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  1. Conquering the Catch Can - Part 3: Final Prototype Testing

    Conquering the Catch Can - Part 3: Final Prototype Testing

    If you remember from our last post about the Titan XD catch can, we ran into some challenges with the first and second prototypes. Since then we have perfected our design, so without further delay, let's look at our final prototype for testing.

    Final Prototype

    With the check engine light vanquished, our last update left us with a slightly different hurdle to climb. A buildup of condensation in the system had us a tad worried about possible freezing in the winter. Little did we know that the solution was right in the Titan's engine bay. One of the benefits of working on a larger truck is that there is more room under the hood to work with. We used this to our advantage and decided to relocate the can to another spot in the engine bay - one that would see more heat. The idea is that extra heat introduced to the catch can will burn off a good deal of the moisture and prevent freezing of the can. A fine theory, but let's see it in practice.

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  2. Diff's Hot, Take it Easy - Part 1: The Rear Differential

    Diff's Hot, Take it Easy - Part 1: The Rear Differential

    At Mishimoto we are big fans of our little blue car. Over the past few months you could say we have formed a bond that only burnouts and track days can build. In testing various Focus RS parts (and maybe doing a few donuts, for science) we noticed that it is very easy to make the rear differential in the RS angry, and you won't like it when its angry. The rear diff makes the rules. Overheat it, and you're likely to end up parked for the day. When the rear diff heats up, the ECU in the RS pulls power in an attempt to cool it down. Therein lies the problem: We have a car that begs to be driven to the absolute limits and rear diff that is programmed to shut down when it reaches a certain temperature. Don't get us wrong, the problem doesn't seem to be with the diff itself, but rather with its inability to dissipate heat fast enough to keep up with this blue bat out of hell.

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  3. A Real F-150'n Beaut'! - Intercooler R&D, Part 4: Final Aesthetic Form

    A Real F-150'n Beaut'! - Intercooler R&D, Part 4: Final Aesthetic Form

    As we approach the holidays, I want to get into the giving spirit by sharing some photos with you of how our final 2015+ F-150 EcoBoost intercooler will look. But first, I'd like to thank you all for your patience. This is a busy time of year, and the R&D for this intercooler has been an iterative one, but quality takes time and we've got a part on our hands that looks fantastic - I'm sure you'll all agree. You can see evidence of this by checking out our 2011-2014 EcoBoost Intercooler!

    Last time, we 3D-printed some EcoBoost intercooler end tanks and sized up some foam to represent our intercooler core. For all our projects, this step in the process serves not only to save resources, but also to give us some flexibility in changing

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  4. Conquering the Catch Can - Part 2: Prototype Update

    Conquering the Catch Can - Part 2: Prototype Update

    If you remember from our last post about the Titan XD catch can, we ran into some challenges with the first prototype. Since our existing catch can design did not agree with the Titan, it was back to the drawing board for our lead engineer, Dan.

    Updated Design

    Our standard catch can when installed on the Titan was generating a code causing the truck to go into limp mode. The cause of the code stemmed from our standard catch can being too restrictive for the Titan's beefy Cummins engine. This is not surprising, given the 50 micron filter and smaller design of the can, which was originally designed for gasoline-powered cars. This catch can design functions beautifully on smaller turbo engines such as the Focus and Fiesta, as well as larger American V8s in the new-generation Camaro SS and Mustang GT. It just might not be suitable for the turbo diesel V8 in our

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  5. ReSpiration Focal Point - Performance Intake R&D, Part 5: C'est Fini

    ReSpiration Focal Point - Performance Intake R&D, Part 5: C'est Fini

    This 2016+ Ford Focus RS Performance Air Intake is now available! Click here to check it out!

    Here it is, the final hoorah. The production sample of our intake kit for the 2016 Ford Focus RS is here at last. In the last update, we took you guys through what this intake sounds like with the help of some dyno runs; it sounds awesome and it made 11hp and 15ft-lbs of torque! I'm happy that you guys have stuck with me through the long development process, but there is a light at the end of this R&D tunnel. I know you guys want to see what the finished product looks like, so let's check it out.

