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FRTS · International Catalogue 2026

English edition: 32 products across seven application sectors. Independent editable project; the Chinese catalogue is retained.

Gepubliceerd door: lyping · Hergebruiklicentie: All rights reserved

De interfacetaal verandert de oorspronkelijke catalogusinhoud niet.

Fire testing. From materials to systems.

Large-scale fire test

Complete FRTS brand

INTERNATIONAL EDITION / 2026

Fire testing. From materials to systems.

Built around your needs. Engineered for reliable testing.

32 PRODUCTS / 7 APPLICATION SECTORS

Sichuan Farui Testing Equipment Co., Ltd.

www.firets.com

Contents

Fire atmosphere

FRTS brand

01 / FRTS

FIND YOUR TEST ROUTE

A connected portfolio.

Start with your application, then define the measurement, specimen and laboratory conditions.

01

FRTS / Company & capability

03

02

Building materials

11

03

Fire resistance

32

04

Rail transport

41

05

New energy

50

06

Cables & wires

57

07

Fire protection

70

08

Research & laboratories

75

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Built around your next test.

Fire atmosphere

FRTS brand

01 / FRTS

COMPANY PROFILE

Built around your next test.

Fire-test instruments, measurement systems and laboratory integration.

Founded in April 2016 in Mianyang, China, Sichuan Farui Testing Equipment Co., Ltd. develops fire-testing equipment, measurement and control software, and integrated test systems for laboratories, research organisations and manufacturers.

2016

Founded in Mianyang, China

From standard interpretation to installation and training.

STANDARDS TO EQUIPMENT

Translate the test object, exposure and result requirements into a practical instrument configuration.

CONTROL AND INTEGRATION

Connect sensors, acquisition, software and equipment actions around a coherent test record.

SUPPORT FOR THE TASK

Develop the proposal from the customer’s specimen, site and intended laboratory workflow.

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Quality through project delivery

Fire atmosphere

FRTS brand

01 / FRTS

QUALITY MANAGEMENT

Quality is built through the project.

A defined technical scope connects design, assembly, verification and handover. Equipment configuration, interfaces and acceptance activities are agreed against the intended test programme.

Original ISO 9001 certificate

ISO 9001:2015

Quality management system

Certificate: 30924Q0210R0S GB/T 19001-2016 / ISO 9001:2015 Validity stated: 6 Jun 2024 - 5 Jun 2027

Certified scope: development, assembly and service of industrial automatic-control instruments and devices.

DEFINE

Technical agreement and interfaces

VERIFY

Assembly, checks and commissioning

DELIVER

Records, training and handover

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Research and industry participation

Fire atmosphere

FRTS brand

01 / FRTS

QUALIFICATIONS & PARTICIPATION

Engineering expertise. Industry engagement.

NATIONAL HIGH-TECH ENTERPRISE

Recognised under China’s High and New Technology Enterprise programme. Certificate GR202551000122 was issued on 2 December 2025 with a stated three-year validity.

Original high-tech enterprise certificate

Original membership certificate

SMART LABORATORY COMMUNITY

Senior member of the Smart Laboratory Professional Committee of the China Association for Standardization. Industry participation complements the company’s work in instrumentation, control and laboratory systems.

Original certificate reproductions are retained for reference.

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Selected clients

Fire atmosphere

FRTS brand

01 / FRTS

SELECTED CLIENTS

Research. Testing. Certification.

Organisations named in the company’s supplied client records.

Sichuan Fire Science and Technology Research Institute logo

Sichuan Fire Science and Technology Research Institute

Fire and safety research

China Academy of Safety Science and Technology logo

China Academy of Safety Science and Technology

Fire and safety research

China Building Material Test & Certification Group logo

China Building Material Test & Certification Group

Testing and certification

Intertek logo

Intertek

International assurance and testing

Centre Testing International logo

Centre Testing International

Testing and certification

Shanghai Jianke logo

Shanghai Jianke

Building research and testing

Guangdong Building Research Institute logo

Guangdong Building Research Institute

Building research and testing

Guangdong Institute of Product Quality Supervision and Inspection

Quality inspection

Guangzhou Quality Inspection Institute logo

Guangzhou Quality Inspection Institute

Quality inspection

Guangzhou Building Materials Research Institute

Building-material research

Specialist Testing

Specialist testing

Shunrong Testing

Specialist testing

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Laboratory references

Fire atmosphere

FRTS brand

01 / FRTS

IN THE LABORATORY

From system design to working installations.

Laboratory installation

PROJECT 01

CTC / Beijing Miyun

SBI installation for building-product fire testing, coordinating the chamber with smoke collection and extraction.

Laboratory installation

PROJECT 02

Guangdong Building Research Institute

An SBI laboratory arrangement showing the relationship between the test chamber, collection hood and exhaust route.

Laboratory installation

PROJECT 03

Guangzhou Inspection Group

Flooring radiant-panel equipment installed for evaluation of flooring assemblies.

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From test requirement to handover

Fire atmosphere

FRTS brand

01 / FRTS

PROJECT DELIVERY

A clear route from brief to test.

Define responsibilities, interfaces and acceptance activities before equipment arrives.

01

DEFINE THE TASK

Specimens, adopted methods, required measurements and intended output.

02

ENGINEER THE SYSTEM

Equipment configuration, laboratory layout and service interfaces.

03

MANUFACTURE & ASSEMBLE

Mechanical parts, surface treatment and integrated assembly.

04

CHECK & COMMISSION

Measurement channels, equipment actions and agreed verification.

05

PREPARE SHIPMENT

Packing, handling requirements and delivery coordination.

06

INSTALL ON SITE

Positioning, connection and integration with laboratory services.

07

TRAIN THE TEAM

Operating workflow, records and routine care.

08

SUPPORT IN USE

Technical assistance, maintenance and agreed upgrades.

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A map of complementary measurements

Fire atmosphere

FRTS brand

01 / FRTS

METHODS & DECISIONS

Different questions. Complementary tests.

Select the result you need before selecting the instrument.

IGNITION & SPREAD

Small-flame, SBI, flooring and lateral-spread tests describe behaviour under different exposure conditions.

HEAT RELEASE

Cone calorimetry, SBI and larger calorimeters connect fire development with time-resolved thermal data.

SMOKE & GASES

Optical smoke measures obscuration. FTIR and other gas analysers measure selected chemical components.

FIRE RESISTANCE

Furnace testing addresses separating or loadbearing functions of the installed assembly.

CABLE PERFORMANCE

Flame propagation, smoke, gas chemistry and circuit integrity answer separate application questions.

RESEARCH SYSTEMS

Define the scale, boundaries, fire source and measurement basis before comparing experimental results.

A test method defines a procedure; product classification or certification requires its own applicable criteria and complete assessment route.

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Building-product classification in context

Fire atmosphere

FRTS brand

01 / FRTS

STANDARDS IN CONTEXT

Choose the route for the product.

Reaction to fire describes a product’s contribution to fire development. Fire resistance describes how an assembly performs under a defined exposure. The two are not interchangeable.

BUILDING PRODUCTS

Under GB 8624-2012, the applicable combination may include non-combustibility, gross heat of combustion, SBI and small-flame testing. Product category, composition and target class determine the route.

FLOORING PRODUCTS

Flooring uses dedicated radiant-panel criteria. The installation assembly, substrate and adhesive form part of the tested construction. Wall-panel SBI criteria cannot simply be reused.

ADDITIONAL INFORMATION

Smoke, flaming droplets and toxicity describe different aspects of behaviour. Use the required method and notation for the applicable product category.

STANDARD TRANSITION

GB 8624-2025 is scheduled to take effect on 1 January 2027. Confirm the edition required by the project and review any new product-category provisions before specifying equipment.

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Building materials

Sector context

02

BUILDING MATERIALS

From material response to informed selection.

Measure ignition, heat release, smoke and fire spread. Select a test combination for the product category and intended classification, then define the specimen construction and laboratory services.

Single Burning Item Apparatus

12

Non-combustibility Test Furnace

14

Oxygen Bomb Calorimeter

16

Single Flame Source Tester

18

Flooring Radiant Panel Apparatus

20

Limiting Oxygen Index Apparatus

22

Welding Spark Ignitability Apparatus

24

Smoke Toxicity Test Apparatus

26

Cone Calorimeter

28

External Fire Exposure Apparatus for Roofs

30

Single Burning Item Apparatus

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Single Burning Item Apparatus

FRTS-20284

EN 13823 / GB/T 20284

Equipment / Single Burning Item Apparatus

Equipment image. Configuration may vary.

PURPOSE

Bring heat release, smoke production and lateral flame spread into one coordinated test. The SBI system exposes building products arranged as a corner assembly to a single burner, linking the specimen's construction to its measured fire response.

Test in progress

Test in progress

Understand a product's contribution to fire.

TEST PRINCIPLE

Combustion products pass through a collection hood and measurement duct. Exhaust flow and oxygen concentration support heat-release calculations; optical attenuation describes smoke production. Temperature, differential pressure and observed events share a common test timeline.

SYSTEM ARCHITECTURE

Test chamber and specimen trolley; main and auxiliary burners; gas control; exhaust measurement section; sample conditioning; gas analysis and data acquisition.

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Single Burning Item Apparatus / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-20284

Single Burning Item Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMENS

1500 × 1000 / 500 mm

BURNER OUTPUT

30 ± 2 kW

EXHAUST FLOW

0.50-0.65 m³/s

DUCT DIAMETER

315 ± 5 mm

DAQ CHANNELS

At least 32 channels; at least 3 Hz

OUTPUTS

FIGRA / THR / SMOGRA / TSP

ELECTRICAL

380 V three-phase / 220 V; approx. 15 kW

FUEL

Propane ≥95%; 0.05-0.3 MPa

COMPRESSED AIR

Clean, dry air; dew point ≤-20 °C

EXHAUST

Dedicated exhaust and make-up air

INSTALLATION

Chamber approx. 3 × 3 × 2.4 m

ENVIRONMENT

23 ± 5 °C,50 ± 20% RH

METHOD & INTERPRETATION

EN 13823 and GB/T 20284 provide test data used within applicable classification systems. FIGRA, THR, LFS and smoke measurements must be interpreted with the other tests required for the product category and target class.

