Цифровой температурный преобразователь
Описание
Эти температурные преобразователи предназначены для универсального применения в технологической отрасли. Они обеспечивают высокую точность, гальваническую развязку и отличную защиту от электромагнитных воздействий (EMI). Посредством протокола HART ® температурные преобразователи T32 могут быть сконфигурированы (обеспечена совместимость) с различными открытыми инструментами конфигурирования. Помимо различных типов датчиков, например датчиков в соответствии с DIN EN 60751, JIS C1606, DIN 43760, IEC 60584 или DIN 43710, также могут быть заданы характеристики датчиков, определяемые заказчиком, путём ввода пар значений (линеаризация, задаваемая пользователем).
Благодаря конфигурированию датчика с резервированием (двойной датчик) при отказе датчика прибор автоматически переключается на рабочий датчик. Кроме того, предусмотрена возможность активации обнаружения дрейфа датчика. При этом формируется сигнализация об ошибке, если величина разности температур между датчиком 1 и датчиком 2 превышает заданное пользователем значение.
Для получения дополнительных допусков см. стр. 8
Рис. слева: исполнение с монтажом на головке, модель T32.1S Рис. справа: исполнение для монтажа на DIN-рейке, модель T32.3S
Преобразователь T32 также имеет дополнительные сложные функции контроля, такие как мониторинг сопротивления соединительных проводов датчика и контроль обрыва датчика в соответствии с NAMUR NE89, а также мониторинг диапазона измерений. Кроме того, эти преобразователи обладают всеобъемлющей циклической функцией самоконтроля.
Габаритные размеры преобразователя с монтажом на головке соответствуют форм-фактору соединительных головок DIN типа B с увеличенным монтажным пространством, например WIKA модель BSS.
Преобразователи в корпусах для монтажа на DIN-рейке подходят для всех стандартных DIN-реек в соответствии с IEC 60715. Преобразователи поставляются с базовой конфигурацией или конфигурируются в соответствии с требованиями заказчика.
Особенности
- Версия SIL, сертифицированная TÜV, для систем защиты, разработанных по IEC 61508 (опция)
- Применение в системах безопасности до SIL 2 (одиночный прибор) и SIL 3 (резервированная конфигурация)
- Настраивается практически всеми программными и аппаратными средствами
- Универсальный для подключения 1 или 2 датчиков: термометр сопротивления, резистивный датчик, термопара, датчик мВ, потенциометр
- Термометр сопротивления, чувствительный элемент сопротивления
- Термопара, датчик мВ
- Потенциометр
- Сигнализация по NAMUR NE43, обнаружение обрыва датчика по NE89, ЭМС по NE21
Вопросы и ответы
Какой выходной сигнал у преобразователя T32.xS?
Аналоговый сигнал 4 … 20 mA с цифровой передачей данных по протоколу HART®.
Какие датчики можно подключить к T32.xS?
Термометры сопротивления Pt100, Pt(x), JPt100, Ni100, термопары типов J, K, L, E, N, T, U, R, S, B, а также мВ-датчики и потенциометры; возможно подключение одного или двух датчиков.
Какой диапазон измерений поддерживает прибор?
Диапазоны зависят от типа датчика — например, −270 … +1300 °C для термометров сопротивления и 0 … +1820 °C для термопар типа B.
Какова точность измерения?
±0,03 % диапазона измерений.
Подходит ли T32.xS для применений безопасности?
Да, доступна TÜV-сертифицированная SIL-версия по IEC 61508: SIL 2 для одиночного прибора и SIL 3 при резервированной конфигурации.
Какая взрывозащита предусмотрена?
Исполнения ATEX и IECEx (II 1G Ex ia IIC, II 3G Ex ic IIC T4/T5/T6 Gc), а также сертификация EAC (RU C-DE.ГБ08.B.02485), включая искробезопасные исполнения Ex ia/ib/ic IIC.
В каком температурном диапазоне окружающей среды работает прибор?
