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D1054 

- SIL 2 Repeater Power Supply and Trip Amplifiers 

G.M. International ISM0067-18 

General Description:

 The single channel DIN Rail Repeater Power Supply and Trip Amplifier D1054S, provides a fully floating dc supply for energizing conventional 2 wires 4-20 mA 

transmitters, or separately powered 3, 4 wires 4-20, 0-20 mA transmitters located in Hazardous Area, and repeats the current in floating circuit to drive a Safe Area load. Output signal 
can be direct or reverse. The circuit allows bi-directional communication signals, for Hart-Smart transmitters. Two independent Alarm Trip Amplifiers are also provided. Each alarm 
energizes, or de-energizes, an SPST relay for high, low, low-startup or burnout alarm functions. The two alarm relays trip points are settable over the entire input signal range. 

Function:

 1 channel I.S. analog input for 2 wires loop powered or separately powered Smart transmitters, provides 3 port isolation (input/output/supply) and current (source mode) or 

voltage output signal. In addition it provides two SPST relay alarm contacts with adjustable alarm trip point. 

Signalling LEDs:

 Power supply indication (green), burnout (red), alarm A (red), alarm B (red). 

Configurability:

 Totally software configurable, no jumpers or switches, mA or V output signal, linear or reverse, alarm trip point, high, low, low-startup or burnout alarm mode, NE/ND 

relay operation, hysteresis, delay time, by GM Pocket Portable Configurator PPC1090, powered by the unit or configured by PC via RS-232 serial line with PPC1092 Adapter and 
SWC1090 Configurator software. 

Smart Communication Frequency Band:

 0.5 to 40 KHz within 3 dB (Hart and higher frequency protocols), only with mA direct current output. 

EMC:

 Fully compliant with CE marking applicable requirements. 

Supply: 

12-24 Vdc nom (10 to 30 Vdc) reverse polarity protected, ripple within voltage limits 

 5 Vpp. 

Current consumption @ 24 V: 

90 mA with 20 mA input/output and relays energized. 

Current consumption @ 12 V: 

190 mA with 20 mA input/output and relays energized. 

Power dissipation:

 1.7 W with 24 V supply, 20 mA input/output and relays energized. 

Max. power consumption: 

at 30 V supply voltage, input short circuit, overload condition, relays energized and PPC1090 connected, 2.9 W. 

Isolation (Test Voltage): 

I.S. In/Outs 1.5 KV; I.S. In/Supply 1.5 KV; Analog Out/Supply 500 V; Analog Out/Alarm Outs 1.5 KV; Alarm Outs/Supply 1.5 KV; Alarm Out/Alarm Out 1.5 KV. 

Input: 

0/4 to 20 mA (separately powered input, voltage drop 

 1 V) or 4 to 20 mA (2 wire Tx current limited at 

 25 mA). 

Integration time: 

100 ms. 

Resolution/Visualization: 

1 µA. 

Input range: 

0 to +22 mA. 

Transmitter line voltage: 

 15.0 V at 20 mA with max. 20 mVrms ripple on 0.5 to 40 KHz frequency band. 

Burnout: 

enabled or disabled. Analog output can be programmed to detect burnout condition with downscale or highscale forcing. Alarms can be programmed to detect burnout condition. 

Burnout range: 

low and high separated trip point value programmable between -5 to +25 mA. 

Output: 

0/4 to 20 mA, on max. 600 

 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: 

1 µA current output or 1 mV voltage output. 

Transfer characteristic: 

linear or reverse. 

Response time: 

 50 ms (10 to 90 % step change). 

Output ripple: 

 20 mVrms on 250 

 communication load on 0.5 to 40 KHz band. 

Frequency response: 

0.5 to 40 KHz bidirectional within 3 dB (Hart and higher frequency protocols) only with mA direct current output. 

Alarm:

 

Trip point range: 

within rated limits of input sensor (see input for step resolution). 

ON-OFF delay time: 

0 to 1000 s, 100 ms step, separate setting. 

