Feig Electronic LRU1002 FHSS Transceiver User Manual

Feig Electronic GmbH FHSS Transceiver

User manual

INSTALLATION
final public (B)
2014-03-18 M31010-1e-ID-B.docx
ID ISC.LRU1002
UHF Long Range Reader
OBID i-scan ® UHF
Installation
ID ISC.LRU1002
FEIG ELECTRONIC GmbH
Page 2 of 29
M31010-1e-ID-B.docx
Note
Copyright 2013-14 by
FEIG ELECTRONIC GmbH
Lange Strasse 4
D-35781 Weilburg
Tel.: +49 6471 3109-0
http://www.feig.de
With the edition of this document, all previous editions become void. Indications made in this manual may be
changed without previous notice.
Copying of this document, and giving it to others and the use or communication of the contents thereof are
forbidden without express authority. Offenders are liable to the payment of damages. All rights are reserved
in the event of the grant of a patent or the registration of a utility model or design.
Composition of the information in this document has been done to the best of our knowledge. FEIG
ELECTRONIC GmbH does not guarantee the correctness and completeness of the details given in this
manual and may not be held liable for damages ensuing from incorrect or incomplete information. Since,
despite all our efforts, errors may not be completely avoided, we are always grateful for your useful tips.
The instructions given in this manual are based on advantageous boundary conditions. FEIG ELECTRONIC
GmbH does not give any guarantee promise for perfect function in cross environments and does not give
any guaranty for the functionality of the complete system which incorporates the subject of this document.
FEIG ELECTRONIC call explicit attention that devices which are subject of this document are not designed
with components and testing methods for a level of reliability suitable for use in or in connection with surgical
implants or as critical components in any life support systems whose failure to perform can reasonably be
expected to cause significant injury to a human. To avoid damage, injury, or death, the user or application
designer must take reasonably prudent steps to protect against system failures.
Use Exclusion in Transportation Market: Devices which are subject of this document may NOT be sold,
used, leased, offer for sale, or otherwise transferred, exported, and imported by anyone in the Transportation
Market. “Transportation Market” means (i) Electronic Toll and Traffic Management (ETTM), (ii) Public Sector
Vehicle Registration, Inspection and Licensing Programs, (iii) Railroad Locomotive and Wagon tracking, (iv)
airport based ground transportation management systems (GTMS) and taxi dispatch, (v) revenue based
parking, and (vi) vehicle initiated mobile payment applications, where the RFID sticker/tag is initially attached
to the vehicle but not incorporated at the point of vehicle manufacture.
FEIG ELECTRONIC GmbH assumes no responsibility for the use of any information contained in this docu-
ment and makes no representation that they free of patent infringement. FEIG ELECTRONIC GmbH does
not convey any license under its patent rights nor the rights of others.
OBID® and OBID i-scan® are registered trademarks of FEIG ELECTRONIC GmbH.
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Installation
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Contents
1. Safety Instructions / Warning - Read before start-up ! 5
2. Performance Features of Reader Family ID ISC.LRU1002 6
2.1. Performance features ........................................................................................................ 6
2.2. Available Reader types ..................................................................................................... 6
2.3. Available Accessories ....................................................................................................... 6
3. Installation 7
4. Terminals 8
4.1. Antenna Connection ......................................................................................................... 9
4.2. Power Supply ................................................................................................................... 10
4.2.1. Power Supply via connection X2 ................................................................................ 10
4.3. Interfaces ......................................................................................................................... 11
4.3.1. Ethernet Interface on connector X1 ............................................................................ 11
4.3.2. USB Interface on connector X3 .................................................................................. 11
4.3.3. RS232 Interface on connector X4 .............................................................................. 12
4.3.4. Data-Clock Interface on connector X4 ........................................................................ 13
4.4. Digital Input on connector X4 ......................................................................................... 15
4.5. Outputs on connector X4 ................................................................................................ 16
4.5.1. Digital outputs on connector X4 ................................................................................. 16
4.5.2. Relay output on connector X4 .................................................................................... 18
5. Operating and Display Elements 19
5.1. Status LEDs ..................................................................................................................... 19
5.2. Reset Push Buttons ........................................................................................................ 20
5.3. Reader Power adjustment ............................................................................................... 21
5.3.1. EU-Reader according to EN302 208 .......................................................................... 21
5.3.2. FCC-Reader according to FCC 47 Part 15 ................................................................. 22
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6. Technical Data 23
7. Radio Approvals 26
7.1. Europe (CE) ...................................................................................................................... 26
7.2. Declaration of Conformity (Directive 1999/5/EC - R&TTE) ............................................ 27
7.3. USA (FCC) and Canada (IC) ............................................................................................ 28
7.3.1. USA (FCC) and Canada (IC) warning notices ............................................................ 28
7.3.2. Label Information ....................................................................................................... 29
7.3.3. Installation with FCC / IC Approval ............................................................................. 29
7.3.4. USA (FCC) and Canada (IC) approved antennas ...................................................... 29
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1.
