Posted on Leave a comment

مكونات القاطع الكهربائي

مكونات القاطع الكهربائي

مكونات القاطع الكهربائي

مكونات القاطع الكهربائي، يعد القاطع الكهربائي من أحد أهم الحمايات الذي يستخدم في حماية الأجهزة الكهربائية بكافة أنواعها،

حيث يحتوي القاطع الكهربائي على مكونات داخلية هامة يجب على كل فني ومهندس كهربائي معرفتها، فما هي مكونات القاطع الكهربائي وما دوره في حماية الأجهزة الكهربائية.

دور القاطع الكهربائي في الحماية

إن القاطع الكهربائي له دور كبير في حماية الأجهزة الكهربائية والأشخاص من خطر التيار الزائد ودارة القصر،

ونظراً لأهميته يستخدم القاطع بكثرة في حماية كافة أحمال الأجهزة الكهربائية، مثل: الفرن الكهربائي والسخانات والمحركات الكهربائية.

مكونات القاطع الكهربائي
قواطع كهربائية

مكونات القاطع الكهربائي

يتكون القاطع الكهربائي ببساطة من عدة مكونات وهي:

نقاط التوصيل:

يوجد للقاطع نقطتين لتوصيل الكابلات أو الأسلاك النحاسية، أحدهما لدخل التيار الكهربائي والآخر يتصل مع الحمل الكهربائي.

نقطة توصيل متحرك داخلي:

هو المسؤول عن وصل وفصل التيار المار إلى داخل القاطع في حالة حدوث دارة قصر في الشبكة الكهربائية أو نتيجة زيادة التيار عن سعة تيار القاطع المقنن بنسبة متفاوتة.

المزدوجة الحرارية المعدنية:

هي المسؤولة عن فصل التيار المار للقاطع عن الحمل نتيجة زيادة التحميل،

حيث أن الزيادة في التيار يتولد عنه حرارة زائدة مسبباً في تقوس الشريط الحراري المكون من معدنيين مختلفين وبالتالي يتسبب ذلك في فتح الدائرة الكهربائية.

الملف المغناطيسي:

وظيفته داخل القاطع هو عدم السماح بمرور تيار لحظة حدوث تماس كهربائي داخل شبكة التمديدات الكهربائية، وهي ميزة في غاية الأهمية وخصوصاً في التمديدات المنزلية.

حيث أنه عند دخول تيار قصر عالي القيمة إلى الملف سوف يتولد مجال مغناطيسي قوي مؤدياً إلى جذب نقطة التوصيل المتحركة إلى الأسفل مسبباً في فصل ذراع القاطع بشكل أوتوماتيكي.

مانع الشرارة:

يتكون من شرائح معدنية متباعدة عن بعضها البعض، ووظيفته داخل القاطع هو التخلص من الشرارة الكبيرة التي تحدث لحظة فصل القاطع نتيجة الحمل الزائد أو التماس الكهربائي.

ذراع القاطع:

يتصل الذراع من الداخل ببعض المكونات الداخلية المتحكمة في الفصل التلقائي نتيجة زيادة التيار أو حدوث تيار قصر، بالإضافة إلى إمكانية رفع ذراع القاطع بشكل يدوي.

مكونات القاطع الكهربائي

استخدامات القاطع الكهربائي

يستخدم القاطع الكهربائي كأداة حماية للكثير من التطبيقات ومنها:

  • حماية الأجهزة الكهربائية المنزلية.
  • حماية كافة التمديدات الكهربائية المتواجدة في المستشفيات والمدارس والمحلات التجارية من أي تماس.
  • حماية المحركات الكهربائية.
  • حماية كافة الأحمال المتواجدة في المصانع الكبيرة والمولات التجارية.

القواطع الكهربائيةشرح القاطع الكهربائي MCCBلمعرفة اخر المنتجات الخاصة بنا وعروضنا المميزة يرجى الاشتراك بصفحاتنا على مواقع التواصل الاجتماعي:

صفحتنا على الفيسبوك=> Gahzlystore

صفحتنا على تويتر=> Gahzlystore

GAHZLY

Posted on Leave a comment

SCAME EX PRODUCTS 1

amEd7kX2RHSw. UX300 TTW   7

EX PRODUCTS

Products for electrical installation in hazardous areas


SCAME EX PRODUCTS, manufacturer of IEC products since 5 decads, has developed also an articulated range of ATEX-IECEx products for installation in hazardous areas due to the presence of gas or combustible dust.

SCAME EX PRODUCTS
Enclosures, Junction boxes, control stations, disconnecting switches, interlocked switchsocket outlets and relevant plugs, certified IECEx II 2GD (Gas & Dust) by leading Notification Bodies such as INERIS, IMQ, TÜV and EAC Ex by russian laboratory CCVE.

Thanks to the Increased Safety method of protection (Ex e) given by the enclosure and the adoption of a specific non sparking switch (Ex de) , the interlocked switchsocket outlets ADVANCE-GRP [GD] series and ISOLATORS-EX [GD] Series of switch disconnectors for Zone 1, allow easy installation equal to a normal products for industrial applications as well as no need for periodic maintenance and checks, as the Atex Directive 2014/34/UE (specifically EN 60079-15 Standard) requires for other methods of protection such as the “Ex nR” (limited breathing enclosures).

Where there is no need for disconnection, but for controlling lighting systems, the control devices ROCKER-EX[GD] series, made of sturdy material charged with fiberglass and available as one way switches, two way switches or push-buttons, are the ideal choice.

SCAME is equipped with IMQ, ATEX and IECEx notification.

This implies that, as regards the ZENITH-P and ZENITH-S series of enclosures, made respectively of GRP thermosetting material and stainless steel and also available with “component” (U) certification, it is able to support the customer during the decision-making process, processing offers and feasibility analysis in a short time thanks to an efficient internal analysis and budgeting service.
Furthermore, thanks to its production flexibility based on the principles of Lean Production and the use of highly qualified personnel and cutting-edge machinery, SCAME is able to create junction boxes and command and control units in customized configurations on specific needs of the customer, without requiring high lots.

Also Skids are the result of careful design and manufacturing. Configurable on specific customer needs, easy and quick to install without imposing long production stops, they are based on the use of equipment mounted on bottom plates sized to ensure the right distance between the various components in order to prevent ignition phenomena.

For zone 21 and 22, where the risk of explosion is given by presence of combustible dust SCAME has developed dedicated solutions certified IECEx II 2D, so to offer the maximum level of protection for the specific application where products certified GD are redundants.


Specific solutions which, for areas with less or normal explosion risk, we find represented by interlocked sockets, which can also be assembled in combination units, and plugs up to 125A, all certified II 3D.

Such a wide offer, such an accurate design and service combined with the value of the real MADE IN ITALY, make SCAME a reliable partner also for installations in environments with potentially explosive atmospheres.

Electrical transformers

SCAME EX PRODUCTS

We are pleased to have you visit our pages on social networking sites,

where we publish exclusive offers on our website.

Our Facebook page here .

Our Twitter account is here .

Posted on Leave a comment

Ex de lighting fixtures and floodlights with LED technology 2022

Ex de lighting fixtures and floodlights with LED technology

1. Introduction It’s appropriate to clarify some beliefs about LED lighting fixtures and,

more specifically, about their use in the…

Ex de lighting fixtures

It’s appropriate to clarify some beliefs about LED lighting fixtures and, more specifically,

about their use in the segment of environments with a risk of explosion and fire:

as men progressed in a continuous research of new technologies through by the technique of breaking stones

for tools and the creation of energy by exploiting the natural flow of the rivers, in the same way Cortem is pursuing

this philosophy approaching new technologies and adapting them to specific projects of research and development

without being fossilized in the past.

First, we analyzed carefully what the LED market was offering us by comparing the production quality of each manufacturer.

The analysis has led to choose products that could give us the appropriate functional guarantees

about the very low “infant mortality” of LED and, therefore, we continued with the

engineering of new lighting fixtures designed depending on application parameters guaranteed by the producers themselves.

These parameters must be appropriate to the right temperature dissipation for an adequate and sustainable use

in terms of the warranty for the customer.In fact, as you can see from the following photos,

the new series of LED lighting fixtures and floodlights designed by Cortem have nothing in common with

lighting fixtures and floodlights for  discharge lamps.

The old “enclosures” are not suitable to be used as a support for LED and do not lend themselves

to dissipate the temperature generated, compromising the proper functioning and durability.

Unfortunately, the “adaptation” and the transformation of old Ex lighting fixtures to new LED lighting fixtures

are very widespread practices in the market. This leads to poor performance and limited benefits in

terms of energy and cost savings for the end user.

The use of appropriate LED lighting fixtures allows to obtain numerous advantages.

Consider that a discharge lamp of 400W can be replaced with LEDs with a power of 160 W,

with an energy saving of about 60%. Furthermore, current Cortem LED lighting fixtures,

in addition to being not much more expensive to lighting fixtures for discharge lamps,

are plenty amortized over time due to the lower costs of maintenance.

The frequency of maintenance, in fact, decreased by 1.7 compared to the activity required for the re-establishment

of a discharge lamps lighting fixtures. It’s well known that a discharge lamp has an average life ranging from 3.000 to 10.000 hours

and then stops working, while LEDs  have an average life of 50.000-70.000 hours and

continues to work, only losing luminous efficiency.

The use of LEDs in the new range of Cortem products allowed us also to get floodlights with T5 class temperature,

much lower than the class temperature of the floodlights with discharge lamps (T2 / T3).

They can therefore be installed in hazardous areas where, until now, it was unthinkable to install a floodlight.

One of the main problems encountered, in order to ensure the safety in the workplace,

is to ensure an adequate level of illumination of the plants. In particular,

the characteristics of electrical equipment installed in areas with danger of explosion are designed with even

greater attention to get good illumination and reduction of risk conditions.

About 80% of all our sensory impressions are of optical nature and they need of light as a vehicle of information.

Good lighting, therefore, not only facilitates the vision and the recognition, but it greatly reduces the danger of accidents.

The devices that are installed in hazardous areas must therefore ensure, in addition to explosion protection,

the proper lighting required for the execution of all work operations in conditions of maximum security and must

have other characteristics, such as the reduced need for maintenance in order to minimize

risks associated with the equipment operation.

The LED is a light-emitting diode, otherwise, an optoelectronic device that uses the optical properties of

some semiconductor materials to produce photons through the phenomenon of spontaneous emission.

The first LED was developed in 1962 and, from that moment on, the technology has made great strides.

