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Land Rover brake discs covering front and rear axle positions, vented and solid fitments, across all generations: from Classic Defender and Discovery 1 through to Discovery 5, Range Rover L405, and Range Rover Sport L494. Over 340 part numbers in OEM and ECE R90-approved aftermarket brands including Ferodo and TRW, stocked in our Dutch warehouse network for EU dispatch without customs charges. Budget Parts has supplied Land Rover parts since 1990.
Brake discs across the Land Rover brake parts range vary more widely than pads. The same model generation often runs different disc diameters at the front and rear axle, and trim level or towing specification can change the disc size on the same platform. Discovery 3, Discovery 4, and Range Rover Sport L320 share the IBF chassis and similar front axle disc sizing, but the rear caliper and disc arrangement differs depending on whether the vehicle has the Electronic Parking Brake (EPB). Range Rover L405 and Range Rover Sport L494 run the heavier D7u platform with correspondingly larger disc diameters front and rear.
This collection groups discs by OEM part number and application. Check your vehicle build date and axle position (front or rear) before ordering. Front and rear discs are not interchangeable, and the same model generation can run multiple disc specifications depending on engine variant or trim level.
Buying GuideLand Rover and Range Rover brake discs are manufactured to two main profiles: ventilated and solid. Ventilated discs have internal airflow channels cast between the two friction faces, allowing air to circulate and dissipate heat as the wheel spins. Solid discs are a single flat casting with no internal channels. The front axle uses ventilated discs across Defender Classic Puma-era and later models, most Discovery generations, all Freelander variants, and all Range Rover platforms from the P38 onwards. Discovery 1 has both solid and vented front disc applications depending on chassis and specification, so always verify by VIN. Rear axle specification varies: lighter platforms such as Freelander 2 and Discovery 2 use solid rear discs, while heavier platforms including Range Rover L405, Range Rover Sport L494, and Discovery 5 use ventilated rear discs as well.
OEM vs aftermarket: For brake discs on EU-registered vehicles, ECE R90 approval is the legal minimum standard, not a premium quality signal. Replacement discs sold for passenger cars registered after November 2016 must carry R90 approval, which requires dimensional and performance tolerances within a specified range of the original equipment part. Aftermarket discs from Ferodo and TRW carry R90 approval on relevant part numbers and meet OE tolerances. Genuine Land Rover discs are the correct fit-and-forget choice where cost is secondary. The risk is not in choosing aftermarket over OEM: it is in choosing non-R90-approved parts from unknown suppliers. Always confirm R90 status before fitting.
Replace brake discs in axle pairs. Fitting one new disc and reusing the worn original on the opposite side of the same axle produces different friction surface profiles, causes uneven braking and pedal pulsation, and shortens the life of both the new disc and the new pads.
The most critical pre-purchase check for rear brake discs is whether your vehicle has an Electronic Parking Brake (EPB), and which type. On motor-on-caliper EPB platforms, the rear caliper motor must be retracted using a compatible diagnostic tool before the caliper piston can be compressed. On cable-puller EPB platforms, the caliper piston compresses conventionally, though service mode or mechanical shoe adjustment is required when removing the disc or servicing the drum-in-disc parking brake shoes. Ordering rear discs without confirming EPB type leads to an incomplete job. The table below covers the main Land Rover and Range Rover platforms.
| Model | Years | EPB on Rear? | Notes |
|---|---|---|---|
| Defender Classic | 1983 to 2016 | No | Td5 (1998 to 2007) and Puma (2007 to 2016) models use four-wheel disc brakes. Pre-Td5 Defenders (before the mid-1990s rear-disc transition) may have rear drum brakes. Parking brake on all Classic Defender models is a transmission-mounted drum on the prop shaft, not wheel-mounted. |
| Discovery 1 | 1989 to 1998 | No | Four-wheel disc brakes. Parking brake is a transmission-mounted drum on the prop shaft, not wheel-mounted. No electronic actuation. |
| Discovery 2 | 1998 to 2004 | No | Four-wheel disc brakes. Parking brake is a transmission-mounted drum on the prop shaft, not wheel-mounted. No electronic actuation. |
| Discovery 3 | 2004 to 2009 | Yes (cable-puller type) | Chassis-mounted EPB actuator module pulls cables to operate drum-in-disc rear shoes. Hydraulic rear caliper piston compresses conventionally. EPB service mode or mechanical shoe adjuster back-off required when removing the rear disc or servicing EPB shoe components. |
| Discovery 4 | 2009 to 2016 | Yes (cable-puller type) | Chassis-mounted EPB actuator module pulls cables to operate drum-in-disc rear shoes. Hydraulic rear caliper piston compresses conventionally. EPB service mode or mechanical shoe adjuster back-off required when removing the rear disc or servicing EPB shoe components. |
| Discovery 5 | 2017 onwards | Yes (motor-on-caliper) | Rear caliper-mounted EPB motor. Diagnostic service mode required before the rear caliper piston can be compressed. Ventilated discs front and rear. |