KEEP THE TEST TRACEABLE

Retain specimen photographs, mounting details, gas-analyser calibration, exhaust-flow checks and optical calibration. Align operating events with the recorded curves.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Non-combustibility Test Furnace

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Non-combustibility Test Furnace

FRTS-5464

ISO 1182 / GB/T 5464

Equipment / Non-combustibility Test Furnace

Equipment image. Configuration may vary.

PURPOSE

Evaluate non-combustibility through temperature rise, sustained flaming and mass change. The furnace provides a stable high-temperature environment for prepared specimens of building materials, insulation products and their constituent materials.

APPLICATIONS

Material screening and building-product testing. Sampling and separation of components must reflect whether the product is homogeneous or composite.

Measure the response to a controlled furnace environment.

TEST PRINCIPLE

Temperature sensors monitor the furnace and the specimen response. Flame observations and specimen mass before and after exposure complete the measurement record.

SYSTEM ARCHITECTURE

Heated furnace, specimen holder, temperature measurement and control, supported by weighing and furnace-condition verification accessories.

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Non-combustibility Test Furnace / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-5464

Non-combustibility Test Furnace

SPECIFICATIONS

UTILITIES & INSTALLATION

FURNACE TEMPERATURE

750 ± 5 °C

SPECIMEN

Ø45 × 50 mm

FURNACE TUBE

Internal diameter ≥75 mm; height ≥150 mm

ACQUISITION

At least 8 channels; 0.1 °C; at least 1 Hz

BALANCE RESOLUTION

0.01 g

DIMENSIONS

Approx. 700 × 700 × 1800 mm

ELECTRICAL

220 V single-phase; approx. 3 kW

FUEL

Electric heating; no fuel gas for heating

AIR / WATER

Auxiliary services to be agreed

EXHAUST

Connect furnace outlet to laboratory exhaust

SERVICE CLEARANCE

Recommended clearance ≥500 mm

ENVIRONMENT

23 ± 5 °C,50 ± 20% RH

METHOD & INTERPRETATION

ISO 1182 / GB/T 5464 assess non-combustibility. Gross heat of combustion is measured separately under ISO 1716 / GB/T 14402. Classification requires the applicable combination of methods, not a furnace-temperature result alone.

KEEP THE TEST TRACEABLE

Record conditioning, initial and final mass, thermocouple position and sustained-flaming duration. Retain temperature curves together with weighing and observation records.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Oxygen Bomb Calorimeter

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Oxygen Bomb Calorimeter

FRTS-14402

ISO 1716 / GB/T 14402

Equipment / Oxygen Bomb Calorimeter

Equipment image. Configuration may vary.

PURPOSE

Determine gross heat of combustion using oxygen bomb calorimetry. The method provides material and component data for building-product assessment and helps compare the thermal contribution of core materials, adhesives and surface layers.

APPLICATIONS

Homogeneous materials, composite products and individual constituents that can be prepared and combusted using the specified method.

Quantify the energy released by complete combustion.

TEST PRINCIPLE

A weighed sample is ignited in a sealed oxygen-filled bomb. The calorimeter measures temperature change and converts it into heat of combustion using calibrated system heat capacity and the required corrections.

SYSTEM ARCHITECTURE

Oxygen bomb, calorimetric vessel, temperature measurement, stirring and ignition. Weighing, oxygen charging and reference materials support preparation and calibration.

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Oxygen Bomb Calorimeter / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-14402

Oxygen Bomb Calorimeter

SPECIFICATIONS

UTILITIES & INSTALLATION

METHOD

Oxygen bomb calorimetry

BOMB VOLUME

Approx. 300 mL

CHARGING PRESSURE

3.0 MPa

TEMPERATURE MEASUREMENT

±0.001 °C, as stated in source specification

OUTPUT

Gross heat of combustion (PCS)

MAIN UNIT

Approx. 500 × 400 × 450 mm

ELECTRICAL

220 V; approx. 1.5 kW

GAS SUPPLY

High-purity oxygen; separate regulated charging

WATER

Purified water / temperature-control circulation

DISCHARGE

Provision for controlled bomb depressurisation

INSTALLATION

Stable bench, isolated from vibration

ENVIRONMENT

Temperature-controlled laboratory; no direct sunlight

METHOD & INTERPRETATION

ISO 1716 / GB/T 14402 measure gross heat of combustion. This quantity is distinct from the time-dependent heat-release rate measured by SBI or cone calorimetry. Component sampling and mass fractions matter for composite-product assessment.

KEEP THE TEST TRACEABLE

Keep sample mass, calibration, ignition aids and correction values. Inspect combustion residue and retain the basis used to calculate component contributions.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Single Flame Source Tester

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Single Flame Source Tester

FRTS-8626

ISO 11925-2 / GB/T 8626

Equipment / Single Flame Source Tester

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Apply a defined small flame to a vertically mounted specimen and observe ignition, flame spread and flaming droplets. The apparatus supports testing of building panels, insulation and decorative materials under surface or edge flame application.

APPLICATIONS

Development screening and small-flame testing. Specimen thickness, substrate, orientation and exposed edge should be recorded with every result.

Observe ignition and upward flame propagation.

TEST PRINCIPLE

A specimen holder and adjustable burner establish the exposure geometry. Timed flame application and specimen reference marks provide the basis for recording flame propagation and visible changes.

SYSTEM ARCHITECTURE

Test enclosure, vertical holder, small-flame burner and timing controls, with observation accessories selected for the applicable procedure.

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Single Flame Source Tester / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-8626

Single Flame Source Tester

SPECIFICATIONS

UTILITIES & INSTALLATION

EXPOSURE

Surface or edge flame application

SPECIMEN HOLDER

Adjustable vertical specimen holder

IGNITION SOURCE

Small-flame burner

OBSERVATIONS

Flame spread / flaming droplets

TIMING

Flame application and sustained flaming records

DIMENSIONS

Approx. 800 × 600 × 1200 mm

ELECTRICAL

220 V; approx. 1 kW

FUEL

Fuel type and pressure to suit burner configuration

COMPRESSED AIR

To suit burner configuration

EXHAUST

Laboratory exhaust with controlled air movement

INSTALLATION

Non-combustible bench with operating clearance

ENVIRONMENT

Avoid external draughts

METHOD & INTERPRETATION

ISO 11925-2 / GB/T 8626 assess ignitability under a specified small-flame exposure. The selected procedure depends on the product and classification route. A single small-flame test does not describe complete fire performance.

KEEP THE TEST TRACEABLE

Document surface or edge application, conditioning, specimen thickness, installed construction, flame verification and timing. Keep observations traceable to the specimen reference marks.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Flooring Radiant Panel Apparatus

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Flooring Radiant Panel Apparatus

FRTS-11785

ISO 9239-1 / GB/T 11785

Equipment / Flooring Radiant Panel Apparatus

Equipment image. Configuration may vary.

PURPOSE

Study the combined effect of radiant heat and an ignition flame on flooring assemblies. The apparatus supports carpet, timber, resilient and rubber flooring, relating flame propagation and smoke development to the surface, backing, substrate and adhesive system.

Test in progress

Test in progress

Evaluate flooring as an installed system.

TEST PRINCIPLE

An inclined radiant panel creates a heat-flux gradient along the horizontal specimen. A pilot flame ignites the high-flux end. Flame-front observations are related to the calibrated radiation profile, while the exhaust optical system records smoke obscuration.

SYSTEM ARCHITECTURE

Test enclosure, sliding specimen platform, radiant panel, pilot burner, heat-flux calibration equipment and optical smoke measurement.

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Flooring Radiant Panel Apparatus / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-11785

Flooring Radiant Panel Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMEN

1050 ± 5 × 230 ± 5 mm

THICKNESS

≤38 mm, subject to specimen conditions

RADIANT PANEL

300 ± 10 × 450 ± 10 mm

HEAT FLUX METER

0-15 kW/m²,±3%

DUCT VELOCITY

2.5 ± 0.2 m/s

DIMENSIONS

Approx. 1400 × 900 × 1850 mm

ELECTRICAL

220 V, 50 Hz; approx. 4 kW

FUEL

Propane ≥95%; 10-50 kPa

COMPRESSED AIR

Clean, dry air; dew point ≤-20 °C

COOLING

Recirculating cooling water for heat-flux meter

EXHAUST / ACCESS

Dedicated exhaust; service clearance ≥0.5 m

ENVIRONMENT

23 ± 5 °C,50 ± 20% RH

METHOD & INTERPRETATION

ISO 9239-1 / GB/T 11785 use a dedicated flooring test route. Flooring criteria must not be substituted with the SBI criteria for wall products. ISO 9239-1:2025 is available; the project must identify the adopted edition and required configuration.

KEEP THE TEST TRACEABLE

Verify the heat-flux profile. Record substrate, adhesive, joints, direction, flame travel, extinction position and smoke curve. Confirm heat-flux-meter cooling and exhaust interfaces.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Limiting Oxygen Index Apparatus

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Limiting Oxygen Index Apparatus

FRTS-2406

ISO 4589-2 / GB/T 2406.2

Equipment / Limiting Oxygen Index Apparatus

Equipment image. Configuration may vary.

PURPOSE

FRTS-2406 supports ambient-temperature oxygen-index testing of plastics, foams and related polymers. Controlled oxygen and nitrogen mixing helps compare formulations, production batches and specimen thickness under defined burning conditions.

APPLICATIONS

Polymer development, material comparisons and quality-control studies. Keep specimen geometry and conditioning consistent between comparisons.

Compare the oxygen concentration needed to sustain burning.

TEST PRINCIPLE

A prepared specimen is held in a combustion column and ignited in a controlled gas mixture. Oxygen concentration is adjusted in accordance with the required burning-time or burning-length criterion.

SYSTEM ARCHITECTURE

Combustion column, gas mixing and flow control, specimen holders and adjustable ignition equipment. Holder selection follows specimen form.

