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Bibby Scientific UC & US Hotplate Stirrers
LED temperature indicator
Choice of glass ceramic or ceramic coated
metal surface
Hot warning light, remains active even
when unplugged
Compact design to save bench space
Units can be stored on side, minimising
required storage space
Design allows retort base to slide
underneath
Compatible with SCT1 temperature
controller
Bibby Scientific introduces the stylish and economical range
of Undergrad, general purpose hotplate stirrers. The
Undergrad range has been designed with safety as
well as performance in mind, with an innovative LED
temperature indicator scale and a "Hot" warning light
which stays on, even when the hotplate is switched off
and unplugged from the mains.
The specifically designed chassis takes up less bench
space, makes storage easier and allows for a retort
base to fit underneath.
The Bibby Scientific range of Undergrad hotplates
includes dedicated hotplates and stirrers as well as
combination hotplate stirrer models, the majority
of which are available in a choice of ceramic or
coated metal tops. All surfaces are square to allow
more flexibility in vessel sizes and combinations,
for example four 250ml beakers can easily be
accommodated.
All hotplate models in the Undergrad range
feature a true °C temperature setting,
rather than a 1 to 10 arbitrary scale. The
LED temperature indicator surrounds the
heater control knob and progressively
illuminates to indicate the actual surface
temperature. This not only provides a
bright, obvious indication that the unit
is hot, which can be seen from across the
room, but also clearly differentiates the
heat and stir controls.
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All hotplate models feature a "Hot"
warning light, which will flash once the
hotplate surface reaches 50°C. The "Hot"
light will continue to flash even once the
unit has been switched off and unplugged
from the mains, until the surface
temperature drops below 50°C.
For safety all units have been designed to direct any
spills away from the user controls. A mains switch
is standard (excluding Stir only models) for greater
convenience and power saving. All units incorporate
the latest technology, microprocessor controlled,
dual thermocouples to ensure accurate temperature
control and over temperature protection.
Powerful magnets and motor give stirring speeds
up to 2000rpm and are capable of mixing large
volumes (up to 15 litres).
Digital Models
Digital versions of coated metal hotplate stirrers as well as the ceramic options are also available.
Replaced by an indicator this unit is fitted with an LED temperature indicator with a digital display. This is exclusively for those users who require to accurately observe the hotplate surface temperatures.
Compatible with the SCT1 temperature controller, both the digital units, the UC152D and the US152D are for precise sample temperature control.
Data Sheet
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Ordering Information
UC152D Digital Stirrer/hotplate, ceramic plate, 230V / 50Hz
US152D Digital Stirrer/hotplate, coated aluminium plate, 230V / 50Hz
UC152 Stirrer/hotplate, ceramic plate, 230V / 50Hz
US152 Stirrer/hotplate, coated aluminium plate, 230V / 50Hz
UC150 Hotplate, ceramic plate, 230V / 50Hz
US150 Hotplate, coated aluminium plate, 230V / 50Hz
UC151 Stirrer, ceramic plate, 230V / 50Hz
US151 Stirrer, stainless steel plate, 230V / 50Hz
UC152D/120V/60 Digital Stirrer/hotplate, ceramic plate, 120V / 60Hz
US152D/120V/60 Digital Stirrer/hotplate, coated aluminium plate, 120V / 60Hz
UC152/120V/60 Stirrer/hotplate, ceramic plate, 120V / 60Hz
US152/120V/60 Stirrer/hotplate, coated aluminium plate, 120V / 60Hz
UC150/120V/60 Hotplate, ceramic plate, 120V / 60Hz
US150/120V/60 Hotplate, coated aluminium plate, 120V / 60Hz
UC151/120V/60 Stirrer, ceramic plate, 120V / 60Hz
US151/120V/60 Stirrer, stainless steel plate, 120V / 60Hz
SCT1 Digital temperature controller
SCT1/1 Accessory probe holder
SCT1/2 PTFE temperature probe
SR1 Retort rod, 600mm x 12mm diameter
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Please note - Product designs and specifications are subject to change without notice. The user is responsible for determining the suitability of this product.
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