Pressure transmitter TST 16.0 GL

Pressure transmitter TST 16.0 GL

Approved for shipbuilding applications by Germanischer Lloyd
Certified acc. Germanischer Lloyd GL Directive, Chapter 2, Edition 2012
Measuring ranges from -1 ... 0 bar to 0 … +2000 bar
Output signal 4 ... 20 mA (2-wire)
Dry stainless steel measuring cell and compact stainless steel housing

product description Pressure transmitter TST 16.0 GL

Type TST 16.0 pressure transmitters are designed for the special requirements and measuring tasks in mechanical engineering, hydraulics and pneumatics, especially for shipbuilding and maritime shipping. The pressure transmitters are equipped with a DNV-GL approval acc. Germanischer Lloyd, GL Directive, Chapter 2, Edition 2012.

Pressure transmitters type TST 16.0 have a robust and compact stainless steel housing, a dry, fully welded stainless steel measuring diaphragm and are suitable for media temperatures from -40 to +125 ° C. A 4 ... 20 mA analogue output signal, high reliability and the possibility to flexibly combine all process connections, connectors and pin assignments on the market allow customized sensor configurations for almost all maritime pressure measurement tasks.

 

Standard pressure ranges TST 16.0
Individual pressure ranges on request
Measuring range P(bar) 1,0 1,6 2,0 2,5 4,0 6,0 10,0 16,0 20 25 40
Overpressure P(bar) 6 6 6 10 10 20 20 40 40 100 100
Bursting pressure P(bar) 9 9 9 15 15 30 30 60 60 150 150
Measuring range P(bar) 60 100 160 200 250 400 600 1000 1600* 2000*  
Overpressure P(bar) 200 200 400 400 750 750 840 1200 2400 2400  
Bursting pressure P(bar) 300 300 600 600 1000 1000 1050 1500 3000 3000  


* all measuring ranges with a final value of > 1000 bar require a high-pressure process connection

Technical data Pressure transmitter TST 16.0
Electrical parameters TST 16.0
Output signal
Operating voltage UB
Permitted max. load RA
4 ... 20 mA (2-wire)
9 ... 32 V DC
RA ≤ (UB - 9 V) / 20 mA
Response time (10 ... 90 %) < 1 ms
Accuracy specifications  
BFSL ≤± 0,15 % FS
Total error at RT
≤± 0,50 % FS - including nonlinearity, hysteresis, zero point and full scale error
(according to IEC 61298-2).
Stability per year ≤± 0,10 % FS