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RG400 Cable Double Shield: Construction, Performance & Uses

RG400 Cable Double Shield is a high-performance flexible coaxial cable designed for reliable transmission of radio frequency signals in demanding communication, aerospace, defense, instrumentation, and electronic systems. Its double-shield construction provides improved protection against electromagnetic interference (EMI), radio frequency interference (RFI), and unwanted signal leakage compared with many conventional single-shield coaxial cables.

The combination of a stranded center conductor, low-loss dielectric, dual shielding layers, and protective outer jacket allows RG400 Cable Double Shield to provide a useful balance between electrical performance, mechanical flexibility, durability, and shielding effectiveness.

RG400 is commonly selected for applications where the cable needs to withstand movement, vibration, temperature variation, and demanding installation conditions while maintaining a controlled RF transmission path.

This guide explains the construction, performance characteristics, specifications, applications, advantages, connector options, installation considerations, and selection criteria of RG400 Cable Double Shield.

What Is RG400 Cable Double Shield?

RG400 Cable Double Shield is a 50-ohm flexible coaxial RF cable that uses two layers of metallic shielding around the dielectric.

The double-shield construction is designed to reduce electromagnetic interference and improve isolation between the RF signal carried by the cable and the surrounding electrical environment.

A typical RG400 cable construction consists of:

  • Center conductor

  • Dielectric insulation

  • First metallic shield

  • Second metallic shield

  • Outer protective jacket

The exact materials and construction details can vary between manufacturers, so the manufacturer's technical datasheet should be checked for final product specifications.

Why Is RG400 Cable Double Shield Important?

RF systems can be affected by external electromagnetic fields generated by motors, power supplies, switching circuits, transmitters, digital electronics, and other communication equipment.

If a cable does not provide adequate shielding, unwanted interference can enter the signal path. Similarly, RF energy carried inside the cable can leak into nearby circuits.

The RG400 Cable Double Shield construction provides additional electromagnetic isolation by using two shield layers.

This makes it useful for systems where:

  • EMI protection is important

  • RF signal integrity must be maintained

  • Cable routing passes near electrical equipment

  • Multiple RF cables are installed together

  • Equipment operates in electrically noisy environments

  • Reliable signal transmission is required

Construction of RG400 Cable Double Shield

The performance of RG400 Cable Double Shield depends on the construction and quality of each individual layer.

Center Conductor

The center conductor carries the RF signal through the cable.

RG400 is commonly manufactured with a stranded copper-based center conductor. Stranded construction provides greater flexibility than a solid conductor and allows the cable to withstand repeated positioning and routing more effectively.

The conductor influences:

  • Electrical resistance

  • Signal attenuation

  • Power handling

  • Flexibility

  • Temperature performance

Depending on the product construction, the conductor may use silver-plated materials to improve high-frequency electrical performance and corrosion resistance.

Dielectric

The dielectric surrounds the center conductor and electrically separates it from the shielding system.

PTFE is commonly associated with RG400 constructions because of its low dielectric loss and strong temperature characteristics.

The dielectric affects:

  • Characteristic impedance

  • Capacitance

  • Velocity factor

  • Signal propagation

  • Insertion loss

  • Temperature stability

Maintaining a consistent distance between the center conductor and shielding is essential for controlling the cable's impedance.

First Shield

The first shielding layer surrounds the dielectric.

A metallic braid is commonly used as one of the shielding layers.

Its primary functions include:

  • Reducing electromagnetic interference

  • Preventing RF leakage

  • Providing an electrical return path

  • Protecting the internal signal conductor

Second Shield

The second metallic shield provides an additional barrier against electromagnetic interference.

The dual-shield configuration is particularly useful in environments where high shielding effectiveness is required.

Compared with a single-shield cable, a double-shield configuration can provide improved isolation when appropriately designed and terminated.

Outer Jacket

The outer jacket protects the internal cable construction against mechanical and environmental conditions.

Typical jacket materials are selected according to the application's:

  • Temperature requirements

  • Flexibility requirements

  • Chemical exposure

  • Abrasion resistance

  • Environmental conditions

RG400 Cable Double Shield Specifications

Exact specifications vary between manufacturers, but common RG400 characteristics include the following.

Specification

Typical RG400 Characteristics

Cable Type

Flexible Coaxial RF Cable

Characteristic Impedance

50 Ohms

Nominal Cable Size

Approximately 0.195 inch

Shielding

Double Shield

Center Conductor

Stranded Copper-Based Conductor

Dielectric

PTFE

Outer Jacket

Temperature-Resistant Protective Jacket

Frequency Capability

RF and Microwave Applications

Construction

Flexible

Applications

Aerospace, Defense, RF, Instrumentation

Connector Options

SMA, TNC, N-Type, BNC and others

Actual electrical and mechanical specifications should always be verified against the specific manufacturer's datasheet.

