Pepperl Fuchs HiC2081
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Quick facts
| Availability | Confirmed on request |
| Category | H-System (Termination Board Mounting) |
| Lifecycle | active |
| Warranty | 12-month (new) · 3-month (used/refurbished) |
Shipping & availability
When can HiC2081 be shipped?
HiC2081 is sourced on request — request a quote and we'll confirm the exact availability and shipping timeline for this specific unit.
Can I pick up HiC2081 in person?
Local pickup from our Groningen, Netherlands warehouse may be possible — contact us before ordering to check availability and arrange a collection time.
Is express delivery available?
Yes — mention it when you request a quote for HiC2081 and we'll include express shipping options in our reply.
My factory is down and I need this urgently — can you help?
For a critical breakdown, contact us directly at +31 (0)50-7110348 or sales@partnerplc.com — we can look into same-day courier or dedicated taxi/hotshot delivery for HiC2081, subject to availability and destination.
Temperature Converter. 1-channel isolated barrier, 24 V DC supply (bus powered), Thermocouple, RTD, potentiometer or voltage input, Linearized output 4 mA ... 20 mA, sink/source, Sensor breakage detection, Configurable by PACTware, Line fault detection (LFD), Up to SIL 2 acc. to IEC/EN 61508, Housing width: 12.5 mm, Number of channels: 1-channel, Safety Integrity Level (SIL): SIL 2, Rated voltage: 20 ... 30 V DC bus powered via Termination Board, Type: 2-wire connection, Type [2]: 3-wire connection, Type [3]: 4-wire connection. Signal type: Analog input. Safety Integrity Level (SIL): SIL 2. Connection: SL1: 1a, 1b(-); 2a, 2b(+). Rated voltage: 20 ... 30 V DC bus powered via Termination Board. Ripple: within the supply tolerance. Power dissipation: ≤ 0.98 W. Power consumption: max. 0.98 W. Programming interface: programming socket. Connection side: field side. Connection: SL2: 5a(+), 1a(+), 1b(-), 5b(-). RTD: type Pt10, Pt50, Pt100, Pt500, Pt1000 (EN 60751: 1995)type Pt10GOST, Pt50GOST, Pt100GOST, Pt500GOST, Pt1000GOST (6651-94)type Cu10, Cu50, Cu100 (P50353-92)type Ni100 (DIN 43760). Measuring currentapprox. 200 µA with RTDTypes of measuring2-, 3-, 4-wire connectionLead resistancemax. 50 Ω per lineMeasurement loop monitoringsensor breakage, sensor short-circuit: . Measuring current: approx. 200 µA with RTD. Types of measuring: 2-, 3-, 4-wire connection. Lead resistance: max. 50 Ω per line. Measurement loop monitoring: sensor breakage, sensor short-circuit. Thermocouples: type B, E, J, K, N, R, S, T (IEC 584-1: 1995)type L (DIN 43710: 1985)type TXK, TXKH, TXA (P8.585-2001). Cold junction compensationexternal and internalMeasurement loop monitoringsensor breakage: . Cold junction compensation: external and internal. Measurement loop monitoring: sensor breakage. Potentiometer: 0 ... 20 kΩ (2-wire connection), 0.8 ... 20 kΩ (3-wire connection). Types of measuring3-wire connection: . Types of measuring: 3-wire connection. Voltage: selectable within the range -100 ... 100 mV. Input resistance: ≥ 1 MΩ (-100 ... 100 mV). Connection side: control side. Connection: SL1: 8a(+), 7a(-). Output: Analog current output. Current range0 ... 20 mA or 4 ... 20 mAFault signaldownscale 0 or 2 mA, upscale 21.5 mA (acc. NAMUR NE43)Sourceload 0 ... 550 Ω open-circuit voltage ≤ 18 VSinkVoltage across terminals 5 ... 30 V. If the current is supplied from a source > 25 V,series resistance of ≥ (V - 25)/0.0215 Ω is needed, where V is the source voltage.The maximum value of the resistance is (V - 5)/0.0215 Ω.: . Current range: 0 ... 20 mA or 4 ... 20 mA. Fault signal: downscale 0 or 2 mA, upscale 21.5 mA (acc. NAMUR NE43). Source: load 0 ... 