Configured with FOX 2.0 Factory Race Series Hydraulic Bump Stops — engineered to perform in the roughest terrain, these hydraulic bump stops provide an additional layer of shock absorption at full suspension travel. Ideal for avid off-roaders who hit large obstacles and traverse rough terrain at speed.
Overview
The BDS 6-Inch 4-Link Lift Kit for the Ram 2500 (2019–2024) 4WD Diesel replaces the factory suspension with heavy-duty components designed for serious trail and off-road performance. The kit centers on BDS heavy-duty tubular steel 4-Link arms for improved articulation and ground clearance, paired with a BDS Coilover Conversion Kit running FOX 2.5 Performance Elite coilovers up front. FOX 2.5 Performance Elite shocks handle rear damping duties. A front adjustable track bar and sway bar correction hardware are included to maintain proper geometry and handling after the lift. An optional front auxiliary hydraulic bump stop upgrade is available at the time of purchase.
Features
- FOX 2.5 Performance Elite coil-over conversion mounts in the factory coil spring bucket
- FOX 2.5 Performance Elite rear shocks
- Optional auxiliary front shock absorber (hydraulic bump stop)
- Heavy-duty tubular steel 4-Link arms — corrects caster while maximizing ground clearance
- Front adjustable track bar to re-center the front axle after lifting
- Front sway bar correction to maintain handling performance
Specifications
- Lift Height: 6 inches
- Suspension Type: 4-Link with Coilover Conversion
- Front Shocks: FOX 2.5 Performance Elite Coil-Overs
- Rear Shocks: FOX 2.5 Performance Elite
- 4-Link Arm Material: Heavy-duty tubular steel
- Compatible Vehicles: 2019–2024 Ram 2500 4WD Diesel
Installation
- Estimated Time: 7–8 hours
- Difficulty: Difficult
- Tools Required: 8677 Chrysler ball joint separation tool (or equivalent), cut-off wheel or equivalent, plasma cutter, welding equipment
Important Notes
- Will not fit air ride equipped models
- Diesel models only
- Not designed for Power Wagon models
- Requires aftermarket driveshaft due to increased wheel travel