Hooker LS Swap Headers product image
Hooker LS Swap Headers product image
Hooker LS Swap Headers product image
Hooker LS Swap Headers product image
Hooker LS Swap Headers product image
Hooker LS Swap Headers product image

Hooker LS Swap Headers – High-Flow Performance Exhaust

★★★★★4.8· thousands of reviews

Our LS swap headers are designed to unlock the full potential of your LS engine conversion. Whether you’re dropping an LS into a classic muscle car, a vintage truck, or a custom project, these headers deliver the flow and clearance you need. We engineer every tube for maximum exhaust velocity while maintaining compatibility with factory and aftermarket steering, brake lines, and chassis components.

Each header is mandrel-bent from heavy-gauge steel to resist cracking under extreme heat cycling. The slip-fit collector design simplifies installation and accommodates engine movement without transferring stress to the flanges. Our LS swap headers are built to handle high-output naturally aspirated and power-adder applications, and they’re available in configurations for early and late-model LS platforms.

View LS Swap Header OptionsExplore the Collection
01
1⅞″ mandrel-bent primary tubes for high-flow exhaust scavenging
02
3″ collector diameter with slip-fit design for simplified installation
03
Heavy-gauge steel construction with thick flanges to prevent warping
04
Application-specific routing clears factory and aftermarket steering components
At a glance

Core specs & fitment details

1⅞″ mandrel-bent primary tubes for high-flow exh
3″ collector diameter with slip-fit design for s
Heavy-gauge steel construction with thick flange
Application-specific routing clears factory and
Oxygen sensor bungs welded at optimal positions
Ceramic coating or bare steel finish options dep
Fitment & Chassis Clearance
Product details

Fitment & Chassis Clearance

LS swaps present unique packaging challenges, and we design every Hooker LS swap header to address them. Our engineering team maps steering box interference, brake line routing, and frame rail clearance for each application before finalizing tube paths. The result is a header that installs without cutting, dimpling, or relocating factory components in most cases.

Primary tube routing varies by chassis platform. Early GM A-body and F-body conversions benefit from tight-radius bends that tuck close to the block, while square-body truck applications use longer primaries to clear factory motor mounts and crossmembers. We publish fitment notes for every application to confirm compatibility with your specific year, make, and model. If you’re running long-tube headers on other platforms, you’ll recognize the same attention to collector placement and hanger provisions in our LS swap line.

Materials & Construction
Sizing & fit

Materials & Construction

We use 16-gauge and 14-gauge steel depending on the application and expected thermal load. Primaries are mandrel-bent to maintain consistent inner diameter through every bend, eliminating turbulence and backpressure. Welded joints are full-penetration TIG welds, and flanges are laser-cut from thicker plate to resist warping during heat cycles.

Collectors are slip-fit rather than welded directly to the primaries, which allows the header to expand and contract independently of the exhaust system. This design reduces the risk of cracked flanges and simplifies removal during future maintenance. Oxygen sensor bungs are welded at positions that meet OBD-II requirements while remaining accessible for tuning.

Styling

Power & Sound Characteristics

Dyno-Verified Gains

Hooker LS swap headers typically deliver 15–30 horsepower over factory manifolds on naturally aspirated LS engines, with gains concentrated in the mid-range and top end. Forced-induction builds see larger improvements due to reduced backpressure upstream of the turbo or supercharger. Peak torque curves shift slightly higher in the RPM band, which benefits road-race and autocross applications.

Exhaust Note

Sound output depends on collector size, primary length, and downstream exhaust configuration. Most LS swap header installations produce a deeper, more aggressive tone than stock manifolds without excessive drone at highway speeds. Pairing these headers with a high-flow cat-back system yields the most pronounced difference in both power and sound.

Power & Sound Characteristics
Power & Sound Characteristics
Power & Sound Characteristics

