World-beam, Qs30af adjustable-field sensor, Overview – Banner WORLD-BEAM QS30 Series User Manual

Page 2: Optical triangulation

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WORLD-BEAM

®

QS30AF Adjustable-Field Sensor

2

P/N 111384 rev. D

Banner Engineering Corp.

Minneapolis, MN U.S.A.

www.bannerengineering.com • Tel: 763.544.3164

Overview

The QS30AF is an easy-to-use triangulation sensor which provides a sophisticated,

yet cost-effective solution for demanding applications.
The sensor features two identically configured outputs, one each NPN and PNP.
The sensor’s compact housing has a large, easy-to-see bargraph display plus

bright LEDs for easy configuration and status monitoring during operation. The

sensor can be side-mounted, using its integral mounting holes, or front-mounted,

via its 30 mm threaded barrel.

Optical Triangulation

The function of the QS30AF Sensor is based on optical triangulation (see Figure

2). The emitter circuitry and optics create a light source which is directed toward a

target. The light source bounces off the target, scattering some of its light through

the sensor’s receiver lens to its position-sensitive-device (PSD) receiver element.

The target’s distance from the receiver determines the light’s angle to the receiver

element; this angle determines where the returned light falls on the PSD receiver

element.

The position of the light on the PSD receiver element is processed through digital

electronics and analyzed by the microprocessor. The microprocessor will compare

the target position to the cutoff limits and then change the outputs as required.

Figure 1. QS30 features

Yellow Output Conducting

Indicator

Green Power ON

Indicator

Bargraph

Display

Cutoff

Switchpoint

Configuration

Push

Buttons

SETUP Status

Indicators:

Delay

Normally Closed

Normally Open

Signal

Conditioning

Circuitry

Microprocessor

Output

Circuitry

Emitter

Circuitry

Emitter

Lenses

Target Movement

E

Programmed

Cutoff Point

Far

Near

Receiver PSD

Switchpoint

Figure 2. Using optical triangulation to determine sensing distance

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