Product Description
SALES (804) 318-3686
IRIS SERIES FTL 0300 ELECTROMAGNETIC SIEVE SHAKER
WITH 3-D MOTION, DIGITAL CONTROLS, ADJUSTABLE AMPLITUDE,
AND INTERMITTENT SIEVING FUNCTIONS

Its' three-dimensional movement throughout the sieve column makes it very effective
when carrying out granulometric tests.
Designed for high sample volumes, it can admit 5 sieves of 80 mm in height, or 8 sieves of 50 mm in
height. The diameters range from 250 to 305 mm. The power, time of sieving and intermittence are
all digitally adjusted.


The IRIS model sieve shakers are highly effective, thanks to the three-dimensional
particle motion, created by an electromagnet. With this 3D effect the particles
bounce over the whole sieve area, forcing them to pass through to the lower sieve
more quickly. Thus a faster, more effective sieving is achieved through the whole sieve column.

The IRIS FTL 0300 3-D Vibrational Sieve Shaker is engineered for precise particle size analysis, providing unmatched efficiency for both powder and liquid sampling in laboratory environments. With advanced 3D motion capabilities, this instrument optimizes the granulation testing process, ensuring accurate results tailored for high-demand applications.
Featuring digital control settings, the IRIS FTL 0300 allows for seamless adjustments of power, sieving time, and intermittent operation, making it a versatile addition to your lab equipment. Designed to accommodate up to 5 sieves of 80mm or 8 sieves of 50mm height, this shaker offers flexibility in handling various sample sizes effectively, enhancing your productivity.
- Electromagnetic mechanism producing efficient 3D particle motion
- Capacity for 5 sieves of 80mm or 8 sieves of 50mm height
- Digital controls for power, time, and intermittent settings
- Inclusive of a sieve diameter range from 250mm to 305mm
- Ideal for granulometric tests in both pharmaceutical and agricultural applications
Optimize your laboratory's sieving processes with the IRIS FTL 0300, ensuring higher precision and reproducibility in every analysis.