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TTH200, TTR200, TTF200 

 TEMPERATURE TRANSMITTER  |  SM/TTX200/SIL-EN REV. E 

 

 

6

 

Constraints 

 

The following constraints on the use of the compliant item needs to be considered: 

•  The entire valid range for the output signal must be configured between min. 3.8 mA and max. 20.5 mA (factory setting). 
•  The HART communication master must comply with the safety requirements of the customer application. 
•  No HART Multidrop Mode (forces current out to 4mA) 
•  The low alarm must be configured to a value 

á

 3.6 mA. 

•  The high alarm must be configured to a value 

â

 21 mA. 

•  To ensure reliable functioning of the current output, the terminal voltage at the device must be between  

11 to 42 V DC (non-explosion-proof design) and 

•  11 to 30 V DC (explosion-proof design). 
•  The DCS power supply for the transmitter must be capable to provide the required voltage level even when the current output 

is active with the configured high alarm. 

•  The head mounted electronics TTH200 with IP00 rating according IEC 60529 for the measurement loop must be protected 

against environmental influences by an suitable installation housing. 

 
The device does not meet safety requirements under the following conditions: 

•  During configuration and simulation 
•  With deactivated write protection 
•  During an inspection, proof test of the safety function 

 
Before commissioning the device, check whether the device setup assures the system's safety function. Make also sure that the 
correct device has been installed at the correct measuring point. 
Whenever the device is updated (if the device's mounting position is changed or the setup is modified, for example), the safety 
function of the device must be checked again. 
Once the safety function has been checked, the device must be write-protected to prevent changes to the setup, since any change to 
the measurement system or parameters may impact the safety function. 
 

 

 

 

Summary of Contents for TTH200

Page 1: ...ction TTH200 TTR200 TTF200 electronics for sensor head field and rail mounting for standard and high measurement This document must be considered in conjunction with related operating instructions Add...

Page 2: ...afe Failure Fraction SFF 7 Average probability of dangerous failure on demand PFDAVG 7 6 Constraints 8 7 Periodic proof test and maintenance 9 Proof Test 9 8 Installation commissioning configuration 1...

Page 3: ...2 as single transmitter installation Up to SIL 3 as redundant transmitter installation Mode of safety operation Low Demand Mode Hardware Fault Tolerance HFT 0 as single transmitter installation 1oo1 A...

Page 4: ...of failure per unit of time usually declared as FIT DD detected dangerous failures DU detected dangerous failures SD detected safe failures SU intrinsic safe failures PFDavg Average probability of dan...

Page 5: ...s High vibration environment The operation is above 67 maximum rating according to specification NAMUR NE43 Standardization of the signal level for the breakdown information of digital 4 to 20 mA tran...

Page 6: ...range from 20 0 to 23 6 mA The factory setting is 22 mA The low alarm current can be configured in a range from 3 5 to 4 0 mA The factory setting is 3 6 mA In the following cases and by some electric...

Page 7: ...Germany with results reported within FMEDA Report 12 04 016 TTx200 R023 Version V3 Revision R0 The summarized results are attached within Appendix Exida FMEDA Report Note The systematic safety integr...

Page 8: ...even when the current output is active with the configured high alarm The head mounted electronics TTH200 with IP00 rating according IEC 60529 for the measurement loop must be protected against envir...

Page 9: ...for voltage problems such as a low loop power supply voltage or increased wiring resistance This also tests for other possible electrical part failures 5 Send a HART command e g via EDD DTM FDI simul...

Page 10: ...guration parameters that are changed may affect the safety function of the device Therefore the safety function shall be checked again after modifications in accordance to the recommended proof tests...

Page 11: ...mperature transmitter 1 15 2 01 00 For safety applications only these versions were considered Optional Display HMI Type AS Optional LCD Indicator display for TTH200 HMI Type BS Optional LCD Indicator...

Page 12: ...actual number of field failures due to random events will be less than the number predicted by these failure rates The listed SN 29500 failure rates are valid for operating stress conditions typical o...

Page 13: ...lt detection time is 2 minutes Only the current output 4 to 20 mA is used for safety applications Only one input and one output are part of the considered safety function The application program in th...

Page 14: ...f data or information ABB Automation Products GmbH and its affiliates are not liable for damages and or losses related to such security breaches any unauthorized access interference intrusion leakage...

Page 15: ...TTH200 TTR200 TTF200 TEMPERATURE TRANSMITTER SM TTX200 SIL EN REV E 15 14Appendix Exida FMEDA Report...

Page 16: ...16 TTH200 TTR200 TTF200 TEMPERATURE TRANSMITTER SM TTX200 SIL EN REV E 14 Appendix Exida FMEDA Report...

Page 17: ...TTH200 TTR200 TTF200 TEMPERATURE TRANSMITTER SM TTX200 SIL EN REV E 17...

Page 18: ...18 TTH200 TTR200 TTF200 TEMPERATURE TRANSMITTER SM TTX200 SIL EN REV E 14 Appendix Exida FMEDA Report...

Page 19: ...TTH200 TTR200 TTF200 TEMPERATURE TRANSMITTER SM TTX200 SIL EN REV E 19...

Page 20: ...X200 SIL EN Rev E 07 2018 We reserve the right to make technical changes or modify the contents of this document without prior notice With regard to purchase orders the agreed particulars shall prevai...

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