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Limiting Oxygen Index Apparatus / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-2406

Limiting Oxygen Index Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMENS

Plastics, foams and related materials

MEASUREMENT

Limiting oxygen index (LOI)

GAS MIXING

Controlled oxygen / nitrogen mixture

MOUNTING

Holders matched to specimen type

IGNITION

Adjustable ignition device

RANGE / RESOLUTION

To be confirmed for the selected analyser

ELECTRICAL

Voltage and power to be confirmed from rating plate

GAS SUPPLY

Oxygen and nitrogen with separate regulators

PILOT GAS

Gas types and connections to suit configuration

EXHAUST

Remove combustion products without disturbing flow

INSTALLATION

Level bench; secured gas cylinders

ENVIRONMENT

Stable temperature and humidity; no strong draughts

METHOD & INTERPRETATION

ISO 4589-2 / GB/T 2406.2 define the ambient-temperature method. GB 8624-2012 includes additional oxygen-index limits for specified wall-insulation foams: 30% for B1 and 26% for B2, together with the applicable classification requirements. These are not universal limits for all plastics.

KEEP THE TEST TRACEABLE

Record specimen type, conditioning, ignition procedure, concentration sequence, burning time or length and repeat results. Elevated-temperature oxygen-index testing requires a separate configuration.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Welding Spark Ignitability Apparatus

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Welding Spark Ignitability Apparatus

FRTS-40237

GB/T 40237

Equipment / Welding Spark Ignitability Apparatus

Equipment image. Configuration may vary.

PURPOSE

Expose foam plastics and insulation products to particles generated by a controlled welding process. This apparatus helps examine an ignition source relevant to construction activity, complementing tests that use a continuous flame.

APPLICATIONS

Polystyrene, polyurethane, phenolic foams and related products. Compare formulations, protective facings and material combinations.

Investigate ignition from welding sparks and hot slag.

TEST PRINCIPLE

The welding wire, moving steel plate and specimen position establish the exposure. Observations link ignition, continued burning and local damage to the welding conditions and specimen surface.

SYSTEM ARCHITECTURE

Test enclosure, specimen support, welding assembly, plate-motion unit and controls, coordinated with extraction and protected observation space.

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Welding Spark Ignitability Apparatus / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-40237

Welding Spark Ignitability Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

CHAMBER

800 × 800 × 1000 mm

SPECIMEN

600 × 600 × 50 mm nominal

WELDING WIRE

ER50,Ø1.0 mm

PLATE TRAVEL

5-10 mm/s

SEPARATION

600 ± 50 mm

EXHAUST PORT

Ø250 mm

ELECTRICAL

Rate control system and welding supply separately

SHIELDING GAS

CO₂ shielding gas to suit welding equipment

CONSUMABLES

Welding wire, mild-steel plate and fixtures

EXHAUST

Fume enclosure with post-test extraction

INSTALLATION

Non-combustible bench and protected welding area

ENVIRONMENT

15-35 °C,45-75% RH

METHOD & INTERPRETATION

GB/T 40237 addresses foam-plastic ignitability under the specified exposure. Resistance to ignition by welding particles must not be presented as non-combustibility or as a complete GB 8624 classification.

KEEP THE TEST TRACEABLE

Record welding settings, consumables, plate movement, specimen distance, surface treatment and thickness. Video helps distinguish momentary ignition, sustained burning and local melting.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Smoke Toxicity Test Apparatus

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Smoke Toxicity Test Apparatus

FRTS-20285

GB/T 20285

Equipment / Smoke Toxicity Test Apparatus

Equipment image. Configuration may vary.

PURPOSE

Establish controlled heating, material decomposition and smoke transfer for material-smoke toxicity work. The supply boundary should match the complete laboratory method, including the interfaces needed for exposure and assessment.

APPLICATIONS

Building and decorative materials, method development and laboratory programmes organised around GB/T 20285.

Organise controlled smoke generation for toxicity assessment.

TEST PRINCIPLE

The specimen and tube furnace are arranged to generate smoke under the specified programme. Controlled air and gas transfer connect generation to the downstream exposure or analysis stage.

SYSTEM ARCHITECTURE

Tube furnace, specimen transport, temperature control and smoke-transfer components. Downstream exposure and evaluation facilities are defined separately in the project scope.

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Smoke Toxicity Test Apparatus / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-20285

Smoke Toxicity Test Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

FURNACE TEMPERATURE

Ambient to 1100 °C

TRAVEL SPEED

10 ± 0.1 mm/min

TRAVEL DISTANCE

≥600 mm

CARRIER FLOW

0-10 L/min

DILUTION FLOW

0-5 L/min

DIMENSIONS

Approx. 2400 × 1000 × 1800 mm

ELECTRICAL

220 V; approx. 2 kW

GAS SUPPLY

Purified air; 0.05 MPa inlet

WATER

Auxiliary services to be agreed for the project

EXHAUST

Collect and treat test exhaust gases

INSTALLATION

Fume hood or dedicated extraction area

ENVIRONMENT

10-35 °C

METHOD & INTERPRETATION

GB/T 20285 toxicity assessment is distinct from optical smoke density and from FTIR concentration measurements. Those outputs do not replace the complete assessment procedure or its required laboratory facilities.

KEEP THE TEST TRACEABLE

Define the apparatus supply boundary, specimen preparation, smoke-generation conditions and downstream interfaces. Keep generation, exposure and result records linked to the same test.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cone Calorimeter

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

Cone Calorimeter

FRTS-5660

ISO 5660-1 / ASTM E1354

Equipment / Cone Calorimeter

Equipment image. Configuration may vary.

PURPOSE

Study small-scale material behaviour under controlled radiant exposure. Cone calorimetry links ignition, heat release, smoke and mass change, helping development teams compare coatings, thicknesses and formulations under a defined thermal condition.

Test in progress

Test in progress

Resolve ignition, heat release and mass loss over time.

TEST PRINCIPLE

A conical heater exposes the specimen to a selected heat flux. Combustion products enter an exhaust measurement section; oxygen concentration and exhaust flow support calorimetry, alongside weighing and optical smoke measurements.

SYSTEM ARCHITECTURE

Radiant heater, specimen holder, load measurement, collection hood, exhaust measurement, gas analysis and acquisition software.

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Cone Calorimeter / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-5660

Cone Calorimeter

SPECIFICATIONS

UTILITIES & INSTALLATION

HEAT FLUX

0-100 kW/m²

TYPICAL IRRADIANCE

35 / 50 / 75 kW/m²

SPECIMEN

100 × 100 mm

THICKNESS

≤50 mm

OUTPUTS

HRR / THR / SPR / TSP

OPTIONS

CO / CO₂ / FTIR

ELECTRICAL

Heater and control-cabinet loads to be confirmed

CALIBRATION / PILOT

To suit the selected burner

COMPRESSED AIR

To suit optical purge configuration

COOLING

Circulating water for heat-flux meter

EXHAUST

Dedicated extraction and stable make-up air

INSTALLATION

Allow hood height and maintenance access

METHOD & INTERPRETATION

ISO 5660-1 and ASTM E1354 address calorimetry under controlled radiant exposure. Heat flux, orientation, backing and edge restraint affect results. Sector-specific requirements still determine specimen preparation and acceptance criteria.

KEEP THE TEST TRACEABLE

Record heat flux, ignition mode, exposed area and edge wrapping. Check oxygen, flow and mass calibration, and use a common time reference for HRR, THR, ignition and mass change.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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External Fire Exposure Apparatus for Roofs

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

PRODUCT OVERVIEW

External Fire Exposure Apparatus for Roofs

FRTS-30735-A

GB/T 30735 / Method A

Equipment / External Fire Exposure Apparatus for Roofs

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Observe flame spread, penetration and damage in a roof construction exposed to a specified burning source. The relevant specimen is the assembly of covering, insulation and supporting layers, including its joints and fixings.

APPLICATIONS

Roof-covering systems and construction development. Keep the substrate, layer sequence, slope, joints and attachment method explicit.

Assess the roof assembly under external fire exposure.

TEST PRINCIPLE

The roof specimen is mounted at the required angle. A positioned burning basket applies the exposure; timed observations and post-test inspection describe the fire path and resulting damage.

SYSTEM ARCHITECTURE

Adjustable specimen support, burning basket and positioning accessories, with observation, measurement and recording tools.

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External Fire Exposure Apparatus for Roofs / Technical profile

Fire atmosphere

FRTS brand

02 / BUILDING MATERIALS

TECHNICAL PROFILE / FRTS-30735-A

External Fire Exposure Apparatus for Roofs

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMEN

Roofs and roof-covering products

METHOD

Method A

BRAND BASKET

300 × 300 × 200 mm

BASKET MASS

650 ± 50 g

MOUNTING

Roof angle and supports to suit project design

OBSERVATIONS

Flame spread / penetration / damage

ELECTRICAL

Data acquisition and auxiliaries as configured

FUEL

Specified wood wool and ignition fuel

GAS SUPPLY

To suit ignition assembly

EXHAUST

Dedicated exhaust and make-up air

INSTALLATION

Specimen frame and protected operating area

ENVIRONMENT

Airflow, temperature and humidity per test method

METHOD & INTERPRETATION

GB/T 30735 Method A is a defined external-fire procedure. GB 8624-2025 introduces classification provisions for roof coverings and products, with implementation from 1 January 2027. Required combinations of tests and accessories must be checked against the applicable clauses.

KEEP THE TEST TRACEABLE

Retain substrate, slope, joints, fixings and exposed-face details. Describe external-fire behaviour separately from furnace-based fire-resistance performance.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Fire resistance

Sector context

03

FIRE RESISTANCE

Test the assembly. Understand the boundary.

Coordinate the furnace, specimen frame, pressure, temperatures and observations around the construction being tested. Fire resistance is a property of the tested assembly and its defined installation.

Vertical Fire Resistance Furnace

33

Ventilation Duct Fire Resistance Furnace

35

Compact Fire Resistance Furnace

37

Fire Resistance Test Control System

39

Vertical Fire Resistance Furnace

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

PRODUCT OVERVIEW

Vertical Fire Resistance Furnace

Project configuration

ISO 834 / GB/T 9978 / project-specific scope

Equipment / Vertical Fire Resistance Furnace

Equipment image. Configuration may vary.

PURPOSE

Create a coordinated fire-resistance test system for walls, doors, windows and other vertical separating elements. Furnace construction, specimen support, combustion, pressure and multipoint temperatures are designed around the specimen and its installed boundary conditions.

APPLICATIONS

Fire-resisting vertical assemblies. The specimen dimensions, restraint, frame connection and exposed direction define the scope of each test.

Test separating elements within a controlled fire environment.

