The Basic Technical Specification Of RC Electric Vehicles Simplified For Beginners

When you are browsing RC automobiles online and decide to check the details of an RC electric vehicle that you are interested in (let’s suppose it is an high speed on road racing car), this is what you will likely be presented with, if you are on a quality, customer-focussed website, that is:

– SP28404 brushless motor
– SP28405 brushless electronic speed control
– Anodized aluminium centre drive joint
– Compact front/rear differentials
– Suspension arms with adjustable Width
– Anodized aluminium radio tray
– Solid shock towers and front/rear bumper
– High quality on-road tires with chrome sprayed rims
– 7.2v 1100mah Ni-Mh battery power required
– 7.2v 1500mah Ni-Mh battery or 7.4v 1300mah lithium battery pack is optional
– Anodized aluminium motor heat guard
– High duty front bumper foam provides
– Vehicle length: 265 mm
– Vehicle Width: 140 mm
– Height: 80 mm
– Wheelbase: 174 mm
– Track Width: 77 mm (F/R)
– Gear Ratio: 10.6:1
– Ground Clearance: 8mm
– Net Weight: 790g
– Wheel Diameter: 49mm
– Wheel Width: 18mm

How do you make head or tail of this fairly detailed specification for your rc electric vehicle, without it resulting in your eyes glazing over? Help is at hand right here. Let us go through these features one by one and you will be overjoyed with enlightenment.

SP28404 brushless motor
This is the latest, more advanced, powerful type of motor, which is reflected in the overall (higher) starting price of the automobile in which it is fitted. The benefits to you are a potentially speedier, more dynamically efficient RC vehicle, with the added bonus that it should be simpler to maintain. RC automobiles with brushed motors however, are the classic, conventional types.

SP28405 brushless electronic speed control
The RC electric vehicle’s speed is regulated with an electronic speed controller (abbreviated to ESC). This is the component that controls the drive motor mentioned above, together with the general electronics. Most automobiles come integrated with the motor and ESC, but are separate purchases in the more enhanced set-ups.

Anodized aluminium centre drive joint
More commonly known as the RC electric vehicle’s drive shaft, this is the central rod that runs from the front to the rear of the automobile. Being made of aluminium makes it lighter without compromising on the vehicle’s overall stability and sturdiness.

Compact front/rear differentials
A differential is a device that in most cases incorporates gears and is designed to drive each pair of front and rear wheels with equal force, but still allows the wheels to rotate at different speeds. Differentials on good electric vehicles are high performance.

Suspension arms with adjustable Width
The suspension arms provide your RC vehicle with powerful cushioning, as in a conventional car. Being adjustable allows the vehicle to be driven at optimum suspension on different terrains, especially when running over bumpy or rocky ground and when turning corners.

Anodized aluminium radio tray
This is tray that houses the in-built radio receiver in your RC vehicle. Being anodized gives it increased corrosion and wear resistance, making it harder than bare aluminium.

Solid shock towers and front/rear bumper
Integrated with the suspension system, the shock towers provide a damping effect on the overall vehicle suspension.

High quality on-road tires with chrome sprayed rims
The specification for this RC electric vehicle relates to an on road racing car. The makeup of the tires is important here. It is like differentiating between a mountain bike, with its thick, knobbly, high-friction tires and a road bike, with its slimmer, low-friction tires and a less prominent tread. It all comes down to performance requirements on the terrain that the RC vehicle was designed/intended to run on. The chrome rims adds a splash of quicksilver that finishes off the wheels nicely.

7.2v 1100mAh Ni-Mh battery power (required), 7.2v 1500mah Ni-Mh battery or 7.4v 1300mah lithium battery pack (optional)
7.2-volt nickel cadmium batteries are standard power sources, often referred to as battery packs. Although they are identical in size, they differ in capacities ranging up to 3700mAh typically. As the battery pack is extra, it is advisable to go for the largest capacity that you can afford, if you desire more running time (the downside is that you’ll need more time to charge it up).

Anodized aluminium motor heat guard
Unsurprisingly, your RC electric vehicle’s motor will get very hot. The guard thankfully provides protection against heat, which results from high speed running.

High duty front bumper foam
As with conventional, real-world automobiles, the front foam bumper needs to deliver maximum protection to your RC vehicle against impacts.

Vehicle dimensions
Length, width, height, ground clearance, net weight, wheel diameter and wheel width are self-explanatory.
Your RC electric vehicle’s wheelbase will be the length from the leading edge of its front wheels to the trailing edge of its rear wheels.

