Smoke and heat exhaust systems Safety thanks to certified smoke outlet devices – cost-effective and EN-compliant
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SHEV IN FIRE INCIDENTS – CERTIFIED SMOKE OUTLETS ... rescue LIVES ... protect ASSETS and PROPERTY ... reduce BUSINESS RISKS ... provide ADDED VALUE
and create SAFE CONDITIONS. Experts from fire service associations, the German VdS Schadenverhütung fire protection and safety testing centre and the German Daylight and Smoke Protection Systems Association agree: only certified smoke outlet devices create safe conditions in the event of fire. •
They are designed as per DIN 18232-2 and tested as per EN 12101-2.
•
They prevent rooms from completely filling with smoke.
•
They reliably provide a smoke-free layer.
•
They contain the fire incident and minimise its consequences. +
rely on DIN 18232-2 and EN 12101-2 to provide a certified smoke outlet device.
The LAMILUX CI philosophy Customer value is the reason we exist and is the focus of our activities. This requires harmony, identity and a balance between customer value and company strategy. The principles that guide our company's actions and customer relations are set out in LAMILUX's company philosophy: Customized intelligence – serving the customer is our mission. This requires outstanding performance and leadership in all areas relevant to customers, especially in the role as: • A quality leader - optimum benefit for customers • A leader in innovation - at the cutting edge of technology • A leader in service - fast, uncomplicated, reliable and friendly • A leader in expertise - optimum sales and technical advisory services • Leader in solving problems - individual, tailor-made solutions
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SHEV SYSTEMS – ESSENTIAL FOR SURVIVAL Certified smoke ventilation is only safe and efficient if provided by natural smoke and heat exhaust systems (SHEV) which are designed according to specifications in DIN 18232-2.
These systems use thermal lift to channel smoke, heat and poisonous fumes into the open air. A smoke-free layer forms near the floor when fresh air flows in, meaning: • People can quickly escape into the open air. • Emergency services have the air that they require to extinguish fires and rescue people trapped inside.
RESCUE lives: poisonous smoke fumes extracted PROTECT assets and property: fire service given faster, more targeted access to extinguish fire REDUCE business risks: less risk of production downtimes and failure to deliver PROVIDE added value: energy-efficient daylight intake and ventilation function with SHEV systems
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CI System Smoke Lift F100
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Page 10
CI System Smoke Lift ME
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CI System Smoke Lift B/S
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CI System Smoke Lift M
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Building system controls
The most cost-intelligent solution for each SHEV surface in the building Product overview LAMILUX CI Systems and smoke and heat exhaust systems
LAMILUX CI SYSTEM Smoke Lift B | Page 14
LAMILUX CI SYSTEM SMOKE LIFT SW
LAMILUX CI SYSTEM SMOKE LIFT M | Page 22
LAMILUX CI SYSTEM SMOKE LIFT ME | Page 10
LAMILUX CI SYSTEM Smoke Lift ME DK | Page 12
LAMILUX CI SYSTEM Smoke Lift S | Page 18
LAMILUX CI SYSTEM SMOKE LIFT F100 | Page 6
LAMILUX CI SYSTEM AIR INLET DEVICES | Page 24
LAMILUX CI System Smoke Lift F100
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Smoke and heat ventilation: CO2 24 V 48 V 230 V Ventilation:
bar
230 V
VERSATILE AND COST-EFFECTIVE
LAMILUX CI System Smoke Lift F100 LAMILUX smoke lifts not only comply with fire service requirements for fast, efficient smoke and heat ventilation. They still also meet a constructor's need to provide a cost-effective solution.
The LAMILUX CI System Smoke Lift F100 consists of an upstand for a roof mount and a glazed upper section. The SHEV units are much more than 'off-the-rack' products and offer great diversity and flexibility: our extensive selection of accessories helps us to match LAMILUX Smoke Lift F100 to individual requirements, customer wishes and structural conditions.
Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
between 0.60 & 0.75 between 0.6 m² and 3.38 m²
Functional reliability
RE 50/1000 + 10,000 ventilation function openings
Snow load SL 500 to 2400 Low ambient temperature T(-05) T(-10) T(-15) Wind load WL 1500 Heat resistance B300
How you benefit LAMILUX CI System Smoke Lift F100
• Tested to DIN EN 12101-2 • Does not strike the roof during test or false signal release • CO2 cartridges in the heat exhaust unit are not damaged when an alarm point is triggered • Complies with DIN 18234 with no additional work or expense (see Page 8)
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SHEV
DIN 18234 – EASILY MET WITH LAMILUX DIN 18234 is an all-important reference for flat roofs since the standard's scope of application has widened considerably over recent years. It has now no longer limited to purely industrial buildings. Moreover, roofs can now also be tested and classified for preventive fire protection with the aim of containing fire spread on roofs.
LAMILUX solution
Heavy surface protection
AL N IO SE T I D N AD XPE E Heat insulation in compliance with DIN 18234-3, 4.1
Sheet steel border
Upstand with heat-insulated base flange and hard PVC connecting rail
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9
Aw values (m²) Sloped upstand
Aw values (m²) Sheer upstand with spoiler
Aw values (m²) Sloped upstand
Aw values (m²) Sheer upstand with spoiler
CO2
CO2
24V
24V
100/100
0.60
0.75
0.60
0.75
100/150
0.90
1.13
0.90
1.13
100/200
1.30
1.50
1.30
1.50
100/240
1.56
1.80
1.56
1.80
100/250
1.63
1.88
1.63
1.88
100/300
1.95
2.25
1.95
2.25
120/120
0.94
1.08
0.94
1.08
120/150
1.17
1.35
1.17
1.35
120/180
1.40
1.62
1.40
1.62
120/240
1.87
2.16
1.87
2.16
120/300
2.34
2.70
2.34
2.70
125/125
1.02
1.17
1.02
1.17
125/250
2.03
2.34
2.03
2.34
150/150
1.46
1.69
1.46
1.69
150/180
1.76
2.03
1.76
2.03
150/200
1.95
2.25
1.95
2.25
150/210
2.05
2.36
2.05
2.36
150/240
2.34
2.70
2.34
2.70
150/250
2.44
2.81
2.44
2.81
150/300
2.93
3.38
2.93
3.38
180/180
2.11
2.43
2.11
2.43
180/240
2.81
3.24
2.81
3.24
180/250
2.93
3.38
2.93
3.38
200/200
2.60
3.00
2.60
3.00
48V
230V
48V
230V
SHEV
A MODULAR SMOKE AND HEAT VENTILATION SYSTEM
CI System Smoke Lift ME
Certified safety – energy efficiency – comfort: with CI System Glass Architecture ME, we have developed a daylight system that unites these three aspects in a single roof system. Thanks to a combination between numerous innovations, this flat window with real glazing complies with important safety-relevant requirements: •
CI System Smoke Lift ME meets Building Materials Class A1 requirements and is thus non-flammable.
•
Complies with EN 12101-2 as a smoke and heat ventilation system
German federal state building codes sometimes require translucent roofing to be made of non-flammable construction materials. CI System Glass Architecture ME is classified as a smoke and heat ventilation system in compliance with EN 12101-2 when combined with a 24-volt drive, for example, and provides fire protection in vulnerable areas of buildings.