550 Ω open-circuit voltage ≤ 18 V. Sink: Voltage across terminals 5 ... 30 V. If the current is supplied from a source > 25 V,series resistance of ≥ (V - 25)/0.0215 Ω is needed, where V is the source voltage.The maximum value of the resistance is (V - 5)/0.0215 Ω.. Connection: SL1: 6b. Output type: open collector transistor (internal fault bus). Deviation: . After calibrationPt100: ± (0.06 % of measurement value in K + 0.1 % of span + 0.1 K (4-wire connection)) thermocouple: ± (0.05 % of measurement value in °C + 0.1 % of span + 1 K (1.2 K for types R and S)) , includes ± 0.8 K fault of the cold junction compensation (CJC) mV: ± (50 µV + 0.1 % of span)potentiometer: ± (0.05 % of full scale + 0.1 % of span, (excludes faults due to lead resistance))Influence of ambient temperaturePt100: ± (0.0015 % of measurement value in K + 0.006 % of span)/K ΔTamb*)thermocouple: ± (0.02 K + 0.005 % of measurement value in °C + 0.006 % of span)/K ΔTamb*)), influence of cold junction compensation (CJC) includedmV: ± (0.01 % of measurement value + 0.006 % of span)/K ΔTamb*)potentiometer: ± 0.006 % of span/K ΔTamb*) *) ΔTamb = ambient temperature change referenced to 23 °C (296 K)Influence of supply voltage< 0.01 % of spanInfluence of load≤ 0.001 % of output value per 100 Ω: . After calibration: Pt100: ± (0.06 % of measurement value in K + 0.1 % of span + 0.1 K (4-wire connection)) thermocouple: ± (0.05 % of measurement value in °C + 0.1 % of span + 1 K (1.2 K for types R and S)) , includes ± 0.8 K fault of the cold junction compensation (CJC) mV: ± (50 µV + 0.1 % of span)potentiometer: ± (0.05 % of full scale + 0.1 % of span, (excludes faults due to lead resistance)). Influence of ambient temperature: Pt100: ± (0.0015 % of measurement value in K + 0.006 % of span)/K ΔTamb*)thermocouple: ± (0.02 K + 0.005 % of measurement value in °C + 0.006 % of span)/K ΔTamb*)), influence of cold junction compensation (CJC) includedmV: ± (0.01 % of measurement value + 0.006 % of span)/K ΔTamb*)potentiometer: ± 0.006 % of span/K ΔTamb*) *) ΔTamb = ambient temperature change referenced to 23 °C (296 K). Influence of supply voltage: < 0.01 % of span. Influence of load: ≤ 0.001 % of output value per 100 Ω. Reaction time: worst case value (sensor breakage and/or sensor short circuit detection enabled)mV: 1 s, thermocouples with CJC: 1.1 s, thermocouples with fixed reference temperature: 1.1 s, 3- or 4-wire RTD: 920 ms, 2-wire RTD: 800 ms, Potentiometer: 2.05 s. Output/supply, programming input: functional insulation, rated insulation voltage 50 V AC There is no electrical isolation between the programming input and the supply.The programming cable provides galvanic isolation so that ground loops are avoided.. Display elements: LEDs. Control elements: DIP switch. Factory setting: ouput: current source 4 ... 20 mAinput: Pt100, 4-wire, temperature range -200 ... 850 C (73 ... 1123 K). Configuration: via DIP switches via PACTware. Labeling: space for labeling at the front. Electromagnetic compatibility: . Directive 2014/30/EUEN 61326-1:2013 (industrial locations): . Directive 2014/30/EU: EN 61326-1:2013 (industrial locations). Electromagnetic compatibility: NE 21:2012 EN 61326-3-2:2008. Degree of protection: IEC 60529:2001. Protection against electrical shock: UL 61010-1:2012. Ambient temperature: -20 ... 70 °C (-4 ... 158 °F). Relative humidity: 5 ... 90 %, non-condensing up to 35 °C (95 °F). Degree of protection: IP20. Mass: approx. 