TEST PRINCIPLE

Combustion and exhaust control establish furnace temperature and pressure. Furnace sensors describe exposure, while unexposed-face measurements and integrity observations describe the specimen response over time.

SYSTEM ARCHITECTURE

Refractory-lined furnace, specimen frame, burner group, fuel and combustion-air supply, exhaust, control cabinet and application-specific instrumentation.

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Vertical Fire Resistance Furnace / Technical profile

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

TECHNICAL PROFILE / PROJECT CONFIGURATION

Vertical Fire Resistance Furnace

SPECIFICATIONS

UTILITIES & INSTALLATION

TEST SPACE

Example furnace opening: 3 × 3 m

HEATING CONTROL

To suit the selected heating curve

PRESSURE CONTROL

Pressure acquisition and closed-loop control

TEMPERATURE

Multiple furnace and unexposed-face measurements

INSTALLATION

Configured for the specimen and site

RANGE / CHANNELS

To be confirmed in the technical proposal

ELECTRICAL

Rate controls, fans and actuators separately

FUEL

Fuel type and supply pressure per design

COMBUSTION AIR

Combustion air and make-up air

EXHAUST

Dedicated high-temperature exhaust and cooling design

INSTALLATION

Foundations, structural loading, lifting and service access

ENVIRONMENT

Dedicated fire-testing area

METHOD & INTERPRETATION

ISO 834 / GB/T 9978 address fire-resistance testing under controlled exposure. Integrity, insulation and loadbearing capacity are separate performance aspects. Loadbearing specimens require suitable loading equipment; temperature alone does not establish every performance criterion.

KEEP THE TEST TRACEABLE

Verify sensor positions, furnace-pressure reference, joints and supports. Retain furnace and unexposed-face temperatures, events, termination reasons and the complete specimen construction.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Ventilation Duct Fire Resistance Furnace

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

PRODUCT OVERVIEW

Ventilation Duct Fire Resistance Furnace

Project configuration

ISO 834 / GB/T 9978 / dedicated duct method

Equipment / Ventilation Duct Fire Resistance Furnace

Equipment image. Configuration may vary.

PURPOSE

Configure fire-resistance testing around duct walls, flanges, supports and penetrations. Furnace exposure, installation geometry, internal operating conditions and auxiliary measurements together define the test boundary.

APPLICATIONS

Ventilation and smoke-control duct assemblies. Specify horizontal or vertical installation, exposure direction, flange spacing and support construction.

Bring duct construction and test conditions into one system.

TEST PRINCIPLE

The duct assembly is exposed to controlled furnace temperature and pressure. Wall temperatures and observed behaviour are recorded; internal flow, pressure and leakage measurements are added where required by the selected method.

SYSTEM ARCHITECTURE

Furnace chamber, penetrations, supports, combustion, exhaust and controls. Fans, flow measurement, cooling and extraction auxiliaries are engineered for the intended test.

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Ventilation Duct Fire Resistance Furnace / Technical profile

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

TECHNICAL PROFILE / PROJECT CONFIGURATION

Ventilation Duct Fire Resistance Furnace

SPECIFICATIONS

UTILITIES & INSTALLATION

TEST SPACE

Chamber and penetrations sized for the duct

HEATING CONTROL

To suit the selected heating curve

PRESSURE CONTROL

Pressure acquisition and closed-loop control

TEMPERATURE

Multiple furnace and unexposed-face measurements

INSTALLATION

Configured for the specimen and site

RANGE / CHANNELS

To be confirmed in the technical proposal

ELECTRICAL

Rate controls, fans and actuators separately

FUEL

Fuel type and supply pressure per design

COMBUSTION AIR

Combustion air and make-up air

EXHAUST

Dedicated high-temperature exhaust and cooling design

INSTALLATION

Foundations, structural loading, lifting and service access

ENVIRONMENT

Dedicated fire-testing area

METHOD & INTERPRETATION

General furnace requirements establish exposure and measurement conditions. The dedicated duct method defines installation, internal operating conditions and acceptance criteria. The technical proposal must identify the applicable method and leakage-measurement scope.

KEEP THE TEST TRACEABLE

Keep an installation drawing with duct dimensions, supports, penetrations, pressure conditions and measurement interfaces. Align auxiliary measurements with the furnace timeline.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Compact Fire Resistance Furnace

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

PRODUCT OVERVIEW

Compact Fire Resistance Furnace

Project configuration

Project-specific research / method suitability review

Equipment / Compact Fire Resistance Furnace

Equipment image. Configuration may vary.

PURPOSE

A configurable fire-exposure platform for small components, joints and connection details. A compact test space supports controlled heating, temperature measurement and observation during comparative development work.

APPLICATIONS

Screen alternative materials and assembly details, establish comparative baselines and prepare for subsequent formal testing.

Explore construction details before full-scale testing.

TEST PRINCIPLE

The heating programme follows the research objective. Specimen and environmental temperatures, together with visual observations, help examine cracking, deformation and heat transfer.

SYSTEM ARCHITECTURE

Furnace body, specimen frame, heating or combustion assembly, exhaust and measurement controls. Observation ports, sensor locations and fixtures are selected for the research task.

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Compact Fire Resistance Furnace / Technical profile

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

TECHNICAL PROFILE / PROJECT CONFIGURATION

Compact Fire Resistance Furnace

SPECIFICATIONS

UTILITIES & INSTALLATION

TEST SPACE

Small specimens; dimensions per project design

HEATING CONTROL

To suit the selected heating curve

PRESSURE CONTROL

Pressure acquisition and closed-loop control

TEMPERATURE

Multiple furnace and unexposed-face measurements

INSTALLATION

Configured for the specimen and site

RANGE / CHANNELS

To be confirmed in the technical proposal

ELECTRICAL

Rate controls, fans and actuators separately

FUEL

Fuel type and supply pressure per design

COMBUSTION AIR

Combustion air and make-up air

EXHAUST

Dedicated high-temperature exhaust and cooling design

INSTALLATION

Foundations, structural loading, lifting and service access

ENVIRONMENT

Dedicated fire-testing area

METHOD & INTERPRETATION

Reduced-scale tests can clarify construction response, but specimen size, restraint and loading may differ from a formal standard test. Results cannot automatically be converted into the fire-resistance rating of a complete assembly.

KEEP THE TEST TRACEABLE

Define the research question, specimen geometry, heating programme and comparison baseline. Keep supports and boundary conditions consistent and identify reduced-scale or non-standard procedures in the record.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Fire Resistance Test Control System

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

PRODUCT OVERVIEW

Fire Resistance Test Control System

Custom control system

Configured for the fire-resistance test programme

Equipment / Fire Resistance Test Control System

Equipment image. Configuration may vary.

PURPOSE

Coordinate combustion, furnace pressure, multipoint temperatures and operating events from a unified control system. The platform supports new installations and instrumentation upgrades to existing fire-resistance furnaces.

APPLICATIONS

Furnace operation, measurement-system renewal and integration of existing equipment with updated acquisition and reporting.

Connect furnace conditions, equipment actions and test records.

TEST PRINCIPLE

Measured temperatures and pressures are compared with target conditions. Control outputs act on burners, fans and valves, while raw measurements and operator events form a common record.

SYSTEM ARCHITECTURE

Sensor wiring, acquisition modules, control cabinet and supervisory software organised around a shared channel and interface schedule. Automatic control, interlocks and local manual operation are defined during engineering.

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Fire Resistance Test Control System / Technical profile

Fire atmosphere

FRTS brand

03 / FIRE RESISTANCE

TECHNICAL PROFILE / CUSTOM CONTROL SYSTEM

Fire Resistance Test Control System

SPECIFICATIONS

UTILITIES & INSTALLATION

INPUTS

Thermocouple / pressure / analogue signals

CONTROL

Burners / fans / valves

CHANNELS

Configured for the furnace and measurement points

INTERFACE

Live curves and test status

DATA

Raw data and test records

ENCLOSURE

Control cabinet or modular enclosure

ELECTRICAL

Separate control supply; rating to be confirmed

AIR / WATER

No process-gas or water load in the control unit

GROUNDING

Protective earthing and signal shielding

NETWORK

Fieldbus / Ethernet as configured

INSTALLATION

Electrical area with front service access

ENVIRONMENT

Isolate from heat, smoke, dust and moisture

METHOD & INTERPRETATION

Heating curves, pressure and temperature channels form part of the test conditions. A preset curve or automatic report does not itself demonstrate compliance with every requirement of a test standard.

KEEP THE TEST TRACEABLE

Keep channel names, ranges, calibration coefficients and sampling intervals. Distinguish setpoints from measured values and synchronise valve, fan and burner states with temperature and pressure data.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Rail transport

Sector context

04

RAIL TRANSPORT

Connect materials with passenger environments.

Characterise flame spread, heat release, smoke obscuration and gas chemistry through the relevant test route. Material requirements and larger smoke-movement studies address distinct engineering questions.

Smoke Density Chamber

42

FTIR Fire Gas Analysis System

44

Lateral Flame Spread Apparatus

46

Metro Fire and Smoke Research Platform

48

Application scene illustration

Smoke Density Chamber

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

PRODUCT OVERVIEW

Smoke Density Chamber

FRTS-5659

ISO 5659-2 base / ASTM E662 optional configuration

Equipment / Smoke Density Chamber

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Observe the optical effect of smoke accumulating in a closed chamber. The system supports rail-interior materials, polymers and related product studies, with gas-sampling interfaces available where the test programme requires chemical analysis.

APPLICATIONS

Material smoke evaluation and comparative development. Define the method, orientation and irradiance before selecting accessories.

Measure smoke obscuration under defined radiant exposure.

TEST PRINCIPLE

A light beam crosses the chamber. The receiver measures changing transmission, which is used to derive specific optical density and its time history under the selected radiation, ignition and specimen conditions.

SYSTEM ARCHITECTURE

Smoke chamber, radiant source, specimen holder, pilot ignition and optical measurement. ISO-based and ASTM E662 configurations use different source and specimen arrangements.

