SXT LTE

The SXT LTE (product code RBSXTLTE3-7) is a special variant of our popular SXT device, and doesn’t include a 802.11 wireless device. Instead, it has a built in high quality LTE Category 3 modem for speeds of up to 100Mbit/s downlink and 50 Mbit/s uplink.
Descripción

The SXT LTE (product code RBSXTLTE3-7) is a special variant of our popular SXT device, and doesn’t include a 802.11 wireless device. Instead, it has a built in high quality LTE Category 3 modem for speeds of up to 100Mbit/s downlink and 50 Mbit/s uplink.

A perfect device for remote locations that are within cellular network coverage. Due to it’s professional LTE chip and high gain antenna, it can provide connectivity for your building even where cell phones can’t.

The signal LEDs show LTE signal level for easy positioning. The SXT LTE supports the popular LTE FDD bands 3 (1800MHz) and 7 (2600MHz), has a miniSIM slot and is not backwards compatible with older networks.

ESPECIFICACIONES DEL PRODUCTO

Detalles

Product code

RBSXTLTE3-7

CPU nominal frequency

400 MHz

CPU core count

1

Size of RAM

64 MB

10/100 Ethernet ports

1

Wireless chip model

GDM7240CB20BGT

PoE in

Yes

Supported input voltage

11 V - 57 V

Voltage Monitor

Yes

PCB temperature monitor

Yes

Dimensions

140x140x105mm

Operating System

RouterOS

Tested ambient temperature

-30 + 70 C

License level

3

Antenna gain DBI

9

CPU

AR7241

Max Power consumption

5W

Number of chains

2

Storage type

NAND

Storage size

128 MB

Included parts

RBSXTLTE3-7

AR7241 100M 1 port test

Mode

Configuration

1518 byte

512 byte

64 byte

kpps

Mbps

kpps

Mbps

kpps

Mbps

Bridging

none (fast path)

8.1

98.6

23.5

96.3

148.0

75.8

Bridging

25 bridge filter rules

8.1

98.6

23.5

96.3

53.7

27.5

Routing

none (fast path)

8.1

98.6

23.5

96.3

148.0

75.8

Routing

25 simple queues

8.1

98.6

23.5

96.3

92.8

47.5

Routing

25 ip filter rules

8.1

98.6

23.5

96.3

37.5

19.2

  1. All tests are done with Xena Networks specialized test equipment (XenaBay),and done according to RFC2544 (Xena2544)
  2. Max throughput is determined with 30+ second attempts with 0,1% packet loss tolerance in 64, 512, 1518 byte packet sizes
  3. Values in Italic indicate that max throughput was reached without maxing out CPU, but because board interface configuration was maxed out
  4. Test results show device maximum performance, and are reached using mentioned hardware and software configuration, different configurations most likely will result in lower results

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