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mach2The Mach 2 floodlight stands out for its versatile, cutting edge structure. It is addressed to a whole range of uses, especially inside, thanks to its exceptional design, size and compactness. For metal halide or high pressure sodium double ended lamps, as well for the new ceramic and metal halide G12 lampholder lamps. Power 35W et 70W.

Applications:
- Large Areas
- Industrial and Commercial Centers
- Street Furniture and Decorative

 

 

 


Mach 2 Symmetrical
• Die cast alluminium body coated with polyester powders in black colour, titanium, silver and white on request.
• Reflector made of highly pure aluminium sheet, polished and oxidized.
• The front glass is non–breaking type, sealed to the cover. All the gaskets are in non degenerative silicon rubber.
• Bracket made of galvanized painted steel with index for vertical orientation.
• The control gear plate, made out of galvanized steel sheet.

All the electrical components are produced according to the Italian Quality Standards for power 230V - 50Hz. All ballasts are complete with thermal protector. The projector is manufactured according to En 60598/1 rules.

OPTICAL SYSTEM
The symmetrical version with two different reflectors:
• Peened reflector for mediumwide beam.
• Specular reflector for mediumnarrow beam.
Wind exposed surface = 0,056 m2
Colours: Titanium, Silver, Black, White

 

Mach 2 Asymmetric
• Die cast alluminium body coated with polyester powders in black colour, titanium, silver and white on request.
• Reflector made of highly pure aluminium sheet, polished and oxidized.
• The front glass is non–breaking type, sealed to the cover. All the gaskets are in non degenerative silicon rubber.
• Bracket made of galvanized painted steel with index for vertical orientation.
• The control gear plate, made out of galvanized steel sheet.

All the electrical components are produced according to the Italian Quality Standards for power 230V - 50Hz. All ballasts are complete with thermal protector. The projector is manufactured according to En 60598/1 rules.

OPTICAL SYSTEM
The asymmetrical optics improve considerably the projector’s performance and in the same way reduce the glare. The asymmetrical version with two different reflectors:
• Peened reflector for medium wide beam.
• Specular reflector for medium narrow beam.
Wind exposed surface = 0,056 m2
Colours: Titanium, Silver, Black, White

Mach 2 Circular
• Die cast alluminium body coated with polyester powders in black colour, titanium, silver and white on request.
• Reflector made of highly pure aluminium sheet, polished and oxidized.
• The front glass is non–breaking type, sealed to the cover. All the gaskets are in non degenerative silicon rubber.
• Bracket made of galvanized painted steel with index for vertical orientation.
• The control gear plate, made out of galvanized steel sheet.

All the electrical components are produced according to the Italian Quality Standards for power 230V - 50Hz. All ballasts are complete with thermal protector. The projector is manufactured according to En 60598/1 rules.

OPTICAL SYSTEM
The circular floodlight is equipped with two different reflectors:
• glazed with medium-narrow beam completed with baffle to avoid the direct glare
• super bright with narrow beam at highest intensivity
Wind exposed surface = 0,056 m2
Colours: Titanium, Silver, Black, White

Accessories




The “Dark Sky®” lighting telemanagement system

The lighting control, according to CEN/TR13201-1 and EN 13201 - 2/3/4 or UNI 10439 or DIN 5044 and ISO 50001 EMS standards is only possible if there are the best safety conditions for road users.
The Dark Sky ®, networked control, can continuously vary the light output from 0 to 100%, monitoring and controlling the amount of efficient light at the right place, at the right time, providing energy reporting. Maximum savings can be accomplished by using specific schedule or  custom cycles of adjustments for :

  • Roads;
  • Urban lighting;
  • Residential areas;
  • Architectural lighting;
  • Area lighting;
  • Tunnels;
  • Industrial plant;
  • Parking lot.
The true cost of the light you buy, is the sum of three elements: initial capital cost, energy consumed and maintenance, usually energy is the largest item. Dark system will save significant amounts of energy, compared to older alternative technologies. In other words this means:
- 48 % saving in energy costs;
- Up to 40% extra energy savings;
- High system efficiency to save energy;
- High system efficiency to save energy;
- Increasing, to the level of a single each luminaire, the power factor up to 0,99;
- Lowering of lamp high inrush current;
- An extended lamp life due to soft ignition and control of electrical and thermal stresses;
- Every day the correct operating time calculated on the basis of sunrise, sunset timings and the season, to determine when it has to be switched on or turned off;
- Lights are dimmed during low traffic hours to save energy or enhanced in problematic neighborhoods to improve safety;
- A smart meter accurately calculates the energy consumption, taking into account the varying rates and automatically bills all entities with a full web based report.

lighting savings

50 % saving in maintenance costs:

  • The lighting failures are automatically reported by the system, saving time and costs;
  • The digital system smartly plans and routes the maintenance works to minimize operating & maintenance costs;
  • Burning hours reports, for proactive lamp change;
  • High up-time and immediate fault rectification;
  • Control cabinet fault monitoring;
  • No power factor correction needed so no capacitor to fail;
  • Only one component to simplify servicing;
  • Peak voltage protection to safeguard lamp, and surge protected to safeguard gear;
  • Fully protected components against dust, moisture and vibrations;
  • The universal small size of the product ensures an easy fit into any new or existing luminaire or pole;
  • Compact size and low weight provide design flexibility and easy installation.