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Aw values (m²) Sloped upstand
Aw values (m²) Sheer upstand
Aw values (m²) Sloped upstand
Aw values (m²) Sheer upstand
CO2
CO2
24V
24V
100/100
0.38
0.45
0.38
0.45
100/150
0.62
0.70
0.62
0.70
120/120
0.59
0.67
0.59
0.67
125/125
0.65
0.73
0.65
0.73
Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
0.57 between 0.38 m² and 0.73 m²
Functional reliability
RE 50/1000 + 10,000 ventilation function openings SL 500 to 1000
Snow load T(00) T(-05) T(-15) Low ambient temperature WL 1500 Wind load B300 Heat resistance
How you benefit LAMILUX CI System Smoke Lift ME
• Building material class A1 (non-flammable) • Watertight against driving rain (Class E 1200 EN 12208) • Resistant to high wind loads (Class C4/B5, EN 12210) • Permanent fall-through protection system (GSBAU 18) • Excellent heat-insulation properties (Ug values of 1.1 to 0.6 W/(m²K) as per EN 673) • Total energy permeability g between18 and 78 per cent • Optimum airtightness (Class 4 EN 12207) • Light transmission Lτ between 19 to 82 per cent available
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SHEV
DOUBLE THE SAFETY
CI System Smoke Lift ME DK
CI System Double Flap ME DK combines a SHEV function (smoke extraction as per EN 12101-2), optimum daylight intake and natural ventilation in a compact system. This soundproofed daylight element impresses due to its extremely good heat insulation properties.
CI System Double Flap ME can be supplied in a very large format and thus feature a highly effective, aerodynamic smoke extraction surface. This daylight system is also designed to incorporate the frequently used fair weather ventilation system. Driven by a pneumatic system or an electrical motor (24V in compliance with EN 12101-2 or 230V), ventilation flaps can be opened up to an angle of 90°. Intelligent control of the ventilation function enables users to adjust individual air exchange rates perfectly to their needs.
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Aw values (m²) Sheer upstand
Aw values (m²) Sheer upstand
CO2
24V
120/120
0.90
0.90
120/180
1.37
1.37
120/240
1.84
125/250
2.00
150/150
1.43
1.43
150/180
1.73
1.73
150/200
1.92
1.92
150/210
2.02
2.02
150/240
2.32
150/250
2.42
180/180
2.08
180/240
2.80
180/250
2.92
200/200
2.59
2.08
2.59
Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
0.68 between 0.90 m² and 2.92 m²
Functional reliability
RE 50/1000 + 10,000 ventilation function openings
Snow load
SL 500 to 1000
Low ambient temperature
T(00) T(-05) T(-15)
Wind load
WL 1500
Heat resistance
B300
How you benefit LAMILUX CI System Smoke Lift ME DK
• Watertight against driving rain (Class E 1200 EN 12208) • Resistant to high wind loads (Class C4/B5, EN 12210) • Excellent heat-insulation properties (Ug values of 1.1 to 0.6 W/(m²K) as per EN 673) • Total energy permeability g between18 and 78 per cent • Optimum airtightness (Class 4 EN 12207) • Adverse weather ventilation optional
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SHEV
LAMILUX CI System Smoke Lift B
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Smoke and heat ventilation:
CO2 24V 48V 230V Ventilation:
bar
230V
SMOKE EXHAUST WITH OPTIMUM ENERGY EFFICIENCY
LAMILUX CI System Smoke Lift B
CI System Continuous Rooflight B is equipped with smoke and heat ventilation devices that fulfil all EN 12101-2 requirements. Single or double flaps are integrated to provide a smoke and heat exhaust ventilation system and can be activated to provided normal ventilation or fair weather ventilation.
Energy efficiency: the blower door test demonstrates the optimum airtightness in the continuous rooflight system when flaps are closed. Safety and stability: open SHEV flaps offer very strong resistance to wind loads, even when they feature large dimensions. This is guaranteed by spring-loaded, multiple-joint traverses connected directly to the flap structure.
Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
between 0.60 & 0.65 between 0.59 m² and 7.40 m²
Functional reliability
RE 1000 + 10,000 ventilation function openings RE 11000
Snow load
SL 500
Low ambient temperature
T(-5)
Wind load
WL 1500
Heat resistance
B300
How you benefit
•
LAMILUX CI System Smoke Lift B
No spreading of flames as DIN 18234 requirements are met thanks to Linear Burn-through Protection (LBP)
•
Thermal release with CO2 - cylinder is not damaged during tests or due to false alarms
•
Excellent heat-insulation values with no thermal bridges
•
Suitable as a melt-out roof surface in accordance with DIN 18230 and available as 'hard roofing' upon request; in accordance with DIN 4102-7, resistant to flying sparks and radiated heat
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SHEV
Many flap combinations for market-leading smoke and heat exhaust units Dimensions never seen before can be achieved in SHEV systems thanks to a new technology. The CI System Smoke Lift B can be integrated into continuous rooflight structures as a single or double flap in numerous potential combinations to create optimum, building-specific smoke extraction surfaces. In the event of a fire, flaps are quickly opened by thermal release, thermal and CO2 remote release or electric remote release. The SHEV flap systems can also be used for ventilation and activated electrically/pneumatically.
CI System Smoke Lift B with a single flap
CI System Smoke Lift B with symmetric double flap system
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Free opening surface Effective aerodynamic opening surface Ageo in m² Aw in m²
Smoke Lift BE with single flap 100
0.93
0.59
200
1.96
1.27
TS
420
4.01
2.53
125
100
1.17
0.74
200
2.46
1.60
TS
420
5.04
3.18
150
100
1.43
0.90
200
3.01
1.96
420
6.17
3.83
100
1.67
1.04
200
3.51
2.28
TS
420
7.20
4.68
200
100
1.91
1.18
200
4.01
2.61
420
8.22
5.43
100
2.39
1.48
200
5.02
3.26
TS
420
10.28
6.37
300
100
2.87
1.78
200
6.02
3.91
420
12.34
7.40
100
TS
Smoke Lift BA with asymmetric double flap system 175
TS
Smoke Lift BD with symmetric double flap system 250
TS
TS = tandem-series heat exhaust unit
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SHEV
Smoke and heat ventilation:
CO2 24V 48V 230V Ventilation:
230V
bar
A MODULAR SMOKE AND HEAT VENTILATION SYSTEM
CI System Smoke Lift S
If needed, you can equip CI System Continuous Rooflight S with smoke and heat ventilation devices that fulfil EN 12101-2 requirements. Thermally separated flap systems for smoke and heat exhaust and natural ventilation can be integrated into the extremely stable, thermal bridge-free structure with span widths up to six metres. They can be fitted into continuous rooflights in a modular system combining different sized versions, ideally matched to the required smoke exhaust surface
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Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
between 0.60 & 0.65 between 0.32 m² and 5.08 m²
Functional reliability
RE 1000 + 10,000 ventilation function openings RE 11000
Snow load
SL 500
Low ambient temperature
T(-5)
Wind load
WL 1500
Heat resistance
B300
How you benefit
•
Suitable as a melt-out surface
LAMILUX CI System Smoke Lift S
•
