Tuesday, December 6, 2011

Power Tools For the Professional or the Do it Yourself Enthusiast

!: Power Tools For the Professional or the Do it Yourself Enthusiast

Whatever your background or requirement power tools are used in almost every environment to improve productivity and usually improve the quality of the work undertaken. When we refer to power tools we usually refer to corded power tools or cordless power tools. There are however a comprehensive range of pneumatic power tools which are great if you have compressed air available. Pneumatic tools lack the obvious portability of electrically powered tools and are frequently confined to the workshop environment where the work comes to the tools rather than the tools going to the work

The electric drill was regarded by most as the first powered hand tool. The first electric drill was patented in Australia on 20th August 1889 an attributed to Arthur James Arnot. This first drill was primarily intended for heavy industrial use and was invented before most communities were even supplied with electricity. In 1917, Black and Decker introduced and patented the pistol grip and also the trigger switch familiar on most products available today. This was the basis of the modern electric drill and later models were soon shipped in thousands. 1961 saw the first battery powered drill and as technology improves and prices fall we are now in a position where the battery powered drills have taken over from the corded big brother.

The brief history just serves to illustrate the development of the drill and close on the heels of the drill were many other corded and cordless power tools. Mains powered devices operate on a variety of voltages 120v in the US and in Europe we operate on two voltages. We have 220-240v powered tools normally used in the home and for the less demanding applications whereas in the construction arena health and safety demands 110v units powered by 220-240v to 110v transformers. Battery powered tools use different battery types and operate at different voltages. The power screwdriver is the least demanding of the electrically operated tools in the power toolbox and may be supplied with as little as 3.6v batteries. The capability of the batteries has increased year by year as we have seen battery technology move gently from 9.6v to 36v such that we now have tools supplied with batteries rated at 12v, 14.4v, 18v, 24v and 36v. Needless to say the 36v tools are much more expensive than the 12v tools. The development in battery technology has been considerably more than just building larger battery packs. The latest batteries are Lithium-ion or Li-Ion batteries which enable more battery power to be delivered and batteries can be quickly recharged.

With the advent of these higher voltage batteries we now have a wider range of battery powered cordless tools. The cordless circular saw was not viable before the 18v or possibly the 24v batteries became available. The SDS drill and demolition drill had always been corded until the latest range of batteries mean there are now SDS and demolition cordless drills on the market operated on 36v power packs.

Woodworking powertools have always been popular both in the construction industry and for DIY enthusiast. Increasingly the cordless power tools are being used in all areas of industry where just a few years ago the batteries would just not be man enough, or need recharging too frequently or just too expensive. We now have cordless jigsaws, Kango Drills and Breakers, Metal Cutting Saws, Percussion Drills, Reciprocating Saws, Sanders, SDS Drills, Wall Chasers, Band saws, routers, planers and other specialist powered tools.


Power Tools For the Professional or the Do it Yourself Enthusiast

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Friday, December 2, 2011

Power Bright VC2000W Voltage Transformer 2000 Watt Step Up/Down 110 Volt - 220 Volt

!: Order Power Bright VC2000W Voltage Transformer 2000 Watt Step Up/Down 110 Volt - 220 Volt discounted

Brand : Power Bright | Rate : | Price : $88.39
Post Date : Dec 03, 2011 07:38:21 | Usually ships in 24 hours


This is a voltage converter or transformer that can be used as a step up transformer in 110/120 volt countries or as a step down transformer in 220/230/240 volt countries. This heavy duty voltage transformer can be used for continuous duty. It will convert voltages of 220-240 volts to 110-120 and will also convert voltages from 110-120 to 220-240 volts.

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Sunday, November 27, 2011

VCT AR8000 Heavy Duty 8000 Watts Automatic Voltage Regulator / Stabilizer with Built-in Voltage Transformer for AC 110V / 220V / 240V

!: Promo VCT AR8000 Heavy Duty 8000 Watts Automatic Voltage Regulator / Stabilizer with Built-in Voltage Transformer for AC 110V / 220V / 240V save


Rate : | Price : | Post Date : Nov 28, 2011 03:24:47
Usually ships in 1-2 business days

8000 watts maximum capacityConverts 110/120 V to 220/240 V OR converts 220/240 V to 110/120V Compatible with 50Hz/60Hz.On/Off switch with indicator lampVoltage stabilizer good for countries with unstable voltage supplyThis stabilizer can regulate big range fluctuating voltage into general voltage output.Input Voltage AC 75V-130V or 180V-260V.Output Voltage: AC 110V+-4% or AC220V+-4%.Durable Design with 2 Heavy-Duty Carrying HandlesFuse protected with built-in thermal Fuse - protects damage to your valuable equipment from voltage fluctuation.Comes with terminal Connectors - Hardwire Input and Output required.

