Multitech Oven MTCBA Xx EN2 User Manual

®
MultiModem rCell  
Intelligent Wireless Router  
User Guide  
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Contents  
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MultiModem rCell User Guide  
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Contents  
MultiModem rCell User Guide  
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Contents  
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MultiModem rCell User Guide  
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Contents  
MultiModem rCell User Guide  
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Chapter 1 – Product Overview  
This User Guide describes the MultiModem® rCell intelligent wireless routers with an Ethernet II interface. You  
can configure the MultiModem rCell Router for one of three connectivity modes: always-on, wake-up on ring, or  
dial-on demand.  
The always-on network connection automatically establishes a wireless data connection and allows for around the  
clock surveillance, monitoring or real time data acquisition of any remote Ethernet device such as a Web camera.  
If the data link is dropped due to poor reception or a complete loss of service, this feature automatically re-  
establishes the data link.  
The wake-up on ring configuration allows the router to “wake up” and initiate a connection when it detects an  
incoming ring. For security reasons, you can setup the router to wake up based on a particular caller ID number.  
This configuration is ideal for reducing the costs associated with the modem being online and available 24/7.  
When configured for dial-on demand, the router only accesses the Internet when data is present. This  
configuration is ideal for sharing Internet access among networked computers.  
Model  
Description  
MTCBA-E1-EN2  
MTCBA-E1-EN2-GP  
MTCBA-G2-EN2  
MTCBA-G2-EN2-GP  
MTCBA-C1-EN2  
MTCBA-C1-EN2-GP  
MTCBA-H5-EN2  
MTCBA-H5-EN2-GP  
MTCBA-EV2-EN2  
MTCBA-EV2-EN2-GP  
Quad-band E-GPRS Class 12 performance without GPS option  
Quad-band E-GPRS Class 12 performance with GPS option  
Quad-band GPRS Class 10 performance without GPS option  
Quad-band GPRS Class 10 performance with GPS option  
Multi-band CDMA2000 1xRTT performance without GPS option  
Multi-band CDMA2000 1xRTT performance with GPS option  
Tri-band UMTS/HSPA 7.2 performance without GPS option  
Tri-band UMTS/HSPA 7.2 performance with GPS option  
Dual-band 800/1900 MHz EV-DO Rev A performance without GPS option  
Dual-band 800/1900 MHz EV-DO Rev A performance with GPS option  
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Chapter 1 – Product Overview  
Related Documentation  
The following table describes additional documentation for each model.  
Model  
Additional Documentation  
MultiModem MTCBA-E1-EN2 (EDGE)  
You can configure the MultiModem MTCBA-E1-EN2 wireless router  
using the EDGE AT Commands. For more information refer to the  
Reference Guide for the MultiModem Wireless EDGE Modems, part  
number S000474x.  
MultiModem MTCBA-G2-EN2 (GPRS)  
You can configure the MultiModem MTCBA-G2-EN2 wireless modem  
using the GPRS AT Commands. For more information, refer to the  
Reference Guide for the MultiModem Wireless GPRS Modems, part  
number S000463x  
MultiModem MTCBA-C1-EN2 (CDMA) You can configure the MultiModem MTCBA-C1-EN2 wireless router  
using the CDMA-C1 AT Commands. For more information, refer to the  
Reference Guide for the MultiModem Wireless CDMA-C1 Modems, part  
number S000478x.  
MultiModem MTCBA-H5-EN2 (HSPA)  
You can configure the MultiModem MTCBA-H5-EN2 wireless router  
using the HSPA AT Commands. These commands are documented in the  
Reference Guide part number S000528x.  
MultiModem MTCBA-EV2-EN2  
(EV-DO)  
You can configure the MultiModem MTCBA-EV2-EN2 wireless router  
using the EV-DO AT Commands. These commands are documented in  
the Reference Guide part number S000482x.  
Safety Warnings  
Ethernet Ports Caution  
Ethernet ports are not designed to be connected to a Public Telecommunication Network or used outside the  
building.  
Handling Precautions  
To avoid damage due to the accumulation of static charge, use proper precautions when handling any cellular  
device. Although input protection circuitry has been incorporated into the devices to minimize the effect of static  
build-up, use proper precautions to avoid exposure to electronic discharge during handling and mounting the  
device.  
Caution: Maintain a separation distance of at least 20 cm (8 inches) between the transmitter’s antenna and the  
body of the user or nearby persons. The modem is not designed for or intended to be used in portable  
applications within 20 cm (8 inches) of the user’s body.  
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Chapter 1 – Product Overview  
RF Interference Issues  
Follow any special regulations regarding the use of radio equipment due to the possibility of radio frequency (RF)  
interference. Follow the safety advice given below.  
Switch OFF your wireless device when in an aircraft. Using cellular telephones in an aircraft may endanger  
aircraft operation, disrupt the cellular network, and is illegal. Failing to observe this restriction may lead to  
suspension or denial of cellular telephone services to the offender, legal action, or both.  
Switch OFF your wireless device when around gasoline or diesel-fuel pumps and before filling your vehicle  
with fuel.  
Switch OFF your wireless device in hospitals and any other place where medical equipment may be in use.  
Respect restrictions on the use of radio equipment in fuel depots, chemical plants, or where blasting  
operations are in progress.  
Operating your wireless device close to other electronic equipment may cause interference if the equipment  
is inadequately protected. Observe any warning signs and manufacturers’ recommendations.  
Interference with Pacemakers and Other Medical Devices  
Potential interference  
Radiofrequency energy (RF) from cellular devices can interact with some electronic devices. This is  
electromagnetic interference (EMI). The FDA helped develop a detailed test method to measure EMI of implanted  
cardiac pacemakers and defibrillators from cellular devices. This test method is part of the Association for the  
Advancement of Medical Instrumentation (AAMI) standard. This standard allows manufacturers to ensure that  
cardiac pacemakers and defibrillators are safe from cellular device EMI.  
The FDA continues to monitor cellular devices for interactions with other medical devices. If harmful interference  
occurs, the FDA will assess the interference and work to resolve the problem.  
Precautions for pacemaker wearers  
If EMI occurs, it could affect a pacemaker in one of three ways:  
Stop the pacemaker from delivering the stimulating pulses that regulate the heart's rhythm.  
Cause the pacemaker to deliver the pulses irregularly.  
Cause the pacemaker to ignore the heart's own rhythm and deliver pulses at a fixed rate.  
Based on current research, cellular devices do not pose a significant health problem for most pacemaker wearers.  
However, people with pacemakers may want to take simple precautions to be sure that their device doesn't cause  
a problem.  
Keep the device on the opposite the side of the body from the pacemaker to add extra distance between the  
pacemaker and the device.  
Avoid placing a turned-on device next to the pacemaker (for example, don’t carry the device in a shirt or  
jacket pocket directly over the pacemaker).  
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Chapter 1 – Product Overview  
Vehicle Safety  
Do not use your device while driving, unless equipped with a correctly installed vehicle kit allowing Hands-  
Free Operation.  
Respect national regulations on the use of cellular telephones in vehicles.  
If incorrectly installed in a vehicle, operating the wireless device could interfere with the vehicle’s electronics.  
To avoid such problems, use qualified personnel to install the device. The installer should verify that vehicle  
electronics are protected from interference.  
Using an alert device to operate a vehicle’s lights or horn is not permitted on public roads.  
Internal Lithium Battery  
A lithium battery on the board provides backup power for the time-keeping capability. The battery has an  
estimated life expectancy of ten years. Contact Multi-Tech if you suspect a failed battery. If data and time are  
incorrect after having the unit powered off, it may be due to a weak battery or incorrect setup.  
Warning: You risk explosion if you replace the battery with the wrong type.  
This product uses a lithium battery to provide backup power for timekeeping. This battery has an estimated  
life expectancy of ten years. When the battery starts to weaken, the date and time may be incorrect. If you  
suspect battery failure, contact Multi-Tech.  
Lithium cells and batteries are subject to the Provisions for International Transportation. Multi-Tech Systems,  
Inc. confirms that the lithium batteries used in the Multi-Tech product(s) referenced in this manual comply  
with Special Provision 188 of the UN Model Regulations, Special Provision A45 of the ICAO-TI/IATA-DGR (Air),  
Special Provision 310 of the IMDG Code, and Special Provision 188 of the ADR and RID (Road and Rail Europe).  
Front Panel  
The front panel contains the following LEDs:  
Power and Status LEDs—The Power LED indicates that DC power is present. The Status LED blinks when the  
unit is functioning normally  
Two Ethernet LEDs—The two Ethernet LEDs indicate transmit and receive activity and connection speed of 10  
or 100Mbps on the Ethernet link.  
Two modem LEDs—The two modem LEDs indicate carrier detection and link status.  
Three signal LEDs—The three signal LEDs display the signal strength level of the wireless connection.  
The SIM door on the right side of the router provides access to the SIM card holder on the E1, G2, and H5  
versions.  
Model MTCBA-C1/EV2-EN2  
Model MTCBA-E1/G2/H5-EN2  
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LED Indicators  
Power Indicates presence of DC power when lit.  
Status The LED is a solid light when the rCell is booting up, saving the configuration, restarting, or updating the firmware.  
When the Status LED begins to blink, the router is ready.  
LNK Link. Blinks when there is transmit and receive activity on the Ethernet link. It shows a steady light when there is a  
valid Ethernet connection.  
SPD Speed. Lit when the Ethernet is linked at 100 Mbps. If it is not lit, the Ethernet is linked at 10 Mbps.  
CD  
LS  
Carrier Detect. Lit when data connection has been established.  
Link Status Dependent on Model  
G2 version C1 version  
Permanently On: Not Permanently On:  
-E1 version* (AT^SSYNC=1)  
-H5 and EV2 versions  
Permanently On:  
Powered on and  
connected, but not  
transmitting or  
receiving.  
Permanently off. ME is in one of  
the following modes: Power Down  
mode, Airplane mode Non-Cyclic  
Sleep mode with no temporary  
wake-up event in progress.  
registered on network. Not registered on  
network.  
Flashing states:  
Flashing states:  
200 ms on/2 sec off  
200 ms on/2 sec off  
Registered on  
600 ms on/600 ms off  
network.  
Registered on  
network.  
Limited Network Service: No SIM  
card inserted or no PIN entered, or  
network search in progress or  
ongoing user authentication, or  
network login in progress.  
200 ms on/600 ms off  
200 ms on/600 ms  
off  
Registered on the  
network and  
communications in  
progress  
Registered on the  
network and  
communications in  
75 ms on/3 sec off  
100 ms on/200 ms off  
Idle mode: The mobile is  
registered to the GSM network  
(monitoring control channels and  
user interactions). No call is in  
progress.  
progress  
Software downloaded  
is either corrupted or  
non-compatible (“bad  
software”)  
100 ms on/200 ms  
off  
Software  
downloaded is either  
corrupted or non-  
compatible (“bad  
software”)  
75 ms on/ 75 ms off/75 ms on/3  
sec off  
One or more GPRS contexts  
activated.  
500 ms on/ 25 ms off  
Packet switched data transfer in  
progress.  
Permanently on  
CSD call – Connected to remote  
party.  
Signal ALL OFF - Unit is off, not registered on network, or extremely week signal (0 < = RSSI < 6).  
1 Bar ON” – Very weak signal (7 < = RSSI <14)  
1 Bar and 2 Bar ON” – Weak signal (15 < = RSSI <23)  
1 Bar, 2 Bar, and 3 Bar ON” – Good signal (24 <= RSSI > = 31)  
* To be accurate, the AT^SSYNC command must be set to 1 so that the factory default LED timings are used.  
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Chapter 1 – Product Overview  
Package Contents  
This section describes items in the MultiModem rCell package.  
Your wireless provider supplies the SIM card.  
Unbundled Package with No Accessories  
1 router  
Note: You supply mounting screws, AC or DC power supply, and an antenna.  
Bundled Package with Accessories  
1 router  
1 antenna  
1 Ethernet cable  
1 RS-232 cable  
1 power supply  
Note: You supply mounting screws.  
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Chapter 1 – Product Overview  
Specifications  
MTCBA-E1-EN2  
General  
Standards  
EDGE: E-GPRS Class 12  
GPRS: Multislot Class 12  
Frequency Bands  
Speed  
Quad-band: 850/900/1800/1900 MHz  
Packet Data*  
EDGE: E-GPRS up to 240 Kbps, coding scheme MCS1-9, mobile station Class B, LLC layer, 4  
time slots  
GPRS: Full PBCCH support, coding scheme 1-4, mobile station Class B  
Circuit Swithed Data  
Physical Description  
Dimensions  
Up to 14.4 Kbps, non-transparent  
2.93 in x 7.0 in x 1.24 in  
7.44 cm x 17.78 cm x 3.15 cm  
0.75 lbs  
Weight (Device Only)  
0.340 Kg  
Connectors  
Antenna Connector  
SIM Holder  
LAN Connector  
RS232 Connector  
Power Connector  
Environment  
50 ohm SMA (female connector)  
Standard 1.8 and 3V SIM receptacle  
RJ-45, 10/100 BaseT  
DE9  
2.5mm miniature (screw-on)  
Operating Temperature** -31° to 167° F  
-35° to 75° C  
Storage Temperature  
-40° to 185° F  
-40° to 85° C  
Humidity  
Relative humidity 20% to 90% noncondensing  
Power Requirements  
Operating Voltage  
SMS  
9V to 32V DC  
SMS  
Text and PDU  
Point-to-Point  
Cell broadcast  
Certifications and Compliance  
EMC Compliance  
FCC Part 15  
EN55022 Class B  
EN55024  
Radio Compliance  
FCC Part 22, 24  
RSS132, 133  
EN301 489-1  
EN489-3 (GPS models only)  
EN301 489-7  
EN301 511  
AS/ACIF S042.1, S042.3  
UL/cUL 60950-1 2nd Ed  
IEC60950-1 2nd Ed am.1  
PTCRB  
Safety Certifications  
Network Certifications  
AT&T  
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GPS  
Accuracy  
Open Sky TTFF  
Position 2.5m CEP, Velocity 0.1 m/sec  
Hot start 1 second  
Cold start 29 seconds  
Reacquistion <1s  
Sensitivity Tracking  
Protocol  
-165 dBm  
NMEA-0183, V3.01, GGA, GLL, GSA, GSV, RMC, VTG  
MTCBA-C1-EN2  
General  
Standards  
CDMA2000 1xRTT  
Frequency Bands  
Dual band 800/1900 MHz  
Speed  
Packet Data*  
Circuit Switched Data  
Physical Description  
Dimensions  
Up to 153.6 Kbps forward and reverse  
IS-95A, IS-95B up to 14.4 Kbps forward and reverse  
2.93 in x 7.0 in x 1.24 in  
7.44 cm x 17.78 cm x 3.15 cm  
0.75 lbs  
Weight  
0.340 Kg  
Connectors  
Antenna Connector  
LAN Connector  
RS232 Connector  
Power Connector  
Environment  
50 ohm SMA (female connector)  
RJ-45, 10/100 BaseT  
DE9  
2.5 mm miniature (screw-on)  
Operating Temperature** -40° to 185° F  
-40° to 85° C  
Storage Temperature  
-40° to 185° F  
-40° to 85° C  
Humidity  
Relative humidity 20% to 90% noncondensing  
Power Requirements  
Operating Voltage  
9V to 32V DC  
Certifications and Compliance  
EMC Compliance  
Radio Compliance  
Safety Compliance  
FCC Part 15  
FCC Part 22, 24  
UL/cUL 60950-1 2nd Ed  
IEC60950-1 2nd Ed am.1  
GPS  
Accuracy  
Open Sky TTFF  
Position 2.5m CEP, Velocity 0.1 m/sec  
Hot start 1 second  
Cold start 29 seconds  
Reacquistion <1s  
Sensitivity Tracking  
Protocol  
-165 dBm  
NMEA-0183, V3.01, GGA, GLL, GSA, GSV, RMC, VTG  
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Chapter 1 – Product Overview  
MTCBA-G2-EN2  
General  
Standards  
GPRS Class 10  
Frequency Bands  
Quad band 850/900/1800/1900 MHz  
Speed  
Packet Data*  
Circuit Switched Data  
Physical Description  
Dimensions  
Up to 85.6 Kbps, coding schemes CS1 to CS4  
Up to 14.4 Kbps transparent and non-transparent  
2.93 in x 7.0 in x 1.24 in  
7.44 cm x 17.78 cm x 3.15 cm  
0.75 lbs  
Weight  
0.340 Kg  
Connectors  
Antenna Connector  
SIM Holder  
LAN Connector  
RS232 Connector  
Power Connector  
Environment  
50 ohm SMA (female connector)  
Standard 1.8 and 3V SIM receptacle  
RJ-45, 10/100 BaseT  
DE9  
2.5 mm miniature (screw-on)  
Operating Temperature** -40° to 185° F  
-40° to 85° C  
Storage Temperature  
-40° to 185° F  
-40° to 85° C  
Humidity  
Relative humidity 20% to 90% noncondensing  
Power Requirements  
Operating Voltage  
SMS  
9V to 32V DC  
SMS  
Text and PDU  
Point-to-Point  
Cell broadcast  
Certifications and Compliance  
EMC Compliance  
FCC Part 15  
EN55022 Class B  
EN55024  
Radio Compliance  
FCC Part 22, 24  
RSS132, 133  
EN301 489-1  
EN489-3 (GPS models only)  
EN301 489-7  
EN301 511  
AS/ACIF S042.1, S042.3  
UL/cUL 60950-1 2nd Ed  
IEC60950-1 2nd Ed am.1  
PTCRB  
Safety Compliance  
Network Compliance  
AT&T  
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GPS  
Accuracy  
Open Sky TTFF  
Position 2.5m CEP, Velocity 0.1 m/sec  
Hot start 1 second  
Cold start 29 seconds  
Reacquistion <1s  
Sensitivity Tracking  
Protocol  
-165 dBm  
NMEA-0183, V3.01, GGA, GLL, GSA, GSV, RMC, VTG  
* UL Listed @ 40° C, limited by power supply. UL Certification does not apply or extend to an ambient above 40° C  
and has not been evaluated by UL for ambient greater than 40° C.  