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Smoke Density Chamber / Technical profile

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

TECHNICAL PROFILE / FRTS-5659

Smoke Density Chamber

SPECIFICATIONS

UTILITIES & INSTALLATION

ISO IRRADIANCE

Up to 50 kW/m²*

INTERNAL CHAMBER

914 × 914 × 610 mm*

ISO ARRANGEMENT

Horizontal specimen; conical radiant heater*

OPTICAL OUTPUTS

Ds / Ds max

COUPLING

Gas sampling connection to FTIR

ASTM OPTION

Vertical specimen; 25 kW/m²*

ELECTRICAL REFERENCE

110 / 230 V,16 A*

PILOT GAS

To suit flaming-test configuration

COMPRESSED AIR

To suit optical purging and cleaning

EXHAUST

Post-test chamber evacuation

OVERALL REFERENCE

1.63 × 0.66 × 1.90 m*

INSTALLATION

Allow door clearance and analyser space

METHOD & INTERPRETATION

ISO 5659:2026 replaces ISO 5659-2:2017. The adopted rail or product standard may reference a particular edition; confirm edition-specific adaptation. Existing product data describe the earlier base configuration. Smoke obscuration and toxic-gas concentration are separate measurements.

KEEP THE TEST TRACEABLE

Record irradiance, ignition, thickness and backing. Verify optical zero and reference intensity; describe gas-sampling time, flow and any effect on chamber conditions.

* Reference configuration. Final specification, utilities and supply scope are confirmed in the technical agreement.

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FTIR Fire Gas Analysis System

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

PRODUCT OVERVIEW

FTIR Fire Gas Analysis System

FRTS-FTIR

ISO 19702 / application-specific gas list

Equipment / FTIR Fire Gas Analysis System

Equipment image. Configuration may vary.

PURPOSE

Analyse configured fire-effluent components alongside smoke-chamber, cone-calorimeter or larger fire tests. Concentration curves help explain changes in combustion chemistry and support the relevant material or toxicity-assessment programme.

APPLICATIONS

Material-emission studies, fire-effluent research and integration with primary fire-test instruments.

Add time-resolved gas chemistry to fire testing.

TEST PRINCIPLE

Sample gas passes through an infrared measurement cell. Absorption spectra identify and quantify the configured components; sampling location, transport temperature, delay and analysis model affect the result.

SYSTEM ARCHITECTURE

Probe, suitable sampling line, filtration, flow management and FTIR analyser. Gas list, ranges and interference treatment are confirmed for the selected analysis unit.

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FTIR Fire Gas Analysis System / Technical profile

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

TECHNICAL PROFILE / FRTS-FTIR

FTIR Fire Gas Analysis System

SPECIFICATIONS

UTILITIES & INSTALLATION

PRINCIPLE

Fourier-transform infrared spectroscopy

ANALYTES

CO, CO₂ and other application-specific gases

HEATED CELL REFERENCE

180 °C*

REFERENCE CAPACITY

Up to 50 gas species*

COMPATIBLE SYSTEMS

Smoke chamber / cone calorimeter / SBI

RANGES / DETECTION

Confirm each gas range for the selected analyser

ELECTRICAL

Rate analyser and heated sampling line separately

CALIBRATION GASES

Configured for target gases

SAMPLING

Heated line, filtration and flow control

SAMPLE EXHAUST

Controlled discharge to exhaust-gas system

INSTALLATION

Bench unit or cabinet with ventilation clearance

ENVIRONMENT

Avoid condensation, vibration and dust

METHOD & INTERPRETATION

ISO 19702 addresses FTIR sampling and analysis of fire effluents. Calibration, sample transport and spectral interference must be controlled. Hydrogen is not directly measured by conventional FTIR and requires a separate analysis unit.

KEEP THE TEST TRACEABLE

Specify target gases, sampling point, heated-line temperature, length and response delay. Keep zero-gas and reference-spectrum checks, water-interference treatment and alignment with the main test clock.

* Reference configuration. Final specification, utilities and supply scope are confirmed in the technical agreement.

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Lateral Flame Spread Apparatus

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

PRODUCT OVERVIEW

Lateral Flame Spread Apparatus

Configuration on request

ISO 5658-2 / IMO options as specified

Equipment / Lateral Flame Spread Apparatus

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Investigate lateral flame spread across a vertically mounted surface exposed to a radiant gradient. The apparatus supports rail-interior and other surface-material applications; marine arrangements and additional measurements are selected separately.

APPLICATIONS

Surface-layer and substrate comparisons. Record material thickness, orientation and the complete exposed construction.

Relate lateral flame travel to the incident heat flux.

TEST PRINCIPLE

A vertical specimen faces the radiant panel and is ignited at a defined location. Flame-front arrival times are related to the calibrated heat-flux distribution along the specimen.

SYSTEM ARCHITECTURE

Radiant panel, pilot burner, specimen holder, positioning system and heat-flux calibration accessories, supported by timing and observation tools.

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Lateral Flame Spread Apparatus / Technical profile

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Lateral Flame Spread Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

HEAT SOURCE

Gas-fired radiant panel and pilot flame

MEASUREMENTS

Flame front / time / heat flux

MOUNTING

Vertical specimen holder

CALIBRATION

Water-cooled heat-flux meter

IMO OPTION

Stack and thermopile*

OVERALL REFERENCE

1600 × 900 × 1650 mm*

ELECTRICAL REFERENCE

230 V,50/60 Hz,10 A*

FUEL

Separate supplies for radiant panel and pilot

COOLING REFERENCE

200-300 mL/min,15-30 °C*

EXHAUST REFERENCE

≥0.5 m³/s*

FOOTPRINT REFERENCE

4 × 2 m; clear height ≥2.4 m*

INSTALLATION

Radiant-heat protection and service access

METHOD & INTERPRETATION

ISO 5658-2 addresses lateral flame spread in a vertical configuration. Rail and marine applications also require the relevant product criteria and accessories. Results from different orientations or surface constructions must not be treated as interchangeable.

KEEP THE TEST TRACEABLE

Check the radiation profile and panel-to-specimen geometry. Retain flame-arrival times, orientation, surface layer, substrate and thickness.

* Reference configuration. Final specification, utilities and supply scope are confirmed in the technical agreement.

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Metro Fire and Smoke Research Platform

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

PRODUCT OVERVIEW

Metro Fire and Smoke Research Platform

Custom research platform

Project-specific research programme

Equipment / Metro Fire and Smoke Research Platform

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Build a research platform around a defined metro or tunnel scenario. Test-space geometry, fire source, ventilation and distributed measurements are coordinated to compare thermal and smoke responses under different operating conditions.

APPLICATIONS

Metro-space and tunnel fire research, smoke movement studies and comparisons of ventilation strategies within a defined test boundary.

Study the interaction between fire, space and ventilation.

TEST PRINCIPLE

Temperature, velocity and optical smoke measurements record the response to controlled fire and fan conditions. A common time reference supports comparison of smoke arrival, thermal development and ventilation actions.

SYSTEM ARCHITECTURE

Platform structure, selected fire source, supply and extract fans, measurement network, acquisition cabinet and scenario records.

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Metro Fire and Smoke Research Platform / Technical profile

Fire atmosphere

FRTS brand

04 / RAIL TRANSPORT

TECHNICAL PROFILE / CUSTOM RESEARCH PLATFORM

Metro Fire and Smoke Research Platform

SPECIFICATIONS

UTILITIES & INSTALLATION

APPLICATION

Metro-space fire and smoke extraction research

SCALE

Defined by the research programme

MEASUREMENTS

Temperature / velocity / smoke density

FIRE SOURCE

Configured for the test scenario

CONTROL

Coordinated fan operation across test conditions

DATA

Synchronised curves and test records

ELECTRICAL

Rate fire source, fans and instrumentation separately

FUEL

Defined by the fire-source type

MAKE-UP AIR

Controlled for the test condition

EXHAUST

Project-specific exhaust route and treatment capacity

INSTALLATION

Test area, observation and maintenance access

SAFETY INTERFACES

Fire-source isolation, alarms and interlock interfaces

METHOD & INTERPRETATION

Spatial fire research and small-scale material classification address different questions. Conclusions must state the model scale, fire source and boundary conditions before discussing relevance to an engineering scenario.

KEEP THE TEST TRACEABLE

Record the fire-growth programme, fan settings, openings and sensor coordinates. Use a consistent time zero and retain the full sequence of ventilation actions.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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New energy

Sector context

05

NEW ENERGY

Make complex fire events measurable.

Study photovoltaic roof assemblies, large-scale fire behaviour and gas evolution. Engineering begins with the specimen, expected fire source, measurement objectives and available site infrastructure.

Fire Test System for PV and Roof Coverings

51

Large-scale Fire Calorimetry System

53

Fire Gas Sampling and Hydrogen Analysis

55

Application scene illustration

Fire Test System for PV and Roof Coverings

Fire atmosphere

FRTS brand

05 / NEW ENERGY

PRODUCT OVERVIEW

Fire Test System for PV and Roof Coverings

FRTS-UL790

UL 790 / selected roof assembly and procedure

Equipment / Fire Test System for PV and Roof Coverings

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Organise roof slope, substrate, fire exposure and airflow within one test arrangement. The system supports evaluation of roof-covering and photovoltaic roof assemblies, including flame spread and fire penetration under the selected procedure.

APPLICATIONS

Roof-covering systems and PV-roof combinations, with attention to deck, underlay, overlap and fixing details.

Evaluate the roof and photovoltaic assembly together.

TEST PRINCIPLE

The specimen is installed with defined airflow and fire conditions. Timed observations describe combustion development; burners, burning brands and other exposure arrangements depend on the selected procedure.

SYSTEM ARCHITECTURE

Adjustable support platform, air-supply equipment, burner and temperature / velocity verification accessories. Specimen decks and burning-brand accessories are selected for the programme.

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Fire Test System for PV and Roof Coverings / Technical profile

Fire atmosphere

FRTS brand

05 / NEW ENERGY

TECHNICAL PROFILE / FRTS-UL790

Fire Test System for PV and Roof Coverings

SPECIFICATIONS

UTILITIES & INSTALLATION

TEST DECK

1320 × 1020 mm for selected procedures

INCLINATION

0-23°

BURNER LENGTH

1120 mm

A/B CALIBRATION

760 ± 28 °C

AIR VELOCITY

5.3 ± 0.2 m/s

NET WEIGHT

Approx. 850 kg

ELECTRICAL

380 V, 50 Hz, three-phase; approx. 30 kW

FUEL

LPG / natural gas or fuel specified for burner

AIR INLET

Outdoor make-up air with separate connection

EXHAUST

Exhaust designed to preserve the required airflow

ROOM ENVELOPE

Approx. 7 × 4 × 4 m

ENVIRONMENT

10-32 °C

METHOD & INTERPRETATION

UL 790 addresses external fire exposure of roof coverings through defined procedures. Its A, B and C classifications belong to that roof-evaluation system and are not equivalent to similarly named GB 8624 classes.

