2011年10月12日星期三

LED Spotlights E14 4W 320 Lumens

LED Spotlights Manufacturers MCOB Technology - Advantages

LED Spotlights Using A Surface Light Emitting ( Multi Chips & Cups on Board ) MCOB LEDs

Chips in the Optical CUPS The Light of LED is form tae Chip itself,which means we need

  • High lumens efficacy: Up to 110 Lm/W for whole lamp
  • Patent technology: MCOB ( Multi Chips & Cups on Board ) assembly mode
  • High voltage resistance up to 4500 V
  • With intellectual property rights
  • Good light consistency: ± 150 K
  • A highly efficient, long lasting, environmentally friendly, and inherently digital source of illumination - reinventing light itself as a highly controllable medium.
  • Wide voltage design from 85-265 Volts AC,LED Light Spotlights it is universal applied in all countries.
  • No UV or RF interference,patented heat sink and optical diffuser.

LED Spotlights MCOB Design : Low thermal resistance allows more light output at the same current fewer LEDs achieve the same level of light intensity,LEDs run cooler and longer.

led spotlights mr16

LED Spotlights MR16 4W 320 Lumens


Using a Multiple Cups / Chip on Board LED Modules
led spotlights e27

LED Spotlights E27 4W 320 Lumens


Using a Multiple Cups / Chip on Board LED Modules
led spotlights e14

LED Spotlights E14 4W 320 Lumens


Using a Multiple Cups / Chip on Board LED Modules

LED Light Candles 3W

LED Light Candles Manufacturers MCOB Technology

LED Light Candles using a ( Multiple Chips & Cups on Board ) LEDs assembly mode; Very low thermal impedance; Excellent durability and stanbility at high temperature.


  • LED light Candles
  • Item No. : AL-MYX-CLM-E14
  • Input Voltage : AC 180 ~ 240V
  • Line Frequency : 50-60HZ
  • Rated Power : 3W/H
  • Light Source : MCOB Modules (Multiple Cups & Chips on Board LED)
  • Color Temperature :
    Warm White:2700K-3300K
    Cool White:5500K-6000k
  • Luminous Efficiency for whole lamp :
    3W : 240LM-270LM (Cool White)
  • Lifespan : >30,000 hrs

  • Replacement for :
  • 3W = 30W incandescent lamps = 14W fluorescent lamps
  • Usage : Interior Lighting
  • Working temperature : -30°C~ +45°C
  • Size : 36 × 147mm
  • Gross Weight : 35g

  • Description :
  • 1. High luminous efficiency and super energy-saving compared to conventional
  • 2. No RF Interference, No buzzing Noise
  • 3. No fluorescent flickering
  • 4 .No hazard of mercury or lead entering the environment
  • 5 .No danger of broken glass
  • 6. Maintenance free, easy installation
  • 7. Low power consumption, high intensity
  • 8. Solid-State, High shock/vibration resistant, No thermal radiation
new led Light Candles 4w

LED Light Candles 3W


Using a Multiple Cups / Chip on Board LED Modules
led light bulbs LK 7w 630Luminous

LED Light Candles


Using a Multiple Cups / Chip on Board LED Modules
led light bulbs LK 9w 810Luminous

LED Light Candles 3W


Using a Multiple Cups / Chip on Board LED Modules

2011年8月8日星期一

Fitting Downlights

Question: How many Downlights do I want? Or need?

Answer


This very much comes down to personal preference. Personally I prefer to fit more than is required, and then divide then up onto different switches. This will create different lighting effects. For example if you are putting the downlights into a kitchen you could have the downlights that are placed over the worktops on one switch and the other downlights that are illuminating the rest of the kitchen on another switch possibly a dimmer. This then means that you have good task lighting where needed and controllable mood lighting elsewhere.

However there are still some important factors to remember.

Without having any technical information about your particular room, use the following "Rule of Thumb". This best describes a kitchen, but can be adjusted for any room in your house.