** UL has evaluated this device for use in ordinary locations only. Installation in a vehicle or other outdoor  
locations has not been evaluated by UL. UL Certification does not apply or extend to use in vehicles or outdoor  
applications or in ambient above 40° C.  
MTCBA-H5-EN2  
General  
Standards  
HSPA+  
Frequency Bands  
Penta band 850/900/1700/1900/2100 MHz  
Speed  
Packet Data*  
HSDPA data service of up to 21.0 Mbps  
HSUPA data service of up to 5.76 Mbps  
Physical Description  
Dimensions  
2.93 in x 7.0 in x 1.24 in  
7.44 cm x 17.78 cm x 3.15 cm  
0.75 lbs  
Weight  
0.340 Kg  
Connectors  
Antenna Connector  
SIM Holder  
LAN Connector  
RS232 Connector  
Power Connector  
Environment  
50 ohm SMA (female connector)  
Standard 1.8 and 3V SIM receptacle  
RJ-45, 10/100 BaseT  
DE9  
2.5 mm miniature (screw-on)  
Operating Temperature** -22°to 167° F  
-30° to 75° C  
Storage Temperature  
-40° to 185° F  
-40° to 85° C  
Humidity  
Relative humidity 20% to 90% noncondensing  
Power Requirements  
Operating Voltage  
SMS  
9V to 32V DC  
SMS  
Text and PDU  
Point-to-Point  
Cell broadcast  
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Chapter 1 – Product Overview  
Certifications and Compliance  
EMC Compliance  
FCC Part 15  
EN55022 Class B  
EN55024  
Radio Compliance  
FCC Part 22, 24, 27  
RSS132, 133, 139  
EN301 489-1  
EN489-3 (GPS models only)  
EN301 489-7  
EN301 489-24  
EN301 511  
Safety Compliance  
UL/cUL 60950-1 2nd Ed  
IEC60950-1 2nd Ed am.1  
PTCRB  
Network Compliance  
AT&T  
GPS  
Accuracy  
Open Sky TTFF  
Position 2.5m CEP, Velocity 0.1 m/sec  
Hot start 1 second  
Cold start 29 seconds  
Reacquistion <1s  
Sensitivity Tracking  
Protocol  
-165 dBm  
NMEA-0183, V3.01, GGA, GLL, GSA, GSV, RMC, VTG  
* UL Listed @ 40° C, limited by power supply. UL Certification does not apply or extend to an ambient above 40° C  
and has not been evaluated by UL for ambient greater than 40° C.  
** UL has evaluated this device for use in ordinary locations only. Installation in a vehicle or other outdoor  
locations has not been evaluated by UL. UL Certification does not apply or extend to use in vehicles or outdoor  
applications or in ambient above 40° C.  
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Chapter 1 – Product Overview  
MTCBA-EV2-EN2  
General  
Standards  
EV-DO Rev A  
backwards compatible to EV-DO Rev 0 and CDMA2000 1xRTT  
Frequency Bands  
Speed  
Dual band 800/1900 MHz  
Packet Data*  
Peak download 3.1 Mbps  
Peak upload 1.8 Mbps  
Circuit Switched Data  
Physical Description  
Dimensions  
IS-95A, IS-95B up to 14.4 Kbps forward and reverse  
2.93 in x 7.0 in x 1.24 in  
7.44 cm x 17.78 cm x 3.15 cm  
0.75 lbs  
Weight  
0.340 Kg  
Connectors  
Antenna Connector  
LAN Connector  
RS232 Connector  
Power Connector  
Environment  
50 ohm SMA (female connector)  
RJ-45, 10/100 BaseT  
DE9  
2.5 mm miniature (screw-on)  
Operating Temperature** -40° to 167° F  
-40° to 75° C  
Storage Temperature  
-40° to 185° F  
-40° to 85° C  
Humidity  
Relative humidity 20% to 90% noncondensing  
Power Requirements  
Operating Voltage  
SMS  
9V to 32V DC  
SMS  
Text and PDU  
Point-to-Point  
Cell broadcast  
Certifications and Compliance  
EMC Compliance  
FCC Part 15  
Radio Compliance  
FCC Part 22, 24  
RSS132, 133  
Safety Compliance  
UL/cUL 60950-1 2nd Ed  
IEC60950-1 2nd Ed am.1  
GPS  
Accuracy  
Open Sky TTFF  
Position 2.5m CEP, Velocity 0.1 m/sec  
Hot start 1 second  
Cold start 29 seconds  
Reacquistion <1s  
Sensitivity Tracking  
Protocol  
-165 dBm  
NMEA-0183, V3.01, GGA, GLL, GSA, GSV, RMC, VTG  
* UL Listed @ 40° C, limited by power supply. UL Certification does not apply or extend to an ambient above 40° C  
and has not been evaluated by UL for ambient greater than 40° C.  
** UL has evaluated this device for use in ordinary locations only. Installation in a vehicle or other outdoor  
locations has not been evaluated by UL. UL Certification does not apply or extend to use in vehicles or outdoor  
applications or in ambient above 40° C.  
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Chapter 1 – Product Overview  
RF Specifications  
CDMA 800  
CDMA 1900  
GSM 850  
EGSM 900  
GSM 1800  
GSM 1900  
Frequency RX  
Frequency TX  
869 to 894 MHz 925 to 960 MHz 1805 to 1800  
MHz  
1930 to 1990  
MHz  
869 to 894  
MHz  
1930 to 1990  
MHz  
824 to 849 MHz 880 to 915 MHz 1710 to 1785  
MHz  
1850 to 1910  
MHz  
824 to 849  
MHz  
1850 to 1910  
MHz  
RF Power  
Stand  
2W at 12.5%  
duty cycle  
2W at 12.5%  
duty cycle  
1W at 12.5%  
duty cycle  
1W at 12.5%  
duty cycle  
-
-
Power Specifications  
MTCBA-E1-EN2  
Sleep  
9 volts  
0.175A, 1.6W  
20 volts  
Typical  
Maximum  
Peak TX  
0277A, 2.5W  
0.506A, 4.5W  
0.240A, 4.8W  
0.150A, 4.8W  
2.50A  
1.00A  
0.60A  
0.090A, 1.8W  
32 volts  
0.133A, 2.7W  
0.089A, 2.8W  
0.060A, 1.9W  
MTCBA-EI-EN2-GP  
Sleep  
9 volts  
0.188A, 1.7W  
20 volts  
Typical  
Maximum  
Peak TX  
2.50A  
0.297A, 2.7W  
0.138A, 2.8W  
0.092A, 2.9W  
0.513A, 4.5W  
0.240A, 4.8W  
0.152A, 4.8W  
0.095A, 1.9W  
32 volts  
1.00A  
0.061A, 1.9W  
0.625A  
MTCBA-C1-EN2  
Sleep  
9 volts  
0.186A, 1.7W  
20 volts  
Typical  
Maximum  
0.283A, 2.6W  
0.137A, 2.7W  
0.088A, 2.8W  
0.457A, 4.1W  
0.214A, 4.3W  
0.138A, 4.4W  
0.091A, 1.8W  
32 volts  
0.061A, 2.0W  
MTCBA-C1-EN2-GP  
Sleep  
9 volts  
0.186A, 1.7W  
20 volts  
Typical  
Maximum  
0.384A, 3.5W  
0.193A,3.9W  
0.122A, 3.9W  
0.541A, 4.8W  
0.256A, 5.1W  
0.162A, 5.2W  
0.091A, 1.8W  
32 volts  
0.061A, 2.0W  
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MTCBA-G2-EN2  
Sleep  
Typical  
Maximum  
Peak TX  
1.300A  
0.518A  
0.343A  
9 volts  
0.163A, 1.5W  
0.082A, 1.6W  
0.055A, 1.8W  
0.240A, 2.2W  
0.114A, 2.3W  
0.077A, 2.5W  
0.340A, 3.0W  
0.153A, 3.1W  
0.100A, 3.2W  
20 volts  
32 volts  
MTCBA-G2-EN2-GP  
Sleep  
Typical  
Maximum  
Peak TX  
2.25A  
9 volts  
0.195A, 1.8W  
0.099A, 2.0W  
0.066A, 2.1W  
0.285A, 2.6W  
0.136A, 2.7W  
0.093A, 3.0W  
0.408A, 3.7W  
0.183A, 3.7W  
0.120A, 3.8W  
20 volts  
32 volts  
0.960A  
0.650A  
MTCBA-H5-EN2  
GSM850  
Sleep  
Typical  
Maximum  
Peak TX  
Peak Rst  
(Inrush)  
9 volts  
0.170A, 1.58W 0.183A, 1.70W 0.281A, 2.60W 1.48A  
0.090A, 1.80W 0.102A, 2.04W 0.150A, 3.00W 0.696A  
0.060A, 1.92W 0.070A, 2.24W 0.100A, 3.20W 0.468A  
3.21  
3.10  
2.62  
20 volts  
32 volts  
HSDPA  
Sleep  
Typical  
Maximum  
Peak TX  
Peak Rst  
(Inrush)  
9 volts  
0.170A, 1.58W 0.285A, 2.62W 0.455A, 4.17W 0.660A  
0.090A, 1.80W 0.138A, 2.76W 0.197A, 3.94W 0.350A  
0.060A, 1.92W 0.092A, 2.94W 0.132A, 4.22W 0.254A  
3.21  
3.10  
2.62  
20 volts  
32 volts  
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MTCBA-H5-EN2-GP  
GSM850  
Sleep  
Typical  
Maximum  
Peak TX  
Peak Rst  
(Inrush)  
9 volts  
0.178A, 1.64W 0.183A, 1.69W 0.281A, 2.59W 1.35A  
0.089A, 1.78W 0.109A, 2.18W 0.155A, 3.10W 0.630A  
0.060A, 1.92W 0.072A, 2.30W 0.102A, 3.26W 0.412A  
3.10  
3.01  
2.45  
20 volts  
32 volts  
HSDPA  
Sleep  
Typical  
Maximum  
Peak TX  
Peak Rst  
(Inrush)  
9 volts  
0.178A, 1.64W 0.315A, 2.91W 0.450A, 4.14W 0.570A  
0.089A, 1.78W 0.139A, 2.78W 0.197A, 3.94W 0.288A  
0.060A, 1.92W 0.091A, 2.91W 0.130A, 4.16W 0.144A  
3.10  
3.01  
2.45  
20 volts  
32 volts  
MTCBA-EV2-EN2  
CDMA2000  
Sleep  
Typical  
Maximum  
9 volts  
0.125A, 1.15W 0.215A, 1.98W 0.600A, 5.45W  
0.060A, 1.20W 0.130A, 2.60W 0.297A, 5.94W  
0.044A, 1.41W 0.085A, 2.72W 0.195A, 6.05W  
20 volts  
32 volts  
EV-DO  
Sleep  
Typical  
Maximum  
9 volts  
0.125A, 1.15W 0.335A, 3.08W 0.672A, 6.10W  
0.060A, 1.20W 0.190A, 3.30W 0.320A, 6.40W  
0.044A, 1.41W 0.125A, 4.00W 0.204A, 6.53W  
20 volts  
32 volts  
MTCBA-EV2-EN2-GP  
CDMA2000  
Sleep  
Typical  
Maximum  
9 volts  
0.245A, 2.26W  
0.340A, 3.12W 0.690A, 6.27W  
0.166A, 3.32W 0.330A, 6.60W  
0.110A, 3.52W 0.210A, 6.72W  
20 volts  
32 volts  
0.125A, 2.50W  
0.083A, 2.66W  
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EV-DO  
Sleep  
Typical  
Maximum  
9 volts  
0.0465A, 2.27W  
0.125A, 2.50W  
0.238A, 7.62W  
0.370A, 3.40W 0.780A, 7.13W  
0.220A, 4.40W 0.374A, 7.48W  
0.145A, 4.64W 0.385A, 7.62W  
20 volts  
32 volts  
Note: Multi-Tech Systems, Inc. recommends that the customer incorporate a 10% buffer into their power source  
when determining product load.  
Cellular Information  
Antenna System for Cellular Devices  
The cellular/wireless performance depends on the implementation and antenna design. The integration of the  
antenna system into the product is a critical part of the design process; therefore, it is essential to consider it early  
so the performance is not compromised. If changes are made to the certified antenna system of the MultiModem,  
then recertification is required by specific network carriers such as Sprint. The Antenna System is defined as the  
UFL connection point from the MultiModem to the specified cable specifications and specified antenna  
specifications.  
PTCRB Requirements for the Antenna  
There cannot be any alteration to the authorized antenna system. The antenna system must maintain the same  
specifications. The antenna must be the same type, with similar in-band and out-of-band radiation patterns.  
FCC Requirements for the Antenna  
The antenna gain, including cable loss, for the radio you are incorporating into your product design must not  
exceed the requirements at 850 MHz and 1900 MHz as specified by the FCC grant for mobile operations and fixed  
mounted operations as defined in 2.1091 and 1.1307 of the FCC rules for satisfying RF exposure compliance. The  
antenna used for transmitting must be installed to provide a separation distance of at least 20cm from all persons  
and must not transmit simultaneously with any other antenna transmitters. User and installers must be provided  
with antenna installation instructions and transmitter operating conditions to satisfying RF exposure compliance.  
Antenna Specifications  
CDMA RF Specifications  
CDMA 800  
CDMA 1900  
Frequency RX  
Frequency TX  
869 to 894 MHz  
824 to 849 MHz  
1930 to 1990 MHz  
1850 to 1910 MHz  
CDMA Antenna Requirements/Specifications  
Frequency Range  
Impedance  
824 – 894 MHz / 1850 – 1990 MHz  
50 Ohms  
VSWR  
VSWR shall not exceed 2.0:1 at any point across the bands of operation  
Typical Radiated Gain  
Radiation  
3 dBi on azimuth plane  
Omni-directional  
Vertical  
Polarization  
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Antenna Loss  
TRP/TIS  
Free space not to exceed -3dB  
The total radiated power (TRP) at the antenna shall be no less than +21/20 dBm for PCS/CELL  
channels respectively, and the total isotropic sensitivity (TIS) at the antenna shall be no less  
than -104/104 dBm for PCS/CELL channels respectively.  
