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  • N-Type Female to SMA Female RG58

Premium N-Type Female to SMA Female RG58 Coaxial Cable – 50 Ohm Low-Loss Interconnect

Price range: 310 EGP through 2.080 EGP

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N-Type Female to SMA Female RG58 Premium N-Type Female to SMA F...

Price range: 310 EGP through 2.080 EGP

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Premium N-Type Female to SMA Female RG58 Coaxial Cable – 50 Ohm Low-Loss Interconnect

In high-frequency wireless architectures, maintaining uncompromised signal transmission depends entirely on the electrical integrity of intermediate patch assemblies. The premium N-Type Female to SMA Female RG58 coaxial assembly from OHM Cables is an expertly engineered RF interconnect solution built to bridge industrial-grade communication lines with compact routing equipment. Designed to resolve mechanical incompatibility between different connector ports, this cable provides a stable, low-loss physical path for 4G LTE/5G wireless gateways, cellular signal boosters, SDR setups, and remote telecommunications hardware. Featuring a factory-calibrated $50 \Omega$ characteristic impedance, it allows enterprise hardware setups to sustain maximum signal throughput while keeping return loss to an absolute minimum.

Using poorly shielded, unverified patch wires often introduces massive insertion loss and signal reflections that degrade overall network performance. When wireless nodes are deployed within demanding industrial environments or dense branch offices, ambient electromagnetic noise can easily compromise raw data paths. Upgrading your installations with this professional-grade N-Type Female to SMA Female RG58 cable guarantees comprehensive shielding protection. Featuring a tightly woven tinned copper braid paired with an aluminum foil wrap, this multi-layer shield maintains an exceptional signal-to-noise ratio (SNR), delivering clean, predictable transmission speeds across both low and high-frequency cellular bands.

Premium N-Type Female to SMA Female RG58 Coaxial Cable Assembly

Professional RF Engineering Insight: When matching large industrial fittings like N-Type connectors with micro-interfaces like SMA ports, mechanical stress on the device’s bulkhead is a primary concern. Utilizing an intermediate N-Type Female to SMA Female RG58 jumper cable isolates physical strain, acting as a flexible stress absorber that protects sensitive device joints from shearing forces.

The Critical Functional Roles of the RG58 Interconnect Assembly

An advanced RF patch line must do more than simply fit two ports together. The OHM Cables N-Type Female to SMA Female RG58 assembly satisfies these needs by fulfilling three distinct functional roles within your network architecture:

1. The Dual-Bulkhead Interface Bridge: Connecting External Lines to Internal Systems

Outdoor antennas and heavy-duty backbone installations rely on massive N-Type interfaces to endure harsh weather conditions, whereas indoor routers and modular cellular gateways utilize small SMA ports to maximize mainboard space. The primary role of our N-Type Female to SMA Female RG58 cable assembly is to seamlessly adapt these mismatched interfaces when both paths end in male connector points. It removes the need for bulky, rigid barrel adapters, which often introduce additional signal loss and create a weak point that breaks easily under physical stress.

2. The Signal Power Guardian: Strict Impedance Continuity

When high-frequency radio waves encounter sudden variations in electrical impedance, energy is reflected backward along the copper core as heat. This return loss degrades connection stability and can overload fragile power amplifiers. The N-Type Female to SMA Female RG58 assembly functions as a strict impedance stabilizer. It maintains a uniform $50 \Omega$ profile across the entire length of the cable, keeping the Voltage Standing Wave Ratio (VSWR) to a minimum ($\le 1.35$), which protects your hardware and ensures clean forward energy delivery.

3. The Flexible Structural Strain Absorber

Thick, rigid backbone cables like LMR400 are perfect for carrying signals across long distances, but their stiff bending radius makes it incredibly difficult to connect them directly to light desktop routers or rackmount modems. Forcing a rigid cable into a tight space can crack the solder joint inside your device’s RF port. This assembly functions perfectly as a flexible extension jumper, providing clean, manageable bends around tight cabinet corners and equipment racks without putting undue stress on sensitive device connections.