Firstly make sure the Downlights that are going to be closest to your walls are no more than 600mm into the room. The reason for this is that 600mm is the standard measurement for the depth of your floor cupboards. This will mean that once the Downlights are fitted, no shadows will be created over the area that you are working.

You should now work out the position of the other lights by spacing them at intervals of between 900mm and 1200mm. From these figures you should now be able to calculate how many fitting will be in a row and how many rows you will need.

Question: Should the Downlights be 12v or 230v?

Answer


This has been a long standing debate with no particular winner. I hope the below information helps.

Low voltage (LV or 12v) downlights are wired to a transformer, which is then wired to the mains supply. Although the transformer wastes approximately 10% of the power through stepping down the voltage to 12v this is more than compensated by the improved performance of low voltage downlights.

Due to a thicker filament, the halogen 12v bulbs (size MR16) are more efficient than the halogen 230v (size GU10) equivalent. The thicker filament also means that the bulbs are more robust.

Another advantage of 12v is that low voltage bulbs use halogen gas, which provides a much whiter and brighter light with higher clarity than the more traditional mains voltage incandescent bulbs.

Mains voltage downlights are wired directly to the mains without the need for a transformer.

The mains voltage (230v) downlights are generally cheaper, and can be simpler to install, as there is no need to install a transformer.

As an electrician I would advise my customers to use 12v Downlights in Kitchens and bathrooms where you generally need more light, but can be reduced using low wattage bulbs or dimmer switches if needed. The use of 230v Downlights in other areas would then be perfectly acceptable.

Question: Do the Downlights need to be fire rated, acoustic rated or IP Rated?

Answer


Ceilings provide an important barrier that helps to prevent the spread of fire and noise between the floors of a building. Installing recessed downlights punctures this barrier and can reduce the effectiveness of this safety barrier.

Installing fire rated downlights helps to protect your premises from the effects of both fire and noise pollution and aids compliance with new building regulations governing the installation of downlights. Made from intumescent materials, fire rated downlights seal the gap between the ceiling and the fitting to offer up to 90 minutes protection against the spread of fire into the void spaces within your ceiling / loft space.

Fire rated downlights are more expensive than non-fire rated downlights. However, the worst decision you can make is to buy cheaper models that look exactly the same only to find out from the electrician fitting them, that building regulations require fire rated downlights for that situation. Then fire hoods will have to be bought and you would now find that you have spent more money in the long run.

Personally I feel it is best to always go for the safest lights on the market. Fires cost lives, surely that is worth a few pence more to fit fire rated downlights.

Having the right IP rated downlights is also a very important factor. Please see "What is IP Zoning" to see whether you will need an IP rated downlight. Water and electricity do not mix. Again IP rated downlights cost a fraction more but by paying a little extra you could save yourself from being electrocuted, or causing the contacts in the fitting to corrode. This could lead to a short circuit and possibly a fire.

Question: Can I do the work myself or should I get an electrician in?

Answer


Firstly you should read " Part P - What is it? " as this will answer whether or not you can legally carry out the work you wish to do. Some people will always have a go, no matter what their level of competence is.

Electricity is dangerous and could kill you. I will always suggest to get an electrician in to do the work required, but if you are determined to do some electrics yourself please remember to be safe at all times and follow some basic safe isolation procedures before proceeding:

  • Locate / positively identify correct isolation point or device
  • Check condition of voltage indication device
  • Confirm that voltage indication device is functioning correctly
  • Switch off installation / circuit to be isolated
  • Verify with voltage indicating device that no voltage is present
  • Re-confirm that voltage indicating device functions correctly on known supply / proving unit
  • Lock-off or otherwise secure device used to isolate installation / circuit
  • Post warning notice(s)

Question: What is the best process from start to finish for actually fitting the Downlights?