Today we have components that can be effectively used for industrial lighting.The main advantages of using

LEDs in lighting fixtures can be summarized as follows:

  • Reduced dimensions and lightweight than conventional lighting fixtures of equal power
  • High efficiency and energy savings
  • Long life (approximately 100,000 hours) with consequent reduction of maintenance costs
  • Resistance to vibration
  • No UV emission
  • Instant restrike
  • Excellent performance in harsh application
  • Anti-light pollution

In the specific case of the use of such components in the construction of lighting equipment used in classified areas,

the main advantage lies surely in the long duration that, in addition to being convenient in economic terms,

means a smaller number of maintenance interventions (lamping) on lighting equipment.

This is very positive in terms of safety, because, as you know, every intervention on equipment installed

in areas with risk of explosion increases the risk level of the system.

Another advantage of LED is that, unlike other sources of artificial lighting, once reached its limit of life,

not shut down abruptly, but continues to operate with a luminous flux reduction. This is synonymous of safety,

especially in those places of the plant where the lighting is fundamental to prevent accidents or injuries.

2.1 The light spectrum

The light spectrum of white LEDs of the latest generation, such as those used for the realization of our LED range,

is about as close to sun light spectrum. In the diagrams below, you can appreciate the differences between

the spectrum of sunlight and of other light sources, such as fluorescent lamps, discharge lamps and white LEDs.

For our LED products, we use only Cree LEDs with maximum efficiency,

in order to obtain the best light quality and the maximum lumen output.

All lighting fixtures have a CRI (Color rendering index) > 70 and a standard light color cool white 5700° K.

For special needs, can be requested a different color temperature.

After analyzing the characteristics associated with the use of LED technology,

let’s see the features of LED lighting fixtures that allow their use in classified areas for the presence of an explosive atmosphere.

For use in areas with danger of explosion is obviously necessary that the lighting equipment are designed,

built and certified according to technical regulations implemented by the ATEX Directive 94/9/ EC

and by the new ATEX Directive 2014/34/EU entered in force on March, 30th 2014. It will repeal,

with effect from April 20th 2016, the ATEX Directive 94/9/EC. The protection methods that can be used are the following:

  • Ex “d” explosion-proof: the philosophy of this method is based on the consideration that it’s not possible to prevent a gas to spread everywhere. The main advantage of this method of protection is that the electrical elements installed inside the lighting fixture, constructed to contain any explosion, are common components easy to find.
  • Ex “e” increased safety: the purpose of this method is to ensure security measures to prevent the formation of arcs or sparks. The main advantage of this method of protection is its simplicity of construction and, above all, applications. One of the disadvantages is the fact that the components, besides not being easy to find on the market, must be individually protected.
  • Ex “m” encapsulated: the purpose of this method is to prevent an explosive atmosphere may come in contact with ignition sources by encapsulating the equipment.

Cortem has designed and manufactured a full range of lighting equipment and floodlights that use the latest LED technology generation.

The LED technology in the coming years, will certainly replace other sources of

artificial lighting designed to obsolescence because of operating costs, environmental problems and ease of use.

4.1 EWL series lighting fixtures and floodlights – High Bay

EWL series consists of three models of High-bay lighting fixtures, EWL 70, EWL-80, EWL-100,

and three models of floodlights, EWL-70/ .., EWL-80/…, EWL-100/… with different optics:

Narrow (10°), Medium (20°) and Wide (40°).

Through the use of optics with different angles, you can get the optimal light beam in well-defined areas.

This allows maximum versatility of use, ensuring the proper illumination of the workplace.

A new feature for these lighting fixtures is the possibility to be powered at 24 VDC.

For the first time in the lighting history of areas with danger of explosion,

it’s available a lighting system with a lighting efficiency comparable to that obtainable with discharge lamps,

powered directly with alternative systems such as wind turbines, solar panels, battery systems.

As we said in the introduction, the LED lighting fixtures must be designed and constructed specifically.

The construction of bodies in aluminum alloy, designed with elements of heat dissipation,

is the key to obtain an efficient and long lasting system.

The housing of the feeder must be correctly calculated in terms of volume to allow easier heat dissipation.

In the picture below you can appreciate the thermo-graphic survey.

The finned body, made of aluminum alloy, acts as a heat sink for the LED plate mounted directly inside,

on the body of the lighting fixture allowing it to dissipate more quickly and effectively

the heating generated by the operation of the LEDs themselves.The design of the lamp body,

in addition to being functional to the duration of the system,

has allowed obtaining equipment with high luminous efficiency in relation to the maximum surface temperature.

This is a very important factor for the installation of lighting fixtures in places of danger,

containing gas or powders at low ignition temperature.

A further saving is obtained thanks to the fact that, while discharge lamps requires a preheating time for their complete ignition and,

for this reason, the lights of a plant are lighted up 24 hours, LEDs have an Instant Restrike.

A LED system can be effectively connected to automatic ignition system in case of low light,

allowing the use only for periods actually needed and, consequently, with a further saving of energy costs.

LED technology allows also adjusting the light output according to the real needs of the room to be lighted (dimming).

EWL series features with ‘Ex de’ method of protection for Gas and ‘Ex t’ for Dusts.

This choice allows powering the equipment through a ‘Ex e’ cable gland and without the need to perform sealings on field.

A tapped hole opposite to the entrance of the cable, allows the connection through wiring.

It’s now available a new version of the EWL-80 series, the EWL-801, both in lighting fixture and floodlight version.

The EWL-801 makes it possible to obtain, with the same size but with a power consumption of 110W,

a lumen output almost twice respect to EWL-80, 10100 lm compared to 6050 lm,

and a maximum light intensity much higher: 4330 cd for the lighting fixture version and 118670 cd (EWL-801/10),

51680 (EWL-801/20) and 20900 (EWL-801/40) for the version with optical concentrating of the light beam.

The series EWL has been certified and complies with the requirements of the following standards:

• EN/IEC 60079-0 Electrical apparatus for explosive atmospheres due to the presence of gas – Part 0:

General requirements;

• EN/IEC 60079-1 Explosive atmospheres – Part 1: Equipment protected by flameproof enclosures “d”;

• EN/IEC 60079-7 Explosive atmospheres – Part 7: Equipment protection by increased safety “e”;

• EN/IEC 60079-31 Explosive atmospheres – Part 31: Equipment with protection by enclosure “t” for use in presence of combustible dust.

It was also subjected to the tests required for the photo-biological risk assessment regulated by IEC/EN 62471 standards.

These tests measure the amount of emissions of UV, blue light and infrared radiation (IR),

which may cause damage to the skin and eyes (retina and cornea) operators.

The lighting fixtures and floodlights EWL series are EXEMPT from the photo-biological risk.4.2 EVL series lighting fixtures

The new LED compact lighting fixtures EVL series features Multichip LED formed from a matrix of LEDs

connected together and covered with a layer of diffused phosphorus. This technology allows obtaining high

values of lumen output and the installation at low heights, without the risk of disturbing the operator.

The EVL series consists of three lighting fixtures sizes: EVL-60, EVL-70 and EVL-80.

It represents the LED alternative for all those areas in which it was usual to use lighting fixtures with discharge

lamps of low and medium power up to 400W.

It’s equipped with fins that act as a heat sink and the electrical connection is easier thanks to a ‘Ex e’ terminal box,

which allows the entry with a ‘Ex e’ cable gland (no barrier). In addition, a tapped opposed hole allows the loop in/loop out facility.

In the following table, we can compare the power of EVL series lighting fixtures and of traditional lamps.

You will immediately appreciate the savings you can get.

4.3 EVE-L series lighting fixtures with LED remote phosphor technology – Low Bay

EVE-L series Cortem lighting fixtures are designed to provide an optimal replacement to the conventional incandescent lamps from

50W up to 200W. It’s available in two sizes: EVE-5050 end EVE-5060.

The peculiarity of these new lighting fixtures consists in the use of the LED Remote Phosphor Technology

on explosion-proof lighting fixtures.

This represent an absolute evolution in the world of LEDs and an important step forward in terms of energy efficiency,

lighting efficiency and chromatic yield quality.

The LED Remote Phosphor Technology is based on a yellow semi-spherical light diffuser that, when the lighting fixture is on,

absorbs the light produced by the internal LEDs and releases white light.

The EVE series allows to replace the lighting fixtures which use incandescent and energy-saving lamps with a

long lasting light source that ensures a better efficiency and an equal brightness comfort.

4.4 FLF-…L and FLFE-…L series lighting fixtures

Lighting fixtures for LED tubes FLF-…L (Ex d) and FLFE-…L (Ex de) series have two low copper content aluminium

heads with G13 lamp holder, a tempered borosilicate glass tube, that is resistant to changes in heat,

and a white painted aluminium reflector.

Both the series are available with one tube or with two tubes.

FLFE-…L series, in ‘Ex de’ way of protection, features an

“Ex e” terminal board housing that allows entry to the fixtures with a cable gland with an

“Ex” seal (normal), while FLF-…L series, in ‘Ex d’ way of protection, as specified in the appropriate installation standard

(EN/IEC 60079-14), the entry to the fixture must be through an Ex “barrier” cable gland (sealed)

or, in the case of a conduit system, with an EYS, EZS series sealing fittings.

The use of LED tubes, which have the same dimensions of fluorescent ones, allows to obtain economy in operating costs,

due to their long life, high-efficiency lighting, thanks to directional light,

and LED light quality with a color rendering index of 85 (CRI).Furthermore,

LEDs do not ionize the particles of air around the lamp and do not attract, then, the dust particles suspended in the air.

The round cross section of the lighting fixtures provides a better “Cx” coefficient with less resistance

to the wind and less accumulation of dust. FLFE series has been designed to facilitate and speed up maintenance operations.

As the electrical components are housed on a frame with guides,

re-lamping is quick and efficient. Furthermore,

the different types of mounting attacks and the absence of sealing fittings make the lighting fixtures particularly well performing.

4.5 EXEL-L series lighting fixtures (Work in progress)

EXEL-L series increased safety lighting fixtures for LEDs tubes are suitable to be installed in hazardous areas

1, 2, 21 and 22 where a high degree of protection and resistance against corrosion is required such as

in chemical and petrochemical plants, off-shore and on-shore plants, processing areas in food industries

etc… EXEL-L series is polyester made, with ‘Ex e-mb’ method of protection for LED tubes with remote

phosphor diffusers to reduce glare.

The through wiring double ended makes installation on field easier and

faster than normal lighting fixtures.

The transparent cover is clipped into place on both sides of the fixture body with 8

clips on the 785 mm model and 14 clips on the 1370 mm unit.

This ensures excellent protection against dust and water over time despite of degradation caused by ageing.

4.6 EVML-50 series lighting fixtures – Low Bay (Work in progress, end 2014)EVML-50 lighting fixtures,

in the design development phase,

have been conceived to offer a Low Bay lighting fixture that could replace incandescent equivalents at lower costs.

