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D1073 

- SIL 2 Temperature Signal Converter and Trip Amplifiers 

G.M. International ISM0019-13 

For installations in which both the Ci and Li of the Intrinsically Safe apparatus exceed 1 % of the Co and Lo parameters of the Associated Apparatus (excluding the cable), 
then 50 % of Co and Lo parameters are applicable and shall not be exceeded 

(50 % of the Co and Lo become the limits which must include the cable such that 

Ci C cable 

 50 % of Co and Li  L cable 

 50 % of Lo). 

If the cable parameters are unknown, the following value may be used: Capacitance 60pF per foot (180pF per meter), inductance 0.20µH per foot (0.60µH per meter). 
The Intrinsic Safety Entity Concept allows the interconnection of Intrinsically Safe devices approved with entity parameters not specifically examined in combination as a system 
when the above conditions are respected. 
For Division 1 and Zone 0 installations, the configuration of Intrinsically Safe Equipment must be FM approved under Entity Concept (or third party approved); 
for Division 2 installations, the configuration of Intrinsically Safe Equipment must be FM approved under non-incendive field wiring or Entity Concept (or third party approved). 

Parameters Table 

Must 

be 

Hazardous Area/ 

Hazardous Locations 

Device Parameters 

D1073 Associated 

Apparatus Parameters 

Must 

be 

Hazardous Area/ 

Hazardous Locations 

Cable Parameters 

Uo / Voc = 10.8 V 

Ui / Vmax 

In the system safety analysis, always check the Hazardous Area/Hazardous Locations devices to conform with the related system documentation, if the device is Intrinsically Safe check 
its suitability for the Hazardous Area/Hazardous Locations and gas group encountered and that its maximum allowable voltage, current, power (Ui/Vmax, Ii/Imax, Pi/Pi) are not exceeded 
by the safety parameters (Uo/Voc, Io/Isc, Po/Po) of the D1073 Associated Apparatus connected to it. Also consider the maximum operating temperature of the field device, check that 
added connecting cable and field device capacitance and inductance do not exceed the limits (Co/Ca, Lo/La, Lo/Ro) given in the Associated Apparatus parameters for the effective gas 
group. See parameters on

 

enclosure side and the ones indicated in the table below:

 

D1073 Terminals 

13 - 14 - 15 - 16 

 

D1073 Terminals 

D1073 Associated 

Apparatus Parameters 

Ci / Ci  C cable 

 

(IIC-A, B) 

Co / Ca = 2.134 µF 

Co / Ca = 14.994 µF 
Co / Ca = 65.994 µF 

(IIB-C) 
(IIA-D) 

 

Ch1 

(IIC-A, B) 

Lo / La = 468 mH 

Lo / La = 1874 mH 
Lo / La = 3749 mH 

(IIB-C) 
(IIA-D) 

 

Li / Li L cable 

(IIC-A, B) 

Lo / Ro = 1510 µH/

 

Lo / Ro = 6050 µH/

 

Lo / Ro = 12100 µH/

 

(IIB-C) 
(IIA-D) 

 

Li / Ri device and 

L cable / R cable 

Io / Isc = 9 mA 

Ii/ Imax 

13 - 14 - 15 - 16 

 

Ch1 

Po / Po = 24 mW 

Pi / Pi 

13 - 14 - 15 - 16 

 

Ch1 

13 - 14 - 15 - 16 

Ch1 

13 - 14 - 15 - 16 

Ch1 

13 - 14 - 15 - 16 

Ch1 

NOTE for USA and Canada: 

IIC equal to Gas Groups A, B, C, D, E, F and G 
IIB equal to Gas Groups C, D, E, F and G 

IIA equal to Gas Groups D, E, F and G 

When used with separate powered intrinsically safe devices, check that maximum allowable voltage (Ui/Vmax) of the D1073 Associated Apparatus are not exceeded by the safety 
parameters (Uo/Voc) of the Intrinsically Safe device, indicated in the table below: 

Must 

be 

Hazardous Area/ 

Hazardous Locations 

Device Parameters 

D1073 Associated 

Apparatus Parameters 

Ui / Vmax = 18 V 

Uo / Voc 

D1073 Terminals 

Ch1  13 - 14 - 15 - 16 

 

Ci = 6 nF, Li= 0 nH 

Ch1  13 - 14 - 15 - 16 

Summary of Contents for D1073S

Page 1: ...D1073 SIL 2 Temperature Signal Converter and Trip Amplifiers ISM0019 13 D1073S INSTRUCTION MANUAL INSTRUCTION MANUAL SIL 2 Temperature Signal Converter And Trip Amplifiers Din Rail Model D1073S ...

