Rosemount™ 214A2A Sensor
Quick Start Guide
Document Number: 00825-0600-2654, Rev AD
Date: March 2021
Safety Messages
NOTICE
This guide provides basic guidelines for Rosemount™ 214A2A Sensor models. Complications can arise if sensors are assembled to transmitters that have different, but compatible approval option codes. Be aware of the following situations:
- If an I.S. approved sensor is ordered with a housing, a transmitter enclosed in that housing may have a different I.S. approval rating. Refer to the transmitter IS certificate if applicable.
- If a sensor and transmitter have different certifications, or if either has more certifications than the other, installation must comply with the most restrictive requirements required by either component. This is especially relevant when combination approvals are ordered on either the sensor or transmitter. Review certifications on both the sensor and transmitter for installation requirements and ensure installation of the sensor/transmitter assembly complies with a single certification that is shared by both of these components and that meets the requirements of the application.
WARNING
Explosions
Explosions could result in death or serious injury. Installation of sensor in an explosive environment must be in accordance with appropriate local, national, and international standards, codes, and practices.
Conduit/cable entries
Unless marked, the conduit/cable entries in the housing use a 12–14 NPT thread form. Entries marked “M20” are M20 × 1.5 thread form. On devices with multiple conduit entries, all entries will have the same thread form. Only use plugs, adapters, glands, or conduit with a compatible thread form when closing these entries.
When installing in a hazardous location, use only appropriately listed or Ex certified plugs, glands, or adapters in cable/conduit entries.
Only use plugs, adapters, glands, or conduit with a compatible thread form when closing these entries.
Physical access
Unauthorized personnel may potentially cause significant damage to and/or misconfiguration of end users' equipment. This could be intentional or unintentional and needs to be protected against.
Physical security is an important part of any security program and fundamental to protecting your system. Restrict physical access by unauthorized personnel to protect end users' assets. This is true for all systems used within the facility.
Wiring Diagram for RTDs
Figure 1-1: RTD Lead Wire Configuration per IEC 60751 - Single Element
2-wire: Red, White
3-wire: Red, White, White
4-wire: Red, Red, White, White
Note: To configure a single element, 4-wire RTD as a 3-wire system, connect only one white lead. Insulate or terminate the unused white lead in a manner that prevents shorting to the ground. To configure a single element, 4-wire RTD as a 2-wire system, connect matching colored wires first and then connect the paired wires to the terminal.
Figure 1-2: RTD Lead Wire Configuration per IEC 60751 - Dual Element
2-wire: Black, Yellow
3-wire: Black, Yellow, Red
4-wire: Red, White, Yellow, Black
Wiring Diagram for Thermocouples
Figure 2-1: Thermocouple Lead Wire Configuration
Single thermocouple, 2-wire: (+) and (-)
Dual thermocouple, 4-wire: (+), (-), (+), (-)
Table 2-1: Thermocouple Wire Color
Type | IEC 60584 Themocouple POS (+) | IEC 60584 Themocouple NEG (-) | ASTM E230 Thermocouple POS (+) | ASTM E230 Thermocouple NEG (-) |
---|---|---|---|---|
E | Violet | White | Purple | Red |
J | Black | White | White | Red |
K | Green | White | Yellow | Red |
N | Pink | White | Orange | Red |
T | Brown | White | Blue | Red |
Product Certifications
Rev 1.0
European Directive information
A copy of the EU Declaration of Conformity can be found at the end of the Quick Start Guide. The most recent revision of the EU Declaration of Conformity can be found at Emerson.com/Rosemount.
E1 ATEX Flameproof
- Certificate: DEKRA 20ATEX0045X
- Standards: EN 60079-0:2012+A11:2013, EN 60079-1:2014
- Markings: II 2 G Ex db IIC T6...T1 Gb
E7 IECEx Flameproof
- Certificate: IECEX DEK 20.0023X
- Standards: IEC 60079-0:2011, IEC 60079-1:2014-06
- Markings: Ex db IIC T6...T1 Gb
The process side of the assembly is for the responsibility of the user. The assembly should always be used in a closed system. No changes are allowed on the product.