They are suitable for the illumination of small areas in which it’s necessary to limit the obstruction such as tunnels,

passages, corridors, stairways, perimeter walls and command and control cabins.

The EVML-50 series features the ‘Ex e mb’ method of protection:

the electronic board and the LEDs are protected with silicone of high transparency.

4.7 EVOLED series lighting fixtures (Work in progress)

The new EVOLED series lighting fixtures are designed for the internal lighting of boilers,

tanks, evaporators, silos, storage tanks, pipelines or other containers present in all those areas where hazardous vapors

, gases, dust or other fuels are present during the normal operation of a plant.

In addition to ensuring low power consumption and light efficiency,

the lighting fixture is provided with an external switch for an easy switching on and off after installation.

4.8 SLED series floodlights (Work in progress)SLED series rectangular floodlights, in the design development phase,

are equipped with “Wide area” optics for the symmetric and asymmetric illumination of industrial areas,

in general, and of hazardous areas.

Designed with ‘Ex m’ method of protection (encapsulation), SLED series floodlights are characterized by size,

weight and power consumption much lower than the floodlights fitted with conventional discharge lamps.

Safety is essential for workplaces and, especially in areas with potentially explosive atmospheres, the risks are very high.

Any system, therefore, that allows to reduce the level of risk is always well accepted.

Furthermore, if there are savings in money and energy, then the advantage is total.

The LED lighting in industrial sector is a path just started, but it’s definitely the

way to be followed to ensure a future of light and safety.

We summarize here, in conclusion, the main advantages that presents the range of Cortem’s

LED products with which we set ourselves several steps ahead in terms of technology against competitors:

  1. Energy saving with maximum efficiency, more light and less consumption.
  2. Longer life than conventional bulbs and, thus, reducing of maintenance costs.
  3. Savings of plant costs, lower costs to bring energy to the lamp.
  4. Directional light and superior quality allow a better identification of the colors of illuminated objects. Safety in the workplace.
  5. Use in lighting systems at low voltage (24Vdc).
  6. Resistance in the ON / OFF cycles.
  7. No Light Out for the security in the workplace.
  8. Resistance of the components to the electrical and mechanical stresses.
  9. Less weight, less volume, easier handling.
  10. Excellent heat dissipation for longer life of the LED.
  11. Possible electronic control of the light output (dimming).
  12. Respect for the environment, compliance with the standard anti-light pollution.
  13. Excellent performance in extreme climates.
  14. Immediate availability of the maximum light output power.
  15. Very low mortality of LEDs.
  16. Lower temperature classes.
  17. ‘Ex de’ method of protection allows the entry of the cable without realizing any conduit system with sealing.
  18. Possibility of replacing the LED plate with a more advanced technology (Future Proof).
  19. In the remote case of failure of one of the LEDs, the Ex safety remains unchanged.
  20. Multifunctional. From lighting fixtures to floodlight with the sole plate replacement.
  21. Guaranteed 50,000 hours (25° C ambient temperature).
  22. Suitable for classified areas as IIB and IIC.
  23. 100% recyclable.
  24. No flickering.
  25. Absence of hazardous substances such as the mercury for fluorescent lamps.

Electrical transformers

We are pleased to have you visit our pages on social networking sites,

where we publish exclusive offers on our website.

Our Facebook page here .

Our Twitter account is here .

Posted on Leave a comment

What are the differences between LED chips ? 2

q

What are the differences between LED chips ?

Which type should I choose?

LED strip lighting can be manufactured using a variety of different LED chip types.

Below, we’re going to explain the main differences between them –

by comparing the most commonly used chip types on the LED tape

 

LED chip


What does the number of an LED chip mean?

LED chips (also known as surface mounted diodes or SMDs) are all identified by a four-digit number.

This code is less complicated than it looks – it simply indicates the size of the LED chip.

For example,

the dimensions of SMDs on LED strip lights are 5.0mm x 5.0mm.


Which is the best LED chip?

LEDs like s, s, s and s aren’t really different types of chip at all – they’re simply different sizes.

Each has its own spec: different power requirements and output brightness.

The best choice depends on what’s right for your project.

You can find out more about each LED chip below.


The LED chip explained

Measuring 3.5mm x 2.8mm, the SMD is a smaller chip than the LED strip SMD.

You will most often find chips on 12-volt LED strips, drawing 4.8 watts

(also known as 4.8w p/m or 5w p/m LED tape) with 60 SMDs per metre.

These strip lights output around 330-360 lumens per metre,

depending on colour (equivalent to a 40w halogen) – enough to produce a smooth,

bright effect when shining onto any surface.

InStyle offer red, green, blue, amber, and both warm and cool white SMDs as standard colours.

(We can also supply other white colour temperatures, made to order.)

60 SMD p/m LED strip lights are typically used for feature lighting –

such as plinth or coving lights, in homes, bars, restaurants, hotels and other locations.

Though less common than standard 60 SMDs p/m LED tape, SMDs are also used on LED strip lights with 120 chips per metre.

Pulling 9.6 watts (known as 9.6w p/m or 10w p/m LED tape),

these tapes are available in the same range of colours. Light output is exactly double that of 60 SMDs p/m tape

– they have twice as many LEDs – so that’s around 660-720 lumens per metre, depending on colour.

120 SMD p/m LED strips are used for the same kind of feature-

lighting applications as its standard alternative. We recommend them for locations with strong ambient light,

where more brightness is needed than the 4.8w p/m can produce.

The cut points for our 60 SMD-per-metre LED strips are 50mm apart.

The 120 SMD p/m strips have cut points at 25mm intervals.

Both types are also available in waterproofed versions (IP67-rated).

Safe to touch

SMDs do not give off a lot of heat – you can safely touch them.

Even so, the 60 LED p/m tape requires PCBs (printed circuit boards) at least 8mm wide, and the 120 LED p/m tape

should use 2-ounce thickness PCBs.

As long as your LED strips meet these minimum specifications,

they can be simply installed anywhere because they have a sufficient heat sink not to require an additional aluminium extrusion.

There are many manufacturers of SMDs.

Epistar-branded SMDs are extremely high quality and give you the brightest SMDs on the market.

They offer excellent colour consistency and reliability, with a life of 50,000 hours at 70% output.

Cheaper alternatives are less bright and less reliable, and are prone to colour inconsistencies within the reel and between reels.

 


 

Double-power SMD explained

Double-power SMDs are the same size as standard-power LEDs.

They are available in the same colours, drawing twice the power to give twice the output.

LED strip lights manufactured using double-power SMDs have 120 LEDs per metre and pull 19.2 watts per metre

.(also known as 19.2w p/m, or 20w p/m).

Double-power LED strips use a 2-ounce 10mm wide PCB to disperse heat effectively,

in order not to require an extra heat sink when installed.

These LED strips are only available for 24-volt systems, as this carries current better.

Lumen output is around 1320-1440 lumens per metre (depending on the colour).

Because of its high brightness, we recommend this LED tape as general lighting, or to replace fluorescent tubes and halogens.


The LED chip explained

Measuring 50mm x 50mm, the SMD is larger than the SMD.

These dimensions mean that each SMD is big enough to house four separate LED chips (sometimes called ‘quad LEDs’).

LED chips are often used on 60 LED-per-metre strip lights,

pulling 14.4 watts at 24 volts (commonly called 14.4w p/m or 15w p/m LED tape).

With an output of around 990-1080 lumens per metre, depending on colour,

this tape gives you a smooth, bright effect when shining onto a surface.

Available colours are:

  • warm and cool whites (other Kelvins requirements can be manufactured on request)
  • red, green, blue, and amber single-colour
  • and also colour-changing – either RGB or RGBW (red, green, blue, white), using ‘tri’ / ‘quad’ chips (three or four LED chips in one).

These 60 SMD p/m LED strip lights are typically used for general lighting applications, such as corridor lighting,

replacing fluorescent tube lighting, in homes, bars, restaurants, hotels and other locations.

 


What are the differences between LED chips ?SMDs used in RGB LED strip lighting

The SMD is actually a ‘tri’ chip, meaning it has three smaller chips in every SMD.

So each white LED actually has three white chips inside.

s can also be used for colour-changing LED tape, with red, green and blue chips inside each LED.

By linking this type of RGB LED strip light to a controller, you can mix any shade of any colour you choose.

(RGBW tape is similar, but uses ‘quad’ LEDs, with an additional white chip.)

RGB LED strip lights are available in two types:

  • 30 LEDs per metre (known as 7.2w p/m or 7.5w p/m LED tape) outputs up to 500 lumens per metre and is ideal for feature lighting such as covings, plinths in homes, hotels, restaurants and bars.
  • 60 LEDs per metre (aka 14.4w p/m or 15w p/m LED tape) produces up to 1000 lumens per metre, perfect for full wall-washes such as bar frontage, back bars in restaurants, clubs, or the home.

We can supply both types of LED tape (30 and 60 LED p/m options) in waterproofed versions (IP67-rated).

The cut-points on both are spaced at 100mm intervals.

Branded Epistar SMDs are the highest quality LEDs on the market. They provide the best brightness, colour consistency and reliability with 70% output at 50,000 hours.

Using cheaper alternatives instead, you’ll get dimmer and more unreliable LEDs that output inconsistent colours within each reel and also from reel to reel.

 


 

The LED chip explained

A recent development, SMD LED chips are much smaller and much more efficient than many earlier SMD models.

The smaller size of the diodes (just 3.0mm x 1.4mm) means it’s possible to fit more of them on a length of PCB strip

– offering more brightness, without the need for more power.

At InStyle, we use SMDs in the manufacture of our specialized dual-white colour-temp changing (CCT) LED tapes.

Their compact size allows two LEDs producing different white shades to be positioned very close beside each other,

making it possible to mix a varied palette of different white-light tones from a single LED tape.

(A similar set-up to RGB/RGBW colour LEDs.)

 


 

The LED chip explained

The SMD is a new choice on the LED market. Instyle LED have now tested  chips fully, to confirm their reliability and efficiency.

2.8mm x 3.5mm in size, the chip is so far only available for white LEDs.

In practice, you can view  SMDs as a more efficient replacement for the –

producing 20% more light but drawing less wattage. Each  SMD pulls 0.2w

(a SMD pulls 0.24w), so that’s around 12 watts per metre compared to 14.4w for the SMD,

based on 60 LEDS p/m. Because the SMD is smaller and doesn’t get as hot,

it’s possible to mount up to 120 LEDS p/m – that’s 24w p/m – giving up to 2600 lumens per metre!

  • Cool white SMD 60 LEDS (14.4w p/m) = 1080 lumens per metre
  • Cool white SMD 60 LEDS (12w p/m) = 1300 lumens per metre
  • Cool white SMD 120 LEDS (24w p/m) = 2600 lumens per metre

InStyle’s LED strip lights are mounted on 2-ounce PCBs (10mm width) for better heat dispersion, superior reliability and longer life.