От −60 до +85 °C, степень защиты корпуса IP65.
Чем отличаются модели T32.1S и T32.3S?
Модель T32.1S выполнена для монтажа на соединительную головку (форм-фактор DIN типа B, например WIKA модель BSS), а T32.3S — для монтажа на стандартную DIN-рейку по IEC 60715.
| Модель | T32.1S |
| Серия | T32 |
| Подтип | head-mounted version |
| Диапазон температуры | −270…+1300 °C · −200…+850 °C · −50…+1768 °C · −200…+500 °C · −60…+250 °C · −210…+1200 °C · −200…+900 °C · −270…+1000 °C · −270…+400 °C · −200…+600 °C · +0…+1820 °C |
| Класс точности | ±0.03 % of measuring span |
| Уровень функциональной безопасности (SIL) | SIL 2 (single instrument), SIL 3 (redundant configuration) |
| Выходной сигнал | HART · 4-20mA |
| Питание | DC 10.5 ... 42 V |
| Электр. соединение | Terminals 1-4 |
| Темп. окружающей среды | −60…+85 °C |
| Степень защиты IP | IP65 |
| Вес | 0.07 kg |
| Сертификаты | CERoHSEACREACHNAMUR |
| Взрывозащита | II 3G Ex ic IIC T4/T5/T6 GcRU C-DE.ГБ08.B.02485, intrinsically safe equipment 0 Ex ia IIC T4/T5/T6 1 Ex ib IIC T4/T5/T6 2 Ex ic IIC T4/T5/T6 DIP A20 Ta 120 °C DIP A21 Ta 120 °CII 1G Ex ia IICATEXIECEx |
| Тип сенсора | Pt100, Pt(x), JPt100, Ni100, thermocouple types J, K, L, E, N, T, U, R, S, B, mV sensor, potentiometer |
| Языки datasheet | EN, DE |
| Sensor type | Max. configurable measuring range | Standard | Min. measuring span (MS) 1) | |
|---|---|---|---|---|
| Resistance sensor | Pt100 | -200 ...+850 °C [-328 ... +1,562 °F] | IEC 60751 | 10 K |
| Pt (x) 2) 10 ... 1000 | -200 ...+850 °C [-328 ... +1.562 °F] | IEC 60751 | ||
| JPt100 | -200 ...+500 °C [-328 ...+932 °F] | JIS C1606:1989 | ||
| Ni100 | -60 ...+250 °C [-76 ...+482 °F] | DIN 43760:1987 | ||
| Resistance sensor 3) | 0 ...8,370Ω | n.a. | 4Ω | |
| Potentiometer 4) | Potentiometer 3) | 0 ...100% | n.a. | 10% |
| Thermocouple type | J | -210 ... +1,200 °C [-346 ... +2,192 °F] | IEC 60584-1 | 50 K |
| K | -270 ... +1,300 °C [-454 ... +2,372 °F] | IEC 60584-1 | ||
| L (DIN) | -200 ...+900 °C [-328 ... +1,652 °F] | DIN 43710:1985 | ||
| E | -270 ... +1,000 °C [-454 ... +1,832 °F] | IEC 60584-1 | ||
| N | -270 ... +1,300 °C [-454 ...+ 2,372 °F] | IEC 60584-1 | ||
| T | -270 ...+400 °C [-454 ...+752 °F] | IEC 60584-1 | ||
| U | -200 ...+600 °C [-328 ... +1,112 °F] | DIN 43710:1985 | ||
| R | -50 ... +1,768 °C [-58 ... +3,214 °F] | IEC 60584-1 | 150 K | |
| S | -50 ... +1,768 °C [-58 ... +3,214 °F] | IEC 60584-1 | ||
| B | 0 ... 1,820 °C [32 ... 3,308 °F] | IEC 60584-1 | 200 K | |
| Voltage sensor | mVsensor 3) | -500 ...+1,800mV | - | 4mV |
| Measuring current during measurement | Max. 0.3 mA(Pt100) |
|---|---|
| Connection methods | |
| Resistance thermometer (RTD) | 1 sensor in 2-/4-/3-wire connection or 2 sensors in 2-wire connection →for further information, see 'Designation of connection terminals' |
| Thermocouples (TC) | 1 sensor or 2 sensors →for further information, see 'Designation of connection terminals' |
| Max. lead resistance | |
| Resistance thermometer (RTD) | 50 Ωeach wire, 3-/4-wire |