GSM/EGSM RF Specifications  
GSM 850  
EGSM 900  
GSM 1800  
GSM 1900  
Frequency RX  
Frequency TX  
869 to 894 MHz  
824 to 849 MHz  
925 to 960 MHz  
880 to 915 MHz  
1805 to 1880 MHz  
1710 to 1785 MHz  
1930 to 1990 MHz  
1850 to 1910 MHz  
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GSM Antenna Requirements/Specifications  
Frequency Range  
Impedance  
824 – 960 MHz / 1710 – 1990 MHz  
50 Ohms  
VSWR  
VSWR shall not exceed 2.0:1 at any point across the bands of operation  
Typical Radiated Gain  
Radiation  
3 dBi on azimuth plane  
Omni-directional  
Polarization  
Antenna Loss  
TRP/TIS  
Vertical  
Free space not to exceed -3db  
Including cable loss the total radiated power (TRP) at the antenna shall be no less  
than +22/24.5 dBm for 850/1900 MHz respectively, and the total isotropic  
sensitivity (TIS) at the antenna shall be no less than -99/101.5 dBm for 850/1900  
MHz respectively.  
GPS (Global Positioning) RF Specifications  
GPS L1  
Frequency RX  
1575.42  
5V  
LNA Bias Voltage  
LNA Current Consumption  
40mA Max  
GPS Antenna Requirements/Specifications  
1575MHz  
50 Ohms  
1.5db  
Frequency  
Impedance  
VSWR  
3.0V +/- 0.3V  
Input voltage  
GPS TIS  
The total isotropic sensitivity (TIS) at the antenna shall be no less than  
47 dBm  
Global Positioning System (GPS)  
Point the GPS toward the sky, as the GPS antenna needs to find the satellites that provide location information.  
Global Positioning System (GPS) – Underwriters Laboratories, Inc. Statement  
Underwriters Laboratories Inc. (“UL”) has not tested the performance or reliability of the Global Positioning  
System (“GPS”) hardware, operating software or other aspects of this product. UL has only tested for fire, shock or  
casualties as outlined in UL’s Standard(s) for Safety.UL60950-1 Certification does not cover the performance or  
reliability of the GPS hardware and GPS operating software. UL MAKES NO REPRESENTATIONS, WARRANTIES OR  
CERTIFICATIONS WHATSOEVER REGARDING THE PERFORMANCE OR RELIABILITY OF ANY GPS RELATED  
FUNCTIONS OF THIS PRODUCT.  
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Chapter 1 – Product Overview  
RS232 9-Pin Functions of the Female End Connector  
The following table explains the pin functions.  
Serial Cable  
External Power  
Signal  
IN/OUT  
Female Connector  
Pin 1 CD  
Pin 2 RX  
Pin 3 TX  
O
O
I
Pin 4 DTR  
Pin 5 GND  
Pin 6 DSR*  
Pin 7 RTS  
Pin 8 CTS  
Pin 9 RI  
I
--  
O
I
O
O
Note: The DSR signal on pin 6 is always asserted by the router.  
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Chapter 2 – Installing the Router  
Inserting the SIM Card into Holder, for GSM Network Access  
The router requires the power supply connection to begin operation. It also requires a SIM card (Subscriber  
Identity Module) to operate on a GSM network. To install the SIM, do the following:  
1. Using a small Phillips screwdriver, remove the two SIM door screws and remove the SIM door.  
Note: When changing a SIM, ensure that power is removed from the unit.  
2. Insert the SIM card into the card holder. The above graphic illustrates the correct SIM card orientation.  
3. Verify that the SIM card fits into the holder properly and then replace the cover.  
Making the Connection  
MTCBA-XX-EN2  
MTCBA-XX-EN2-GP (GPS antenna)  
1. Connect a suitable antenna to the SMA connector (see antenna specifications in Chapter 1)  
2. Optional: If you have the GPS version, connect a suitable GPS antenna to the GPS connector. Ensure that  
when you position the GPS antenna, the antenna can see the sky to locate the satellites for accurate values.  
3. Using an Ethernet cable, connect one end of the cable to the ETHERNET connector on the back of the router  
and the other end to your computer either directly or through a switch or hub.  
4. If you are connecting a customer’s serial legacy device to the router, connect the serial, RS-232 cable from the  
customer’s device to the RS232 connector on the back of the router.  
5. Depending on the power source, connect either the power supply module with the appropriate blade or the  
optional DC power cable. If you are using the power supply module, remove the protective shipping cover.  
Attach the appropriate interchangeable blade piece to the power supply module.  
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Chapter 2 – Installing the Router  
6. Screw on the power lead from the power supply module into the power connection on the router. Plug the  
power supply into your power source.  
Using Optional Direct DC Power  
1. Screw-on the DC power cable to the power connector on the router.  
2. Then attach the two wires at the other end of the DC power cable to a DC fuse/terminal block in which you  
are mounting the router.  
3. Connect the red wire to the "+" (positive) terminal and the black wire to the "–" (negative) terminal. Be sure  
the GND connection is correct.  
Warning: Over-voltage protection is provided on the device. To ensure complete protection, you may want to  
add additional filtering to the DC input.  
Notes:  
For an application involving a battery: you can use permanent “+” or key-switched “+” source. Connect the  
power supply to its source (for example, in a mobile situation, to the DC fuse/terminal block).  
The POWER LED. The POWER LED lights after power-up.  
The Status LED is a solid ON when the router is booting up, saving a configuration, or updating firmware.  
When the Status LED begins to blink, the router is ready.  
Using the Reset Button  
Press and hold in the Reset button until the Status Light goes out. Then release the button. This sets the username  
and password back to admin and admin, as well as sets the IP address to the default of 192.168.2.1.  
Powering Down and Resetting Hardware for MTCBA-C1 Router  
Before you turn off power to the router, and before you reset the hardware, it is recommended you complete the following  
sequence.  
The shutdown sequence informs the network that the mobile station is going offline, and saves critical data to the module‘s  
non-volatile memory (flash).  
1. Issue the following command:  
AT+CFUN=0 (issue this command)  
2. Wait for this response from the modem  
+WIND:10 ()  
You can now power off the router or reset it.  
If you do not see the +WIND:10 response, you may need to activate the unsolicited message by using the  
command AT+WUSLMSK=00020000,0  
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Chapter 2 – Installing the Router  
Optional – Attaching the Router to a Flat Surface  
Before you mount your router to a permanent surface, verify signal strength. For more information, refer to Verify  
Signal Strength in this chapter.  
The router can be panel mounted with screws spaced according to the measurement shown.  
Note: Use either #6 or #8 pan head screws for all four mount locations.  
Setting TCP/IP Address  
This section describes how to configure a TCP/IP address so the computer can communicate with the router.  
1. From the Start menu, select Control Panel. In the window that opens, double-click Network Connections. The  
Network Connections window opens.  
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Chapter 2 – Installing the Router  
2. Right-click Local Area Connection. From the menu that appears, select Properties.  
The Local Area Connection Properties window opens.  
3. Select Internet Protocol [TCP/IP].  
4. Click Properties. The Internet Protocol (TCP/IP) Properties window opens.  
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Note: If this window displays your current IP configuration, it is recommended that you record this information  
for future reference. This information is handy, for example, if you want to return the computer to its original  
settings.  
Setting a Static IP Address  
To set a static IP address:  
1. Select Use the following IP address.  
2. In the IP address field type the IP address of the computer, for example 192.168.2.x.  
Note: The x in the address stands for numbers 101 and up.  
3. In the Subnet mask field, type the number of the subnet mask, for example: 255.255.255.0  
4. In the Default Gateway field, type the default gateway, for example, 192.168.2.1  
Note: The computer settings must be in the same subnet range as the router.  
The factory default settings for the router are:  
IP Address: 192.168.2.1  
Subnet Mask: 255.255.255.0  
5. Select Use the following DNS server addresses.  
a. Enter the IP Address for the Preferred DNS Server. Example: 205.171.3.65  
b. Click OK.  
6. To close the Local Area Properties window, click OK.  
7. Close the Control Panel.  
8. Repeat these steps for each computer on your network.  
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Chapter 2 – Installing the Router  
Configuring Ethernet Interface  
You use the router's factory-installed Web Management software to configure the Ethernet interface. Access this  
software using a Web browser.  
1. Ensure that the Status LED is blinking, indicating that the router is ready.  
2. On the computer, open a Web browser  
3. In the browser’s address field, type the default Gateway Address: http://192.168.2.1  
4. After entering the Address, the Login page opens.  
a. In the User Name field, type the default user name: admin (all lower-case).  
b. In the Password field, type the default password: admin (all lower-case).  
c. Click Login. The Web Management Home page opens.  
The user name and password are case-sensitive. You must use lower-case for both.  
A password can be up to 12 characters. If Windows displays the AutoComplete message, click No so that the  
operating system does not remember the password. This helps maintain computer security.  
It is recommended that you change the default password to better protect the security of your router. Use a  
safe password.  
Quickly Configuring the Router by Using Wizard Setup  
The Wizard Setup tool helps you quickly configure the router. Benefits of using this tool include:  
Saves time by allowing you to configure the basic setup in one place.  
The information entered defaults to other windows that require this information.  
Lets you enter and save information needed to create a connection to the Internet.  
This section describes how to configure the basic parameters to start using your router. You can configure more  
than the basics by using other features of the Web Management software. For more information, see Chapter 3.  
To use Wizard Setup to setup basic router features:  
1. From the Web Management software’s menu bar, select Wizard Setup.  
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Chapter 2 – Installing the Router  
2. The Wizard Setup page opens, where a minimum router configuration is provided.  
The table that follows describes the basic parameters you need to set before you can connect to the Internet.  
IP Configuration  
IP Address  
Mask  
The default is 192.168.2.1. To change it, type a new IP address.  
The default is 255.255.255.0  
DNS  
Enter the primary DNS IP address for the system. The default is 0.0.0.0  
PPP Configuration  
PPP  
The default is disable. To connect to the Internet, you need to enable PPP.  
Depending on the model, commands may need to be issued to the integrated cellular modem  
before connecting to the wireless service. To issue commands to the integrated cellular  
modem, PPP must be disabled and telnet port 5000 used.  
Dial-on-Demand  
Idle Time Out  
The default is disable.  
Sets the time the PPP link stays active before disconnecting. Setting the value to zero causes  
the link to stay active continuously.  
Dial Number  
APN  
Enter the dial number. This number connects you to the Internet.  
For GSM, the number is *99***1#.  
For CDMA, the Dial Number is #777.  
For GSM models, enter the APN (Access Point Name). Your wireless service provider assigns the  
APN. If you don’t know the name, ask your provider for it.  
An access point is an IP network to which a MultiModem rCell Router connects. The Web  
Management software asks for the APN on the Wizard Setup and the PPP screen.  
For CDMA models, the APN does not apply.  
Init String  
You can set up to 4 router initialization strings.  
PPP Authentication  
Authentication Type  
Select the radio button of the authentication protocol used to negotiate with the remote peer:  
PAP, CHAP, or PAP-CHAP. The default is PAP-CHAP  
Username  
Password  
Enter the PPP Username. This name authenticates the remote peer.  
Enter the PPP Password. This password authenticates the remote peer.  
3. To save changes, click Submit.  
4. To cause your changes to go into effect, from the Menu bar, click Save & Restart. The router reboots.  
You don’t need to click Save & Restart after every change you make. You can submit several changes on  
various pages, and then click Save & Restart.  
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Chapter 2 – Installing the Router  
Verifying Signal Strength  
This section describes how to verify signal strength by using telnet to communicate directly with the modem.  
Before You Begin  
Ensure that the Status LED is blinking, indicating that the router is ready.  
Ensure that PPP is disabled.  
To verify signal strength:  
1. Use one of the following methods to open a command prompt:  
From the Start menu, select Run. In the Open window, enter cmd and then press ENTER.  
From the Start menu, select All Programs, Accessories, Command Prompt  
2. In the command window, type telnet 192.168.2.1 5000  
3. At the Login prompt, type the default user name: admin (all lower-case). Press ENTER  
4. At the Password prompt, type the default password: admin (all lower-case). Press ENTER  
5. In the command window, type AT+CSQ . The router responds with the received signal strength (rssi).  
Signal Strength – RSSI  
10 – 31  
0 – 9  
99  
Sufficient  
Weak or Insufficient  
Insufficient  
6. To find the best location in which to run the router, check the signal from a few different locations.  
Verifying Provider Fees  
Your provider charges you for data usage so be aware of your payment obligations. If you use the router for large  
data transfers, Multi-Tech recommends an unlimited data plan with your account. Multi-Tech is not responsible  
for any charges relating to your cellular bill.  
Activating an Account for Wireless Devices  
See Multi-Tech’s Cellular Activation Website at http://www.multitech.com/activation.go for information on activating your  
cellular modem.  
Setting Up the Account to Enable Remote Configuration  
You can remotely configure the MultiModem over the Internet if your wireless provider has provisioned some  
features for you.  
Make sure your wireless network provider has provisioned for mobile terminated data.  
The provider also needs to setup a fixed or dynamic public IP address to which the network can redirect any  
incoming connection.  
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Chapter 3 - Using the WEB Management  
Software  
This chapter describes how to configure the router by using the Web Management software.  
Software Interface Overview  
This section explains the menu structure and the navigation buttons of the router’s Web Management software.  
Menu Bar Overview  
You can select the following items from the menu bar:  
IP Setup  
Sets up a General Configuration, HTTP, DDNS, SNTP, Static Routes, and Remote  
Configuration.  
PPP  
Used to configure the PPP authentication, dial-on-demand, router authentication, and  
Wakeup on Call.  
Networks & Services  
Used to configure networks and services to make them available to other functions such as  
allowed packet filters, static routes, remote configuration, DNAT, and GRE tunnels and  
routes.  
Packet Filters  
GRE Tunnels  
Defines filter rules, DNAT configuration, and ICMP rules.  
Used to define Generic Routing Encapsulation (GRE). Defines the remote network and the  
tunnel through which traffic is routed.  
DHCP Server  
IPSec  
Used to configure the DHCP server settings.  
Allows the device to support LAN-to-LAN VPN tunneling with 3DES and AES 128-192-256  
encryption support  
Serial Port  
Tools  
Adds support for RS-232 serial port so that Ethernet and legacy serial devices can share the  
same cellular connection.  
Sets DDNS Force Update, displays DDNS Status, resets the modem, and provides interfaces  
for Firmware Upgrade, Load Configuration, and Save Configuration.  
Shows statistics and logs maintained by the router.  
Statistics & Logs  
Save & Restart  
Help Index  
Saves your settings and reboots your router.  
Opens the online Help file.  
Submitting, Saving and Restarting Overview  
Nearly every page of the software’s interface includes a Submit button. This button allows you to save changes  
you make to the software pages and their parameters.  
To ensure your changes go into effect, you must eventually use Save & Restart, located on the Menu bar. You do  
not need to click Save& Restart after each change you make. You can change several areas, and then click Save &  
Restart.  
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Chapter 3 – Using the Web Management Software  
Overview of the Web Management Software’s Interface  
Menu bar Submenu title Submenu list  
Navigation bar  
Page name  
Navigation bar  
Home  
To return to the home page, click Home.  
Wizard Setup  
To use the Wizard Setup tool for quick set up of your MultiModem, click Wizard Setup. This  
tool helps you configure basic settings needed to run the rCell Router.  
Logout  
Help  
To log out of the software, click Logout. You return to the login screen.  
To open an online help file, click Help.  
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Submenus  
The submenus display on the left side of the page. The following table lists the submenu selections under each  
main menu category.  