So this really is a product for the future.

We supply both 12w and 24w p/m LED tapes, in warm white, cool white or any custom white shades.

We also offer splashproof IP65 and waterproof IP67 heatshrink-coated options.

Now that chips have been available long enough to prove themselves,

we confidently predict that more people will switch to them from SMDs, as they realise the advantages.

 


 

The LED chip explained

The SMD has been around for several years, but has only recently become an option in the LED tape market.

(Before that, most LED suppliers used these chips on thick PCB rigid strips rather than LED tape, as they require a very good heat-sink.) SMDs have dimensions of 5.6mm x 3.0mm.

A larger LED doesn’t always mean brighter – but in this case, the chip outputs far more light than the more common SMD.

High-quality chips on 60 LED p/m tape can produce up to around 2700 lumens.

(To give an idea of the importance of component quality, lower grade SMDs output less the 2000 lumens per metre.)

LED tapes mounted with SMDs generate more heat than some other LED chips.

Because of this, we recommend installing SMDs with either an aluminium extrusion,

additional heat-sink backing or a thicker and wider PCB. Without these, your LED strip lights may work initially

– but brightness will likely reduce quickly, because overheating is the biggest adverse contributor to the brightness and lifespan

of LEDs. Used 8 hours per day, overheating could see you lose up to 20% in brightness per year!

Instyle LED always uses thicker, wider PC boards and A-grade Epistar-branded SMDs,

so you can always rely on the quality of our LED tape components. We offer this product in all shades of white.

We don’t advise the use of heatshrink to waterproof SMDs, as it can lead to overheating issues.


 

Summary of LED chip types

In the end, the type of SMD chip doesn’t matter – as long as it can meet your requirements.

InStyle recommend branded Epistar LEDs for the reasons we discussed above (brightness, reliability and colour batching).

When purchasing LED strip lights, you should ask yourselves these questions:

  • Do you want feature lighting, task lighting, colour changing, waterproof, etc?
  • Dimmable or non-dimmable?
  • What colour do you want?
  • How bright do you need the LED strips?

كيفية توصيل القواطع الكهربائية المنزلية

lightning
We are pleased to have you visit our pages on social networking sites, where we publish exclusive offers on our website.

 Facebook page here.

Twitter account is here.

 

Posted on Leave a comment

Exterior Lighting 2

Exterior Lighting

Guide to Exterior Lighting: Commercial LED Outdoor Lighting

Exterior Lighting
LED lighting is fast becoming the best solution for a wide variety of outdoor lighting applications.

The reasons are simple:

LEDs are the most energy efficient lighting on the market by far,

they have the longest lifespan (and associated product warranties) by 2-10 times over the nearest competing technology,

and they produce a very high-quality light with a wide range of color characteristics.

They are small,

steady-state lights which means they don’t present the breaking or recycling issues common with legacy lighting technology.

Perhaps the only downside is that they’re not the cheapest technology on the market.

That said, the price continues to come down and a smart investor will recognize right away that the energy savings and a lifespan that could be an order of magnitude (10 times) longer than a traditional bulb is easily worth the investment.

You get what you pay for after all.

LED Benefits:
Better light:

LEDs are a “brighter” white than traditional halide lamps,

helping better illuminate streets, sidewalks,

buildings and parking lots.

Longer life:

LEDs, depending on their usage, can last up to 200,000 hours.

Energy savings:

In a recent LED Lighting retrofit project,

by replacing just 25 fixtures, they reduced their lighting energy consumption by 78%.

Instant on:

Most traditional outdoor lighting takes time to warm up and achieve full brightness.

This can prove more difficult when used in cold, outdoor lighting environments.

LED lighting does not rely on heat to operate,

and therefore rabidly illuminate regardless of temperature.

Durability:

Unlike other outdoor lighting, LEDs are manufactured with durable materials such as plastic,

not glass. They can handle harsh weather condition much better than traditional bulbs.

Flexibility:

You can find outdoor LED lighting in various forms;

parking lot lighting, wall pack, garages, pathway and street lighting, and more.
LED Parking Lot Lights
One of the most important applications for high quality outdoor lighting are outdoor parking lots.

Parking lots present three major obstacles for real estate organizations and facility managers.

First, your parking lot needs to be well illuminated to present a welcoming and safe atmosphere for tenants and customers.

The type and performance of the lighting used in your parking lot typically sets the tone regarding safety and professionalism

for the building at large. We refer to this general characteristic as lighting quality.

Second, your parking lot lights need to be as energy efficient as possible because they typically operate from dusk to dawn.

Third, maximizing luminaire lifespan is important because hiring labor

and/or keeping staff on board to routinely change bulbs and ballast can become very costly.

Primarily for these three reasons it is important to install the best combination of energy efficient,

long lifespan, and high quality when choosing a lighting solution.

LED lights are the 21st century answer to all three problems.

LED Wall Pack Lights
Additionally, wall pack lighting is an extremely important component to your outdoor lighting system.

This type of exterior lighting is generally used to provide illumination to areas for vehicles and pedestrians use,

as well as for security purposes.

It is not uncommon to see multiple fixtures mounted on a single building or wall, with the fixture spacing designed to provide lighting at the ground level around the exterior of a building.

Among other benefits like reduced energy consumption,

LEDs can also help you dramatically reduce the maintenance on wall pack lighting as well.

The reason for this is the way LEDs generate light and how they progress their functional life compared to traditional HID lamps.

Instead of ceasing to function once a fuel source is reduced,

LED light output degrades very slowly over time.

As a result the functional life (often in excess of 100,000 hours) of an LED product can be significantly longer than

that of an HID Lamp. Longer lifespan means less changing bulbs and ballasts, and therefore less maintenance.

 

LED Parking Garage Lights
Parking garages are very similar to outdoor parking lots with one obvious difference,

they have a ceiling. Luminaires are no longer mounted on a pole but otherwise the same major

considerations for outdoor parking lot lighting apply. That is, patrons looking to retrofit or convert

parking garage lighting are typically interested in reducing energy costs, reducing maintenance costs, and improving lighting

.

كيفية توصيل القواطع الكهربائية المنزلية

lightning
We are pleased to have you visit our pages on social networking sites, where we publish exclusive offers on our website.

 Facebook page here.

Twitter account is here.

Posted on Leave a comment

difference between air switch and knife switch 1

difference between air switch and knife switch

We often see electric bus switches for rural households including air switches and knife switches.

Knife switches are not common in urban households, but they are still very common in rural households.

However, in recent years, knife switches have gradually decreased and gradually replaced by air switches.

Two kinds of switches have their own advantages, so should you choose one when choosing a switch?

Knife switch internal structure

The above kind of switch is a knife switch often used in the family.

In addition to the separation function, it also has an overcurrent blown fuse (sheet).

This kind of switch has been used by most families because of its simplicity and low price. .

 

air switch

Air switch is also called air circuit breaker, and it is also a kind of switch, but this kind of switch has the function of extinguishing arc in addition to the function of separating circuit and overcurrent fuse of knife switch.

What is arc extinguishing? Extinguishing an arc means extinguishing an arc.

Arc is the electric spark we see when we close or open the switch.

Electric spark is a relatively slight discharge phenomenon in electric arc.

Because this air switch has an arc extinguishing function

, no electric spark can be seen when the switch is closed or opened, so its safety is better than that of a knife switch.

So should I choose a knife switch or an air switch?

It depends on the situation

First of all, knife switch and air switch have their own advantages and disadvantages:

Comparison of advantages and disadvantages of knife switch and air switch

Switch knife Air switch
Advantage
a. Low price
b. Can clearly see the breakpoint of the circuit
a. With arc extinguishing capability, high safety
b. After the circuit is disconnected, it is not necessary to replace the originals when closing, and the reuse rate is high
Disadvantage No arc extinguishing function, easy to see electric sparks, and the fuse needs to be replaced The price is more expensive, the service life is shorter than the knife switch

So, which switch you use depends on which effect you want.

If you want to be able to see the obvious disconnection point of the circuit

(can clearly see the disconnection point, people are more relieved) choose the knife switch.

After all, the disconnection point cannot be seen after the air switch is disconnected.

As for the disconnection, it depends on Whether the air switch is in the normal state;

if you want a higher safety and can extinguish the arc, then choose the air switch

Air Break Switch: Types and Uses

 

An air break switch is a type of switch that makes use of air as a dielectric and arc quenching medium.

The contacts of an air break switch open in the air.

Here, the arcing problem produced while opening the switch is resolved with the help of compressed air.

These types of switches are generally operated at low voltage levels,

i.e., voltage ranging from 450V up to 35kV.

The current range of air break switches lies between 800 A and 10KA.

The air pressure used by the air break switches ranges from 4 to 60 atmospheres.

It can also be said that an air break switch is a switchgear device that makes use of air as an interruption medium.

Working of an Air Break Switch

An air break switch is typically used to open the circuit under the load.

The arc that gets produced during the process of opening the switch is quenched in many ways.

It can be extinguished by moving the contacts away from each other or by supply interruption.

Usually, the arc is put out with the help of lengthening of the arcing horns present in the structure of the switch.

These arcing horns are nothing but the pieces of metals between which the arc is formed.

As the switch gets opened, the arcs tend to move far from each other, eventually breaking out.

The main components of an air break switch include an arc extinguisher

, a reservoir provided with a supply of compressed air, and an electro-pneumatic actuator.

The arc extinguisher is connected to the compressed air reservoir with the help of an insulated line.

It is used to quench the arc produced between the movable and the fixed contacts.

The de-energized electromagnet tends to open the air blast valve through a system of various pneumatic devices.

This helps supply the compressed air from the reservoir to the arc blowout chamber through the airline.

This compressed air tends to act on the piston of the movable contact and separates the movable contact from the fixed contact.

The arc that gets formed due to the opening of the contacts of the switch is required to be extinguished.

The compressed air from the chamber is used for the purpose of arc quenching.

The compressed air is directed through the outlets of the contacts to the gas escape channels.

After some time, the air enters the cylinder of a pneumatic actuator and quenches the arc.

After the arc extinguishes, the compressed air actuates the piston and breaks the isolating switch contacts.

The contacts are closed and the incoming of the compressed air is then cut off.

When the electromagnet gets energized, the valve opens and the compressed air is allowed to pass through the insulated airline.

The air enters the cylinder, acts on the piston, and closes isolating switch contacts.

Some of the air break switches are manufactured with air-filled isolating switches.

Such switches consist of contacts that are packed in an insulated casing.

The switch gets filled up with compressed air after being disconnected.

 

Types of an Air Break Switch

The air break switches can be broadly classified into two categories,

namely single-pole air-break switch and the gang operated air-break switch.

