RTD vs PT100 Resistance Sensor Temperature Measurement Probe

RTD vs PT100: Sensor Resistance in Temperature Measurement Probe

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 from “Platinum” (platinum) i “100” (100 oma na 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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Temperature acquisition of 4-wire PT100 temperature sensor

Temperatura Acquisition of 2, 3, i 4-žični PT100 temperaturni senzori

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, the “100” in PT100 signifies that the sensor has a resistance of 100 oma na 0°C, and this value changes predictably with temperature fluctuations.

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Temperature sensor probe T100 high temperature -50~260 cable

Otpornici i krugovi senzorskih sondi PT100 i PT1000 metalnih termičkih otpornika

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, itd. sukcesivno se smanjuju. Pt1000, temperature measurement range is -200~420℃. Prema međunarodnom standardu IEC751, temperaturne karakteristike platinskog otpornika Pt1000 ispunjavaju sljedeće zahtjeve:

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DS18B20 senzor temperature 1-žični vodootporni kabel + set adapterskih ploča

Prilagođena sonda senzora DS18B20 & 1-Sklop žičanog kabla

Senzor DS18B20 komunicira pomoću “1-Žica” protokol, što znači da koristi jednu liniju podataka za svu komunikaciju sa mikrokontrolerom, omogućavajući više senzora da budu povezani na istoj liniji i identifikovani po njihovom jedinstvenom 64-bitnom serijskom kodu; ova jedna linija podataka se povlači visoko pomoću otpornika i senzor prenosi podatke tako što povlači liniju nisko tokom određenih vremenskih intervala kako bi poslao bitove informacija.

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DS18B20 Digitalna termometarska sonda temperaturnog senzora + Adapterski modul terminala sa kompletom žica

Izrada digitalnog termometra sa DS18B20 digitalnim senzorom temperature

Ovaj članak detaljno objašnjava primjenu prilagođenog digitalnog senzora temperature DS18B20 u izgradnji digitalnog termometra. Uključujući princip rada, hardversku vezu, programiranje softvera i implementacija simulacija. Dajte kompletan dijagram simulacije protuesa, C izvorni kod i analiza rezultata kako bi pomogli čitaocima da duboko razumiju i praktikuju upotrebu DS18B20.

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Stability of NTC sensor probe

Odgovori znanja sonde senzora temperature termistora

Q: Can you explain sensitivity resolution in more detail? Why are higher values ​​better?
A: High sensitivity eliminates any lead resistance. It also simplifies the supporting electronics. A 10,000 ohm thermistor changes resistance by 4.4% ili 440 ohms for a 1°C change in temperature. A 100 ohm platinum sensor changes resistance by 1/3 ohm for a 1°C change in temperature.

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