100 g. Dimensions: 12.5 x 106 x 128 mm (0.5 x 4.2 x 5.1 inch) (W x H x D). Height106 mmWidth12.5 mmDepth128 mm: . Height: 106 mm. Width: 12.5 mm. Depth: 128 mm. Mounting: on termination board. Coding: pin 1, 2 and 4 trimmed For further information see system description.. EU-type examination certificate: BASEEFA 14 ATEX 0129 X. Marking II (1)G [Ex ia Ga] IIC [exsign] II (1)D [Ex ia Da] IIIC [exsign] I (M1) [Ex ia Ma] IInput[Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] IVoltageUo9 VCurrentIo13.1 mAPowerPo30 mW: . Marking: II (1)G [Ex ia Ga] IIC [exsign] II (1)D [Ex ia Da] IIIC [exsign] I (M1) [Ex ia Ma] I. Input: [Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] I. Voltage: 9 V. Current: 13.1 mA. Power: 30 mW. Analog outputs, power supply, collective error: . Maximum safe voltageUm250 V (Attention! This is not the rated voltage.): Um. Maximum safe voltage: 250 V (Attention! This is not the rated voltage.). Interface: . Maximum safe voltageUm250 V (Attention! The rated voltage is lower.), RS 232: Um. Maximum safe voltage: 250 V (Attention! The rated voltage is lower.), RS 232. Certificate: BASEEFA 14 ATEX 0130 X. Marking II 3G Ex nA IIC T4 Gc: . Marking: II 3G Ex nA IIC T4 Gc. Galvanic isolation: . Input/Other circuitssafe electrical isolation acc. to IEC/EN 60079-11, voltage peak value 375 V: . Input/Other circuits: safe electrical isolation acc. to IEC/EN 60079-11, voltage peak value 375 V. Directive conformity: . Directive 2014/34/EUEN IEC 60079-0:2018+AC:2020 , EN 60079-11:2012 , EN 60079-15:2010: . Directive 2014/34/EU: EN IEC 60079-0:2018+AC:2020 , EN 60079-11:2012 , EN 60079-15:2010. FM approval: . Control drawing116-0429 (cFMus): . Control drawing: 116-0429 (cFMus). UL approval: . Control drawing116-0391 (cULus): . Control drawing: 116-0391 (cULus). IECEx approval: . IECEx certificateIECEx BAS 14.0071X IECEx BAS 16.0003XIECEx marking[Ex ia Ga] IIC , [Ex ia Da] IIIC , [Ex ia Ma] I Ex nA IIC T4 Gc: . IECEx certificate: IECEx BAS 14.0071X IECEx BAS 16.0003X. IECEx marking: [Ex ia Ga] IIC , [Ex ia Da] IIIC , [Ex ia Ma] I Ex nA IIC T4 Gc. Supplementary information: Observe the certificates, declarations of conformity, instruction manuals, and manuals where applicable. For information see www.pepperl-fuchs.com.
Specifications
General specifications
| Signal type | Analog input |
Functional safety related parameters
| Safety Integrity Level (SIL) | SIL 2 |
Supply
| Connection | SL1: 1a, 1b(-); 2a, 2b(+) |
| Rated voltage | 20 ... 30 V DC bus powered via Termination Board Ur |
| Ripple | within the supply tolerance |
| Power dissipation | ≤ 0.98 W |
| Power consumption | max. 0.98 W |
Interface
| Programming interface | programming socket |
Input
| Connection side | field side |
| Connection | SL2: 5a(+), 1a(+), 1b(-), 5b(-) |
| RTD | type Pt10, Pt50, Pt100, Pt500, Pt1000 (EN 60751: 1995)type Pt10GOST, Pt50GOST, Pt100GOST, Pt500GOST, Pt1000GOST (6651-94)type Cu10, Cu50, Cu100 (P50353-92)type Ni100 (DIN 43760) |
| Measuring currentapprox. 200 µA with RTDTypes of measuring2-, 3-, 4-wire connectionLead resistancemax. 50 Ω per lineMeasurement loop monitoringsensor breakage, sensor short-circuit | Measuring current |
| Measuring current | approx. 200 µA with RTD |
| Types of measuring | 2-, 3-, 4-wire connection |
| Lead resistance | max. 50 Ω per line |
| Measurement loop monitoring | sensor breakage, sensor short-circuit |
| Thermocouples | type B, E, J, K, N, R, S, T (IEC 584-1: 1995)type L (DIN 43710: 1985)type TXK, TXKH, TXA (P8.585-2001) |
| Cold junction compensationexternal and internalMeasurement loop monitoringsensor breakage | Cold junction compensation |
| Cold junction compensation | external and internal |
| Measurement loop monitoring | sensor breakage |
| Potentiometer | 0 ... 20 kΩ (2-wire connection), 0.8 ... 20 kΩ (3-wire connection) |
