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ipf electronic OTQ90170

Optical Sensor  ipf electronic OTQ90170

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Brand name
ipf electronic
Article
OTQ90170
Country
Germany
tpl10.product.param.purpose
Optical Sensor
Optical characteristics
Sensor wavelength: 660nm
Type of light: Non-polarized red light
Background suppression: Yes
Light beam shape: Spot


Electrical data
Switching distance: 2 - 60mm
Scanning function: light/dark switching
Setting procedure: Teach-In
Electrical connection version: M8 cable plug
Fall time: 0.5ms
Voltage drop: 1.8V
Number of poles: 4
Rated switching current: 100mA
Response time: 0.5ms
Display:
Short-circuit proof: Yes
Version of the switching output: PNP
Execution of the switching function: programmable/configurable
Operating voltage (DC): 10 - 30V
Frequency of switching: 1,000Hz
No-load current: 25mA
Number of switching outputs: 1
With protection against polarity reversal: Yes


Mechanical data
Ambient temperature: -20 - 50°C
Number of wires: 4
Sensor height: 21.4mm
Sensor length: 10.8mm
Design: Cube
Material of optical surface: PMMA
Cable sheath material: PUR (polyurethane)
Wire section: 0.1mm²
Sensor width: 9.2mm
Cable length: 0.2m
Maximum tightening torque: 0.2Nm
Degree of protection (IP): IP65
Housing material: PMMA


Other data
Mode of operation: Suppression of background
Optical sensors operate without contact. These detect objects regardless of their nature (eg shape, color, surface structure, material). The basic operating mode is based on sending and receiving light. Three models are distinguished: 1. The barrier photocell is made up of two separate pieces of equipment, a transmitter and a receiver, which are aligned with each other. When the light beam between the two devices is interrupted, the switching output integrated in the receiver changes state. 2. In the reflective photocell, the emitter and the receiver are inside a team. The emitted light beam is reflected onto the receiver by a reflector that must be mounted opposite. As soon as the light beam is interrupted, the switching output integrated in the device changes state. 3. In the self-reflective photocell, the emitter and the receiver are inside a team. The emitted light beam is reflected by the object to be detected. As soon as the receiver detects the reflected light, the switching output integrated in the device changes state.
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