Ultra-wide clamp
A broad clamping area increases the contact zone around the handlebar for a rigid, confidence-inspiring connection.
PEMBREE GCS cockpit system
Meet the GCS: a precision-machined mountain bike stem built around an ultra-wide clamp, a compact 35 mm length and the strength demanded by downhill, freeride and enduro riding.
Precision at the centre of the cockpit
The stem is where bar movement becomes steering. The GCS uses a broad clamping zone, compact 35 mm reach and zero-degree rise to create a direct, purposeful cockpit for demanding terrain.
Every visible surface of the GCS Stem has a job: hold the handlebar securely, protect the aluminium, simplify alignment and maintain a clean interface between rider and front wheel.
A broad clamping area increases the contact zone around the handlebar for a rigid, confidence-inspiring connection.
Machined surfaces deliver the exact fit, crisp edges and controlled finish expected from a premium cockpit component.
Stainless-steel bolts and washers protect the aluminium interface and support a durable, consistent hold.
Machined markings on the body and clamps make accurate handlebar alignment clear during setup.
The GCS Stem is tested to the EFBE Gravity Tri-Test standard for demanding gravity riding.
When the fit is right and the cockpit stays composed, attention remains on braking points, line choice and the terrain ahead—not the component holding the bar.
A compact 35 mm length keeps the cockpit response immediate and places control close to the steering axis.
A zero-degree rise creates a clean foundation for cockpit setup without adding angle at the stem.
Choose 31.8 mm or 35 mm to match the exact centre-clamp diameter of your handlebar.
Scroll through the GCS Stem from its clamping surfaces to its alignment marks and protected hardware.
The broad front interface creates a substantial, carefully machined contact area around the bar.
A 35 mm length and 40 mm stack package the connection into a purposeful gravity-focused form.
Machined markings give riders and mechanics a clear reference when centring and positioning the bar.
M6 stainless-steel bolts use washers to spread load and protect the aluminium beneath them.
The GCS visual language and tolerances are designed to sit naturally beside the matching GCS handlebar.
Compact by design
The GCS uses one purposeful geometry across both clamp diameters. Match the bar, set the alignment and build the cockpit around a short, neutral stem position.
Build quietly in Black or Silver, or carry a coordinated colour through the cockpit. Every finish keeps the same machined geometry and stainless hardware.
Available in Silver, Black, Turquoise, Purple, Bronze and Pink.






The number must match the handlebar’s marked centre-clamp diameter. It is a compatibility choice, not a preference.
The GCS is designed for riding where cockpit precision and structural confidence matter: steep terrain, heavy compressions and committed line choices.
A compact position and broad clamp interface for high-speed tracks and repeated hard impacts.
Direct steering feel for jumps, technical features and the moments where accuracy must follow commitment.
A precise cockpit foundation for long stages that combine speed, technical terrain and changing gradients.
“Built together.PEMBREE GCS cockpit system
Rides together.”
The GCS uses a short 35 mm length, placing the handlebar relatively close to the steering axis. This creates a direct steering response and reduces the distance your hands travel when turning the bar—characteristics commonly preferred on modern trail, enduro, freeride and downhill bikes.
If you are changing from a longer stem, the cockpit will feel shorter and your weight may move slightly rearward. The front wheel can feel easier to lift, but you may need to consciously maintain front-wheel pressure when climbing or entering flatter corners.
Stem length should always be considered alongside your frame’s reach, handlebar sweep and bar rise. A 35 mm stem works particularly well on bikes designed around a long frame reach and short-stem cockpit, but personal preference remains important.
Choose the version that exactly matches the clamp diameter of your handlebar. GCS stems are available for 31.8 mm and 35 mm handlebars, the two principal standards used on modern mountain bikes.
A 35 mm cockpit is often chosen for a solid, direct feel, while a 31.8 mm system may provide a slightly more compliant feel depending on the handlebar’s construction. Clamp diameter alone does not determine performance—the bar’s material, profile and wall thickness are equally important.
The two sizes are not interchangeable. Never fit a 31.8 mm bar into a 35 mm stem without a specifically approved solution, and never attempt to force a 35 mm bar into a 31.8 mm stem.
Check three measurements before purchasing:
You should also confirm that the handlebar has a sufficiently wide, straight central clamping area for the GCS’s wide faceplate. If any of these measurements are unclear, a qualified bicycle mechanic can confirm compatibility before installation.
No. The stem can be used with another mountain-bike handlebar provided its clamp diameter, central clamping width, intended use and torque requirements are compatible.
