Sunday, November 20, 2011

Pergola Designs - 7 Sure-Fire Tips For Choosing The Best Design

!±8± Pergola Designs - 7 Sure-Fire Tips For Choosing The Best Design

There is a huge choice of pergola designs available. Here are 7 quick and easy tips for choosing the best one for your garden.

#1. Decide on your budget. You can do this for a few hundred dollars if you build it yourself, or anything up to 00 is typical if you employ a contractor.

#2. Contact your "call before you dig" 811 number. Avoid building a pergola anywhere near underground utilities.

#3. How much shade do you want? You'll have more control if you build it yourself in wood. There's less flexibility if you get a kit made in vinyl or aluminum.

#4. Choose your materials wisely. Wood is the least expensive. It's also easy to work with. Only use pressure treated wood to protect against rot. Cedar wood will last for decades.

If you don't want any maintenance, then consider aluminum or vinyl if your budget will run to several thousand dollars.

#5. Mark out the size you are thinking of before you proceed. Is it in sensible proportion to the size of your garden? If it's to be a relaxing or entertaining, is it big enough and in a suitable location?

#6. Square and rectangular shapes are easier to build. You'll also have a much wider choice of designs. Triangular and circular designs are available but they're not so common.

#7. Keep in mind the purpose of your pergola. They make a great addition to any garden. They're great for giving some shade and a pleasant seating area, they're great as a focal point, or for connecting different areas of the garden together.


Pergola Designs - 7 Sure-Fire Tips For Choosing The Best Design

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Wednesday, November 9, 2011

Understanding Transformers

!±8± Understanding Transformers

We must establish some basic principles of voltage before expanding into transformers. What is current, voltage or a load? Imagine a man a hauling a cart uphill. The voltage (v) is the man (120v). The current (amps) is how much work he is doing to get up the hill (2amps) and the cart is your load (a motor of some sort). Or possibly the man brings a friend creating the two of them (240v) with both of them working together they do less work (1amp) with the load staying the same (a motor of some sort).

What does a transformer do? Transformers form a way control voltage. They take voltage and either step voltage down, step voltage up or isolate voltage in one area from another. So why is it so important to control this voltage. Take for example your local power company. It uses a step up transformer to give high voltage to the power lines which creates low amperage. Then before entering your home or local business steps the voltage back down so the voltage entering is not excessive.

What parts make up a transformer? A transformer is made up of a three main components; the laminated iron core, primary and secondary windings. The primary winding is connected the power entering the transformer (input voltage). The secondary winding is connected where the power is going to (output voltage). The laminated core is used to separated the primary and secondary windings from have any physical connection.

So how do transformers work? There are no moving parts of a transformer, instead a transformer uses induction to pass electricity from the primary winding to the secondary winding. Easy way to understand what induction is it uses a electromagnetic force to take the voltage from the primary winding and move it to the secondary winding. We control induction with turn ratio.

What is a turn ratio? A turn ratio is the relationship between the primary and the secondary winding. If there was 120v entering the transformer and 24 volts leaving the transformer. Our voltage would be stepping down with a 5/1 turn ratio. Simple math is used to calculate this; voltage entering / voltage leaving the transformer. With 120 / 24 you would have 5/1 ration.

How do you size a transformer? You size a transformer for secondary winding of a transformer. The secondary winding is rated in VA (volts times amperage). An example of this would be you have a 24v control circuit thats capacity is 2amps. You would take your voltage (24v) and multiply it by your maximum amperage (2amps) which would be 24 times 2, which equals 48 or 48 va. This means you would need a transformer rated for 48va.

Do transformers need to be serviced? No, with no moving parts there is no maintenance required. Once a transformer has gone bad, which will general show on the primary windings, it will need to be replaced. Some transformers come with a fuseable link, or a safety. If a transformer has been tripped or has gone bad, it is a general rule to search for a source causing the problem. A bad transformer is never "the problem" only a symptom of the real problem.

What are the different types of transformers? There are many types of transformers you will see in the field; step up, step down, isolating, multi tap and autotransformers. There are also another type which is a three phase transformer, this transformer pertains more to voltage entering a commercial building. As a general rule the most common type of transformer you will see is a step down transformer (control voltage).

What is the difference in these types of transformers? Step up transformers take the primary winding and step the voltage up for the secondary winding. Step down transformers take the primary winding and step is down for the voltage on the secondary winding. Isolating transformers have the same voltage on the primary and secondary. A multi tap transformer is a step up or down transformer that has multi taps on either the primary winding or secondary winding. An autotransformer is a special types of transformer which does not follow common rules of transformers. It uses a continuous winding that is tapped to provide a step down or step up function.

Transformers play a key role in AC powered systems. They are a way to control voltage. There is no maintenance required to transformer though they are excellent indicators of problems. Understand these terms and principles is key to troubleshooting and designing electrical circuits.


Understanding Transformers

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