Flameproof enclosure “d”;
In type of explosion protection Ex d, certified entry devices shall be used that are suitable for the application and correctly installed. Unused openings shall be closed by suitable blanking elements. Only suitable thread adapters shall be used. Thread adapters will not be used in combination with blanking elements. Verify the entry size (M20, 1½-in., 3/4-in., etc). The degree of protection of IP66 or IP67 to EN 60529 is only achieved if certified Ex d entry devices are used that are suitable for the application and correctly installed. Only use approved inserts. For external earthing or bonding connection of the connection head a cable lug shall be used so that the conductor is secured against loosening and twisting and that contact pressure is permanently secured.
Electrical Data
Thermocouple sensing element
5 Vdc, 10 mA
RTD sensing element
5 Vdc, 10 mA
Transmitter data
max. 45 Vdc, max 50 mA, max 1.9 W
For the electrical data of a sensor in combination with a transmitter, see electrical data of the transmitter.
Special Conditions for Safe Use:
- Ambient temperature range of sensor assembly with PTFE cable insulation: -40 to +80 °C, and for Silicon cable insulation: -25 to +80 °C.
- Service temperatures wire: Silicon -25/+160 °C, PTFE -40/+180 °C.
- Service temperatures connection box and head: -40 to +80 °C, except for T6 maximum temperature is 70 °C.
- When the process temperature range exceeds the service temperature range of the connection head, the connection box and the cable (the maximum ambient temperature (Tamax) is +80 °C except for T6 (Tamax) is +70 °C), it shall be verified by on-site temperature measurements, taking the worst case conditions into account, that the service temperature of these parts does not exceed the range as listed above.
- The measurement report with the conclusions shall be filed together with the certificate to prove that this condition is met.
- For information about the dimensions of the flameproof joints, contact the manufacturer.
- When a flameproof nipple is used (e.g. ISSeP06ATEX042 U) use thread sealant with connection to connection head or transmitter.
- Inserts with a diameter smaller than 3 mm and inserts with not-armored wire shall be protected against mechanical danger.
- For an ambient temperature exceeding 70 °C, heat resistant cables and cable glands suitable for at least 90 °C shall be used.
- For parameters see transmitter or by terminal block U-max: 5V, I-max: 10mA p/channel.
- The inserts should always be used with a mechanical protection.
- Minimum and maximum wire temperature: Silicon -25/+160 °C, PTFE -40/+180 °C. Maximum transition temperature: +80 °C.
Thermal Data
The maximum surface temperature due to process conditions (Tp) is the maximum surface temperature of any part of the assembly in contact with the explosive atmosphere.
The temperature class and the maximum surface temperature of the assembly depend on Tp, as listed in the table.
Tp (°C) | Temperature class of the assembly | Maximum surface temperature of the assembly (°C) |
---|---|---|
80 | T6 | 85 |
95 | T5 | 100 |
130 | T4 | 135 |
195 | T3 | 200 |
295 | T2 | 300 |
445 | T1 | 450 |
>445 | - | Tp + 5 |
I1 ATEX Intrinsic Safety
- Certificate: DEKRA 20ATEX0047X
- Standards: EN 60079-0:2012+A11:2013, EN 60079-11:2012
- Markings: II 2 G Ex ia IIC T6...T1 Gb (SEE CERTIFICATE FOR SCHEDULE)
I7 IECEx Intrinsic Safety
- Certificate: IECEX DEK 20.0023X
- Standards: IEC 60079-0:2011, IEC 60079-11:2011
- Markings: Ex ia IIC T6...T1 Gb (SEE CERTIFICATE FOR SCHEDULE)
Any type of connection head can be used, only during installation the proper certified cable and cable gland should be used. Any type of extension can be used which insures a protection for the connection head of minimum IP20. Any type of insert can be used, the terminal-block must have Ex approved terminals. Any type of thermowell can be used. The process side of the assembly is for the responsibility of the user. The assembly should always be used in a closed system.
