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Pressure

WIKA

PGT43.100 / 43.160 Diaphragm Pressure Gauge

Wherever the process pressure has to be indicated locally and, at the same time, a signal transmission to the central control or remote centre is desired, the WIKA PGT43.100 / 43.160 diaphragm pressure gauge intelliGAUGE® (patent, property right: e.g. DE 202007019025) can be used.

Price and delivery time will be given on request
Scale range (ø 100) 0 ... 400 mbar, 0 ... 25 bar
Scale range (ø 160) 0 ... 16 mbar, 0 ... 250 mbar
Nominal size 100, 160 mm
Accuracy class 1.6
Process connection with lower flange G ½ B
Ambient temperature -20 ... 60°C
Medium temperature +200 °C
Case Safety version S3 per EN 837

Wherever the process pressure has to be indicated locally and, at the same time, a signal transmission to the central control or remote centre is desired, the WIKA PGT43.100 / 43.160 diaphragm pressure gauge intelliGAUGE® (patent, property right: e.g. DE 202007019025) can be used.

The WIKA PGT43 is based upon a WIKA 43x.30 high-quality, stainless steel safety pressure gauge with a nominal size of 100 or 160. The pressure measuring instrument is manufactured in accordance with EN 837-3.

The intelliGAUGE WIKA PGT43.100 / 43.160 diaphragm pressure gauge fulfils all safety-related requirements of the relevant standards and regulations for the on-site display of the working pressure of pressure vessels.

The robust diaphragm measuring system produces a pointer rotation proportional to the pressure. An electronic angle encoder, proven in safety-critical automotive applications, determines the position of the pointer shaft – it is a non-contact sensor and therefore completely free from wear and friction. From this, the electrical output signal proportional to the pressure, e.g. 4 … 20 mA, is produced. The measuring span (electrical output signal) is adjusted automatically along with the mechanical display, i.e. the scale over the full display range corresponds to 4 … 20 mA. The electrical zero point can also be set manually.

The electronic WIKA sensor, integrated into the high-quality diaphragm pressure gauge, combines the advantages of electrical signal transmission with a local mechanical display that remains readable during a power failure. An additional measuring point for mechanical pressure display can thus be saved.

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Edward

Edward van Doorn

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