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D1014 

- SIL 2 Repeater Power Supply Hart compatible 

G.M. International ISM0052-16 

General Description:

 The single and dual channel DIN Rail Repeater Power Supply, D1014S and D1014D is a high integrity analog input interface suitable for applications requiring 

SIL 2 level (according to IEC61508:2010 Ed. 2) in safety related system for high risk industries. Provides a fully floating dc supply for energizing conventional 2 wires 4-20 mA 
transmitters located in Hazardous Area, and repeats the current in floating circuit to drive a Safe Area load. The circuit allows bi-directional communication signals, for Hart transmitters. 

Function:

 1 or 2 totally independent and isolated channels I.S. analog input for 2 wires loop powered Hart transmitters, provides 3 port isolation (input/output/supply) and current 

(source or sink) or voltage output signal. 

Signalling LED:

 Power supply indication (green). 

Field Configurability:

 mA (source or sink) or V output signal. 

Hart Communication Frequency Band:

 0.5 to 2.5 KHz within 3 dB. 

EMC: 

Fully compliant with CE marking applicable requirements. 

 

Functional Safety Management Certification: 

G.M. International is certified by TUV to conform to IEC61508:2010 part 1 clauses 5-6 for safety related systems up to and included SIL3. 

Supply:

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

 5 Vpp. 

Current consumption @ 24 V: 

110 mA for 2 channels D1014D, 55 mA for 1 channel D1014S with 20 mA output typical. 

Current consumption @ 12 V: 

220 mA for 2 channels D1014D, 110 mA for 1 channel D1014S with 20 mA output typical. 

Power dissipation:

 1.8 W for 2 channels D1014D, 0.9 W for 1 channel D1014S with 24 V supply voltage and 20 mA output typical. 

Max. power consumption: 

at 30 V supply voltage and short circuit condition, 3.4 W for 2 channels D1014D, 1.7 W for 1 channel D1014S. 

Isolation (Test Voltage): 

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

Input:

 4 to 20 mA (2 wire Tx current limited at 

 25 mA). 

Transmitter line voltage:

 

 15.0 V at 20 mA with max. 20 mVrms ripple on 0.5 to 2.5 KHz frequency band. 

Output:

 4 to 20 mA, on max. 600 

 load in source mode; V min. 5 V at 0 

 load V max. 30 V in sink mode, current limited at 

 25 mA or 1 to 5 V on internal 250 

 shunt (or 2 to 10 V 

on internal 500 

 shunt on request). 

Response time:

 

20 ms (10 to 90 % step change). 

Output ripple:

 

 20 mVrms on 250 

 communication load on 0.5 to 2.5 KHz band. 

Frequency response:

 

0.5 to 2.5 KHz bidirectional within 3 dB (Hart protocol). 

Performance:

 Ref. Conditions 24 V supply, 250 

 load, 23 ± 1 °C ambient temperature. 

Calibration accuracy: 

 ± 0.1 % of full scale. 

Linearity error: 

 ± 0.1 % of full scale. 

Supply voltage influence: 

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

Load influence: 

 ± 0.05 % of full scale for a 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 nA IIC T4 Gc 

IECEx / INMETRO:

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

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

UKR TR n. 898:

 2ExnAiaIICT4 X, ExiaI X 

associated apparatus and non-sparking electrical equipment. 

Uo/Voc = 25.2 V, Io/Isc = 93 mA, Po/Po = 585 mW at terminals 14-15, 10-11. 

Um = 250 Vrms, -20 °C 

 Ta 

 60 °C. 

Approvals: 

DMT 01 ATEX E 042 X conforms to EN60079-0, EN60079-11, EN60079-26. 

IECEx BVS 07.0027X conforms to IEC60079-0, IEC60079-11, IEC60079-26. 

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

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

INMETRO DNV 13.0108 X conforms to ABNT NBR IEC60079-0, ABNT NBR IEC60079-11, ABNT NBR IEC60079-15, ABNT NBR IEC60079-26, ABNT NBR IEC 61241-11. 

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. 

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 

GOST R 12.2.007.0-75, R 51330.0-99, R 51330.10-99  

GOST 12.2.007.0,22782.0,22782.5  

TÜV Certificate No. C-IS-236198-03, SIL 2 conforms to IEC61508:2010 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-13625 and KR No.MIL20769-EL001 Certificates for maritime applications . 