KEEP THE TEST TRACEABLE

Retain slope, substrate, underlay, overlap and fixing details. Confirm burner or brand configuration and describe the tested PV-roof assembly's application scope.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Large-scale Fire Calorimetry System

Fire atmosphere

FRTS brand

05 / NEW ENERGY

PRODUCT OVERVIEW

Large-scale Fire Calorimetry System

FRTS-10MW

Oxygen-consumption calorimetry / project-specific plan

Equipment / Large-scale Fire Calorimetry System

Equipment image. Configuration may vary.

PURPOSE

Integrate smoke collection, exhaust, calorimetry and gas measurement for large specimens. The system supports research involving energy-storage cabinets, battery packs and large products, with additional temperature, hydrogen or FTIR channels selected for the study.

Test in progress

Test in progress

Connect large-scale fire behaviour with quantitative measurements.

TEST PRINCIPLE

A hood captures combustion products and routes them through a measurement section. Flow, temperature, gas and optical signals support heat-release and smoke calculations on a coordinated timeline.

SYSTEM ARCHITECTURE

Collection hood, exhaust duct, measurement section, sampling and analysis cabinet, and acquisition software. Capture, thermal load, make-up air and exhaust treatment are engineered together.

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Large-scale Fire Calorimetry System / Technical profile

Fire atmosphere

FRTS brand

05 / NEW ENERGY

TECHNICAL PROFILE / FRTS-10MW

Large-scale Fire Calorimetry System

SPECIFICATIONS

UTILITIES & INSTALLATION

HEAT RELEASE RANGE

0-10 MW, published configuration

PRINCIPLE

Oxygen-consumption calorimetry

COLLECTION HOOD

Approx. 6 × 6 m; configurable

GAS CHANNELS

O₂ / CO / CO₂

SMOKE MEASUREMENT

Optical extinction

EXTENSIONS

Temperature / hydrogen / FTIR

ELECTRICAL

Rate fans, sampling and analysis cabinets separately

FUEL / CALIBRATION

To suit fire source and calorimeter calibration system

SAMPLING

Condensation, filtration and drainage per design

EXHAUST

Flow, temperature and treatment capacity engineered separately

INSTALLATION

Project-specific hood elevation, foundation and lifting design

INTERFACES

Fire protection, make-up air and interlocks per project

METHOD & INTERPRETATION

Oxygen-consumption calorimetry describes the measurement approach. An energy-storage assessment still depends on its complete test plan. Nominal capacity alone does not guarantee capture or valid measurement in every scenario; confirm the design fire and calibrated operating range.

KEEP THE TEST TRACEABLE

Record source position and size, expected peak range, calibration, flow checks and capture performance. Synchronise calorimetry, gases, temperatures and video events.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Fire Gas Sampling and Hydrogen Analysis

Fire atmosphere

FRTS brand

05 / NEW ENERGY

PRODUCT OVERVIEW

Fire Gas Sampling and Hydrogen Analysis

Selected analysis unit

Energy-storage fire research / system option

Equipment / Fire Gas Sampling and Hydrogen Analysis

Equipment image. Configuration may vary.

PURPOSE

Connect sampling, conditioning and hydrogen measurement to energy-storage fire research. Concentration curves can be examined together with heat release, temperatures and other gas measurements to understand the progression of a defined test.

APPLICATIONS

Project-specific gas monitoring during energy-storage and related fire research.

Track hydrogen alongside the wider fire-test response.

TEST PRINCIPLE

Gas from a specified location passes through compatible sampling and flow-management components to the hydrogen analyser. Interpretation accounts for the gas matrix, transport delay and instrument response.

SYSTEM ARCHITECTURE

Probe, filtration, sampling line, flow management and selected hydrogen analyser. Parallel FTIR and hydrogen paths require their own suitable sampling conditions.

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Fire Gas Sampling and Hydrogen Analysis / Technical profile

Fire atmosphere

FRTS brand

05 / NEW ENERGY

TECHNICAL PROFILE / SELECTED ANALYSIS UNIT

Fire Gas Sampling and Hydrogen Analysis

SPECIFICATIONS

UTILITIES & INSTALLATION

TARGET GAS

H₂; other gases depend on analysis modules

ANALYZER PRINCIPLE

Confirmed for the selected hydrogen analyser

CONDITIONING

Filtration / flow / temperature management

OUTPUTS

Concentration-time curves

INTEGRATION

Calorimetry system / FTIR

RANGE / RESPONSE

Confirmed for analyser and sampling line

ELECTRICAL

Rate analyser and sampling pump separately

CALIBRATION GAS

Zero and span gases to suit analyser

GAS CIRCUIT

Materials and seals compatible with target gases

VENT

Controlled exhaust-gas outlet

INSTALLATION

Analysis cabinet or laboratory bench

ENVIRONMENT

Ventilated; prevent condensation; keep ignition sources away

METHOD & INTERPRETATION

Choose the analysis principle for the target range and gas background. Conventional FTIR does not directly measure H₂. A combined system must distinguish the hydrogen and infrared units, response times and output units.

KEEP THE TEST TRACEABLE

Record sampling route, dilution, wet or dry basis, flow and condensate handling. Research measurements are distinct from independent safety alarm and interlock circuits.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cables & wires

Sector context

06

CABLES & WIRES

Flame. Smoke. Chemistry. Circuit integrity.

Cable fire performance is described by several complementary tests. Choose the measurements that match the cable application instead of inferring one property from another.

Bunched Cable Flame Spread Apparatus

58

Cable Heat Release Apparatus

60

Single Cable Vertical Flame Tester

62

Cable Smoke Density Test System

64

Cable Fire Resistance and Circuit Integrity

66

Cable Combustion Gas Corrosivity Apparatus

68

Bunched Cable Flame Spread Apparatus

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Bunched Cable Flame Spread Apparatus

FRTS-60332-3

IEC 60332-3 / selected category

Equipment / Bunched Cable Flame Spread Apparatus

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Expose bunched cables under controlled flame and air-supply conditions. The apparatus supports power, control and communication cable testing, with specimen loading and mounting selected for the applicable test category.

APPLICATIONS

Bunched-cable flame-spread testing and comparative cable-construction studies.

Assess vertical flame spread in a cable bundle.

TEST PRINCIPLE

Cables are fixed to a vertical ladder and exposed to a ribbon burner with controlled bottom air supply. Post-test inspection relates damage or char length to specimen loading, arrangement and flame duration.

SYSTEM ARCHITECTURE

Test chamber, ladder, burner, gas regulation, inlet-air control, timing and observation, coordinated with the laboratory exhaust system.

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Bunched Cable Flame Spread Apparatus / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / FRTS-60332-3

Bunched Cable Flame Spread Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMEN ARRANGEMENT

Bunched specimens on a vertical ladder

BURNER

Ribbon burner configured for test category

AIR SUPPLY

Controlled air inlet at chamber base

ASSESSMENT

Char length / flame spread

SAMPLE LOADING

Based on non-metallic volume and test category

TIMING

Flame exposure duration per test method

ELECTRICAL

Rate fan and control cabinet for configuration

FUEL

Propane with pressure regulation and flow control

AIR

Combustion air and chamber air supply

EXHAUST

Dedicated extraction and exhaust treatment

INSTALLATION

Vertical chamber and elevated service access

ENVIRONMENT

Controlled make-up air; avoid external draughts

METHOD & INTERPRETATION

IEC 60332-3 defines categories and procedures by part; for example, Part 3-24 addresses Category C. Heat release, smoke and wider cable classification require their own measurement and evaluation methods.

KEEP THE TEST TRACEABLE

Record non-metallic loading, number of cables, ladder arrangement and flame duration. Keep installation images alongside damage observations and avoid treating different categories as equivalent.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cable Heat Release Apparatus

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Cable Heat Release Apparatus

FRTS-50399

EN 50399

Equipment / Cable Heat Release Apparatus

Equipment image. Configuration may vary.

PURPOSE

Connect cable burning behaviour with continuous heat-release and smoke measurements. The integrated system provides a quantitative record for cable fire-performance research and testing under the selected method.

Test in progress

Test in progress

Measure heat and smoke during bunched-cable burning.

TEST PRINCIPLE

Combustion products enter a collection and exhaust duct. Flow, temperature, gas concentration and optical extinction support heat-release and smoke calculations, synchronised with observed burning events.

SYSTEM ARCHITECTURE

Cable chamber and ladder, collection hood, exhaust measurement section, sample conditioning, gas analysis and test software.

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Cable Heat Release Apparatus / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / FRTS-50399

Cable Heat Release Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

LADDER

3500 × 400 mm

EXHAUST DUCT

≥400 mm

GAS CHANNELS

O₂ / CO / CO₂

HEAT RELEASE

HRR / THR

SMOKE

SPR / TSP

ACQUISITION

Synchronised gas, temperature and differential pressure

ELECTRICAL

Rate fans, analysers and controls separately

FUEL

Propane; flow set for the selected procedure

AIR

Combustion air and instrument purging

EXHAUST

Connect measurement duct to exhaust treatment

COOLING / DRAINAGE

Sampling pretreatment as configured

INSTALLATION

Space for chamber, exhaust duct and analysis cabinet

METHOD & INTERPRETATION

EN 50399 provides heat-release, smoke and propagation-related measurements. The relevant cable classification standard determines the final class. Building-panel criteria or a single peak value must not be used as a substitute.

KEEP THE TEST TRACEABLE

Verify cable installation, burner programme, exhaust flow and oxygen response. Synchronise heat, smoke, droplets and events, and state the method edition and classification basis.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Single Cable Vertical Flame Tester

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Single Cable Vertical Flame Tester

Configuration on request

IEC 60332-1 / selected configuration

Equipment / Single Cable Vertical Flame Tester

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Test a single insulated wire or cable in a vertical arrangement. Controlled flame application and post-test examination provide a basic fire-performance record for cable development and laboratory testing.

