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CHA EMCOMM III BASE

Sale price $195.00

CONDITION

Only 22 in stock

EMCOMM III BASE · Wire Antennas

A wire radiator or wire antenna system for documented horizontal, sloping, inverted-V, inverted-L, dipole, or NVIS use.

Why operators make room for it

Make the available trees, mast, and space work for the station

Sometimes the best antenna support is a tree at one end, a portable mast at the other, and just enough clear space between them.

That is where CHA EMCOMM III BASE enters the kit. Sometimes it is not possible to have the vertical section longer than the horizontal section. This will result in more of the signal being radiated skyward to which NVIS (Near Vertical Incident Skywave) will occur. NVIS is a propagation method that provides usable signals in the range between ground wave and skywave distances (usually 30 to 400 miles).

That flexibility gives an operator a credible path from a compact field kit to a full-size radiator, while the official configuration still governs feedpoint, support, tuning, and safety choices.

Quick product reference

Key Specifications

Product type
Wire Antennas
Primary role
A wire radiator or wire antenna system for documented horizontal, sloping, inverted-V, inverted-L, dipole, or NVIS use.
Frequency
10M - 160M
Power
200W SSB or 100W CW 100W DIGITAL
Length
130’ Tinned Copper KEVLAR PTFE (Teflon) (-70°C to 150°C) wire
Weight
3 Lb.
Rf Connection
UHF Plug (PL-259)
Swr
Subject to frequency and configuration, as measured see table (4), but typically less than 2.8:1. An antenna tuner or coupler may be required depending upon frequency and configuration
Personnel Requirements And Setup Time
one trained operator, less than 30 minutes
Published package contents
  • 1 X CHA EMCOMM III matching box ( 5:1 UNUN )
  • 1 X 130' Tinned Copper KEVLAR PTFE (Teflon) (-70°C to 150°C) wire
Deployment role
Documented wire-antenna configuration
Support requirement
Height, insulation, load, and guying depend on the completed deployment

Operator decision support

Plan the complete setup

See what this product is best suited for, what the documented setup needs, and the boundaries to confirm before deployment.

Best for

Sometimes the best antenna support is a tree at one end, a portable mast at the other, and just enough clear space between them.

What’s included
  • 1 X CHA EMCOMM III matching box ( 5:1 UNUN )
  • 1 X 130' Tinned Copper KEVLAR PTFE (Teflon) (-70°C to 150°C) wire
What else you need

Raise the wire with a support that satisfies the antenna guide's height, load, insulation, and guying limits.

Limitations
  • Never mount this, or any other antenna near power lines or utility wires!
  • Never trust insulation to protect you.
  • Never operate this antenna where people could be subjected to high levels of RF exposure, especially above 10 watts or above 14 MHz.
  • Never use this antenna near RF sensitive medical devices, such as pacemakers.
Expansion options
  • Counterpoise Wire
  • 3/16” Dacron Rope
  • Coaxial Cable Assembly. 50 feet of RG-58 with integrated RFI Choke

What an operator can do

  • Select a documented horizontal, sloping, inverted-V, inverted-L, dipole, or NVIS arrangement.
  • Raise the wire with a support that satisfies the antenna guide's height, load, insulation, and guying limits.
  • Keep balanced dipole configurations symmetrical and do not add radial or counterpoise accessories unless the guide explicitly requires them.
Balanced-system rule: Do not add radial or counterpoise accessories to a dipole configuration unless the official guide explicitly requires them.

Complete product details

The Chameleon Antenna EMCOMM III Base Antenna Kit, is an effective multi-band High Frequency (HF) antenna specially designed for short to long range base station HF communications. Due to configuration and installation flexibility and low visibility design, it is ideal for home use even in developments with a Home Owners Association (HOA) and Covenants, Conditions, and Restrictions (CCRs). It is also highly suitable for military, government agencies, non-governmental organizations (NGOs), Military Affiliate Radio System (MARS), Civil Air Patrol (CAP), Amateur Radio Emergency Service (ARES) / Radio Amateur Civil Emergency Service (RACES), Salvation Army Team Emergency Radio Network (SATERN), and shortwave listening.

The EMCOMM III Base Antenna is configurable to facilitate both long distance (DX) and Near-Vertical Incident Sky wave (NVIS) communication and using an automatic antenna tuner or coupler with memory settings will support most Automatic Link Establishment (ALE), frequency-hopping, and spread- spectrum modes and operations.

SWR: Subject to frequency and configuration, but typically less than 2.7:1. An antenna tuner or coupler may be required depending upon frequency and configuration.

