Full-Time
Updated on 9/3/2026
Manufactures high-performance luxury cars
$91.5k - $145.4k/yr
Torrance, CA, USA
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Czinger Vehicles is a Los Angeles–based maker of high-performance luxury cars that relies on proprietary technology to design and manufacture its vehicles. Its products, starting with the 21C, use a combination of human-led and AI-assisted design and advanced manufacturing methods to deliver exceptional performance while prioritizing environmental sustainability. The company targets automotive enthusiasts and wealthy buyers who want cutting-edge performance, design, and limited-production exclusivity. Czinger differentiates itself from competitors through its integration of proprietary design and manufacturing technologies and its commitment to sustainable practices within the luxury performance segment. Its goal is to transform the automotive industry by delivering hyper-efficient, high-performance cars and redefining how such vehicles are designed and produced.
Company Size
51-200
Company Stage
N/A
Total Funding
N/A
Headquarters
Los Angeles, California
Founded
2019
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Czinger update: the world's most advanced road car just got better. Michael Teo Van Runkle, Contributor Updated Mon, August 31, 2026 at 12:27 PM PDT On a familiar stage at The Quail, A Motorsports Gathering during Monterey Car Week this year, California's high-tech automotive startup Czinger unveiled a new open-top variant of the world-beating 21C hypercar. The new 21C Spyder marks not just the addition of a new model to the lineup, however, but also takes aerodynamic performance to new levels as a further demonstration of Czinger's revolutionary algorithmic design and development methodology. Far more than a chop-top, the 21C Spyder's updates extend beneath the svelte carbon-fiber skin, including the production version of a one-piece Brake Node teased many years prior, as well as a new cockpit design with greater driver integration and more textural touchpoints. On the stage at The Quail, I spoke with CEO and Cofounder Lukas Czinger about the unique challenges of continuing to refine arguably the world's most technologically advanced road car. A Spyder top with no performance drop. Due to the 21C's unique 1+1 layout, where the passenger sits directly behind the driver, the concept of a convertible or even a Targa top clearly requires a distinct decision about how, exactly, to remove the roof. "We thought about doing a smaller version," Lukas Czinger revealed, "Where the passenger would still be covered, but the driver's uncovered. But we wanted the full roadster feel, the full atmosphere." Deciding to commit to such a long expanse of removable roof might potentially ruin some of the potency that makes the 21C a standout vision of automotive performance, though. Czinger claims the Spyder can hit the same top speed of 205 miles per hour as the high-downforce variant, critically with the roof removed. All while creating 3,307 pounds of downforce with the roof on, and somehow still 3,267 pounds with the roof removed. "You have to do quite a bit of work to get your aerodynamics to still work," Lukas Czinger admitted, pointing to details across the chassis from the extended front splitter to twin dive planes and the massive rear wing. "It's not like you're just cutting out the midsection. This is a whole new tub that gives the right rigidity. The engineering team did a tremendous job, we're down only 40 pounds of downforce compared to the coupe." The removable solid roof weighs just 22 pounds and affixes from the inside of the cabin with only two latches. The 21C Spyder comes with a stand to hold the roof when not in use, as well as a foldable soft top that can cover the cockpit while parked or in the event of inclement weather. Tech beneath the skin. As surprising as a convertible version of the 21C might seem, it can't quite match the fact that when I drove a 21C, that car actually lacked the famous Brake Node design that Czinger previewed well before eventual production even began. This single integrated unit that combines the wheel hub, suspension upright and brake caliper always promised incredible advantages in terms of unsprung mass, fluid routing, and ease of maintenance. So I asked for a brief explanation of why this part in particular took so long to introduce alongside the 21C Spyder. "This is not a small project to do a full braking system," came the response. "Two-plus years of R&D, two-plus years of validation, basically since the very start of Czinger, this project has been ongoing. We're all for being a bit of cowboys in terms of moving fast and innovating, but that's the system where we said, if anything, we should be a bit cautious and test for all the corner cases." Again, the unique challenges of Czinger's Pareto-optimized design and production methods required additional effort here. A low silicon content in the Brake Node's 3D-printed alloy helps prevent corrosion from highly caustic brake fluid, and Czinger also tested the integrated brake lines within the rigid metal up to 500 bars of pressure (7,251 psi). That measurement is eight times the standard operation pressure, while titanium caliper pistons up front both save weight and help to keep brake fluid temperatures 15% lower. I'll be curious how the pedal feel of the 21C improves with the Brake Node, since the non-equipped car already bordered on requiring legitimate race car levels of muscle to operate. But Lukas Czinger pointed out that