Vibratory Feeder - with V-shaped channel
LABORETTE 24
Reliable automatic feeding
The Vibratory Feeder LABORETTE 24 is ideal for automatic, uniform feeding of free-flowing materials into sample dividers, mills or mixers in your laboratory. The vibration, which is controlled by a microprocessor, conveys the sample material out of the funnel over the V-shaped stainless steel channel into the respective equipment. The flow rate can be individually adjusted; the vibration amplitude is precisely controlled – for absolute uniform feed of even smallest quantities. Safe and reliable.
The Vibratory Feeder LABORETTE with a V-shaped feeder channel made of stainless steel is ideal for a narrow directed material feed between 1 g/min and 1,500 g/min.
Through vibration of a channel of stainless steel, free-flowing material is conveyed out of a funnel and to the open end of the channel in a uniform stream. The rate of flow can be controlled individually with a separate control device by modifying the vibration amplitude of the channel. Control of the vibration amplitude is performed by a microprocessor-controlled control unit with which even the smallest quantities of material can be conveyed with absolute uniformity.
The FRITSCH Vibratory Feeder with V-shaped channel is delivered with funnel and control unit.
Order your LABORETTE 24 with our practical stable, sturdy stand in which it is fitted slip-resistant – infinitely height-adjustable and rotatable and easily adaptable to any working situation.
FRITSCH-TIPP
The LABORETTE 24 is the perfect accessory for the combination with the FRITSCH Rotary Cone Sample Divider LABORETTE 27 and the FRITSCH Variable Speed Rotor Mill PULVERISETTE 14 premium line and classic line with automatic control of the channel vibration via the integrated interface – for perfect results and reliable reproducibility!
Details Rotary Cone Sample Divider LABORETTE 27
Details about the Variable Speed Rotor Mill PULVERISETTE 14 premium line
Details about the Variable Speed Rotor Mill PULVERISETTE 14 classic line