| Types of measuring3-wire connection | Types of measuring |
| Types of measuring | 3-wire connection |
| Voltage | selectable within the range -100 ... 100 mV |
| Input resistance | ≥ 1 MΩ (-100 ... 100 mV) |
Output
| Connection side | control side |
| Connection | SL1: 8a(+), 7a(-) |
| Output | Analog current output |
| Current range0 ... 20 mA or 4 ... 20 mAFault signaldownscale 0 or 2 mA, upscale 21.5 mA (acc. NAMUR NE43)Sourceload 0 ... 550 Ω open-circuit voltage ≤ 18 VSinkVoltage across terminals 5 ... 30 V. If the current is supplied from a source > 25 V,series resistance of ≥ (V - 25)/0.0215 Ω is needed, where V is the source voltage.The maximum value of the resistance is (V - 5)/0.0215 Ω. | Current range |
| Current range | 0 ... 20 mA or 4 ... 20 mA |
| Fault signal | downscale 0 or 2 mA, upscale 21.5 mA (acc. NAMUR NE43) |
| Source | load 0 ... 550 Ω open-circuit voltage ≤ 18 V |
| Sink | Voltage across terminals 5 ... 30 V. If the current is supplied from a source > 25 V,series resistance of ≥ (V - 25)/0.0215 Ω is needed, where V is the source voltage.The maximum value of the resistance is (V - 5)/0.0215 Ω. |
Fault indication output
| Connection | SL1: 6b |
| Output type | open collector transistor (internal fault bus) |
Transfer characteristics
| Deviation | |
| After calibrationPt100: ± (0.06 % of measurement value in K + 0.1 % of span + 0.1 K (4-wire connection)) thermocouple: ± (0.05 % of measurement value in °C + 0.1 % of span + 1 K (1.2 K for types R and S)) , includes ± 0.8 K fault of the cold junction compensation (CJC) mV: ± (50 µV + 0.1 % of span)potentiometer: ± (0.05 % of full scale + 0.1 % of span, (excludes faults due to lead resistance))Influence of ambient temperaturePt100: ± (0.0015 % of measurement value in K + 0.006 % of span)/K ΔTamb*)thermocouple: ± (0.02 K + 0.005 % of measurement value in °C + 0.006 % of span)/K ΔTamb*)), influence of cold junction compensation (CJC) includedmV: ± (0.01 % of measurement value + 0.006 % of span)/K ΔTamb*)potentiometer: ± 0.006 % of span/K ΔTamb*) *) ΔTamb = ambient temperature change referenced to 23 °C (296 K)Influence of supply voltage< 0.01 % of spanInfluence of load≤ 0.001 % of output value per 100 Ω | After calibration |
| After calibration | Pt100: ± (0.06 % of measurement value in K + 0.1 % of span + 0.1 K (4-wire connection)) thermocouple: ± (0.05 % of measurement value in °C + 0.1 % of span + 1 K (1.2 K for types R and S)) , includes ± 0.8 K fault of the cold junction compensation (CJC) mV: ± (50 µV + 0.1 % of span)potentiometer: ± (0.05 % of full scale + 0.1 % of span, (excludes faults due to lead resistance)) |
| Influence of ambient temperature | Pt100: ± (0.0015 % of measurement value in K + 0.006 % of span)/K ΔTamb*)thermocouple: ± (0.02 K + 0.005 % of measurement value in °C + 0.006 % of span)/K ΔTamb*)), influence of cold junction compensation (CJC) includedmV: ± (0.01 % of measurement value + 0.006 % of span)/K ΔTamb*)potentiometer: ± 0.006 % of span/K ΔTamb*) *) ΔTamb = ambient temperature change referenced to 23 °C (296 K) |
| Influence of supply voltage | < 0.01 % of span |
| Influence of load | ≤ 0.001 % of output value per 100 Ω |
| Reaction time | worst case value (sensor breakage and/or sensor short circuit detection enabled)mV: 1 s, thermocouples with CJC: 1.1 s, thermocouples with fixed reference temperature: 1.1 s, 3- or 4-wire RTD: 920 ms, 2-wire RTD: 800 ms, Potentiometer: 2.05 s |
Galvanic isolation
| Output/supply, programming input | functional insulation, rated insulation voltage 50 V AC There is no electrical isolation between the programming input and the supply.The programming cable provides galvanic isolation so that ground loops are avoided. |