Answer


  • Decide where you wish to place your chosen downlights measuring out the ceiling and marking the central point of the light. Now drill a small pilot hole through the ceiling.
  • Now you have marked out the positions of the downlights it is a good idea to check above the ceiling to ensure that there are no joists / wires / pipes in the way. You should be able to see a small pinprick of light coming through the ceiling where you drilled the pilot holes. If you are unable to view the ceiling from above it gets trickier. The best way is to determine which way the joists run and what the spacing of them are. You could then use an old wire coat hanger bent at a 900 angle to the width of the downlight. Insert the wire through the hole until the 900 bend is through. Now twist the wire a full 3600 and hopefully it will not bump into any obstructions.
  • In the instructions or on the box of the downlights it will say what the cut-out for that downlight will be. For the best results I will generally use a hole saw (a type of drill bit) to the correct size of the downlight which can be purchased very cheaply from most DIY stores. Alternatively the use of a plasterboard saw (Pad Saw) can be used which eliminates the need for a drill and hole saw. For this method you will need to draw a circle on the ceiling to the correct size as a guide for when you start to saw.
  • Hopefully now you have produced a clean cut hole in the ceiling, got the plaster out of your eyes and shaken yourself outside to stop you looking like Casper the ghost!
  • Once the wiring has been pulled through the hole the downlight can be wired. To fit the downlight into the hole hold the two springs back against the sides of the downlighter and push up into the hole. The springs then lie flat on the top of the ceiling holding it in place

Question: Do I need any special tools?

Answer


This all depends on what you have in your tool box already! Please see the below list of what tools I have used in the past for fitting downlights. Some of them you might not need but can often prove useful.
  • Chalk line
  • Tape measure
  • Pencil
  • Pad saw
  • Hand drill
  • Hole saw (type of drill bit)
  • Small drill bit for pilot hole
  • Screw drivers

Question: Can the existing lighting circuit support the extra light fittings?

Answer


Lighting circuits are usually on 6 amp circuit breakers often know as MCB’s (Miniature Circuit Breakers). To calculate how many Amps are loaded onto the lighting circuit a simple calculation is made. UK voltage is 230 volts, now assume that each light on the circuit is 100 watts, and you have got 12 lights on the circuit.

The calculation would be:

Total Watts ÷ Voltage = Amps

So taking the above information the calculation would be:

1200 watts ÷ 230 volts = 5.22 amps

So now we can see that the above described lighting circuit is using 5.22 amps meaning that the circuit breaker of 6 amps is not being overloaded.

Now to confuse things a little but very helpful on lighting circuits when you are wishing to add more lights. On lighting circuits once you have worked out the amps you can now apply a thing called Diversity, which for lighting circuits is 66% of the total load. So to work out this calculation we can do the following sum:

5.22amps ÷ 100 × 66 = 3.45 amps

So now we can see that we are able to add more lights to the circuit now that diversity has been applied to it.

Remember to carry out your calculations before you start any work!

Source:

LED Technology Luminous intensity

LEDs are light emitting opto-electronic semiconductor components. Since decades, they are used in the field of man-machine communication to convert electrical signals into visual information.

Typical LED applications encompass household appliances, telecommunications, life sciences and signal technologies. Moreover, due to its low power consumption and excellent operational reliability LED technology partly replaces conventional lighting solutions already today.

The development of LED technology progresses at rapid pace, as light efficiency (Lumen/Watt) increases, colour qualities improve and temperature ranges get manageable. Consequentially, new territories of applications will open up, especially in the field of standard lighting.

Based on their structure, LEDs can be split into quattuor groups:

Light Technology

Light technology LED light modules of up to 350 mm Φ.

Illuminance Ev

Illuminance Ev is defined as the areal light flux density on a lighted area hit by the luminous flux Fv. Illuminance is measured in lux (lx=lm/m2), where luminous flux and area are put in as [lm] and [m2], respectively. Based on the illuminance Ev, a specific lighting solution can be calculated and designed.

