What We Don’t: Least powerful of all the factory intakes Check out the results to see how your favorite or future favorite fared. Naturally, air/fuel, timing, and temperatures remained constant during testing. The various intakes were run with no less than eight different fuel rails, seven different throttle-bodies, and three different style injectors. Topping the 6.0L was a set of AFR LSX 230 V2 heads. The Comp 469 cam offered a 0.617/0.624-inch lift split, a 231/247-degree duration split and 113-degree LSA. The iron-block 6.0L featured a stock block and crank mixed with Carillo rods and CP flat-top pistons. Speaking of combos, our test motor was built to simulate your basic hot street-strip setup. This test should provide you info on what design might work best for your combo. If you’re looking for the “best” single intake on the market for every application-such an animal does not exist. Intake manifolds are combination specific, meaning that the ideal intake for an 8,000-rpm stroker combination would be different than one designed for a stock 4.8L truck motor. The first is that no intake test, including this LS extravaganza, is absolute. Though we know you have already skipped ahead to the data, there are two important points to consider. In short, this was the most extensive LS intake manifold test ever devised. That is why we are also including average power production from 3,000 to 7,000 rpm, torque production at 4,000 rpm, cost, throttle opening, runner length, composition, and even What We Liked and might change on each design. While peak power gains offer enticing Internet banter, changes in the entire power curve are the real story. Imagine that, an intake swap that yielded 60 extra horsepower, but that isn’t the whole story. One need only look at the peak power difference between the least and most powerful intakes in this shootout was more than 60 hp. Is an intake manifold an important part of a performance LS build? The answer is, obviously, yes. Don’t Even Think About Swapping Your LS Intake Until You Read This
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