitors designed to maintain heavy streams at long reach without exposing crews.

Few organisations keep that capacity on standby, so we maintain it, staff it, and move it wherever required.

Readiness would be meaningless without supplies, so we hold roughly 300,000 gallons of finished foam at multiple points across the United States.

Add to that fifteen miles of 12-inch supply hose and a roster of about fifty full-time industrial firefighters who train on the same equipment they deploy.

Because everything sits on trailers or skids, a full package can leave a yard within hours of a call and arrive with its own logistics plan.

That combination makes us more than an equipment vendor.

During events from tank-farm lightning strikes to recycling-plant battery fires, we join the incident command structure, establish high-volume water relay, and oversee application rates until knock-down is confirmed.

In short, customers purchase preparedness measured in minutes rather than days.

Could you outline large boost and submersible pumps and where each type sees field use?

Submersible pumps are the first link in our relay chain.

Each unit, dropped into a river, canal, or harbour basin, lifts around 5,000 gallons per minute straight up the discharge column.

Because motors and impellers sit below the waterline, priming issues disappear, and we can stage several in parallel to raise overall flow—four units provide roughly 20,000 gpm from a single source.

The water then enters a boost pump.

These trailer-mounted centrifugal machines add the pressure needed to carry large volumes through up to three miles of 12-inch hose.

Their job is simple: overcome friction loss so that the stream still lands with force at the monitor.

We configure boost pumps in series if the hose run is unusually long or elevation changes are severe.

Finally, delivery equipment—monitors, foam proportioners, and manifolds—takes the pressurised supply and directs it onto the hazard.

In practice this three-step arrangement allows us to draw from a lake on one side of an industrial site, push the flow under a highway, and deliver a stable foam blanket onto a burning tank roof without resorting to fixed hydrant grids that might be out of service or destroyed.

Which facilities now plan for your high-volume systems, and what drives that requirement?

The most frequent callers are petro-chemical complexes where single-tank capacities exceed two hundred feet in diameter.

Operators know a full-surface crude or naphtha fire can consume conventional resources before a control line is even established, so contingency plans mandate external high-volume support.

Insurance underwriters reinforce those requirements by setting performance targets that only large-scale mobile pumping can meet.

Electric-vehicle battery recycling and storage centres form a newer group.

Thermal-runaway events release immense heat while producing very little entry space for water or foam.

Managers offset that by arranging for remote cooling streams and oversized water supplies that keep cells below reignition temperature.

Similar thinking appears at deep-sea terminals, where a shipboard blaze might outlast fresh-water reserves and local hydrants.

We also see growing interest from municipal alliances that cover rail corridors.

A derailment involving flammable liquids often strands traditional apparatus behind evacuation zones or damaged infrastructure.

With a transport-ready relay system, a county can draft from a creek, run hose along a railway bed, and still deliver meaningful flow onto tank cars without waiting for rebuilt mains.

Walk us through events from your deployment call to the first water flowing on site.

The process starts with a rapid desktop survey.

Dispatch officers open satellite imagery, plot the incident address, and highlight every pond, river, or canal within a three-mile radius.

At the same time they review tank inventories or manifest sheets to gauge foam requirements.

Those two data sets determine how many submersibles, boost pumps, hose beds, and totes leave the warehouse.

While units are in transit, an advance team contacts the incident commander and requests a staging zone large enough for twenty vehicle combinations.

Upon arrival, crew leaders split into water-source and attack-site groups.

One prepares the draft points—often with light excavation or portable weirs—while the other lays hose, aligns monitors, and connects proportioning gear.

Because each task follows a rehearsed checklist, overlap is minimal, and flow usually begins within two to three hours.

Once water reaches the deliver-point manifold, flow rates are trimmed to match foam application targets.

Operators monitor pressure at several hose positions, watching for friction loss spikes that might signal a kink or coupling failure.

When the fire shows sustained progress—flame height drops and surface temperature falls—teams gradually adjust streams, always protecting confinement lines until final extinguishment.

Do you provide operational training or familiarisation when customers purchase your specialised equipment?