Good heat insulation values
•
The ideal solution when the architecture requires a ridged roof shape
•
Thermal release with CO2 - cylinder is not damaged during tests or due to false alarms
y
x
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Upper edge of roof
SHEV
Upper edge of roof size
Dimension X
Dimension Y
Opening surface Ageo
Effective aerodynamic opening surface
CI System Smoke SE30 with single flap 100
100
53
0.53 m²
0.32 m²
100*
120
53
0.63 m²
0.38 m²
150
100
82
0.82 m²
0.49 m²
150*
120
82
0.97 m²
0.58 m²
200
100
111
1.11 m²
0.64 m²
200*
120
111
1.31 m²
0.76 m²
250
100
140
1.40 m²
0.80 m²
250*
120
140
1.65 m²
0.92 m²
300
100
169
1.69 m²
0.95 m²
300*
120
169
1.99 m²
1.09 m²
CI System Smoke SE45 with single flap 80
100
53
0.53 m²
0.33 m²
80*
120
53
0.63 m²
0.38 m²
120
100
82
0.82 m²
0.51 m²
120*
120
82
0.97 m²
0.58 m²
160
100
111
1.11 m²
0.67 m²
160*
120
111
1.31 m²
0.77 m²
200
100
140
1.40 m²
0.80 m²
200*
120
140
1.65 m²
0.94 m²
240
100
169
1.69 m²
0.96 m²
240*
120
169
1.99 m²
1.12 m²
CI System Smoke SE-SHED60 with single flap 100
100
53
0.53 m²
0.32 m²
100*
120
53
0.63 m²
0.38 m²
150
100
82
0.82 m²
0.49 m²
150*
120
82
0.97 m²
0.58 m²
200
100
111
1.11 m²
0.64 m²
200*
120
111
1.31 m²
0.76 m²
250
100
140
1.40 m²
0.80 m²
250*
120
140
1.65 m²
0.92 m²
300
100
169
1.69 m²
0.95 m²
300*
120
169
1.99 m²
1.09 m²
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Upper edge of roof size
Dimension X
Dimension Y
Opening surface Ageo
Effective aerodynamic opening surface
CI System Smoke Lift SD30 with double flap system 100
100
53
1.02 m²
0.64 m²
100*
120
53
1.20 m²
0.75 m²
100
200
53
2.09 m²
1.27 m²
100 TS**
420
53
4.24 m²
2.42 m²
150
100
82
1.52 m²
0.96 m²
150*
120
85
1.79 m²
1.11 m²
150
200
82
3.12 m²
1.90 m²
150 TS**
420
82
6.32 m²
3.48 m²
200
100
111
2.02 m²
1.25 m²
200*
120
111
2.38 m²
1.48 m²
200
200
111
4.14 m²
2.57 m²
200 TS**
420
111
8.40 m²
4.96 m²
250
100
140
2.52 m²
1.54 m²
250*
120
140
2.97 m²
1.84 m²
250
200
140
5.17 m²
3.21 m²
250 TS**
420
140
10.48 m²
6.50 m²
300
100
169
3.02 m²
1.84 m²
300*
120
169
3.56 m²
2.21 m²
300 TS**
210
169
6.21 m²
3.85 m²
300* TS**
240
169
7.31 m²
4.53 m²
CI System Smoke Lift SD45 with double flap system 120
100
82
1.22 m²
0.94 m²
120*
120
82
1.43 m²
1.09 m²
120
200
82
2.49 m²
1.84 m²
120 TS**
420
82
5.05 m²
3.54 m²
160
100
111
1.63 m²
1.25 m²
160*
120
111
1.92 m²
1.46 m²
160
200
111
3.33 m²
2.47 m²
160 TS**
420
111
6.76 m²
4.39 m²
200
100
140
2.04 m²
1.51 m²
200*
120
140
2.40 m²
1.68 m²
200
200
140
4.17 m²
2.71 m²
200 TS**
420
140
8.47 m²
5.08 m²
240
100
169
2.45 m²
1.71 m²
240*
120
169
2.89 m²
1.90 m²
240 TS**
210
169
5.03 m²
3.02 m²
240* TS**
240
169
5.92 m²
3.49 m²
* In combination with glazing type PC 32-5 and PC 32-5 + GRP ** Tandem-series heat exhaust unit
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SHEV
LAMILUX CI System Smoke Lift M
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Smoke and heat ventilation:
CO2 24 V 48 V 230V Ventilation:
bar
230V
GREATER SAFETY IN PREVENTIVE FIRE PROTECTION
LAMILUX CI System Smoke Lift M
This smoke and heat exhaust ventilation unit is an ideal flap system for smoke and heat exhaust ventilation in LAMILUX glass roof structures. It can be easily installed at angles between 0° to 90°.
