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E39-R1 Scheda tecnica(PDF) 90 Page - Omron Electronics LLC

Il numero della parte E39-R1
Spiegazioni elettronici  Start with Smart! Easily select the most reliable Fiber Unit for your detection conditions.
PDF  100 Pages
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Produttore elettronici  OMRON [Omron Electronics LLC]
Homepage  http://www.omron.com/index3.html
Logo OMRON - Omron Electronics LLC

E39-R1 Scheda tecnica(HTML) 90 Page - Omron Electronics LLC

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Technical Guide
Technical Guide
90
Threaded
Cylindrical
Flat
Sleeved
Small Spot
High Power
Retro-
reflective
Limited-
reflective
Narrow
view
BGS
Chemical-
resistant,
Oil-resistant
Bending
Heat-
resistant
Area
Detection
Liquid-level
Vacuum
FPD,
Semi,
Solar
Installation
Information
91
Installation
Information
Threaded
Cylindrical
Flat
Sleeved
Small Spot
High Power
Retro-
reflective
Limited-
reflective
Narrow
view
BGS
Chemical-
resistant,
Oil-resistant
Bending
Heat-
resistant
Area
Detection
Liquid-level
Vacuum
FPD,
Semi,
Solar
90
91
Influence of Fiber Cable Length
0
20
40
60
80
100
120
Green
rubber mat
Bakelite
Glass
t0.7
Anodized
aluminum
(black)
SUS304
White
paper
Material
0
20
40
60
80
100
120
1
2
3
4 5
0
7
6
8 9
11
10
Fiber Cable Length (m)
The sensing distance listed in the Fiber Units specifications are based on the fiber cable lengths found in the suffix of the model number.
The sensing distance will change if the fiber cable is cut or extended.
The following graph shows the percentage change of the various fiber cable length, where 100% is the sensing distance for a fiber cable
with a length of 2 m.
Use this as a guideline for installation distances.
Keep in mind that extending the cable with a fiber connector will result in even shorter sensing distances than the value given in the graph.
Types of Fiber Cables
This section describes the features of different types of fiber cables.
(This is given in the Fiber Unit specifications as either Flexible or Bend-resistant for the cable bending radius, and Coaxial for the
appearance.
If no difinition is given, a standard cable is used.)
Reflective Models: Sensing Distance Ratios by Workpiece Materials
The following graph shows the percentage change of the various workpieces, where 100% is the sensing distance for white paper,
the standard sensing object.
Refer to the value of the material that looks like your workpiece.
Structure where the multiple
fine fibers has been independent.
* White paper is 100%.
Structure only of one fiber
Reference Information for Fiber Units
Q&A
Fiber Units
Fiber Amplifier
Units
Category
Question
Answer
The optical axis diameter is the beam size that the
Through-beam Fiber Unit uses for detection.
If you are detecting objects larger than the optical axis
diameter, you can expect stable detection performance
because the object will block all of the beams of light that are
used for detection.
The incident level may fluctuate, however, if the workpiece
passes the beam at high speed.
In this case, it is best to select a Fiber Unit with a smaller
optical axis diameter, or change the response time of the Fiber
Amplifier Unit to High-speed mode or to Super-high-speed
mode setting.
Refer to the recommended mounting hole dimensions given
on pages 58 to 61.
With Through-beam Fiber Units, there is no difference between
emitter fibers and receiver fibers.
With Reflective Fiber Units, the emitter fibers and receiver
fibers are different on Coaxial Reflective Models.
Emitter fiber cables have identification marks. Refer to the
individual dimensions diagrams of Fiber Units for details.
Some models are available with either 5-m or 10-m cable.
Ask your OMRON representative for details.
Mobile consoles cannot be used with either the E3NX-FA
Series or the E3X-HD Series.
If you use E3NX-FA0 Amplifier Units, you can use the
E3NW-ECT(EtherCAT), E3NW-CRT(CompoNet) or E3NW-CCL
(CC-Link).
If you use E3X-HD0 Amplifier Units, you can use the E3X-CRT
(CompoNet) or E3X-ECT (EtherCAT).
Fiber Units do not have any electrical components and
therefore are exempt from CE certification.
The Fiber Units can be used in an explosion-proof area. Install
only the Fiber Unit in the explosion-proof area and install the
Fiber Amplifier Unit outside the explosion-proof area.
The aperture angle is the angle at which the emitter beam
spreads out.
The E3X-HD Series can be connected only with the
E3X-DA-S and MDA Series.
Are Fiber Cables available in different lengths?
What is the aperture angle?
Are these Fiber Units CE certified?
These highly recommended Fiber Units have built-in lenses
that achieve stable detection with high-power beams.
What the Fiber Units with built-in lenses?
How do I interpret the optical axis diameter in
the Fiber Unit specifications?
Are there any differences between the Fiber
Units that are used for emitter and receiver?
What size must the hole be to mount a
Threaded or Cylindrical Fiber Unit?
Can these Fiber Units be used in
explosionproof areas?
Can the Fiber Amplifier Units be linked with
other models?
Can the Fiber Amplifier Unit be operated from a
mobile console?
Can a Sensor Communications Unit be used?
* The 100% value is for a fiber cable with a length of 2 m
(same for Through-beam and Reflective Models).
Structure which has a
cladding around a large
number of ultrafine
cores.
Beam spread
of 60°
Optical
axis
diameter
Aperture angle
The flexible fiber has a small bending radius for easy routing
without easily breaking.
It is easy to use because the cable can be bent without
significantly reducing light intensity.
•Flexible Fibers
This fiber is resistant to repeated bends for use on moving
parts.
•Break-resistant Fibers
This fiber have a large bending radius compared with
bend-resistant or flexible fiber.
Use this fiber where the bending radius is large, or on
non-moving parts.
•Standard Fibers
These fibers are suitable for sensing small objects at close range.
•Coaxial Reflective Fibers
The receiver fibers are arranged around the emitter fiber.
Receiver fibers
Emitter fiber
Cladding
Core



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