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or may be trademarks of, and are used to identify products and services of, their respective owners.
In an effort to conserve paper, ProSoft Technology no longer includes printed manuals with our product shipments. User Manuals, Datasheets, Sample Ladder Files, and Configuration Files are provided at our website:
www.prosoft-technology.com
Content Disclaimer
This documentation is not intended as a substitute for and is not to be used for determining suitability or reliability
of these products for specific user applications. It is the duty of any such user or integrator to perform the appropriate and complete risk analysis, evaluation and testing of the products with respect to the relevant specific
application or use thereof. Neither ProSoft Technology nor any of its affiliates or subsidiaries shall be responsible or liable for misuse of the information contained herein. Information in this document including illustrations,
specifications and dimensions may contain technical inaccuracies or typographical errors. ProSoft Technology
makes no warranty or representation as to its accuracy and assumes no liability for and reserves the right to correct such inaccuracies or errors at any time without notice. If you have any suggestions for improvements or
amendments or have found errors in this publication, please notify us.
No part of this document may be reproduced in any form or by any means, electronic or mechanical, including
photocopying, without express written permission of ProSoft Technology. All pertinent state, regional, and local
safety regulations must be observed when installing and using this product. For reasons of safety and to help
ensure compliance with documented system data, only the manufacturer should perform repairs to components.
When devices are used for applications with technical safety requirements, the relevant instructions must be followed. Failure to use ProSoft Technology software or approved software with our hardware products may result
in injury, harm, or improper operating results. Failure to observe this information can result in injury or equipment
damage.
Printed documentation is available for purchase. Contact ProSoft Technology for pricing and availability.
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For professional users in the European Union
If you wish to discard electrical and electronic equipment (EEE), please contact your dealer or
supplier for further information.
Warning – Cancer and Reproductive Harm – www.P65Warnings.ca.gov
Installation Instructions:
THIS EQUIPMENT IS AN OPEN-TYPE DEVICE AND IS MEANT TO BE INSTALLED IN AN ENCLOSURE
SUITABLE FOR THE ENVIRONMENT SUCH THAT THE EQUIPMENT IS ONLY ACCESSIBLE WITH THE USE
OF A TOOL.
SUITABLE FOR USE IN CLASS I, DIVISION 2, GROUPS A, B, C AND D HAZARDOUS LOCATIONS, OR
NONHAZARDOUS LOCATIONS ONLY.
WARNING – EXPLOSION HAZARD – DO NOT DISCONNECT EQUIPMENT WHILE THE CIRCUIT IS LIVE OR
UNLESS THE AREA IS KNOWN TO BE FREE OF IGNITABLE CONCENTRATIONS.
WARNING – EXPLOSION HAZARD – SUBSTITUTION OF ANY COMPONENT MAY IMPAIR SUITABILITY FOR
CLASS I, DIVISION 2.
In a wireless system, electromagnetic waves, or radio frequencies, are transmitted and received
by radios. In environments where the transmission or reception of these radio signals cannot
effectively reach the antennas of the receiving radios due to obstructions, wireless communications may drop or experience faults. A busy manufacturing plant is an example of an industrial environment where there may be obstructions reflecting and blocking RF frequency signals.
In environments like this, a radiating cable may be used to achieve line of sight. Radiating cable
provides a reliable wireless connection for many types of applications that have Ethernet devices
moving along a fixed track including:
n Electrified monorail systems (EMS)
n Skillet Conveyors
n Cranes
n Rotating machinery
n Automated Storage Retrieval Systems
n And others
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2Cable Construction
It's a good idea to understand how radiating cables are constructed. The following illustration
shows how the cable is assembled.
a. Inner conductor
b. Dielectric
c. Slotted Outer Conductor
d. Cable Jacket
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3Signal Losses with Radiating Cables
As with all antennas, the transmission of radio frequencies with a radiating cable is subject to loss.
The two types of signal loss that need to be considered in a radiating cable application are known
as longitudinal loss and coupling loss.
n Coupling Loss
n Longitudinal Loss
3.1 Coupling Loss
Delete this text and replace it with your own content.
3.2 Longitudinal Loss
Longitudinal loss is the measure of attenuation of the signal propagation across the length of the
radiating cable. Attenuation of the radio frequencies increases with the length of the cable.
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4Radiating Cable Application
Components
Click each item for information:
n Radios
n Conversion Cables
n Extension Cables
n Connectors
n Radiating Cables
n Resistors
n Splitters
n IP67 Cables
n Preparation Tool
n Cable Hanger
4.1 Radios
RLX2-IHNF-W
802.11 abgn Weatherproof IP67 Fast Industrial Hotspot
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RLX2-IHNF-WC
802.11 abgn Weatherproof IP67 Fast Industrial Hotspot, Conduit
RLX2-IHNF
802.11 abgn Fast Industrial Hotspot, IP20
.
4.2Conversion Cables
n C40Mxx-yy-zz LMR195® 400 Cables
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4.3 Extension Cables
C40Mxx-yy-zzz LMR® (N-Plug to N-Plug).
n C40M40-40-xxx (N-plug to N-plug)
4.4RC Connectors
RCX-CON-50-US
n N-Type Radiating Cable Connector, Female.
