Normally Open Industrial Proximity Switch , Inductive Proximity Sensor Switch
Description
Our industrial inductive proximity switches are the preferred choice for the majority of applications requiring accurate, non-contact detection of metallic objects in machinery or automation equipment. As a pioneer and market leader, Zhongde offers innovative, high quality inductive sensors to meet the needs of the worldwide automation and process control markets.
Features
Reverse power protection, short circuit protection, can be directly connected to the PLC
Economical and simple operation
Long life and high reliability, strong environmental resistance
Red LED reality can detect sensor working status
IP67 protection structure (IEC)
Parameter
Lag distance | Less than 10% of the detection distance |
Detecting objects | Magnetic metal (detection distance is reduced when non-magnetic metal) |
voltage | DC : DC 12~24 (6~36V) pulse (p-p) below 10% |
AC : AC 110~220V (36~250V) 50/60Hz | |
Current consumption | N.P : ≤13mA |
D : ≤0.8mA | |
A : ≤1.7mA | |
Control output | N.P : ≤300mA |
D : ≤200mA | |
A : ≤400mA | |
Loop protection | N.P.D : reverse connection protection, surge absorption, load short circuit protection |
A : surge absorption | |
Ambient temperature | -30~+65°C (no icing, no condensation) |
Ambient humidity | -35~95%RH |
Insulation resistance | 50MΩ or more (DC500 megohmmeter) (between charging part and housing) |
Withstand voltage | AC 1000V 50/60HZ 1min (between charging part and Housing) |
Temperature effect | -30~+65°C: detection distance error ±15% at +23°C |
-25~+60°C: detection distance error ±10% at +23°C | |
Voltage effect | 6-36V (90-250V) : ±15% of detection distance error |
10-30V (220V) : ±10% of detection distance error | |
Protection level | IP67 (IEC) |
Material | Housing: ABS |
Detection surface: ABS |
Note:Please read the "Precautions" of the product manual before use.
Details
Three-wire
PNP
Normally open
DC
Working principle
The switch contains high-frequency oscillation circuit, detection circuit, amplifier circuit, the solution circuit and the output circuit. When the power is supplied to the switch, the oscillator in the high frequency oscillation circuit generates an alternating electromagnetic field on the detection surface of the switch. When there is a metal close to the switch detection surface, the eddy current inside the metal absorbs the energy of the alternating electromagnetic field in the oscillator. The oscillator is weakened or stopped. Oscillator energy changes in the two states, the detection circuit is converted to a level signal, through the amplifier circuit to amplify the level signal after the trigger circuit to trigger the output transistor transistor circuit to produce a switch signal. Thereby detecting the presence or absence of the metal.