Differences Between Pt100 and Pt1000 Sensors

The main difference between a Pt100 and a Pt1000 sensor is their nominal resistance at 0°C, with a Pt100 having a resistance of 100 ohms and a Pt1000 having a resistance of 1000 Ом, meaning the Pt1000 has a significantly higher resistance, making it more suitable for applications where precise temperature measurement is needed with minimal influence from lead wire resistance, especially in 2-wire circuit configurations;

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Wheatstone bridge connection and LTspice simulation model

3-Wire Measurement Solution for PT100 (RTD) датчик

PT100, the full name of platinum thermal resistor, is a resistive temperature sensor made of platinum (Pt), and its resistance value changes with temperature. The 100 after PT means that its resistance value is 100 ohms at 0℃, and its resistance value is about 138.5 ohms at 100℃.

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TPE injection temperature sensor RTD PT100 for pipes

What is the Difference Between 2-, 3-, and 4-Wire RTD Sensors?

This article explores 2-, 3-, and 4-wire configurations for resistance temperature detectors (RTD), focusing on how environmental factors, accuracy requirements, cost, and wire configuration affect selection. The 4-wire configuration is complex but offers the highest accuracy, while the 2-wire configuration has advantages in lower-accuracy applications. Choosing a configuration requires a combination of application requirements and practical conditions.

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What is an RTD Thermal Resistor Temperature Detection Sensor?

RTD (Детектор температури опору) is a sensor whose resistance changes as its temperature changes. The resistance increases as the temperature of the sensor increases. The resistance vs temperature relationship is well known and is repeatable over time.

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RTD vs PT100 Resistance Sensor Temperature Measurement Probe

RTD проти PT100: Опір датчика в зонді для вимірювання температури

The main difference between an RTD and a Pt100 is the material used for the sensing element: PT100 is a specific type of RTD thermal resistor, and its name comes fromPlatinum” (platinum) і “100” (100 ohms at 0°C). It is the most commonly used RTD sensor and is widely used in industrial process control, laboratory measurement and other fields that require high-precision temperature monitoring. The advantages of PT100 include:

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3-дротяний датчик температури PT100

Що таке терморезистор датчика PT100? 3-дротяний датчик температури PT100

Формула теплового опору має вигляд Rt=Ro(1+A*t+B*t*t);Rt=Ro[1+A*t+B*t*t+C(т-100)*т*т*т], t означає температуру за Цельсієм, Ro — значення опору при нульових градусах Цельсія, A, Б, C — усі вказані коефіцієнти, для Pt100, Ro дорівнює 100 ℃.

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Temperature acquisition of 4-wire PT100 temperature sensor

Отримання температури 2, 3, і 4-провідні датчики температури PT100

A PT100 sensor acquires temperature by measuring the change in its electrical resistance, which directly correlates to the temperature it is exposed to; as the temperature increases, the resistance of the platinum element within the sensor also increases, allowing for a precise calculation of the temperature based on this resistance change; essentially, в “100” in PT100 signifies that the sensor has a resistance of 100 ohms at 0°C, and this value changes predictably with temperature fluctuations.

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Temperature sensor probe T100 high temperature -50~260 cable

Resistors and Circuits of PT100 and PT1000 Metal Thermal Resistor Sensor Probes

The temperature measurement range of the commonly used platinum resistance Pt100 sensor probes is -200~850℃, and the temperature measurement ranges of Pt500, Pt1000 sensor probes, тощо. are successively reduced. Pt1000, temperature measurement range is -200~420℃. According to the IEC751 international standard, the temperature characteristics of the platinum resistor Pt1000 meet the following requirements:

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DS18B20 temperature sensor 1-wire waterproof cable + adapter board set

Custom DS18B20 Sensor Probe & 1-Wire Cable Assembly

The DS18B20 sensor communicates using the “1-Дріт” protocol, which means it uses a single data line for all communication with a microcontroller, allowing multiple sensors to be connected on the same line and identified by their unique 64-bit serial code; this single data line is pulled high with a resistor and the sensor transmits data by pulling the line low during specific time slots to send bits of information.

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