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Thursday, November 24, 2011

Yacht Power Inverters - A Guide

!: Yacht Power Inverters - A Guide

Power inverters

Computers, hi-fi and microwave ovens use considerable power, so if you're considering using them on board you'll probably need power inverters.

An inverter is probably one of the first extras most owners consider buying for their boat, whatever size it is. The ability to use 240V equipment when you are on passage or moored away from a shore supply is prized by most people. At the same time, an inverter is one of the easiest items to install, providing you understand the basic steps involved. Inverters range in size from 50W to 4kW, and can power most items that you now plug into the mains, but you need to understand their limitations, and for that you need to understand what makes them tick.

How they work An inverter takes low-voltage direct current (DC) from batteries, usually 12V or 24V, and converts it to high-voltage alternating current (AC), either 110V, 230V or 240V. The process is the same as your battery charger, except in reverse, and some combi models double as chargers, using the same basic electronics inside. Early inverters used transformers to step the volts up, and were heavy, but most modern models use solid-state electronics, both to step up the voltage and to convert the current from DC to AC, and are correspondingly lighter.

Domestic mains supply voltage follows a sine-wave form with a rounded top as the current alternates. But, while this wave form is easily produced by a rotating generator in a power station, it's more complex and costly to produce electronically and wastes more power. Instead many inverters use a modified sine-wave, or quasi sine-wave, which has a flat topped or square curve. The modified sine-wave powers most AC equipment, but can struggle with some items, particularly electronics with internal power supplies and digital timers like computers, TVs and microwave ovens. Recently the internal power supplies for most electronic equipment have changed to switch-mode systems, which better handle poorer quality incoming AC. At the same time, the standard of the best modified sine-waves has improved markedly, close to that of a pure sine-wave.

Yacht batteries and marine batteries

An inverter can provide high outputs but all this power has to come from your batteries. Short burst high power appliances like a microwave oven, kettle, toaster or hair-dryer are fine, but to run heaters or machines for long, you need a very large battery bank or engine power.

As we have said, virtually anything that you now plug into the mains can be run from an inverter, but the size of your unit governs what it will power. Up to 500W you can run computers, TV, hi-fi, battery chargers for your mobile phone and cameras, and even a 240V domestic fridge, though not always all at the same time.

Up to 1,000W, and you can add a small travel hair-dryer. For most people however the big plus is being able to run a microwave oven and for this you will need at least 1,500W, preferably 1,800W. Don't be confused by the 60OW or 80OW rating on most microwaves. This is the useful cooking power they generate, not the amount of power going in, which will be double this figure.

And at this size, your inverter should also power a standard hair-dryer, plus possibly a kettle, toaster and coffee-maker, though these may require 2kW.

Installing an inverter is within the capabilities of a competent DIY electrician, but if you've any doubts, leave it to a professional. A 2kW, 12V inverter will be drawing up to 200A from your batteries, more than many engine starter motors, so you need large diameter cables, short runs, and good connections. For the higher output models, use 50mm cables (35mm for lower outputs), a maximum of 1.5m long with properly crimped lugs, not screw connectors as they work loose. Anything less and you could lose too much power down the line, which means reduced performance and possibly tripping the inverter. You need proper cable from a battery dealer or automotive electrical supplier. Measure the exact length you want before you buy. They will probably crimp the terminals on for you, but check the diameter of the studs. Most batteries will be 8mm, but the inverter may be l0mm.

If you have to mount the inverter further away, use 70mm cable, or two 35mm cables in parallel for both positive and negative.

Unless a main input fuse is already fitted, you'll have to fit a 250A fuse in the supply line. It's also a good idea to have a separate battery master switch in line, so you can disconnect the unit completely. This must be capable of taking 250A continuous load. Check the size of its terminal studs - they will usually be l0mm.

The DC input terminals on some units were very close together, risking short circuit. If there are no plastic terminal covers, fit your own.

Your battery bank is a major consideration when fitting any but the smallest inverter ...If you take 200A out of a fully-charged 200Ah bank, the voltage at the battery terminals will drop from 12.6V to 11.0V at the inverter. If the bank is only half-charged, the voltage could be down to 10.5V, close to the low voltage tripping point of 10.0-10.5V.

If you're fitting a 21kW inverter, you should have a minimum of 400Ah batteries, preferably 600Ah. For a 1 kw unit, you will need 200Ah, preferably 300Ah.

All these figures assume the engine is not running, which is the usual situation when moored. If you start it up, you will get an input from the alternator, and the battery volts will rise, which will improve the situation, but you should not rely on this.