Safety Instructions / Warning - Read before start-up !
The device may only be used for the intended purpose designed by for the manufacturer.
The operation manual should be conveniently kept available at all times for each user.
Unauthorized changes and the use of spare parts and additional devices which have not been
sold or recommended by the manufacturer may cause fire, electric shocks or injuries. Such
unauthorized measures shall exclude any liability by the manufacturer.
The liability-prescriptions of the manufacturer in the issue valid at the time of purchase are valid
for the device. The manufacturer shall not be held legally responsible for inaccuracies, errors,
or omissions in the manual or automatically set parameters for a device or for an incorrect
application of a device.
Repairs may only be executed by the manufacturer.
Installation, operation, and maintenance procedures should only be carried out by qualified
personnel.
Use of the device and its installation must be in accordance with national legal requirements
and local electrical codes .
When working on devices the valid safety regulations must be observed.
Special advice for carriers of cardiac pacemakers:
Although this device doesn't exceed the valid limits for electromagnetic fields you should keep
a minimum distance of 25 cm between the device and your cardiac pacemaker and not stay in
an immediate proximity of the device respective the antenna for some time.
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2.
Performance Features of Reader Family ID ISC.LRU1002
2.1.
Performance features
The Reader has been developed for reading passive data carriers, so-called „Smart Labels“, using
an operating frequency in the UHF range. The output power is configurable in steps of 100 mWatts
in the range between 100 mWatts and 2 Watts. This allows read ranges of up to 8m.
2.2.
Available Reader types
The following Readers are available:
Table 1: Available Reader Types
Reader type
Description
ID ISC.LRU1002-EU
Device version for Europe
ID ISC.LRU1002-FCC
Device version for USA
2.3.
Available Accessories
The following optional accessories are currently available:
Table 2: Optional Reader Accessories
Reader type
ID ISC.LR.CSC-IP64 Connector
Sealing Cap
ID ISC.LRU3x00-MS Mounting
Rail Set
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3.
Installation
The Reader is designed for wall-mount, including outdoors. Holes for mounting on a wall are
provided in the housing.
It is not necessary to open the reader housing for mounting.
261,3 (10.29)
157,3 (6.19)
241,7 (9.52)
34 (1.34)25,5 (1.00)
68 (2.68)
Figure 1: Installation Drawing
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4.
Terminals
On the lower side of the reader housing the different cable connectors are positioned. Figure 2:
Connection Overview shows the arrangement of the connectors and Table 3: Connection terminals
shows which connection for the different cables are used. Table 4: Push button function shows the
available push buttons.
Figure 2: Connection Overview
Table 3: Connection terminals
Connector
Description
ANT 1-4
Connection of the external antennas (Impedance 50)
X1
10/100Tbase network connection with RJ-45
X2
Power supply 24VDC +-5%
X3
USB interface for host communication
X4
Digital input, digital output, relay output and RS232 interface
Table 4: Push button function
Push button
Description
T1
Internal push button for complete configuration reset
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4.1.
Antenna Connection
The external SMA antenna connectors are positioned on the lower side of the reader.
The maximum tightening torque for the SMA sockets is 0.45 Nm (4.0 lbf in).
CAUTION:
Exceeding the tightening torque will destroy the plug.
Table 5: External antenna connection
Terminal
Description
ANT 1 - 4
Connection for external antennas (input impedance 50)
Figure 3: External antenna connection ANT1-4
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4.2.
Power Supply
4.2.1.
Power Supply via connection X2
The supply voltage of 24 V DC has to be connected to Terminal X2.
Figure 4: Connector X2 Pin Assignment
Table 6: Pin assignment for power supply
Terminal
Abbreviation
Description
X2 / Pin 1
VDC
Vcc supply voltage 24 V DC ±5%
X2 / Pin 2
GND
Ground supply voltage
CAUTION:
The reader has to be supplied by a limited power supply (e.g. NEC Class 2/LPS power sup-
ply) according IEC EN 60950-1 chapter 2.5, only.