| Thermocouples (TC) | 5 kΩ each wire |
| Cold junction compensation, configurable | Internal compensation or external with Pt100, with thermostat or switched off |
| Input + output in accordance with DIN EN 60770 | ||||
|---|---|---|---|---|
| Input sensor type | Mean temperature coefficient (TC) for each 10 K change in ambient temperature in the range -40 ... +85 °C 1) | Measuring deviation at reference conditions in accordance with DIN EN 60770, NE 145, valid at 23 °C±3K | Lead resistance effects | Long-term stability after 1 year |
| Pt100 2) / JPt100 / Ni100 | ±(0.06 K + 0.015%MV) | -200 °C ≤ MV≤200 °C: ±0.10 K MV>200 °C: ±(0.1 K + 0.01 %|MV - 200 K|) 3) | 4-wire: no effect (0 ... 50 Ωper wire) | ±60 mΩor 0.05% of MV, greater va- lue applies |
| Resistance sensor 5) | ±(0.01 Ω+0.01%MV) | ≤ 890 Ω: 0.053Ω 6) or 0.015%MV 7) ≤ 2,140 Ω: 0.128Ω 6) or 0.015%MV 7) ≤ 4,390 Ω: 0.263Ω 6) or 0.015%MV 7) ≤ 8,380 Ω: 0.503Ω 6) or 0.015%MV 7) | 3-wire: ±0.02 Ω/ 10Ω (0 ... 50 Ωper wire) 2-wire: Resistance of the connection leads 4) | |
| Potentiometer 5) | ±(0.1%MV) | R part /R total is max.±0.5% | - | ±20 µV or 0.05% of MV, greater value applies |
| Thermocouples | ||||
| Type J (Fe-CuNi) | MV>-150 °C: ±(0.07 K + 0.02 %|MV|) | -150 °C < MV<0°C: ±(0.3 K + 0.2 %|MV|) MV>0°C: ±(0.3 K + 0.03%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type K (NiCr-Ni) | -150 °C < MV<1,300 °C: ±(0.1 K + 0.02 %|MV|) | -150 °C < MV<0°C: ±(0.4 K + 0.2 %|MV|) 0 °C < MV < 1,300 °C: ±(0.4 K + 0.04%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type L (Fe-CuNi) | -150 °C < MV<0°C: ±(0.07 K + 0.02 %|MV|) MV>0°C: ±(0.07 K + 0.015%MV) | -150 °C < MV<0°C: ±(0.3 K + 0.1 %|MV|) MV>0°C: ±(0.3 K + 0.03%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type E (NiCr-Cu) | MV>-150 °C: ±(0.1 K + 0.015 %|MV|) | -150 °C < MV<0°C: ±(0.3 K + 0.2 %|MV|) MV>0°C: ±(0.3 K + 0.03%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type N (NiCrSi-NiSi) | -150 °C < MV<0°C: ±(0.1 K + 0.05 %|MV|) MV>0°C: ±(0.1 K + 0.02%MV) | -150 °C < MV<0°C: ±(0.5 K + 0.2 %|MV|) MV>0°C: ±(0.5 K + 0.03%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| TypeT (Cu-CuNi) | -150 °C < MV<0°C: ±(0.07 K + 0.04%MV) MV>0°C: ±(0.07 K + 0.01%MV) | -150 °C < MV<0°C: ±(0.4 K + 0.2 %|MV|) MV>0°C: ±(0.4 K + 0.01%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type U (Cu-CuNi) | -150 °C < MV<0°C: ±(0.07 K + 0.04%MV) MV>0°C: ±(0.07 K + 0.01%MV) | -150 °C < MV<0°C: ±(0.4 K + 0.2 %|MV|) MV>0°C: ±(0.4 K + 0.01%MV) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type R (PtRh-Pt) | 50 °C < MV<1,600 °C: ±(0.3 K + 0.01 %|MV - 400 K|) | 50 °C < MV<400 °C: ±(1.45 K + 0.12 %|MV - 400 K|) 400 °C < MV<1,600 °C: ±(1.45 K + 0.01 %|MV - 400 K|) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Type S (PtRh-Pt) | 50 °C < MV<1,600 °C: ±(0.3 K + 0.015 %|MV - 400 K|) | 50 °C < MV<400 °C: ±(1.45 K + 0.12 %|MV - 400 K|) 400 °C < MV<1,600 °C: ±(1.45 K + 0.01 %|MV - 400 K|) | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Input sensor type | Mean temperature coefficient (TC) for each 10 K change in ambient temperature in the range -40 ... +85 °C 1) | Measuring deviation at reference conditions in accordance with DIN EN 60770, NE 145, valid at 23 °C±3K | Lead resistance effects | Long-term stability after 1 year |