Indicators/settings
| Display elements | LEDs |
| Control elements | DIP switch |
| Factory setting | ouput: current source 4 ... 20 mAinput: Pt100, 4-wire, temperature range -200 ... 850 C (73 ... 1123 K) |
| Configuration | via DIP switches via PACTware |
| Labeling | space for labeling at the front |
Directive conformity
| Electromagnetic compatibility | |
| Directive 2014/30/EUEN 61326-1:2013 (industrial locations) | Directive 2014/30/EU |
| Directive 2014/30/EU | EN 61326-1:2013 (industrial locations) |
Conformity
| Electromagnetic compatibility | NE 21:2012 EN 61326-3-2:2008 |
| Degree of protection | IEC 60529:2001 |
| Protection against electrical shock | UL 61010-1:2012 |
Ambient conditions
| Ambient temperature | -20 ... 70 °C (-4 ... 158 °F) |
| Relative humidity | 5 ... 90 %, non-condensing up to 35 °C (95 °F) |
Mechanical specifications
| Degree of protection | IP20 |
| Mass | approx. 100 g |
| Dimensions | 12.5 x 106 x 128 mm (0.5 x 4.2 x 5.1 inch) (W x H x D) |
| Height106 mmWidth12.5 mmDepth128 mm | Height |
| Height | 106 mm |
| Width | 12.5 mm |
| Depth | 128 mm |
| Mounting | on termination board |
| Coding | pin 1, 2 and 4 trimmed For further information see system description. |
Data for application in connection with hazardous areas
| EU-type examination certificate | BASEEFA 14 ATEX 0129 X |
| Marking II (1)G [Ex ia Ga] IIC [exsign] II (1)D [Ex ia Da] IIIC [exsign] I (M1) [Ex ia Ma] IInput[Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] IVoltageUo9 VCurrentIo13.1 mAPowerPo30 mW | Marking |
| Marking | II (1)G [Ex ia Ga] IIC [exsign] II (1)D [Ex ia Da] IIIC [exsign] I (M1) [Ex ia Ma] I |
| Input | [Ex ia Ga] IIC, [Ex ia Da] IIIC, [Ex ia Ma] I |
| Voltage | 9 V Uo |
| Current | 13.1 mA Io |
| Power | 30 mW Po |
| Analog outputs, power supply, collective error | |
| Maximum safe voltageUm250 V (Attention! This is not the rated voltage.) | Um Maximum safe voltage |
| Maximum safe voltage | 250 V (Attention! This is not the rated voltage.) Um |
| Interface | |
| Maximum safe voltageUm250 V (Attention! The rated voltage is lower.), RS 232 | Um Maximum safe voltage |
| Maximum safe voltage | 250 V (Attention! The rated voltage is lower.), RS 232 Um |
| Certificate | BASEEFA 14 ATEX 0130 X |
| Marking II 3G Ex nA IIC T4 Gc | Marking |
| Marking | II 3G Ex nA IIC T4 Gc |
| Galvanic isolation | |
| Input/Other circuitssafe electrical isolation acc. to IEC/EN 60079-11, voltage peak value 375 V | Input/Other circuits |
| Input/Other circuits | safe electrical isolation acc. to IEC/EN 60079-11, voltage peak value 375 V |
| Directive conformity | |
| Directive 2014/34/EUEN IEC 60079-0:2018+AC:2020 , EN 60079-11:2012 , EN 60079-15:2010 | Directive 2014/34/EU |
| Directive 2014/34/EU | EN IEC 60079-0:2018+AC:2020 , EN 60079-11:2012 , EN 60079-15:2010 |
International approvals
| FM approval | |
| Control drawing116-0429 (cFMus) | Control drawing |
| Control drawing | 116-0429 (cFMus) |
| UL approval | |
| Control drawing116-0391 (cULus) | Control drawing |
| Control drawing | 116-0391 (cULus) |
| IECEx approval | |
| IECEx certificateIECEx BAS 14.0071X IECEx BAS 16.0003XIECEx marking[Ex ia Ga] IIC , [Ex ia Da] IIIC , [Ex ia Ma] I Ex nA IIC T4 Gc | IECEx certificate |
| IECEx certificate | IECEx BAS 14.0071X IECEx BAS 16.0003X |
| IECEx marking | [Ex ia Ga] IIC , [Ex ia Da] IIIC , [Ex ia Ma] I Ex nA IIC T4 Gc |
General information
| Supplementary information | Observe the certificates, declarations of conformity, instruction manuals, and manuals where applicable. For information see www.pepperl-fuchs.com. |
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