IP Setup  
PPP  
Networks &  
Services  
Packet Filters  
GRE  
Tunnels  
General  
Configuration  
HTTP Configuration Power On Config  
DDNS  
PPP Configuration  
Wakeup on Call  
Network  
Configuration  
Service  
Packet Filters  
DNAT  
Configuration  
Advanced  
GRE Tunnels  
GRE Routes  
Modem  
Configuration  
Configuration  
SNTP Configuration  
Static Routes  
Remote  
Commands  
Configuration  
GPS Configuration  
DHCP Server  
IPSec  
Serial Port  
Tools  
Statistics & Logs  
Subnet Settings  
Fixed Addresses  
IP Sec  
Serial Port Settings  
Client Settings  
Server Settings  
Tools  
SysInfo  
Ethernet  
PPP  
PPP Trace  
Firmware  
Upgrade  
Load  
Configuration  
Save  
Configuration  
DHCP Statistics  
GRE Statistics  
Modem Info  
Service Status  
TCP/UDP Client Live  
Log  
TCP/UDP Server Live  
Log  
IPSec Live Log  
IPSec Log Traces  
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IP Setup, General Configuration Parameters  
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General Configuration Group  
In the General Configuration group , set the general system-based parameters.  
Date  
Time  
The system date: MM/DD/YYYY  
HH:MM:SS. A real time clock is part of SNTP to display proper time.  
IP Configuration Group  
Use the IP Configuration group to configure the Ethernet interface. If desired see Appendix A for a table of commonly  
supported subnets.  
(Default is 192.168.2.1),  
(Default 255.255.255.0),  
(Default 0.0.0.0),  
IP Address  
Mask  
Default Gateway  
Primary DNS  
Secondary DNS  
(Default 0.0.0.0),  
(Default 0.0.0.0).  
Auto Dial out Configuration Group  
Check the box to enable or disable Auto Dialout. Default is Enable. The Auto Dialout settings allow you  
Auto Dialout  
to use the integrated cellular modem directly with no router functions. This is accomplished using  
redirector software on your computer. This software creates a virtual serial port allowing your  
computer to communicate with the integrated cellular modem over IP using telnet.  
Check the box to enable or disable raw mode for an Auto Dialout session. Default is Disable.  
Raw Dialout  
Check the box to enable or disable Auto Dialout Login feature. Default is Enable. The Auto Dialout port  
is the telnet port used by the redirector software on your computer to communicate to the integrated  
cellular modem.  
Auto Dialout  
Login  
Enter the serial Auto Dialout Port number. Default is 5000.  
Auto Dialout Port  
Handle EIA Signal  
Check the box to enable or disable the EIA standard signal characteristics (time and duration) used  
between different electronic devices.  
Enter the seconds that the auto dialout session stays active before going inactive.  
Inactivity  
Syslog Configuration Group  
Check the box to enable or disable Syslog. Default is Disable.  
Syslog  
If a Remote Syslog Server IP Address is specified, the syslog feature acts as a remote Syslog.  
Syslog Server IP  
Address  
Auto Discovery Group  
Check the box to enable or disable Auto Discovery to broadcast (MAC level), the MAC Address, IP  
Auto Discovery  
Address, and DHCP information to the configured server port. Default is Enable. The router sends a  
broadcast packet on the specified server port every 10 seconds or whatever interval the broadcast  
timer is set to.  
Enter the Server Port Number. Default port is 1020.  
Server Port  
Enter the amount of time in seconds for the auto-discovery packet granularity of periodic  
broadcasting. Default is 10 seconds.  
Broadcast Timer  
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Auto Reboot Timer Configuration Group  
Auto Reboot Timer: Enter the hours that lapse between each automatic reboot. The default of zero deactivates the timer.  
Range is 0 to 999.  
Telnet Configuration Group  
Enables or disables the Telnet port. The default is Enable. This is specifically for telnet port 23 for technical  
support debug. You can still access the integrated cellular modem using port 5000 when this is disabled. Ensure  
that PPP is also disabled before telnetting to the port.  
Submitting and Saving Your Changes  
Click Submit to save these settings.  
Click Save and Restart after you complete and submit all the pages where you changed parameters.  
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IP Setup, HTTP Configuration Parameters  
HTTP Configuration Group  
HTTP Port  
Enter the port number on which the HTTP server listens for requests. The default is 80.  
HTTP Time-0ut Set the HTTP session in seconds. The default is 120 seconds.  
Authentication Group  
Use the Authentication group to change the user name and password. The Username and password combination  
provide access the Web Management software, as well as telnet access to the router and integrated cellular  
modem.  
Username  
Enter the name of a user who is allowed access to the Web Management software. Default is  
admin.  
Password  
Enter the Password associated with the user who is allowed access to the Web Management  
software. Default is admin. It can be up to100 characters. Use a safe password. Your first name  
spelled backwards is not a sufficiently safe password; a password similar to xfT35$4 is better.  
Submitting and Saving Your Changes  
To save these settings, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
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IP Setup, DDNS Configuration Parameters  
DDNS (Dynamic Domain Naming System) allows you to have a static domain name with a dynamic IP address.  
When the dynamic IP address changes, it is submitted to the DDNS server. Here, the domain name is updated to point to the  
new IP address.  
You must register with a DDNS server to use this feature.  
General Group  
This section describes the parameters that you can configure in the General group.  
DDNS  
Check the Enable or Disable box. This enables/disables DDNS. Default is Disable.  
Use Check IP  
Check the Enable or Disable box. If enabled, the program queries the server to determine the  
IP address before it performs the DDNS update (the IP address is still assigned by the wireless  
provider and the DDNS is updated based on the address returned by Check IP Server). If  
disabled, the program performs the DDNS update using the IP address that it obtains from  
the PPP link. Default is Enable.  
Check IP Server  
Enter the Server name from which the currently assigned IP address is obtained. This server is  
a server the router accesses to check its current IP address.  
Check IP Port  
Server  
Enter the port number of the Check IP Server. Default is 80.  
Enter the Server name to which the IP Address change is registered; for example,  
members.dyndns.org  
Port  
Enter the Server port number. Default is 80.  
Max Retries  
Enter the maximum number of tries that are allowed if the update fails. Default is 5. Range is  
0 – 100.  
Update Interval  
Enter the interval, in days, that lapse before the IP Address can change. At the end of this  
interval, the existing IP Address is updated in the server so that it does not expire. Default is  
28 days. Range is 1 – 99 days.  
System  
Domain  
Sets the system registration type as either Dynamic or Custom. Default is Dynamic.  
Enter the registered Domain name.  
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Authentication Group  
This section describes the parameters that you can configure in the Authentication group.  
Username  
Enter the Username of the person who can access the DDNS Server. Default is NULL. You  
received your username when you registered with the DDNS service.  
Password  
Enter the Password of the user who can access the DDNS Server. Default is NULL. You  
received your password when you registered with the DDNS service.  
Submitting and Saving Your Changes  
To save the changes you made to these parameters, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
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IP Setup, SNTP Configuration Parameters  
General Configuration Group  
SNTP Client  
Enable or disable the SNTP Client to contact the configured server on the UDP port 123 and set  
the local time. The default is Disable.  
Server  
Enter the SNTP server name or IP address that the SNTP Client contacts to update the time. No  
default.  
Polling Time  
Enter the time, in minutes, after which the SNTP client requests the server to update the time.  
Default is 300 minutes.  
Time Zone Configuration Group  
Time Zone: Enter the time zone. Default is UTC (Universal Coordinated Time, Universal Time). See the following  
website for Time Zone information:  
Time Zone Offset: Enter +/- hh:mm. Default is +00:00. Offset is the amount of time varying from the standard  
time of a Time Zone.  
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Daylight Configuration Group  
Daylight Saving  
Enable or disable Daylight Saving mode. The default is Enable.  
Daylight Saving  
Offset  
Set the offset to use during Daylight Saving mode. Default is +60 minutes. Enter the time in + /  
- minutes  
.
Daylight Saving Start Time Group  
Start Ordinal  
Set the start ordinal to use during Daylight Saving mode. Options are first, second, third, fourth  
and last. Default is second. Daylight Saving time usually starts at the same time on the same day  
of the week in the same month every year. Each day of the week occurs four or five times a  
month. Therefore, select the week in which daylight saving time starts, either the first, second,  
third, fourth or the last of the month.  
Start Month  
Start Day  
Set the start month to use during Daylight Saving mode. Default is March.  
Set the start weekday to use during Daylight Saving mode. Default is Sunday.  
Set the start time to use during Daylight Saving mode. Default is 02:00 (hh:mm).  
Start Time  
Daylight Saving End Time Group  
End Ordinal  
Set the end ordinal to use during Daylight Saving mode. Select the week in which daylight saving  
time ends. Options are first, second, third, fourth and last. Default is first.  
Set the end month to use during Daylight Saving mode. Default is November.  
Set the end weekday to use during Daylight Saving mode. Default is Sunday.  
Set the end time to use during Daylight Saving mode. Default is 02:00 (hh:mm).  
End Month  
End Day  
End Time  
Submitting and Saving Your Changes  
To save your changes, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
IP Setup, Static Routes Parameters  
Networked computers use routing information to identify whether they are sending data packets directly to the  
firewall or to another network.  
After you define and add a route, you can use the table at the bottom of the group to delete or edit the route.  
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Add Static Routes Group  
IP packets destined for the network indicated in the drop down list are routed to the IP address in field pointed to  
by the arrow. You can define the networks in the drop down list under the ‘Networks & Services’ tab. The Static  
Route page does not display until the network is defined under Networks & Services.  
Static Route: Select a static route from the drop down list, and then click Add.  
Add Button: After you click Add, the new route appears in the table.  
IP Setup, Remote Configuration Parameters  
Remote Configuration Group  
To add a network or host for remote configuration:  
1. From the drop down list, select a network or host. Options are Any, LAN, and WAN Interface.  
To define more networks or hosts use the Network & Services tab.  
2. Click Add. The network or host is added and appears in the table.  
3. Repeat these steps for all that apply.  
4. To delete Any and WAN Interface in the Options columns after either is added, click Delete.  
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IP Setup, GPS Configuration Parameters  
An rCell unit with a –GP build option enables the GPS Configuration. The –GP option allows you to configure  
forwarding of NMEA (National Marine Electronics Association) sentences from the built in GPS receiver to a device  
connected to the serial port or over the network to a remote host.  
The TCP Server, TCP/UDP Client and Serial Port Dump can be enabled simultaneously.  
All enabled sentences are forwarded periodically using the interval specified in the NMEA Configuration group.  
Before forwarding, the rCell inserts an ID Prefix and ID to each enabled NMEA sentence.  
Available NMEA sentences are: GPGGA, GPGSA, GPGSV, GPGLL, GPRMC, GPVTG.  
For detailed descriptions of the supported NMEA sentences, see the Universal IP AT Commands Reference Guide.  
You can download this guide from the Multi-Tech website.  
Local Configuration Group  
The Local Configuration group allows you to configure the TCP server port and allows for a serial port dump.  
TCP Server  
Port  
Enable or disable TCP Server. The default is Disable.  
Sets the port on which the server is listening. The default is 5445. The port range is from 1 to 5  
digits, each digit between 0 and 9 inclusive. Note that numbers above 65,535 are illegal as the  
port identification fields are 16 bits long in the TCP header.  
Password  
If a password is supplied, the TCP server requests that the remote client supply a password  
before sending the NMEA sentences.  
Serial Port  
Dump  
Enable or disable the Serial Port. The default is Disable. The serial port configuration settings  
are used to configure the port. The serial port client/server must be disabled in order to use  
the serial port for GPS.  
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Remote Configuration Group  
The Remote Configuration group allows the device to connect to a remote server using the IP and port  
information for uploading GPS data.  
TCP/UDP Client  
Enable or disable the TCP/UDP Client and defines the protocol of the client. The defaults are  
Disable and TCP.  
Remote Host  
Password  
Displays the IP address and port number of the Remote Host.  
If the Remote Host requests a password, the password entered here is sent to the server in  
response.  
NMEA Configuration Group  
The NMEA Configuration allows you to configure the time interval, any additional prefix or ID information and forward NMEA  
sentences.  
Interval  
The Interval is defined in seconds. The default is 10 seconds. The range is 1 to 255 seconds.  
Add ID Prefix  
Add ID  
The ID Prefix is 0 to 10 character prefix added to the ID.  
The ID is a unique remote asset identification string. You can specify up to 20 characters for  
the ID string. The & and $ are invalid characters. The ID must follow the standard NMEA  
sentence structure. The Universal IP AT Commands Reference Guide, which you can download  
from the Multi-Tech website, describes sentence structure.  
NMEA  
Sentences  
GGA, GSA, GSV, GLL, RMC, and VTG are the NMEA sentences. You can turn each sentence On  
or Off. The default is On.  
Communication Examples  
Communication is shown from the remote side.  
TCP Server example  
read: "PASSWORD\r\n"  
write: "serverpasswd\r\n"  
read: "OK\r\n"  
read: "&&rcell$GPGGA,192913.002,4505.9845,N,09311.7705,W,1,10,1.0,249.0,M,-29.0,M,,0000*6F\r\n"  
read: "&&rcell$GPGSA,A,3,13,07,03,05,19,06,23,08,16,10,,,1.8,1.0,1.6*3F\r\n"  
read: "&&rcell$GPGSV,3,1,12,07,59,308,33,13,59,202,32,03,55,083,33,19,50,136,33*76\r\n"  
read: "&&rcell$GPGSV,3,2,12,06,43,065,26,23,35,177,26,08,24,296,27,16,19,059,21*79\r\n"  
read: "&&rcell$GPGSV,3,3,12,10,14,286,29,05,07,321,28,24,06,087,23,21,01,029,*76\r\n"  
read: "&&rcell$GPGLL,4505.9845,N,09311.7705,W,192913.002,A,A*43\r\n"  
read: "&&rcell$GPRMC,192913.002,A,4505.9845,N,09311.7705,W,000.0,117.3,220710,,,A*76\r\n"  
read: "&&rcell$GPVTG,117.3,T,,M,000.0,N,000.0,K,A*09\r\n"  
read: "&&rcell$GPGGA,192915.002,4505.9842,N,09311.7699,W,1,10,1.0,248.9,M,-29.0,M,,0000*62\r\n"  
read: "&&rcell$GPGSA,A,3,13,07,03,05,19,06,23,08,16,10,,,1.8,1.0,1.6*3F\r\n"  
read: "&&rcell$GPGSV,3,1,12,07,59,308,33,13,59,202,33,03,55,083,33,19,51,136,33*76\r\n"  
read: "&&rcell$GPGSV,3,2,12,06,43,065,25,23,35,177,26,08,24,296,27,16,19,059,21*7A\r\n"  
read: "&&rcell$GPGSV,3,3,12,10,14,286,28,05,07,321,28,24,06,087,23,21,01,029,*77\r\n"  
read: "&&rcell$GPGLL,4505.9842,N,09311.7699,W,192915.002,A,A*46\r\n"  
read: "&&rcell$GPRMC,192915.002,A,4505.9842,N,09311.7699,W,000.0,117.3,220710,,,A*73\r\n"  
read: "&&rcell$GPVTG,117.3,T,,M,000.0,N,000.0,K,A*09\r\n"  
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TCP Client Example with password  
write: "PASSWORD\r\n"  
read: "clientpasswd\r\n"  
write: "OK\r\n"  
read: "&&rcell$GPGGA,193038.002,4505.9798,N,09311.7646,W,1,10,1.0,230.2,M,-29.0,M,,0000*6B\r\n"  
read: "&&rcell$GPGSA,A,3,13,07,03,05,19,06,23,08,16,10,,,1.8,1.0,1.5*3C\r\n"  
read: "&&rcell$GPGSV,3,1,12,07,60,309,31,13,59,201,30,03,54,082,30,19,51,135,28*75\r\n"  
read: "&&rcell$GPGSV,3,2,12,06,42,064,21,23,34,177,25,08,24,297,20,16,18,060,20*70\r\n"  
read: "&&rcell$GPGSV,3,3,12,10,13,285,31,05,07,320,28,24,07,086,26,21,01,028,*7E\r\n"  
read: "&&rcell$GPGLL,4505.9798,N,09311.7646,W,193038.002,A,A*4B\r\n"  
read: "&&rcell$GPRMC,193038.002,A,4505.9798,N,09311.7646,W,000.0,117.3,220710,,,A*7E\r\n"  
read: "&&rcell$GPVTG,117.3,T,,M,000.0,N,000.0,K,A*09\r\n"  
read: "&&rcell$GPGGA,193040.002,4505.9796,N,09311.7646,W,1,10,1.0,230.1,M,-29.0,M,,0000*69\r\n"  
read: "&&rcell$GPGSA,A,3,13,07,03,05,19,06,23,08,16,10,,,1.8,1.0,1.5*3C\r\n"  
read: "&&rcell$GPGSV,3,1,12,07,60,309,32,13,59,201,29,03,54,082,31,19,51,135,28*7F\r\n"  
read: "&&rcell$GPGSV,3,2,12,06,42,064,22,23,34,177,26,08,24,297,19,16,18,060,21*7B\r\n"  
read: "&&rcell$GPGSV,3,3,12,10,13,285,32,05,07,320,28,24,07,086,25,21,01,028,*7E\r\n"  
read: "&&rcell$GPGLL,4505.9796,N,09311.7646,W,193040.002,A,A*4A\r\n"  
read: "&&rcell$GPRMC,193040.002,A,4505.9796,N,09311.7646,W,000.0,117.3,220710,,,A*7F\r\n"  
read: "&&rcell$GPVTG,117.3,T,,M,000.0,N,000.0,K,A*09\r\n"  
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PPP, PPP Configuration Parameters  
NAT Configuration Group  
NAT: Enable or disable NAT (Network Address Translation). The default is Enable.  
