Teltonika Industrial Cellular Router Model: RUT950
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Product Details
Key Features
Dual SIM slots, 4G LTE
Cellular Connectivity
Wi-Fi Hotspot, Dual Band Wi-Fi
(2.4 & 5GHz)
Advanced Security support VPN,
Firewall
4x1 Ethernet, 1x WAN Ethernet
Port
Teltonika Remote Management
System (RMS)
Support for SMS and email
alerts
Power Supply 9-30V DC
Specification
|
Mobile module |
4G (LTE) – Cat 4 up to 150
Mbps, 3G – Up to 42 Mbps, 2G – Up to 236.8 kbps |
|
SIM switch |
2 SIM cards, auto-switch
cases: weak signal, data limit, SMS limit, roaming, no network, network
denied, data connection fail, SIM idle protection |
|
Status |
Signal strength (RSSI), SINR,
RSRP, RSRQ, EC/IO, RSCP, Bytes sent/received, connected band, IMSI, ICCID |
|
SMS |
SMS status, SMS
configuration, send/read SMS via HTTP POST/GET, EMAIL to SMS, SMS to EMAIL,
SMS to HTTP, SMS to SMS, scheduled SMS, SMS autoreply, SMPP |
|
Black/White list |
Operator black/white list |
|
Band management |
Band lock, Used band status
display |
|
APN |
Auto APN |
|
Bridge |
Direct connection (bridge)
between mobile ISP and device on LAN |
|
Passthrough |
Router assigns its mobile WAN
IP address to another device on LAN |
|
Multiple PDN (optional) |
Possibility to use different
PDNs for multiple network access and services (not available in standard FW) |
|
WIRELESS |
|
|
Wireless mode |
IEEE 802.11b/g/n, Access
Point (AP), Station (STA) |
|
WiFi security |
WPA2-Enterprise - PEAP,
WPA2-PSK, WEP, WPA-EAP, WPA-PSK; AES-CCMP, TKIP, Auto Cipher modes, client
separation |
|
SSID |
SSID stealth mode and access
control based on MAC address |
|
WiFi users |
Up to 100 simultaneous
connections |
|
Wireless Hotspot |
Captive portal (Hotspot),
internal/external Radius server, built in customizable landing page |
|
ETHERNET |
|
|
WAN |
1 x WAN port (can be
configured to LAN) 10/100 Mbps, compliance IEEE 802.3, IEEE 802.3u standards,
supports auto MDI/MDIX |
|
LAN |
3 x LAN ports, 10/100 Mbps,
compliance IEEE 802.3, IEEE 802.3u standards, supports auto MDI/MDIX |
|
NETWORK |
|
|
Routing |
Static routing, Dynamic
routing (BGP, OSPF v2, RIP v1/v2, NHRP) |
|
Network protocols |
TCP, UDP, IPv4, IPv6, ICMP,
NTP, DNS, HTTP, HTTPS, FTP, SMTP, SSL v3, TLS, ARP, VRRP, PPP, PPPoE, UPNP,
SSH, DHCP, Telnet, SMPP, SMNP, MQTT, Wake On Lan (WOL) |
|
VoIP passthrough support |
H.323 and SIP-alg protocol
NAT helpers, allowing proper routing of VoIP packets |
|
Connection monitoring |
Ping Reboot, Wget Reboot,
Periodic Reboot, LCP and ICMP for link inspection |
|
Firewall |
Port forward, traffic rules,
custom rules |
|
DHCP |
Static and dynamic IP
allocation, DHCP Relay, Relayd |
|
QoS / Smart Queue Management (SQM) |
Traffic priority queuing by
source/destination, service, protocol or port, WMM, 802.11e |
|
Supported >25 service
providers, others can be configured manually |
|
|
Network backup |
VRRP, Mobile, Wired and WiFi
WAN options, each of which can be used as backup, using automatic Failover |
|
Load balancing |
Balance your internet traffic
over multiple WAN connections |
|
SSHFS (optional) |
Possibility to mount remote
file system via SSH protocol (not available in standard FW) |
|
SECURITY |
|
|
Authentication |
Pre-shared key, digital
certificates, X.509 certificates |
|
Firewall |
Pre-configured firewall rules
can be enabled via web-ui, unlimited firewall configuration via CLI; DMZ;
NAT; NAT-T |
|
Attack prevention |
DDOS prevention (SYN flood
protection, SSH attack prevention, HTTP/HTTPS attack prevention), port scan
