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SkymirrAntennas & Signal

Skymirr TAMP161 4x4 MIMO 4G LTE/5G Sub-6 Omnidirectional Antenna Module

5GMPN TAMP161
  • 4x4 MIMO
  • Up to 1 m
$250.00

In stockShips from the US

Overview

The Skymirr TAMP161 is a high-efficiency omnidirectional MIMO antenna module for 4G LTE and 5G Sub-6 routers, gateways and CPE. It covers the full spectrum, including the 600 MHz band, and supports 2x2 MIMO at 600-960 MHz and 4x4 MIMO at 1710-6000 MHz. It reaches up to 90% efficiency and up to 6 dBi peak gain, and connects through four 0.5 m cables with SMA male connectors. It is designed for indoor use.

  • Covers all 4G LTE and 5G Sub-6 bands, including the 600 MHz band
  • 2x2 MIMO at 600-960 MHz and 4x4 MIMO at 1710-6000 MHz
  • Two main elements (617-5925 MHz, white) and two auxiliary elements (1710-5925 MHz, red)
  • Up to 90% efficiency and up to 6 dBi peak gain
  • Four 0.5 m cables with SMA (male) connectors; 1 m and 2 m additional cable options
  • Powered by MuLCAT technology, 190 x 140 x 22.5 mm, designed for indoor use
  • RoHS compliant
  • Feeds all four antenna ports of a 4x4 MIMO router or gateway from one tidy module instead of four loose antennas

The Skymirr TAMP161 is an omnidirectional MIMO antenna module for 4G LTE and 5G Sub-6 routers, gateways and connected devices that need stable, wideband multi-antenna performance. It covers every LTE and Sub-6 band, including the low 600 MHz band, and uses Skymirr's MuLCAT technology. Skymirr lists enterprise and home networking, industrial IoT, logistics and asset tracking, transportation systems and CPE deployments as typical applications. The module is designed for indoor use.

Four antenna elements sit in one 190 x 140 x 22.5 mm housing. Ant 1 and Ant 4, with white cables, are 5G main elements covering 617-5925 MHz. Ant 2 and Ant 3, with red cables, are 5G auxiliary elements covering 1710-5925 MHz. Together they provide 2x2 MIMO at 600-960 MHz and 4x4 MIMO at 1710-6000 MHz, so a router can run all four receive paths on mid and high bands. The main elements handle the low bands, where reach matters most.

Skymirr publishes per-element efficiency and gain tables. Low-band efficiency on Ant 4 reaches 96.3% at 699 MHz, and peak gain reaches 6.5 dBi at 2170 MHz. Each element ends in a 0.5 m cable with an SMA (male) connector, and 1 m and 2 m additional cable options are listed. Skymirr's LMR195 cable-loss data shows -0.33 dB at 617 MHz and -1.11 dB at 5925 MHz for a 1 m run. The module ships boxed with its cables, is RoHS compliant, and is backed by a datasheet with isolation plots and radiation patterns.

Ideal for

  • Upgrading a 4x4 MIMO 4G LTE or 5G router or gateway in an office or branch
  • Home and small-business fixed wireless CPE deployments
  • Industrial IoT and connected equipment installed indoors
  • Logistics, asset-tracking and transportation system hubs that need stable multi-band coverage
  • Buildings where low-band 600 MHz coverage is weak

Specifications

General

MPN
TAMP161
Brand
Skymirr
Connector
SMA (male)
Packaging
Available in a box along with cables
Technology
Powered by MuLCAT technology
Environment
Designed for indoor use
Antenna Size
190 x 140 x 22.5 mm
Cable Length
0.5 m (option with 1 m and 2 m additional cable)
Product Name
4G LTE / 5G External MIMO Broadband High Performing Omnidirectional Antenna Module

Compliance

Rohs
RoHS compliant

Performance

Peak Gain
High peak gain up to 6 dBi
Efficiency
High efficiency up to 90%
MIMO Low Band
Supports 2x2 MIMO at 600-960 MHz
MIMO High Band
Supports 4x4 MIMO at 1710-6000 MHz