- Inserts with RTD sensing elements
Output circuits in type of protection intrinsic safety Ex ia IIC, only to be connected to a certified intrinsically safe circuit, with the following maximum values for each insert:
- U₁ = 14 V, I₁ = 1.2 A, P₁ = 140 mW, C¡ ≤60 nF, L₁ = 0 mH.
Inserts with thermocouple sensing elements
- Output circuits in type of protection intrinsic safety Ex ia IIC, only to be connected to a certified intrinsically safe circuit, with the following maximum values for each insert: U₁ = 14 V, I₁ = 1.2 mA, P₁ = 140 mW, C¡ ≤60 nF, L₁ = 0 mH.
Transmitters data:
U; =45 Vdc max., I₁ = 50 mA max., P₁ = 2.25 W max. In type of protection intrinsic safety Ex ia IIC or Ex ib IIC, only to be connected to a certified intrinsically safe circuit, with the maximum values according to the data listed in the certificate of the transmitter. The sensor input parameters of the transmitter shall comply with the parameters of the inserts.
Thermal Data
The maximum surface temperature due to process conditions (Tp) is the maximum surface temperature of any part of the assembly in contact with the explosive atmosphere.
The temperature class and the maximum surface temperature of the assembly depend on Tp and, when mounted, on the temperature class of the integrally mounted transmitter, as listed in the table.
Tp (°C) | Temperature class of the transmitter | Temperature class of the assembly | Maximum surface temperature of the assembly (°C) |
---|---|---|---|
75 | T6 | T6 | 85 |
90 | T5 | T5 | 100 |
125 | T4 | T4 | 135 |
190 | T3 | T3 | 200 |
290 | T2 | T2 | 300 |
440 | T1 | T1 | 450 |
>440 | T1 | - | Tp + 10 |
Installation Instructions
In order to prevent voltage and/or current addition, the output circuits of each insert shall be wired separately, in accordance with EN 60079-11 and EN 60079-14. If a temperature transmitter is mounted, the data of the transmitter shall be taken from the instructions of the transmitter. The level of protection Ex ia IIC or Ex ib IIC of the assembly is determined by the level of protection of the transmitter. The equipment category is 2 G.
During installation the proper cable and cable gland should be used, mounted in the conduit (M20, 1½-in., 3/4-in., etc.).
Special Conditions for Safe Use:
- Ambient temperature range of sensor assembly with PTFE cable insulation: -40 to +75 °C, and for Silicon cable insulation: -25 to +75 °C.
- For versions with an integrally mounted certified intrinsically safe transmitter: The highest minimum ambient temperature as mentioned above and as mentioned on the transmitter, is decisive. The maximum ambient temperature (Tamax) is +80 °C. The maximum ambient temperature of the assembly is +75 °C or the maximum ambient temperature as mentioned on the transmitter -10 K, which ever is smaller.
- When the process temperature range exceeds the specified ambient temperature range, it shall be verified by on-site temperature measurements, taking the worst case conditions into account, that the service temperature of the connection head and the connection box does not exceed the ambient temperature range. The measurement report with the conclusions shall be filed together with the certificate to prove that this condition is met.
- From a safety point of view: The thermocouple inserts with a nominal tip diameter less than 3.0 mm, All inserts with a grounded thermocouple, and The RTD inserts with a nominal tip diameter less than 4.8 mm shall be considered to be connected to ground.
- Minimum and maximum wire temperature: Silicon -25/+160 °C, PTFE -40/+180 °C.
- Maximum transition temperature: +80 °C.