Page 2: ...max 600 Ω load source mode current limited at 22 mA or 0 1 to 5 V or 0 2 to 10 V signal limited at 11 V Resolution 2 µA current output or 1 mV voltage output Transfer characteristic linear or reverse on mV or transmitting potentiometer temperature linear or reverse on temperature sensors Response time 50 ms 10 to 90 step change Output ripple 20 mVrms on 250 Ω load Alarm Trip point range within rat...

Page 3: ... resistance compensation Reference Junction Compensation automatic or fixed programmable value 0 4 20 mA 0 1 5 V 0 2 10 V Output Signal temperature linear or reverse 16 characters tag Two independent trip amplifiers Output for burnout detection Common burnout detection available when using Power Bus enclosure High Accuracy µP controlled A D converter Three port isolation Input Output Supply EMC Co...

Page 4: ...ntation if the device is Intrinsically Safe check its suitability for the Hazardous Area Hazardous Locations and gas group encountered and that its maximum allowable voltage current power Ui Vmax Ii Imax Pi Pi are not exceeded by the safety parameters Uo Voc Io Isc Po Po of the D1073 Associated Apparatus connected to it Also consider the maximum operating temperature of the field device check that...

Page 5: ...S LOCATIONS CLASS I DIVISION 2 GROUPS A B C D T Code T4 CLASS I ZONE 2 GROUP IIC T4 For SIL applications alarm contacts must be used in series with equal configuration Relay contact shown in de energized position MODEL D1073S 3 4 1 2 RL mA V Supply 24 Vdc Source I Source V Out 1 13 14 15 16 5 6 7 8 Alarm A Alarm B Set A Set B In 1 3 wire RTD 4 wire RTD Pot MODEL D1073S 3 4 1 2 RL mA V Supply 24 Vd...

Page 6: ...connect power before servicing or unless area is known to be nonhazardous Failure to properly installation or use of the equipment may risk to damage the unit or severe personal injury The unit cannot be repaired by the end user and must be returned to the manufacturer or his authorized representative Any unauthorized modification must be avoided Warning Operation Input channel of D1073 accepts a ...

Page 7: ...ocouple positive extension wire at terminal 15 negative and shield if any at terminal 16 Make sure that compensating wires have the correct metal and thermal e m f and are connected to the appropriate thermocouple terminal note that a wrong compensating cable type or a swapped connection is not immediately apparent but introduces a misleading measurement error that appears as a temperature drift F...

Page 8: ...e value obtained from the section Technical Data Considering the 1 3 load power and the 70 above discussed the power effectively dissipated internally by the isolators can therefore become of the actual power delivered by the power supply Digital barriers dissipate all the supply power inside the enclosure consequently the total power dissipation into a cabinet with mixed analog and digital barrie...

Page 9: ...value press the Select key to highlight the character you want to change and then the Up and Down keys to select the number confirm the modification with the Enter key 7 Sens 3 Level Menu Displays the input sensor type configuration Press Enter to set the input sensor press the Select key to the next menu level item or Up key to return to second level If you pressed Enter key you can choose betwee...

Page 10: ...essed Enter key you can choose between 5 different alarm conditions press Select key to change the type and then the Enter key to confirm the choice The condition types are OFF no alarm detection the relay output is always in normal condition HI high alarm condition the relay output change status when an alarm condition is detected input variable goes above the set value LO low alarm condition the...

Page 11: ...n type Fixed only range from 60 to 100 C RTD line resist line resistance error compensation value thermoresistance only range from 5 to 20 Ω INPUT TAG SECTION OUTPUT SECTION Output analog output type 4 20 mA current output range from 4 to 20 mA 0 20 mA current output range from 0 to 20 mA 1 5 V voltage output range from 1 to 5 V 0 5 V voltage output range from 0 to 5 V 2 10 V voltage output range ...

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