A gas-permeable hydrophobic membrane stabilizes formic acid vapour release near the brood nest while preventing liquid leakage and handling risks.
Circuitous feeder passages let bees reach supplements and treatments while blocking wasps, hornets, and yellow jackets.
A clear catch basin improves carpenter bee capture while a simple release mechanism enables humane relocation instead of bee death.
Embedded heating and a thickened pot bottom help limit oxalic acid vapour condensation while straight tubes simplify maintenance.
Automated navigation, boom positioning, and fogger delivery reduce manual labor and improve consistency when treating beehive entrances.
A bee watering bowl uses ultraviolet concentric rings to attract pollinators.
Lytic phages lyse Paenibacillus larvae cells, treating American Foulbrood disease without antibiotic resistance or chemical residues.
An active blower and air diverter replace passive thermal systems to ensure even repellant dispersal regardless of weather conditions.
Rotatable dosing mechanism segments oxalic acid powder to eliminate manual measurement errors and improve treatment precision.
A self-service air directing assembly triggers a fan via exhaust smoke, preventing fire extinguishment and eliminating manual bellows pumping.
A resistance heating element embedded in a bee brood foundation sheet automatically maintains temperatures between 39°C and 45°C to eliminate Varroa mites.
A beehive mite control device supplies humidified hot air to brood cells for targeted heating.
Segmented compartments and rigid walls prevent collapse during winter feeding, allowing simultaneous bee access to preserved candy.
Segmented elastic rubber bands secure queen bee cages horizontally on hive frames, preventing slippage and ensuring reliable colony integration.