Note: For routing to take effect, enable then save the configuration.  
Enabling NAT  
Your LAN can use one set of IP addresses for internal traffic and a second set of addresses for external traffic. The  
router with NAT does the simple IP routing between the LAN interface and the WAN interface. NAT hides the LAN  
address behind a single IP address on the wireless side.  
Your internal addresses are shielded from the public Internet.  
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Disabling NAT  
The router functions without performing any address translation on the packets passing through it.  
Masquerading of packets originating from the LAN is disabled.  
Address translation of packets arriving from the WAN is also disabled.  
Any DNAT Configuration previously setup in the DNAT Configuration screen is disabled. This prevents the user  
from adding any DNAT rules, which if allowed defeat the purpose of enabling Routing.  
PPP General Group  
PPP: Enable or disable PPP. The default is Disable. When enabled, the unit functions as a router. PPP must be  
disabled to access the integrated cellular modem directly using telnet port 5000. If PPP is enabled, you cannot  
access the integrated cellular modem.  
Dial-on-Demand: Enable or disable Dial-on-Demand. The default is Disable. If you disable it, the router always  
stays connected unless the Idle Time Out expires. When Dial-on-Demand is enabled, use the ‘Wakeup on Call’  
settings under the PPP menu to configure the settings for re-establishment of the connection.  
Idle Time Out: Set the amount of idle time that passes before the router timeouts. The default is 180 seconds. If  
the time expires, the PPP connection to the Internet disconnects. Any IP packets from the LAN side or IP traffic  
from the wireless side resets this timer and prevents the connection from dropping.  
Connect Time Out: Set the number of seconds to wait for a connection while in receive mode before timing out.  
Dialing Max Retries: Enter the number of dialing retries allowed. The default is zero, which means an infinite  
number is allowed. Range 0 to 100.  
Authentication Group  
Authentication Type: Set the authentication protocol type that negotiates with the remote peer: pap/chap/pap-  
chap. Default is pap-chap.  
Username: Enter the Username with which the remote peer authenticates. You can leave this field blank, if  
desired. Username is limited to 60 characters.  
Password: Enter the Password with which the remote peer authenticates. You can leave this field blank, if  
desired. Password is limited to 60 characters.  
ICMP Keep Alive Check  
Keep Alive Check: Enable or disable Keep Alive Check. The default is Disable. This is used to periodically check that  
the Internet connection is up. If it is not, the router tries to reconnect.  
Keep Alive Type: Select ICMP or TCP (the protocol type for Keep Alive).  
Host Name: Enter the Host Name or IP Address for Keep Alive Check. No default.  
TCP Port: Enter the TCP Port number to connect with the TCP server.  
Interval: Set the number of seconds for Keep Alive Check. Default is 60 seconds.  
ICMP Count: Set the number of ICMP Keep Alive Checks to be sent to the specified host. Default is 10.  
Modem Configuration Group  
To know the proper information to enter into this group, refer to the Customer Activation Notices included with  
the product.  
Dial Number: Set the dial number to be dialed. Default is NULL.  
For GSM models, the Dial Number is *99***1#  
For CDMA models, the Dial Number is #777  
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Dial Prefix: Set the modem dial prefix. The default is ATDT.  
Connect String: Set the modem Connect String. The default is CONNECT.  
APN: Enter the APN (Access Point Name). The APN is assigned by your wireless service provider.  
Init String 1-4: Configure the modem init strings. You can set up to 4 modem initialization strings.  
Baud Rate: The Baud Rate option is only displayed on certain models and is set at 230.4K, by default. The default  
setting is set for maximum performance. Setting the baud rate higher, particularly on the G2 models, is not  
recommended as it may adversely affect the performance.  
Submitting and Saving Your Changes  
To save these settings, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
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PPP, Wakeup-on-Call Parameters  
The Wakeup-on-Call feature allows the router to wake up and initiate a connection when there is an incoming call  
or LAN activity. . The Wakeup-on-Call feature reduces the cost incurred when a router is online and available 24/7.  
If you desire some security with this feature, you can set up the router to wake up based on Caller ID or SMS  
instead of allowing all incoming calls to wake up the router. Dial-on-Demand in the IP Setup menu must be  
enabled for wakeup-on-call features to go into effect.  
Note: When provisioning this feature, you must allow incoming calls, SMS capability, and caller-id.  
Wakeup-on-Call Configuration Group  
Wakeup on Call: Enable or disable the Wakeup-on-Call feature. The default is Disable. Wakeup on Call occurs  
when a ring or caller ID is detected. This triggers the router to reconnect after the ‘Time Delay’ expires.  
Time Delay: Enter the amount of time that you want to pass between the reception of a call and the initiation of  
the Wakeup-on-Call connection. A time delay is needed to make sure that the incoming call has ended before the  
connection is initiated. The default is 10 seconds.  
Dial-on-Demand from LAN: The default is disable. When enabled, the router reconnects when it sees IP traffic on  
the LAN is needed to route. If this feature is disabled, Dial-on-Demand initiates a PPP connection to the Internet  
only from the WAN, not from the LAN.  
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Init Strings: Configure the router initialization strings. These init strings need to be specific to the integrated  
cellular modem. Some initialization may be required for the integrated cellular modem to accept SMS for  
‘Wakeup on Call’. Init-num can range from 1-5. The default is NULL. Refer to the following table for examples of  
Init Strings depending on model.  
Model  
Init 1  
Init 2  
Init 3  
Init 4  
Ack  
Comment  
C1-EN2-GP  
E1-EN2-GP  
G2-EN2-GP  
H5-EN2*  
AT+CNMI=2,2,0,0,1  
AT+CNMI=2,2,0,0,1  
AT+CNMI=2,2,0,0,1  
AT+CLIP=1  
AT+CLIP=1  
AT+CLIP=1  
AT+CLIP=1  
AT+CNMA  
AT+CNMA  
AT+CNMA  
Ring with CLI, SMS with ACK  
Ring with CLI, SMS with ACK  
Ring with CLI, SMS with ACK  
Ring with CLI  
AT+CMGF=1  
AT+CMGF=1  
AT+CSMS=1  
AT+CSMS=1  
H5-EN2- GP*  
EV2-EN2*  
AT+CLIP=1  
Ring with CLI  
AT+CLIP=1  
Ring with CLI  
EV2-EN2- GP*  
AT+CLIP=1  
Ring with CLI  
*Does NOT support Wakeup On Call using SMS.  
Submit: Click Submit to save these settings.  
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Caller ID Configuration Group  
Add “Wakeup on Call” Caller ID: To add Caller ID to the Wakeup-on-Call function, enter the Caller ID that can  
wake up the router. Enter ‘RING’ (all Caps) to wake up on any call. Enter a CID phone number or an SMS message.  
Ensure the SMS message string does not contain any spaces between words.  
After entering the Caller ID, click the Add button. The Caller ID displays at the bottom of the page. You can enter  
any number of IDs.  
A Caller ID can be edited or deleted using Options, which are available once a Caller ID is displayed.  
Caller Acknowledgement Configuration  
Acknowledgement String to Caller: The configured string of (0 to 40 characters) that is sent to the integrated  
cellular modem upon receiving a valid caller ID from the WAN. The default is NULL string.  
Note: If the string is not configured, acknowledgement to the caller is not sent upon successful caller ID reception.  
Submitting and Saving Your Changes  
To save these settings, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
Wakeup-On-Call Examples  
Example 1 – Set Up the Ethernet Router to Activate on Incoming SMS Message  
1. On the PPP > PPP Configuration page, configure the following parameters:  
PPP General  
Make sure that PPP is Enabled (the default).  
Make sure Dial-on-Demand is Enabled (the default).  
Set the Idle Time Out to the number of seconds you desire.  
Authentication  
Your wireless service provider may require you to have a separate PPP Username and Password. If so,  
enter them here.  
Note: If a username and password are required, your wireless provider likely gave these items to you  
when you activated your account.  
Modem Configuration  
Make sure your Dial Number is entered correctly.  
For GSM models, the Dial Number is *99***1#  
For CDMA models, the Dial Number is #777  
Enter your APN. Your wireless service provider assigns the APN.  
Example: AT+CGDCONT=1,"IP","Internet" The Example: AT+CGDCONT=1,”IP”,”Internet” needs to be  
removed. Just the APN name needs to be entered in the APN field.  
2. To save the changes made on this page, click Submit.  
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3. On the PPP > Wakeup-on-Call screen, configure the following parameters:  
Wakeup-on-Call Configuration  
Select Enable for Wakeup-on-Call.  
Set the Time Delay. You can use the 10 second default.  
Enter the Init Strings from the model dependent table described in the Wakeup-on-Call Configuration.  
4. To save the changes made on this page, click Submit.  
Caller ID Configuration  
Enter an SMS to add to the Caller ID list.  
Note: Add the SMS message string into the Caller ID list. The SMS message string must not contain any  
spaces between words. When the configured string matches the SMS message string, it activates the  
Wakeup-on-Call feature.  
To save each message as it is entered into the Caller ID list click Add.  
Caller Acknowledgement Configuration  
Enter a configured string (0 to 40 characters) that is sent to the integrated cellular modem upon receiving  
a valid Caller ID from the WAN.  
Set the Wakeup Acknowledgement string configuration with the command at+cnma  
To save the Acknowledgement Configuration, click the Submit.  
5. To ensure your changes go into effect, click Save and Restart. The device saves all the settings and reboots  
the computer.  
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Example 2 – Determine if the router Is Supporting Incoming Calls and Caller ID  
1. On the PPP > PPP Configuration page, make sure that PPP is Disabled.  
2. On the PPP > Wakeup-on-Call screen, make sure that Wakeup-on-Call is Disabled.  
3. To open a command prompt, from the Start button and select Run.  
4. Type CMD to open the command window. Click OK.  
5. When the command window opens, telnet to the router.  
Note: 5000 is the router port number.  
d. Enter your username and password to login.  
e. Enter an AT command to make sure you receive a response; i.e., OK.  
f. To determine the dial number of your router, enter the command AT+CNUM.  
For the Wakeup-on-Call function to work the RING or CALLER ID information must appear.  
6. To determine if the RING message shows, from another phone, call your router using the dial number of your  
router.  
7. To enable Caller ID, enter the AT+CLIP=1 command. Make the call again to verify Caller ID information.  
Some wireless providers do not provide caller ID information if you have only a data plan.  
Example 3 – Set Up the Ethernet Router to Activate on ALL Incoming Calls  
1. On the PPP >PPP Configuration page, set up the following parameters:  
PPP General  
Make sure that PPP is Enabled.  
Make sure Dial-on-Demand is Enabled.  
Set the Idle Time Out to the number of seconds you desire.  
Authentication  
Your wireless service provider may require you to have a separate PPP User name and Password. If so,  
enter them here.  
Note: If a username and password are required, your wireless provider likely gave you these items  
when you activated your account.  
Modem Configuration  
Make sure your Dial Number is entered correctly:  
For GSM models, the Dial Number is *99***1#  
For CDMA models, the Dial Number is #777  
Submit  
Click the Submit button to save the changes made on this screen.  
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2. On the PPP > Wakeup-on-Call screen, set up the following parameters:  
Wakeup-on-Call Configuration  
Select Enable for Wakeup-on-Call.  
Set the Time Delay to 3 seconds. You can use the 10 second default.  
Ensure all Init Strings are empty.  
Submit Button  
Click the Submit button to save these settings.  
Caller ID Configuration  
Enter the string RING to the Caller ID list.  
Click the Add Button to save the string to the Caller ID list.  
3. To ensure your changes go into effect, click Save and Restart. The device saves all the settings and reboots  
the computer.  
Example 4 – Set Up the Ethernet Router to Activate on Matching Caller IDs Only:  
1. On the PPP > PPP Configuration screen, set up the following parameters:  
PPP General  
Make sure that PPP is Enabled.  
Make sure Dial-on-Demand is Enabled.  
Set the Idle Time Out to the number of seconds you desire.  
Authentication  
Your wireless service provider may require you to have a separate PPP username and password. If so,  
enter them here.  
Note: If a username and password are required, your wireless provider likely gave you these items when  
you activated your account.  
Modem Configuration  
Make sure your Dial Number is entered correctly:  
For GSM models, the Dial Number is *99***1#  
For CDMA models, the Dial Number is #777  
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2. To save the changes, click Submit.  
3. On the PPP > Wakeup-on-Call screen, set up the following parameters:  
Wakeup-on-Call Configuration  
Select Enable for Wakeup-on-Call.  
Set the Time Delay. You can use the 10 second default.  
Enter the Init Strings:  
To set Wakeup Init String 1 type AT+CLIP=1.  
To save settings, click Submit.  
Caller ID Configuration  
To add a caller’s ID, to the Caller ID list, type that id.  
Click Add.  
To save each Caller ID as it is entered to the Caller ID list, click Add.  
To ensure your changes go into effect, click Save and Restart. The device saves all the settings and  
reboots the computer.  
PPP, Power-On Configuration Parameters  
The Power-On Configuration feature allows you to set an initialization string that is sent to the router upon boot up.  
Power-On Init String: You can enter a string of 0 to 40 characters that is sent to the router upon boot up. All  
commands initializes before you proceed with regular PPP related activity.  
Note: When no initialization string is configured, regular functions of the router is retained.  
To save this setting click SUBMIT.  
To ensure your changes go into effect, click Save and Restart.  
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PPP, Modem Commands Parameters  
You can configure modem commands to allow an external application to query modem information.  
The application can use the URL HTTP://xxx.xxx.xxx.xxx/modeminfor.html to determine the IP address that is currently  
assigned to the integrated cellular modem after the PPP connection is established.  
You can also display the results of up to ten AT commands.  
Modem AT Commands Configuration Group  
These commands are sent when a PPP connection to the network is initiated.  
Useful HSDPA AT commands include:  
Command  
Description  
AT+CGSN  
Product Serial Number  
AT+CGMR  
AT+CNUM  
AT+COPS?  
AT+CREG?  
AT+CSQ  
Software Version  
Wireless Subscriber Number  
Network Information (Operator)  
Network Registration  
Signal Quality  
Retrieving Modem Information without using a browser:  
To obtain the integrated cellular modem information without using a browser:  
1. Make a TCP connection to port 80 (same as the Web Admin port) and send data as:  
GET /atinfor.html HTTP/1.1  
2. Press Enter twice.  
Refer to the AT Command Reference Guides for other commands.  
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Networks & Services, Network Configuration Parameters  
Network Configuration Group  
Use this group to add networks or hosts. After you define and add a network, you can delete or edit it by using the  
table.  
Configuring the Network  
Before you configure the network, note the following:  
You cannot edit a Network/Host Name.  
You cannot delete a Network/Host another configuration is using it.  
Network/Host changes are reflected in all the configurations in the Web Management software where they  
are used.  
Network/Hosts that you add here are displayed in the following sections: Static Routes, DNAT, and Packet  
Filters.  