Complete the look

Complete Your LS Swap With These Performance Solutions


Customer reviews

Rated 4.8 by verified buyers

4.8
★★★★★
Based on verified reviews
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Perfect fit in my ’69 Camaro LS swap
I was nervous about header clearance with the factory steering box, but these tucked in perfectly. No grinding, no dimpling, and the collector exit lines up exactly where I needed it for my exhaust. Installation took about five hours working alone. The welds are clean and the flanges are thick enough that I’m not worried about warping.
D
Derek T.
Verified buyer
★★★★★
Huge power increase over stock manifolds
Swapped these onto my LQ9 truck build and picked up 22 horsepower at the wheels. The sound is aggressive but not obnoxious, and the ceramic coating keeps underhood temps way down. I’ve put about 8,000 miles on them with zero leaks or issues.
M
Mike R.
Verified buyer
★★★★★
Great quality, minor fitment tweaks needed
The headers themselves are top-notch, but I had to slightly adjust one of the motor mounts to get perfect clearance on the driver side. Once that was sorted, everything bolted up cleanly. The difference in throttle response is immediately noticeable.
C
Carlos M.
Verified buyer
★★★★☆
Best LS swap headers I’ve used
I’ve installed three different brands of LS swap headers on various projects, and these are by far the best engineered. The tube routing is smart, the collectors don’t hang too low, and the included gaskets actually seal properly. Worth every penny.
J
Jason K.
Verified buyer
★★★★★
Exceeded expectations on my LS3 build
Running these on a 500-horsepower LS3 and they handle the heat with no problems. The ceramic finish still looks new after two years of street driving. Installation was straightforward and the instructions were clear.
A
Amanda G.
Verified buyer
★★★★★
Solid upgrade for naturally aspirated builds
Paired these with a cold air intake and a custom tune on my LS1 swap. The power gains were noticeable across the entire RPM range, and the exhaust note is much deeper without being drony on the highway. Very happy with the purchase.
B
Brian L.
Verified buyer
★★★★★

Good to know

Common Questions About Hooker LS Swap Headers

Fitment depends on your chassis platform, LS engine variant, and whether you’re using factory or aftermarket motor mounts. We publish application-specific fitment charts for each header model that list compatible year ranges, engine codes, and known clearance issues. Most of our headers are designed around common swap platforms like GM A-body, F-body, and square-body trucks. If you’re working with a custom chassis or non-GM application, contact our technical support team with details about your engine mounts, steering configuration, and frame dimensions so we can recommend the best option.

Power gains vary based on your baseline setup and overall engine configuration. On a stock LS engine with factory manifolds, you can typically expect 15–25 horsepower at the wheels. Higher-displacement engines like the LS3 or LS7 see larger gains due to increased exhaust flow demands. Forced-induction builds benefit even more, with gains of 30–50 horsepower common on turbocharged setups. The most significant improvements occur when headers are paired with a high-flow cat-back system and custom engine tuning to optimize air-fuel ratios.

A custom tune is strongly recommended but not always required. Headers reduce backpressure and change exhaust scavenging characteristics, which can lean out the air-fuel mixture slightly. Most modern LS ECUs will adapt to the change using closed-loop fuel trim corrections, but you’ll see the best performance and efficiency with a professional dyno tune. If your engine already runs a custom calibration or uses forced induction, retuning is essential to prevent detonation and maximize the power gains from the new headers.

In-chassis installation is possible on some platforms but challenging on others. Truck applications with higher engine placement and more underhood room are generally easier to work with. Classic muscle car swaps often require removing the engine or lifting the body several inches to provide clearance for maneuvering the headers into place. If you have access to a lift and can remove the starter, exhaust, and engine mounts, in-chassis installation is feasible but expect longer installation time compared to removing the engine entirely.

We recommend multi-layer steel gaskets at the header flange. MLS gaskets compress uniformly and maintain a seal under high cylinder pressures and thermal cycling. Avoid composite or graphite gaskets, which can blow out on high-performance LS engines. At the collector joint, use high-temperature collector gaskets rated for 1,800°F or higher. Replace collector gaskets every time you disassemble the exhaust system to prevent leaks. Torque all fasteners to manufacturer specifications and re-torque after the first heat cycle.

Our headers include oxygen sensor bungs positioned to meet OBD-II requirements, which allows you to retain factory emissions equipment. However, legality depends on your local regulations. Some states require CARB-certified aftermarket exhaust components, and headers alone may not carry that certification. If you’re in a region with strict emissions testing, verify that your complete exhaust system including catalytic converters meets local standards. Headers that eliminate catalytic converters or relocate oxygen sensors outside of acceptable ranges will cause your vehicle to fail inspection.

Use new gaskets every time you remove and reinstall the headers. Clean all mating surfaces with a wire brush and solvent to remove old gasket material and carbon buildup. Torque the header bolts in a star pattern to 15–18 ft-lbs, and re-torque after the first heat cycle once the gaskets have compressed. At the collector joint, ensure the slip-fit connection is fully seated and the gasket is centered before tightening the clamp. If leaks persist, inspect the flange for warping and resurface if necessary using a belt sander or milling machine.

The collection
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