However, the GCS stem and handlebar were developed as parts of the same cockpit system. Their corresponding alignment markings make it easier to centre the bar and reproduce its rotational position accurately. The matching 31.8 mm and 35 mm options also remove uncertainty when building a complete GCS cockpit.
Only if the handlebar manufacturer confirms that the bar is compatible with the stem’s clamp width and required tightening torque.
Carbon handlebars have specific torque limits. If the GCS Stem requires more clamping torque than the handlebar permits, the combination should not be used. Applying additional torque to prevent a bar from slipping can permanently damage a carbon handlebar, even if no damage is immediately visible.
Follow the instructions for both components and never assume that the lower torque figure will be sufficient. If the two requirements are incompatible, choose a different stem-and-handlebar combination.
These measurements describe different aspects of the stem:
These measurements should be considered together when comparing the GCS with your existing stem.
The wide clamping area supports a larger section of the handlebar and provides a substantial contact surface between the bar and stem. This helps resist unwanted bar rotation and contributes to the solid, direct steering feel expected from a gravity-focused cockpit.
A wider clamp also distributes clamping forces across a broader area rather than concentrating them at a narrow point. Correct installation remains essential: the benefits of the design depend on using a compatible handlebar and tightening the hardware evenly to the specified torque.
Machined markings on the stem and faceplate help centre the handlebar and provide a clear reference for bar rotation. When used with the corresponding markings on a GCS handlebar, they make it easier to establish a balanced position and reproduce a preferred setup after maintenance or adjustment.
The markings are setup references rather than substitutes for correct installation. The bar must still be centred, the faceplate positioned correctly and every fastener tightened in the specified sequence with a calibrated torque wrench.
A stem is a safety-critical component, so correct installation matters as much as the strength of the component itself.
The handlebar and clamping surfaces should be clean, compatible and free from damage. Headset preload should be set before the steerer-clamp bolts are tightened. Centre and rotate the handlebar using the machined alignment references, then tighten the fasteners progressively in the specified sequence.
Always follow the torque values marked on the stem or stated in the installation instructions. Do not estimate torque with a multitool, and do not add grease, thread-locking compound or assembly paste unless the relevant instructions specify it. If you are uncertain, have the stem fitted by a qualified bicycle mechanic.
The GCS uses M6 stainless-steel hardware for strength and corrosion resistance in wet, muddy riding conditions. Washers create a controlled interface between the turning bolt head and the aluminium stem.
This helps prevent the bolt head from marking or digging into the aluminium as it is tightened and supports a consistent clamping load. The washers are part of the fastening system and should always be refitted in their correct positions.
GR stands for Gravity, identifying an EFBE test category developed for the demanding loads associated with disciplines such as downhill and freeride.
The “TRI” refers to three principal test modules:
Passing means the tested GCS Stem design met the specified requirements of EFBE’s Gravity programme. It provides independent laboratory evidence supporting the stem’s intended use, but it does not make the component indestructible or compensate for incorrect installation, crash damage or incompatible components. EFBE explains its TRI-TEST methodology here.
Check that the stem remains aligned with the front wheel and that the handlebar has not rotated within the clamp. Inspect the stem body, faceplate, bolts, washers, handlebar and steerer for cracks, deformation, deep scoring or other damage.
If the bar or stem has slipped, do not simply exceed the stated torque to stop it happening again. Slippage may indicate incorrect installation, incompatible components, contamination or damage.
Stop riding if you find a crack, bent hardware, damaged threads or persistent movement. Because some damage may not be obvious, have the cockpit professionally inspected after a serious crash.
The GCS Stem is designed around a repair-first approach, with replacement hardware and components available separately. This allows a worn or damaged bolt, washer, faceplate or other replaceable part to be renewed without automatically discarding the complete stem.
Only use genuine replacement parts of the correct specification. A generic bolt with the same diameter may have a different strength, head profile, thread treatment or material and should not be assumed suitable.
Supporting repair rather than complete replacement extends the useful life of the stem, reduces unnecessary waste and lowers demand for new materials and manufacturing. It forms an important part of PEMBREE’s environmental approach: making durable products and helping riders keep them safely in service for as long as practical.
The GCS Stem is eligible for the PEMBREE+ lifetime warranty against product defects. Purchases made directly through PEMBREE’s website are enrolled automatically. Products purchased from a retailer must be registered within 30 days of delivery with proof of purchase.
Normal wear, cosmetic changes, unauthorised repairs, incorrect installation and crash damage are not treated as manufacturing defects. Crash damage may instead qualify for the PEMBREE+ Crash Replacement programme. Full conditions are available on the PEMBREE+ programme page.
Build the connection
Choose the clamp diameter that matches your handlebar, select your finish and build around the compact GCS position.