| Freelander 1 | 1997 to 2006 | No | Traditional cable parking brake. |
| Freelander 2 | 2006 to 2014 | No | Traditional cable parking brake. Solid rear discs. |
| Range Rover Classic | pre-1994 | No | Confirm disc specification against part number; pre-1994 variants differ. |
| Range Rover P38 | 1994 to 2001 | No | Traditional cable parking brake. |
| Range Rover L322 | 2002 to 2012 | Mixed by year / VIN | Early L322 vehicles use a mechanical cable-operated parking brake with drum-in-disc rear shoes. Later facelift/VIN ranges use an electronic parking brake module and switch, but the system still acts through cables and rear parking brake shoes. L322 should not be grouped with L405/L494 motor-on-caliper systems. |
| Range Rover L405 | 2013 to 2022 | Yes (motor-on-caliper) | Rear caliper-mounted EPB motor architecture. Diagnostic service mode required before the rear caliper piston can be compressed. Ventilated rear discs. |
| Range Rover Sport L320 | 2005 to 2013 | Yes | IBF platform, shared architecture with Discovery 3. Cable-puller EPB type: hydraulic rear caliper piston compresses conventionally. EPB service mode or mechanical shoe adjuster back-off required when removing the rear disc or servicing EPB shoe components. |
| Range Rover Sport L494 | 2014 to 2022 | Yes (motor-on-caliper) | Rear caliper-mounted EPB motor architecture. Diagnostic service mode required before the rear caliper piston can be compressed. Ventilated rear discs. |
Discovery Sport, New Defender L663, Range Rover L460, Range Rover Evoque, and Range Rover Velar: these models have EPB. Confirm the exact service procedure for your variant in the workshop manual before starting rear disc replacement.
Ordering the correct brake disc requires three pieces of information: model and generation, axle position (front or rear), and build date. Build date matters because brake specifications can change mid-generation. Discovery 3 and Discovery 4 both ran on the L319 platform but have different disc diameters on some variants depending on engine and trim level. Range Rover L405 offered multiple brake packages depending on specification.
The VIN or chassis plate is the most reliable source of this information. On Land Rover and Range Rover models, the chassis plate is located on the A-pillar on RHD vehicles and on the passenger-side A-pillar on LHD vehicles. The VIN decodes the model year, body variant, and engine code, all of which can affect disc sizing on Discovery 3, Discovery 4, and Range Rover L405 in particular.
If the vehicle has been fitted with uprated caliper carriers, larger aftermarket calipers, or a big brake kit, the disc diameter may no longer match the factory specification. Verify disc diameter and offset height before ordering if any brake system modifications have been made to the vehicle.
Fitting NotesSurface rust on new or unused brake discs is normal and not a quality defect. Light orange surface oxidation on the friction face clears within the first few brake applications as the pad sweeps the disc surface clean. Deep pitting, grooves in the friction face, or a raised rust ridge at the outer or inner edge of the friction surface are different: these indicate the disc face is compromised and minimum thickness and surface condition should be checked before deciding whether to replace.
Minimum disc thickness is stamped or cast onto every disc, either on the disc hat or on the friction face edge. Check remaining thickness with a micrometer at a minimum of four points across the friction face before refitting. A disc within 1 mm of its minimum thickness at the point of fitting a new set of pads will need replacement before those pads wear out, making a second brake job unavoidable sooner than expected.
Motor-on-caliper platforms (Range Rover L405, Range Rover Sport L494, Discovery 5, and later equivalents): The electronic rear caliper motor must be retracted using diagnostic service mode before the caliper piston can be compressed. Forcing the piston without service mode damages the EPB motor and requires actuator replacement.
Cable-puller EPB platforms (Discovery 3, Discovery 4, Range Rover Sport L320): The hydraulic rear caliper piston compresses conventionally. Service mode or mechanical shoe adjuster back-off is required when removing the rear disc or servicing the EPB shoe components inside the disc hat, not for caliper piston compression alone.
Lateral runout above 0.1 mm measured with a dial gauge on a newly fitted disc indicates either a contaminated hub face or a hub that needs checking for runout of its own. Clean the hub face thoroughly before fitting any disc, and check hub runout if the problem repeats after hub cleaning.
Replacement brake pads, shoes, discs and drums sold for EU road use must comply with the relevant ECE R90 rules for the vehicle type and registration period. For brake discs, the November 2016 extension is especially relevant for newer passenger vehicles: replacement discs for models first registered after that date must carry R90 approval, which requires dimensional and performance tolerances within a specified range of the original equipment part. This is a legal requirement, not a marketing designation. Check that the parts you are fitting carry the R90 approval mark before installation. Further information is available from the ECE Regulation 90 overview on Wikipedia.