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4.5Radiating Cable
RCHB-xxxM
n 5GHz-Bulk Radiating Cable
RCLB-xxxM
n 2.4GHz-Bulk Radiating Cable
4.6RC Resistor
RLX-LFTR-40
n 50 Ohm Terminating Resister - N-Plug
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4.7 Splitter
PD50-2
2-Way Power Divider
4.8 IP67 Cables
CULPWR-M12-XXX
n 4-pin A Code M12 to Un-terminated leads, Power Cable
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CULRJ45-M12-XXX
n 8-pin A Code M12 to RJ45 Network Cable
4.9 Radiating Cable Preparation Tool
RCX-CPTOOL-US
n Radiating Cable Preparation Tool
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4.10Radiated Cable Hangers
RCX-CLIC-KIT-US Hanger Kit with Round Spacer
RCX-XLIC-K85-US Hanger Kit with Rectangular Spacer
The openings in the slotted outer conductor determine the wavelength, or frequency, to be radiated from the cable. These slots must be oriented toward the area requiring coverage. The slots
are located 180° from the ridge on the outer jacket.
To ensure optimal wireless communication, the receiving antenna should be aligned with the slots
of the radiating cable. The distance between the radiating cable and the receiving antenna is
recommended to be approximately:
5 GHz:1.25 - 10 cm
2.4 GHz:4 - 7
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5.1 Receiving Antenna Alignment Examples
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6Bending Radius
While laying the cable in the application, make sure the cable is not bent tighter than the minimum
bending radius of 20cm to avoid damage. Do not kink the radiating cable.
>20cm
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7Fixing Hangers
Radiating cable is mounted with clip hangers or clic clamps. The maximum gap between hangers/clamps should not exceed 1 meter. The securing clips should be plastic and should not cover the
openings in the slotted outer conductor. The cable should not be mounted in a way where movement in the application will cause stress on the cable (shifting ground, etc).
To install a clip hanger:
To install a clic clamp:
To install a hook hanger:
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Installation Considerations/Planning:
1. Determine location of master radios, splitters, resistors, etc.
2. Determine the orientation of the receiving antenna. See Alignment section of this manual.
3. Determine the types of hangers/standoffs to be installed.
4. Determine the spacing of the hangers/standoffs. Allow space for cable accessories.
5. Determine when and where to prepare the cable ends for installation of cable connectors.
See Radiating Cable Preparation procedure in this manual.
6. Install the hangers/clamps along the application.
7. Start securing the cable at one end of the segment.
8. Continue securing the cable in the hangers, while ensuring the orientation of the cable is correct.
9. Install the accessories and test installation
There are multiple installation options for hangers and clamps, depending on your environment.
Contact ProSoft Technology for more information.
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8Connecting Cables and Radios
The RLX2-IHNF family of products has been engineered for use with radiating cable. To connect
radiating cable, an extension cable is used (C40M60-60-xxx and C40M40-40-xxx). Connect the
extension cable to the antenna port A of the radio, then connect the other end to the radiating
cable. Signal loss in the extension cable increases with the length, so the cable length should be
kept to a minimum.
It is also possible to connect two segments of radiating cable to a radio with the use of a splitter.
The splitter splits the power from the radio in half and shares it across the two segments. These
segments must be shorter than a segment that is supplied full power from the radio.
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To use a splitter:
1. Connect the extension cable to the antenna port A of the radio, then connect the other end to
the IN port of the splitter.
2. Connect an extension cable to the OUT port of the splitter, and connect the other end to the connector on the radiating cable. Do this for both OUT ports of the splitter.
It is also possible to install a single segment of radiating cable with a radio on each end. This implementation gives better RF overlap which is valuable in roaming applications.
To install a single segment of radiating cable with a radio on each end:
1. Connect the extension cable to the antenna port A of the first radio, then connect the other end
to the IN port of the splitter.
2. Connect an extension cable to the OUT port of the splitter and connect the other end to the connector on the radiating cable. Do this for both OUT ports of the splitter
3. Repeat step 1 for the second radio at the end of the radiating cable.
The following example shows how the components are used in this configuration:
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9Radiating Cable Preparation
The cable must be stripped in order to fit a connector to the cable itself.
Cut cable to correct
1
length.
Smooth edges with a
2
fine sandpaper.
Use RCX-CPTOOLUS to strip the cable
jacket, outer conductor, and dielectric
until 14mm of inner
3
conductor is exposed.
23mm of unobstructed
cable is required for
the mating of the connector.
Sand the edge of the
4
inner-conductor to a
45⁰angle.
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Unscrew the connector to separate into
two prices. Position
the female end on the
5
radiating cable over
the outer jacket, and
screw on the male end
over the inner conductor to 20-25 Nm.
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10Grounding
RLX2-IHNF
The ground connection of the equipment is made through the DIN clip. The DIN rail shall be properly grounded to the building ground as well as the antenna coaxial screen of the connector.
RLX2-IHNF-W
The equipment shall be properly grounded with the external ground screw connected to building
ground as well as the antenna coaxial screen of the connector.
The common or earth side of the circuit is connected to the screen of the coaxial cable and to all
accessible parts and circuits.
The grounding screw sits between the power connection and the Ethernet connection.
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11Connectors
Power
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Data
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