|---|---|---|---|---|
| Type B (PtRh-Pt) | 450 °C < MV<1,000 °C: ±(0.4 K + 0.02 %|MV - 1,000 K|) MV>1,000 °C: ±(0.4 K + 0.005 %(MV- 1,000 K)) | 450 °C < MV<1,000 °C: ±(1.7 K + 0.2 %|MV - 1,000 K|) MV>1,000 °C: ±1.7 K | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| mV sensor 5) | 2 μV + 0.02 %|MV| 100 μV + 0.08 %|MV| | ≤ 1,160 mV: 10 μV + 0.03 %|MV| > 1,160 mV: 15 μV + 0.07 %|MV| | 6 µV / 1,000Ω 8) | ±20 µV or 0.05% of MV, greater value applies |
| Cold junction (only with TC) | ±0.1 K | ±0.8 K | - | ±0.2 K |
| Output | ±0.03 %of measuring span | ±0.03 %of measuring span | - | ±0.05 %of span |
Смотреть все (20)
| Measuring rate (only for single RTD/TC sensors) | Typical, measured value update approx. 6/s |
|---|---|
| Influence of supply voltage | Not measurable |
| Effect of load | Not measurable |
| Input Pt100, MV<200 °C | ±0.100 K |
|---|---|
| Output ±(0.03 %of 150 K) | ±0.045 K |
| TC input ±(0.06 K + 0.015 %of 150 K) | ±0.083 K |
| TC output ±(0.03 %of 150 K) | ±0.045 K |
| Measuring deviation (typical) √input² + output² +TC input ² +TC output ² | ±0.145 K |
| Measuring deviation (maximum) (input + output +TC input +TC output ) | ±0.273 K |
| Input Pt1000, MV<200 °C | ±0.100 K |
|---|---|
| Output ±(0.03 %of 100 K) | ±0.03 K |
| TC input ±(0.06 K + 0.015 %of 100 K) * 2 | ±0.15 K |
| TC output ±(0.03 %of 100 K) * 2 | ±0.06 K |
| Measuring deviation (typical) √input² + output² +TC input ² +TC output ² | ±0.19 K |
| Measuring deviation (maximum) (input + output +TC input +TC output ) | ±0.34 K |
| Input type K, 0 °C < MV<1,300 °C ±(0.4 K + 0.04 %of 400 K) | ±0.56 K |
|---|---|
| Cold junction ±0.8 K | ±0.80 K |
| Output ±(0.03 %of 400 K) | ±0.12 K |
| Measuring deviation (typical) √input² + cold junction² + output² | ±0.98 K |
| Measuring deviation (maximum) (input + cold junction + output) | ±1.48 K |
| Output signal | |
|---|---|
| Analogue output (configurable) | ■ 4 ... 20 mA, 2-wire ■ 20 ... 4 mA, 2-wire |
| Temperature linearity | For RTD Linear to temperature per IEC 60751, JIS C1606, DIN 43760 ForTC Linear to temperature per IEC 60584, DIN 43710 |
| Load R A | The permissible load depends on the loop supply voltage. |
| With HART ® | R A ≤ (U B - 11.5 V) / 0.023 A with R A in Ωand U B inV |
| Without HART ® | R A ≤ (U B - 10.5 V) / 0.023 A with R A in Ωand U B inV |
| Load diagram (without HART ® ) | Voltage U B inV Load R A inΩ 11289130.02 Ex ia/ic |
| Output limits (configurable) | |
| In accordance with NAMUR NE43 | Lower limit 3.8mA Upper limit 20.5mA |
| Customer-specifically adjustable | Lower limit 3.6 ...4.0mA Upper limit 20.0 ...21.5mA |
| Option SIL (model T32.xS.xxx-S) | Lower limit 3.8 ...4.0mA Upper limit 20.0 ...20.5mA |
| Simulation | In simulation mode, independent from input signal, simulation value configurable from 3.5 ...23.0mA |