In other words:  + 100 % of system availability.

How the system works


A decrease of the 40% of the luminous flux results in a power reduction of 50% so the challenges are:

  • Energy use: the lowest possible;
  • Light quality: the highest possible;
  • Maintenance costs: the lowest possible;

A lighting upgrade is a systematic method for planning upgrades that maximize energy savings. When the staged approach is performed sequentially, each stage includes changes that will affect the upgrades performed in subsequent stages, thus setting the overall process up for the greatest energy and cost savings possible.

For maximum effectiveness, energy and lighting efficiency should be addressed right from the start of the design process in the following ways:

  • Design lighting systems with components that minimize light loss over time;
  • The process begins with the choice of lamp. To account for lighting-system degradation, designers typically oversize initial light output by 20 percent or more to "maintain" minimum target illumination levels when lamps are changed and fixtures cleaned;
  • Proper design and maintenance-using high-quality lighting components that suffer less degradation or degrade more slowly-can cut that excess nearly in half, saving almost 15 percent in connected load;
  • Minimizing that 20 percent safety factor involves choosing lamps with minimum lumen depreciation;
  • Maintenance costs can be further minimized by limiting the number of different types of lamps that must be stocked and by choosing lamps with maximum rated life to reduce burnout rate.

Lighting management system

Lighting management system

Regulating and controlling, the light output of each luminaire, to get the appropriate amount of light for the tasks to be performed, according to CEN/TR13201-1 and EN 13201 - 2/3/4 or UNI 10439 or DIN 5044 and ISO 50001, whilst controlling the power and supply voltage quality, or reducing the voltage drops, or lowering the lamp high inrush current, for the whole life of the lamp, ensures a longer lamp and driver lifetime, with an extended lamp life, from point A or B to C.
In other words the soft ignition, the control of electrical and thermal stresses and the usage of the really needed quantity of light, doubles the lamp lifetime.

Constant Light Output

luminous flux

To account for lighting-system degradation, designers typically oversize initial light output by 20 percent or more, to "maintain" minimum target illumination levels when lamps are changed and fixtures cleaned. To ensure the required illuminance the Constant Light Output (CPO) function compensates the deprecation of light output of the installation and eliminates the initial over-lighting. Depending on the installation, energy savings between 8% and 10% are very likely to achieve.

“Digital Lamp” Power Output

The longitudinal uniformity, the required lighting level and the light pole spacing, especially in an existing outdoor lighting relamping, are usually the limiting factors in determining the lamp power. Simply the lamp power needed doesn't exist. This leaves the lighting designer with no alternative but to choose the next highest wattage available, which of course inevitably leads to over-lighting.
The “Digital Lamp” function enables you to use exactly the designed power value, reducing the fixed light output to the required level, only with “a click of mouse”, while achieving a  better light quality, with a bigger general uniformity.
Depending on the installation, energy savings between 15% and 25% are very likely to achieve, while improving the General Uniformity up to 25% .

 

Getting more and more energy from fewer resources
Getting more and more light from fewer energy

Energy efficiency

The European Union approved tougher energy-saving rules while pursuing a separate plan to limit their impact on demand for allowances to discharge carbon dioxide in the world's biggest emissions-trading market. The European Parliament endorsed a draft law that will require energy distributors to save 1.5 percent of their sale volumes annually. The legislation will also force central governments in the 27-nation EU to refurbish at least 3 percent of their buildings to higher efficiency standards every year. The bloc's national governments have already signalled support for the law, making their final approval a formality in coming weeks.
Read all - Read the European Parliament legislative resolution

Public lighting

pubblica illuminazione

Actions to improve public lighting energy efficiency in the municipalities of Italy
Do you want to turn your energy costs in new development opportunities for your area?
Do you want to find a response to the rising costs of energy supplies? To the constant reduction in revenue? What do we propose through this program?

Read all...

European Com. Programs

Progetto Energia s.r.l. is a Greenlight Endorser. The GreenLight Programme is an initiative promoted by the European Commission encouraging pollution prevention electricity consumers to engage in their facilities to install efficient lighting technologies from an energetic point of view.

Progetto Energia s.r.l. supports the Covenant of Mayors. The Covenant of Mayors is the mainstream European movement involving local and regional authorities, voluntarily committing to increasing energy efficiency and use of renewable energy sources on their territories.

Progetto Energia s.r.l. is a Motor Challenge Endorser. Motor Challenge is an Europaen programme whose aim is to help industries to save energy and improve enviroment.


European Directory of Biomass Technology.

Contacts

Italy Headquarters: via Tuscolana, 739
00174 Roma
Global Headquarters: via Sistina, 121
00187 Roma
Phone: +39 06 47818451
Fax: 06 47818444
Info: info@progettoenergia.com
P.IVA and Cod. Fisc. 06992771003

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