Test parameters as defined by DIN EN 12101-2 and test results Flow coefficient Cv Effective aerodynamic opening surface Aw
between 0.56 & 0.70 between 0.14 m² and 6.00 m²
Functional reliability
RE 50/1000 + 10,000 ventilation function openings
Snow load
SL 500 to SL 1000
Low ambient temperature
T(00) T(-05) T(-15)
Wind load
WL 1500
Heat resistance
B300
How you benefit
•
LAMILUX CI System Smoke Lift M
Flap widths and heights can be freely selected up to 2.50 m, covering a maximum flap size of 3.00 m² with real glazing, or up to 3.50 m² with polycarbonate glazing
•
Complies with European standard EN 12101-2 for smoke and heat evacuation systems
•
Selection of drive systems - pneumatic or 24 volt electric version
•
Perfectly suited for retrofitting to older roof structures as it can be integrated into other systems
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SHEV
LAMILUX CI System Air inlet devices
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OPTIMUM EFFICIENCY
LAMILUX CI System G-Air Material Extruded, thermally separated aluminium profiles Sizes Width: up to 1,800 mm without centre post 1,801 – 2,400 mm with centre post Height: 300 mm and above Louver slats Aluminium panel (Ug = 1.0 to 1.3 W/m²K) Insulating glass (Ug = 0.7 to 1.1 W/m²K) Drives Pneumatic cylinder 24 V electric motor
LAMILUX CI System B-Air Material Aluminium Sizes Width: 600 - 2400 mm Length (height): 720 - 2920 mm Louver slats Aluminium, single- or double-skinned, thermally insulated Polycarbonate opal or transparent Insulation glass Drives Pneumatic cylinder 24 V electric motor
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SHEV
SAFE – ENERGY-EFFICIENT – CONVENIENT
LAMILUX building control systems
Safety, energy efficiency and comfort in a building are largely determined by building control systems. They are the key to sustainable, value-based future construction. LAMILUX provides project planning and equips buildings with complex building control systems featuring networked functions. As a specialist company with many years' experience in both large and small projects, we provide intelligent controls and automation for fire safety, energy efficiency and building comfort. Plan - Network - Automate From small control solutions through to complex building automation systems in large projects, LAMILUX offers all services from a single source, including trade contracting. It reliably provides everything from planning and design concepts for electric or pneumatic control systems and components through to their installation, initial operation and maintenance. Control with our systems
•
•
Smoke and heat exhaust systems
•
•
Flap systems for natural ventilation
and benefit from smart networking building safety, energy
•
Solar protection and light guidance
efficiency and building comfort.
Sensor-activated electric lighting switches Temperature-sensitive switches on climate control units
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NON-SYSTEM CONNECTED – ELECTRIC
Smoke removal openings for stairways
Many European countries have special regulations for stairways. In most cases, smoke must be removed from stairways using electrically controlled, mains-independent systems. That is why LAMILUX supplies smoke removal openings specially designed for stairways, although they may also be fitted in any type of building or structure. Our standard set comprises: •
1 electric motor with a 500 mm stroke, 24 V, disconnection under load
•
1 control unit for a maximum of two motors with control connectors for SHEVS and ventilation buttons, and various peripherals such as smoke alarms, thermal alarms or wind and rain sensors
27
•
2 SHEV control switches with visual display, surface mounted
•
1 flush-mounted fan button for 55 mm switch box
•
Single item deliveries and upgrades are possible
SHEV
A SINGLE PARTNER FOR MANY THINGS INSTEAD OF MANY PARTNERS
Renovation of SHEV systems
When smoke and heat exhaust systems start to age, customer advisory services and a professional renovation are often not only expensive, but also involve a great deal of work. Not if you work with LAMILUX, however.
