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WNIP SEPT OCT 19.5 DIGITAL

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28<br />

<strong>19.5</strong><br />

New sensor generation for 3-dimensional object measurement<br />

Wenglor has developed<br />

sensors that can scan and<br />

evaluate objects in 3 dimensions.<br />

This generation of 70 models<br />

of the weCat3D Profile Sensors<br />

allows data to be either read out<br />

directly as measured values or<br />

used for rapid further processing<br />

of the point cloud.<br />

3 D calculation of volume is of<br />

great value in industries such as<br />

food, machinery manufacturing,<br />

woodworking, electronics,<br />

automotive and pharmaceutical<br />

where precise compliance<br />

to weight and geometric<br />

specifications measurements are<br />

demanded.<br />

More than 12 million<br />

measuring points per second.<br />

The weCat3D series works with<br />

a visual field width within a range<br />

of 30 to 1300 mm in the horizontal<br />

X-axis and is capable of detecting<br />

differences in height of just 2.0 µm<br />

within the Z working range at a<br />

rate of 3.6 to 12 million measuring<br />

points per second. Available laser<br />

classes (1, 2M, 3R, 3B) and two<br />

selectable types of light (red, blue)<br />

result in a diverse product portfolio<br />

of more than 70 models.<br />

Two performance classes and a<br />

thousand possibilities<br />

With a weight of just 300 g and<br />

a space-saving housing of 90 x<br />

36 x 64 mm), the model weCat3D<br />

MLSL scans as many as 3.6 million<br />

measuring points/sec, has an<br />

output range of up to 4000 Hz, as<br />

well as a resolution of down to 22<br />

µm in visual field width X and down<br />

to 3.3 µm in working distance Z.<br />

The model weCat3D MLWL<br />

scans up to 12 million measuring<br />

points/sec, has an output rate of up<br />

to 6000 Hz, visual field widths from<br />

30 to 1300 mm and high resolution<br />

down to 17 µm in visual field width<br />

X and down to 2.0 µm in working<br />

distance Z.<br />

Due to this extremely high<br />

resolution in the Z and X directions,<br />

the sensors can detect the smallest<br />

components in the micron range<br />

such as those used in PCB assembly.<br />

The special algorithms allow<br />

the sensors to generate powerful<br />

measuring signals and top quality<br />

profile data that is not even<br />

impaired by glossy, reflective<br />

surfaces such as metals.<br />

The high dynamic range<br />

ensures that objects can be<br />

precisely measured almost<br />

independent of colour and<br />

brightness.<br />

info@asstech.co.za<br />

Controllable single-use diaphragm valve<br />

Introducing the world’s first<br />

controllable single-use<br />

diaphragm valve, the GEMÜ<br />

SUMONDO. The product range<br />

now comprises a manually<br />

operated version alongside a<br />

pneumatically operated solution.<br />

The trend towards simplified<br />

upstream and downstream<br />

plant designs and the<br />

effective prevention of crosscontamination<br />

risks means that<br />

single-use disposable technology<br />

is becoming an increasingly<br />

high-profile and important field<br />

– especially in pharmaceutical<br />

process engineering.<br />

Single-use design is<br />

increasingly being used<br />

particularly in the manufacture<br />

of smaller batch sizes, which are<br />

required, for example, in research<br />

and pilot plants.<br />

GEMÜ SUMONDO links the<br />

valve body and actuator together<br />

using a defined process. After the<br />

application process, only the valve<br />

body is removed, the actuator itself<br />

can be reused repeatedly in the<br />

plant.<br />

The valve body is manufactured<br />

from polypropylene in a cleanroom<br />

and is gamma-sterilizable up to<br />

50 kGy. It isolates the working<br />

medium hermetically from<br />

the environment and from the<br />

actuator via a welded diaphragm.<br />

The internally welded diaphragm<br />

protects the medium from the<br />

environment not only during<br />

operation, but also after removal of<br />

the valve body.<br />

The major advantage of<br />

GEMÜ SUMONDO in comparison<br />

to conventional pinch valves lies<br />

in the precise controllability of<br />

processes. Using a tried and tested<br />

actuator design from conventional<br />

plant engineering, a high degree<br />

of flexibility and reliability can be<br />

achieved.<br />

The manually operated version<br />

has an optical position indicator as<br />

standard.<br />

The new actuator is<br />

manufactured from high-grade<br />

plastic. It is gamma-sterilizable and<br />

washable.<br />

An autoclavable version is<br />

planned for the first six months<br />

of 2017. The process for selecting<br />

the valve body is identical to that<br />

for the pneumatically operated<br />

version.<br />

claudio.darpin@gemue.co.za<br />

Versatile and low cost pressure sensors<br />

The tried and tested principle<br />

of a thick-film ceramic<br />

measuring cell ensures great<br />

reliability from the compact<br />

and versatile type SEN-98/-99<br />

pressure sensors .<br />

This pressure sensor meets the<br />

highest of performance demands<br />

by virtue of its robust construction,<br />

overpressure safety properties, as<br />

well as temperature stability and<br />

good reproducibility.<br />

The unit’s overload protection<br />

limit is dependent on the<br />

measurement range, of which<br />

there are 31, running from -1...0<br />

bar to 0...600 bar relative pressure<br />

or from 0…1 to 0…25 bar absolute<br />

pressure. There is a choice of 4...20<br />

mA, 0...5 V or 0...10 V analogue<br />

outputs for signal transmission.<br />

Fast, on the spot information<br />

of the measured pressure is made<br />

possible by the practical AUF<br />

type plug-on displays. Standard<br />

sensors have protection class IP65.<br />

The wetted parts are stainless<br />

steel, ceramic and sealing<br />

material FKM. The SEN-98/-99 is<br />

manufactured with an accuracy of<br />

0.5% as standard, an accuracy of<br />

0.25% is available optionally.<br />

The optimum design opens<br />

up a wide range of applications<br />

for pressure sensors, for example,<br />

hydraulic systems, compressors,<br />

refrigeration industry, welding,<br />

vacuum, water and oil, gases.<br />

sales@instrotech.co.za

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