Luminance Lv

Luminance is defined as the areal density of luminous intensity of a light emitting or reflecting area which radiates the luminous intensity Iv at a given angle. Luminance Lv is measured in [cd/m2].

Luminous intensity Iv

Luminous intensity Iv [cd] is among the key parameters describing an LED or LED display. It is defined as the luminous flux emanating from a point source within a solid angle W (steradian) into a particular direction. Hence, luminous intensity is the directional luminous flux Fv within a solid angle W. Today's LEDs achieve a luminous intensity of Iv=10 cd or more. As intensity depends on the radiation angle, an LED chip equipped with a 30° reflector achieves a higher luminous intensity than an identical LED chip with a 60° reflector. That is, using a 60° reflector the same luminous flux Fv has to illuminate a larger area than using a 30° reflector.

In addition to these parameters, VS Optolelectronic's in-house photometric laboratory is equipped to analyse all photometric, colorimetric and radiometric characteristics. Two in-house Gonio spectrum radiometers exactly determine the radiation characteristics of LEDs and


Source: http://www.ledaladdin.hk/led_technology/led_lighting_technology.html

How to install led light tube t8 t10 retrofit tubes

Step 1. Unpack the product:

  • Unpack and carefully examine the product from top to bottom.
  • Report any damage and save all packing materials, if any part was damaged during transport.
  • Do not attempt to use this product, if it is damaged.

Step 2. Planning the installation:

  • This device installation requires planning to ensure
  • successful installation with minimal complications and down time.

Step 3. User responsibilities:

  • It is the responsibility of the contractor, installer, purchaser,
  • owner, and user to install, maintain, and operate the device in such a manner as to comply with
  • all state and local laws, ordinances, and regulations.

Step 4. Product installation steps:

  • Disconnect power to fixture at source. DO NOT SIMPLY SWITCH OFF FIXTURE
  • Remove existing fluorescent tubes and safely set aside.
  • Disconnect (cut) wires to ballast leaving enough wire to be tied off with wire nuts.
  • Tie-off remaining wires attached to ballast with wire nuts.
  • See wiring diagram shown on reverse for your type lamp fixture (i.e., 1-bulb, 2-bulb, 4-bulb and etc.) and re-wire fixture.
  • Install Aladdin LED Retrofit Tube(s) into fixture.
  • Affix included warning labels to fixtures near lamp connection/sockets of fixture so they are visible to bulb installers.
  • Re-connect power supply and turn on switch. Tube will light.
Risk of fire or electric shock. Install the LEDaladdin T8 T10 retrofit LED tube(s) only in luminaires that have the construction features and dimensions shown in the photographs and/or drawings shown on reverse of this sheet.

Caution:

  • Please read and follow these instructions before installation.
  • Install the tube by qualified electrician and technican.
  • Consult the competent electrician if you have any uncertainty about the installation or the use of the product.
  • Do not impact the tube and all its components by any external weight or mechanical force.
  • Do not use harp tools near or on the surace of the tube.
  • Hands must be dry during installation.
  • Switch off the power before installation.
  • Make sure the base is mounted on a stable. even and secure surface.
  • Beware of electic shock when replacing tube.
  • Use or store the tubes in dry places. if the tube are used for outdoor application. waterproof holders and covers are needed.
  • Replace the tube immediately if you find any leakage or damage on the tube.
  • Stop use and replace if the product becomes dim,out of order or begins to blink.
  • Of failure occurs do not attempt to repair product.
  • This is not a dimmable product . do not use with dimmers.

Warning

  • NOTE: This user guide is intended to be used as a reference only. Installation should be done by a fully qualified
  • electrician or technician. This document should never be considered as a substitute for any provision of a regulation or
  • state and/or local code. Please read the entire user guide to fully understand and safely use this product.

LED Light Tube T8 T10 Installation:

1/. Without Ballast and starter

  • Directly connect the wires as shown in diagram I. join either A or B, or A & B together with the "Live" wire. join either C or D, or C & D together with the "Neutral" wire.
  • Install the t8 LED tube on the bracket.