Yes. Any facility investing in our hardware receives a structured programme that starts with classroom theory—hydraulics, foam chemistry, and safety factors—and moves into hands-on drills.

Crews practise assembling submersibles, setting up boost pumps, and operating remote monitors until every member can complete the full layout against the clock.

We also support annual or quarterly refreshers, often themed around specific local hazards.

A refinery might request night-time evolutions that simulate a lightning-induced floating-roof failure, while a port authority could focus on hose management across gangways.

Because the same instructors attend live deployments, lessons stay current, and feedback loops into equipment tweaks almost immediately.

Finally, training covers maintenance.

Personnel learn how to swap wear rings, check shaft alignment, and verify proportioner calibration.

The goal is simple: ensure the gear performs on the day it is needed without waiting for outside technicians or parts deliveries that a large-scale incident could delay.

How have recent foam regulation changes altered system performance demands and tactical choices?

Moving from aqueous film-forming foam to fluorine-free blends has generated practical challenges at every step.

The new concentrates lack the quick-forming film that once suppressed vapour within seconds, so extinguishment now relies on depth and gentle application.

That means higher total solution volumes—often triple the former requirement—and careful nozzle movement to avoid breaking the blanket.

Higher volume drives bigger pumps, longer hose lines, and more proportioner capacity.

A tank fire that previously settled with 10,000 gpm might now need 30,000 gpm sustained for the same control time.

Crews must also verify that concentrate viscosity matches eductor capability; under-metering drops performance, while over-metering wastes foam reserves that may already be tight.

No site has yet published a confirmed case of extinguishing a large (>100-foot) storage tank using only fluorine-free product, so every real-world test carries added pressure.

We continue to trial application patterns on training grounds, logging data for flow, blanket thickness, and burn-back time.

Those results shape the guidance we give clients while the wider industry refines performance standards.

Have recent field experiences prompted product or design revisions requested directly by users?

Several. The most significant is a direct-inject proportioning system that uses positive-displacement pumps and flow-meters to maintain mixing accuracy from 0.3 % up to 10 % across a wide viscosity range.

Early adopters asked for a solution that sidestepped traditional venturi eductors, which swing several points when line pressure drifts.

Keeping the ratio steady with newer foam concentrates is critical, so we built a fully enclosed module that slides into an ISO container for rapid deployment.

Monitor design has changed as well.

Crews requested longer reach without manual nozzle adjustments, so we introduced electric-drive turrets paired with gyroscopic stabilisers.

Looking forward, which gaps in fire response or water supply still need better solutions?

The largest hurdle is access rather than technology.

Many municipal and industrial budgets cannot justify owning equipment that may sit in storage for years, yet the first thirty minutes of a severe incident demand exactly that capacity.

Regional caches help, but travel time still counts.

Wider pre-incident agreements and cost-sharing models could shorten the window between alarm and flow without forcing every operator to purchase full sets.

Water sourcing is another concern. Drought restrictions, ageing infrastructure, and climate-related low-river stages can all limit draft options.

Forward-looking plans should map secondary sources—storm-water ponds, reclaimed-water mains, even temporary pipelines—to guarantee supply even when traditional hydrants falter.

Coupling those plans with high-volume mobile pumps ensures that water reaches the fire line rather than remaining an unrealised figure on a schematic.

Finally, the insurance sector is beginning to demand clear evidence of response capacity, not just written mutual-aid clauses.

Facilities that show confirmed arrangements, complete with mobilisation timetables and equipment lists, are already seeing premium adjustments.

Meeting those documentation requirements will push agencies to formalise contracts with external providers and schedule joint drills well before an emergency tests the paperwork.

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

Keep calm and carry water: Meeting global water demand with mobile pumping systems

IFSJ reviews today’s global mobile water-supply market, detailing value, growth outlook, technology strengths and operational hurdles for fire and rescue services worldwide

Large-diameter hose, modular booster pumps and container-mounted hose-handling systems let incident commanders lift water from rivers, lakes or the sea and push it several kilometres to a fire line.

This mobility solves two familiar bottlenecks: hydrant grids stop at city limits and buried mains can fail after storms or earthquakes.