The condition of your batteries is also important. High continuous current drains will hammer the bank, and quickly find out any weak cells. Gel or AGM batteries will be better able to handle continuous heavy loads.

The 230V output from the inverter will be either one or more sockets on the front, or you may have to hard-wire a cable internally Again, only do this if you are sure of your proficiency. UK three-pin outlets are best fitted sideways or upside down so that large plugs or power-supplies dont foul the base.

Because the inverters have to be close to the batteries, they will usually be mounted in the engine space, or at least away from the galley area. But because most of them have a continuous residual current drain in standby-mode, you don't want to leave them permanently switched on. A remote control panel allows you to turn off the inverter when it's not needed.

Ideally you should fit a change-over switch in the output circuit to switch the incoming AC power between shore supply, generator, and inverter. It's important that you don't have two different power sources feeding into your ring main at the same time. Make sure you get the polarity right when connecting the DC or you could damage the unit

Any piece of electronic equipment will give a high short-term output, but will quickly cut out as it heats up. Best practice is to use the continuous rating to describe the unit. Having said that, the intermittent rating is important, as some pieces of AC equipment, particularly those with motors in them, have a start-up surge that needs a short burst of higher power.

Most power inverters drain a continuous current when switched on, even when you're not using them. This standby current will be at least 2A, sometimes more, which, over 24 hours, it could drain 50Ah or more from the batteries.

This is why a remote control is important. Some models have a powersave mode. This sends the unit to sleep while nothing is connected and wakes it up when it's needed. The drawback to this is that tiny currents, like the timer light on a microwave, will not trigger the unit, so the microwave won't start. Your mobile phone charger will also probably not activate the inverter, so you still need to turn it on manually.


Yacht Power Inverters - A Guide

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Sunday, November 20, 2011

LiteFuze LT-2000 2000 Watt Heavy Duty Voltage Converter Transformer - Step Up/Down 110/120/220/240V - Fully Grounded Cord (Free Euro Plug) - Patented Universal Output Socket - Circuit Breaker Protection

!: Brand new LiteFuze LT-2000 2000 Watt Heavy Duty Voltage Converter Transformer - Step Up/Down 110/120/220/240V - Fully Grounded Cord (Free Euro Plug) - Patented Universal Output Socket - Circuit Breaker Protection Immediately

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Post Date : Nov 21, 2011 02:01:52 | Usually ships in 24 hours


2000 Watt Maximum Capacity Heavy-Duty Voltage Converter/Transformer Heavy duty for continuous use On/Off Power Switch LED Indicator for Power Source Single phase Dual Voltage Step Up or Step Down functionality Input: 110V/120V or 220V/230V/240V (Single Phase) Output 110V/120V or 220V/230V/240V (Single Phase) Input Selection in the rear of the converter Dimensions: 7.25" x 9.75" x 6" * Weight: 29 lbs. Four outlets for output in the front - 1 socket - Universal outlet (220v) - 1 socket - German Shucko outlet (220v) - 2 sockets - USA Grounded (110v) Fuse protected - Fuse will cut off the current if the transformer is overloaded to protect the transformer and your appliance NOTE: We recommend to use a Voltage Converter / Transformer that's max watts is at least 50% higher than your appliance. Some appliances such as Power tools, Motors, Laser printers and TVs require 2-3 times more watts at start up than the printed rating.

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Thursday, November 17, 2011

European Power Converter - Finding the Best

!: European Power Converter - Finding the Best

When you're ready to travel across the country, you're going to find that your electronics may not be able to plug into the outlets, since a place like Europe is going to use a different type of power. Instead of purchasing a laptop, TV, or whatever it may be to work there, there are some converters that are going to work for you.

How can I find the right one?

The first thing that you're going to ask yourself is where you're heading. If you're going to Europe from the United States, you will want to find one that converts from the USA to Europe. If you're going from Europe to the USA, you will want to get one that's the other way around. Some will work with both, but it's important that you read the description to see which one is going to work for you.

Listed below are a few that you should check out when you're ready to make your purchase.

All-In-One Travel Power Plug - It's less than and is going to work with it's built in plug. Its convenient and it's fairly easy to use. You can plug this adapter in and it's going to work in over 150 countries! Simran 200 Watts - This one is going to set you back about . It converts 220/240V foreign power to 110V. It's great for laptops, ipods, battery chargers, and more. Universal World Wide by Eforcity - The last one on my list is very compact and is going to work in countries such as Europe, the Middle East, Africa, and more. It also comes with a built in surge protector.


European Power Converter - Finding the Best

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