2/. With Electronic Ballast

  • Take off the fluorescent tube.
  • Cut the wire as shown on the dotted line of the diagram(2b).
  • Bypass the ballast and remove the starter (if any) within the bracket.
  • Reconnect the wires sa shown. join either A or B, or A & B together with the "Live" wire. join either C or D, or C & D together with the "Neutral" wire.
  • Install the T8 LED Tube on the Bracket.

LED TUBE T8 RETRORIT WIRING INSTRUCTION DIAGRAMS

(See detailed written instuctions reverse side)

BEFORE INSTALLATION:






ARTER NEW INSTALLATION:






LED Tube Light T5 Installation

  • Disconnect the power before installation to ensure that outside.
  • The installation as shown below: install two clips, T5 Fixture clamping directly on the clip connecting T5 Fixture.
  • Plug the power cord can be connected to electricity.
  • To replace the lamp, the lamp will be rotated 90° to take off or install up, pay attention to T5 lamp, the negative electrode must correspond to Support the positive and negative.
 

2011年8月4日星期四

Святло труб Святлодыёдныя лямпы вытворцаў Святлодыёдныя фары трубкі Святлодыёдныя вытворцы асвятлення ў Кітаі

Святлодыёдныя вытворцаў святлатэхнікі
Святлодыёдным асвятленне завода
Святлодыёдныя лямпы асвятлення
Святлодыёдным асвятленне пастаўшчыком
Святло труб
Святлодыёдныя лямпы вытворцаў
Святлодыёдныя фары трубкі
Святлодыёдныя вытворцы асвятлення ў Кітаі
Святлодыёдныя фары лямпа
Святлодыёдныя лямпы завод


Кітай святлодыёднага асвятлення завода
Святлодыёдныя лямпы пастаўшчыком
Кітай Святлодыёдныя лямпы вытворцаў
Святлодыёдныя лямпы лямпа
Кітай святлодыёдным асвятленне пастаўшчыком
Святлодыёдныя лямпы завод у Кітаі
Святлодыёдныя лямпы трубкі
Энергазберагальныя святлодыёдныя светлавыя рашэнні
Святлодыёдныя лямпы трубкі
Святлодыёдныя лямпы пастаўшчыкоў у Кітаі
Led assenmbly
Святлодыёдных трубак асвятлення
энергазберагальныя лямпачкі
СВД найвышэйшай магутнасці свяцілень
Крыты Святлодыёдныя свяцільні
Святлодыёдныя лямпачкі
Галоўная Святлодыёдныя свяцільні
Святлодыёдныя лямпы лямпы
прывяло святлоаддача
Супер яркае святлодыёдным асвятленне
Святлодыёдным асвятленне трубкі
Led цыбуліны замены
прывяло харчавання
Вадзіць
LED CHINA
Святлодыёдным асвятленне лямпы

LED крушки тръба LED лампи доставчик в Китай LED лампи осветление LED лампи осветление

LED осветление производители
LED осветление фабрика
LED крушки осветление
LED осветление доставчик
LED светлина тръби
LED лампи производители
LED светлини тръба


LED осветление производителя в Китай
LED светлини крушка
LED лампи фабрика
Китай LED осветление фабрика
LED лампи доставчик
Китай LED лампи производители
LED лампи, крушка
Китай LED осветление доставчик
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LED лампи, тръби
Енергийна ефективност LED осветителни решения
LED крушки тръба
LED лампи доставчик в Китай
Led assenmbly
LED лампи осветление
енергоспестяващи електрически крушки
Върховен Power LED осветителни тела
закрит доведе осветителни тела
LED крушки
Начална доведе осветителни тела
LED крушки лампа
доведе светлинен ефикасността
Супер ярки светодиодно осветление
LED осветление тръба
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довело Китай
LED крушка осветление