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Temperature sensors catalogue

Temperature sensors catalogue
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Temperature sensors catalogue

Product catalog summary
Temperature Sensors Overview
This document provides a comprehensive overview of various temperature sensors, including RTD sensors, thermocouples, and their accessories. It covers specifications, applications, and technical data for different sensor types.
1. Resistance Temperature Sensors (RTDs)
RTD sensors operate by changing resistance with temperature variations. Key materials include platinum due to its high temperature resistance coefficient and stability. The document details various RTD types (SCR100 to SCR108), highlighting their construction, application areas, and technical specifications such as temperature range, connection head types, and sheath materials.
2. Thermoelectric Temperature Sensors
Thermocouples are discussed, including head, cable, and mineral insulated types. These sensors are suitable for high-temperature applications and are characterized by their thermoelectric properties.
3. Temperature Sensors Accessories
This section lists accessories like compensation cables, plugs, sockets, fittings, brackets, protection tubes, and measuring inserts, which are essential for sensor installation and operation.
4. Electric Heaters
Although not detailed in the provided text, this section likely covers the integration of temperature sensors with electric heaters for precise temperature control.
Technical Specifications and Ordering Information
The document provides detailed technical data for each sensor type, including temperature ranges, connection head types, and accuracy classes. It also includes ordering information with examples to guide users in selecting the appropriate sensor configuration for their needs.
Conclusion
This document serves as a technical guide for selecting and understanding various temperature sensors and their applications in industrial settings. It emphasizes the importance of choosing the right sensor type and configuration to ensure accurate temperature measurement and control.
Overview: The document provides detailed technical specifications and ordering information for various resistance temperature sensors manufactured by SIMEX Ltd. These sensors are designed for use in industries such as fine chemicals, light energy, and general industrial services. The document outlines the features, technical data, and application areas for different models of temperature sensors.
Key Sections:
1. Temperature Transmitter Mounting: The document describes the capability of mounting temperature transmitters with 4...20 mA or 0...10V output signals. The replaceable measuring insert is highlighted as a cost-effective maintenance feature, enhancing accuracy and reducing vibration.
2. Technical Data: Each sensor model is detailed with specifications such as:
  • Connection head types and materials (e.g., stainless steel sheath, aluminum connection head).
  • Measuring range and accuracy classes (e.g., Class A, B, 1/3B).
  • Process connection options (e.g., G1/2", M20x1,5).
  • Sensing elements (e.g., Pt100, Pt500, Pt1000, Ni100).
3. Application Areas: The sensors are suitable for various applications, including the fine chemical industry, light energy industry, and general industrial services.
4. Ordering Information: Detailed ordering codes are provided for each sensor model, allowing customization based on:
  • Sensing element type and configuration (e.g., single or double sensors).
  • Sheath length and diameter.
  • Measuring circuit (e.g., 2-wire, 3-wire, 4-wire).
  • Accuracy class and process connection type.
5. Specific Sensor Models:
  • SCR104: Features a replaceable measuring insert and is suitable for a wide temperature range.
  • SCR105, SCR106, SCR107: Non-exchangeable measuring inserts with compact design for confined spaces.
  • SCR108: Mineral insulated sensors with high vibration resistance and flexibility.
  • SCR200, SCR201: Designed for direct fitting into drilled holes or processes, with customizable insertion lengths and cable options.
Conclusion: The document serves as a comprehensive guide for selecting and ordering resistance temperature sensors from SIMEX Ltd., providing essential technical details and customization options to meet specific industrial needs.
Overview: This document provides detailed specifications and ordering information for various models of resistance temperature sensors (RTDs) manufactured by SIMEX Ltd. These sensors are designed for use in various industrial applications, including the fine chemical industry, light energy industry, and general industrial services.
Specifications:
  • Sensing Element: Options include Pt100, Pt500, and Pt1000.
  • Accuracy Class: Available in classes B, 1/3B, and A.
  • Measuring Circuit: Configurations include 2-wire, 3-wire, and 4-wire systems.
  • Temperature Range: -50°C to 400°C, depending on the cable insulation used.
  • Insulation Types: Options include PVC, teflon, silicon, and double fibreglass with stainless steel, each with specific maximum temperature ratings.
  • Sheath Material: Options include stainless steel, aluminum, and brass.
  • Process Connection: Various thread sizes are available, including M14x1.5, M10x1, and G1/2".
Ordering Information: The document provides a detailed ordering code system for specifying the desired configuration of the sensor, including the type of sensing element, accuracy class, measuring circuit, sheath length and diameter, process connection, and cable length.
Application Areas: The sensors are suitable for use in the fine chemical industry, light energy industry, general industrial services, plastic industry, and environments with movable and replaceable machine parts.