To configure:  
1. In the Name field, type the name of the Network/Host. Make sure the same address-mask pair does not  
already appear in the list. The Name is limited to 15 characters maximum.  
2. In the IP Address field, type the IP Address of the Network/Host. Make sure the same address-mask pair does  
not already appear in the list.  
3. In the Subnet Mask field, type the Network Mask of the Network/Host. For Host addresses, the mask is  
entered as 32.  
Note: See Appendix A -- Table of Commonly Supported Subnets.  
4. To add the network, click Add. The defined network appears in the table.  
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Networks & Services, Service Configuration Parameters  
Service Configuration Group  
These parameters let you specify the standard set of well known services available on the system. These services enable the  
configuration of the user-defined services. You can delete or edit services after defining and adding them. Use the table at  
the bottom of the screen.  
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Configuring New Services  
Before you configure the network, note the following:  
A Service Name cannot be edited.  
A Service cannot be deleted if it is used in another configuration.  
Service changes are reflected in all the configurations in the Web Management software where they are used.  
Services added here are displayed in the following sections: DNAT, Packet Filters.  
To configure:  
1. For the new service, configure the following parameters:  
Name: Enter the name of the Service which is limited to 16 characters. It has to be unique.  
Protocol: Enter the type of protocol (TCP, UDP).  
Source Port: Enter the Destination Port for this service. The source and destination ports can be entered  
either as a single port or a range using a colon as the separator.  
Destination Port: Enter the name of the Destination Port for the service.  
2. Click Add. The new service is added and appears on the page.  
Packet Filters, Packet Filters Parameters  
You can Delete or Edit a packet filter rule after it has been defined and added by using the table at the bottom of the screen.  
Packet Filter Group  
From (Host/Networks): Enter the network/host from which the packet must originate for the filter rule to match.  
The Any option, which matches all IP addresses regardless of whether they are officially assigned addresses or  
private addresses, may also be entered. The network/host must be pre-defined in the Networks section.  
Service: Enter the service that is to be matched with the filter rule. These services must be pre-defined in the  
Services section. These services precisely define the traffic to be filtered.  
To (Host/Networks): Enter the network/host to which the packet must send for the filter rule to match. The Any  
option, which matches all IP addresses regardless of whether they are officially assigned addresses or private  
addresses, may also be entered. The network/host must be pre-defined in the Networks section.  
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Action: Enter the action that the packet filter executes if the rule matches any traffic traversing the firewall. Types  
of actions defined are:  
Accept: Allows/accepts all packets that match this rule.  
Reject: Blocks all packets that match this rule. The host sending the packet is informed that the packet has  
been rejected.  
Drop: Blocks all packets that match this rule, but the host is not informed; that is, this is a silent drop.  
Log: Packets matching the rule; that is, the corresponding source address, destination address, and service are  
logged.  
Add Button: Click the Add button. The defined packet filter rule is added and appears at the bottom of the screen.  
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Packet Filters, DNAT Configuration Parameters  
DNAT Configuration Group  
Destination Network Address Translation (DNAT) allows you to place servers within the protected network and  
make them available for a certain service to the outside world. The DNAT process running on the router translates  
the destination address of incoming packets to the address of the real network server on the LAN. The packets are  
then forwarded.  
You can Delete or Edit a DNAT rule after it has been defined and added by using the table at the bottom of the  
screen.  
Note: When adding rules, at least one host must be defined in the Network Configuration section.  
Allow Access: Select a network or host to which IP packets are allowed and re-routed. The network/host must be  
pre-defined in the Network Configuration section.  
External Service: Select the External Service that you want allowed. The service must be defined in the Service  
Configuration section.  
LAN IP: Select the LAN IP to which the packets are to be diverted. Only one host can be defined as the  
destination.  
Internal Service: Select the Internal Service to be the destination.  
Internal Source: Select the source address for packets that are going to be sent. If you do not want to change the  
address, select NOCHANGE.  
Save Button: Click Save. The defined DNAT configuration is added and appears at the bottom of the page. Entries  
can be deleted or edited by clicking the Edit or the Delete buttons.  
Example: Setting Up DNAT and Port Forwarding to an Internal Device  
Note: The internal device can be camera, meter, security device, and so on.  
Situation: Assume the device is on a LAN with an IP address of 192.168.2.100 and the port to access the device is  
port 7700.  
1. In the Network & Services > Network Configuration group, define the following parameters:  
Name – Enter a name for the LAN device.  
IP Address and Subnet Address – Enter the IP address and subnet address of the device.  
Example:  
Name = MeterIP  
IP Address = 192.168.2.100  
Subnet Address = 255.255.255.255. The subnet mask in the network configuration is not defined using x.x.x.x  
notation. It uses ‘bit’ notation. So 255.255.255.255 = 32.  
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2. To save this configuration, click Add.  
3. In the Network & Services > Service Configuration group, define a service name. For this example, the service  
is a meter.  
Name – Enter a name for the service (use a name that identifies the service for you). Example: MeterPort  
Protocol – Select a protocol. Example: tcp or udp  
S-Port / Client – Enter the source port for this service. Example: 1:65535  
D-Port / Server – Enter the destination port for this service. Example: 7700  
Add – Click the Add button to save this configuration.  
4. In the Packet Filters > DNAT Configuration group, define the DNAT rule.  
Allow Access – Select the original target network/host of the IP packets that you now want rerouted. The  
original target network/host is the one previously defined in the Network Configuration section. Example: Any  
External Service – Select the External Service that you want allowed. The service must be defined in the  
Service Configuration section.  
LAN IP – Select the LAN IP to which the packets are to be diverted. Only one host can be defined as the  
destination.  
Internal Service – Select the Internal Service to be the destination.  
Pre DNAT Service – Select the service for the Pre-DNAT destination. This service was just defined in the  
Service Configuration section. Example: MeterPort  
Post DNAT IP – Select the destination to which the IP packets are to be diverted. Only one host can be defined  
as the Post DNAT destination. Example: MeterIP  
Post DNAT Service – Select the service for the Post DNAT configuration. Example: MeterPort  
Internal Source – Select the source address for packets that are going to be sent. If you do not want to change  
the address, select NOCHANGE. Example: NOCHANGE  
5. To save this configuration, click Save.  
Note: You must click Save and Restart once you have completed and submitted all the screens on which you  
have made changes. The device saves all the settings and reboot the computer.  
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Packet Filters, Advanced Parameters  
Connection Tracking Group  
H323: Enable or disable the forwarding of H323 packets across the firewall.  
PPTP: Enable or disable PPTP Packet Pass-through (PPTP NAT support).  
Note: H323 and PPTP are disabled by default.  
ICMP Configuration Group  
Use the Internet Control Message Protocol (ICMP) to test the network connections and the firewall. You can also  
use ICMP for diagnostic purposes. ICMP on Firewall and ICMP Forwarding always apply to all IP addresses; i.e.,  
Any. When these are enabled, all IP hosts can Ping the firewall (ICMP on Firewall) or the network behind it (ICMP  
Forwarding).  
ICMP on LAN: Enable or disable the transfer of ICMP packets on the LAN interface.  
ICMP on WAN: Enable or disable the transfer of ICMP packets on the WAN interface.  
ICMP Forward: Enable or disable the forwarding of ICMP packets through the firewall into the local network.  
Note: ICMP on the LAN, WAN, and Forward are enabled by default.  
Submitting and Saving Your Changes  
To save these settings, click Submit.  
To ensure your changes go into effect, click Save and Restart.  
GRE Tunnels  
Generic Routing Encapsulation (GRE) includes GRE tunneling and GRE routing  
First, you create the GRE Tunnels by using the GRE Tunnel Configuration group.  
Then, you configure the routes for the remote networks that are routed through a tunnel, by using the GRE  
Routes Configuration group. All the traffic destined to remote networks associated to a tunnel are routed through  
that tunnel.  
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GRE Tunnels > GRE Tunnels  
Tunneling allows the use of a public network to convey data on behalf of two remote private networks. It is also a way to  
transform data frames to allow them to pass networks with incompatible address spaces or even incompatible protocols. If  
you want to read more about how this works, see the online Help.  
GRE Tunnel Configuration Group  
Tunnel Name: Enter a name for the new tunnel.  
Local IP: Select the local interface on which the tunnel is created. Eventually, the packets destined for this tunnel  
are routed through it.  
Note: When adding a tunnel, use only one of the following: Remote IP or FQDN.  
Remote IP: Select the Remote IP address that marks the other end point of the tunnel. This is where the routed  
packets are received).  
OR  
FQDN: Enter the FQDN (Fully Qualified Domain Name) for the Remote IP, which can be either the IP Address or an  
FQDN.  
Add Button: Click the Add button. The defined GRE tunnel configuration is added and appears at the bottom of  
the screen.  
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GRE Tunnels > GRE Routes Configuration  
Remote Network: Select the remote network for which the traffic destined to it must be routed through the given  
tunnel.  
Tunnel Name: Select the name of the tunnel through which the traffic is routed.  
Note: To add a tunneled route, the remote network and the tunnel must have been defined in Network  
Configuration. The tunnel configuration must be completed before setting the GRE route configuration.  
Add Button: Click Add. The defined GRE route configuration is added and appears at the bottom of the page.  
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DHCP Server, Subnet Settings  
General Configuration  
DHCP (Dynamic Host Configuration Protocol) is a protocol that allows individual devices on an IP network to get  
their own network configuration information (IP address, subnet mask, broadcast address, etc.) from a DHCP  
server. The overall purpose of DHCP is to make it easier to administer a large network.  
DHCP:  
Enable or disable the DHCP server.  
Subnet: Enter the subnet address. If you want to change the DHCP subnet address, you first have to delete all the  
subnet settings below.  
Mask: Enter the subnet mask.  
Gateway: Enter the gateway address.  
DNS: Enter the DNS address.  
Lease Time: Select the DHCP Lease Time from the selection box. Lease time is set in days, hours, and minutes. A  
Lease Time of 00-00-00 is an Infinite Lease Time.  
To save your changes, click SUBMIT.  
To ensure your changes go into effect, click Save and Restart.  
Subnet Settings  
From-To Range: Enter the range of IP addresses to be assigned by DHCP.  
Add: Click the Add button. The address range is added and appears in the table at the bottom of the screen. Once  
the range displays, you can delete if necessary.  
Note:  
See Appendix A Commonly Supported Subnets.  
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DHCP Server > Fixed Addresses  
DHCP Fixed Configuration  
The DHCP server can be made to assign a fixed IP address for a particular user by identifying the MAC address.  
This binding can be made permanent by configuring it here. The same IP address is not be used for any DHCP  
client with a different MAC address, even if there is no active DHCP connection with that IP address.  
MAC Address: Enter the MAC address to which the specified IP address binds.  
IP Address: Enter the fixed IP address to be assigned.  
Add: Click the Add button. The addresses are added and appear in the table at the bottom of the page from  
where they can be deleted or changed.  
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IPSec  
The IPSec (IP Security) protocol suite, based on modern cryptographic technologies, provides security services like  
encryption and authentication at the IP network layer. It secures the whole network traffic providing guaranteed  
security for any application using the network.  
You can use IPSec to create private secured tunnels between two hosts, two security gateways, or a host and a  
security gateway. Up to three tunnels can be active at any given time. You can save more than three active  
tunnels, but they are not active.  
IPSec provides encryption and authentication services at the IP level of the protocol stack. IPSec can protect any  
traffic carried over IP.  
Authentication and Encryption Overview  
IPSec provides the following services:  
Authentication only  
Encryption only  
To transmit and receive data securely over an unprotected network:  
1. Select the type of IPSec service—authentication or encryption—required for the connection.  
2. Establish a secure connection by a key exchange process, using one of the following:  
Manual Keying where the authentication and encryption keys are provided manually on both sides of the  
connection.  
Auto Keying using IKEv2 Protocol where the authentication and encryption keys are generated on either  
side of the connection and exchanged by different methods.  
3. Transfer data using the connection.  
IPSec > IPSec  
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IPSec  
VPN Status: Check the VPN Status checkbox to enable IPSec. Click Save.  
Add a New Connection  
Add IKE Connection: Click Add IKE Connection. A page opens where you can configure an IKE connection.  
Add Manual Connection: Click Add Manual Connection. A page opens where you can configure a manual  
connection.  
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Add IKE Connection  
Add an IKE Connection  
Connection Name: Type a name for the connection.  
Compression: Check the compression checkbox to enable IPCOMP, the compression algorithm.  
Perfect Forward Secrecy (PFS): Check the PFS checkbox to enable PFS, a concept in which the newly generated  
keys are unrelated to the older keys). This is enabled by default.  
Authentication Method: Authentication can be done using Pre-Shared Secrets.  
Pre-Shared Key: The Pre-Shared Key must be agreed upon and shared by the VPN endpoints. Configured it at both  
endpoints of the tunnel.  
Select Encryption: Select the encryption method. 3DES is recommended. Options include 3DES, AES-128, AES-192,  
AES-256  
IKE Life Time: The duration for which the ISAKMP SA lasts, from successful negotiation to expiration. The default  
value is one hour and the maximum is 8 hours.  
Key Life: The duration for which the IPSec SA lasts, from successful negotiation to expiration. The default value is  
one hour and the maximum is 24 hours.  
Number of Retries: Specify the number of retries for the IPSec tunnel. Enter zero for unlimited retries.  
Local WAN IP: This is the interface initiating the IPSec tunnel.  
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Local LAN: Internal subnet of the local security gateway for which the security services are provided. If the router  
acts as a host, configured as None.  
Remote Gateway IP: Interface where the IPSec tunnel ends. In the case of a Road Warrior with a Dynamic IP  
address, configure to ANY.  
FQDN: FQDN is a Fully Qualified Domain Name that resolves to the Local Wan IP of the router or in the case of  
GRE/IPSEC, it is used to identify the Wan IP of the remote location. This is provided by your ISP or created by you  
if you are using a Dynamic DNS service. When FQDN is selected, leave the Remote Gateway IP blank.  
Remote LAN: Internal subnet of the remote security gateway for which the security services are provided. If the  
remote end is the host, set this to None.  
UID (Unique Identifier String): Check the UID box to enable the Local ID and Remote ID. Local ID and Remote ID  
are active only when UID is enabled.  
Local ID  
Enter a string identifier for the local security gateway.  
Remote ID  
Enter a string identifier for the remote security gateway.  
NetBIOS Broadcast: Check this option to enable broadcasts over the connection. It allows computers on the  
network to share Microsoft file and printer sharing  
information.  
Save Button: Click the Save button to save these settings.  
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Add Manual Connection  
Connection Name: Type name to identify the connection.  
Compression: Check the compression checkbox to enable IPCOMP, the compression algorithm.  
Authentication Method: Select the authentication algorithms used for the respective security services. Options  
are MD5-96 and SHA1-96.  
Authentication Key: The VPN firewall can use either MD5-96 or SHA1-96 for authentication. For example, MD5-96  
with a key of abcdefgh12345678.  
Authentication Protocol  
SHA1-96  
MD5-96  
Key Length  
Must be 20 characters  
Must be 16 characters  
Accepted Characters  
Alphanumeric characters  
Alphanumeric characters  
Encryption Method: Select the encryption method. Options include 3DES, AES-128, AES-192, AES-256, and NULL  
(no encryption).  
Encryption Key: The router can use any one of the methods specified in its encryption algorithm. For example  
3DES uses 24 alphanumeric characters (192 bits) as its encryption key. Example: 1234567890abcdefabcdabcd  
Encryption Protocol  
Null  
3DES  
AES-128  
AES-192  
AES-256  
Key Length  
Accepted Characters  
Must be 24 characters  
Must be 24 characters  
Must be 16 characters  
Must be 24 characters  
Must be 32 characters  
Alphanumeric Characters  
Alphanumeric Characters  
Alphanumeric Characters  
Alphanumeric Characters  
Alphanumeric Characters  
SPI Base: The Security Parameter Index identifies a manual connection. The SPI is a unique identifier in the SA  
(Secure Association – a type of secure connection) that allows the receiving computer to select the SA under  
which a packet is processed. The SPI Base is a number needed by the manual keying code. Enter any 3-digit  
hexadecimal number, which is unique for a security association. Enter in the format of 0xhex (0x100 through 0xfff  
is recommended). If you have more than one manual connection, then the SPI Base must be different for each  
one.  
