Yale Cushion Tire Trucks
The IC engine cushion model lift trucks designed by Yale are made and designed to suit the demands of specific applications and businesses. The GM in-line 2.4L and 4.3L engines, along with the Mazda 2.2L and 2.0L in-line 4 cylinder engines are extremely efficient, durable and powerful engines. Their design has been specifically made and proven for supreme performance and reliability.
Yale Hi-Vis masts provide excellent construction and unsurpassed visibility due to their original construction and design. Every component has been engineered for fantastic performance and low-maintenance, extended life. These models are extremely well designed to be a top-player within the business.
Frame & Outriggers
In order to efficiently and safely handle the potential stress which it endures during its complete working life, the lift truck frame and outriggers has to be able to withstand extreme environments. The frames built by Yale provide maximum protection to all of the parts of the lift truck. Additionally, they support the machinery and give it optimal strength and a long life.
In order to make sure that their machinery satisfy the requirements and expectations of their clients, Yale frames have been subject to extensive computer, laboratory and application testing. For extra support and capacity, outriggers are welded directly to the frame. These major parts need to be able to successfully deal with the stresses of the most throughput reach truck situation.
Compartment of the Operator
One of the most vital parts of the Yale trucks is their "Best-in-class" ergonomics. They provide excellent visibility, superior comfort, low effort operation and amazing operator comfort. These vital features all add up to enable operators to work more efficiently and help operators keep up their production levels during their shift.
The engineers at Yale have concentrated extensively on the ergonomic design of the operator compartment. Moreover, the electric steering by Yale further improves the productivity of the models. This feature offers more precise steering control with less steering effort and further improves production. Having an ergonomically friendly design is crucial in order to allow operators to remain as productive as possible throughout the shift.