Up to 350 lbs
Up to 6,000 lbs
Up to 16,000 lbs
Up to 40,000 lbs
High-capacity loads
Shock absorbing
Corrosion resistant
Outdoor / rough terrain
OEM replacements
All measurements indicate the wheel diameter by the tread width.
The below capacity ranges indicate the working (dynamic) load that each caster will support. A safety factor should be included in your formula to determine your required load rating per caster.
W/(C-1)=R W is total weight needed to move. C is total number of casters required. R is ideal load rating, with safety factor built in. Divide the total load weight by one less caster than you will use to safely determine load rating.
Plate dimensions shown are overall mounting plate size.
When replacing existing casters, select the closest plate size and verify bolt-hole compatibility.
BHP = Bolt Hole Pattern, shown under each plate.






The Hamilton Versa-Tech | TE Rubber Wheels are designed to provide unparalleled durability and smooth performance in a variety of environments. With a load capacity of up to 500 lbs, these wheels are perfect for both light and heavy-duty applications, offering exceptional versatility and reliability.
Whether it's for industrial manufacturing, retail warehousing, or personal projects, the Versa-Tech | TE wheels adapt seamlessly to your needs. Their robust construction ensures optimal functionality in diverse settings, from smooth indoor floors to more challenging outdoor terrains.
Each wheel is crafted with high-quality rubber, ensuring a balance between firmness and elasticity for smooth movement and effective shock absorption. The versatility of the Versa-Tech | TE series is further enhanced by its compatibility with various axle sizes, making installation and maintenance straightforward and user-friendly.
Opting for Hamilton's Versa-Tech | TE Rubber Wheels means investing in reliability, performance, and versatility. Their exceptional load capacity, combined with Hamilton's commitment to quality, makes these wheels a superior choice for professionals and enthusiasts alike seeking optimal mobility solutions.
