فئات المنتجات
علامات المنتج
مستشعر المزدوجات الحرارية المدرعة
حامل فيوز الشفرة
فتيل شفرة السيارة
فيوز السيارة
فيوز أنبوب السيراميك
قواطع دوائر
منظمات الحرارة القرصية
جهاز استشعار درجة الحرارة Ds18b20
الصمامات الكهربائية
فتيل سريع/بطيء النفخ
حامل صندوق الصمامات
فيوز الأنبوب الزجاجي
حامل الصمامات المضمنة
الحد من ترموستات القرص المفاجئ
قواطع دوائر صغيرة
حامي الزائد للمحرك
الحماية الحرارية للمحرك
مستشعر إن تي سي
مستشعر الثرمستور NTC
حامل فيوز جبل ثنائي الفينيل متعدد الكلور
PPTC الصمامات القابلة لإعادة الضبط
مستشعر درجة الحرارة PT100
بي تي سي الثرمستور
تسخير موصل الاستشعار
مجسات الاستشعار & الكابلات
ترموستات شعري أحادي المرحلة
ضربة بطيئة مايكرو فيوز
ترموستات ذكي
الصمامات السطحية
رابط قطع درجة الحرارة
مفتاح التحكم في درجة الحرارة
الصمامات درجة الحرارة
مستشعر درجة الحرارة
كابل استشعار درجة الحرارة
مسبار استشعار درجة الحرارة
التبديل درجة الحرارة
القطع الحراري
مفتاح القطع الحراري
الصمامات الحرارية
حامي حراري
التبديل الحراري
مسبار استشعار الثرمستور
المشاركات الأخيرة
PT100 RTD sensor Probe & الكابلات
PT100 thermal resistance acquisition modules can be connected to the RS-485 local control network through the isolated 485 communication interface. RS-485 allows up to 32 PT100 thermal resistance acquisition modules to be hung on the same bus. لكن, if Link-Max’s RS-485 repeater is used, up to 256 PT100 thermal resistance acquisition modules can be connected to the same network, and the maximum communication distance is 1200m.
PT100 RTD sensor Application scope:
Temperature and humidity are the two physical parameters that humans interact with most in nature. Whether in production and experimental sites or residential and leisure sites, the collection or control of temperature and humidity is very frequent and important. Moreover, networked remote collection of temperature and humidity and alarming is an inevitable trend in the development of modern science and technology. Since temperature and humidity are closely related both in terms of physical quantities themselves and in actual people's lives, sensors integrating temperature and humidity will be produced accordingly. Due to the relationship between temperature and resistance change of platinum resistor, people took advantage of this characteristic to invent and produce PT100 thermal resistance temperature and humidity sensor. It is an intelligent sensor integrating temperature and humidity collection. The temperature collection range can be -200℃~+200℃, and the humidity collection range is 0%~100%.
Product introduction:
LM-PT100 are thermal resistance temperature and humidity sensors with LCD display. It works in an industrial-grade environment of -40℃~+85℃ (host range, not external sensor range), and the collection temperature range is -200℃~+200℃. The display accuracy is 0.1℃; the comprehensive accuracy is 0.3℃. By combining our thermal resistance sensors with our RS-485 repeaters, it is possible to connect up to 255 PT100 thermal resistance acquisition modules to the same network, with a maximum communication distance of 1200m. LM-PT100 thermal resistance temperature and humidity sensors can also be combined with LM-8052NET to form a TCP/IP temperature collection network, which can realize remote temperature collection.
details:
LM-PT100, WD-PT100 is a new type of thermal resistance temperature sensor acquisition module (without PT100 temperature sensor, need to be purchased separately), which can be used to collect two-way on-site temperature. . At the same time, its own RS-485 bus serial communication interface can be used to easily connect to the environment monitoring host or other industrial control host.
Industrial grade PT100 thermal resistance acquisition module working at -40℃~85℃. According to the display mode, there are two types: WD series without LCD display (WD-PT100) and LM series with LCD display (LM-PT100). The collection temperature range is -200℃~+200℃, the display accuracy is 0.1℃; the comprehensive accuracy is 0.3℃.