Reversing the polarity of the supply voltage may destroy the device.
Each reader has to be supplied by a separate external power supply.
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4.3.
Interfaces
4.3.1.
Ethernet Interface on connector X1
The Reader has an integrated 10 / 100 base-T network port for an RJ-45. Connection is made on
X1 and has an automatic “Crossover Detection” according to the 100BASE-T Standard.
With structured cabling STP CAT 5 cables should be used. This ensures a reliable operation at
10 Mbps or 100 Mbps.
The prerequisite for using TCP/IP protocol is that each device has a unique address on the net-
work. All Readers have a factory set IP address.
Table 7: Standard factory configuration of the Ethernet connection
Network
Address
IP-Adresse
192.168.10.10
Subnet-Mask
255.255.0.0
Port
10001
DHCP
OFF
NOTE:
The reader is equipped with a DHCP ready Ethernet Interface.
4.3.2.
USB Interface on connector X3
The USB socket on the board is terminal X3. The pinout is standardized. The data rate is reduced
to 12 Mbit (USB full speed). A standard shielded USB-cable can be used.
Figure 5: USB-Interface for host communication
NOTE:
The length of the USB-cable can have a max. of 5m (20 inch). It is not allowed to use longer
cables.
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4.3.3.
RS232 Interface on connector X4
The RS232 interface is connected on X4. The transmission parameters can be configured by
means of software protocol.
Figure 6: RS232 interface pin-outs on X4
Table 8: Pin Assignment RS232 Interface
Pin Number
at Connector X4
Pin Assignment
1
RS232 RxD
2
RS232 TxD
3
GND
Figure 7: Wiring example for connecting the RS232 interface to a 9 pin D-SUB plug
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4.3.4.
Data-Clock Interface on connector X4
The connection of the data-clock interface take place via the digital Outputs OUT1 and OUT2 at
connector X4. The wire for the clock needs to be connected to connector OUT1-C, the wire for the
data needs to be connected to connector OUT2-C.
Figure 8: Data-Clock Interface on connector X4
Table 9: Pin Assignment Data/Clock Interface
Pin Number
at Connector X4
Pin Assignment
7
Clock / Data-0
8
Vcc
9
Data / Data-1
10
Vcc
NOTE:
The data-clock interface is only available in Scan-Mode.
The data-clock interface cannot be used to configure the reader.
The digital outputs OUT1 and OUT2 are not available, if the data-clock interface is activated.
The data as well as the clock need to be supplied with an external voltage. The output is
configured for max. 24 V DC / 30 mA.
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Figure 9: Wiring Example
NOTE:
Please consider possible limitations of the Wiegand Controller regarding the used supply
voltage.
In dependency on the inner circuit of the used Wiegand Controller it is necessary to use
external serial resistors to limit the current on the data and clock wires.
The necessity of the external pull down resistor is depending on the inner circuit of the
used Wiegand Controller
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4.4.
Digital Input on connector X4
The optocoupler on Terminal X4 is galvanically isolated from the Reader electronics and must
therefore be externally supplied.
Figure 10: Optocoupler pin-outs IN1
Table 10: Pin Assignment digital Input IN1
Pin Number
at Connector X4
Pin Assignment
11
IN1 -
12
IN1 +
NOTE:
The input is configured for a maximum input voltage of 24 V DC and an input current of
max. 20 mA.
Polarity reversal or overload on the input will destroy it.
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4.5.
Outputs on connector X4
4.5.1.
Digital outputs on connector X4
Optocoupler output:
The transistor connections, collector and emitter, of the optocoupler output are galvanically isolated
from the Reader electronics and are carried to the outside without any internal ancillary circuitry on
Terminal X4. The output must therefore be powered by an external power supply.
Figure 11: Optocoupler -Outputs OUT1-2
Table 11: Pin Assignment digital Output OUT1 / OUT2
Pin Number
at Connector X4
Pinbelegung
7
OUT1-E
8
OUT1-C
9
OUT2-E
10
OUT2-C
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Figure 12: Internal and possible external wiring of the optocoupler-outputs OUT1-2
CAUTION:
The output is configured for max. 24 V DC / 30 mA.
Polarity reversal or overload on the output will destroy it.
The output is intended for switching resistive loads only.
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4.5.2.
Relay output on connector X4
There is 1 relay output available on connector X4.