Key Features:
  • Customizable insertion length, thermowell diameter, process connection thread, number of sensors, accuracy, cable length, and insulation.
  • Thermowell spring protection against excessive cable bending.
  • Adjustable spring force for optimal measurement conditions in environments with vibrations.
Conclusion: SIMEX Ltd. offers a range of resistance temperature sensors that can be tailored to meet specific industrial needs, providing flexibility in terms of configuration and application suitability.
Overview: This document provides technical specifications and ordering information for various resistance temperature sensors manufactured by SIMEX Ltd. These sensors are designed for industrial applications, including temperature measurement in pipelines, ferrous materials, and general industrial services.
Specifications:
  • Sensing Elements: Pt100, Pt500, Pt1000 with 2-, 3-, or 4-wire configurations.
  • Temperature Range: -50°C to 450°C, depending on the cable used.
  • Accuracy Class: Class A or B.
  • Sheath Material: Stainless steel, with diameters ranging from 1.5 mm to 8 mm.
  • Connection Types: Standard, mini, or Lemo plug/socket, with options for pot seal and compensating cable.
Ordering Information: The document provides detailed ordering codes for each sensor type, specifying parameters such as sheath length, diameter, insulation type, and connection cable length. Examples are provided to illustrate how to configure a sensor order.
Application Areas:
  • General industrial services.
  • Temperature measurement of pipelines and cylindrical elements.
  • Measurement of ferrous materials.
  • Food industry and warehouses.
  • Measurement laboratories.
Key Features:
  • Adjustable spring force of the sensor.
  • Various sheath types and bayonet lengths.
  • Resistance to vibrations and flexibility due to mineral insulation.
  • Short reaction time to temperature changes.
Additional Notes: The document includes diagrams and tables detailing insulation designs, temperature ranges, and codes for different configurations. It emphasizes the sensors' adaptability to various industrial environments and their robust construction for reliable performance.
Overview: The document provides detailed technical specifications and ordering information for various types of temperature sensors manufactured by SIMEX Ltd. These include resistance temperature detectors (RTDs) and thermocouples, each designed for specific industrial applications.
Resistance Temperature Detectors (RTDs):
  • SCR400 Series: These sensors are used in equipment design, technological processes, and HVAC systems. They feature a non-replaceable measuring insert, a welded protection tube, and a Hirschmann GDM type socket. Options include a local LED display and various sheath materials and diameters.
  • SCR500 Series: Designed for ambient temperature measurement, these sensors can be equipped with a programmable transmitter. They offer quick and precise measurements due to a perforated protection tube.
Thermocouples:
  • SCT100 Series: These sensors are suitable for machine construction and the chemical industry. They feature an optional replaceable measuring insert and can be equipped with a temperature transmitter. The sensors are available with different connection heads and sheath materials.
  • SCT101 and SCT102 Series: Similar to SCT100, these series offer additional features like spring fixation for better accuracy and reduced vibration. They are used in various industrial applications, including the food industry.
Technical Specifications:
  • Temperature Range: Varies by sensor type, with RTDs ranging from -50°C to 550°C and thermocouples from -40°C to 1200°C.
  • Accuracy Classes: Class A or B for RTDs and Class 1 or 2 for thermocouples.
  • Sheath Material: Typically stainless steel, with options for different diameters and lengths.
  • Connection Types: Various process connections are available, including G1/2" and M20x1.5.
Ordering Information: The document provides detailed ordering codes for each sensor type, specifying construction, sensing element, sheath dimensions, and other customizable options.
Applications: These sensors are used across multiple industries, including HVAC, chemical processing, and general industrial services, providing reliable temperature measurement solutions.
Overview: This document provides technical specifications and ordering information for various models of thermoelectric temperature sensors manufactured by SIMEX Ltd. These sensors are used in industries such as fine chemicals, light energy, and general industrial services.
Specifications:
  • Material: Stainless steel 1.4541 or other options.
  • Nominal Length: Standard 130 mm, with other lengths available upon request.
  • Diameter: Ranges from 4 mm to 22 mm depending on the model.
  • Temperature Range: -40°C to 1200°C, depending on the thermocouple type and material.
  • Thermocouple Types: J (Fe-CuNi), K (NiCr-Ni), N (NiCrSi-NiSi).
  • Tolerance Classes: Class 1 and Class 2 with specific tolerances for each thermocouple type.
Connection and Installation:
  • Connection Heads: Types B, NA, DAN, DANW, and MA, with operating temperatures up to 150°C.
  • Process Connections: Options include G1/2", M20x1.5, and others.
  • Junction Types: Grounded or isolated from the sheath.
Ordering Information: The document provides a detailed ordering code structure for specifying sensor configurations, including thermocouple type, accuracy class, sheath diameter and length, junction type, and process connection.
Applications: These sensors are suitable for use in confined spaces and can be equipped with a temperature transmitter for output signals of 4...20 mA or 0...10 V.
Key Features:
