Re: Which coil to choose ?
COIL IMPACT ON SPARK SHAPE
Changing to a coil with a different leakage inductance rating, measured in mH, will change the spark duration and peak spark intensity. A low leakage inductance coil will provide a faster spark with a higher peak intensity and will be capable of running tthrough a higher engine RPM. A high leakage inductance coil will offer a longer duration spark and a lower peak spark current and will work better with engines that do not rev as highly by helping at lower engine speeds. These generalities will hold true when such coils are combined with CD ignition systems, but will have only a minor effect when mated with standard inductive ignition designs.
Using the two common MSD ignition systems (the MSD 6 and the MSD 7AL) as an example, the street/strip MSD 6 units offer a tuning range that allows you to as much as double the spark current between a high leakage inductance and a low leakage inductance coil. With the MSD 7AL series ignition, the coil tuning range opens up to a whopping tenfold ratio! By simply changing from a high to low leakage inductance coil, or vice versa, you can have a tremendous influence on spark intensity and duration, resulting in altered combustion and measurable effects on the drag strip.
HOW TO DO IT
Before tuning your MSD ignition with various ignition coils, start by opening up your spark gap as far as you can go. Generally speaking, the wider the spark gap, the better the performance of the engine. Bigger gaps initiate the flame kernel better, and start a more robust flame front in the combustion chamber for better power production.
Progressively open the gap until your elapsed times start to fall a little, then back off the gap a smidge. This should get your gap to its optimum opening. Be aware, by the way, that your gap could possibly already be at its optimum, or might even be too wide, so be prepared if you see your times drop rather than improve as you open the gap. This is not too likely, but is possible.
The track surface and weather can change as you make repeated treks down the strip, and these changes could potentially fool you into making the wrong conclusions about your spark gap. Therefore, use the following A-B-A test procedure.
Make three runs down the strip, checking them for consistency. If you are satisfied with the consistency of each run, open the plug gap and make three more passes. Average the results of each group of three passes and use these averages to determine your results. Part way through your testing, set the gap back to an earlier setting and see if your results go back to what they were before. They may not match exactly, but if the trend is in the correct direction, you can rely on your testing results.
COIL TUNING
With your optimum spark plug gap finalized, you can now begin to tune your track performance through coil selection. Bring a high leakage inductance and a low leakage inductance coil with you to the track. consult the ignition companies catalog, Web site or tech line to narrow your choices of coils to test with. An example would be between MSD’s Blaster 2 Coil, PN 8202, with an inductance of 8mH and 100:1 turns ratio, compared to its HVC Pro Power, PN 8251, with 1mH and 85:1 turns ratio.
While you’re investigating coil specifications for your tests, be sure to check out what coils are recommended for your ignition. Not all coils are compatible with every ignition! For instance, the MSD Pro Power Coil, PN 8201, cannot be used with a 6 Series Ignition and will result in poor performance and possible damage to the ignition (due to the coil’s low resistance and the drivers of the ignition). Also, many ignition manufacturers design coils specifically for their ignition components.
Make at least three runs to get to the point where your times are consistent and you are satisfied with them, and then switch coils. Make three more passes and average the results. Then reinstall the first coil again and make three more passes. Do this in order to ensure that weather and track factors have not affected your time slips. The results of your third group of three passes should sum up your first three passes.
Assuming these passes are once again consistent and you are satisfied with the results, compare the performance of the car with the two coils. Which one is better? If the high-leakage inductance coil produces better track performance, swap in a third coil with even higher leakage inductance. Conversely, if the low leakage inductance coil works better, swap in a third coil with even lower leakage inductance. As you continue raising or lowering the leakage inductance, you will eventually reach a point of optimum track performance.
GETTING A RISE
There is one last aspect of coil selection that you should be aware of and that is coil rise time. Once the signal is given to discharge the ignition energy through the coil to the combustion chambers, certain coils retard the passage of the spark energy more than others. The amount of retardation that takes place is partially affected by each coil’s rise time, and the lower the leakage inductance the faster the rise time and the less the retardation of the spark energy.
Thus, as you change the shape of the spark in the combustion chamber by altering the leakage inductance of your coil, you are also introducing a change in the ignition timing itself. If your engine responds to a higher leakage inductance coil, the spark will be delivered to the plugs later. On the other hand, if your engine responds to a lower leakage inductance coil, the spark will be delivered sooner. The difference in timing due to the retarding effect of different coils can be as much as a few degrees from one extreme to another.
CONCLUSION
Putting it all together, track testing for optimum spark gap, optimum leakage inductance, and optimum coil rise time can result in solving your specific problems and improving your competitiveness. You can make the choice to improve your launches and 60-foot times via a lower peak intensity but longer duration spark. While you might lose some speed at the top end, you could potentially gain a better ET by launching harder and carrying that speed the rest of the way down the track.
On the other hand, if you have excess HP at launch and spin the tires, you may want to sacrifice some bottom end power. In this case, you might choose a higher peak intensity coil, but one with a shorter duration. This type of coil can reduce or eliminate tire spin at launch, helping you launch harder and with more consistency, and offer improved top end performance to boot.
The objective in all cases is to produce a lower ET and greater consistency. You can actually tune your ignition system to overcome shortcomings in chassis hookup or top end breathing and can reduce the variability in your track performance and improve your consistency this way too.
As with everything else when it comes to racing, small improvements can often lead to big results. Drag racing is an arena where hundredths and even thousandths of a second can make the difference between victory and also-ran. Coil tuning can play as important a role in quarter-mile performance as dialing in the carb jets and bumping the ignition timing around. Most people have never realized that the coil can be a potent tuning tool when combined with an MSD or other high-performance ignition. Spend some time at the track to find out what your engine wants, and like the pros, the benefits will be yours.
There are plenty of performance coils to choose when you’re looking for every advantage to boost e.t.’s. Simply by reviewing a coil’s specifications and spending some time testing at the track, you will likely find some extra performance when you swap coils.
Different engine combinations may perform better with different spark profiles. The spark needed to fire the aif/fuel mixture of a big block gulping air from a supercharger with climbing cylinder pressures, such as Ray Sanchez’s Super Street Camaro, is different than a large-cammed, loping big block.
Superchargers, turbos and nitrous as found in most of the NMCA street classes all need a high-voltage spark to ionize the plug gap.
Trying out at least three different coils with different specs is a fairly quick procedure with the potential for surprising improvements in performance.
Canister coils, such as the Blaster 2 Coil, feature an improved turns ratio over OEM coils as well as lower primary resistance for higher output.
A low-leakage inductance coil will provide a faster spark with a higher peak intensity and will be capable of running tthrough a higher engine RPM. A high-leakage inductance coil will offer a longer duration spark and a lower peak spark current and will work better with engines that do not rev as highly by helping at lower engine speeds. These generalities will hold true when such coils are combined with CD ignition systems, but will have only a minor effect when mated with standard inductive ignition designs.
MSD offers two coils designed towards drag racing. Both coils feature 1mH inductance and are very comparable when it comes to voltage output. The HVC Coil (left) is capable of producing more current (peak of 1100 mA versus the 800mA). The Pro Power Coil (right) is designed for short duration racing because it will get hot while the design of the HVC runs cooler and can be used on serious street cars.
SOURCES
Autotronic Controls Corporation
1490 Henry Brennan Drive
El Paso, TX 79936
915/857-5200
www.msdignition.com