Single-Pole Air Break Switch

A single-pole air break switch provides an opening for only one conductor.

The working of a single-pole air break switch is similar to that of a normal air break switch.

 

Gang Operated Air Break Switch

A gang operated air break switch is used when the opening of more than one conductor at a time is required.

Here, all the switches tend to open and close together.

 

Uses of an Air Break Switch

An air break switch is used in a number of commercial and industrial applications as given below:

1. Air break switches are typically used for switching and isolation purposes.

2. Air break switches are generally installed in the distribution networks as

a switching point to make or break connections between cables, transformers, and other high voltage electrical devices.

3. Air break switches are used in overhead power transmission lines.

Here, these switches are mainly used to perform on/off switching

by connecting the power system of a part of the overhead line to the main distribution line or

by disconnecting it from the main distribution line.

This allows the user to simply isolate a part of the overhead line without affecting the rest of the power transmission system.

4. These types of switches can also be used in power generation lines.

5. In certain power distribution systems, air break switches tend to provide crucial point isolation.

6. It is typically used to provide overcurrent and short circuit protection.

7. They are used in industrial plants for various control and safety operations.

Advantages of an Air Break Switch

An air break switch is advantageous in the following ways:

1. An air break switch is more effective than ordinary switches.

2. The reliability of air break switches is significantly high.

3. Air break switches can be operated manually as well as automatically depending on the requirement.

4. The maintenance of air break switches is relatively easy and cheap.

5. The air break switches are capable of fast breaker and switching operations.

6. These switches do not cause fire and explosion hazards.

7. An air break switch does not require a compressor.

8. These switches allow the user to maintain the stability of the operation.

Disadvantages of an Air Break Switch

Certain limitations or disadvantages of an air break switch are listed below:

1. They are quite heavy and bulky in nature.

2. The air break switches are less efficient for deionizing and lengthening action at high currents.

3. These types of switches are not suitable for modern power systems.

4. Air break switches require high capacity equipment for the storage and production of compressed air.

5. There exist chances of air leakage resulting in reduced pressure.

6. Air has comparatively lower arc extinguishing properties.

7. There are chances of a high rate rise of re-striking voltage and current chopping.

Air Break Switch – Types and Uses

An “air break switch’ is a switchgear device that uses air as the dielectric.

Air Break Switches (ABS) are widely installed throughout distribution networks for use as both isolation or switching points.

They are usually employed in outdoor installations.

Special Arcing Horns are provided to quench the arc which occurs when the current is interrupted.

These switches are usually operated by a handle which is located at the ground level.

Their operation can also be mechanized.

Use of Air Break Switch

Air Break Switch Disconnectors are a vital part of any overhead line network,

providing crucial points of isolation.

Most overhead line networks are designed so that when a fault occurs or maintenance work needs

to be carried out it is relatively simple, by means of a systematic series of switching operations,

to isolate a certain section of the overhead line.

When this switching process is carried out it is absolutely imperative

that the Air Break Switch Disconnector is reliable and effective.

The triple pole air break switch is gang operated and designed for outdoor application.

The switch is intended for switching of the Transformer, Overhead lines, and Cables from the distribution system.

Types of AB Switch

Air break switches can be of two types
  1. Single Pole Air Break Switch
  2. The Gang Operated Air Break Switch

It can be operated manually using either a handle/ratchet mechanism or an insulated

‘hook stick’ made either of wood or fiberglass.

Air break switches are designed for switching under load,
but there is often a noticeable arc associated with switching.

Air Break Switches are installed in either horizontal or vertical (Pole Top or Mid Pole) configurations.

Air break switches can be found either in substations or out on the distribution system

– either pole top or in pad-mounted metal enclosures.

Breakers, Reclosers, and Disconnectors

A Circuit breaker is a switchgear device that operates automatically and is specifically
intended to interrupt short circuit currents (in addition to ordinary load currents).

Circuit breakers can be designed using air, oil, vacuum, or SF6 gas as the dielectric.

Circuit breakers are only found in substations.

1. Recloser

A recloser is a lot like a circuit breaker both in function and also the choice of the dielectric.

Reclosers typically have less short circuit interrupting capacity than breakers,

but they are designed to automatically reclose to restore the interrupted circuit.

The reason for that is that most

(typically, more than 80% of the faults on overhead distribution circuits are self-clearing

(tree branches, small animals, etc) and can be restored if the circuit is allowed to remain de-energized for 10-15 seconds

so that the ionized air in the vicinity of the fault can dissipate. Reclosers are much less expensive than breakers.

2. Sectionalizer / Isolator

A sectionalizer/isolator is a device that is applied out on a distribution circuit that

is intended to determine that a fault is located downstream of the recloser.

The principle of operation is that once the sectionalizer/isolator makes the determination that the problem is downstream,

it can open, and then an upstream reclosing device (either a recloser or a circuit breaker)

can automatically reclose to restore service to those loads that are upstream of the sectionalizer.

A sectionalizer/isolator doesn’t have any current interrupting capability but instead

relies on the upstream device to interrupt fault current.

3. Disconnector

A disconnector is simply a device that is used to disconnect a load.

It can be an air break switch, or it could be a circuit breaker.

The name implies the function and is not necessarily descriptive of the device itself.

The term ‘isolator’ is a synonym for disconnector.

 

Knife Switch

manually operated electric switching device that makes, breaks, or changes the course of electric circuits.

The switch can operate either under load

, at voltages of up to 220 volts for direct current and 380 volts for alternating current, or in the absence of current.

The switch is characterized by the shape of its contact, which suggests a knife blade.

Depending on the number of contacts, knife switches are subdivided into single-pole, double-pole, triple-pole, and multipole types.

To increase the maximum current that can be interrupted, high-power knife switches are equipped with arc-quenching chambers.

 

 

When a single-pole knife switch is closed , the switch blade is turned about its axis by the handle and “cuts” into the stationary spring contact jaw.

When the load current is interrupted, an electric arc is established between the switch blade and the contact jaw,

and the arc is then extinguished in the arc-quenching chamber. The arc must be extinguished as soon as possible in order to avoid burning the contacts.

At currents below 75 amperes, the arc can be extinguished through a mechanical separation;

the time necessary to interrupt the arc depends on the speed at which the switch blade is moved.

In knife switches designed for higher currents,

the determining factors for extinguishing the arc are the arc’s electrodynamic rupturing forces.

The magnitude of these forces is directly proportional to the current being interrupted and approximately

inversely proportional to the length of the blade.

In order to make the speed at which the contacts are separated independent of the speed at which the handle is turned, a quick-break opening is effected with auxiliary contact blades.

Such an opening facilitates the extinguishing of the arc to a significant degree.

Knife switches are designed so that the contacts are not heated above permissible temperatures under

normal operating conditions and so that the contacts do not weld together during short circuits and do not open spontaneously.

Knife Switches

What is a Knife Switch used for?

A knife switch is a form of switch- all or nothing- On and off,

and for this reason it is often used as a master switch or main-disconnect.

the single pole single throw has one switch blade, not the cutlery variety,

which vaguely resembles a knife, hence the name,

when the handle is down and touching the contacts the switch is closed and the power is on.

Lifting the handle disconnects the circuit. They are used for instructional purposes in shop and science classes.

A Double Pole, Double Throw knife switch- or circuit breaker,

is in everyday use and has defied obsolescence since the days of Edison.

The DPDT is used on master switches and controls two circuits, usually with a center off position.

They were used as aerial switches- to select transmit or receive in early shortwave and ham sets.

they are very much around and have been nicknamed (Mousetraps) from their shape and outline.

very much in use and I have a l907 electrical handbook that illustrates them some have shunts or condensers across the base

( wood or plastic, usually) of the switch. this has various uses but keeps the currents at a safe value in radio use.

Knife switches are becoming more rare,

finding use largely in science experiments where the position of the switch may be plainly seen in demonstration.

The knife switch is extremely simple in construction and use.

Abbreviations:

S = Single
D = Double
P = Pole
T = Throw

i.e: SPDT would be Single Pole, Double Throw

Here a knife switch is being used to turn
the motor on the paddle boat on/off.

 

Knife Switch, SPST
Product Code: SPST

Knife switch, single pole single throw, with screw type binding posts.

and 2 screw holes for mounting on a board. Good for experiments and science projects.

High quality, deluxe version.

Screw type binding posts may be both black or one black, one red.

Weight = 25g

Measurements:
Base Alone: Length = 74mm  Width = 35mm  Height = 10mm

Length with Pole = 98mm   Height with Pole = 33mm

 

Knife Switch, SPDT
Product Code: SPDT

Knife switch, single pole double throw, with screw type binding posts.

and 2 screw holes for mounting on a board.

Good for experiments and science projects. High quality, Deluxe version.

Weight = 41.5g

Measurements:
Base Alone:  Length = 74mm  Width = 35mm  Height = 10mm

Length with Pole = 105mm   Height with Pole = 29mm

 

Knife Switch, DPST
Product Code: DPST

This Knife Switch is double pole, single throw with screw type binding posts.

3 screw holes for mounting on a board. Good for experiments and science projects.

High quality, Deluxe version.

Weight = 46g

Measurements:
Base Alone:  Length = 74mm  Width = 50mm   Height= 10mm

Length with Pole = 100mm   Height with Pole = 29mm

 

Knife Switch, DPDT
Product Code: DPDT

This Knife Switch is double pole, double throw with screw type binding posts.

3 screw holes for mounting on a board. Good for experiments and science projects.

High quality, Deluxe version.

Weight = 73g

Measurements:
Base Alone:  Length = 74mm  Width = 52mm  Height = 10mm

Length with Pole = 106mm  Height with Pole 29mm

Simple Switch (Knife Switch)
Product Code: KSWITCH

This small size simple switch is used by students to make electrical circuits.

This quality knife switch is perfect for science projects and electronic experimentation.

With its pre-drilled holes, it can easily be mounted on any wooden surface or project board.

Because of the open structure of the switch, you can visually determine if the circuit is closed or open.

Weight = 9.3g

Measurements:
Base Alone:  Length = 36mm  Width = 24mm  Height = 7mm

Length with Pole = 50mm   Height with Pole = 23mm

electric fuse

electric fuse

We are pleased to have you visit our pages on social networking sites,

where we publish exclusive offers on our website.

Our Facebook page here .

Our Twitter account is here .

Posted on Leave a comment

Electrical Contactor Connection and Wiring 1

Electrical Contactor Connection and Wiring

Hey, in this article we are going to see proper electrical contactor connection and wiring diagram for normal operation, star-delta starter, motor control, light control, etc. Also, we will discuss the internal circuit diagram of the contactor used for power control.

What is Electrical Contactor?