Mounting:

  

T35 DIN Rail according to EN50022. 

Weight:

 

about 170 g D1014D, 115 g D1014S. 

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 

FSM

SIL 3

Summary of Contents for D1014D

Page 1: ...D1014 SIL 2 Repeater Power Supply Hart compatible ISM0052 16 D1014S D1014D INSTRUCTION SAFETY MANUAL SIL 2 Repeater Power Supply Hart compatible DIN Rail Models D1014S D1014D ...

Page 2: ...ion accuracy 0 1 of full scale Linearity error 0 1 of full scale Supply voltage influence 0 05 of full scale for a min to max supply change Load influence 0 05 of full scale for a 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 Environment...

Page 3: ...N Rail and plug in terminal blocks 250 Vrms Um max voltage allowed to the instruments associated with the barrier Not used Terminal block connections HAZARDOUS AREA SAFE AREA Input Ch 2 for 2 wire Transmitters Input Ch 2 for 2 wire Transmitters Not used Not used Input Ch 1 for 2 wire Transmitters Input Ch 1 for 2 wire Transmitters Not used 9 10 11 12 13 14 15 16 Output Ch 1 for Current Source mode...

Page 4: ...A D 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 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...

Page 5: ...C SAFE AREA ZONE 2 GROUP IIC T4 NON HAZARDOUS LOCATIONS CLASS I DIVISION 2 GROUPS A B C D T Code T4 CLASS I ZONE 2 GROUP IIC T4 MODEL D1014D 14 15 3 4 1 2 RL mA mA V HHT Ch 1 Supply 12 24 Vdc Source I Source V Sink I Out 1 HHT 2 Wire Tx I In 1 10 11 5 6 RL mA mA V Source I Source V Sink I Out 2 2 Wire Tx In 2 RL RL HHT HHT I 7 8 Ch 2 Supply 12 24 Vdc MODEL D1014S 14 15 3 4 1 2 RL mA mA V HHT Ch 1 ...

Page 6: ...fety logic solver is config ured to detect High failures and does not automatically trip on these failures this failure mode 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 that the application program in the Safety logic solver is config ured to detect Low failures and does not automati...

Page 7: ...ished via conduit connections or another acceptable Division 2 Zone 2 wiring method according to the NEC and the CEC Not to be connected to control equipment that uses or generates more than 250 Vrms or Vdc with respect to earth ground D1014 series must be installed operated and maintained only by qualified personnel in accordance to the relevant national international installation standards e g I...

Page 8: ...responding section as an example Connect 12 24 Vdc power supply positive at terminal 3 and negative at terminal 4 for channel 1 For Model D1014D connect 12 24 Vdc power supply positive at terminal 7 and negative at terminal 8 for channel 2 For Model D1014S connect positive output of channel 1 at terminal 1 and negative output at 2 For Model D1014D in addition to channel 1 connections above connect...

Page 9: ...allows the mA sink or source mode or Volt operating mode configuration Configuration Side A Panel View Span Trimmer CH1 Screwdriver for Trimmers 1 x 0 5 mm Dip switch configuration Ω Ω Vtx Adjust Ch1 Screwdriver for Trimmers 2 x 0 5 mm Zero Trimmer CH1 Calibration Trimmer Ch1 Turn the trimmer clockwise to Increase Output value or turn the trimmer counterclockwise if you want to decrease Output val...

Page 10: ...ly is the same for all channels there for don t separate the terminals because one channel remains switched off Different power supply Cut both pins of the connector to open the wiring between the terminals using a wire cutter Turn the trimmer clockwise to Increase Output value or turn the trimmer counterclockwise if you want to decrease Output value Turn the trimmer clockwise to Increase Output v...

Page 11: ...llow step 1 Out 2 PS Supply _ Out 1 DMM V1 CAL In 2 V1 CAL In 1 DMM mA mA mA mA MODEL D1014D 14 15 3 4 1 2 10 11 5 6 7 8 V V Out 2 PS Supply _ Out 1 DMM V1 CAL In 2 V1 CAL In 1 DMM mA mA MODEL D1014D 14 15 3 4 1 2 10 11 5 6 7 8 If the maximum deviation is exceeded repeat the board calibration and proceed in the following way Set the calibrator CAL at 20 000 mA and regulate the current read by mult...

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