prevention ( SYN-FIN, SYN-RST, X-mas, NULL flags, FIN scan attacks) |
|
VLAN |
Port and tag based VLAN
separation |
|
Mobile quota control |
Set up custom data limits for
both SIM cards |
|
WEB filter |
Blacklist for blocking out
unwanted websites, whitelist for specifying allowed sites only |
|
Access control |
Flexible access control of
TCP, UDP, ICMP packets, MAC address filter |
|
Secure Boot |
Cryptographic integrity check
of the each system boot process (available on device with special order code
RUT950U072C0). |
|
VPN |
|
|
OpenVPN |
Multiple clients and server
can be running simultaneously, 12 encryption methods |
|
OpenVPN Encryption |
DES-CBC, RC2-CBC,
DES-EDE-CBC, DES-EDE3-CBC, DESX-CBC, BF-CBC, RC2-40-CBC, CAST5-CBC,
RC2-64-CBC, AES-128-CBC, AES-192-CBC, AES-256-CBC |
|
IPsec |
IKEv1, IKEv2, supports up to
4 x VPN IPsec tunnels (instances), with 5 encryption methods (DES, 3DES,
AES128, AES192, AES256) |
|
GRE |
GRE tunnel |
|
PPTP, L2TP |
Client/Server services can
run simultaneously |
|
Stunnel |
Proxy designed to add TLS
encryption functionality to existing clients and servers without any changes
in the programs' code |
|
DMVPN |
Method of building scalable IPsec
VPNs |
|
SSTP |
SSTP client instance support |
|
ZeroTier |
ZeroTier VPN |
|
WireGuard |
WireGuard VPN client and
server support |
|
MODBUS |
|
|
MODBUS TCP SLAVE |
|
|
ID range |
Respond to one ID in range
[1;255] or any |
|
Allow Remote Access |
Allow access through WAN |
|
Custom registers |
MODBUS TCP custom register
block requests, which read/write to a file inside the router, and can be used
to extend MODBUS TCP Slave functionality |
|
MODBUS TCP MASTER |
|
|
Supported functions |
01, 02, 03, 04, 05, 06, 15,
16 |
|
Supported data formats |
8 bit: INT, UINT; 16 bit:
INT, UINT (MSB or LSB first); 32 bit: float, INT, UINT (ABCD (big-endian),
DCBA (little-endian), CDAB, BADC) |
|
MODBUS DATA TO SERVER |
|
|
Protocol |
HTTP(S), MQTT, Azure MQTT |
|
MQTT GATEWAY |
|
|
MQTT gateway |
Allows sending commands and
receiving data from MODBUS Master through MQTT broker |
|
DNP3 |
|
|
Supported modes |
TCP Master, DNP3 Outstation |
|
MONITORING & MANAGEMENT |
|
|
WEB UI |
HTTP/HTTPS, status,
configuration, FW update, CLI, troubleshoot, event log, system log, kernel
log |
|
FOTA |
Firmware update from server,
automatic notification |
|
SSH |
SSH (v1, v2) |
|
SMS |
SMS status, SMS
configuration, send/read SMS via HTTP POST/GET |
|
Call |
Reboot, Status, WiFi on/off,
Mobile data on/off, Output on/off |
|
TR-069 |
OpenACS, EasyCwmp, ACSLite,
tGem, LibreACS, GenieACS, FreeACS, LibCWMP, Friendly tech, AVSystem |
|
MQTT |
MQTT Broker, MQTT publisher |
|
SNMP |
SNMP (v1, v2, v3), SNMP trap |
|
JSON-RPC |
Management API over
HTTP/HTTPS |
|
MODBUS |
MODBUS TCP status/control |
|
RMS |
Teltonika Remote Management
System (RMS) |
|
IoT PLATFORMS |
|
|
Cloud of Things |
Allows monitoring of: Device
data, Mobile data, Network info, Availability |
|
ThingWorx |
Allows monitoring of: WAN
Type, WAN IP Mobile Operator Name, Mobile Signal Strength, Mobile Network
Type |
|
Cumulocity |
Allows monitoring of: Device
Model, Revision and Serial Number, Mobile Cell ID, ICCID, IMEI, Connection
Type, Operator, Signal Strength, WAN Type and IP |
|
Azure IoT Hub |
Can send device IP, Number of
bytes send/received/ 3G connection state, Network link state, IMEI, ICCID,
Model, Manufacturer, Serial, Revision, IMSI, Sim State, PIN state, GSM
signal, WCDMA RSCP WCDMA EC/IO, LTE RSRP, LTE SINR, LTE RSRQ, CELL ID,
Operator, Operator number, Connection type, Temperature, PIN count to
Azure IoT Hub server |
|