The need is rising because longer wildfire seasons, larger petrochemical tanks and stricter insurer requirements all demand flow rates well beyond traditional hydrant output.

Market overview

Mobile water supply straddles two measurable product categories.

Verified Market Reports values the global lay-flat hose segment at US $1.5 billion in 2024 and projects US $2.5 billion by 2033, a compound annual growth rate of 6 percent.

Data Intelo estimates the portable and trailer-mounted fire-pump market at about US $2.54 billion in 2023, rising to US $4.3 billion by 2032 on roughly the same CAGR.

Taken together, the current addressable segment sits near US $4 billion and, at a blended growth rate of just over 6 percent, should top US $6.8 billion late next decade.

North America accounts for 38 percent of sales, Asia-Pacific 35 percent and Europe 20 percent, a distribution that reflects the geography of wildland fire losses, refinery expansions and infrastructure spending.

Modern high-flow pump modules now exceed 40 000 l min⁻¹ when supplied from an open source, making them suitable for cooling crude-oil tanks up to 75 metres in diameter or supporting multiple aerial monitors simultaneously.

Large-diameter hose advocates have demonstrated sustained flows of this magnitude over multi-kilometre lines for more than a decade.

Automated deployment containers can lay one kilometre of 250 mm hose in under ten minutes, replacing dozens of tanker shuttle trips and reducing driver fatigue.

Because equipment is containerised on ISO frames, it can travel by road, rail, air or sea without special permits, simplifying mutual-aid logistics.

The same hardware also drains flooded tunnels, cools nuclear reactors during refuelling outages and supplies potable-water relief after hurricanes, allowing public-safety agencies to spread capital cost across several departments and funding streams.

Challenges

A four-kilometre, 250 mm hose line with booster stations can cost around US $2 million, beyond most volunteer or municipal budgets.

Crews must learn pump control and hose handling, but seasonal rotations hinder training.

Deployments may need six flatbeds and a crane, hard to stage in forests or refineries.

Damp hoses risk microbial growth, and diesel engines require regular testing.

EU PFAS foam bans from 2026 will raise water demand and require larger equipment.

New rigs deliver 9,000 gpm from draft with one engine.

Digital-twin planning, VR training, hybrid power packs and automated flakers now streamline setup and reduce injury.

Regional Insights

North America continues to buy the largest share of high-capacity pump-trailers.

The National Interagency Fire Center reports 64,897 wildfires burned 8.9 million acres in 2024, both metrics above the ten-year average.

Because many rural reservoirs dry out by late summer, agencies increasingly spec emergency budgets for long-distance supply lines rather than additional tankers.

Europe suffered roughly 500,000 ha of forest loss in 2023—its fourth-worst year on record—prompting the EU Civil Protection Pool to subsidise cross-border high-capacity pumping modules able to bridge 20 km.

First deliveries enter service in the Mediterranean this summer, timed to the 2025 fire season.

Asia-Pacific commands the fastest growth in pump procurement; Allied Market Research identifies the region as both the largest and quickest-expanding fire-pump market by revenue, citing refinery and LNG-terminal construction from India to South Korea.

In the Middle East and Africa, oil-refining pump demand already holds 32 percent of the global market, notes Global Trade Magazine, and containerised hose modules double as cooling-water backups for desalination plants.

Adoption is steady rather than rapid because ambient heat shortens hose life and inflates maintenance budgets.

Latin America recorded its worst wildfire year on record in 2024: Brazilian agencies estimate more than 30 million hectares burned, a 79 percent increase over 2023.

State governments are now pooling regional caches of mobile pumps financed through development-bank climate-adaptation funds, aiming to cut deployment times when the dry-season winds return.          

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

New Armstrong fire pump reaches 160PSI for global markets

Expanded fire pump range introduced

Armstrong Fluid Technology has expanded its line of Constant Speed Vertical-In-Line Fire Pumps, now offering a model with a maximum 500 US gallons per minute (USGPM) flow rate for both 60Hz and 50Hz markets.

The new pump includes high-pressure ratings of up to 160PSI.

