2004 Mazda 3, No Reserve on 2040-cars
Orange, California, United States
Body Type:Sedan
Engine:4Cyl
Vehicle Title:Clear
Fuel Type:Gasoline
Interior Color: Black
Make: Mazda
Number of Cylinders: 4
Model: Mazda3
Trim: Sedan
Warranty: Vehicle does NOT have an existing warranty
Drive Type: unknown
Mileage: 138,984
Exterior Color: Gray
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2023 Honda Pilot and the promise and pitfalls of PHEVs | Autoblog Podcast #766
Fri, Feb 3 2023In this episode of the Autoblog Podcast, Editor-in-Chief Greg Migliore is joined by Associate Editor Byron Hurd for a chat about the new 2023 Honda Pilot and its beefed-up TrailSport model. After that, we get a winter-weather long-term update on the BMW 330e care of Greg. Then, it's on to news. The big headlines this week were the brand-new Mazda CX-90 crossover and word that Genesis plans to build its outrageous (and expensive) X convertible concept. Is the world ready for a Bentley fighter from Korea? Send us your questions for the Mailbag and Spend My Money at: Podcast@Autoblog.com. Autoblog Podcast #766 Get The Podcast Apple Podcasts – Subscribe to the Autoblog Podcast in iTunes Spotify – Subscribe to the Autoblog Podcast on Spotify RSS – Add the Autoblog Podcast feed to your RSS aggregator MP3 – Download the MP3 directly Rundown Cars we're driving 2023 Honda Pilot 2022 BMW 330e xDrive  News 2024 Mazda CX-90 three-row SUV revealed, with your choice of inline-6 or PHEV The ravishing Genesis X Convertible Concept is going into production Feedback Email – Podcast@Autoblog.com Review the show on Apple Podcasts Autoblog is now live on your smart speakers and voice assistants with the audio Autoblog Daily Digest. Say “Hey Google, play the news from Autoblog” or "Alexa, open Autoblog" to get your favorite car website in audio form every day. A narrator will take you through the biggest stories or break down one of our comprehensive test drives. Related video: This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings.
Leaked images show digital gauge cluster for Mazda3
Wed, Mar 14 2018Most everything divulged about the 2019 Mazda3 so far has focused on the trick Spark Controlled Compression Ignition (SPCCI) Skyactiv-X engine. If a series of photos posted on a Chinese website are accurate, it looks like Mazda has novel plans for the cockpit as well. The three images show a three-color, all-digital gauge cluster in two different configurations. The first configuration places a three-digit speedo in the center of a blue-ringed tachometer, with gear indicator and water temp displays on the left, fuel range calculator and what appears to be a funky clock on the right. The second configuration splits the tachometer to the left and the speedo to the right. In between them is what looks like a road surface display for automatic cruise control. Trip info lies just under the blue-banded road, while water temp, fuel gauge, gear indicator and range info line up across the bottom. A swath of empty space on the left could be where Mazda's relocated the current car's passel of warning signals. Of note: Everything around the digital gauges appears to come straight from the current Mazda3. The instrument panel surround, the steering wheel and buttons, the stalks, all of it is lifted from today's car. If the photos are what's headed our way on some trim of the 2019 Mazda3, though, they show a clean, handsome evolution of the no-nonsense cluster in the current compact hatch. Mazda's worked up a head of good press on the run-up to the Mazda3 launch for both the engine and the dynamics. We're told we'll get between 10 and 30 percent more torque from the 2.0-liter SPCCI Skyactiv-X, and about 25 percent better fuel economy compared to today's 2.0-liter Skyactiv-G. Handling-wise, the jinba ittai philosophy — horse and rider as one — has led to engineers reworking everything from tire sidewall stiffness to multi-contoured torsion elements and the mounting and shape of the seats. The hatchback's torsional stiffness climbs by 30 percent, any excess rigidity countered by 7.5 meters of "matrix resin material" applied in 16 places on the body "to absorb vibration and dissipate it as heat." The point has been to eliminate dynamic static between the driver and the road, and then to give the driver the best natural seating position to take advantage of the body's reflexes to dynamic input. At the same time, this digital gauge cluster might also give that driver something tasty to look at. Related Video:
Mazda files patents for a sequential twin-turbo setup
Fri, Dec 8 2017Mazda has a history of interesting engine technologies, from yesterday's rotary engine to tomorrow's compression ignition engine, and new patents show it still may have some internal combustion tricks up its sleeve. The one on display in these patents isn't especially new in concept, though. A sequential twin-turbocharger setup is something Mazda itself used on the third-generation RX-7. But it's something we haven't seen much of lately. It looks like it could have some possible advantages over older sequential systems, and it has some potential advantages for enthusiasts. First a quick and dirty primer for what makes a sequential twin-turbo system distinct from other twin-turbo systems. In many twin-turbo engines, there are simply two turbos that work together as one bigger turbo. They're the same size, and they spool up at the same time. With a sequential setup, at low rpm, a smaller turbocharger is spooled up first at low-rpm for quicker throttle response, and as the rpm and exhaust pressure increases, a valve opens up that allows a larger turbocharger to also spool up and provide high-rpm boost. That's basically how the Mazda design shown above functions. A big flap blocks off the larger turbocharger exhaust inlet, channeling all the exhaust to the smaller turbo. When more exhaust is available at high rpm, it looks like that flap opens up to spool up the big turbo, too. What's interesting here is that the way the turbochargers are packaged takes up less space than past systems. It looks like both turbos are contained in one unit that shares the same exhaust outlet, meaning the exhaust manifold could be kept simple and compact. In fact, the piping for compressed intake air could also be shared, reducing the amount of piping, which would further decrease the amount of materials and possible failure points. There are a number advantages of making this system smaller. The potential applications of the system are much greater, since it could fit in smaller cars with smaller engine bays. Making the system smaller also means that there won't be as much weight, which is important from both fuel economy and performance standpoints. Finally, the smaller setup likely uses fewer materials, which could make the system cheaper and thus easier to offer on a wider range of vehicles, or at least more profitable for Mazda.