Figure 13: Relay output pin-outs REL1
Table 12: Pin Assignment Relay Output REL1
CAUTION:
The relay output is configured for max. 24 V DC / 2 A constant load.
The switching current must not exceed 1A.
The relay output is intended for switching resistive loads only. If an inductive load is con-
nected, the relay contacts must be protected by means of an external protection circuit.
Figure 14: Internal and possible external wiring of the relay output
Pin Number
at Connector X4
Pin Assignment
5
REL1-NO
6
REL1-COM
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5.
Operating and Display Elements
5.1.
Status LEDs
Table 13: Configuration of the LEDs
Green
Yellow
Red
Description
ON
OFF
ON
Boot sequence (ca.10s) after power on
FLASH
OFF
OFF
Normal Reader operation (without Host communication)
FLASH
FLASH
OFF
Reader receives a valid protocol from host
FLASH
OFF
ON
RF Warning [0x84] (without host communication)
FLASH
(alternat-
ing)
OFF
FLASH
(alternat-
ing)
Firmware Activation necessary [0x17] /
Wrong Firmware [0x18]
FLASH
(synchro-
nous)
OFF
FLASH
(synchro-
nous)
RFC Hardware Error [0xF1]
OFF
FLASH
(synchro-
nous)
FLASH
(synchro-
nous)
Hardware Warning
(EEPROM Error / RFC not detected)
Firmware Update:
FLASH
FLASH
FLASH
Firmware transfer from host to reader
(Please do not switch off the reader or disconnect the interface cable)
(light in sequence)
Configurations-Reset:
FLASH
FLASH
FLASH
While T1 is pushed and hold for maximal 5s
(light in sequence)
ON
ON
ON
After T1 has been pushed and hold for 5s. Configuration
Reset has been finished.
ANT 1- 4
RUN
Host
Communication
Warning
RFU
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ANT 1 4:
Green
HF Power switched on
Blue
Tag-Detect
Red
Antenna impedance error (> 50Ohm or <50Ohm)
5.2.
Reset Push Buttons
Figure 15 shows the position of the reset push button T1.
At the right side of the connector X4 the push button T1 is positioned. It is located
housing. With the push button T1 a complete configuration reset can be
a reset you should use a paper clip and push the button T1 for at least 5 s until
(left side) are switched on continuously, see 5.1. Status LEDs
Table 13: Configuration of the LEDs
Afterwards the green LED and the red LED are flashing alternating.
Figure 15: Position of the reset-switch T1
To finish the hardware configuration reset a reboot of the reader is mandatory. This can either be
performed by plugging off the power supply or by sending the command System Reset [0x64] in
Mode [0x00] RF-Controller to the reader.
Figure 16: System Reset [0x64]
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5.3.
Reader Power adjustment
To achieve the optimum reading performance it is necessary to set the reader output power to the
highest allowed value. This depends on the used reader type (EU / FCC) and the regulation in the
country were the reader is used.
5.3.1.
EU-Reader according to EN302 208
According to the standard EN302 208 the maximum radiated power is 2 W e.r.p. (Effective Radiat-
ed Power) in countries of the European Union. The in the reader configured output power Pout de-
pends on the antenna gain in dBi and the attenuation of the antenna cable. If a circular polarized
antenna is used the antenna gain [dBic] can be reduced by 3dB. At a linear polarized antenna the
maximum linear antenna gain [dBi] must be used.
POut = Perp - Antenna Gain + Cable loss + 2,1dB**
** Correction Factor to convert the radiated power from e.r.p to e.i.r.p.
For the calculation of the reader output power POut an Excel file „Calc-RF-Power.xls“ can be used.
Available from Feig Electronic GmbH.
Example:
** linear antenna = „0“, circular antenna = „1“
Figure 17: Calculation of the output power
In Figure 17 the allowed antenna power is shown for the use of the FEIG standard antenna
ANT.U600/270 EU and a 6m long Belden H155 coaxial cable.
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5.3.2.
FCC-Reader according to FCC 47 Part 15
According to the FCC approval, Title 47, Part15 the maximum output power of the reader is limited
to 1 W (30dBm). The maximum radiated power of the antenna should not increase more then 4 W
e.i.r.p. Due to these facts two different cases have to be considered:
If a linear polarized antenna is used which gain is less then 6 dBi (factor 4), or if a circular polarized
antenna is used which gain is less then 9dBic the reader can always be configured to an output
power of 1W.