The EMCOMM III Base Antenna can be installed by the operator in less than 30 minutes. It should be installed as high and straight as possible, but almost any available supports, such as an existing antenna tower, trees, a flag pole, the eaves of a house, or a non-conductive fence can be used with satisfactory results.

The EMCOMM III Base Antenna is comprised of a matching transformer and a 130 foot antenna wire on a line winder - making an effective HF base station antenna system for permanent installation as a primary or backup HF base station antenna.

Specifications:

  • Frequency: 10M - 160M
  • Power: 200W SSB or 100W CW 100W DIGITAL
  • Length: 130’ Tinned Copper KEVLAR PTFE (Teflon) (-70°C to 150°C) wire
  • Weight: 3 Lb.

The antenna kit consists of:

  • 1 X CHA EMCOMM III matching box (5:1 UNUN)
  • 1 X 130' Tinned Copper KEVLAR PTFE (Teflon) (-70°C to 150°C) wire

Sloper Installation

The sloper is considered the most unusual antenna system and can be difficult to get to work properly. The sloper may exhibit some gain in one direction, but usually has omni direction pattern. There are two types of sloper, the full sloper, really a dipole mounted with one end higher than the other. The half-sloper (EMCOMM III BASE) is fed at one end with a “ground system” or counter poise provided by either physical ground if fed at lower end of sloper. If the sloper is fed at the top, then other factors provide the “ground”. In most cases, a sloper mounted on a tower, then the tower and importantly, the beam mounted on top, act as the counterpoise.

One successful version of the sloper (most folks call any kind of sloper simply a “sloper” regardless of its type) is one that is fed with coax. The antenna is fed from the top and installed on a tower with a beam on top. The center conductor of the coax feeds the sloper wire and the shield is carefully bonded to the tower structure. In addition the beam, rotor, and mast are electrically bonded to the tower (here a heavy braided strap connecting the mast to the tower is recommended). The theory is that the sloper is fed at the top and the high current point is high just under the beam, leading away from the tower.

The sloper has been reported to be hard to get to work in some cases. When it works, its performance when used with a tower and a beam is very good. Considering the cost of materials (assuming the tower is in place already) the sloper should be considered.

Inverted "L" Installation

This is most likely the least expensive high performance antenna you can erect for 40M, 80M and 160M (limited performance). It is worth investigating since it needs only one high point in the relative clear to be effective (the horizontal far end can be at a lesser elevation, details later). Most likely you will need to use an external antenna tuner.

The main radiating component of the “L” is the vertical wire, that’s what makes it a very good ground-wave and DX antenna. So it would be good if this can be kept in the clear, or several feet away from your tower, and of course, as high as you can make it. The horizontal part may slope downward, or bent several times to accommodate any obstacles. Keep in mind, the more you bend the element back on itself, the more of the radiated signal is canceled out.

Sometimes it is not possible to have the vertical section longer than the horizontal section. This will result in more of the signal being radiated skyward to which NVIS (Near Vertical Incident Skywave) will occur. NVIS is a propagation method that provides usable signals in the range between ground wave and skywave distances (usually 30 to 400 miles).

Before we go any further, this antenna requires a robust ground system. If your ground is poor, the antenna efficiency will be poor, and you will be troubled with RF in the shack.

The radiation pattern is omni directional, with a possible minor lobe in the direction of the horizontal portion.

***

Triple Guarantee

1. Easy returns

Eligible products may be returned within 30 days under the published policy and authorization process. A 20% restocking fee may apply; international orders and Final Sale items are not eligible.

2. One-year limited warranty

Qualifying defects in materials or workmanship are covered under the complete published warranty terms.

3. The right help

For antenna setup or performance questions, visit Technical Support. For order-status questions, email orders@chameleonantenna.com. Read the Warranty, Returns & Service guide before shipping anything.

Frequently asked

Where can I find setup guidance?
Open the Chameleon Knowledge Base from this page for product manuals, application notes and documented configurations.

Do you ship internationally?
Available destinations and charges are shown during checkout. International orders may take longer and can be subject to destination-country taxes, duties or carrier procedures outside our control.

How do I get help?
For technical product questions, visit Technical Support. For an existing order, email orders@chameleonantenna.com from the order email and include the order number.

Chameleon Operating Platform

Learn, configure, and expand CHA EMCOMM III BASE

Continue from this product page into verified Chameleon guidance and decision tools.

Official Chameleon guidance Recommendations are limited to documented product relationships; unverified combinations are not presented as supported.

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