Customer advisory services, tailored solutions, including control technology, and all work involved in the upgrade from a single source: On request, LAMILUX will handle the entire renovation package for you. We start with an initial survey to establish what the existing system contains, if the existing conditions comply with new statutory regulations and what the most cost-effective solution would be. We then draw up a design concept, arrange demolition and waste disposal, implement safety measures to protect your employees and assets, and install the system in close cooperation with established partners in the roof building sector. Our specialists are responsible for installing the complex control technology.
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FAILING TO MAINTAIN MAKES YOU LIABLE
SHEV systems must work
Smoke and heat ventilation system owners are required by law to perform all necessary measures to ensure that people are protected against danger in the event of a fire. If you do not maintain your SHEV system, you may be in breach of building safety regulations, DIN 18232, state directives and other directly or indirectly applicable laws.
If you maintain your SHEV system on a regular basis, you will not only minimise the risk of damage and injury considerably, but also liability risk. Inadequate maintenance will also make you liable. According to VdS guidelines, servicing can only be carried out by companies which can provide a promise from the SHEV system installer to deliver original replacement parts.
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SHEV
PROJECT-RELATED CONSULTATION
Benefit from our practical experience
You are involved in the construction of a new building or renovation of an old one and wish to make things safer with preventive fire protection based on SHEV systems. We will gladly provide you with a consultation related to your project. We will assist you with project-specific planning and correct SHEV system dimensioning and find tailor-made, building-specific solutions together with you.
TRAINING ON SHEVS AND PREVENTIVE FIRE PROTECTION
We offer guidance through the maze of regulations The sheer numbers of rules, regulations and directives in preventive fire protection for buildings is daunting, especially where they relate to smoke and heat ventilation. But what help do industrial standards, industrial guidelines or building codes offer with planning and installing SHEV systems? What character does a statutory regulation have? What is an interpretable provision or simply a flexible guideline? Our training programme will provide you with a way through the maze of regulations and their interpretation. This programme is aimed at our customers and building services planners, on the one hand, and public agencies and fire services on the other.
Customized
Intelligence
Dem Kunden dienen als Programm
30 14
SHEV open only Pneumatic SHEV:
Pneumatic SHEV:
Electric SHEV:
Electric SHEV:
SHEV open/close
31
SHEV open only Ventilation function
SHEV open/close Ventilation function
SHEV open/close Fair weather ventilation
Pneumatic SHEV:
Pneumatic SHEV:
Pneumatic SHEV:
Electric SHEV:
Electric SHEV:
Electric SHEV:
SHEV
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ROOFLIGHT DOME F100
GLASS ELEMENT F
CONTINUOUS ROOFLIGHT B
CONTINUOUS ROOFLIGHT S
LIGHT PANEL
BUILDING UPGRADES
GLASS ARCHITECTURE PR 60
SMOKE AND HEAT EXHAUST VENTILATION SYSTEMS
BUILDING CONTROL SYSTEMS
PHOTOVOLTAIC SYSTEMS
AIR INLET DEVICES
FIBRE-REINFORCED COMPOSITES
LAMILUX Heinrich Strunz GmbH Zehstrasse 2 . Postfach 1540 . 95111 Rehau . Germany Tel.: +49 (0)92 83 59 50 . Fax +49 (0)92 83 595 29 0 Email:
[email protected] . www.lamilux.de VdS-approved installer of smoke and heat exhaust systems
RWA2014- 12/2014
The technical data printed in this brochure was accurate when this brochure went to press and is subject to change without notice. Our technical specifications are based on calculations and supplier information or have been determined by independent testing authorities within the scope of applicable standards. Thermal transmission coefficients for our composite glazing were calculated using the finite element method with reference values as per DIN EN 673 for insulated glass. Based on empirical values and specific characteristics of the composites, a temperature vector of 15 K was defined as the vector between the outer surfaces of the material. Functional values refer to test specimens and the dimensions used in testing only. We cannot provide any further guarantees of technical values. This particularly applies to changes in installation locations or if dimensions are re-measured on site.