Lmr195 Cable Loss

AT 617 MHz
-0.33 dB (1 m), -0.61 dB (2 m)
AT 960 MHz
-0.42 dB (1 m), -0.77 dB (2 m)
AT 1710 MHz
-0.55 dB (1 m), -1.05 dB (2 m)
AT 2690 MHz
-0.71 dB (1 m), -1.34 dB (2 m)
AT 3300 MHz
-0.84 dB (1 m), -1.54 dB (2 m)
AT 5000 MHz
-1.03 dB (1 m), -1.95 dB (2 m)
AT 5150 MHz
-1.07 dB (1 m), -2.04 dB (2 m)
AT 5925 MHz
-1.11 dB (1 m), -2.12 dB (2 m)

Operating Frequency

Ant 1
5G Main (617-5925 MHz), white
Ant 2
5G Aux (1710-5925 MHz), red
Ant 3
5G Aux (1710-5925 MHz), red
Ant 4
5G Main (617-5925 MHz), white

Gain Efficiency Ant1 Low Band

AT 617 MHz
79.3% efficiency, 1.9 dBi peak gain
AT 699 MHz
89.9% efficiency, 2.8 dBi peak gain
AT 746 MHz
77.0% efficiency, 3.8 dBi peak gain
AT 824 MHz
78.8% efficiency, 4.1 dBi peak gain
AT 894 MHz
85.2% efficiency, 4.3 dBi peak gain
AT 960 MHz
68.6% efficiency, 4.3 dBi peak gain

Gain Efficiency Ant4 Low Band

AT 617 MHz
84.6% efficiency, 2.6 dBi peak gain
AT 699 MHz
96.3% efficiency, 3.0 dBi peak gain
AT 746 MHz
80.4% efficiency, 2.4 dBi peak gain
AT 824 MHz
89.6% efficiency, 3.7 dBi peak gain
AT 894 MHz
85.0% efficiency, 4.2 dBi peak gain
AT 960 MHz
66.2% efficiency, 4.3 dBi peak gain

Gain Efficiency Ant1 Mid High Band

AT 1710 MHz
74.1% efficiency, 3.6 dBi peak gain
AT 1850 MHz
62.1% efficiency, 3.5 dBi peak gain
AT 1950 MHz
60.5% efficiency, 3.0 dBi peak gain
AT 2170 MHz
71.0% efficiency, 4.2 dBi peak gain
AT 2305 MHz
52.9% efficiency, 2.3 dBi peak gain
AT 2360 MHz
60.3% efficiency, 2.6 dBi peak gain
AT 2496 MHz
75.2% efficiency, 4.8 dBi peak gain
AT 2690 MHz
77.2% efficiency, 3.7 dBi peak gain
AT 3300 MHz
79.8% efficiency, 3.4 dBi peak gain
AT 3400 MHz
64.9% efficiency, 2.6 dBi peak gain
AT 3600 MHz
77.9% efficiency, 2.3 dBi peak gain
AT 3800 MHz
61.5% efficiency, 3.3 dBi peak gain
AT 4200 MHz
69.2% efficiency, 4.4 dBi peak gain
AT 4400 MHz
60.3% efficiency, 3.3 dBi peak gain
AT 5000 MHz
60.6% efficiency, 4.5 dBi peak gain
AT 5150 MHz
59.7% efficiency, 4.2 dBi peak gain
AT 5925 MHz
84.5% efficiency, 5.8 dBi peak gain

Gain Efficiency Ant2 Mid High Band

AT 1710 MHz
68.8% efficiency, 3.5 dBi peak gain
AT 1850 MHz
67.7% efficiency, 3.2 dBi peak gain
AT 1920 MHz
69.4% efficiency, 3.2 dBi peak gain
AT 2170 MHz
93.8% efficiency, 3.7 dBi peak gain
AT 2305 MHz
53.1% efficiency, 1.8 dBi peak gain
AT 2360 MHz
62.6% efficiency, 2.2 dBi peak gain
AT 2496 MHz
73.5% efficiency, 2.5 dBi peak gain
AT 2690 MHz
65.8% efficiency, 1.9 dBi peak gain
AT 3300 MHz
86.0% efficiency, 4.1 dBi peak gain
AT 3400 MHz
62.5% efficiency, 2.2 dBi peak gain
AT 3600 MHz
71.2% efficiency, 3.4 dBi peak gain
AT 3800 MHz
60.1% efficiency, 2.4 dBi peak gain
AT 4200 MHz
79.8% efficiency, 4.2 dBi peak gain
AT 4400 MHz
65.7% efficiency, 3.8 dBi peak gain
AT 5000 MHz
74.4% efficiency, 5.1 dBi peak gain
AT 5150 MHz
75.2% efficiency, 4.8 dBi peak gain
AT 5925 MHz
74.8% efficiency, 4.4 dBi peak gain

