330101-00-30-10-02-05 GE / 本特利内华达州
3300 XL 8mm 接近探头,3/8-24 UNF 螺纹,不带铠装
接近探头是接近传感器的核心部件,它通常是一个小型的传感器探头,用于检测物体与探头之间的距离或接近程度。接近探头的种类和原理有很多种,常见的包括:
1. 电磁式接近探头:330101-00-50-10-02-05利用电磁感应原理,当金属物体接近探头时,会改变探头周围的电磁场,从而产生电信号。
2. 电容式接近探头:利用电容原理,当物体接近探头时,会改变探头与物体之间的电容值,从而产生电信号。
3. 光电式接近探头:330101-00-50-10-02-05利用光电原理,当物体接近探头时,会遮挡探头发出的光线,从而产生电信号。
4. 超声波式接近探头:330101-00-50-10-02-05利用超声波原理,当物体接近探头时,会反射探头发出的超声波,从而产生电信号。
不同种类的接近探头具有不同的特点和应用场景,例如电磁式接近探头适用于检测金属物体,而光电式接近探头适用于检测非金属物体。在选择接近探头时,需要根据具体的应用需求和环境条件进行选择。
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330101-00-30-10-02-05 GE/Bentley, Nevada
3300 XL 8mm approach probe, 3/8-24 UNF thread, without armor
The proximity probe is the core component of the proximity sensor, which is usually a small sensor probe used to detect the distance or proximity between the object and the probe. There are many types and principles of proximity probes, common ones include:
1. Electromagnetic approach probe: 330101-00-50-10-02-05 Using the principle of electromagnetic induction, when a metal object approaches the probe, it will change the electromagnetic field around the probe, resulting in electrical signals.
2 capacitive approach probe: Using the principle of capacitance, when the object is close to the probe, the capacitance value between the probe and the object will be changed, resulting in an electrical signal.
3. Photoelectric approach probe: 330101-00-50-10-02-05 Using the photoelectric principle, when the object is close to the probe, it will block the light emitted by the probe, resulting in electrical signals.
4 Ultrasonic approach probe: 330101-00-50-10-02-05 Using the ultrasonic principle, when the object is close to the probe, it will reflect the ultrasonic wave emitted by the probe, resulting in electrical signals.
Different types of proximity probes have different characteristics and application scenarios, such as electromagnetic proximity probes are suitable for detecting metal objects, and photoelectric proximity probes are suitable for detecting non-metallic objects. When selecting the approach probe, the choice needs to be made according to the specific application requirements and environmental conditions.
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