RS PRO PT100 RTD Sensor, 13mm Dia, 40mm Long, 4 Wire, Patch Sensor, Class B +150°C Max

RS Stock No.: 285-661Brand: RS PRO
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Technical Document

Specifications

Brand

RS Pro

Sensor Type

PT100

Probe Length

40mm

Probe Diameter

13mm

Minimum Temperature Sensed

-50°C

Maximum Temperature Sensed

+150°C

Termination Type

Lead Wire

Cable Length

2m

Probe Material

Aluminium Foil Backing, Silicone Rubber

Process Connection

Patch Sensor

Number Of Wires

4

Accuracy

Class B

Country of Origin

United Kingdom

Product details

RS Pro 4 Wire Pt100 PRT Silicone Patch Sensor

From RS Pro a high-quality and reliable Pt100 PRT (Platinum Resistance Thermometer) or RTD (Resistance Temperature Detector). This Pt100 RTD has a sensing element that is encased in silicone rubber patch so it can be used to measure the temperatures on surfaces. The twisted leads are 4 core with a durable and flexible Teflon insulation. This platinum resistance thermometer provides accurate and reliable temperature measurement for a wide range of applications.

What is an RTD?

An RTD is a type of temperature sensor based on the correlation between metals and temperature. As the temperature of a metal increases so does its resistance to the flow of electricity. This resistance can be measured and converted to a temperature reading. In a Pt100 RTD, the ’Pt’ stands for platinum (platinum wire or film) and ’100’ means that the temperature sensor has a resistance of 100 Ohms at 0°C. Platinum is the most reliable metal due to its linear resistance to temperature relationship over a large temperature range.

What is a Pt100 Silicone Patch Sensor?

A Pt100 silicone patch sensor is designed to measure the temperature on surfaces. The temperature sensor element is embedded inside a silicone patch. One side of this patch has a self-adhesive aluminium foil backing allowing the sensor to be stuck firmly in place. The other end of the sensor is terminated by 4 wire tails which are connected to the temperature measuring equipment.

Features and Benefits

• High stability sensing element with a precision output
• IEC 60751 Class B accuracy/tolerance
• Self-adhesive silicone patch for mounting onto a surface
• Silicone patch offers durability and resistance to many oils and chemicals
• Teflon insulated leads for thermal and electrical insulation, impact strength and protection against moisture, corrosion and abrasive chemicals even in extreme temperatures
• Temperature measurement range of -50 to +150°C
• 4 lead wires for accurate readings

Applications

These Pt100 PRT silicone patch sensors with their compact and versatile design are most commonly used in pipe or surface measurement.

Frequently Asked Questions

How Does a PRT Temperature Sensor Work?

The PRT temperature sensor works by placing the sensor element (or process end) into the equipment or process that requires temperature measurement. As the temperature of the platinum resistance thermometer increases it’s resistance to the flow of electricity increases. For every increase per degree of temperature the electrical resistance also changes by a set ratio, this is called the temperature coefficient. For platinum, this ratio is .00385 ohm/ohm/°C which means for a Pt100 with a 100 ohm resistance the increase in resistance per degree of temperature would be 0.385 ohms. The total resistance reading can, therefore, be measured and converted into temperature.

How is the Resistance Measured?

The resistance generated by the temperature sensor is measured by passing current through one of the wires to produce a voltage. This voltage is then measured using a suitable bridge or voltmeter and the resistance calculated in ohms using Ohm’s Law (R=V/I). Once the resistance is known you can convert it to a temperature reading using a calibration equation or a Pt100 table. A temperature measurement device or calibrator can also be connected to the leads of the probe that will automatically convert the measured resistance into a temperature reading

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AED 297.00

Each (ex VAT)

AED 311.85

Each (inc VAT)

RS PRO PT100 RTD Sensor, 13mm Dia, 40mm Long, 4 Wire, Patch Sensor, Class B +150°C Max

AED 297.00

Each (ex VAT)

AED 311.85

Each (inc VAT)

RS PRO PT100 RTD Sensor, 13mm Dia, 40mm Long, 4 Wire, Patch Sensor, Class B +150°C Max
Stock information temporarily unavailable.

Buy in bulk

quantityUnit price
1 - 5AED 297.00
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Technical Document

Specifications

Brand

RS Pro

Sensor Type

PT100

Probe Length

40mm

Probe Diameter

13mm

Minimum Temperature Sensed

-50°C

Maximum Temperature Sensed

+150°C

Termination Type

Lead Wire

Cable Length

2m

Probe Material

Aluminium Foil Backing, Silicone Rubber

Process Connection

Patch Sensor

Number Of Wires

4

Accuracy

Class B

Country of Origin

United Kingdom

Product details

RS Pro 4 Wire Pt100 PRT Silicone Patch Sensor

From RS Pro a high-quality and reliable Pt100 PRT (Platinum Resistance Thermometer) or RTD (Resistance Temperature Detector). This Pt100 RTD has a sensing element that is encased in silicone rubber patch so it can be used to measure the temperatures on surfaces. The twisted leads are 4 core with a durable and flexible Teflon insulation. This platinum resistance thermometer provides accurate and reliable temperature measurement for a wide range of applications.

What is an RTD?

An RTD is a type of temperature sensor based on the correlation between metals and temperature. As the temperature of a metal increases so does its resistance to the flow of electricity. This resistance can be measured and converted to a temperature reading. In a Pt100 RTD, the ’Pt’ stands for platinum (platinum wire or film) and ’100’ means that the temperature sensor has a resistance of 100 Ohms at 0°C. Platinum is the most reliable metal due to its linear resistance to temperature relationship over a large temperature range.

What is a Pt100 Silicone Patch Sensor?

A Pt100 silicone patch sensor is designed to measure the temperature on surfaces. The temperature sensor element is embedded inside a silicone patch. One side of this patch has a self-adhesive aluminium foil backing allowing the sensor to be stuck firmly in place. The other end of the sensor is terminated by 4 wire tails which are connected to the temperature measuring equipment.

Features and Benefits

• High stability sensing element with a precision output
• IEC 60751 Class B accuracy/tolerance
• Self-adhesive silicone patch for mounting onto a surface
• Silicone patch offers durability and resistance to many oils and chemicals
• Teflon insulated leads for thermal and electrical insulation, impact strength and protection against moisture, corrosion and abrasive chemicals even in extreme temperatures
• Temperature measurement range of -50 to +150°C
• 4 lead wires for accurate readings

Applications

These Pt100 PRT silicone patch sensors with their compact and versatile design are most commonly used in pipe or surface measurement.

Frequently Asked Questions

How Does a PRT Temperature Sensor Work?

The PRT temperature sensor works by placing the sensor element (or process end) into the equipment or process that requires temperature measurement. As the temperature of the platinum resistance thermometer increases it’s resistance to the flow of electricity increases. For every increase per degree of temperature the electrical resistance also changes by a set ratio, this is called the temperature coefficient. For platinum, this ratio is .00385 ohm/ohm/°C which means for a Pt100 with a 100 ohm resistance the increase in resistance per degree of temperature would be 0.385 ohms. The total resistance reading can, therefore, be measured and converted into temperature.

How is the Resistance Measured?

The resistance generated by the temperature sensor is measured by passing current through one of the wires to produce a voltage. This voltage is then measured using a suitable bridge or voltmeter and the resistance calculated in ohms using Ohm’s Law (R=V/I). Once the resistance is known you can convert it to a temperature reading using a calibration equation or a Pt100 table. A temperature measurement device or calibrator can also be connected to the leads of the probe that will automatically convert the measured resistance into a temperature reading