In simple words, Electrical Contactor is an electrically operated switch whose main function is to connect or disconnect the load from the power source. Basically, the contactor work as a medium when we control a high voltage, high current power circuit by a low voltage, low current control circuit.
Contactor Symbol:

Electrical Contactor Connection and Wiring

Contactor Terminals and Contacts

Before you going to do a connection for a contactor you must know about its terminals and contacts. Basically, a contactor has two types of contacts – 1. Main or Power Contacts and 2. Auxiliary Contacts
In the below figure, you can see there is a total of 16 terminals in the contactor.

A1 and A2 are magnetic coil terminals.
L1, L2, and L3 are the incoming terminals of the main contact which are to be connected to the main power supply.
T1, T2, and T3 are the outgoing terminals of the main contact which are to be connected to the load.
Here two NC and two NO auxiliary contacts are available. Each of them has two terminals.

Contactor Connection Procedure

1. Generally the magnetic coil of a contactor is designed to operate at a low voltage such as 230V AC, 110V AC, 24V DC, etc. So provide the power supply to the magnetic coil as per requirement.
2. Connect the main power supply terminal with the incoming terminals of the contactor.
3. Connect the load with the outgoing terminals of the contactor.

Contactor connection with Push Button Switch

Now we are going to see, how to connect the push button switch with a contactor. Here the connection diagram in the below figure.

You can see here, two push button switches are used. NC push button(green colour) switch is used to turn off the contactor whereas the NO push button(Red colour) switch is used to turn on the contactor.
These pushbutton switches break or make the contacts only when we press the button. Once we release the button its contacts also come back to their old position. So the magnetic coil of the contactor is also connected through the NO auxiliary contacts. So the contactor will be turned on once we press the switch and remain On even when we release the NO push button. The contactor will remain turned on until we press the NC push button.

Contactor connection with Indication Lamps

Now, let’s go to know how to connect indication lamps with a contactor to give indications whether it is in ON condition or OFF condition. See the below diagram.

Here we have taken two indication lamps – Red for ON, Green for OFF.
You can see the Red indication lamp is connected through the NO auxiliary contact. So when the contactor turning on it will glow. On the other hand, the green indication lamp is connected through the NC auxiliary contact. So when the contactor is in OFF condition, this lamp will glow. Once the contactor is turned ON it will off and the red colour lamp will glow.

Contactor Connection with Thermal Overload Relay

Thermal Overload Relay is mainly used to give protection against overload fault. So thermal overload relay used with electrical contactor when we designed DOL Starter, Star Delta Starter, etc.
Here you can see the connection of thermal overload relay with a contactor in the DOL Starter Circuit.

كيفية توصيل القواطع الكهربائية المنزلية

lightning
We are pleased to have you visit our pages on social networking sites, where we publish exclusive offers on our website.

 Facebook page here.

Twitter account is here.

Posted on Leave a comment

How to Install Electrical Wiring System Properly?

How to Install Electrical Wiring System Properly?

Concealed Conduit Electrical Wiring systems are the most popular, aesthetically appealing, and most common type of House Electrical wiring used.  Conduit wiring is a professional way of wiring a building. Mostly PVC conduits are used in domestic wiring.

 

The conduit protects the wires from external damages like rodents etc., increasing the longevity of the wires used. Before talking about the installation procedure, lets talk about what house electrical wiring system is and their different types.

Different Types of House Electrical Wiring Systems

House Electrical wiring is distributing the electricity (electrical energy) from suppliers meter board to various appliances in the home like lights, fans, TV etc., There are lot of different types of house electrical wiring systems used in India and other countries. Few of them are:

1. Cleat Wiring

Cleats with groves are used to hold the cable. It is a temporary wiring system so not used in typical house constructions

How to Install Electrical Wiring System Properly?

2. Casing Wiring

Open wiring system where the wires are run through casing enclosure and capping is used to cover the casing.

Casing and Capping Electrical Wiring

3. Batten Wiring

Single or a group of wires are laid over a wooden batten. The wires are hold to the batten using a brass clip, which is attached to the wooden battens at an interval of 10-15 cms

Batten Wiring

4. Surface Conduit Wiring

PVC or GI conduits are laid on the surface of the wall or ceiling. These conduits are attached to the walls with a 2-hole strap and base clip at a regular certain distances. Electrical wires are laid inside the conduits.

Surface Conduit Installation

5. Concealed Conduit Wiring

PVC conduit pipes are placed inside the chiselled brick/block wall before plaster. The wall is later completely plastered and painted. Electrical wires are laid inside the conduits. This type of wiring are aesthetically appealing since they are no electrical wires/conduits seen on the top of the wall.

Concealed Conduits Installation

Advantages and Disadvantages of Concealed Conduit wiring System

Advantages of Concealed Electrical Wiring System

  • It is the safest wiring system of all the ones mentioned above
  • It is Aesthetically appealing
  • There is no risk of fire or mechanical wear and tear
  • There is no risk of damaged cable insulation
  • It is safe from humidity, chemical affects and smoke
  • There is No risk of shock
  • Its most Reliable and popular wiring system
  • Do not hamper interior layout as conduits are concealed in wall
  • Renovations can be easily performed as old wires can be easily replaced

Disadvantages of Concealed Electrical Wiring System

  • Its expensive when compared to other surface conducting methods
  • Its very hard to find any defects in the wiring
  • Adding additional conduit in future is cumbersome (Needs wall chiselling and finishing)
  • Changing of location of appliances or switches is difficult
  • Installation is difficult as compared to other methods
  • Complicated to add/manage additional connection in the future

Step by Step Procedure to Install Concealed Conduit Wiring System

Step-1: Laying of Electrical Conduit in Slab

  • Slab conduits for house wiring should be done in 2 mm thick 25 mm size FR PVC conduits. Preferably Slab conduits shall be laid in between top and bottom reinforcement. Please ensure concrete thickness i.e. cover to PVC Conduits incase of singly reinforced slabs.
  • Only Deep junction boxes shall be used in slabs. With Binding wire, properly bind the PVC conduits
  • Preferably follow different color coding for conduits for data (LAN wire, telephone wire etc.,) and electrical wires
  • Use grey PVC pipes for data and black PVC pipes for electrical wires. Use PVC solvent for jointing the accessories
  • Wall drops shall be properly checked for face of wall/beam. Please ensure concrete thickness i.e. cover
  • All the conducting shall be checked as per services drawing, which contains locations of switchboards and number of points to be installed at each location.
  • Special precaution shall be taken during concreting of slab.
    • All broken pipes are to be replaced
    • All joints have are to be watertight joints to avoid choke up)
  • GI wire passing shall be carried out immediately after de-shuttering of slab & beam. (any choke up to be documented and alternate routing to be shown  in shop drawings and documented for future references).
  • All necessary sleeves shall be provided in beams, columns, prior to slab casting as per electrical & air-conditioning.
  • Pull boxes shall be provided at suitable locations.
  • The pull and junction boxes shall not be clustered at one place and shall be so arranged that they should not be easily seen from heavy movement areas as per electrical drawings.

Step-2: Laying of Electrical Conduits in Walls

  • The concealed conduit work shall be carried after construction of masonry walls but prior to plaster.
  • Chasing work shall be carried out after completion of curing of brickwork (at least 7 days gap from brickwork).
  • The wall chasing should be done with wall cutters only,this would avoid damage to walls.
  • The conduits shall be fixed with approved clips to ensure proper routing and wiring later.
  • After fixing the conduits, boxes, and accessories, the chiseled surface should be filled with cement mortar and chick mesh wrapped  around conduits.
  • Wall conducting activity shall start with level marking on the wall (usually box level),knowing its height above FFL(Finished floor level)
  • The width of chasing shall be limited as per number of conduits.
  • The depth of chasing to have conduit recess at least 10mm from masonry wall.
  • All horizontal conduit runs shall be straight at box level. Light point conduit shall run straight vertical to switch box. No wall conduit shall be taken haphazardly.
  • No Elbows & bends shall be used. In case of change in direction in pipe use spring to bend the pipe.
  • Power conduits should not be run near any communication line.
  • Conduits above false ceiling shall run with proper supports / suspenders. Conduits shall not be rested on false ceiling grid in any case. All vertical runs with open ends shall be sealed at top in case of false ceiling work, while masonry civil works going on.

Step-3: Installation of Switch Board Back Boxes

  • All concealed switch board shall be fixed properly in level as per given schedule (Height, distance from Finished Floor (FFL) should be as per architect’s recommendation)
  • The gap between two concealed switch boards shall be uniform & maintain same for all installation.
  • The switchboards shall be readymade modular type metal boxes of approved makes & drawing.
  • Concealed box shall be fixed 3 mm below the plastered surface.
  • Box fixing shall be done before plastering work along with wall conduiting. These boxes shall be filled with thermocol while plastering work.

Step-4: Installation of Distribution Boards

  • DB’s shall be concealed before plaster work
  • DB box shall be fixed in proper line & level in the recess provided in brickwork
  • DB’s shall be ready-made as per design (fixing no. of conduits pipe entering DB)
  • All PVC pipes shall enter in to DB from given entry holes only

أفضل المشتركات الكهربائيةلمعرفة اخر المنتجات الخاصة بنا وعروضنا المميزة يرجى الاشتراك بصفحاتنا على مواقع التواصل الاجتماعي:

صفحتنا على الفيسبوك=> Gahzlystore

صفحتنا على تويتر=> Gahzlystore

Posted on Leave a comment

Led Profile User Guide 2022

Led Profile User Guide


china led aluminum profile lightstecWhen you are sourcing led aluminum profile, you need to know some basic knowledge.

This post as a led aluminum profile WIKI will give you all you want to know here.

This will help you more understand led aluminum profile industrial and sourcing the right high-quality products.

You only need to spend a short time reading this article then you can know more clearly about the led aluminum profile in the lighting business.

What are LED Aluminum Profiles?

Led aluminum profiles, also known as Led extrusions, are lightweight channels typically made from

aluminium which are designed to house and protect kinds of LED strip lights.

They are available in many different shapes, sizes and depths and can be installed in a variety of ways.

They often require a diffuser/cover for an even distribution of light,

avoiding any unwanted spotting effects that LED tape can sometimes cause.

Many are made using fully anodized corrosion-proof aluminium, making them ideal for use outdoors too.

led aluminum profiles

What types of led aluminum profiles are available?

LED aluminium channels vary in terms of their profile shape and the way in which they are installed.

When choosing your aluminium profile the most important features to consider are:

Shape: Either rectangular, circular, corner.

Be sure to make note of the maximum tape width of each channel to ensure it is compatible with the LED tape you will be using.

Depth: How deep do you need your channel to be? For installations where space is limited a slim line profile would be most suitable.