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Left Next Hop: Next Hop is the address of the next device in a routing table’s path that moves a packet to its  
destination. You can configure this setting or leave it as a static value: 0.0.0.0. When not configured, the value is  
set to the Gateway of the Box/Gateway configured on the Interface/Right IP. The selection is based on the Left  
and Right IP.  
Local WAN IP: Select the Interface to initiate the IPSec tunnel (Left Security Gateway).  
Local LAN: Select the internal subnet of the local security gateway for which the security services are to be  
provided. If the router acts as a host, configure as None. Other options are Any, LAN, LAN Interface, WAN 1, WAN  
1 Interface.  
Remote Gateway IP: Select the interface in which the IPSec tunnel ends. In the case of Road Warriors with a  
Dynamic IP addresses, set to ANY. Other options include: LAN, LAN Interface, WAN 1, WAN 1 Interface, and None.  
FQDN: FQDN is a Fully Qualified Domain Name that resolves to the Local Wan IP of the router or in the case of  
GRE/IPSEC, it is used to identify the Wan IP of the remote location. This is provided by your ISP or created by you  
if you are using a Dynamic DNS service. When FQDN is selected, leave the Remote Gateway IP blank.  
Remote LAN: This is the internal subnet of the remote security gateway for which the security services are to be  
provided. If the remote end is a host, set to None.  
NetBIOS Broadcast: Check this option to enable broadcasts over the connection. This allows computers on the  
network to share Microsoft file and printer sharing information.  
Save Button: Click Save to save these settings.  
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Serial-Port, Serial Port Settings Parameters  
Serial-Port Configuration Group  
Serial-Port Configuration lets you configure the serial terminal connected to the RS-232 connector DE9 on the  
back of the unit.  
Baud Rate: Sets the baud-rate at which the serial terminal is communicating. The default is 115200.  
Flow Control: Sets the flow control for the serial port. Options are None or RTS-CTS. The default is None.  
Data Bits: Sets the data bits for the serial port. Data bit selection is 7 or 8. The default is 8.  
Stop Bits: Sets the stop bits for the serial port. Options are 1 or 2. The default is 1.  
Parity: Sets the parity for the serial port. Options are None, Even, or Odd. The default is None.  
Buffer Length: Sets the length up to which the data from the serial device is buffered before IP transmission. The  
default length is 32-characters.  
Timeout: Sets the timeout value for the serial terminal of how long it waits before IP transmission. The default is  
1-second.  
Submit Button: Click Submit to save these settings.  
Power Management Configuration Group  
Configures when the processor or radio is placed in low power mode. The device only wakes up when there is data on the  
serial port. If there is no data on the serial port, and the amount of time that you specify in the Timer option is expired, then  
the processor or radio goes into low power mode.  
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The feature is only supported when the TCP client is enabled. This feature is not supported if you are using a UDP client or if a  
TCP/UDP Server is enabled. Also, you cannot place an H5 radio (for MTCBA-H5-EN2-xx models) into low power mode.  
Allows: Determines which items, if any, are placed into low power mode. Select the desired option:  
None  
Processor  
You can place the processor into low power mode for all models except EN3.  
Radio  
ProcessorAndRadio  
You can place both the processor and radio into low power mode for the following radios: EV2, G2, and C1.  
You cannot place the radio into low power mode for the following radios: E, E1, and EV1.  
Timer: When the time specified by this option expires, the processor only, or the radio only or both the processor and radio  
device are put into low power mode. Default is 120 seconds. The time range is 120 seconds minimum, to 3600 seconds  
maximum.  
Submit Button: Click Submit to save these settings.  
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Serial Port, Client Settings Parameters  
The TCP/UDP client feature enables the router to act as a proxy TCP/UDP client to the serial terminal connected to  
the DE9, RS232 port on the router thus facilitating the serial terminal to access any TCP/UDP server on the  
LAN/WAN. Once the session, serial terminal to TCP/UDP server, is opened successfully, it allows two-way traffic  
between the serial device and the remote server.  
Initial connection setup for the TCP/UDP client is as follows:  
Router hardware  
HyperTerminal /  
Minicom  
DE9  
Connector  
TCP/UDP  
Client  
TCP/UDP  
Server  
Serial  
Device  
LAN / WAN  
TCP/UDP – Client Configuration Group  
Configures TCP/UDP Client through which the serial terminal connected to the RS-232 connector, DE9 on the back  
of the unit communicates with the remote TCP/UDP server on the LAN/WAN.  
Status: Sets the client status to either Enable or Disable. The default is Disable.  
Client Type: Sets the client to either TCP or UDP. The default is TCP.  
Primary Server: Enter the Primary Server IP address or Hostname. The default is blank.  
Port: If a Primary Server IP address or hostname is enabled, enter the port number of the server.  
Secondary Server: Enter the Secondary Server IP address or Hostname. The default is blank.  
Port: If a Secondary Server IP address or hostname is enabled, enter the port number of the server.  
Connection start By: Sets the trigger (Carriage Return (CR), DTR Assert, or Always on) in the serial port by which  
the connection starts. The default is Carriage Return (CR).  
Connection Terminate By: Sets the connection terminate sequence as follows:  
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Escape Sequence: Set the escape sequence characters at which the connection terminates.  
Inactivity timeout: Set the inactivity timeout at which the connection terminates.  
Others: Use to set the other terminating sequences: DTR-toggle or Always-On.  
DTR-toggle: If DTR status goes low, the connection terminates.  
Always-On: Sets the terminate sequence as Always-on.  
Submit Button: Click Submit to save these settings.  
Serial Port, Server Settings Parameters  
This feature enables a TCP/UDP client on the Ethernet network to connect to the remote serial terminal  
connected to the DE9, RS232 port on the router. The router acts as a TCP/UDP server which allows two way traffic  
between the TCP/UDP client and the remote terminal on the serial port.  
The initial connection setup for the TCP/UDP server is shown in the figure that follows.  
Router hardware  
HyperTerminal /  
Minicom  
DE9  
Connector  
TCP/UDP  
Server  
TCP/UDP  
Client  
Serial  
Device  
LAN / WAN  
TCP/UDP – Server Configuration Group  
Configures TCP/UDP Server through which the serial terminal connected to the RS-232 connector, DE9 on the  
back of the unit listens for the remote TCP/UDP client to communicate on the LAN/WAN.  
Status: Sets the client status to either Enable or Disable. The default is Disable  
Server Type:  
Sets the client to either TCP or UDP. The default is TCP.  
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Port: Sets the server port. The default is None  
Connection Terminate By: Sets the connection’s terminate sequence as follows:  
Escape Sequence: Set the escape sequence characters at which the connection terminates.  
Inactivity timeout: Set the inactivity timeout at which the connection terminates.  
Others: The other terminating sequences are: DTR-toggle or Always-On.  
DTR-toggle: If DTR status goes low, the connection terminates.  
Always-On: Sets the terminate sequence as Always-on.  
Submit Button: Click Submit to save these settings.  
Tools, Tools Parameters  
DDNS Group  
DDNS Force Update: Click Update to update the DDNS server with your current dynamically assigned IP address.  
DDNS Status: Click Refresh to display the DDNS Status after a forced update.  
Modem Group  
Reset Modem: Click Reset to reset the integrated cellular modem.  
Tools, Firmware Upgrade Parameters  
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Firmware Upgrade Group  
Use the Firmware Upgrade group to upgrade the firmware for the router. You can find and download all Multi-  
Tech firmware upgrades from the Multi-Tech Website.  
Before you upgrade your firmware, note the following:  
Save your present configuration in case you want to use it again.  
The new firmware is written into flash memory.  
A firmware upgrade takes at least 4 minutes. Do not turn off power during this time because the firmware is  
being downloaded.  
Do not upgrade the firmware remotely through the Cellular wireless connection.  
To upgrade firmware:  
1. Navigate to the area where you stored the firmware upgrade. To do so, click Browse.  
2. Select the mtcba-en2-u-xxx.bin file and press Enter. The file name displays in the Browse file for upgrade  
field. Make sure you select the correct BIN file; otherwise, your router can become inoperable.  
3. Click Upgrade.  
When upgrade is completed, the program returns to the main login screen.  
4. After the firmware upgrade is complete, verify the configuration is as expected.  
In particular, check that the DHCP scope settings are set properly.  
Also, up to four IPSEC tunnels can be active at any given time. You can save more than four active tunnels,  
but they are not active.  
Tools, Load Configuration Parameters  
Load Configuration Group  
Browse File for Load Configuration: Click Browse to open the file that allows you to locate the configuration file.  
When found, highlight the file name and press Enter so that the file name displays in the field. Then click Load.  
Notes:  
The new configuration is written into the flash.  
A Configuration Upgrade takes at least 3 seconds to download and 60 seconds to install the settings and  
reboot. Reboot happens automatically.  
When you click Load, the following dialog box opens. It shows the name of the file you selected.  
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Click the Find, Save, or Cancel buttons as desired.  
Tools, Save Configuration  
Click this option to save the configuration.  
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Statistics & Logs  
Statistics & Logs > System Information  
This is an example of the Statistics & Logs System Information.  
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Statistics & Logs > Ethernet  
This is an example of the Ethernet Statistics & Logs page. It shows Ethernet statistics.  
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Statistics & Logs > PPP  
This is an example of the PPP Statistics & Logs page. It shows PPP statistics when PPP is enabled.  
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Statistics & Logs > PPP Trace  
This is an example of the PPP Trace Statistics & Logs page. It shows the PPP trace messages.  
Statistics & Logs > DHCP Statistics  
This is an example of the DHCP Statistics & Logs page. It shows the statistics of DHCP leases.  
Statistics & Logs > GRE Statistics  
This page displays the statistics of active tunnels.  
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Statistics & Logs > Modem Information  
This page displays the modem commands set on the PPP > Modem Commands page and also displays the results  
of the commands.  
Statistics & Logs > Service Status  
This page displays the summary of the service status.  
Statistics & Logs > TCP/UDP Client Live Log  
This page displays the TCP/UDP Client Live Log.  
Statistics & Logs > TCP/UDP Server Live Log  
This page displays the TCP/UDP Server Live Log.  
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Statistics & Logs > IPSec Live Log  
This page displays the IPSec Live Log.  
Statistics & Logs > IPSec Log Traces  
This page displays the IPSec Log Traces.  
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Appendix A – Commonly Supported  
Subnets  
This table lists commonly supported subnets organized by address.  
Network Number  
N.N.N.0  
N.N.N.128  
Network Number  
N.N.N.0  
Hosts Available  
N.N.N.1-126  
N.N.N.129-254  
Hosts Available  
N.N.N.1-62  
N.N.N.65-126  
N.N.N.129-190  
N.N.N.193-254  
Hosts Available  
N.N.N.1-30  
Broadcast Address  
N.N.N.127  
N.N.N.255  
Broadcast Address  
N.N.N.63  
N.N.N.127  
N.N.N.191  
N.N.N.255  
Broadcast Address  
N.N.N.31  
255.255.255.128  
/25  
255.255.255.192  
/26  
N.N.N.64  
N.N.N.128  
N.N.N.192  
Network Number  
N.N.N.0  
255.255.255.224  
/27  
N.N.N.32  
N.N.N.33-62  
N.N.N.63  
N.N.N.64  
N.N.N.65-94  
N.N.N.95  
N.N.N.96  
N.N.N.97-126  
N.N.N.129-158  
N.N.N.161-190  
N.N.N.193-222  
N.N.N.225-254  
Hosts Available  
N.N.N.1-14  
N.N.N.127  
N.N.N.159  
N.N.N.191  
N.N.N.223  
N.N.N.255  
Broadcast Address  
N.N.N.15  
N.N.N.128  
N.N.N.160  
N.N.N.192  
N.N.N.224  
Network Number  
N.N.N.0  
255.255.255.240  
/28  
N.N.N.16  
N.N.N.17-30  
N.N.N.31  
N.N.N.32  
N.N.N.33-46  
N.N.N.47  
N.N.N.48  
N.N.N.49-62  
N.N.N.63  
N.N.N.64  
N.N.N.65-78  
N.N.N.79  
N.N.N.80  
N.N.N.81-94  
N.N.N.95  
N.N.N.96  
N.N.N.97-110  
N.N.N.113-126  
N.N.N.129-142  
N.N.N.145-158  
N.N.N.161-174  
N.N.N.177-190  
N.N.N.193-206  
N.N.N.209-222  
N.N.N.225-238  
N.N.N.241-254  
N.N.N.111  
N.N.N.127  
N.N.N.143  
N.N.N.159  
N.N.N.175  
N.N.N.191  
N.N.N.207  
N.N.N.223  
N.N.N.239  
N.N.N.255  
N.N.N.112  
N.N.N.128  
N.N.N.144  
N.N.N.160  
N.N.N.176  
N.N.N.192  
N.N.N.208  
N.N.N.224  
N.N.N.240  
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Network Number  
N.N.N.0  
N.N.N.8  
Hosts Available  
N.N.N.1-6  
N.N.N.9-14  
Broadcast Address  
N.N.N.7  
N.N.N.15  
255.255.255.248  
/29  
N.N.N.16  
N.N.N.17-22  
N.N.N.23  
N.N.N.24  
N.N.N.25-30  
N.N.N.31  
N.N.N.32  
N.N.N.33-38  
N.N.N.39  
N.N.N.40  
N.N.N.41-46  
N.N.N.47  
N.N.N.48  
N.N.N.49-54  
N.N.N.55  
N.N.N.56  
N.N.N.57-62  
N.N.N.63  
N.N.N.64  
N.N.N.65-70  
N.N.N.71  
N.N.N.72  
N.N.N.73-78  
N.N.N.79  
N.N.N.80  
N.N.N.81-86  
N.N.N.87  
N.N.N.88  
N.N.N.89-94  
N.N.N.95  
N.N.N.96  
N.N.N.97-102  
N.N.N.105-110  
N.N.N.113-118  
N.N.N.121-126  
N.N.N.129-134  
N.N.N.137-142  
N.N.N.145-150  
N.N.N.153-158  
N.N.N.161-166  
N.N.N.169-174  
N.N.N.177-182  
N.N.N.185-190  
N.N.N.193-198  
N.N.N.201-206  
N.N.N.209-214  
N.N.N.217-222  
N.N.N.225-230  
Hosts Available  
N.N.N.233-238  
N.N.N.241-246  
N.N.N.249-254  
N.N.N.103  
N.N.N.111  
N.N.N.119  
N.N.N.127  
N.N.N.135  
N.N.N.143  
N.N.N.151  
N.N.N.159  
N.N.N.167  
N.N.N.175  
N.N.N.183  
N.N.N.191  
N.N.N.199  
N.N.N.207  
N.N.N.215  
N.N.N.223  
N.N.N.231  
Broadcast Address  
N.N.N.239  
N.N.N.247  
N.N.N.255  
N.N.N.104  
N.N.N.112  
N.N.N.120  
N.N.N.128  
N.N.N.136  
N.N.N.144  
N.N.N.152  
N.N.N.160  
N.N.N.168  
N.N.N.176  
N.N.N.184  
N.N.N.192  
N.N.N.200  
N.N.N.208  
N.N.N.216  
N.N.N.224  
Network Number  
N.N.N.232  
N.N.N.240  
N.N.N.248  
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Network Number  
N.N.N.0  
Hosts Available  
N.N.N.1-2  
N.N.N.5-6  
Broadcast Address  
N.N.N.3  
N.N.N.7  
255.255.255.252  
/30  
N.N.N.4  
N.N.N.8  
N.N.N.9-10  
N.N.N.13-14  
N.N.N.17-18  
N.N.N.21-22  
N.N.N.25-26  
N.N.N.29-30  
N.N.N.33-34  
N.N.N.37-38  
N.N.N.41-42  
N.N.N.45-46  
N.N.N.49-50  
N.N.N.53-54  
N.N.N.57-58  
N.N.N.61-62  
N.N.N.65-66  
N.N.N.69-70  
N.N.N.73-74  
N.N.N.77-78  
N.N.N.81-82  
N.N.N.85-86  
N.N.N.89-90  
N.N.N.93-94  
N.N.N.97-98  
N.N.N.101-102  
N.N.N.105-106  
N.N.N.109-110  
N.N.N.113-114  
N.N.N.117-118  
N.N.N.121-122  
N.N.N.125-126  
N.N.N.129-130  
N.N.N.133-134  
N.N.N.137-138  
N.N.N.141-142  
N.N.N.145-146  
N.N.N.149-150  
N.N.N.153-154  
N.N.N.157-158  
N.N.N.161-162  
N.N.N.165-166  
N.N.N.169-170  
N.N.N.173-174  
N.N.N.177-178  
N.N.N.181-182  
N.N.N.185-186  
N.N.N.189-190  
N.N.N.193-194  
N.N.N.197-198  
N.N.N.201-202  
N.N.N.205-206  
N.N.N.209-210  
N.N.N.11  
N.N.N.15  
N.N.N.19  
N.N.N.23  
N.N.N.27  
N.N.N.31  
N.N.N.35  
N.N.N.39  
N.N.N.43  
N.N.N.47  
N.N.N.51  
N.N.N.55  
N.N.N.59  
N.N.N.63  
N.N.N.67  
N.N.N.71  
N.N.N.75  
N.N.N.79  
N.N.N.83  
N.N.N.87  
N.N.N.91  
N.N.N.95  
N.N.N.99  
N.N.N.103  
N.N.N.107  
N.N.N.111  
N.N.N.115  
N.N.N.119  
N.N.N.123  
N.N.N.127  
N.N.N.131  
N.N.N.135  
N.N.N.139  
N.N.N.143  
N.N.N.147  
N.N.N.151  
N.N.N.155  
N.N.N.159  
N.N.N.163  
N.N.N.167  
N.N.N.171  
N.N.N.175  
N.N.N.179  
N.N.N.183  
N.N.N.187  
N.N.N.191  
N.N.N.195  
N.N.N.199  
N.N.N.203  
N.N.N.207  
N.N.N.211  
N.N.N.12  
N.N.N.16  
N.N.N.20  
N.N.N.24  
N.N.N.28  
N.N.N.32  
N.N.N.36  
N.N.N.40  
N.N.N.44  
N.N.N.48  
N.N.N.52  
N.N.N.56  
N.N.N.60  
N.N.N.64  
N.N.N.68  
N.N.N.72  
N.N.N.76  
N.N.N.80  
N.N.N.84  
N.N.N.88  
N.N.N.92  
N.N.N.96  
N.N.N.100  
N.N.N.104  
N.N.N.108  
N.N.N.112  
N.N.N.116  
N.N.N.120  
N.N.N.124  
N.N.N.128  
N.N.N.132  
N.N.N.136  
N.N.N.140  
N.N.N.144  
N.N.N.148  
N.N.N.152  
N.N.N.156  
N.N.N.160  
N.N.N.164  
N.N.N.168  
N.N.N.172  
N.N.N.176  
N.N.N.180  
N.N.N.184  
N.N.N.188  
N.N.N.192  
N.N.N.196  
N.N.N.200  
N.N.N.204  
N.N.N.208  
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Appendix A – Commonly Supported Subnets  
N.N.N.212  
N.N.N.216  
N.N.N.220  
N.N.N.224  
N.N.N.228  
N.N.N.232  
N.N.N.236  
N.N.N.240  
N.N.N.244  
N.N.N.248  
N.N.N.252  
N.N.N.213-214  
N.N.N.217-218  
N.N.N.221-222  
N.N.N.225-226  
N.N.N.229-230  
N.N.N.233-234  
N.N.N.237-238  
N.N.N.241-242  
N.N.N.245-246  
N.N.N.249-250  
N.N.N.253-254  
N.N.N.215  
N.N.N.219  
N.N.N.223  
N.N.N.227  
N.N.N.231  
N.N.N.235  
N.N.N.239  
N.N.N.243  
N.N.N.247  
N.N.N.251  
N.N.N.255  
93  
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Appendix B– Regulatory Information  
Appendix B – Regulatory Information  
EMC, Safety, and R&TTE Directive Compliance  
The CE mark is affixed to this product to confirm compliance with the following European Community Directives:  
Council Directive 2004/108/EC of 15 December 2004 on the approximation of the laws of Member States  
relating to electromagnetic compatibility;  
and  
Council Directive 2006/95/EC of 12 December 2006 on the harmonization of the laws of Member States  
relating to electrical equipment designed for use within certain voltage limits;  
and  
Council Directive 1999/5/EC of 9 March 1999 on radio equipment and telecommunications terminal  
equipment and the mutual recognition of their conformity.  