  • Replaceable measuring inserts for easy maintenance.
  • Spring fixation for improved accuracy and reduced vibration.
  • Optional local display with connection head DANW.
Overview: The document provides detailed specifications and ordering information for various thermoelectric temperature sensors manufactured by SIMEX Ltd. These sensors are designed for industrial and laboratory applications, offering high accuracy and stability.
Specifications:
  • Sensing Elements: Available in J, K, N, R, S, B thermocouples, with single or double configurations.
  • Temperature Range: Varies by model and thermocouple type, ranging from -40°C to 1700°C.
  • Accuracy Classes: Class 1 and Class 2, with specific tolerances based on temperature ranges.
  • Sheath Material: Options include stainless steel, Inconel 600, and ceramic materials like C530, C610, and C799.
  • Connection Types: Standard, mini, Lemo plugs, or sockets, with options for pot seal and compensating cables.
Ordering Information:
  • Each sensor model (SCT211, SCT212, SCT300, SCT600, SCT601) has a specific ordering code format to specify configuration details such as thermocouple type, sheath diameter and length, insulation type, and connection type.
  • Examples are provided to guide the ordering process, detailing how to specify each component of the sensor.
Applications:
  • These sensors are suitable for a wide range of applications including the food industry, general industrial services, machinery and equipment design, temperature measurement of liquids, gases, and solids, as well as in industrial furnaces and the glass industry.
Technical Data:
  • Detailed technical data is provided for each sensor type, including construction details, material specifications, and operational limits.
  • Diagrams and tables illustrate insulation designs, temperature ranges, and tolerance classes according to standards like PN-EN 60584.
Additional Features:
  • Some models offer features like mineral insulation, resistance to vibrations, and the ability to operate in hard-to-reach places.
  • Options for mounting temperature transmitters with 4-20 mA or 0-10 V output signals are available for certain models.
Overview: This document provides technical specifications and guidelines for thermoelectric temperature sensors, ceramic protection tubes, and related accessories used in industrial applications. It includes details on materials, temperature ranges, advantages, disadvantages, and applications of various components.
Specifications:
  • Accuracy Class: Class 1 and Class 2 options available.
  • Ceramic Thermowell: Available in diameters of 24/15 mm and 15/10 mm, with lengths of 500 mm and 1000 mm.
  • Materials: C530, C610, and C799 ceramics, each with specific temperature resistances and applications.
  • Temperature Range: Up to 1800°C depending on the material and application.
Materials and Applications:
  • C530: Max 1600°C, resistant to temperature shock, used in electric furnaces up to 1300°C.
  • C610: Max 1500°C, gas-tight, used in gas-tight and diffusion furnaces.
  • C799: Max 1800°C, gas-proof, used in chemical industry and manufacturing of concrete.
Technical Data:
  • Sensing Element: R, S, B thermocouples with single, double, or triple configurations.
  • Measuring Range: 0 ÷ 1600°C for TC S, R; 600 ÷ 1700°C for TC B.
  • Connection Head: Types B, NA, MA, DAN, with operating temperatures from -40 to 150°C.
  • Sheath Material: Ceramic C799.
Accessories:
  • Mounting Brackets: SUZ11 and SUZ21 for sensor mounting.
  • Compensation and Extension Cables: Various types for different thermocouples, with insulation options like PVC, silicon, teflon, and fiberglass.
  • Plugs and Sockets: Standard and high-temperature options for connecting sensors to devices.
  • Compression Fittings: Used for sensor mounting, allowing immersion length adjustment.
Ordering Information: Detailed ordering codes for sensors, cables, and accessories, specifying dimensions, materials, and configurations.
Specifications:
1. Thermowell diameters range from 3.5 mm to 14 mm with various thread types including M20x1.5, M27x2, G1/2, G3/4, 1/2 NPT, and 3/4 NPT. Materials used include 1.4404, 1.4541, 1.4571, and 1.7335.
2. Ceramic Syalon thermowells have a maximum operating temperature of 1400°C, with high wear resistance and thermal shock resistance.
3. Measuring inserts for temperature sensors are available for both resistance thermometers and thermocouples, with materials such as stainless steel and Inconel 600.
Ordering Information:
1. Thermowell types include tapered, stepped, and straight. Thread types and bore diameters can be specified.
2. Syalon thermowells can be ordered with specific outer diameters and lengths.
3. Measuring inserts can be ordered with specific diameters, lengths, and configurations (single or double sensors, accuracy class, etc.).
Technical Data:
1. Thermowells are made from materials with specific properties such as high temperature resistance and low thermal expansion.
2. Measuring inserts for resistance thermometers include MgO isolators and are resistant to vibrations.
3. Thermocouple measuring inserts are made with metal sheathed cables and ceramic isolators for high temperature applications.
Standards and Tolerances:
1. Resistance thermometers follow PN-EN 60751 standards with specified tolerance classes.
2. Thermocouples follow PN-EN 60584 standards with specified temperature ranges and tolerances.
Applications:
1. Syalon thermowells are suitable for molten aluminum, zinc, tin, and lead due to their high mechanical strength and wear resistance.
2. Measuring inserts are designed for installation in protection thermowells and are suitable for high vibration environments.
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Catalog excerpts