For those which use thicker LED tapes, a deeper channel may be required to house the strip lighting.

Installation: Would you like your LED lighting to be surface mounted, suspended or recessed (into tiles, plaster or into the ground)?

 

Different Types of Profiles

You might hear the terms “profile,” “die”, and “extrusion” and wonder what the difference is between them.

However, the truth is that they are all the same.

The term “aluminum profile” describes the shape that is made when the aluminum is pushed through the custom aluminum extrusion profile or die, which is made from strong metal to withstand the pressure that is put on it during the extrusion process.

An “aluminum extrusion” is the end result of the work that is done to create the parts, pieces, or products through the extrusion process. Some tubes are round, some are oval, a few are squared.

The shape is the profile or die at the end of the tube that is used to create the shape of the toothpaste as it goes on your toothbrush.

Choose a different shape, get a different result.

The same holds true with aluminum extrusion design.

Some of the shapes used in aluminum industry solutions for LED lighting include:

shallow recessed extrusion

deep surface extrusion

tube surface extrusion

thin surface extrusion

deep recessed extrusion

shallow surface extrusion

corner extrusion

optic lens extrusion

 

Types of led aluminum profiles including:

Rectangular LED Aluminium Profiles: Also known as shaped aluminium profiles, these are the most commonly used channel in LED installations.

They are available in a variety of sizes and colours suitable for both home and commercial environments.

Many are surface mountable with screw-in brackets, however suspended and recessed varieties are available.

Circular LED Aluminium Profiles: With lighting angles varying from 180º to 360º illumination, circular profiles are ideal for installations with a modern finish.

Although many circular profiles are best suited to surface mounting with brackets, some can be suspended with cables to create light tubes.

Corner LED Aluminium Profiles: Corner profiles are designed to emit light at a 45º angle,

making these channels ideal for under shelving units or in ceiling coffers.

Surface LED Aluminium Profiles: Profiles which are installed via screw-in mounting brackets are known as surface profiles,

because they protrude above the surface on which they are installed as opposed to being recessed into the surface.

They are available in rectangular, corner and circular varieties and are commonly used in furniture or retail lighting.

Suspended LED Aluminium Profiles: Some LED tape profiles feature the ability to be suspended when installed with our suspension cabling.

These profiles have special grooves to accommodate for additional screws and corresponding steel suspension cabling kits which are available for purchase at checkout.

Waterproof LED Aluminium Profiles: Some LED tape profiles can achieve an IP rating of65 when sealed with silicone glue.

Combined with their corrosion-proof anodized coating,these aluminium profiles are ideal for outdoor LED installations.

Recessed LED Aluminium Profiles: Recessed profiles are those which sit flush with the surface on which they are installed for a sleeker finish. They are available in various shapes,

widths and depths and can be installed in three different ways:

Standard Recessed LED profiles: These require a hole to be cut into the wall or furniture in which you wish to install it and have a trim to hold them in place.

These profiles can be used in many different materials and environments.

Plaster-in Recessed LED profiles: These trimless profiles are specifically
developed for recessing into plastered walls and ceilings for an incredible seamless diffused light output.

They are available in both flat and corner varieties.

Tile-in Recessed LED profiles: Tile-in aluminium profile allows you to create stunning modern lighting effect suitable for bathrooms, kitchens, and other tiledareas.

Due to the unique edge rim you can place standard depth tiles up to 10mm width on top and seal the edges as you would do normally when tiling.

Led linear light fixture for corner lightstec
Led linear light fixture for stairs lightstec
Pendant led linear light fixture
Recessed led linear light fixture lightstec
surface mount led linear light fixture-lightstec
Round size led linear light fixture lightstec

What types of products are aluminium profiles compatible with?

LED aluminium profiles are designed to house and protect runs of LED tape.

Although almost any tape can be installed into a profile that is wide and deep enough.

What are the benefits of using led aluminum profiles?

Installing LED tape in an aluminium profile is recommended due to the protective features the profile offers.

As well as protecting the tape from general wear and tear,

aluminium channel also acts as a heat sink which prevents the LED tape from overheating and thus prolonging its lifespan.

Aluminium LED strip light extrusions help to prevent contact damage if the LED tape is positioned within easy reach.

And though they are not waterproof, extrusions can help prevent moisture.

Aluminium channel also helps protect LED tape from the elements in
outdoor installations when sealed with a silicone glue thanks to it’s anodized coating.

What type of finishes are available?

Normally, our LED profiles are available in silver, white or black.

What accessories are available?

When installing LED tape into and aluminium profile, some accessories may be required.

These include:

LED profile diffuser: These are lengths of plastic which diffuse the light produced by the LEDs,

producing an even distribution of light. They are available in opal, semi-clear or transparent varieties.

LED Profile End caps: End caps are used to seal aluminium profiles.

Sold in pairs, most end caps come with one blank side and one with a hole to allow cable entry.

They also help prevent dust from entering the aluminium profile and damaging your LED strips.

LED Profile Mounting Clips: Mounting brackets are used to secure aluminium profiles to a surface.

Simply screw the bracket onto a surface and clip in the profile.

Sold in singles,although we recommend using 2 brackets per metre depending on the profile.

clips
end cap
suspension wires

What’s the difference between LED Extrusions & LED Profiles?

There is no difference.

The terms ‘aluminium extrusion’ and ‘aluminium profile’ are interchangeable.

What is the length of an LED Extrusion?

Normally,we offer 1meter/2meter/3meter.

For longer length,

you need to think about the delivery.

How to select the led aluminum profile in project?

Selecting a channel:

led linear light under shelf lightstecTo select an appropriate channel style, consider the installation.

The surface-mount channel is an easy retrofit to an existing construction and can be affixed to a surface using metal clips (available separately) or double-sided tape.

The flush-mount channel is a good option for new construction where a low-profile, flush-mounted light is desirable.

The edges of the dado are concealed with the flanges on the channel (silicon can be used to secure it if a friction fit is insufficient).

The channel can also be surface-mounted using double-sided tape or metal clips (available separately).

The corner channel, designed to present lighting at a 45° angle, is useful for projecting light against an adjacent surface.

These channels are intended to be surface mounted only, using double-sided tape or metal clips (available separately).

Selecting a diffuser:

The diffusers are available with frosted (translucent) or opal (milky) surface finishes.

The frosted diffuser allows good light transmission, but the LED lights are somewhat visible.

The opal diffuser provides more uniform light diffusion and good LED concealment.

Note that each channel component is specific to the channel type; components cannot be interchanged.

For example, diffusers and end caps for flush-mount channels cannot be fitted to surface-mount channels.

How to Use LED Extrusions

art of led linear lightThere are lots of applications for the use of aluminum industry solutions for the LED lighting industry.

Aluminum extrusion design is used to enhance and make improvements to LED strip light and other types of LED lighting installations for commercial properties, such as hotels, restaurants, nightclubs, bars, and amusement parks, as well as for residential applications.

Some other examples of aluminum industry solutions for LED lighting include:

  • Lightbar effects for commercial properties
  • recessed lighting for residential properties
  • outdoor living spaces for pools, retaining walls, pathways, etc.
  • sports stadiums, event centers, and other large-scale applications

Why Use Aluminum LED Housings?

linear light use in commercial lighting 4Aluminum industry solutions are valuable for many different types of lighting and fixtures used in both residential and commercial applications.

Custom aluminum extrusion can provide manufacturers with the profiles that they require while saving them money compared to other methods used to create metal housings.

When you work with a reputable company that has many years of experience working with aluminum extrusion design, it is possible to include options and advantages that will increase value and longevity, such as the ability to prevent corrosion through design.

When designing LED strip lights, it is important to create a professional and finished look. Unhoused lighting solutions just don’t look good when exposed, especially if the location of the install is where it can be easily seen.

Another advantage is that these aluminum industry solutions can help to prevent moisture from getting into the LED strip lighting.

While not 100 percent waterproof, there are some additional things that can be done to make it waterproof, if that is what is required.

The extruded aluminum provides a base that can be further customized to meet the demands of the project to provide the desired results.

led aluminum profile project ideas-lightstec00002Custom aluminum extrusion can be used to protect the LED strip lighting for indoor and outdoor use, shielding it from damaging UV rays, the wind, dust, debris, and other things that can wreck havoc on the lighting equipment itself.

The extrusion housing will also prevent contact damage of the LED strip lighting both indoors and outdoors.

Depending on the shape of the aluminum extrusion design, there will be additional advantages. Some shapes can help to augment the effect of the lighting, increasing the exposure of the light, while other shapes can be used to add special effects and finishing to the lighting, depending on your needs.

How to install an LED aluminium profile:

How-to-install-led-strip-light-under-a-kichen-cabinetExtrusions can be fixed in place using countersink screws, straight into the extrusion. Alternatively, you can purchase fixing brackets if you prefer.

These can be attached in place, and once they are in position, your extrusion can be clipped onto them.

  1. Ensure the channel is cut to the length you require and screw the mounting bracketsinto the surface of choice at 1m intervals.
  2. Peel the adhesive backing off the run of LED tape and stick the length of the tapeinto the channel.
  3. Clip the diffuser onto the channel.
  4. Insert the end clips onto each end of the profile, ensuring the 2 core cable is threadthrough the hole in one of the end caps. This cable will attach to the driver or powersource.
  5. Press the profile firmly into the mounting brackets so they click into place.
  6. Check this post how to install led aluminum profile

Where to use LED Extrusions

suspended linear led lighting fixtures 3Our aluminium extrusions can enhance and improve all kinds of LED strip light installations. They are an ideal addition in restaurants, hotels, bars, and clubs.

Can aluminium profiles be cut?

cut profile with cutting machineYes, aluminium profiles can be cut to any required length.

 

What lengths of aluminum profile do you offer?

We sell profiles in1meter/2meter/3meter lengths as standard.

How To Cut Led Aluminum Profile In Length?


The led aluminum extrusions material is in 2 meter or 3 meter length normally.

In most of the projects,custom-made length is required.

You need to cut the aluminum profile to the correct length with cutting machine or hand saw.

There is a simple guide to teach you how to cut the led profile in the correct length step by step.

1.Slide the led cover or click the led diffuser into the aluminium profile.

Make sure the end of the cover and aluminum profile is smooth.

In this way you can cut the led diffuser and the led aluminum profile in same length.

Some client cut the led aluminum profile and the led cover separate,

the length of the profile and cover in different length easy happen,sometimes few millimeter.

Then the final product you will see the gap.

We need to avoid this happen.

led-aluminum-profile

2.Measure the led profile length as request.

Sometimes the end cap will take up some place of the cover.

In that case we need to measure the size of the end cap.

Then the diffuser length is total length minus the end cap length.

measure the led profile length

3.Make a cut mark on the surface of the profile.