It has been designed to reduce the need for offset piping and motor realignment while occupying less floor space than Horizontal Split Case models.

Features of the new fire pump

The latest addition to Armstrong’s Vertical-In-Line series includes a smaller motor than comparable pumps at the same duty point.

It also has a smaller environmental footprint than standard diesel-driven pumps.

The pump has been approved by UL, ULC, and FM, ensuring compliance with industry safety and performance standards.

Industry positioning

Michael DeMille, Global Offering Manager for Fire Pumps at Armstrong Fluid Technology, highlighted the product’s unique capabilities: “Armstrong is one of only four manufacturers who can offer a VIL fire pump reaching 160PSI at 500 USGPM.”

He added: “This new model is an excellent addition to our existing Vertical-In-Line pump series.”

Availability and applications

The pump is designed for use in fire protection systems across a range of global markets.

Its vertical in-line configuration allows for easier installation and maintenance in settings where space is limited.

The expansion of the Vertical-In-Line Fire Pump range aligns with Armstrong’s broader efforts to provide efficient and compact fire protection solutions.

New Armstrong fire pump reaches 160PSI for global markets: Summary

Armstrong Fluid Technology has expanded its Constant Speed Vertical-In-Line Fire Pump range with a model that delivers a maximum flow rate of 500 USGPM and a pressure rating of up to 160PSI.

The pump is available for both 60Hz and 50Hz markets.

The design reduces the need for offset piping and motor realignment while taking up less floor space than Horizontal Split Case models.

It also features a smaller motor and a reduced environmental footprint compared to diesel-driven alternatives.

The pump has received UL, ULC, and FM approvals.

Armstrong’s Global Offering Manager for Fire Pumps, Michael DeMille, stated that the company is one of four manufacturers offering a vertical in-line fire pump reaching 160PSI at 500 USGPM.

Magirus introduces Poseidon pump family for flood emergency response

New Magirus Poseidon pump range designed for diverse flood and water management needs

Magirus has launched the Poseidon pump family, a new range of submersible pumps aimed at supporting fire brigades and rescue services in flood-related emergencies.

Developed to handle the growing challenges posed by extreme weather and flood events, the Poseidon series features the TP 4/1 pump, which delivers 420 litres per minute at 1 bar with a delivery head of 10 metres.

This model includes features such as an adjustable pressure outlet for horizontal or vertical application and a flat suction function capable of operating down to 10 mm, enhancing flexibility for various field conditions.

With these specifications, the Poseidon TP 4/1 is designed to be easily transported by one or two people, thanks to its ergonomic dual-handle design.

This new range of pumps reflects Magirus’ approach to creating equipment that can be adapted to multiple emergency scenarios, particularly where flood management and rapid response are required.

Adaptable pump models for water and sludge handling

The Poseidon pump family includes three different models, each suited to specific water and sludge handling needs encountered during flood events.

Magirus reports that the dirt water pump model operates with a flow rate of 225 litres per minute at a 10.5-metre delivery head and weighs 11.3 kg, intended for ease of transport and use in contaminated water settings.

The second model, the shallow water pump, is aimed at areas where water levels are particularly low, offering a flow rate of 205 litres per minute and an 11-metre delivery head.

This pump’s design is intended for simplified handling in such conditions, weighing in at 12kg.

For applications involving dense substances, the sludge pump model operates at a flow rate of 430 litres per minute with a delivery head of 12 metres.

Designed to handle more viscous materials, this pump has been developed to support heavy-duty water and sludge removal and weighs 15 kg.

Responding to climate-related flood challenges

Magirus has stated that the introduction of the Poseidon pump family aligns with their response to the heightened flood risks associated with changing weather patterns.

Designed to address both the operational demands of flood-related rescues and the increasing frequency of heavy rainfall events, these pumps are built to aid emergency responders in managing water-related emergencies efficiently.

This pump family has been developed to withstand the demands of extreme weather conditions, enabling fire brigades and rescue services to mobilise quickly and respond effectively in diverse flood scenarios.