| Current value for signalling | |
| In accordance with NAMUR NE43 | Downscale < 3.6 mA(3.5 mA) Upscale > 21.0 mA(21.5 mA) |
| Setting range | Downscale 3.5 ...3.6mA Upscale 21.0 ...22.5mA |
| PV, primary value (digital HART ® measured value) | Signalling on sensor and hardware error through default value |
| Dampening (configurable) | Configurable between 1 ... 60 s (0 = disabled) |
| Factory configuration | |
| Sensor | 1 sensor |
| Connection method | 3-wire connection |
| Measuring range | 0 ... 150 °C |
| Dampening | Disabled |
| Output limits | Lower limit 3.8mA |
| Current value for signalling | Downscale < 3.6 mA(3.5 mA) |
| Communication | |
| Communication protocol | HART ® protocol rev. 5 1) including burst mode, multidrop →for further information, see page 14 |
| Configuration software | WIKA_T32 | ||
|---|---|---|---|
| →free download from www.wika.com | |||
| Configuration | →For connection example, see page 15 | ||
| User linearisation | Store customer-specific sensor characteristics in the transmitter using software (other sensor types can be used in this way) Number of data points: min. 2 / max. 30 | ||
| Sensor functionality when 2 sensors have been connected (dual sensor) | Transmitter can be configured below these limit values.This is not recommended due to loss of accuracy. | ||
| Sensor 1, sensor 2 redundant | The 4 …20mAoutput signal delivers the process value of sensor 1. If sensor 1 fails, the process value of sensor 2 is output (sensor 2 is redundant). | ||
| Mean value | The 4 ... 20 mAoutput signal delivers the mean value of the two values from sensor 1 and sensor 2. If one sensor fails, the process value of the error-free sensor is output. | ||
| Minimum value | The 4 ... 20 mAoutput signal delivers the lower of the two values from sensor 1 and sensor 2. If one sensor fails, the process value of the error-free sensor is output. | ||
| Maximum value | The 4 ... 20 mAoutput signal delivers the higher of the two values from sensor 1 and sensor 2. If one sensor fails, the process value of the error-free sensor is output. | ||
| Difference 2) | The 4 ... 20 mAoutput signal delivers the difference between sensor 1 and sensor 2. If one sensor fails, an error signalling will be activated. | ||
| Monitoring functions | |||
| Test current for sensor monitoring 3) | Nom.20 µA during test cycle, | otherwise 0 µA | |
| Monitoring NAMUR NE89 (monitoring lead resistance) | Resistance thermometer (Pt100, 4-wire) | R L1 + R L4 > 100 Ωwith hysteresis5Ω R L2 + R L3 > 100 Ωwith hysteresis5Ω | |
| Thermocouple | R L1 +R L4 +R thermocouple > 10 kΩ with hysteresis 100Ω | ||
| 3-wire | Monitoring of the resistance difference between lead 3 and 4; an error will be indicated if there is a difference of > 0.5 Ωbetween leads 3 and 4 | ||
| Sensor break monitoring | Always active | ||
| Sensor short circuit monitoring | Active (only for resistance thermometers) | ||
| Self-monitoring | Active permanently, e.g.RAM/ROM test, logical program operating checks and validity | ||
