...
<De volta

Série CM de sensor capacitivo

MOQ : 240

Perguntas frequentes

Q1: What is the main difference between an inductive and a capacitive proximity sensor?

UM: The primary difference lies in the materials they can detect. Inductive proximity sensors use an electromagnetic field and can only detect metallic objects (such as iron, steel, and copper). In contrast, capacitive proximity sensors detect changes in capacitance, allowing them to sense both conductive metals and non-conductive materials like plastics, glass, water, oil, wood, and paper.

Q2: How do you adjust the sensing distance of a capacitive proximity switch?

UM: The CM30 series features an integrated sensitivity adjustment potentiometer. By rotating the potentiometer to the right (clockwise), you can increase the detection distance; rotating it to the left (counterclockwise) decreases it. This allows the sensor to be calibrated to ignore background containers (like a plastic tube) and only detect the substance inside (like water or chemical fluid).

Q3: Can a capacitive proximity sensor detect objects through a container wall?

UM: Yes. Because capacitive sensors react to the dielectric constant of materials, they can be calibrated to “see through” low-dielectric container walls (like thin plastic or glass) to detect high-dielectric materials inside (like liquids, powder, or granules). The volume of the detected target must be larger than the sensor’s sensing surface for optimal accuracy.

Q4: What are the wiring precautions for an AC 2-wire proximity switch compared to DC NPN/PNP?

UM: Unlike DC NPN/PNP sensors that have dedicated power and signal lines, an AC 2-wire proximity sensor must never be connected directly across a power supply without a load. It must always be wired in series with the load (such as a relay or contactor). Connecting it directly to the power source will cause immediate overcurrent damage to the sensor’s internal circuitry.

Q5: What causes a capacitive proximity sensor to false trigger, and how can it be prevented?

UM: False triggering is typically caused by high-frequency electromagnetic interference (from nearby frequency converters, ultrasonic generators, or welders), environmental moisture/dust accumulation on the sensing face, or improper grounding. To prevent this, ensure your wiring is routed away from high-power lines, use shielded cables, perform regular maintenance wipes on the sensing face, and set the operating distance to within 1/2 of the standard maximum distance for high-speed or high-frequency applications.

Produto relacionado

Nós acabamos 34 anos de experiência nesta indústria e construiu um
Reputação de fornecer produtos e serviços de qualidade a preços competitivos.

Notícias relevantes

Qual é uma mudança de tempo e como funciona?
Relé vs. Contator: 8 Diferenças principais que você deve conhecer
Protetor de circuito do disjuntor VS do motor: 6 diferenças principais
Fiação de um relé de tempo: guia passo a passo
pt_PT

Conte -nos o seu Requisitos Questões Precisa Idéias Planos



Seraphinite AcceleratorOptimized by Seraphinite Accelerator
Turns on site high speed to be attractive for people and search engines.