Hysteresis: 

0 to 5 mA (see input for step resolution). 

Output: 

voltage free SPST relay contact. 

Contact rating: 

2 A 250 Vac 500 VA, 2 A 250 Vdc 80 W (resistive load). 

Performance:

 Ref. Conditions 24 V supply, 250 

 load, 23 ± 1 °C ambient temperature. 

Input:

  

Calibration and linearity accuracy: 

 ± 20 µA 

   Temperature 

influence: 

 ± 1 µA of input for a 1 °C change. 

Analog:

 Calibration 

accuracy: 

 ± 0.1 % of full scale. 

Output:

 Linearity 

error: 

 ± 0.05 % of full scale. 

 

 

Supply voltage influence: 

 ± 0.05% of full scale for min to max supply change 

   Load 

influence: 

 ± 0.05% of full scale for 0 to 100 % load resistance change 

   Temperature 

influence: 

 ± 0.01 % on zero and span for a 1 °C change. 

Compatibility:

 

 

CE mark compliant, conforms to Directive: 2014/34/EU ATEX, 2014/30/EU EMC, 2014/35/EU LVD, 2011/65/EU RoHS.

 

Environmental conditions:  

 Operating:

 temperature limits -20 to + 60 °C, relative humidity max 95 %. 

Storage:

 temperature limits – 45 to + 80 °C. 

Safety Description:

 

ATEX: 

II (1) G [Ex ia Ga] IIC, II (1) D [Ex ia Da] IIIC, I (M1) [Ex ia Ma] I, II 3G Ex nAC IIC T4 Gc 

IECEx: 

[Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] I, Ex nAC IIC T4 Gc 

INMETRO:

 [Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] I 

UL: 

AIS / I, II, III / 1 / ABCDEFG, [AEx ia] IIC; 

C-UL: 

AIS / I, II, III / 1 / ABCDEFG, [Ex ia] IIC 

FM: 

NI / I / 2 / ABCD / T4, NI / I / 2 / IIC / T4, AIS / I, II, III / 1 / ABCDEFG, AEx [ia] IIC; 

FM-C: 

NI / I / 2 / ABCD / T4, NI / I / 2 / IIC / T4, AIS / I, II, III / 1 / ABCDEFG, Ex [ia] IIC 

EAC-EX: 

2Ex nA nC [ia Ga] IIC T4 Gc X, [Ex ia Da] IIIC X, [Ex ia Ma] I X 

UKR TR n. 898: 

2ExnAnCiaIICT4 X, ExiaI X 

associated electrical apparatus. 

Uo/Voc = 26.3 V, Io/Isc = 91 mA, Po/Po = 597 mW at terminals 14-15. 

Uo/Voc = 1.1 V, Io/Isc = 56 mA, Po/Po = 16 mW at terminals 15-16. 

Ui/Vmax = 30 V, Ii/Imax = 128 mA, Ci = 1.05 nF, Li = 0 nH at terminals 15-16. 

Um = 250 Vrms, -20 °C 

 Ta 

 60°C. 

Approvals: 

Presafe 16ATEX8917 conforms to EN60079-0, EN60079-11, EN50303.  

IECEx PRE 16.0084 conforms to IEC60079-0, IEC60079-11. 

IMQ 09 ATEX 013 X conforms to EN60079-0, EN60079-15. 

IECEx IMQ 13.0011X conforms to IEC60079-0, IEC60079-15. 

INMETRO DNV 13.0135 X conforms to ABNT NBR IEC60079-0, ABNT NBR IEC60079-11. 

UL & C-UL E222308 conforms to UL913, UL 60079-0, UL60079-11, UL60079-15 ANSI/ISA 12.12.01 for UL 

and CSA-C22.2 No.157-92, CSA-E60079-0, CSA-E60079-11, CSA-C22.2 No. 213 and CSA-E60079-15 for C-UL, refer to control drawing ISM0125. 