SYSTEM CHARACTERISTICS |
|
|
CPU |
Atheros Wasp, MIPS 74Kc, 550
MHz |
|
RAM |
128 MB, DDR2 |
|
FLASH storage |
16 MB, SPI Flash |
|
FIRMWARE / CONFIGURATION |
|
|
WEB UI |
Update FW from file, check FW
on server, configuration profiles, configuration backup, restore point |
|
FOTA |
Update FW/configuration from
server |
|
RMS |
Update FW/configuration for
multiple devices |
|
Keep settings |
Update FW without losing
current configuration |
|
FIRMWARE CUSTOMIZATION |
|
|
Operating system |
RutOS (OpenWrt based Linux
OS) |
|
Supported languages |
Busybox shell, Lua, C, C++ |
|
Development tools |
SDK package with build
environment provided |
|
INPUT/OUTPUT |
|
|
Input |
1 x Digital input, 0 - 5 V
detected as logic low, 8 - 30 V detected as logic high |
|
Output |
1 x Digital open collector
output, max output 30 V, 300 mA |
|
Events |
SMS, EMAIL, RMS |
|
POWER |
|
|
Connector |
4 pin industrial DC power
socket |
|
Input voltage range |
9 – 30 VDC, reverse polarity
protection; surge protection >31VDC 10us max |
|
PoE (passive) |
Passive PoE over spare pairs.
Possibility to power up through LAN port, not compatible with IEEE802.3af,
802.3at and 802.3bt standards |
|
Power consumption |
< 2 W idle, < 7 W Max |
|
PHYSICAL INTERFACES (PORTS, LEDS, ANTENNAS, BUTTONS, SIM) |
|
|
Ethernet |
4 x RJ45 ports, 10/100 Mbps |
|
I/O’s |
1 x Digital Input, 1 x
Digital Output on 4 pin power connector (available from HW revision 1600) |
|
Status LEDs |
1 x bi-color connection
status LED, 5 x connection strength LEDs, 4 x LAN status LEDs, 1 x Power LED |
|
SIM |
2 x SIM slots (Mini SIM -
2FF), 1.8 V/3 V, external SIM holders, eSIM (Optional) |
|
Power |
1 x 4 pin power connector |
|
Antennas |
2 x SMA for LTE, 2 x RP-SMA
for WiFi antenna connectors |
|
Reset |
Reboot/User default
reset/Factory reset button |
|
PHYSICAL SPECIFICATION |
|
|
Casing material |
Aluminium housing, plastic
panels |
|
Dimensions (W x H x D) |
110 x 50 x 100 mm |
|
Weight |
280 g |
|
Mounting options |
DIN rail (can be mounted on
two sides), flat surface placement |
|
OPERATING ENVIRONMENT |
|
|
Operating temperature |
-40 °C to 75 °C |
|
Operating humidity |
10% to 90% non-condensing |
|
Ingress Protection Rating |
IP30 |
|
REGULATORY & TYPE APPROVALS |
|
|
Regulatory |
CE/RED, FCC, IC, PTCRB, RCM,
EAC, CCC, RoHS, WEEE, IP rating, Anatel, GCF, TRA approval, REACH, DNV GL,
Declaration of Software Security, Thailand NBTC, Ukraine UCRF, WiFi
Certified, SDPPI (POSTEL) |
|
Operator |
AT&T, Verizon |
|
EMI IMMUNITY |
|
|
Standards |
Draft EN 301 489-1 V2.2.0,
Draft EN 301 489-17 V3.2.0, Draft EN 301 489-19 V2.1.0, Draft EN 301 489-52
V1.1.0 FCC 47 CFR Part 15B (2018), ANSI C63.4 (2014) |
|
ESD |
EN61000-4-2:2009 |
|
RS |
EN 61000-4-3:2006 + A1:2008 +
A2:2010 |
|
EFT |
EN 61000-4-4:2012 |
|
Surge immunity (AC Power Line) |
EN 61000-4-5:2006 |
|
Surge immunity (Ethernet ports) |
EN 61000-4-5:2014, clause 7.1
of ITU-T K21 |
|
Transient and surges |
ISO 7632-2:2004 |
|
CS |
EN 61000-4-6:2009 |
|
DIP |
EN 61000-4-11:2004 |
|
RF |
|
|
Standards |
EN 300 328 V2.1.1, EN 301 511
V12.5.1, EN 301 908-1 V11.1.1, EN 301 908-2 V11.1.1, EN 301 908-13 V11.1.1
AS/CA S042.1:2018, AS/ACIF S042.3:2005, AS/CA S042.4:2018, AS/NZS 4268:2017
FCC 47 CFR Part 15C, FCC 47 CFR Part 22H, FCC 47 CFR Part 24E, FCC 47 CFR Part
27 |
|
SAFETY |
|
|
Standards |
IEC 60950-1:2005 (Second
Edition) + Am 1:2009 + Am 2:2013 AS/NZS 60950.1:2015 EN 50665:2017, EN
62311:2008 FCC 47 CFR Part 1 1.1310 |
|
ENVIRONMENTAL |
|
|
Ingress Protect |
LST EN 60529:1999+A1+AC:2002 |
|
Vibration |
Class guideline-DNVGL-CG-0339:2016 |