| Measuring range monitoring | Monitoring of the set measuring range for upper/lower deviations Standard: deactivated | ||
| Monitoring functionality by connection of 2 sensors (dual sensor) | Redundancy | In the case of a sensor error (sensor break, lead resistance too high or outside the measuring range of the sensor) of one of the two sensors, the process value will be only based on the error-free sensor.Once the error is rectified, the process value will again be based on the two sensors, or on sensor 1. | |
| Ageing control (sensor drift monitoring) | An error signalling on the output is activated if the value of the temperature difference between sensor 1 and sensor 2 is higher than a set value, which can be selected by the user.This monitoring only generates a signal if two valid sensor values can be determined and the temperature difference is higher than the selected limit value. (Cannot be selected for the 'Difference' sensor function, since the output signal already indicates the difference value). | ||
| Voltage supply | |||
| Supply voltage U B | DC 10.5 ...42V 4) Attention: Restricted auxiliary power ranges for explosion-protected versions (see |
| Time response | |
|---|---|
| Rise time t 90 | Approx. 0.8 s |
| Switch-on time (time to get the first measured value) | Max. 15 s |
| Warm-up time | After approx. 5 minutes the instrument will function to the specifications (accuracy) given in the data sheet |
| Wire cross-section | ||
|---|---|---|
| T32.1S head-mounted version | Solid wire | 0.14 ... 2.5 mm² (24 ... 14 AWG) |
| Strand with end splice | 0.14 ... 1.5 mm² (24 ... 16 AWG) | |
| T32.3S rail-mounted version | Solid wire | 0.14 ... 2.5 mm² (24 ... 14 AWG) |
| Strand with end splice | 0.14 ... 2.5 mm² (24 ... 14 AWG) | |
| Lead resistance | ||
| With resistance sensors | 50 Ωeach wire, 3-/4-wire | |
| With thermocouples | 5 kΩ each wire | |
| Insulation voltage (input to analogue output) | AC 1,200 V, (50 Hz/60 Hz); 1 | s |
| Non-wetted parts | |
|---|---|
| T32.1S head-mounted version | Plastic, PBT, glass-fibre reinforced |
| T32.3S rail-mounted version | Plastic |
| Ambient temperature | -60 1) / -50 2) / -40 ...+85 °C |
|---|---|
| Storage temperature | -60 1) / -50 2) / -40 ...+85 °C |
| Relative humidity, condensation | |
| T32.1S head-mounted version (in accordance with IEC 60068-2-38: 1974) | Test max. temperature variation 65 °C and -10 °C, 93 %±3%r.h. |
| T32.3S rail-mounted version (in accordance with IEC 60068-2-30: 2005) | Test max. temperature 55 °C, 95 %r.h. |
| Climate class per IEC 654-1: 1993 | Cx (-40 ...+85 °C, 5 ... 95 %r.h.) |
| Salt fog per IEC 60068-2-52 | Severity level 1 |
| Vibration resistance per IEC 60068-2-6:2007 | Test Fc: 10 ... 2,000 Hz; 10 g, amplitude 0.75mm |
| Shock resistance per IEC 68-2-27: 1987 | Test Ea: Acceleration type I 30 g and type II 100 g |
| Free-fall test following IEC 60721-3-2: 1997 | Drop height 1,500mm |
| Ingress protection of the entire instrument (in accordance with IEC/EN 60529) | |
