Performance Turbos
Unleash the true potential of your vehicle with Performance Turbos from Vivid Racing. Our extensive selection features high-quality turbochargers designed to boost power and enhance performance, delivering an exhilarating driving experience. Whether you're a street racer or a track enthusiast, our top-tier options will help you achieve your horsepower goals and dominate the competition. Upgrade your ride today and feel the difference in every rev!
ATP Turbo GT3582R dual ball bearing turbo with .82 A/R T31 Narrow 4 bolt Turbine Hsg
ATP Turbo GT3582R dual ball bearing turbo with .82 A/R T31 Narrow V-Band Exit Turbine Hsg
ATP Turbo GT3582R turbo with .61 A/R Garrett UND Vband Tbn Hsg, Vband 3 Exit
ATP Turbo GT3582R, T04S frame 4" in 2.5" out with .63 A/R TiAL SS V-band HSG
ATP Turbo GT3582R, T04S frame 4" in / 2.5" out w/ 1.06 A/R TIAL SS V-Band HSG
ATP Turbo GT3582R, T04S frame 4" in / 2.5" out with .63 A/R T3 Tbn Hsg GT Vband 3 exit w/81mm lip
ATP Turbo GT3582R, T04S frame 4" in / 2.5" out with .82 A/R TIAL SS V-Band HSG
ATP Turbo GT3582R, T04S frame 4" in / 2.5" out with 1.06 A/R T3 Tbn Hsg GT Vband 3 exit w/81mm lip
ATP Turbo GTW3884JB Garrett 64mm, JB, Tbo .78 A/R T3 Divided with 3" V-Band
ATP Turbo GTW3884R Ball Brn Tbo, 64.3 mm, .78 A/R T3 Divided with 3 V-Band
ATP Turbo GTW3884R Garrett Ball Bearing (62.3mm) .78 A/R T3 Divided with 3" V-band
ATP Turbo GTX2863R Garrett - T04B Compressor Hsg. 3" Inlet .72 A/R V-Band Turbine Hsg.
ATP Turbo GTX2863R Garrett Dual Ball Bearing Turbo with .64 A/R T25 INT W/G Turbine Hsg
ATP Turbo GTX2863R Garrett Dual Ball Bearing Turbo with .86 A/R T25 INT W/G Turbine Hsg
ATP Turbo GTX2967R DBB turbo with .61 A/R Garrett UND Vband Tbn Hsg, Vband 3" Exit
ATP Turbo GTX2967R DBB turbo with 14psi act .64 A/R T25 Flanged Garrett Int W/G Tbn Hsg
ATP Turbo GTX2967R DBB turbo with 14psi act .86 A/R T25 Flanged Garrett Int W/G Tbn Hsg
ATP Turbo GTX3067R dual ball bearing turbo with .82 A/R T3 UND Welded 3" GTVB
ATP Turbo GTX4202R Garrett 76mm Ball Bearing 1.01 AR T4 Divided Turbine Housing
ATP Turbo GTX4202R Garrett 76mm Ball Bearing 1.01 AR T6 Divided Turbine Housing
ATP Turbo GTX4202R Garrett 76mm Ball Bearing 1.02 AR TiAL V-Band Turbine Housing
ATP Turbo GTX4202R Garrett 76mm Ball Bearing 1.15 AR T4 Divided Turbine Housing
Performance Turbos | More Boost!
Need more power? If you own a naturally aspirated engine, chances are, you'll make immense power when you install performance turbos. But if you want more boost, removing your factory turbo and installing bigger turbos is the only way to go.
A turbocharger uses the velocity and heat energy of the hot exhaust gases rushing out of an engine's cylinders to spin a turbine that drives an impeller, which compresses more air back into the engine. A supercharger also pumps additional air into the engine. It is still instead driven mechanically by the engine via a belt that runs off the crankshaft or, these days, by an electric motor.
Turbochargers capitalize on some of the "free" energy that would otherwise be lost entirely in the exhaust. Driving the turbine does increase exhaust back-pressure, which exerts some load on the engine, but the net loss tends to be less than the direct mechanical load that driving a supercharger involves.
The turbo's primary drawback is lag. Because a supercharger uses the engine's own power to spin itself, it siphons power—more and more of it as engine revs climb. Supercharged engines tend to be less fuel-efficient for this reason. For developing mega power with instant kick-you-in-the-back throttle response, supercharging is unparalleled.
How Much More Power Will My Engine Make?
Naturally aspirated engines operating at sea level get air at 14.7 psi, so if a turbo or supercharger adds seven psi of boost to an engine, then the cylinders themselves are getting roughly 50 percent more air should theoretically be able to produce about 50 percent more power.
But compressing intake air adds heat, which with the added pressure, increases the likelihood of engine-damaging pre-detonation or "ping," so the timing has to be retarded.
This can limit the amount of time the fuel has to burn and ultimately erodes some of the power gains. Most modern engines running turbos and superchargers also include intercoolers to help remove some of the turbo or supercharger's heat. In the end, the typical expectation is that adding 50 percent more air yields 30 to 40 percent more power.
But of course, it can be more. But that requires strengthening the block, installing new pistons, new camshafts, and new valvetrain components. These upgrades are essential to make your engine handle the power and not make it a ticking time bomb.
Vivid Racing carries high-performance parts for almost any need. Click these links to choose from our selection of Body Kits, Big Brake Kits, Seats, Custom Wheels and Tires, Engine Parts, Exhaust Parts, Intakes, Suspension, and Transmission Parts.
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