Description
CONNECTIVITY: 4G/LTE (Cat 4),
3G, 2G
WAN FAILOVER: Automatic switch
to available backup connection
WIFI: Wireless Access Point
with Hotspot functionality
DUAL SIM: With auto failover,
backup WAN and other switching scenarios
ETHERNET: 4x Ethernet interfaces
with VLAN functionality
RMS: Compatible with Teltonika
Remote Management System
USE CASE
1) REMOTE IMAGE CONTROL
SOLUTION FOR ARMORED TRUCKS
Transportation of valuables
like cash, jewelry, documents, and similar items, is a critical mission that
requires specialized equipment, trained staff, and precautionary safety
measures. Thankfully, emerging technology enables a much higher level of protection
for both: the staff members and the assets that are being delivered. IoT
solutions allow monitoring the fleet of armored trucks in real-time so the
headquarters may know what is happening with each of them at any given time and
place.
2) ON A MISSION TO ENABLE
ACCESS TO SAFE COOKING FUEL
As per an article published by
National Geographic, around three billion people are still using open fire for
cooking and heating purposes. The consequences are alarming in many ways - from
health concerns and frequent fires to mind-blowing pollution. Smokey fires
fueled by whatever is accessible at a time cause as much as 400 cigarettes’
worth of smoke per hour (per household). One of the main reasons why people
often choose to cook on an open fire as opposed to safer cooking stoves is
because they do not have easy access to fuel or it is too expensive.
3) REAL-TIME BEACH OCCUPANCY
MONITORING
Tourism is one of the main
economic drivers in Spain. Although it has been highly disrupted due to the
global pandemic, with certain measures in place, people may start enjoying some
of the usual holiday activities, including spending time at the beach. The
number of people allowed on public beaches is strictly limited. Technological
solutions need to be implemented to monitor the capacity and busyness of each
beach in real-time to ensure safety and inform the public for better planning.
4) REMOTE MANAGEMENT OF BORING
AND MILLING EQUIPMENT
In today’s business, selling a
product often is just the beginning of the relationship. The after-sales
services and support last long after the product leaves the warehouse, and it
significantly affects customer satisfaction, and as such - loyalty. When
working with IoT products, software and network challenges are not uncommon.
The model where an IT professional would come and fix these problems on-site is
quite outdated due to the global nature of many businesses around the world. It
would be nor time, nor financially efficient. Therefore, having the means of
supporting customers remotely is becoming essential. Together with it, reliable
connectivity becomes a top priority.
5) CELLULAR CONNECTIVITY FOR
POLICE VEHICLES
Whenever an accident occurs,
police are usually the first ones to respond. There is no need to explain why
it is essential to streamline their job to the smallest possible detail and
supply the best equipment available to carry out their tasks, where time is
critical. Police cars have changed tremendously over the last years with the
development of IoT. The use of technology and digitalization helps to increase
the efficiency of officers’ duties, but at the same time, it ensures
accountability, and most importantly – safety. However, the technology will not
be as helpful without a secure and reliable connection, and achieving this in a
moving vehicle may be complicated.
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