4 PCS Cisco 4G/3G Omnidirectional Dipole Antenna (4G-LTE-ANTM-D) white

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Cisco 4G/3G Omnidirectional Dipole Antenna (4G-LTE-ANTM-D)


This document outlines the specifications, describes the Cisco 4G/3G Omnidirectional Dipole Antenna (4G-LTE-ANTM-D), and contains the following sections:

Overview

Specifications

System Requirements

Installation Notes

Safety Instructions

Obtaining Documentation and Submitting a Service Request

Overview

The 4G-LTE-ANTM-D omnidirectional dipole antenna is designed for indoor use with Cisco 4G and Cisco 3G wireless Integrated Services Routers Generation 2 (ISRs G2) and Enhanced High-Speed WAN Interface Cards (EHWICs).

The 4G-LTE-ANTM-D antenna is marked with a green band and the product ID (PID) to indicate that it supports 4G Long Term Evolution (LTE) networks. It has the following hardware features:

Articulating Joint—It can be rotated 360 degrees and is capable of maneuvering into three stop positions: 0 degrees, 45 degrees, and 90 degrees.

Male threaded Neill-Concelman (TNC) Connector—It lets you directly mount the antenna to any Cisco 4G and Cisco 3G wireless Integrated Services Router (ISR) EHWIC with a TNC connector (Figure 1). The threads on the connector must comply with the ANSI 7/16-28 UNEF 2B thread specification.

Figure 1 Cisco 4G-LTE-ANTM-D Ominidirectional Dipole Antenna, TNC Connector, and Articulation Joint

 

 

 

1

0 degree position

5

TNC connector

2

45 degree position

6

Green band

3

90 degree position

7

Product ID

4

Articulating joint

   

 

Specifications

 

Table 1 Specifications for Cisco 4G-LTE-ANTM-D Antenna

Specification
Description

Maximum input power

3W

Connector

TNC male

VSWR1

2.5:1 or less

Characteristic impedance

50 ohm

Antenna base and radome color

Cisco Raven Black

Antenna dimensions

9 (L) x 1.2 (W) x 7/16 in (D)
(229 x 30.5 x 11 mm)

Operating temperature

-22° to 158°F (-30° to 70°C)

Operating frequency ranges

698-806 MHz

824-894 MHz

925-960 MHz

1710-1885 MHz

1920-1980 MHz

2110-2170 MHz

2500-2690 MHz

Maximum Peak Gain

2 dBi

1 VSWR = voltage standing-wave ratio.


 

Figure 2 Elevation Cut (AMPS) Phi 0 Degree Plane for Cisco 4G-LTE-ANTM-D

 

 

Figure 3 Elevation Cut (AMPS) Phi 90 Degree Plane for Cisco 4G-LTE-ANTM-D

 

 

Figure 4 Azimuth Cut (AMPS) for Cisco 4G-LTE-ANTM-D

 

 

Figure 5 Elevation Cut (PCS) Phi 0 Degree Plane for Cisco 4G-LTE-ANTM-D

 

 

Figure 6 Elevation Cut (PCS) Phi 90 Degree Plane for Cisco 4G-LTE-ANTM-D

 

 

Figure 7 Azimuth Cut (PCS) for Cisco 4G-LTE-ANTM-D