FM & FM-C No. 3024643, 3029921C, conforms to Class 3600, 3610, 3611, 3810, ANSI/ISA 12.12.02, ANSI/ISA 60079-0, ANSI/ISA 60079-11, 

C22.2 No.142,  C22.2 No.157, C22.2 No.213, E60079-0, E60079-11, E60079-15,  

C-IT.MH04.B.00306 conforms to GOST R IEC 60079-0,GOST R IEC 60079-11, GOST R IEC 60079-15. 

C

Ц

 16.0034 X conforms to 

ДСТУ

 7113, 

ГОСТ

 22782.5-78, 

ДСТУ

 I

ЕС

 60079-15. 

TÜV Declaration of Compliance No. C-IS-722238330, SIL 2 according to IEC 61508:2010 Ed.2. 

TÜV Certificate No. C-IS-236198-09, SIL 3 Functional Safety certificate conforms to IEC61508:2010 Ed.2, for Management of Functional Safety. 

DNV No.A-14279 and KR No.MIL20769-EL001 Certificates for maritime applications. 

Mounting: 

T35 DIN Rail according to EN50022. 

Weight: 

about 175 g. 

Connection: 

by polarized plug-in disconnect screw terminal blocks to accommodate terminations up to 2.5 mm

2

Location:

 Safe Area/Non Hazardous Locations or Zone 2, Group IIC T4, Class I, Division 2, Groups A, B, C, D Temperature Code T4 

and Class I, Zone 2, Group IIC, IIB, IIA T4 installation. 

Protection class: 

IP 20. 

Dimensions: 

Width 22.5 mm, Depth 99 mm, Height 114.5 mm. 

 

 

Technical Data 

Characteristics 

Summary of Contents for D1054S

Page 1: ...D1054 SIL 2 Repeater Power Supply and Trip Amplifiers ISM0067 18 D1054S INSTRUCTION SAFETY MANUAL SIL 2 Repeater Power Supply and Trip Amplifiers Din Rail Model D1054S...

Page 2: ...ectional within 3 dB Hart and higher frequency protocols only with mA direct current output Alarm Trip point range within rated limits of input sensor see input for step resolution ON OFF delay time 0...

Page 3: ...10 V Output Signal linear or reverse Wide Band Smart Communication Hart compatible Input and Output short circuit proof Two independent trip amplifiers Output for burnout detection Common burnout dete...

Page 4: ...te powered intrinsically safe devices check that maximum allowable voltage current Ui Vmax Ii Imax of the D1054 Associated Apparatus are not exceeded by the safety parameters Uo Voc Io Isc of the Intr...

Page 5: ...r 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...

Page 6: ...red to detect High failure this failure has been classified as a dangerous detected DD failure Fail Low failure mode that causes the output signal to go below the minimum output current 4 mA Assuming...

Page 7: ...mA of full span Fail High failure mode that causes the output signal to go above the maximum output current 20 mA Assuming that the application program in the Safety logic solver is configured to dete...

Page 8: ...of the circuit diagram and is listed for completeness When calculating the SFF this failure mode is not taken into account Both alarm A and B trip amplifiers must be programmed with equal configuratio...

Page 9: ...to not respond to a demand from the process i e being unable to go to the defined Fail Safe state so that the output relays remain energized or relay contacts remain closed Fail Dangerous Detected a d...

Page 10: ...l The proof test shall be performed to reveal dangerous faults which are undetected by diagnostic This means that it is necessary to specify how dangerous undetected fault which have been noted during...

Page 11: ...in Hazardous Area Hazardous Locations or unless area is known to be onhazardous Warning substitution of components may impair Intrinsic Safety and suitability for Division 2 Zone 2 Warning de energiz...

Page 12: ...and Down keys to select the number confirm the modification with the Enter key 8 Br HI 3 Level Menu Displays the Burnout HIGH Trip Point Value configuration Press Enter to set the burnout condition tr...

Page 13: ...ring range corresponding to defined low output value Upscale input value of measuring range corresponding to defined high output value Burnout Low low burnout condition trip point value below this val...

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