N1 ATEX Increased Safety
- Certificate: DEKRA 20ATEX0046X
- Standards: EN 60079-0:2012, EN 60079-7:2007
- Markings: II 2 G Ex e IIC T6...T1 Gb
N7 IECEx Increased Safety
- Certificate: IECEx DEK 20.0023X
- Standards: IEC 60079-0:2011, IEC 60079-7:2006-07
- Markings: Ex e IIC T6...T1 Gb
Increased safety enclosure “e”;
In type of explosion protection Ex e, the degree of protection of at least IP54 to EN 60529 is only achieved if certified Ex e cable entries are used that are suitable for the application and correctly installed. The degree of protection of IP66 or IP67 to EN 60529 is only achieved if certified Exe cable entries are used that are suitable for the application and correctly installed. When connection head is used the cover will be locked with a lock screw.
Special Conditions for Safe Use:
- Ambient temperature range of sensor assembly with PTFE cable insulation: -40 to +80 °C, and for Silicon cable insulation: -25 to +80 °C.
- Service temperatures transition: -25 to +80 °C for Silicon wire and -40 to +80 °C for PTFE wire.
- Service temperatures wire: Silicon -25/+160 °C, PTFE -40/+180 °C.
- Service temperatures connection box and head: -40 to +80 °C.
- When the process temperature range exceeds the service temperature range of the transition part, the connection head, the connection box and the cable (the maximum ambient temperature (Tamax) is +80 °C), it shall be verified by on-site temperature measurements, taking the worst case conditions into account, that the service temperature of these parts does not exceed the range as listed above.
- The measurement report with the conclusions shall be filed together with the certificate to prove that this condition is met.
- The sensor assembly with connection head and extension part shall have a degree of protection of at least IP54, provided by the user with a thermowell or equivalent component at the process side of the assembly, or direct mounted sensor.
Electrical data
Thermocouple sensing element: 5 Vdc, 10 mA
RTD sensing element: 5 Vdc, 10 mA
Installation instructions
The degree of protection of at least IP 54 to EN 60529 is only achieved if certified Exe cable glands or conduit entry devices are used that are suitable for the application and correctly installed. Unused openings shall be closed by suitable blanking elements. Inserts with a diameter smaller than 3mm and inserts with not-armored wire shall be protected against mechanical danger. For an ambient temperature exceeding 80 °C, heat resistant cables and cable glands suitable for at least 90 °C shall be used. During installation the proper certified cable and cable gland should be used, mounted in the conduit (M20, 1½-in., 3/4-in., etc.). For parameters see terminal block U-max: 5 V, I-max: 10 mA p/channel.
Torque values and wire size
For torque values end wire size for terminal blocks, see Examination Certificate FTZU 04 ATEX 0003U and EN 60079-0:2012 and EN 60079-7:2007, for rail mounted terminals see IEC 60947-1/EN 60947-1.
Thermal data
The maximum surface temperature due to process conditions (Tp) is the maximum surface temperature of any part of the assembly in contact with the explosive atmosphere.
The temperature class and the maximum surface temperature of the assembly depend on Tp, as listed in the table.
Tp (°C) | Temperature class of the assembly | Maximum surface temperature of the assembly (°C) |
---|---|---|
80 | T6 | 85 |
95 | T5 | 100 |
130 | T4 | 135 |
195 | T3 | 200 |
295 | T2 | 300 |
445 | T1 | 450 |
>445 | - | Tp + 5 |
Declaration of Conformity
EU Declaration of Conformity
No: RMD 1145 Rev. A
We, Rosemount, Inc.
8200 Market Boulevard, Chanhassen, MN 55317-9685, USA
declare under our sole responsibility that the product, Rosemount™ 214A2A Temperature Sensor, manufactured by Rosemount, Inc., 8200 Market Boulevard, Chanhassen, MN 55317-9685, USA, to which this declaration relates, is in conformity with the provisions of the European Union Directives, including the latest amendments, as shown in the attached schedule. Assumption of conformity is based on the application of the harmonized standards and, when applicable or required, a European Union notified body certification, as shown in the attached schedule.