APPLICATIONS

Single-wire and single-cable flame testing across specified cable sizes and constructions.

Characterise flame propagation on a single cable.

TEST PRINCIPLE

A specimen is vertically mounted and exposed at the specified position for a defined duration. Damage boundaries and observed flame propagation are recorded after the exposure.

SYSTEM ARCHITECTURE

Test enclosure, vertical support, burner, gas control and timing. Holders and flame procedure are matched to specimen dimensions and the applicable standard part.

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Single Cable Vertical Flame Tester / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Single Cable Vertical Flame Tester

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMEN

Single insulated wire or cable

MOUNTING

Vertical specimen mounting

EXPOSURE

Premixed flame configured for test method

CONTROL

Flame-application timing and gas regulation

OBSERVATIONS

Flame propagation and extent of damage

CONFIGURATION

Holder and chamber matched to specimen

ELECTRICAL

Confirmed for ignition and control configuration

FUEL

Propane with pressure regulation and flow control

AIR

Premix air for burner

EXHAUST

Collect combustion products without disturbing airflow

INSTALLATION

Non-combustible floor / bench

ENVIRONMENT

Free from external draughts

METHOD & INTERPRETATION

IEC 60332-1 addresses vertical flame propagation for a single cable. Passing a single-cable test does not predict performance in a bunched-cable test. Specify the part, exposure programme and any additional observations.

KEEP THE TEST TRACEABLE

Record diameter, length, mounting and flame programme. Retain images of damage boundaries and confirm the exposure duration for the actual cable dimensions.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cable Smoke Density Test System

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Cable Smoke Density Test System

Configuration on request

IEC 61034 / selected configuration

Equipment / Cable Smoke Density Test System

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Record light transmission as cable specimens burn in a defined smoke chamber. The system supports finished-cable smoke evaluation and comparisons of insulation and sheath formulations.

APPLICATIONS

Cable smoke-obscuration testing and development studies under controlled chamber conditions.

Measure how cable smoke obscures light.

TEST PRINCIPLE

Cables are arranged above the specified fire source. Smoke accumulates and is mixed within the enclosure while a light source and receiver continuously record transmission.

SYSTEM ARCHITECTURE

Smoke chamber, specimen supports, fuel tray, mixing device and optical measurement, with calibration, cleaning and post-test extraction provisions.

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Cable Smoke Density Test System / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Cable Smoke Density Test System

SPECIFICATIONS

UTILITIES & INSTALLATION

TEST CHAMBER

Cubic smoke chamber; dimensions to be confirmed

SPECIMEN

Horizontal cable arrangement

FIRE SOURCE

Specified fuel tray

MEASUREMENT

Light-transmittance-time curves

OPTICAL SYSTEM

Light source, receiver and calibration

MIXING

Uniform smoke mixing within chamber

ELECTRICAL

Rate optics, mixing and extraction separately

FUEL

Liquid fuel specified by test method

WATER

Cleaning and auxiliary services per project design

EXHAUST

Post-test chamber evacuation

INSTALLATION

Smoke chamber, observation door and service space

ENVIRONMENT

Exclude external light and air leakage

METHOD & INTERPRETATION

IEC 61034 concerns optical smoke obscuration. Low smoke does not mean halogen-free or flame-retardant: acid-gas chemistry and flame propagation are assessed by different methods.

KEEP THE TEST TRACEABLE

Verify chamber conditions, optical path, mixing and specimen loading. Retain minimum transmission and the full curve, together with clean-window, zero and reference checks.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cable Fire Resistance and Circuit Integrity

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Cable Fire Resistance and Circuit Integrity

Configuration on request

IEC 60331 / selected part and procedure

Equipment / Cable Fire Resistance and Circuit Integrity

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Evaluate the ability of a cable circuit to continue operating under a defined fire exposure. Supports, fire conditions, electrical monitoring and additional mechanical actions are selected for the applicable part and procedure.

APPLICATIONS

Fire-resistant power and signal cables under explicitly defined electrical and mechanical conditions.

Monitor circuit integrity while the cable is exposed to fire.

TEST PRINCIPLE

The specimen is connected to the specified electrical circuit and exposed to flame. Temperature, elapsed time and circuit status describe the test; mechanical impact is added where required by the selected programme.

SYSTEM ARCHITECTURE

Burner, specimen supports, electrical monitoring, temperature measurement and controls, with project-specific impact and other accessories.

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Cable Fire Resistance and Circuit Integrity / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Cable Fire Resistance and Circuit Integrity

SPECIFICATIONS

UTILITIES & INSTALLATION

APPLICATION

Fire-resistant cable circuits

TEMPERATURE

Confirmed for the applicable standard part

ELECTRICAL MONITORING

Energised status / circuit integrity

MECHANICAL SHOCK

Configured for the selected procedure

SUPPORT

Configured for cable dimensions

DATA

Temperature / time / circuit status

ELECTRICAL

Separate specimen and control power supplies

FUEL

Fuel type and pressure to suit burner configuration

AIR

Burner air supply per design

EXHAUST

Dedicated collection of high-temperature combustion gases

INSTALLATION

Specimen, impact mechanism and isolated test area

PROTECTION

Specimen-circuit monitoring and electrical protection

METHOD & INTERPRETATION

IEC 60331 evaluates circuit integrity; IEC 60332 principally evaluates flame propagation. Limited burning damage does not establish continued electrical operation. Choose the methods independently according to the cable's intended function.

KEEP THE TEST TRACEABLE

Keep the circuit diagram, test voltage, exposure programme, impact events and interruption times. Confirm the applicable part, cable dimensions and support arrangement before fixture selection.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Cable Combustion Gas Corrosivity Apparatus

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

PRODUCT OVERVIEW

Cable Combustion Gas Corrosivity Apparatus

Configuration on request

IEC 60754-1 / -2 / selected configuration

Equipment / Cable Combustion Gas Corrosivity Apparatus

Equipment illustration. Final appearance depends on configuration.

PURPOSE

Generate and collect combustion gases from non-metallic cable materials for the selected chemical analysis. Different parts of the method address different analytical tasks and require the corresponding instruments and consumables.

APPLICATIONS

Cable-material gas analysis and investigation of acid-gas and potential corrosivity characteristics.

Collect and analyse gases released by cable materials.

TEST PRINCIPLE

A prepared sample is heated in a tube furnace. Controlled airflow transports the generated gases into an absorption solution, which is then analysed or measured for pH and conductivity as required.

SYSTEM ARCHITECTURE

Tube furnace, quartz tube, sample boats, airflow control and absorption vessels, with method-specific analytical instruments and reagents.

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Cable Combustion Gas Corrosivity Apparatus / Technical profile

Fire atmosphere

FRTS brand

06 / CABLES & WIRES

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Cable Combustion Gas Corrosivity Apparatus

SPECIFICATIONS

UTILITIES & INSTALLATION

HEATING

Tube furnace and quartz tube*

GAS COLLECTION

Absorption vessels and gas circuit*

MEASUREMENTS

pH / conductivity*

SPECIMEN HOLDER

Ceramic sample boats*

AIR CONTROL

Flow meter and connecting lines*

RANGES

Confirmed for standard part and instruments

ELECTRICAL

Furnace and instrument loads to be confirmed

GAS SUPPLY

Clean air at a controlled flow rate

WATER

Analytical water and prepared absorption solution

EXHAUST

Fume hood and exhaust after gas absorption

INSTALLATION

Heat-resistant, corrosion-resistant bench

ENVIRONMENT

Temperature and humidity per instrument requirements

METHOD & INTERPRETATION

IEC 60754-1 and -2 have different analytical objectives. Part 2 uses solution pH and conductivity to assess potential corrosivity. These results are distinct from smoke density and do not replace human-exposure toxicity assessment.

KEEP THE TEST TRACEABLE

Record sample mass, heating programme, airflow and absorption volume. Verify balance, temperature and analytical instruments; retain blanks and reagent conditions.

* Reference configuration. Final specification, utilities and supply scope are confirmed in the technical agreement.

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Fire protection

Sector context

07

FIRE PROTECTION

Verify function under defined conditions.

Organise pressure testing and emergency-operation measurements around the product, test programme and required records. Fixtures, electrical interfaces and utilities follow the specimen.

Fire Hose Pressure and Burst Test System

71

Fire Emergency Lighting Test System

73

Fire Hose Pressure and Burst Test System

Fire atmosphere

FRTS brand

07 / FIRE PROTECTION

PRODUCT OVERVIEW

Fire Hose Pressure and Burst Test System

FRTS-6246-P

GB 6246 / selected hose configuration

Equipment / Fire Hose Pressure and Burst Test System

Equipment image. Configuration may vary.

PURPOSE

Perform pressure, hold and burst tests on lined fire hoses while recording the pressure response. The pump system, connections, fixtures and instrumentation are selected for the hose diameter and required procedure.

APPLICATIONS

Fire-hose development and pressure-performance evaluation across specified hose sizes and connection types.

Capture the pressure history of a fire-hose test.

TEST PRINCIPLE

The hose is filled and air is removed before controlled pressurisation or pressure holding. Leakage, failure and the pressure curve are recorded against the specimen information.

SYSTEM ARCHITECTURE

Water supply and pressurisation, pressure sensor, control valves, specimen connections and a protected test area, with drainage and post-test cleaning provisions.

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Fire Hose Pressure and Burst Test System / Technical profile

Fire atmosphere

FRTS brand

07 / FIRE PROTECTION

TECHNICAL PROFILE / FRTS-6246-P

Fire Hose Pressure and Burst Test System

SPECIFICATIONS

UTILITIES & INSTALLATION

SPECIMEN

Lined fire hoses

SEQUENCE

Pressurisation / pressure hold / burst

MEASUREMENT

Pressure and pressure-time curves

COUPLINGS

Configured for hose diameter

PRESSURE RANGE

Confirmed for pump and sensor configuration

SPECIMEN LENGTH

According to the applicable test procedure

ELECTRICAL

Rate pump and instrumentation cabinet separately

WATER

Clean test water, storage and replenishment

DRAINAGE

Pressure relief, return water and floor drainage

AIR

Pneumatic accessories as configured

INSTALLATION

Pressure-rated pipework and protected test zone

ENVIRONMENT

Prevent freezing, slipping and moisture on electrics

METHOD & INTERPRETATION

GB 6246 includes the relevant fire-hose performance requirements. Pressure resistance and bursting are different test tasks. Pressure, hold time and ramp programme depend on the hose type, grade and adopted edition.