Structural Breakdown Cross Section of RG58 Coaxial Cable Layers

Mechanical Construction and Premium Materials: Built for Performance

A closer look at the physical construction of this N-Type Female to SMA Female RG58 cable shows why it outperforms basic retail wires. The center conductor is made from premium solid or stranded tinned copper, which offers excellent electrical conductivity while remaining highly flexible. Surrounding the center conductor is a solid polyethylene (PE) dielectric layer that ensures precise, consistent spacing between the inner core and outer shields. This exact spacing is what keeps the cable’s impedance uniform, ensuring stable signal transmission even when the cable is flexed or routed through tight spaces.

The connector terminations feature heavy-duty brass shells finished with a durable, non-tarnishing nickel or gold plating. The N-Type Female bulkhead interface features internal contact points engineered for thousands of mating cycles without losing tension, while the SMA Female interface incorporates external threads and a precision-machined center receptacle designed for secure connection with standard SMA Male patches. Every connector joint is protected by a thick layer of adhesive-lined polyolefin heat shrink tubing, sealing the inner solder junctions against moisture, dust, and physical strain.

Double-Shielded Protection Against Electromagnetic Interference

Industrial settings are often filled with electromagnetic interference (EMI) and radio frequency interference (RFI) from power lines, heavy machinery, and nearby wireless devices. To block this ambient noise, this N-Type Female to SMA Female RG58 assembly features a comprehensive double-shielded design. By combining an inner aluminum foil wrap with a dense outer tinned copper braid shield, it provides up to 95% coverage, keeping out interfering signals and preventing data corruption on your critical communication lines.

Strategic Deployments Across Commercial & Industrial Networks

Thanks to its balanced flexibility, robust shielding, and reliable $50 \Omega$ match, the N-Type Female to SMA Female RG58 jumper is an essential component across many industries, including:

  • Cellular Router & Gateway Extensions: Connecting high-performance Cisco, Cradlepoint, or Teltonika routers to external outdoor antenna masts.
  • Industrial IoT Telemetry Modules: Linking compact modems inside weather-shielded control boxes to external high-gain omni antennas.
  • Cellular Signal Boosters & Amplifiers: Connecting building amplifiers to thick external antenna lines or interior distribution grids.
  • SDR & RF Lab Test Benches: Serving as a highly reliable, flexible patch line for connecting signal generators, spectrum analyzers, and software-defined radios.
  • Wireless Corporate Failover Systems: Ensuring robust, low-loss connections for secondary cellular backup systems in banks and retail stores.

Understanding Signal Loss and Attenuation Metrics

In high-frequency systems, all coaxial cables introduce some level of signal attenuation based on the frequency used and the overall length of the cable. RG58 is highly optimized for short-to-medium patch runs (typically under 15-20 feet) across common cellular and sub-GHz frequencies. When designing your system layout, it is helpful to review standard attenuation metrics to ensure your signal levels remain well within your equipment’s operating limits.

Technical Parameter / Frequency Engineering Value & Attenuation Metrics (per 10ft)
Product Core Keyword N-Type Female to SMA Female RG58 Coaxial Cable Assembly
System Nominal Impedance $50 \Omega$ Calibrated (Industry RF Standard)
Voltage Standing Wave Ratio (VSWR) $\le 1.35:1$ Maximum Across Targeted Bands
Connector Interface A N-Type Female Bulkhead (Nickel Plated Brass Threaded Fitting)
Connector Interface B SMA Female (Gold Plated Center Receptacle and External Threads)
Attenuation Profile @ 450 MHz ~ 0.9 dB Loss per 10 Feet of Cable Run
Attenuation Profile @ 900 MHz ~ 1.3 dB Loss per 10 Feet of Cable Run
Attenuation Profile @ 1800 MHz ~ 2.1 dB Loss per 10 Feet of Cable Run
Outer Jacket Composition Heavy-Duty Black Polyvinyl Chloride (PVC) Jacket
Operating Temperature Limits -40°C to +80°C Sustainable Working Environment

