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Professional Radio Communication & Renewable Energy Solutions

Emcom Wireless delivers expert radio communication and renewable energy solutions tailored for critical operations. We specialize in designing, implementing, supplying, and managing two-way radio systems for diverse industries. Our innovative approach ensures reliable, efficient, and secure connectivity for mission-critical needs.

Tait
Schneider
Aviat
Cambium
TPL
Sunsynk
Sungrow
Volta
Canadian
JA Solar
LuxPower
Zetron
Vestwood
Freedon

Explore our wide range of Solutions

From robust two-way radio systems to advanced renewable energy projects, we deliver reliable, efficient, and sustainable solutions. Partner with us for customized support and excellence in every project.

Industries we serve

We understand that each industry faces its own set of unique challenges, so we listen to and work with organizations to create customized solutions that meet their specific needs.

  • Security

  • Medical

  • Government

  • Farming

  • Oil & Gas

  • Mining

  • Water & Electricity

  • Defence

  • Rail & Transport

  • Forestry

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Innovative Communications & Renewable Energy Solutions

Africa's trusted integrator of choice, delivering the best-in-class technology solutions.

Emcom Wireless is Africa's trusted integrator of choice, delivering best-in-class technology solutions that empower businesses and communities across the continent. With nearly six decades of experience in the communications industry, we have successfully supported a wide range of sectors, including public safety, utilities, transportation, and mining, providing reliable, scalable, and innovative radio communication systems.

From the installation of advanced two-way radios and repeaters to the development of integrated communication solutions, we ensure seamless connectivity in both urban and remote environments.

Our work spans across Africa, where we’ve played a pivotal role in enhancing safety, operational efficiency, and communication reliability, even in the most challenging terrains. By partnering with leading brands like Tait and utilizing the latest technology, Emcom Wireless delivers tailored solutions that meet the unique needs of every client, ensuring that their operations remain connected, secure, and efficient.

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How can we help?

Everything you need to know about the product. Can’t find the answer you’re looking for? Feel free to contact us.

  • What factors impact radio coverage?

    Radio coverage is influenced by factors such as frequency band (VHF for longer range, UHF for better penetration), transmitter power, antenna height and type, and environmental conditions like terrain, buildings, and vegetation. Weather, atmospheric conditions, and interference from other devices or users can also impact coverage. Proper system design, including the use of repeaters and strategically placed base stations, ensures reliable communication even in challenging environments.

  • How do I get a two-way radio license in South Africa?

    To obtain a two-way radio license in South Africa, you must apply to the Independent Communications Authority of South Africa (ICASA), the regulatory body responsible for managing radio frequency use. The process involves submitting an application detailing your intended use, equipment specifications, and preferred frequencies, along with any required documents such as business registration details. ICASA will assign a suitable frequency based on availability and your needs. You’ll also need to pay an annual licensing fee, which varies depending on the frequency band and number of radios. Once approved, ICASA will issue your license, allowing you to operate your radios legally.

  • How do microwaves differ from traditional radio waves?

    Microwaves differ from traditional radio waves primarily in their wavelength and penetration ability. Microwaves have shorter wavelengths, typically ranging from 1 millimetre to 1 meter, while traditional radio waves have longer wavelengths, extending from 1 meter to several kilometres. Microwaves can carry more data and are commonly used for applications like satellite communication, radar, and Wi-Fi. However, their penetration ability is limited; they are more easily absorbed or blocked by obstacles like buildings, vegetation, and rain compared to longer-wavelength radio waves, which can penetrate deeper into these materials and travel farther.

  • What is radio telemetry?

    Radio telemetry is a wireless communication method used to remotely collect and transmit data from sensors or instruments to a receiving station. It involves using radio waves to send real-time information over long distances, often in applications like environmental monitoring, wildlife tracking, industrial process control, and water resource management. A typical telemetry system consists of a transmitter (at the data source), a receiver (at the monitoring station), and antennas to facilitate communication. Radio telemetry is valued for its ability to operate in remote or inaccessible locations without the need for physical connections.

  • Grid-tied vs Off-grid solar systems

    Grid-tied solar systems are connected to the local electricity grid, allowing excess solar energy to be fed back into the grid, often with net metering benefits. These systems rely on the grid for backup power and are typically more cost-effective as they don’t require batteries. In contrast, off-grid solar systems operate independently, with energy stored in batteries for use during periods without sunlight. Off-grid systems are ideal for remote locations where grid access is unavailable, though they require additional investment in batteries and maintenance. While grid-tied systems reduce electricity costs with reliable grid access, off-grid systems offer full energy independence.

  • How do radio repeaters work?

    Radio repeaters work by receiving a weak or low-level radio signal and retransmitting it at a higher power, extending the communication range. They consist of a receiver, a transmitter, and an antenna. When a radio signal is received, the repeater amplifies or boosts the signal, then retransmits it on a different frequency to increase coverage. Repeaters are often used in areas with obstacles or long distances where direct communication between radios is not possible. By placing repeaters at elevated locations or in key spots, they help ensure reliable, long-range communication for users in the field.