Track
Track refers to track width, the distance between the center of the left tire and the center of the right tire.

Gear Ratio
This is the relationship between the numbers of teeth on two gears that are meshed or two sprockets connected with a common roller chain, or the circumferences of two pulleys connected with a drive belt.

So, there you have it. We’ve just covered some of the basic technical terms that you are likely to come across when you are enjoying your time shopping for your future RC electric vehicles. Whatever you do, don’t be fazed by these terms – think of it as an educational experience, a journey of discovery that is a part of your enjoyment of RC electric vehicles.

Natural Gas Vehicles Are Beating Out Electric Vehicles for Consumers Top Pick

Consumers have been selecting natural gas vehicles over electric vehicles at a rate of two to one. By year end there will be approximately 123,600 natural gas vehicles on our nation’s road as compared to 65,500 electric vehicles. Despite the lack of marketing or fueling infrastructure for natural gas, it is now the first choice among consumers looking to alternative ways to fuel their vehicles.

The drop in natural gas prices has helped fuel the demand; beating out the more heavily marketed and federally funded electric vehicles (EVs). Four years ago President Obama unveiled his vision of 1 million plug-in vehicles on U.S. roads by the 2015 and pumped $5 billion into funding for electric cars. In February the Obama admiration proposed the tax credit for plug-in vehicle be increased from $7,500 to $10,000 and also extend the credit to other alternative vehicles like natural gas.

In response to the higher demand from motorist, Honda began showing it’s Honda Civic GX natural gas vehicle in car showrooms across the country, where previously it had only been marketed as a fleet vehicle. It is currently the only NGV sedan on the market. Honda says the marketing is paying off big for them, and sales of the vehicle are continuing to break new monthly highs. Although the choices are few for compressed natural gas (CNG) vehicles, it should be pointed out that conventional gasoline and diesel vehicles can be retrofitted for CNG. If natural gas is available at your home you can install a pumping station inside your garage.

CNG is safe or at least safer than gasoline, Although CNG is flammable, it has a narrow flammability range, and if released by accident it quickly disperses making it less likely to ignite than gasoline. CNG is also non-toxic, it dissipates when released and will not leak to contaminate soil and water supplies.

The natural gas used in vehicles is classified into two types compressed natural gas (CNG) and liquefied natural gas(LNG). According to fueleconomy.gov “eighty-seven percent of the natural gas consumed in the U.S.is also produced here; which greatly reduces are dependency on foreign imports. It is 60%-90% less polluting than traditional fuels. With 30%-40% less greenhouse gas emissions and is less expensive than gasoline. At the present time the main disadvantages of CNG vehicles is the lack of facilities available to pump the gas, fewer miles to the tank and few choice available by auto makers.

All gas vehicles depend on fossil fuel. The natural gas obtained from drilling is a fossil fuel and while no fossil fuels are considered to be renewable resources because of the millions of years needed for the earth to produce them; natural gas is primarily methane and methane gas can be produced as a renewable resource. Methane gas is currently being collected from landfills and produced from rotting vegetation and animal manure.

CNG vehicles are cheaper to operate than conventional vehicles and burn cleaner than gasoline vehicles. Electric vehicles running on electricity alone put out “0” emissions at the tail pipe, but the electricity providing that power is generated at power plants running off fossil fuels. The U.S. Department of Energy states that “PHEVs (plugin hybrid electric vehicles) and EVs (electric vehicles) typically have a well-to-wheel emissions advantage over similar conventional vehicles running on gasoline or diesel.

However, in communities that depend heavily on conventional fossil fuels for their electricity generation, PEVs (Plugin Electric Vehicles) may not demonstrate a well-to-wheel emissions benefit.”

The switch from diesel to CNG is the larger trend for cities and municipalities across the country. The U.S Department of Transportation provides grants for upgrading mass transit and many cities are already using those dollars to advance their fleets over to CNG vehicles.

The future for NGV remains uncertain; although the advantages seem clear, reduce dependency on foreign oil, cleaner energy for the environment, lower cost to fuel. The largest drawback is the lack of infrastructure for refueling. As government agencies along with private fleet owned vehicles begin to convert vehicles from gasoline to NGV the private sector will also begin to benefit from their expansion. Improvements in refueling technology and engine performance will also soon follow. It will likely be the consumers, who ultimately decide our next energy of choice.