FCC Part 15 Class A Statement  
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. If this  
equipment does cause harmful interference to radio or television reception, which can be determined by turning  
the equipment off and on, the user is encouraged to try to correct the interference by one or more of the  
following measures:  
Reorient or relocate the receiving antenna.  
Increase the separation between the equipment and receiver.  
Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.  
Consult the dealer or an experienced radio/TV technician for help.  
Warning: Changes or modifications to this unit not expressly approved by the party responsible for compliance  
could void the user’s authority to operate the equipment.  
Industry Canada  
This Class A digital apparatus meets all requirements of the Canadian Interference-Causing Equipment Regulations.  
Cet appareil numérique de la classe A respecte toutes les exigences du Règlement Canadien sur le matériel brouilleur.  
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Appendix B– Regulatory Information  
Waste Electrical and Electronic Equipment Statement  
WEEE Directive  
The WEEE Directive places an obligation on EU-based manufacturers, distributors, retailers, and importers to take-  
back electronics products at the end of their useful life. A sister directive, ROHS (Restriction of Hazardous  
Substances) complements the WEEE Directive by banning the presence of specific hazardous substances in the  
products at the design phase. The WEEE Directive covers all Multi-Tech products imported into the EU as of  
August 13, 2005. EU-based manufacturers, distributors, retailers and importers are obliged to finance the costs of  
recovery from municipal collection points, reuse, and recycling of specified percentages per the WEEE  
requirements.  
Instructions for Disposal of WEEE by Users in the European Union  
The symbol shown below is on the product or on its packaging, which indicates that this product must not be  
disposed of with other waste. Instead, it is the user’s responsibility to dispose of their waste equipment by  
handing it over to a designated collection point for the recycling of waste electrical and electronic equipment. The  
separate collection and recycling of your waste equipment at the time of disposal will help to conserve natural  
resources and ensure that it is recycled in a manner that protects human health and the environment. For more  
information about where you can drop off your waste equipment for recycling, please contact your local city  
office, your household waste disposal service or where you purchased the product.  
July, 2005  
REACH Statement  
Registration of Substances:  
After careful review of the legislation and specifically the definition of an “article” as defined in EC Regulation 1907/2006,  
Title II, Chapter 1, Article 7.1(a)(b), it is our current view Multi-Tech Systems, Inc. products would be considered as “articles”.  
In light of the definition in § 7.1(b) which requires registration of an article only if it contains a regulated substance that “is  
intended to be released under normal or reasonable foreseeable conditions of use,” our analysis is that Multi-Tech Systems,  
Inc. products constitute nonregisterable articles for their intended and anticipated use.  
Substances of Very High Concern (SVHC):  
Per the candidate list of Substances of Very high Concern (SVHC) published October 28, 2008 we have reviewed these  
substances and certify the Multi-Tech Systems, Inc. products are compliant per the EU “REACH” requirements of less than  
0.1% (w/w) for each substance.  
If new SVHC candidates are published by the European Chemicals Agency, and relevant substances have been confirmed, that  
exceeds greater than 0.1% (w/w), Multi-Tech Systems, Inc. will provide updated compliance status.  
Multi-Tech Systems, Inc. also declares it has been duly diligent in ensuring that the products supplied are compliant through a  
formalized process which includes collection and validation of materials declarations and selective materials analysis where  
appropriate. This data is controlled as a part of a formal quality system and will be made available upon request.  
95  
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Appendix B– Regulatory Information  
Restriction of the Use of Hazardous Substances (RoHS)  
Multi-Tech Systems, Inc.  
Certificate of Compliance  
2011/65/EU  
Multi-Tech Systems confirms that its embedded products comply with the chemical concentration limitations set  
forth in the directive 2011/65/EU of the European Parliament (Restriction of the use of certain Hazardous  
Substances in electrical and electronic equipment - RoHS)  
These Multi-Tech products do not contain the following banned chemicals1:  
Lead, [Pb] < 1000 PPM  
Mercury, [Hg] < 1000 PPM  
Hexavalent Chromium, [Cr+6] < 1000 PPM  
Cadmium, [Cd] < 100 PPM  
Polybrominated Biphenyl, [PBB] < 1000 PPM  
Polybrominated Diphenyl Ether, [PBDE] < 1000 PPM  
Environmental considerations:  
Moisture Sensitivity Level (MSL) =1  
Maximum Soldering temperature = 260C (in SMT reflow oven)  
1Lead usage in some components is exempted by the following RoHS annex, therefore higher lead concentration  
would be found in some modules (>1000 PPM);  
–Resistors containing lead in a glass or ceramic matrix compound.  
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Appendix B– Regulatory Information  
Information on HS/TS Substances According to Chinese  
Standards  
In accordance with China’s Administrative Measures on the Control of Pollution Caused by Electronic Information  
Products (EIP) # 39, also known as China RoHS, the following information is provided regarding the names and  
concentration levels of Toxic Substances (TS) or Hazardous Substances (HS) which may be contained in Multi-Tech  
Systems Inc. products relative to the EIP standards set by China’s Ministry of Information Industry (MII).  
Hazardous/Toxic Substance/Elements  
Name of the  
Component  
Lead Mercury Cadmium  
Hexavalent  
Chromium  
(CR6+)  
Polybrominated Polybrominated  
(PB)  
(Hg)  
(CD)  
Biphenyl  
(PBB)  
Diphenyl Ether  
(PBDE)  
Printed Circuit Boards  
Resistors  
O
X
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
Capacitors  
X
Ferrite Beads  
Relays/Opticals  
ICs  
O
O
O
O
X
Diodes/ Transistors  
Oscillators and Crystals  
Regulator  
O
O
O
O
O
O
X
Voltage Sensor  
Transformer  
Speaker  
Connectors  
LEDs  
Screws, Nuts, and other  
Hardware  
AC-DC Power Supplies  
O
O
O
O
O
O
O
O
O
O
O
O
Software /  
Documentation CDs  
Booklets and Paperwork  
O
O
O
O
O
O
O
O
O
O
O
O
Chassis  
X
Represents that the concentration of such hazardous/toxic substance in all the units of homogeneous  
material of such component is higher than the SJ/Txxx-2006 Requirements for Concentration Limits.  
O
Represents that no such substances are used or that the concentration is within the aforementioned  
limits.  
97  
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Appendix B– Regulatory Information  
Information on HS/TS Substances According to Chinese  
Standards (in Chinese)  
依照中国标准的有毒有害物质信息  
根据中华人民共和国信息产业部 (MII) 制定的电子信息产品 (EIP) 标准-中华人民共和国《电子信息产品污  
染控制管理办法》(第 39 号),也称作中国 RoHS下表列出了 Multi-Tech Systems, Inc. 产品中可能含有的  
有毒物质 (TS) 或有害物质 (HS) 的名称及含量水平方面的信息。  
有害/有毒物质/元素  
成分名称  
六价铬  
多溴联苯  
多溴二苯醚  
(CR6+)  
(PB)  
(Hg)  
(CD)  
(PBB)  
(PBDE)  
O
X
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
印刷电路板  
电阻器  
X
电容器  
O
O
铁氧体磁环  
继电器/光学部件  
IC  
O
O
O
O
O
O
O
O
O
O
O
O
二极管/晶体管  
振荡器和晶振  
调节器  
X
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
电压传感器  
变压器  
扬声器  
连接器  
LED  
O
X
O
O
O
O
O
O
O
O
O
O
螺丝、螺母以及其它五金件  
交流-直流电源  
软件/文档 CD  
手册和纸页  
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
底盘  
X
表示所有使用类似材料的设备中有害/有毒物质的含量水平高于 SJ/Txxx-2006 限量要求。  
O
表示不含该物质或者该物质的含量水平在上述限量要求之内。  
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Index  
Index  
GRE routing..................................................................... 66  
A
GRE tunnel configuration................................................ 67  
GRE tunneling................................................................. 66  
GSM RF Specifications................................................... 23  
Access Point Name ..........................................................32  
AH Key ............................................................................75  
Authentication Algorithms...............................................75  
Auto Dialout configuration ..............................................38  
Autodiscovery configuration............................................38  
H
H323 packets connection tracking................................... 66  
Handling Precautions......................................................... 8  
HTTP authentication........................................................ 40  
HTTP configuration ...................................................... 40  
B
Broadcast timer ................................................................38  
Browse File for Upgrade in Tools....................................82  
Browse File to Load Configuration..................................82  
I
ICMP configuration......................................................... 66  
ICMP Keep Alive Check................................................. 50  
IP Configuration .............................................................. 38  
IP Server.......................................................................... 41  
ITCP ................................................................................ 62  
C
Caller ID for Wakeup on Call ..........................................54  
Canadian Regulations.......................................................94  
CDMA Antenna Specifications........................................22  
CDMA RF Specifications ................................................22  
China’s Administrative Measures on the Control of  
L
Pollution .......................................................................97  
Configure Ethernet interface............................................31  
Load Configuration.......................................................... 82  
M
D
Menu structure................................................................. 34  
Modem Information......................................................... 90  
Daylight Savings Time configuration ..............................44  
DDNS Client....................................................................41  
DDNS configuration ........................................................41  
DDNS Status in Tools......................................................81  
DHCP configuration.........................................................69  
DHCP fixed addresses......................................................70  
DHCP Lease Time ...........................................................69  
DHCP server ....................................................................69  
Dial-on-Demand...............................................................50  
DNAT configuration........................................................64  
DNAT example................................................................64  
Dynamic DNS configuration............................................41  
N
NAT configuration .......................................................... 49  
Navigating ....................................................................... 34  
Network configuration..................................................... 60  
Network/Host for Remote Configuration ........................ 45  
P
Packet Filter..................................................................... 62  
Packet filter rules............................................................. 62  
Perfect Forward Secrecy.................................................. 73  
Pin Functions................................................................... 25  
Polling time ..................................................................... 43  
Power Requirements........................................................ 22  
Power-On Configuration ................................................. 58  
PPP authentication........................................................... 50  
PPP configuration............................................................ 50  
PPTP connection tracking................................................ 66  
protocol............................................................................ 62  
E
EMC, Safety, and R&TTE Directive Compliance ...........94  
Ethernet ports caution ........................................................8  
F
Firmware Upgrade ...........................................................82  
G
R
General Configuration – IP Setup ....................................38  
GPS Antenna Specifications ............................................24  
GPS RF Specifications.....................................................24  
GRE route configuration..................................................68  
Raw Dialout configuration .............................................. 38  
Remote Configuration ..................................................... 45  
Reset Modem in Tools..................................................... 81  
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Index  
RoHS Compliance............................................................96  
Route configuration..........................................................44  
T
Time zone configuration.................................................. 43  
Tools................................................................................ 81  
S
Safe password ..................................................................40  
Save configuration in Tools .............................................83  
Select encryption method.................................................75  
Server Port........................................................................38  
Service Configuration ......................................................61  
SNTP configuration .........................................................43  
Static Routes configuration..............................................44  
Statistics & Logs > DHCP Statistics................................87  
Statistics & Logs > Ethernet.............................................85  
Statistics & Logs > Modem Information..........................88  
Statistics & Logs > PPP ...................................................86  
Submenus.........................................................................36  
Subnets.............................................................................90  
Syslog configuration ........................................................38  
System domain name .......................................................41  
U
UDP................................................................................. 62  
V
Vehicle Safety ................................................................. 10  
W
Wakeup on Call ............................................................... 52  
Wakeup on Call Examples................................... 54, 56, 57  
WEEE Directive .............................................................. 95  
Wizard Setup ............................................................. 31, 32  
MultiModem rCell User Guide  
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