Antenna Gain < 6dBi Pout = 1 W
This would be the case if the FEIG standard antennas ANT.U170/170 -FCC (4dBic) or
ANT.U270/270 -FCC (8,7dBic) are used.
If an antenna is used which gain is more then 6dBi (9dBic) it is necessary to consider the antenna
gain and the attenuation of the antenna cable to calculate the right output power. If a circular polar-
ized antenna is used the antenna gain [G]=dBic can be reduced by 3dB. This is the case if the
FEIG standard antenna ANT.U600/270 -FCC is used. In this configuration the maximum output
power of the reader can be calculated in the following way.
POut = 36 dBm (4 W e.i.r.p) Antenna Gain (in dBi) + Cable Loss (in dB)
POut = 36 dBm (4 W e.i.r.p) Antenna Gain (in dBic) 3 dB + Cable Loss (in dB)
The antenna gain of the circular polarized standard antenna ANT.U600/270 is 10,5 dBic. This
could be compared with a gain of 7,5 dBi of a linear polarized antenna (10,5 dBic 3 dB).
Example 1:
Antenna ANT.U600/270 and 2 m Belden H155 Coaxial Cable:
Pout= 36 dBm 10,5 dBic + 3 dB + 0,6 dB
Pout= 36 dBm 7,5 dBi + 0,6 dB
Pout= 29,1 dBm
Reader Configuration = 0,8 Watt
Example 2:
Antenna ANT.U600/270 and 6m Belden H155 Coaxial Cable:
Pout= 36 dBm 10,5 dBic + 3 dB + 1,8 dB
Pout= 36 dBm 7,5 dBi + 1,8 dB
Pout= 30,3 dBm
Reader Configuration = 1,0 Watt
According to Example 2 it will only be necessary to adapt the output power of the reader when the
antenna ANT.U600/270 is used if the length of the antenna cable is less then 6m.
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6.
Technical Data
MECHANICAL DATA
Housing
Aluminum powder-coated
Dimension (W x H x D)
261,3 mm x 157,3 mm x 68 mm)
10.29 inch x 6.19 inch x 2.68 inch
Weight
1,8 kg (4.0 lb)
Protection Class
IP 53 (with protection cap IP64)
Colour
RAL 9003 (Signal White)
ELECTRICAL DATA
Power Supply
24 V DC ± 5 % (Noise Ripple: max. 150 mV)
Power Consumption
max. 18 W
Operating Frequency
EU-Reader
FCC-Reader
865 MHz to 868 MHz (EN 302208)
902 MHz to 928 MHz (FCC47 Part15)
RF-Power
100 mW to max. 2 W configurable
Antenna Connection
4 x SMA female (50 ), internal Multiplexer
Outputs
2 x Optocoupler
1 x Relay)
24 V DC / 30 mA (galvanically isolated)
24 V DC / 1 A (switching current), (2A con-
stant load)
Inputs
1 x Optocoupler
max.24 V DC / 20 mA
Interfaces
RS232, USB (full Speed), Ethernet, Data-Clock
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FUNCTIONAL PROPERTIES
Protocol Modes
FEIG ISO HOST Mode (Advanced Protocol
Frame)
Buffered Read Mode
Scan Mode
Notification Mode
Automatic Data
Buffering and
Filtering
Supported Transponder Types
EPC Class 1 Generation 2
ISO 18000-6-C (Upgrade Code required)
Optical Indicators
16 LEDs for operating status and diagnostics
Further Features
Anticollision
RSSI
RF-Channel monitoring
Antenna SWR monitoring
Temperature Monitoring*
AMBIENT CONDITIONS
Temperature Range
Operation
Storage
-25 °C to +55 °C
-25 °C to +85 °C
Humidity
5 % to 95 % non-condensing
Vibration
EN 60068-2-6
10 Hz to 150 Hz: 0,075 mm / 1 g
Shock
EN 60068-2-27
Acceleration 30 g
* Caution: Overheating of the device may result in performance losses. It is recommended to activate the RF of the
reader only if there is a transponder in the detection range of an antenna.
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APPLICABLE STANDARDS
Radio Regulation
Europe
USA
Canada
EN 302 208
FCC 47 CFR Part 15
IC RSS-Gen, RSS-210
EMC
EN 301 489
Safety
Low Voltage
Human Exposure
EN 60950
EN 50364
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7.
Radio Approvals
7.1.