testing revealed a 15% reduction in stopping distance, in addition to the 1.5 pounds of weight saved at each corner - again, compared not to any car but rather the original 21C, which already set a new industry standard before adopting the Brake Node. Updating the 21C's driver controls. On the 21C Spyder's interior, a welcome update to the instrumentation and switchgear helps to bring this hypercar to a level of design and tactility that earlier cars lacked. Specifically, I thought the original rubbery buttons reminded me a little of a jet ski during my test drive, but no longer. A new 3D-printed structure clearly stands out as more Czinger-esque, and the machined metal controls look much better texturally. "We knew the switches could be improved, we felt that way ourselves," admitted Lukas Czinger. "And then we didn't just want to take an incremental step, you know, to just go from a plastic to a metal for the switches themselves. We thought about how could we change this entire center console? How could we do the AC in an improved way, the instrument cluster, the stiffness of the steering rack, all of that into one piece, and I think it came out exceptional." The climate control air now flows through the sinuous metal, plus the interior now receives both a phone and key mount, as well as a cupholder. The entire design now better lives up to the promise of the 21C's aggressive exterior, not to mention seven-figure pricing. New features available for backdating original cars. As an added benefit, Lukas Czinger also told me that other than the convertible top, the new Brake Node and Neural Node can be backdated to earlier customer builds. "The car evolves, right, and that's our philosophy, as well," he said. "We've already had a lot of customer cars in to swap them out, actually." It's great to see how committed Czinger remains to the automotive project, since the 21C originally served as something of a proof of concept for the underlying tech as much as a record-setting performance machine. While extending the Divergent system of production to other industries, Czinger could have easily lost track of what automotive enthusiasts love. Now more fully optimized than ever before, the 21C Spyder introduces critical improvements to quite possibly the most hardcore vehicle ever built for public roads, all without losing the comfort and enjoyable elements of driving fun along the way.
Czinger has unveiled its BrakeNode, an integrated brake assembly that combines the caliper, upright, and hydraulic fluid passages into a single 3D-printed aluminium structure. The component debuted on the new Czinger 21C Spyder. The BrakeNode reduces unsprung mass by up to 30% compared to standard brake assemblies. On the 21C Spyder, it saves 6 lbs (2.7 kg) despite the previous model already featuring advanced additively manufactured components. Czinger says the design simplifies servicing. It features a bottom drain plug for hydraulic fluid, top-slotting brake pads, and outward-tilting rotors, eliminating the need to disconnect the caliper during maintenance. The BrakeNode comes standard on the 21C Spyder, limited to 30 units. Existing 21C owners can retrofit the component, which is also available on the 21C HDF and VMax models.
Czinger 21C Spyder has more downforce than any other convertible and the coolest brakes you'll see all Week. Daniel Golson Fri, August 14, 2026 at 12:01 AM PDT California-based automaker Czinger has more than proved itself as not only a leader in hypercar performance and engineering, but a groundbreaking manufacturer in general thanks to its 3D-printed BioLogic construction that comes from parent company Divergent (both of which were started by father/son duo Kevin and Lukas Czinger). The Czinger 21C is already impressive enough sitting still, with its tandem seating position and wild aerodynamics, and then you hear about its 1,250-hp hybrid powertrain and all the lap records it's set, from Laguna Seca to Goodwood. The car is also homologated and crash-tested for all 50 states, and the company has already delivered a bunch of them to customers. So how do you make a car like that even wilder? You slash the roof off. Enter the Czinger 21C Spyder, which is making its debut at Monterey Car Week. In addition to having a removable roof panel, the 21C Spyder features Czinger's new BrakeNode technology, an updated dashboard design and new styling options. Did I mention that it has more downforce than any other open-top road car? It's quite fast. The carbon-fiber roof panel is like one long sunroof that covers the whole passenger compartment, essentially the same size as the coupe's panel. Czinger says it weighs only 22 pounds and is easy to take off with two latches, and when it's not affixed to the car you can mount it on the BioLogic frame in your garage. In case you encounter some bad weather while out and about, there's a foldable soft top that can be stowed in the car. Czinger says it did new crash tests for the Spyder to make sure the roof would be complaint with FMVSS and other safety standards around the world. The 21C was developed with a convertible variant in mind, so Czinger says it didn't need to do any structural changes to the tub, but it did add carbon-fiber piling in the A-pillars for better rollover safety. The whole car weighs 3,571 pounds, just 22 more than the coupe. Other than the roof panel, the 21C Spyder looks identical to the coupe. It shares the High Downforce aero package that's optional on the hardtop, which includes a front splitter, canards and that huge rear