The Alpha S30 Jr goalie leg pads are super lightweight and packed with advanced technologies, designed to help younger goalies get the most out of their pads. Featuring a stiffer flat faced design with a full hinge boot, for better rebound control with exceptional movement.
Pad Shape/Style: Flat faced
Sliding Surface: SlidePlate
Strapping System: Double elastic knee & calf strapping
Toe Strapping: Adjustable ARS toe and heel strapping
When purchasing a new pair of goalie leg pads there are many factors to consider, to ensure that you get the model that fits your level and style of play the best. If you’re unsure which leg pads are right for you, or if you need help with sizing, visit your local Pure Hockey.
The Warrior S30 Jr leg pads feature a two-piece core for natural flexibility and 5-hole closure. Designed for mobility, the boot's flex profile enables effortless skate ability and fluid entry into RVH, empowering goalies to stay reactive and anchored to the post in critical moments.
The outside of the knee cradle has a removable and replaceable slide plate designed to decrease friction. The bottom of the pad has Warrior’s adjustable ARS toe and heel straps taking pressure off your hips, ankles and knees in the butterfly and RVH.
If you’re a young goalie looking for elite technolgies in a high-performing pair of pads, the new Warrior Alpha S30 JR leg pads are a great option.
Warrior's cutting-edge SlidePlates minimize ice friction for lightning-fast lateral slides without sacrificing energy. The removable design adds customizability for goalies seeking optimal inertia and enhanced slide control under pressure.
Fully adjustable strapping at the knee and calf allows for precise tuning. Goalies can personalize pad rotation, butterfly mechanics, and leg channel tension—ensuring a locked-in, responsive fit tailored to individual playing styles.
Surge uses Warrior's patented double elastic ARS toe and heel straps, in addition to a removable toe bridge for the goaltender who wants a more traditional toe attachment system.