PT100 thermal resistance acquisition modules can be connected to the RS-485 local control network through the isolated 485 communication interface. RS-485 allows up to 32 PT100 thermal resistance acquisition modules to be hung on the same bus. لكن, if Link-Max's RS-485 repeater is used, up to 256 PT100 thermal resistance acquisition modules can be connected to the same network, and the maximum communication distance is 1200m. Before installing the PT100 thermal resistance acquisition modules into the network, they should be configured, and the baud rate of the module should first be set to be consistent with the baud rate of the network. At the same time, the PT100 thermal resistance acquisition modules should be set to different addresses respectively to prevent the address conflict of each PT100 thermal resistance acquisition module.
After the PT100 thermal resistance acquisition modules are correctly connected, the host sends a read data command to cause the PT100 thermal resistance acquisition modules to send data back to the host. The data in the PT100 thermal resistance acquisition module is updated once every second, and the display data on the LCD display is updated periodically (LM series only).
The WD series is used in situations where temperature display is not required, such as outdoor ATM cabinets. This series is a DIN rail-mounted enclosure. In addition to completing temperature collection, the LM series can also pre-set the upper and lower limit alarm values of the temperature. When the environmental parameters exceed the set value, the buzzer inside the machine will sound an alarm immediately.
PT100 thermal resistance acquisition module is a fully digital PT100 thermal resistance acquisition module with wide application prospects. Temperature monitoring becomes very easy with this module. PT100 thermal resistance acquisition modules can be connected to two-wire, three-wire and four-wire PT100 thermal resistors. When three-wire and four-wire are used, the module can effectively compensate for wire resistance. The length of the cable does not affect the collection accuracy. This module is widely used in environmental monitoring systems, power systems, industrial automation and other fields, and has excellent cost performance.
PT100 and PT1000 thermal resistance acquisition modules can also be combined with LM-8052NET to form a TCP/IP temperature acquisition network, which can realize remote temperature acquisition.
RTD Probe with Insulated Wire and Shrink-Tube Support;
RTD Probe with Insulated Wire and BX Armored Cable;
RTD Probe with Stainless Steel Overbraid;
RTD Probe with Large Terminal Block;
Vibration Resistant and Bendable RTD (Pt100) Probes with M12 Connector and Mounting Threads (Metric Sizes);
Vibration Resistant and Bendable RTD (Pt100) Probes with M12 Connector and Mounting Threads (Fractional Sizes);
Bendable and Vibration Resistant RTD Probes with High Temperature Molded M12 Connector;
PT100 RTD Probes with M8 Molded Connectors;
General Purpose RTD Probes with Fiberglass Insulated Cables and Stainless Steel BX Armor Hose;
General Purpose RTD Probes with Fiberglass Insulated Cable;
General Purpose RTD Probes with Stainless Steel Braided Fiberglass Insulated and Jacketed Cables;
RTD Probes with Transitions and Stainless Steel BX Armor Cable for Industrial Applications;
RTD Probes with Transitions, Strain Relief Springs and Fiberglass Insulated and Jacketed Cables;
RTD Probes with Transitions, Strain Relief Springs and Fiberglass Insulated & Jacketed Stainless Steel Braided Cables;
Cut To Length RTD PT100 Sensor Probe For Field Adaptable Applications;
Fast Response Copper Tip RTD Sensors 100 Ohm Class A DIN Platinum Element;
Fast Response Copper Tip Thin Film RTD Sensors;
High Temperature M12 Extension Cables;
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What is a Platinum thermal resistance sensor?
An RTD (Resistance Temperature Detector) is a Platinum thermal resistance whose resistance changes with changes in temperature. Its resistance increases as the sensor temperature increases. The relationship between resistance and temperature is well known and repeatable over time. RTD is a passive device. It does not produce output by itself. External electronics can be used to measure the sensor resistance by passing a small current through the sensor to produce a voltage. Typically 1 mA or less measurement current, maximum 5 mA, without risk of self-heating.