Magirus underscores that the Poseidon series was created with an emphasis on reliability, high capacity, and usability, aiming to support emergency teams in addressing flood emergencies more efficiently.

The Poseidon TP 4/1 and its operational features

The Poseidon TP 4/1 submersible pump is designed to facilitate efficient flood management with minimal setup.

Magirus highlights the model’s adjustable pressure outlet, allowing operators to shift between horizontal and vertical settings, which adds to its versatility in various field conditions.

Additionally, the flat suction capability of the TP 4/1 enables operations down to a water level of 10 mm, addressing a need for flexibility in low water situations.

Weighing under typical pump standards, the TP 4/1 also incorporates a dual-handle design, making it transportable by one or two operators as needed.

These operational features contribute to the pump’s adaptability, particularly for use in urban and rural flood response scenarios.

New Poseidon pump range designed for diverse flood and water management needs: Summary

Magirus has introduced the Poseidon pump family, a series of submersible pumps developed for emergency flood and water management.

The family’s TP 4/1 model provides a 420-litre flow per minute and is designed for flexible application, including features like an adjustable pressure outlet and flat suction for low water levels.

Additional models, including the dirt water pump and sludge pump, address specific water and sludge handling needs.

This product line reflects Magirus’ intent to offer equipment suited to the increasing demands of flood-related rescues, providing emergency teams with tools for diverse conditions.

Rosenbauer unveils most powerful portable fire pump, FOX, at FLORIAN

Rosenbauer introduces the latest FOX model at FLORIAN 2024

Rosenbauer has introduced the newest version of its FOX portable fire pump at the FLORIAN firefighting trade show in Dresden.

As reported by Rosenbauer, the new FOX model boasts a flow rate of 2,050 litres per minute at 10 bar, making it the most powerful pump in its class.

It also meets the standard PFPN 10-2000 of EN 14466 for the first time, providing increased performance while maintaining lightweight and user-friendly operation.

Enhanced engine output and pump efficiency

The latest FOX model builds on the previous fourth-generation design, featuring a BRP-Rotax 3-cylinder motor.

Improvements to the cooling system, including a larger fan and optimised airflow, result in increased engine output.

Further efficiency gains have been made with the use of an impeller from Rosenbauer’s N20 in-built pump, allowing the FOX to maintain high performance while weighing just 172 kg, as reported by Rosenbauer.

Operation improvements with updated control display

The new FOX is equipped with a 3.5-inch RBC LCS colour display, offering user-friendly control of the pump, including a fully automated priming process.

This feature provides operators with key information on the system’s status and troubleshooting assistance if required.

Rosenbauer has also introduced new lighting options with the FOX model.

The pump can be fitted with an integrated LED lighting system for better visibility during manual transport.

Orders open from October 13, 2024

The new FOX fire pump model is available for order from October 13, 2024.

According to Rosenbauer, deliveries are expected by the end of the year, subject to order volume.

New FOX portable fire pump offers unmatched performance and efficiency: Summary

Rosenbauer has presented the latest iteration of its FOX portable fire pump at the FLORIAN trade show in Dresden.

With an output of 2,050 litres per minute at 10 bar, the new FOX is now the most powerful pump in its class.

Enhanced cooling and pump efficiency have been incorporated, while the unit remains lightweight at 172 kg.

Additional updates include an improved 3.5-inch display for easy operation and optional integrated LED lighting.

Orders for the new FOX model are open from October 13, with delivery scheduled by the end of 2024.

ZIEGLER showcases vehicles and equipment at Florian 2024

ZIEGLER displays advanced firefighting vehicles and equipment

ZIEGLER will showcase a range of firefighting vehicles and equipment at the Florian trade fair, which takes place this year.

As reported by ZIEGLER, visitors will find the company at stand F30 in the outdoor area 3, where several key vehicles will be displayed.

These include the HLF 20, the MLF, and the GW-L 2, all built on MAN and Iveco chassis.

In addition to these vehicles, ZIEGLER will highlight its newly developed rolling containers, designed for various deployment scenarios such as firefighting, technical assistance, and disaster control.

The company emphasises the containers’ functionality and flexibility, ensuring that they are optimal for transporting and storing equipment safely during operations.

