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Standard Turbo

Maxpeedingrods equips your vehicle with a cost effective turbocharger system. A turbocharged car has about 20-25% more total power than a non-turbo car of the same year, make and model. If your car's original turbocharger not performing well, or needs to be replaced, Maxpeedingrods stocks all the best OEM-quality turbochargers and universal turbocharger got just what you're looking for. 

Don't hesitate to get a Maxpeedingrods turbo to boost your car's power.

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Compatible for Ford Ranger 153HP/114KW 2.2TDCI Turbo Turbocharger

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$460.00

Compatible for Ford Transit 2.2L TDCI TD03 Turbo Jum 2.2HDi Turbolader Turbocharger 49131-

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$342.00

Turbo Turbocharger compatible for VW Bora Sport compatible for Golf Beetle 1.8T K03 06A145704S 06A145713B

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$329.00

Turbo Turbocharger compatible for Hyundai Terracan 2.9 CRDi 4WD 28201-4X701 150HP KHF5-2B

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$286.00

Universal Turbocharger with Gasket Twin Scroll Power up to 300-800HP 177281

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$458.00
-16%

Water Cooled Turbocharger compatible for Mitsubishi L300 Pajero Shogun 4D56T 2.5L TD04-10T 92-96

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$236.00 $281.00

Compatible for Isuzu NRR NPR Truck compatible for GMC W 5.2L 4HK1 Engine 898027-7731 Turbo Turbocharger

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$515.00

Turbocharger for Volvo C60 C70 S50 S60 S70 S80 XC60 2.0L SCTi EcoBoost 09-14

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$585.00

Turbocharger compatible for VW Sharan compatible for Ford Galaxy compatible for Seat Alhambra 1.9TDi Turbine 110HP 701855

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$630.00

Turbocharger compatible for RENAULT Laguna II 1.9 dCi 8v F9Q 1.9L 118HP 2001-2005 for GT1749V

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$572.00

For GT1749V Turbo compatible for Charger compatible for Audi A4 2.0 TDI 140HP 103kw BRE BRF BVG BVF 758219

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$394.00

Turbocharger compatible for Citroen C1 C2 C3 Xsara 1.4L D DV4TD / 8HX KP35 Turbo

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$234.00

TD025M Turbo Turbocharger compatible for Hyundai Elantra Santa Fe Trajet Tucson 2.0L D4EA

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$367.00

53039880016 Left Turbo for AUDI  A6 2.7T QUATTRO 2.7L P AJK K04-025 1999-2002

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$321.00

K04 025 026 Turbolader Turbo Charger compatible for Audi RS4 BI S4 A6 2.7T ASJ AZR AGB AZB

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$615.00
Showing 121 to 135 of 168 (12 Pages)
  • What is A Turbocharger?

    A turbocharger(turbo)is a turbine-driven forced induction device that increases an internal combustion engine’s efficiency and power output by forcing extra air into the combustion chamber. When a turbocharger brings more air into the chamber, it gets mixed with more fuel, yielding more power as a result. In reality, the turbo doesn’t really get “extra air” into the engine, it actually compresses the air, which means there are more molecules being packed into the same space.

  • How Does a Turbocharger Work?

    The most basic observation we can make about a turbocharger is that it is made up of two main sections: the turbine and the compressor. The turbine consists of the turbine wheel and the turbine housing. As your engine is running it creates exhaust gasses, these exhaust gasses would otherwise be wasted, but on a turbocharged engine, these hot and fast-moving gasses are used to drive the turbine wheel. On the other side, it is the compressor. The compressor also consists of two parts: the compressor wheel and the compressor housing. The compressor wheel has a fixed connection to the turbine wheel via a common shaft. When you spin the turbine wheel, you also spin the compressor wheel. The compressor wheel shape is designed to suck in air into the turbocharger. It’s called the compressor wheel because other than sucking the air in, the compressor wheel plays an important part in compressing the air, after which it sends the air through the compressor housing into your engine intake manifold and your combustion chamber. The compressed air is pushed into the engine, allowing the engine to burn more fuel to produce more power.

  • How to choose the right turbocharger?

    When choosing a high performance turbocharger, first determine your horsepower goals. Each turbocharger has a corresponding horsepower and engine displacement. If a turbocharger is too large for your engine, you will have a lot of turbo lag, and if a turbocharger is too small for your engine, you may not reach your horsepower goal. When selecting compressor and turbine housings, choose the one that will pump the most air into the cylinders, but will not raise the temperature above that specified by the complex laws of thermodynamics. As size increases, efficiency decreases and heat rises. As efficiency decreases, air density decreases, and in turn, the amount of air available for the combustion chamber decreases. The things to be concerned about are horsepower and airflow. Lower boost pressure means that whatever turbo you use will produce less heat and work less hard, but all of this is of little consequence to your engine, which will decide whether to blow itself to pieces or produce a lot of power based on cylinder pressure rather than boost.

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