Europe (CE)
When properly used this radio equipment conforms to the essential requirements of Article 3 and
the other relevant provisions of the R&TTE Directive 1999/5/EC of March 99.
Performance Classification according to ETSI EN 301 489: Class 2
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7.2.
Declaration of Conformity (Directive 1999/5/EC - R&TTE)
Figure 18: Declaration of Conformity
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7.3.
USA (FCC) and Canada (IC)
7.3.1.
USA (FCC) and Canada (IC) warning notices
Product name:
ID ISC.LRU1002-FCC
ID ISC.LRU1002-FCC
Reader name:
ID ISC.LRU1002-FCC
ID ISC.LRU1002-FCC
FCC ID:
IC:
PJMLRU1002
6633A-LRU1002
Notice for USA and
Canada
This device complies with Part 15 of the FCC Rules and with
RSS-210 of Industry Canada.
Operation is subject to the following two conditions.
(1) this device may not cause harmful interference, and
(2) this device must accept any interference received,
including interference that may cause undesired operation.
Unauthorized modifications may void the authority granted under
Federal communications Commission Rules permitting the operation
of this device.
This equipment has been tested and found to comply with the limits for
a Class A digital device, pursuant to Part 15 of the FCC Rules. These
limits are designed to provide reasonable protection against harmful
interference when the equipment is operated in a commercial
environment. This equipment generates, uses, and can radiate radio
frequency energy and, if not installed and used in accordance with the
instruction manual, may cause harmful interference to radio
communications. Operation of this equipment in a residential area is
likely to cause harmful interference in which case the user will be
required to correct the interference at his own expense.
Le présent appareil est conforme aux CNR d'Industrie Canada appli-
cables aux appareils radio exempts de licence. L'exploitation est auto-
risée aux deux conditions suivantes :
(1) l'appareil ne doit pas produire de brouillage, et
(2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique
subi, même si le brouillage est susceptible d'en compromettre le fonc-
tionnement.
Warning: Changes or modification made to this equipment not expressly approved by
FEIG ELECTRONIC GmbH may void the FCC authorization to operate this equipment.
OBID i-scan ® UHF
Installation
ID ISC.LRU1002
FEIG ELECTRONIC GmbH
Page 29 of 29
M31010-1e-ID-B.docx
7.3.2.
Label Information
The following information must be placed at the outer side of the housing in which the reader is
mounted.
Contains FCC ID PJMLRU1002
Contains IC: 6633A-LRU1002
7.3.3.
Installation with FCC / IC Approval
FCC-/IC-NOTICE: To comply with FCC Part 15 Rules in the United States / with IC Radio Stand-
ards in Canada, the system must be professionally installed to ensure compliance with the Part 15
certification / IC certification. It is the responsibility of the operator and professional installer to en-
sure that only certified systems are deployed in the United States / Canada.
7.3.4.
USA (FCC) and Canada (IC) approved antennas
This radio transmitter (identify the device by certification number, or model number if Category II)
has been approved by Industry Canada to operate with the antenna types listed below with maxi-
mum permission gain and required antenna impedance for each antenna type indicated. Antenna
types, not included in this list, having a gain greater than the maximum gain indicated for that type,
are strictly prohibited for use with this device.
The antennas used for this transmitter must be installed to provide a separation distance of at least
23 cm from all persons and must not be located or operating in conjunction with any other antenna
or transmitter, except as listed for this product's certification.
Le présent émetteur radio (identifier le dispositif par son numéro de certification ou son numéro de
modèle s’il fait partie du matériel de catégorie I) a été approuvé par Industrie Canada pour fonc-
tionner avec les types d’antenne ’énoncé ci-dessus et ayant un gain admissible maximal et
l’impédance requise pour chaque type d’antenne. Les types d’antenne non inclus dans cette liste,
ou dont le gain est supérieur au gain maximal indiqué, sont strictement interdits pour l’exploitation
de l’émetteur.
Les antennes utilisées pour cet émetteur doit être installé pour fournir une distance de séparation
d'au moins 23 cm de toutes les personnes et ne doit pas être situé ou opérant en conjonction avec
une autre antenne ou un autre émetteur, sauf dans les cas énumérés à la certification de ce pro-
duit.
Following antennas are approved by FCC according FCC Part 15 and IC Canada according
RS210
ID ISC.ANT.U170/170-FCC (4.0 dBic)
ID ISC.ANT.U270/270-FCC (9.0 dBic)
ID ISC.ANT.U600/270-FCC (10,5 dBic)

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