Field Installation Best Practices for System Technicians

  1. Respect the Minimum Bend Radius: Avoid kinking or forcing the cable into sharp 90-degree corners. Keep your bend radius above 2 inches to protect the internal dielectric layer and prevent changes in system impedance.
  2. Tighten Connections Properly: Thread the N-Type and SMA interfaces together smoothly by hand, then finish with a calibrated tool if required. Avoid overtightening with heavy pliers, which can crush the internal receptacle pins.
  3. Support Long Vertical Cable Runs: If your patch line hangs vertically down a wall or rack, secure it with cable ties every few feet to remove physical strain from your device ports.
  4. Apply Weatherproofing for Outdoor Connections: If the connectors are exposed to weather, wrap the mated joint with self-amalgamating rubber tape followed by vinyl tape to seal out moisture and prevent long-term corrosion.

Why Partner with OHM Cables for Your Communication Fleet

At OHM Cables, we understand that high-performance networks depend on every single connector and cable run. That is why we enforce strict quality control standards, completely avoiding the sub-standard materials and loose manufacturing tolerances common in cheap consumer alternatives. Every single N-Type Female to SMA Female RG58 assembly that leaves our facility undergoes rigorous testing with advanced vector network analyzers to verify perfect impedance matching, stable VSWR performance, and structural integrity. We rely on premium metals and rugged outer jackets to ensure our products deliver long-term, dependable service under real-world conditions for network professionals and system integrators alike.

Investing in a high-quality N-Type Female to SMA Female RG58 pack is a smart way to safeguard your overall hardware investment. By eliminating frequent connection drops, resolving unexplained latency spikes, and protecting your expensive modems against impedance imbalances, our products offer reliable peace of mind. Whether you are setting up a secure cellular failover line for a business storefront, connecting remote telemetry modules across a municipal utility grid, or building out a large-scale smart IoT network, this antenna bundle provides the high-fidelity performance your operations demand.

Frequently Asked Technical Questions (FAQ)

Can this RG58 cable assembly be used for high-band 5G or dual-band WiFi applications?

While this cable will physically connect to your devices, RG58 experiences higher signal attenuation at frequencies above $2.5\text{ GHz}$ (such as $5\text{ GHz}$ WiFi or high-band 5G). For very high-frequency setups or longer distances, we recommend using our ultra-low-loss LMR240 or LMR400 cable lines to preserve signal strength.

What is the difference between an SMA Female connector and an RP-SMA Female connector?

A standard SMA Female connector features external threads and an internal metal center receptacle, designed to receive standard cellular SMA Male patches. An RP-SMA (Reverse Polarity) connector changes this center layout and is typically used for consumer WiFi equipment. This N-Type Female to SMA Female RG58 assembly uses a standard SMA Female interface, making it ideal for cellular hardware lines.

Is the outer PVC jacket on this cable safe for outdoor routing?

Yes, the premium black PVC jacket is infused with UV stabilizers to protect the cable from sunlight damage during outdoor routing. However, for fully exposed or buried outdoor lines, we recommend running the cable through a conduit or checking out our direct-burial polyethylene (PE) lines.

Does this assembly require an external grounding block?

The cable itself does not require grounding, but if you are connecting it to a large outdoor antenna mast, we highly recommend installing an inline $50 \Omega$ lightning surge arrestor right before the cable enters the building to protect your indoor hardware.

Final Verdict for Infrastructure Systems Engineers

Do not let a low-quality stock antenna bottleneck your enterprise wireless infrastructure. The OHM Cables N-Type Female to SMA Female RG58 array delivers the structural durability, reliable $50 \Omega$ impedance consistency, and dependable omnidirectional coverage required to keep your data flowing smoothly in today’s connected environments. To complete your network configuration, explore our full catalog of premium Coaxial Cable Assemblies and heavy-duty RF Connectors. You can also review international telecommunication design standards by visiting the IEEE Official Resource Center to learn more about optimizing high-frequency RF layouts. Upgrade your network infrastructure with this reliable omnidirectional link today, and experience the true peak performance and rock-solid connection stability your system was built to deliver.

 

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