wing. Czinger says that at 150 mph the 21C Spyder produces 3,307 pounds of downforce with the roof on, matching the coupe, and with it off that figure slightly drops to 3,267 pounds. To put that into perspective, the McLaren W1 generates a maximum 2,205 pounds of downforce at 174 mph. Like its coupe sibling, the 21C Spyder is powered by a Czinger-developed twin-turbocharged 2.88-liter V8 with a flat-plane crank, which makes 750 horsepower and 396 pound-feet of torque and revs to 11,000 rpm. It's mated to a 7-speed sequential automated manual transmission and augmented by a trio of electric motors - two on the front axle and one connected to the crankshaft - that add another 500 hp and 295 lb-ft. That rear motor helps to reduce turbo lag, but it's mainly used as a generator for the pair of 800-volt 2.1-kWh battery packs. Total combined output is 1,250 horses and 691 torques, which is good enough to send the all-wheel-drive Spyder from 0 to 60 mph in 1.9 seconds and through the quarter-mile in 8.7 seconds. Czinger says it'll reach 205 mph with the roof on. The fanciest brakes you'll see all week. New for the Spyder is Czinger's BrakeNode technology, which integrates the brake caliper, hydraulic fluid pathways and suspension upright into a single structure. Apparently this setup improves pedal feel, reduces stopping distances by 15%, saves 1.5 pounds of unsprung mass per corner (thanks to 37% of the structure being hollow), and increases stiffness by 30%. Because of the additive manufacturing, the new brakes should be smoother and make fewer squeals. Here's more interesting tidbits about the BrakeNode: Internally, an integrated hydraulic fluid passage threads directly through BrakeNode to feed each caliper piston. This not only contributes to mass reduction, but also eliminates a failure point, removing the possibility of any outside interference that poses a risk with traditional external brake lines. Further, with the brake caliper now directly integrated into the upright, the possibility of caliper separation in the event of mount failure is eliminated. BrakeNode has been tested at up to 500 bars of pressure - eight times greater than 21C's normal operating pressures - demonstrating the resistance to failure of both the component itself and the aluminum alloy it is constructed with. In its front calipers, BrakeNode incorporates titanium pistons. A material choice trickled down from Formula 1, BrakeNode takes advantage of the titanium's greater heat resistance to reduce brake fade under sustained high-performance use and keep hydraulic fluid 15% cooler compared to stainless steel pistons. With less heat dissipation required, the rear calipers use aluminum pistons to save weight. BrakeNode also enables easier serviceability than a traditional brake assembly. Unlike a typical brake system, there is no need to disconnect the caliper to remove the brake pad or rotor: instead, the pads can be reached through the top of the structure, while the rotors can be tilted out from the side. A drain plug at the bottom of BrakeNode(TM) makes removing hydraulic fluid a simple process. If you have an existing 21C HDF or VMax, you'll be able to upgrade to the BrakeNode setup. Czinger says the calipers are offered in a bunch of different colors, and the Spyder's gorgeous 5-spoke wheels were designed to show it all off. More nodes. Speaking of nodes, the Spyder also debuts the NeuralNode, Czinger's name for the dashboard design that's made up of one large structure. Forward-facing air vents flow through hollow channels, which should be an improvement over the current setup. The buttons for climate controls, lights, wipers and other vehicle functions are now floating clusters on either side, with a more prominent red start button; the mirror, window and infotainment controls in the doors are made from matching machined metal. The steering wheel is reshaped and now fully wrapped in leather, and Czinger added a cupholder and new phone and key mounts. Wireless Apple CarPlay is available through the gauge cluster screen, and there's an 8-speaker Morel Hi-Fi system with a pair of thin subwoofers and three speakers in each long door, all of which use carbon-fiber speaker cones. But really, you'll want to listen to the 21C's powertrain. A new roof scoop means "every cycle of the airbox [is] now prominently heard, while the rush of wind on either side of the central seating layout makes clear this is an experience that is singular in automotive." Incite D need more brown hypercars. I also just have to shout out how fantastic the spec is on Czinger's show car. There have been some awesome specs on customer-owned Czingers, including ones with color-fading paint, tinted exposed carbon fiber, contrasting racing stripes and other great schemes. Some have worn shouty colors like lime green, while other 21Cs have been classier. This Spyder is one of the best I've seen yet, combining lovely brown paint with brown-tinted carbon, which is used on the aero package and the stripe running down the center of the car. Light blue lines accent the stripe and other parts of the car, and the brown and light blue striped color scheme is used inside, too. Czinger will make 30 of the 21C Spyder, all of which will of course be personalized to the owners' wishes. Those 30 units are separate from the 80 21C coupes that will be built. Prices start at $2.75 million, about half a million more than the hardtop, and if you nab one you'll be able to proudly say you drive something American-made - Czinger produces its cars in Torrance, California.