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  6. Defending the Titan- Coolant Filtration Kit R&D, Part 2: Final Prototype

    Defending the Titan- Coolant Filtration Kit R&D, Part 2: Final Prototype

    Last time, we took an in-depth look at coolant filtration kits and how they can benefit our Titan. We gave you a sneak peek at what the final bracket for the Titan XD coolant filtration kit will look like. If you missed out on that you can check out the whole post on our engineering blog.

    Finalizing the brackets

    These brightly colored brackets were created with the help of 3D printing. This is just one of our rapid prototyping techniques that helps us create accurate prototypes the first time around. This allows us to bring great-looking AND great-fitting products to you in much less time.

    Prototype bracket for the Titan XD coolant filtration kit
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  7. Mopar, Mo' Cooling - Aluminum Radiator R&D, Part 2: Test, Test, Test

    Mopar, Mo' Cooling - Aluminum Radiator R&D, Part 2: Test, Test, Test

    The 5.7L fitment of this radiator is now in pre-sale! Get it now for more than 30% off!

    2006-16 Dodge Charger 5.7L V8 Aluminum Radiator Pre-Sale

    2005-13, 2015 Chrysler 300 5.7L V8 Aluminum Radiator Pre-Sale

    2009-16 Dodge Challenger 5.7L V8 Aluminum Radiator Pre-Sale

    America loves the V8...and so do I

    The American V8 has always held a special place in my heart. My father owned a 1973 Ford Mustang Mach 1 with a 351 Cleveland motor (it was green). That car was rear-ended by a bus long before I was born, so I never experienced it for myself, but I got to

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  8. Cooling is Coming- Intercooler R&D, Part 1: Stock Evaluation

    Cooling is Coming- Intercooler R&D, Part 1: Stock Evaluation

    We have been working on the Titan XD for quite some time now. We have gone through a variety of products like the intercooler pipe kit, coolant filtration kit, and exhaust. Now we are down to the bread and butter of our Titan XD parts: the intercooler.

    When we begin projects, we like to start by evaluating the stock component and looking for areas where we can make improvements. The stock intercooler in the Titan is fairly sizeable and features cast aluminum end tanks, which we don't normally see on stock intercoolers. Nissan has started off on the right foot with this intercooler. Still, we are confident that we can take it a few steps further with our intercooler design.

    Stock Nissan Titan XD intercooler
    Stock Nissan Titan XD intercooler
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  9. The Rise to Power - Downpipe R&D, Part 1: Stock Review

    The Rise to Power - Downpipe R&D, Part 1: Stock Review

    I think we can all agree that the past couple weeks have been quite eventful here in the United States.

    Regardless of which political candidate you supported, it's time to move on and unify now that our election has concluded. Whether or not we're happy about the outcome, we - as a society - need to be working together now. But certain Facebook friends can't seem to figure that out. You all know the one(s). Regardless of their political allegiances, they flood our news feeds with statuses high in pressure and often full of hot air. It's utterly exhausting - if only there were some way to get these people to pipe down.

    The Camaro downpipe connects to the back side of the turbo.
    The Camaro
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  10. Little Caddy - Catch Can R&D, Part 4: ATS Hose Routing

    Little Caddy - Catch Can R&D, Part 4: ATS Hose Routing

    Hello to all my wonderful Camaro 2.0T and Cadillac ATS owners! In our last update, we made the big reveal of our patent-pending blow-by tap. We drilled down into the details of how we plan on mining that nasty vein of oil vapor out of your LTG and transporting it to a catch can, instead of into your intake manifold.

    Today, we're going to take it back to basics a little bit and look specifically at that whole "transport" element. To go even further back to basics, check out our technical section to see why blow-by is so bad for your engine over time. You know all about the complex, unique parts of this Camaro catch can project, but what about something as simple and ubiquitous as the hoses?

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