aFe POWER 76mm Throttle Body: 2010–23 Toyota 4Runner



Another new product announcement for the 5th gen 4Runner from aFe Power.

aFe POWER 76mm Throttle Body: 2010–23 Toyota 4Runner


46-39102_ls1.1688055718.jpg

Increase airflow and create more turbulent air increasing performance and throttle response with aFe Power's 76mm Throttle Body for the 2010–2023 Toyota 4Runner. Designed to work with OEM or aFe cold air intakes, this throttle body offers direct plug-n-play electronics with no tune required. Upgrade from the factory 68/70mm throttle body to the larger Toyota spec'd 76mm throttle body. This upgrade works exceptionally well with superchargers and other bolt on performance parts.

Constructed of 6061-T6 billet aluminum, the aFe Power Throttle Body is precision machined, keeping it lightweight and durable, and offers a perfect fit and finish. The included adapter plate offers a serrated/swirled combination design to create intake turbulence, breaking up the fuel in the combustion chamber, delivering a complete combustion cycle, increasing horsepower and torque, and improving throttle response.

advanced FLOW engineering, or aFe Power, is a premier designer and manufacturer of automotive performance upgrade systems and components. aFe Power is passionate about providing the most compelling, innovative, and highest-performing products that are all designed, built, and tested in the USA.

Features:

76mm bore diameter
Billet aluminum adapter plate
Plug-n-play electronics; no tuning required
Hardware and gasket included

Application: 2010–2023 Toyota 4Runner/ Toyota FJ/ Toyota Tundra/ Toyota Tacoma

Part Number: 4639102

aFe POWER 10-23 Toyota 4Runner V6 4.0L / 10-14 Toyota FJ Cruiser V6 4.0L 76mm Billet Throttle Body
 
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Anyone have a good back of the envelope idea of HP/torque gains that could be expected with one of these? For the price seems like a pretty good option, especially if combined with a CAI system...
 
A modern PCM/ECM will just open the throttle plate less to adjust for the increase in air flow. Resulting in the same power as before.

A horrible waste of money without a custom tune.
 
Would want to see documented test results before plunking down $$. Most claimed HP increasers do it at higher rpms which are virtually useless in most driving situations.
 
Just installed mine, can't wait to see what if any gains I can notice. I have an ECU tune and they said it shouldn't cause any issues with my tune, but definitely curious to see how the truck takes to the increased airflow. I'll report back once I run it through it's paces for a few days.
 
These typically do not provide much gain on their own as the intake manifold neck is still only matched to 70mm. They had the same upgrade available for my G35 to upgrade from OEM 70mm to the maxima 75mm TB and there were barely any gains to be had on its own unless you ported the intake manifold out. Maybe 12hp at the top end of the RPM range like 5k+rpm, which in our case would typically not be in a usable range.

I would be interested in it as well if it was proven to provide low end gains as I already have a magnuson with a custom tune. Since I live at altitude and travel mostly between 6500-12k ft any extra air flow is appreciated.
 
if it doesnt cause an issue with a tune, that must mean it doesnt affect airflow enough?

i'm interested to see some reviews. even if it doesnt add power, it could change the power curve and make the car more drivable. or at least less boring.

guys used to swap the GM TB's onto the nissan 5.6 v8. solid gains but mostly when they had supporting mods like header back exhaust, tune, cai.
 
if it doesnt cause an issue with a tune, that must mean it doesnt affect airflow enough?

i'm interested to see some reviews. even if it doesnt add power, it could change the power curve and make the car more drivable. or at least less boring.

guys used to swap the GM TB's onto the nissan 5.6 v8. solid gains but mostly when they had supporting mods like header back exhaust, tune, cai.

The difference would not be enough to trigger a CEL anyway I don't think. on the vq35 the 75mm TB was plug and play. The main problem with the GM TB on the titan was because of the difference in modulation/readings on the TPS, not so much the amount of airflow difference. That harness those guys used to sell with the conversion had a resistor in it that fixed it so the TPS would give proper readings.

It would be worth it to get more low end power, but I looked back at the the VQ35 dynos and it had no change until 5.5k RPM where it started gaining till 7k.
 

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