Z-Connect and Z-Remote digital systems on display

ZIEGLER will also present its digital products, Z-Connect and Z-Remote, which are integrated into all vehicle exhibits at Florian.

These systems offer real-time vehicle data and provide interfaces compatible with all standard industry platforms.

ZIEGLER’s latest series-ready system supports operation management with enhanced functions that can be continuously expanded in collaboration with their industry partners.

As a founding member of IMBOS e.V., ZIEGLER will be available at the trade fair for further discussions on digital innovations and integration within the industry.

This aims to foster industry-wide cooperation in adopting digital technologies in emergency services.

The return of ZIEGLER Ultra Power

ZIEGLER is also reintroducing its proven Ultra Power, a powerful solution used extensively in firefighting operations.

According to Heiko Riek, Head of Sales Equipment and Components at ZIEGLER, the Ultra Power is a reliable product that has “demonstrated its strength in practice” and is expected to be delivered in larger quantities soon.

Riek emphasised that customer trust and product reliability remain the company’s primary focus.

Visitors attending the Florian trade fair can get a closer look at the Ultra Power and learn more about its capabilities.

A wide selection of emergency vehicles available

ZIEGLER will also present a selection of emergency vehicles at the trade fair, including both customer vehicles and demonstration models.

The featured HLF 20 is particularly suited for firefighting and technical assistance, with its extensive equipment making it a vital part of emergency operations.

The MLF, with its compact design, is ideal for manoeuvring through narrow lanes, while the GW-L 2 offers generous storage space, perfect for varied deployment scenarios.

Additionally, a TLF 4000 will be displayed at the Unimog partner booth, giving visitors insights into the range of applications for ZIEGLER vehicles in forest fires.

The comprehensive ZIEGLER portfolio will be available for visitors to explore, with staff on hand to provide technical advice and answer questions.

ZIEGLER presents emergency vehicles and equipment at Florian 2024: Summary

ZIEGLER will showcase a variety of firefighting vehicles and equipment at the 2024 Florian trade fair.

Key exhibits include the HLF 20, MLF, and GW-L 2 vehicles, alongside newly developed Z-roll containers.

ZIEGLER’s digital products, Z-Connect and Z-Remote, will also be on display, offering real-time vehicle data and integration with industry platforms.

The Ultra Power firefighting solution, known for its reliability, is being reintroduced.

In addition to these displays, a TLF 4000 will be featured at the Unimog partner booth.

Visitors will have the opportunity to explore nearly the entire ZIEGLER portfolio and speak with experts at the event.

Darley launches new electric pumps for European markets

Darley introduces battery-powered electric pumps for fire services

Darley has expanded its product range with the introduction of new battery-powered electric pumps tailored for the European market.

This initiative reflects the company’s ongoing commitment to innovation and customer-focused solutions in the fire safety sector.

The newly launched pumps feature electric motors, a response to the increasing demand for electrification in fire safety equipment.

As part of their customer-centric approach, Darley has collaborated with Esteri, a Finnish manufacturer known for its comprehensive line of EN pumps.

This partnership aims to leverage Esteri’s expertise to cater to the global market’s needs.

Commitment to quality and sustainability

Darley continues to emphasise its dedication to high-quality products and sustainable practices.

The company assures that these new electric pumps are designed to meet the highest standards of performance and reliability.

The company said it is committed to providing the best solutions with the lowest cost of ownership and the industry’s best warranty.

The collaboration with Esteri enhances the range of products available and underlines Darley’s strategy to adopt more environmentally friendly technologies in their offerings.

This move is aligned with global trends towards sustainability and reduced carbon emissions in fire safety operations.

Learn more about Darley’s products

For those interested in learning more about Darley’s extensive range of pump solutions, including diesel, marine, and portable options, further details are available on their website.

The site provides comprehensive information about each product, allowing potential customers and partners to explore the various features and applications of Darley’s pumps.

Through its strategic partnership with Esteri and the introduction of electric pumps, Darley said it is continuing to lead the way in innovative solutions for the fire safety market.