Czinger 21C Spider heads to Pebble Beach with additive-built hypercar drama. August 12, 2026 3 Mins Read Czinger is taking its most radical idea into open-air territory. The Los Angeles hypercar maker has teased the 21C Spider ahead of its public reveal at Pebble Beach on August 14, bringing the brand's additive-manufacturing approach to a more exposed version of the 21C. For a company built around 3D printing, hybrid performance and unconventional packaging, a Spider variant is more than a simple roof delete. At a glance. * Czinger Vehicles will reveal the 21C Spider to the public at Pebble Beach on August 14. * The open-top hypercar is expected to retain the 21C's tandem 1+1 seating layout and additive-built construction philosophy. * Final specifications haven't been detailed, though the coupe's hybrid V8 package gives a clear indication of the performance territory Czinger is working in. An open-air take on the 21C formula. The 21C Spider is expected to stay close to the visual language of the existing 21C, which means a narrow, fighter-jet-style canopy profile and a cabin arranged with the driver ahead of the passenger. That tandem 1+1 seating layout remains one of the car's defining traits, giving the 21C family a footprint and silhouette unlike most modern hypercars. The Spider body style raises a more interesting engineering question than it might on a conventional supercar. Removing a fixed roof from a car that relies on extreme stiffness, advanced materials and careful airflow management can create compromises, so the final execution will be watched closely by collectors and engineers alike. Why Czinger's manufacturing method matters. Czinger's identity is tied to 3D printing and additive manufacturing, a process the company uses to rethink how structural components are designed and produced. Rather than shaping a car around traditional production methods, Czinger's approach allows complex, weight-efficient parts to be created with forms that would be difficult to achieve through conventional casting or machining. That philosophy should carry directly into the Spider, where structural reinforcement and aerodynamic tuning will be especially important. The key unknown is how much extra mass the open-top version carries compared with the hardtop 21C, and how Czinger has balanced that against rigidity and aero performance. Hybrid power and Nürburgring context. Czinger hasn't published the Spider's final mechanical specification, but the existing 21C gives the clearest clue to the brand's performance baseline. The 21C coupe uses a 2.88-litre twin-turbocharged V8 paired with three electric motors, producing a combined 1,250 hp sent to the rear wheels. That hybrid layout places the 21C in the most serious tier of modern hypercars, where electric assistance is used as much for response and torque delivery as headline output. The 21C also returned to attention earlier this year after testing at the Nürburgring, prompting speculation about whether Czinger may be targeting a new lap benchmark. Whether the Spider is developed with the same circuit intent or a slightly more expressive character remains to be seen, but Pebble Beach is a fitting stage for that distinction to become clearer. Details & specifications. | Brand | Czinger Vehicles | | Model | 21C Spider | | Body style | Open-top hypercar | | Seating | Tandem 1+1 configuration | | Manufacturing approach | 3D printing and additive manufacturing | | Public debut | August 14 at Pebble Beach | | Related model | Czinger 21C coupe | The 21C Spider gives Czinger a chance to show that its additive-built hypercar architecture can support more than a single dramatic body style. If the company preserves the 21C's intensity while adding the theatre of an open cabin, Pebble Beach could deliver one of the week's more technically interesting debuts.
Czinger Vehicles has partnered with Newport Beach Automotive Group to open Czinger Newport Beach, expanding its dealer network in Southern California. Located less than 40 miles from where the 21C hypercar is manufactured in Los Angeles, the dealership operates within a 60,000-square-foot facility. The partnership brings Czinger's 21C to Orange County, one of America's most concentrated luxury automotive markets. The hypercar, limited to 80 units, features an in-house twin-turbo hybrid V8 engine and holds multiple production car track records. Founded in 2019 by Lukas and Kevin Czinger, the company uses Bio-Logic Engineering, combining advanced design tools with additive manufacturing. The 21C is built at Czinger's Area 21 facility in Los Angeles and is available in High-Downforce and VMax variants.