Gain Efficiency Ant3 Mid High Band

AT 1710 MHz
60.4% efficiency, 3.2 dBi peak gain
AT 1850 MHz
69.3% efficiency, 3.1 dBi peak gain
AT 1920 MHz
63.1% efficiency, 2.9 dBi peak gain
AT 2170 MHz
82.8% efficiency, 3.6 dBi peak gain
AT 2305 MHz
50.4% efficiency, 1.6 dBi peak gain
AT 2360 MHz
59.5% efficiency, 1.9 dBi peak gain
AT 2496 MHz
70.6% efficiency, 2.5 dBi peak gain
AT 2690 MHz
64.8% efficiency, 2.1 dBi peak gain
AT 3300 MHz
85.7% efficiency, 3.8 dBi peak gain
AT 3400 MHz
62.3% efficiency, 2.4 dBi peak gain
AT 3600 MHz
72.0% efficiency, 3.1 dBi peak gain
AT 3800 MHz
61.2% efficiency, 2.5 dBi peak gain
AT 4200 MHz
79.0% efficiency, 4.4 dBi peak gain
AT 4400 MHz
67.4% efficiency, 4.3 dBi peak gain
AT 5000 MHz
67.3% efficiency, 5.4 dBi peak gain
AT 5150 MHz
68.5% efficiency, 4.7 dBi peak gain
AT 5925 MHz
83.3% efficiency, 4.7 dBi peak gain

Gain Efficiency Ant4 Mid High Band

AT 1710 MHz
69.5% efficiency, 3.7 dBi peak gain
AT 1850 MHz
57.8% efficiency, 2.9 dBi peak gain
AT 1950 MHz
66.2% efficiency, 3.9 dBi peak gain
AT 2170 MHz
76.0% efficiency, 6.5 dBi peak gain
AT 2305 MHz
52.5% efficiency, 2.3 dBi peak gain
AT 2360 MHz
61.2% efficiency, 3.3 dBi peak gain
AT 2496 MHz
74.7% efficiency, 4.2 dBi peak gain
AT 2690 MHz
77.9% efficiency, 3.8 dBi peak gain
AT 3300 MHz
79.9% efficiency, 3.1 dBi peak gain
AT 3400 MHz
66.9% efficiency, 2.3 dBi peak gain
AT 3600 MHz
79.2% efficiency, 2.8 dBi peak gain
AT 3800 MHz
63.9% efficiency, 3.0 dBi peak gain
AT 4200 MHz
68.2% efficiency, 4.9 dBi peak gain
AT 4400 MHz
67.7% efficiency, 3.9 dBi peak gain
AT 5000 MHz
63.3% efficiency, 4.2 dBi peak gain
AT 5150 MHz
61.0% efficiency, 3.7 dBi peak gain
AT 5925 MHz
82.1% efficiency, 5.9 dBi peak gain

Questions buyers ask

How many antenna connections does the TAMP161 have?

It has four elements, each on a 0.5 m cable with an SMA (male) connector. Ant 1 and Ant 4 are main elements covering 617-5925 MHz. Ant 2 and Ant 3 are auxiliary elements covering 1710-5925 MHz.

What MIMO configurations does it support?

It supports 2x2 MIMO at 600-960 MHz and 4x4 MIMO at 1710-6000 MHz.

Does the TAMP161 cover the 600 MHz band?

Yes. The two main elements start at 617 MHz and cover the full 4G LTE and 5G Sub-6 spectrum, including the low 600 MHz band.

Can it be installed outdoors?

Skymirr designs the TAMP161 for indoor use.

Are longer cables available?

The standard cable length is 0.5 m. Skymirr lists options with 1 m and 2 m additional cable and publishes LMR195 loss figures for both lengths.