Technical GuidesDiscovery 3, Discovery 4, and Range Rover Sport L320 EPB faults are often misdiagnosed as actuator failures. Worn rear brake components and cable resistance are usually the root cause. Covers the correct diagnostic path before ordering parts.
Land Rover EPB failure diagnosis guideHeat, dust, and sustained pace attack brakes, cooling, and suspension simultaneously. A workshop guide to Defender brake and cooling failure modes under off-road rally conditions, with three-tier upgrade priorities.
Defender brake and heat management guideOEM-grade and performance pad compounds for all Land Rover and Range Rover models. Replace discs and pads as a matched pair for correct bedding and service life.
Land Rover brake pads for all modelsFerodo discs and pads carry ECE R90 approval on Land Rover fitments. Consistent OE-standard friction characteristics across the Discovery, Defender, and Range Rover range.
Ferodo brake parts for Land RoverTRW R90-approved discs and pads for Land Rover and Range Rover. OE supplier to JLR on multiple platforms.
TRW brake parts for Land RoverHeavy-platform Discovery 4 and Range Rover L405 hubs commonly show bearing wear at the same service interval as a major brake job. Worth inspecting when the wheel is off.
Land Rover wheel bearings by modelDegraded lower control arm bushings on Range Rover L322, L405, and Range Rover Sport L320 change wheel geometry under braking, accelerating uneven disc wear. Inspect alongside a brake job.
Land Rover suspension parts by modelMotor-on-caliper EPB platforms (Range Rover L405, Range Rover Sport L494, Discovery 5) require diagnostic service mode before rear caliper piston compression. Cable-puller EPB platforms (Discovery 3, Discovery 4, Range Rover Sport L320) require service mode or mechanical shoe adjustment for disc removal or parking brake shoe work only.
Land Rover workshop and diagnostic toolsBrake discs need replacement when the friction face thickness falls below the minimum specification stamped or cast into the disc, when the friction surface shows deep radial grooves, when lateral runout measured with a dial gauge exceeds 0.1 mm, or when the disc is cracked across the friction face or at the hat. Light surface rust on a disc that has been sitting unused is not a reason to replace it and clears with the first few brake applications. On heavier platforms such as Discovery 4 and Range Rover L405, discs subjected to repeated towing loads or sustained off-road use may show accelerated wear before reaching minimum thickness. Inspect disc thickness and surface condition at every pad change.
Brake disc service life depends on platform weight, use type, and pad compound. On lighter platforms such as Freelander 2 and Discovery Sport, disc life commonly runs to 80,000 km to 100,000 km under normal road use. On heavier platforms such as Discovery 4, Range Rover L405, and Range Rover Sport L494, disc life is typically 60,000 km to 80,000 km under similar conditions. Towing, off-road use, and sustained high-speed driving shorten this significantly. Discs and pads should be replaced as a matched pair: refitting new pads onto worn discs causes uneven friction material transfer and shortens both components.
Yes. Surface rust on brake disc friction faces is a normal result of moisture and oxygen reacting with cast iron. On a vehicle parked overnight in humid conditions, light orange surface rust is expected and disappears after a few brake applications as the pad sweeps the friction surface clean. Deep pitting extending into the disc body, rust channels in the friction face, or a raised rust ridge at the outer or inner edge of the friction face are different from surface oxidation. These indicate the disc surface is compromised and minimum thickness and surface condition should be checked before deciding whether replacement is needed.
It depends on the EPB architecture fitted to the vehicle. For Discovery 3, Discovery 4, and Range Rover Sport L320, the hydraulic rear caliper piston can be compressed conventionally. The electronic parking brake operates separate shoes inside the rear disc hat, so service mode or mechanical shoe back-off is relevant when removing the rear disc or servicing the parking brake shoes. For motor-on-caliper platforms such as Range Rover L405, Range Rover Sport L494, and Discovery 5, the electronic rear caliper motor must be retracted using the correct diagnostic/service procedure before compressing the piston. Discovery 1, Discovery 2, Freelander 1, and Freelander 2 do not have EPB and require no special procedure.
A vented brake disc has a hollow cross-section with internal cooling channels cast between the two friction faces. These channels allow air to circulate through the disc as the wheel spins, dissipating heat generated under braking. A solid disc is a single flat casting with no internal channels. Land Rover and Range Rover models use vented discs on the front axle as standard across all generations: the front axle generates the majority of braking force and heat. The rear axle typically uses solid discs on lighter platforms such as Freelander 2 and Discovery 2. Heavier platforms including Range Rover L405, Range Rover Sport L494, and Discovery 5 use vented discs at the rear as well. Front and rear discs are not interchangeable.
Technical content by the Budget Parts workshop team.
Updated: June 2026