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M5/M6 inductive metal proximity switch

Metal Travel/Position Detection, Speed Monitoring, Gear Speed Measurement, etc.

Adopting non-contact position detection, no abrasion to the surface of target object, with high reliability; Clearly visible indicator design, easier to judge the working status of the switch; Diameter specifications from Φ3 to M30, length specifications from ultra-short, short to long and extended; Cable connection and connector connection are optional; Made of special IC, with more stable performance; Short-circuit protection and polarity protection function; Capable to Various kinds of limit and counting control, wide range of application; rich product line is suitable for a variety of industrial occasions, such as high temperature, high voltage, wide voltage and so on.

    Product features

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    M5  Inductive proximity switch

    Product size

    M5 * 25mm

    Installation mode

    even

    Sensing distance mm

    0.8mm / 1.0mm / 1.2mm / 1.5mm

    Shell material

    Stainless steel material

    With or without LED

    ●Equipped with LED

    Operating voltage

    10-30VDC

    Continuous wave

    <10%

    Unloaded current

    <10mA

    Maximum load current

    100mA

    Leakage current

    <0.01mA

    Voltage drop

    <1.5V

    Switching frequency

    2KHz /1.5KHz / 1KHz

    Response time

      0.1ms/0.1ms/0.2ms

    Switching lag

    <15%(Sr)

    repeatability

    <5.0%(Sr)

    Protection class

    IP67

    Operating ambient temperature

    -25°C...70°C

    Temperature drift

    <10%(Sr)

    Short circuit protection

    -

    Overload current protection point

    -

    EMC

    RFI>3V/M / EFT>1KV  /  ESD>4KV(contact)

    Shock/vibration

    IEC 60947-5-2,Part7.4.1  /  IEC 60947-5-2,Part7.4.2

    Sensing surface material

    EPOXY

    Connection mode

    D2.5 3*0.14 PVC 2M

    DC Three-wire 10-30V npn is normally on

    M508N1*NO

    DC Three-wire 10-30V npn Normally closed

    M508P2*NC

    DC three-wire 10-30V pnp normally open

    M508P1*PO

    DC Three-wire 10-30V npn Normally closed

    M508N2*PC

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    M6  Inductive proximity switch

    Product size

    M6 *30mm

    Installation mode

    even

    Sensing distance mm

    0.8mm / 1.0mm / 1.2mm / 1.5mm

    Shell material

    Stainless steel material

    With or without LED

    ●Equipped with LED

    Operating voltage

    10-30VDC

    Continuous wave

    <10%

    Unloaded current

    <10mA

    Maximum load current

    150mA

    Leakage current

    <0.01mA

    Voltage drop

    <1.5V

    Switching frequency

    2KHz /1.5KHz / 1KHz

    Response time

      0.1ms/0.1ms/0.2ms

    Switching lag

    <15%(Sr)

    repeatability

    <5.0%(Sr)

    Protection class

    IP67

    Operating ambient temperature

    -25°C...70°C

    Temperature drift

    <10%(Sr)

    Short circuit protection

    -

    Overload current protection point

    -

    EMC

    RFI>3V/M / EFT>1KV  /  ESD>4KV(contact)

    Shock/vibration

    IEC 60947-5-2,Part7.4.1  /  IEC 60947-5-2,Part7.4.2

    Sensing surface material

    EPOXY

    Connection mode

    D2.5 3*0.14 PVC 2M

    DC Three-wire 10-30V npn is normally on

    M608N1*NO

    DC Three-wire 10-30V npn Normally closed

    M608P2*NC

    DC three-wire 10-30V pnp normally open

    M608P1*PO

    DC Three-wire 10-30V npn Normally closed

    M608N2*PC

    FAQ

    1,Can inductive proximity switches sense stainless steel or aluminum alloy materials?
    The principle is that aluminum alloy or stainless steel can be induced, but the induction distance will decay, for example: the induction metal iron distance is 2mm, the induction aluminum alloy or stainless steel distance is 0.5mm.
    2, What is an inductive proximity switch?
    The working principle of the inductive proximity switch is based on the principle of electromagnetic induction .It is mainly composed of an oscillator, a detection coil and a signal processing circuit. The oscillator generates a high-frequency AC electric field, which the detection coil converts into a magnetic field in the surrounding space. When a metal object approaches this magnetic field, the overall magnetic field strength changes due to the eddy current effect (that is, a small magnetic field in the direction opposite to the original magnetic field is generated within the metal).

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