Temperature sensors catalogue-1

TEMPERATURE SENSORS RTD sensors thermocouples connection heads compensating cable and many more...

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Temperature sensors catalogue-2

RESISTANCE TEMPERATURE SENSORS Head resistance thermometers Mineral insulated resistance thermometers Type: SCR100 Type: SCR101 Type: SCR102 Type: SCR103 Type: SCR104 Type: SCR105 Type: SCR106 Type: SCR107 Type: SCR108 Cable resistance thermometers Type: SCR200 Type: SCR201 Type: SCR202 Type: SCR203 Type: SCR204 Type: SCR205 Type: SCR206 Type: SCR207 Type: SCR208 Type: SCR209 Type: SCR210 Type: SCR211 Type: SCR212 With local display or connector GDM Type: SCR400 With wall-mount housing Type: SCR500 THERMOELECTRIC TEMPERATURE SENSORS Head thermocouples Mineral insulated thermocouples Ceramic thermocouples...

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Temperature sensors catalogue-3

RESISTANCE TEMPERATURE SENSORS Resistive sensors react to varying temperatures by changing the resistance of the built-in resistor. THERMORESISTORS These changes are characteristic for each thermoresistor and expressed through the temperature coefficient of resistance (TCR). TCR specifies the relative change in resistance caused by the temperature change of 1°C. We mark it with the α symbol. Knowing the resistance RT of the thermoresistor in the initial temperature TP, we can determine its resistance R in any other temperature. R = RT · (1 + α (T - TP)) Thermoresistors are made of metals characterized...

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Temperature sensors catalogue-4

Resistance temperature sensors SCR100 temperature range -50 ÷ 200°C operating temperature of connection heads max. 150°C stainless steel sheath optional: sensor with a replaceable measuring insert possibility of mounting a 4…20 mA or 0…10 V temperature transmitter connection head DANW with local display The resistance thermometer SCR100 consists of an optional exchangeable measuring insert, outer protective tube (thermowell) and aluminum connection head, where mounting a temperature transmitter with 4...20 mA or 0...10V output signal is possible. The measuring insert represents the replaceable...

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Temperature sensors catalogue-5

Resistance temperature sensors ELECTRICAL CONNECTION 2-wire white white white white yellow yellow SCR100-X-X-X-X-X-X-X-X-X-X sensor measuring range or temperature transmitter settings: please specify temperature sensor: 1 : single 2 : double PP : with transmitter sensing element: Pt 100 Pt 500 Pt 1000 other, please specify connection head: B NA other, please specify sheath length (L): 100 mm 160 mm other, please specify [mm] measuring insert: BW : non-replaceable W : replaceable process connection: G1/2" M20x1,5 other, please specify sheath diameter (Ød): 4 mm 6 mm 9 mm other, please specify...