Make a cut mark will easy for you to cut the profile.If not maka a mark,sometimes will cut in wrong length.

make a cut mark in the profile

4. Cut the led aluminum profile with hand saw or cutting machine

cut profile with cutting machine

5.Sometimes the thin cover you can cut with scissor

scissor the profile

Following 2 videos show you how to cut the led aluminum profile in length with hand saw and cutting machine easily.

How to cut aluminum profiles with hand saw?

How to cut aluminum profiles with cutting machine?

How to install led strip light at home?

We need to prepare some material first.

Led strip light, led power supply, fast connector, scissors, wires, soldering iron, insulated rubber tape.

This material is easy for no matter you are a DIYer a professional.

Make sure right connect the wires, Wrong connection will problem happen.

Let’s enjoy install led strip light under a cabinet at home.

First,Material prepare

.led strip light
In projects,SMD5050-60LED/M-DC24V AND SMD2835-120LED/M-DC24V is the

most popular led strip light using in cabinet lighting and normally we use warm white and nature white most.

SMD2835 120LEDS STRIP LIGHTS 24V (2)
5050 led strip light

. Led power supply
We suggest use meanwell led power supply.

Good quality and long life using.
We need to check the total watts of the led strip light first.
That is easy!
If the place need 20 meter SMD5050-60LED/M-DC24V,Then the total watts is 20meter*14.4w/m=288w.
Normally,we suggest using 80% power of the power supply.

That means the power supply need 288w/80%=360w.

led power supply lpv-100
LRS-150 led power supply

.Cables/Connector
You need to connect the 220V to power supply and from the power supply to led strip light.
Sometimes you cut the led strip light, then you need the fast connector.

Easy for you to connect the strip light to driver.

2 pin strip to strip connector
2 pin single head connector

Second,Installation guide

Step 1,Measure the length of the area.

Then we know how long of the led strip light we need.

measure the length of the area

 Step 2,Cut the led strip light.

You need to cut the strip light at the cutting point.

Cut the led strip light

 Step 3,Heat solder onto copper pad on led tape

Heat solder onto copper pad on led tape

 Step 4,Solder the power supply wire to the led tape.

Make sure you are soldering the right positive pole and negative pole.

+ to positive cable and – to negative cable.

Solder the power supply wire to the led tape

 Step 5,Wire power supply to mains and place heat shrink over connector.

wire power supply to mains and place heat shrink over connector

Step 6,Screw power supply to the cabinet.

Screw power supply to the cabinet

Step 7,Remove backing tape and stick led tape under the cabinet.

Remove backing tape and stick led tape under the cabinet

Step 8,Keep the wires in place

Keep the wires in place

How do I mount LED strip to aluminium profile?

 

SURFACE MOUNT LED PROFILE
SURFACE MOUNT LED PROFILE

 

As all our LED tapes feature an adhesive backing as standard installing LED strip into a profile is easier than ever.

Simply remove the protective paper on the back of the tape and firmly press it into the channel.

Conclusion

Led aluminum profile is a simple design and it become more and more popular in lighting design area.We need to know more about profile design,

application,manufacture.Then we can win more business in the market.

electric fuse

electric fuse

We are pleased to have you visit our pages on social networking sites,

where we publish exclusive offers on our website.

Our Facebook page here .

Our Twitter account is here .

Posted on Leave a comment

Types of Cable Trays 1

Types of Cable Trays –

Purpose, Advantages,Disadvantages

Cable tray systems are alternatives to wire ways and electrical conduit, which completely enclose cables.

Cable trays are capable of supporting all types of wiring: such as

  • High Voltage Power Lines.
  • Power Distribution Cables
  • Control cables
  • Telecommunication cables
  • Fiber Optical Cables

Purpose:

Cable trays are components of support systems for power and communications cables and wires.

A cable tray system supports and protects both power and signal cables and facilitates upgrading,

expanding, reconfiguring, or relocating networks.

Most of the cable tray systems are open, allowing efficient heat dissipation and easy access for replacement and repairs.

Although typically suspended from ceilings or affixed to walls, some cable tray systems are suitable for underfloor use.

Types of Cable Trays:

The following are popular cable tray types.

  1. Ladder-type
  2. Perforated type
  3. Solid bottom type
  4. Wire mesh
  5. Channel type

An engineer or designer will usually specify the type of cable tray that has the features to suit the project.

It depends on the situation and the environment.

The selection of cable tray depends upon the number of cables, size, spacing, and weight of cable in the tray.

Ladder Cable Tray

 

Types of Cable TraysLadder Cable tray

has two side rails connected by rungs.

This type of cable tray is effective because the ladder rungs give you easy accessibility to the cables, from the top or bottom.

The rungs of the ladder cable trays provide convenient anchors for tying down

the cables in the non-horizontal cable tray runs or where

the positions of the cables must be maintained in the horizontal cable tray runs.

Perforated Cable Tray

Perforated cable tray Consists of a ventilated bottom with side rails. It provides more support to cables than the ladder-type,

Solid-bottom Cable Tray

Solid-bottom Cable trays for fiber-optic cable installations where drooping of cables may affect system performance, solid-bottom (non-ventilated) cable trays are preferred.

However, the main reason for selecting solid-bottom trays is a concern for electromagnetic/ radio-frequency interference protection.

Wire Mesh Cable Tray

Wire mesh cable tray, also called basket cable tray, is a kind of cable tray made of stainless steel wires by welding wires together, forming a basket-like mesh

Cable Trays are mainly used for low voltage, telecommunication, and fiber optic cables supported on short spans.

Channel Cable Tray

Channel cable tray nothing more than a metal tray that can be used for very small cable installations.”

Materials

1. Metallic

Aluminum: Resists corrosion; excellent strength-to-weight ratio. Aluminum is most commonly used because it is lightweight.

Steel: Electric shielding; low thermal expansion

Stainless steel: Superior corrosion resistance; withstands high temperatures.

2.Non-Metallic

Fiberglass: Nonconductive; resists corrosion; lightweight

Precautions:

The most important issue is to ensure that the bend radius for the fiber-optic or coaxial cable is maintained within the standards.

Combustible dust and clutter may accumulate if the trays are not routinely checked and kept clean.

Advantages:

Less expensive: One of the big advantages that using a cable tray has that it costs a lot less than other methods of protecting wiring on the production floor.

Maintenance: Cable are instantly visible for maintenance checks, changing of cables is easy because cables can enter or exit the tray at any point of the system.

Safety: Regular housekeeping is important for safety, as cable trays are often installed in hard to reach places.

Disadvantages:

The solid bottom cable tray system has a disadvantage. In that moisture can build up in the cable trays.

Types of Tray Fittings

There are various types of fittings used in the manual tray installation.

Sometimes companies does not provides fittings, that situation electricians used to cut a trays with using jigsaw machine.

Fittings: T-Joint, bend or elbows, crossover, inside riser, outside riser, reducer, coupler, joint plate, unistate, spring and nut bolts.

Tools requirement: Spanners, hammer, screwdriver, jigsaw for manual tray cutting.

Installation of Electrical Cable Tray

Trays for supporting cables are recommended for use in warehouses, industrial plants and equipment room,

cable trenches, shafts in the building, etc. Steel cable trays,

accessories and supports normally be hot dip galvanized or PVC coated and shall be either of the perforated type or ladder.

The cable trays shall have adequate strength and rigidity to support the cables installed.

The tray shall be provided with upstands on both sides. All fittings, T-joints, elbows, couplers etc.

shall be of substantial sections of the same quality as the trays.

Cables shall be fastened securely by purpose made clips, cleats or saddles. Installed in outdoor locations,

where in the cables are exposed to the sun shall be provided with sun shade covers secured to the trays adequate ventilation and as recommended by the manufacturers.

Types of Trunking

Cable trunking is a manufactured enclosure for the protection of cables.

Purpose of use: Where applicable, surface and underground(duct) areas.

Cable Trunking Sizes: 50 mm, 75 mm, 100 mm, 150 mm, 200 mm, 225 mm and 300 mm.

Types of Trunking Fittings: Bend, coupler, T-joint, endcap.

Types of Trunking

Adaptable trunking shall be used for power cables and data cables to run parallel in two different compartments with partition.

Mini trunking is suitable for surface wiring work indoors where necessitated,

either due to aesthetic or technical requirements such as case of extension of existing wiring.

PVC (to know full form) insulated or other insulated cables shall be used in this type of installation.

Wherever data cables are used for information outlet, trunking shall be used.

This system using PVC trunking shall be adopted in residential building, or office building where there is a need of tidy wiring system.

This type of trunking for distribution of voice data and power should be used

for cable management and should accept data socket and power socket or other wiring accessory like switches, indicators etc.

Preferred size of PVC trunking should be 25 x 16 mm, 32 x 16 mm,

40 x 25 mm, 40 x 40 mm and for adaptable trunking it should be 100 x 34 mm or 100 x 50 mm or 160 x 50 mm or 200 x 50 mm.

Installation Method of Trunking

Metallic or Pvc trunking shall be fixed by means of suitable screws to approved type of asbestos or fibre fixing plugs, at intervals not exceeding 60 cm for all sizes for mini trunking.

Incase of adaptable trunking, the screwing system shall be such that weight of the trunking and hold firmly on the wall or ceiling.

On either side of joints, the distance of the fixing arrangement shall not exceed 15 cm from the point.

All trunking body shall be fixed directly on wall or ceiling as above.

Trunking shall be used only on dry walls and ceiling,

avoiding outside walls as far as possible and shall not be buried in the walls not fixed in proximity to gas,

steam or water pipes.

Trunking shall be with pill off cover for protection against dust.

Pill off cover shall be removed only on completion of painting of walls.

PVC Trunking (Casing & Capping)

The wire ways in straight runs should be in single piece as far as possible so as to avoid joints.

Trunking shall be of 2 m or 3 m standard for the ease of installation.

All joints shall be scarfed or cut diagonally in longitudinal section,

and shall be smoothed down by fitting to make the joints a very close fit as far as possible and without burrs.

They shall be screwed at joints with with two or more screws as would be necessary.

Joints arising out of the bends or diversion shall be done using standard accessories like internal angle,

external angle elbows, T-joint and end caps.

For the separation of data cables and power cables there shall be partition in both trunking and accessories.

In-riser and out-riser shall have variable angle for alignment at the wall corners.

Final word

Hope you understand this article about the

Cable Tray Sizes & Types | Types of Trunking.

Please share your experience through the comments.

Your comment can help me to improve my site updates.

And if you think our post was something worth reading,

then please share it with your social media friends.

electric fuse

electric fuse

We are pleased to have you visit our pages on social networking sites,

where we publish exclusive offers on our website.

Our Facebook page here .

Our Twitter account is here .