Evolution beyond vibratory feeder systems

Traditional vibratory feeder systems are restricted by their design to a short range of vibrational frequencies that match the mechanical resonance of the springs and magnetic coils that drive them.
Tuning these systems to accommodate different part characteristics is difficult, and typically a compromise.
Unlike traditional systems, NeoDryve systems are empowered by their design and can generate a
completely variable frequency and amplitude.
Unbound by outdated limitations, the NeoDryve
is the only available solution to enable a feeder to adapt to the parts, rather than the other way around.

A modular approach
NeoDryve systems are engineered to be modular, expandable, and adaptable.
The fundamental building block is the base NeoDryve unit, which drives the motion. This can be combined with any of our interchangeable modular component tops to create different arrangements of surface features, widths, and tooling.
A recirculating flex feeder setup can be transformed into a parts exit feeder in less than 15 minutes by simply sliding out one modular section and replacing it with another.


Flexibility without compromise
NeoDryve conveyors and feed systems redefine modern automation with sustainable design, intelligent motion, and next-generation production efficiency.
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Accurate, full-range frequency adjustment and speed at a continuous amplitude
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Parts travel at a consistent speed throughout the length of the feeder - stable motion regardless of load variation
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No dead spots or complicated tuning required
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Ultra low power requirements as low as 12 Vdc at under 2 amps, meaning both safer operation and lower energy costs
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Lighter loads will run < 12 watts, and heavier loads (over 40 pounds) at < 24 watts
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Plug-and-play style modular components allow for rapid system reconfiguration and effortlessly expandable systems with no redesign of electrical infrastructure
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Very quiet operation, under 65db for most applications
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Drive actuation has no mechanical components, reducing wear items and maintenance