Signature: [Signature]
Name: Mark Lee
Function: Vice President of Global Quality
Date of issue: 2/16/2021
ATEX Directive (2014/34/EU)
- DEKRA 20ATEX0045X - Flameproof Certificate - For the 214A2AxxxxxE1 Equipment Group II Category 2 G (Ex db IIC T6... T1 Gb)
- DEKRA 20ATEX0046X - Increased Safety Certificate - For the 214A2Axxxxxl Equipment Group II Category 2G (Ex e IICT6...T1 Gb)
- DEKRA 20ATEX0047X – Intrinsic Safety Certificate - For the 214A2Axxxxx11 Equipment Group II Category 2 G (Ex ia IIC T6...T1 Gb)
Harmonized Standards:
- EN 60079-0:2012 for the 214A2AxxxxxN1 and-214A2AxxxxxE1
- EN 60079-0:2012+A11, EN 60079-11:2012 for the 214A2AxxxxxI1
Other Standards and Specifications used:
- For the 214A2AxxxxxN1: A review against EN 60079-7:2015, which is harmonized, shows no significant changes relevant to this equipment so EN 60079-7:2007 continues to represent "State of the Art".
- For the 214A2AxxxxxE1: A review against EN 60079-1:2014, which is harmonized, shows no significant changes relevant to this equipment so EN 60079-1:2007 continues to represent "State of the Art".
RoHS Directive (2011/65/EU)
Harmonized Standard: EN 50581:2012
ATEX Notified Bodies
- DEKRA Certification B.V. (Notified Body Number: 0344), Meander 1051, 6825 MJ Arnhem, P.O. Box 5185, 6802 ED Arnhem, The Netherlands
ATEX Notified Body for Quality Assurance
- SGS FIMKO OY (Notified Body Number: 0598), Takomotie 8, FI-00380 HELSINKI, Finland
File Info : application/pdf, 16 Pages, 685.91KB
DocumentDocumentReferences
Antenna House PDF Output Library 6.5.1231 (Windows (x64))Related Documents
![]() |
Rosemount 1067 Temperature Sensor Quick Start Guide Quick start guide for the Rosemount 1067 Temperature Sensor, covering specifications, wiring diagrams, dimensional drawings, product certifications, and compliance information. Learn about RTD and thermocouple configurations for industrial applications. |
![]() |
Rosemount Wireless Permasense ET210 Corrosion Transmitter Quick Start Guide A quick start guide for the installation of the Rosemount Wireless Permasense ET210 Corrosion Transmitter, detailing equipment, tooling, and physical installation procedures. |
![]() |
Rosemount 3144P Temperature Transmitter Quick Start Guide This guide provides essential information for the installation and initial setup of the Rosemount 3144P Temperature Transmitter, featuring HART Protocol and Rosemount X-well Technology. It covers system readiness, configuration, mounting, wiring, power application, loop testing, and safety certifications. |
![]() |
Rosemount 520 Level Transmitter Quick Start Guide This guide provides essential information for the Rosemount 520 Level Transmitter, covering installation, wiring, configuration, and product certifications. Learn about HART communication, mounting options, and safety guidelines. |
![]() |
Rosemount 3051 Pressure Transmitter with FOUNDATION Fieldbus Protocol Reference Manual Comprehensive reference manual for the Rosemount 3051 Pressure Transmitter, detailing configuration, installation, operation, maintenance, and troubleshooting for FOUNDATION Fieldbus protocol. Covers models 3051C, 3051T, 3051L, and 3051CF. |
![]() |
Rosemount 3101, 3102, 3105 Ultrasonic Liquid Level Transmitters Quick Start Guide Quick Start Guide for Rosemount 3101, 3102, and 3105 ultrasonic liquid level transmitters by Emerson. Covers installation, safety, electrical connections, and basic configuration for industrial process control. |
![]() |
Rosemount 3144P Temperature Transmitter Quick Start Guide A comprehensive quick start guide for the Rosemount 3144P Temperature Transmitter, detailing installation, wiring, power application, verification, and product certifications. Essential for safe and effective deployment in industrial environments. |
![]() |
Rosemount 975 Flame Detectors Reference Manual Comprehensive reference manual for the Rosemount 975 Flame Detectors, detailing operation with HART handheld communicators for configuration, firmware upgrades, and troubleshooting. |