KEEP THE TEST TRACEABLE

Record diameter, length, connection, filling and air-removal conditions. Retain the pressure curve, leakage location and failure mode, distinguishing specimen failure from fixture problems.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Fire Emergency Lighting Test System

Fire atmosphere

FRTS brand

07 / FIRE PROTECTION

PRODUCT OVERVIEW

Fire Emergency Lighting Test System

Configuration on request

Selected emergency-lighting test programme

Equipment / Fire Emergency Lighting Test System

Equipment image. Configuration may vary.

PURPOSE

Organise electrical and optional optical measurements for emergency luminaires and associated systems. The platform records supply changeover, operating status and sustained operation under the agreed test programme.

APPLICATIONS

Emergency-lighting product development and selected functional test procedures.

Follow emergency operation from power transfer to duration.

TEST PRINCIPLE

The supply state is changed as required by the test. Voltage, current and operating duration are recorded; illuminance and other optical measurements are included where specified.

SYSTEM ARCHITECTURE

Power supply and switching, luminaire connections, acquisition, controls and software. Channel count, communication and optical measurement positions follow the test task.

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Fire Emergency Lighting Test System / Technical profile

Fire atmosphere

FRTS brand

07 / FIRE PROTECTION

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

Fire Emergency Lighting Test System

SPECIFICATIONS

UTILITIES & INSTALLATION

APPLICATION

Emergency luminaires and associated systems

ELECTRICAL TESTS

Voltage / current / operating status

EMERGENCY OPERATION

Supply changeover and operating-duration records

PHOTOMETRY

Illuminance and other measurements as specified

CHANNELS

Confirmed for the number of luminaires

DATA

Test records and reports

ELECTRICAL

Controllable test supply and separate control power

AIR / WATER

No process gas or water for basic electrical measurements

LIGHT ENVIRONMENT

Darkroom or light shielding to suit measurements

VENTILATION

Heat dissipation for luminaires and loads

INSTALLATION

Fixtures, test bench and electrical protection

ENVIRONMENT

Temperature, humidity and ambient light per method

METHOD & INTERPRETATION

Emergency lighting has multiple product requirements. Supply-changeover and duration tests alone do not represent a complete type-test programme. Identify the applicable basis, including GB 17945 where relevant, its edition and optical accessories in the proposal.

KEEP THE TEST TRACEABLE

Record mains status, initial battery condition and emergency start / end times. For illuminance, specify distance, direction and measuring points rather than inferring lighting performance from voltage alone.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Research & laboratories

Sector context

08

RESEARCH & LABORATORIES

Build a clearer picture of every experiment.

Connect optical smoke measurements, modular data acquisition and ventilation studies. A coherent sensor schedule and common timeline make results easier to interpret and compare.

In-situ Smoke Density Measurement

76

Multichannel Data Acquisition Module

78

Smoke Extraction Efficiency Research System

80

In-situ Smoke Density Measurement

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

PRODUCT OVERVIEW

In-situ Smoke Density Measurement

Configuration on request

Project-specific optical smoke measurements

Equipment / In-situ Smoke Density Measurement

Equipment image. Configuration may vary.

PURPOSE

Provide in-situ optical measurements for large-scale fire and smoke-extraction research. Transmitter and receiver units are installed at opposite ends of a defined path, linking changing light transmission with other temperature or velocity measurements.

Test in progress

Test in progress

Measure optical smoke response across the test space.

TEST PRINCIPLE

Received light is compared with a clean-air baseline. The measured transmission and actual path length support extinction-related data, subject to alignment, window condition and background-light control.

SYSTEM ARCHITECTURE

Transmitter, receiver, adjustable rigid supports and acquisition software, with protection and maintenance arrangements matched to the thermal environment.

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In-situ Smoke Density Measurement / Technical profile

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

TECHNICAL PROFILE / CONFIGURATION ON REQUEST

In-situ Smoke Density Measurement

SPECIFICATIONS

UTILITIES & INSTALLATION

PRINCIPLE

Optical transmission / extinction

MOUNTING

In-situ transmitter-receiver arrangement

OUTPUTS

Transmittance / extinction-related data

OPTICAL PATH

Confirmed for site distance and structure

INTERFACES

Configured for the data-acquisition system

RANGE / ACCURACY

Defined by optical path and sensor selection

ELECTRICAL

To suit transmitter, receiver and acquisition units

PURGE AIR

To suit optical-window contamination protection

WATER

Confirmed for high-temperature protection

EXHAUST

Provided by the system under test

INSTALLATION

Optical alignment and rigid supports

ENVIRONMENT

Account for vibration, dust and temperature

METHOD & INTERPRETATION

Transmission and extinction coefficient must be interpreted with the optical path length. Raw transmission at different distances is not directly equivalent. Visibility, specific optical density and toxicity use different definitions and assessment methods.

KEEP THE TEST TRACEABLE

Keep the clean-air baseline, path length, alignment and window-condition record. Retain raw light or transmission values and document treatment of background light, saturation and obstruction.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Multichannel Data Acquisition Module

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

PRODUCT OVERVIEW

Multichannel Data Acquisition Module

DAQ-3001-K / P / V

Module selection by signal type

Equipment / Multichannel Data Acquisition Module

Equipment image. Configuration may vary.

PURPOSE

Provide modular temperature, voltage or current acquisition for test equipment and instrumentation upgrades. Select the module version to suit the sensor types, field wiring and communication requirements of the installation.

APPLICATIONS

Distributed sensing, equipment integration and renewal of existing laboratory acquisition systems.

Build the measurement network around the required signals.

TEST PRINCIPLE

Sensor signals are acquired and converted by the corresponding input channels, then transferred to the supervisory system by bus or network. Channel type, range and engineering-unit conversion define the measurement configuration.

SYSTEM ARCHITECTURE

Acquisition modules, power supply, terminals, communication network and software. Thermocouple, PT100 and analogue capabilities depend on the selected module version.

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Multichannel Data Acquisition Module / Technical profile

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

TECHNICAL PROFILE / DAQ-3001-K / P / V

Multichannel Data Acquisition Module

SPECIFICATIONS

UTILITIES & INSTALLATION

CHANNELS

10 channels

INPUTS

Thermocouple / PT100 / 0-5 V

CURRENT INPUT

4-20 mA, depending on module

TEMPERATURE ACCURACY

±0.2 °C; operating conditions to be confirmed

COMMUNICATIONS

RS485 / CAN / 100 Mbps Ethernet

DIMENSIONS

140 × 32 × 90 mm

ELECTRICAL

DC voltage and consumption depend on hardware version

AIR / WATER

No process gas or water required

WIRING

Compensating cable / shielded signal cable

NETWORK

Bus or Ethernet according to version

INSTALLATION

Control cabinet or module mounting bracket

ENVIRONMENT

Avoid strong electromagnetic fields, heat and condensation

METHOD & INTERPRETATION

Module range, resolution and communication describe only part of the measurement chain. Sensor accuracy, wiring, cold-junction compensation and calibration also affect system performance. Do not combine every model's capabilities into one assumed specification.

KEEP THE TEST TRACEABLE

Map sensor IDs to channels, ranges and units. Retain raw readings and conversion coefficients, with earthing, shielding, power and network information in the commissioning record.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Smoke Extraction Efficiency Research System

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

PRODUCT OVERVIEW

Smoke Extraction Efficiency Research System

Custom measurement system

Defined research method and test scenario

Equipment / Smoke Extraction Efficiency Research System

Equipment image. Configuration may vary.

PURPOSE

Coordinate temperature, velocity and smoke measurements with fire-source and fan operation. The research system is configured around the selected method and test space, supporting comparisons between ventilation conditions.

APPLICATIONS

Laboratory smoke-extraction studies and larger research platforms with clearly defined measurement objectives.

Compare smoke-extraction strategies within a defined boundary.

TEST PRINCIPLE

Synchronous measurements and scenario records describe the response of the tested system. Efficiency metrics are calculated using the agreed measurement boundary, physical quantities and integration period.

SYSTEM ARCHITECTURE

Sensor network, acquisition cabinet, scenario records and analysis software, integrated with the fire source, air supply, extraction and test space.

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Smoke Extraction Efficiency Research System / Technical profile

Fire atmosphere

FRTS brand

08 / RESEARCH & LABORATORIES

TECHNICAL PROFILE / CUSTOM MEASUREMENT SYSTEM

Smoke Extraction Efficiency Research System

SPECIFICATIONS

UTILITIES & INSTALLATION

APPLICATION

Smoke extraction system and test space

MEASUREMENTS

Temperature / velocity / smoke measurements

ACQUISITION

Synchronised multipoint data

CONDITIONS

Airflow and fire source configured for research task

DATA PROCESSING

Curves and comparisons between test conditions

SCOPE

Defined by test platform and measurement-point schedule

ELECTRICAL

Rate instrumentation, fans and fire source separately

GAS SUPPLY

Configured for the fire source or tracer method

WATER

Defined by cooling and auxiliary systems

EXHAUST

Coordinate test extraction and exhaust treatment

INSTALLATION

Sensor supports, cabling and operating clearance

ENVIRONMENT

Controlled background airflow and instrument environment

METHOD & INTERPRETATION

Define the control volume, inlets, outlets, mass or heat balance and time interval before comparing efficiency. Different methods may produce metrics with different meanings; the calculation basis must accompany the result.

KEEP THE TEST TRACEABLE

Record sensor coordinates, section dimensions, airflow and temperature methods. Retain background baselines, repeat tests, raw curves and calculation parameters with the stated application scope.

Final configuration, utilities and supply scope are confirmed in the technical agreement.

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Let us define your next test.

Large-scale fire-test background

Complete FRTS brand

LET’S DEFINE YOUR NEXT TEST.

A better brief. A clearer test programme.

Tell us about the specimen, adopted methods, required measurements and available laboratory space.

Specimens / Methods / Measurements Site layout / Utilities / Scope of supply

Sichuan Farui Testing Equipment Co., Ltd.

www.firets.com lyping@firets.com