Product family
Powered Roller Conveyors family
Chain-driven roller conveyors for indexed transfer, curves and machine-side loading.

Chain-driven powered roller · SY-PR-DS
Dual-sprocket powered roller conveyor
- Dual sprockets are phase-aligned to cut torsional vibration.
- Chain tension and guards are integrated with clear inspection windows.

Chain-driven powered roller · SY-PR-SS
Single-sprocket powered roller conveyor
- Drive-side sprocket is quick-swap to cut downtime.
- Idler-side bearing clearance tuned to noise targets.

Heavy-duty powered roller · SY-PR-HD
Heavy-duty powered roller conveyor
- Thicker beams and denser cross-bracing limit deflection.
- Large-pitch heavy rollers with upgraded bearings.

Infeed powered roller · SY-PR-SL
Side-infeed powered roller conveyor
- Reinforced side frame resists fork impact deformation.
- Guide rollers lead panels onto the deck.

Infeed powered roller · SY-PR-RL
Rear-infeed powered roller conveyor
- Removable rear beam allows deeper fork entry.
- First roller group densified for load-in support.

Curve powered roller · SY-PR-CV-90
90° curve powered roller conveyor
- Taper/differential scheme selected by width range.
- Outer rails prevent centrifugal throw-off.

Curve powered roller · SY-PR-CV-180
180° return-curve powered roller conveyor
- Large-radius beams ship in segments.
- Differential chain/tapers cover the full half-circle.

In-lane rotate · SY-PR-RT
In-lane rotating powered roller conveyor
- Fast switch between turntable and rollers with controlled gap.
- Servo/VFD positioning for repeatable angles.
Engineering selection
- Single-sprocket or dual-sprocket drive — what decides?
- Single sprocket fits short bridges and medium stacks with lower CAPEX. Dual sprocket is preferred for longer bays, higher stack mass or three-shift duty where torsional vibration and chain wear must stay controlled. Heavy-duty frames further raise tube OD, axle and chain class.
- Which inputs size motor, chain and roller class?
- Max stack mass, start/stop acceleration, line speed, duty cycle (starts per hour), grade if any, and ambient dust/temperature. We then verify chain safety factor and thermal capacity against your takt window.
- 90° curve versus in-lane rotate — which redirect?
- Use a tapered/differential curve when flow should stay continuous and floor allows the sector footprint. Use an in-lane rotator when space is tight or long/short-edge heading must change without a large arc — often after a centering unit.