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Temperature sensors catalogue-6

Resistance temperature sensors SCR101 temperature range -50 ÷ 550°C operating temperature of connection heads max. 150°C stainless steel sheath optional: sensor with a replaceable measuring insert possibility of mounting a 4…20 mA or 0…10 V temperature transmitter connection head DANW with local display The resistance thermometer SCR101 consists of an optional exchangeable measuring insert, outer protective tube (thermowell) and aluminum connection head, with mounting a temperature transmitter with 4...20 mA or 0...10V output signal is possible. The measuring insert represents the replaceable...

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Temperature sensors catalogue-7

Resistance temperature sensors OPTIONAL ACCESORIES S type flange (stainless steel) T type flange (PTFE) Threaded holder (fitting) with a compression ferrule (brass or stainless steel) white white white white yellow yellow SCR101-X-X-X-X-X-X-X-X-X sensor measuring range or temperature transmitter settings: please specify temperature sensor: 1 : single 2 : double PP : with transmitter sensing element: Pt 100 Pt 500 Pt 1000 other, please specify connection head: B NA other, please specify sheath length (L): 100 mm 160 mm other, please specify [mm] sheath diameter (Ød): 4 mm 6 mm 9 mm other, please...

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Temperature sensors catalogue-8

Resistance temperature sensors SCR102 temperature range -50 ÷ 550°C operating temperature of connection heads max. 150°C stainless steel sheath mounting flange possibility of mounting a 4…20 mA or 0…10 V temperature transmitter connection head DANW with local display The resistance thermometer SCR102 consists of an exchangeable measuring insert, outer protective tube (thermowell) with neck, and aluminum connection head. Mounting a temperature transmitter with 4...20 mA or 0...10V output signal is possible. The measuring insert represents the replaceable element of the complete sensor, which reduces...

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Temperature sensors catalogue-9

Resistance temperature sensors ELECTRICAL CONNECTION 2-wire white white white white yellow yellow SCR102-X-X-X-X-X-X-X-X-X-X temperature sensor: 1 : single 2 : double PP : with transmitter sensor measuring range or temperature transmitter settings: please specify measuring circuit: 2 : 2-wire 3 : 3-wire 4 : 4-wire sensing element: Pt 100 Pt 500 Pt 1000 other, please specify connection head: B NA other, please specify sheath length (L): 100 mm 160 mm other, please specify [mm] length La [mm]: S : 130 mm (standard) other, please specify flange: DN20 (PN100) DN25 (PN100) other, please specify sheath...

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Temperature sensors catalogue-10

Resistance temperature sensors SCR103 temperature range -50 ÷ 550°C operating temperature of connection heads max. 150°C stainless steel sheath threaded process connection optional: sensor with a replaceable measuring insert possibility of mounting a 4…20 mA or 0…10 V temperature transmitter connection head DANW with local display The resistance thermometer SCR103 consists of an exchangeable measuring insert, outer protective tube (thermowell) with neck, and aluminum connection head. Mounting a temperature transmitter with 4...20 mA or 0...10V output signal is possible. The measuring insert represents...

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Temperature sensors catalogue-11

Resistance temperature sensors ELECTRICAL CONNECTION 2-wire white white white white yellow yellow SCR103-X-X-X-X-X-X-X-X-X-X-X temperature sensor: 1 : single 2 : double PP : with transmitter sensor measuring range or temperature transmitter settings: please specify measuring circuit: 2 : 2-wire 3 : 3-wire 4 : 4-wire sensing element: Pt 100 Pt 500 Pt 1000 other, please specify connection head: B NA other, please specify sheath length (L): 100 mm 160 mm other, please specify [mm] length La [mm]: S : 130 mm (standard) other, please specify process connection: G1/2" M20x1,5 other, please specify...

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  2. STH-42

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  5. SLN-44

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  6. SLE-42

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  9. SPP-94

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  12. SPI-94

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  13. STI-638

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  14. STI-N118

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  15. STI-94

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  16. STI-73

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  17. SLN-94

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  18. SLK-94T

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  19. SLIK-638

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  20. SLB-94

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  21. SLIK-94

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  22. SLIK-73

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  23. SLE-73

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  24. SLC-457

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  25. SLC-94

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  26. SCK-11

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