| T32.1S head-mounted version | IP00 (electronics completely potted) |
| T32.3S rail-mounted version | IP20 |
| Service life | Max. service life of 20 years (in line with ISO 13849-1) |
| Logo | Description | Country |
|---|---|---|
| EU declaration of conformity EMCdirective 1) EN 61326 emission (group 1, class B) and immunity (industrial application) RoHS directive | European Union |
| Logo | Description | Country |
|---|---|---|
| EU declaration of conformity ATEX directive Hazardous areas | European Union | |
| IECEx Hazardous areas | International | |
| FM Hazardous areas | USA | |
| CSA Hazardous areas | Canada | |
| EAC EMCdirective | Eurasian Economic Community | |
| - | MTSCHS Permission for commissioning | Kazakhstan |
| Logo | Description | Country |
|---|---|---|
| UkrSEPRO Metrology, measurement technology | Ukraine | |
| Uzstandard Metrology, measurement technology | Uzbekistan | |
| INMETRO Hazardous areas | Brazil | |
| NEPSI Hazardous areas | China | |
| KCs - KOSHA Hazardous areas | South Korea |
| Logo | Description |
|---|---|
| SIL IEC 61508 / IEC 6151 | SIL 2 (option) Functional safety |
| - | China RoHS directive |
| NAMUR | NAMUR ■ EMCper NAMUR NE21 ■ Signalling per NAMUR NE43 ■ Sensor break monitoring per NAMUR NE89 |
| Certificates | ■ 2.2 test report ■ 3.1 inspection certificate |
|---|---|
| Calibration | DAkkS calibration certificate |
| Ex marking | BVS 08 ATEX E 019 X BVS 08.0018X (IECEx certificate) | |
|---|---|---|
| T32.1S head-mounted version | Zones 0, 1 | II 1G Ex ia IIC T4/T5/T6 Ga |
| Zones 20, 21 | II 1D Ex ia IIIC T135 °C Da | |
| T32.3S rail-mounted version | Zones 0, 1 | II 2(1)G Ex ia [ia Ga] IIC T4/T5/T6 Gb |
| Zones 20, 21 | II 2(1)D Ex ia [ia Da] IIIC T135 °C Db | |
| Connection values / Intrinsically safe supply and signal circuit (4 ... 20 mA current loop) | ||
| Terminals | + / - | |
| Supply voltage U B 1) | DC 10.5 ...30V | |
| Maximum voltage U i | DC 30V | |
| Maximum current I i | 130mA | |
| Maximum power P i (gas) | 800mW | |
| Maximum power P i (dust) | 750/650/550mW | |
| Effective internal capacitance C i | 7.8 nF | |
| Effective internal inductance L i | Negligible | |
| Sensor circuit connection values | ||
| Terminals | 1 - 4 | |
| Maximum voltage U 0 | DC 6.5V | |
| Maximum current I 0 | 9.3mA | |
| Maximum power P 0 | 15.2mW | |
| Effective internal capacitance C i | 208 nF | |
| Effective internal inductance L i | Negligible | |
| Maximum external capacitance C 0 | Gas, category 1 and 2, group IIC | 24 µF 2) |
| Gas, category 1 and 2, group IIA | 1,000 µF 2) | |
| Maximum external inductance L 0 | Gas, category 1 and 2, group IIC | 365mH |
| Gas, category 1 and 2, group IIA | 3,288mH | |
| Category 1 and 2, gas IIB, dust IIIC | 1,644mH | |
| Maximum inductance/resistance ratio L 0 /R 0 | Gas, category 1 and 2, group IIC | 1.44 mH/Ω |
| Gas, category 1 and 2, group IIA | 11.5 µH/Ω | |
| Category 1 and 2, gas IIB, dust IIIC | 5.75 mH/Ω | |
| Characteristic curve | Linear |
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