Eliminate Chronic Car Problems With Electric Vehicle Conversions

Regardless of where you travel to in Australia, you will always be putting miles on your car. Unfortunately, the parts used in high performance engines found in modern cars wear out much faster than the ones used years ago. For example, the fuel pump in modern cars often dies out after 60,000 to 90,000 Km of travel. If you check your warranty information, you will most likely find that the fuel pump is not covered after 60,000 Km, even on an extended warranty plan. If your odometer reading is approaching this number, electric vehicle conversions may represent a cost effective way to get out of chronic expenses associated with a high mileage vehicle.

Critical Car Parts and High Compression Engine Wear

Not so long ago, fuel pumps were one of the easiest things on a car to replace. All you really needed to do was search around near the carburetor, take the old pump out, and then put the new one in. Typically, it was a job you could accomplish in under an hour, right in your own back yard. At the same time, fuel pumps tended to cost well under 100.00.

By contrast, today’s vehicles use fuel injectors that require a very high compression ratio from the fuel pump. This type of pump is almost always housed in the fuel tank. They also cost several hundred dollars per unit. In order to replace the pump, you will need to take out the fuel tank, and then hope the mechanic will not damage the neck of the tank while removing the old pump. Because it tends to be a difficult job, you may wind up paying well over $1500.00 to have a new pump installed. On top of that, if they do damage the gas tank, you may wind up spending an additional $1000.00 to solve that problem.

Once the fuel pump is replaced, it can significantly alter the electrical system of the vehicle. For example, a number of cars and trucks develop computer problems, as well as a tendency to die out randomly once the new fuel pump is installed. Electric cars are virtually maintenance free. Electric vehicle conversions are worth exploring, and much safer in this type of situation. At the very least, you won’t have to worry about the motor dieing at an inconvenient time.

While you may not be aware of it, compression gaskets, valves, fuel injectors, and engine heads wear out faster when exposed to higher combustion temperatures and compression ratios. No matter how well you maintain and service your vehicle, it will not change this aspect of modern engine performance. Once your car passes the 100,000 Km mark, the best of the engine and transmission lifespan will be used up. Perhaps this is one of the reasons why very few manufacturers will guarantee a vehicle engine and transmission past 100,000 Km. Under these conditions, electric vehicle conversions offer a viable, safer, and cheaper alternative to help you maintain reliable transportation.

Deep Engine Computer Problems and Internal Combustion Engines

Even though the computer modules in your car are often housed in easy to reach places, they obtain data from sensors deep within the engine. For example, oxygen sensors may be positioned within the cylinder head. There are also some sensors that may be housed deep in the engine block. In some cases, these sensors monitor the flow of oil and coolants through the block. Once these sensors malfunction, they can cause piston heads to seize up, as well as ruin other critical parts of the main engine. At the same time, replacing these sensors may cost several thousand dollars if the engine has to be taken out, or the warranty on the electrical system is up.

Therefore, when the fuel pump causes changes in the electrical system, it can have hidden consequences. As with other electrical devices, when a new component is added, it can disrupt the pattern, and lead to serious consequences. When you make use of electric vehicle conversions, you will not need to worry about disrupting the electrical harness or the engine sensors. In fact, you will no longer need to worry about an engine block at all. Instead, your vehicle will run on a nice, quiet electrical motor that requires very little in the way of maintenance.

The Best Cars for Electric Fuel Conversions

If you buy a used car, you will always worry about repairs if you do not take steps to change the engine, transmission, and fuel pump. That said, if another used car is in better shape than the one you have now, you can always see about getting an electric car conversion in the near future. At the very least, you can have peace of mind knowing that you will get many years of trouble free driving out of it.

People that own cars today do not realize they could have a financial time bomb sitting on their hands. Regardless of whether the fuel pump dies in the middle of traffic, or the engine gaskets blows, it will cost you to have the vehicle repaired. When you are under pressure to get your car back as quickly as possible, you will most likely go on paying bigger repair bills, rather than evaluate the expanded benefits associated with electric vehicle conversions. Take the time now to evaluate your financial commitment to owning a petrol car. Switching to all electric is easier than you realize.

Today, electric vehicle conversions are available right here in Australia. You can easily extend the life of your current vehicle, and help do your part in providing for a cleaner more sustainable future, especially in your part of the world. When it comes right down to it, if you own a car or two, the best thing you can do is look into electric vehicle conversions today.