Characteristic Impedance of RG400 Cable

RG400 is generally designed with a 50-ohm characteristic impedance.

Maintaining 50-ohm impedance is important in RF systems because it helps minimize signal reflections and ensures compatibility with other 50-ohm components.

Typical 50-ohm RF systems include:

  • Wireless communication

  • RF test equipment

  • Radar

  • Satellite communication

  • Aerospace electronics

  • Defense electronics

  • Antenna systems

Using a 50-ohm RG400 cable in a properly matched RF system helps maintain signal integrity throughout the transmission path.

Frequency Performance

The usable frequency range of RG400 depends on cable construction, connector selection, cable length, installation conditions, and required performance.

RG400 is widely used for RF applications extending into the microwave frequency range.

As frequency increases, cable attenuation generally increases. Therefore, engineers should evaluate attenuation at the actual operating frequency rather than selecting a cable solely by its RG designation.

Important parameters include:

  • Frequency range

  • Insertion loss

  • Return loss

  • VSWR

  • Connector performance

  • Cable length

  • Temperature

Shielding Performance of RG400 Cable Double Shield

One of the primary advantages of RG400 Cable Double Shield is its dual-layer shielding.

Shielding effectiveness describes how well a cable prevents electromagnetic energy from entering or leaving the cable.

A double-shield construction can provide improved protection against:

  • External RF interference

  • Electromagnetic noise

  • Digital switching noise

  • Crosstalk

  • Signal leakage

  • Electrical interference

However, overall shielding performance also depends on connector design, termination quality, cable construction, frequency, and installation.

RG400 Cable Double Shield Performance

Low Signal Loss

RG400 is designed for efficient RF signal transmission while maintaining a practical balance between flexibility and electrical performance.

Cable loss depends on frequency and length, so shorter cable runs are generally preferred where signal loss is critical.

Excellent EMI Protection

The double-shield configuration provides additional protection against unwanted electromagnetic energy.

Flexible Construction

Unlike semi-rigid cables, RG400 can be routed around equipment and through confined spaces.

Stable Impedance

Its controlled coaxial construction helps maintain a consistent 50-ohm transmission path.

Temperature Resistance

RG400 constructions are commonly selected for applications requiring better temperature performance than ordinary commercial coaxial cables.

Mechanical Reliability

The flexible construction makes RG400 suitable for equipment where cables may experience vibration or installation movement.

Key Features of RG400 Cable Double Shield

Important features include:

  • 50-ohm impedance

  • Double shielding

  • Flexible construction

  • High-frequency capability

  • Good EMI protection

  • Reliable signal transmission

  • PTFE dielectric construction

  • Stranded center conductor

  • High-temperature capability

  • Good mechanical durability

  • Wide connector compatibility

  • Suitable for demanding RF environments

Applications of RG400 Cable Double Shield

Aerospace Applications

RG400 Cable Double Shield is widely used in aerospace electronics where reliable RF connectivity, temperature resistance, and mechanical durability are important.

Applications include:

  • Aircraft communication

  • Navigation systems

  • Avionics

  • RF instrumentation

  • Radar equipment

  • Satellite electronics

Defense and Military Electronics

Military systems often operate in electrically complex environments where shielding and reliable signal transmission are important.

RG400 can be used in:

  • Military communication systems

  • Radar equipment

  • Electronic warfare systems

  • RF receivers

  • RF transmitters

  • Tactical communication equipment

RF Test and Measurement

RG400 is useful in test environments where flexible RF connections are needed.

Applications include:

  • Spectrum analyzers

  • Signal generators

  • Network analyzers

  • RF test fixtures

  • Laboratory equipment

  • Calibration systems

Telecommunications

RG400 Cable Double Shield can be used within communication equipment and RF infrastructure.

Applications include:

  • Wireless communication equipment

  • RF modules

  • Cellular systems

  • Antenna systems

  • Signal distribution equipment

Industrial Electronics

Industrial environments can contain significant electromagnetic noise generated by motors, switching equipment, power electronics, and automation systems.

Double-shielded RF cables can help provide additional protection for sensitive RF signals.

Medical Electronics

Precision medical and laboratory systems may require controlled RF signal connections with reliable shielding and temperature performance.

Potential applications include:

  • RF diagnostic equipment

  • Medical instrumentation

  • Laboratory systems

  • Imaging equipment

RG400 Cable Double Shield Connector Options

The cable can be terminated with various RF connectors according to application requirements.

SMA Connector

SMA is one of the most common connectors used with small-diameter RF cables.

It is widely used in:

  • RF modules

  • Test equipment

  • Wireless systems

  • Microwave assemblies

N-Type Connector

N-Type connectors are widely used in communication and antenna systems.

They provide a robust threaded connection suitable for many outdoor and industrial RF applications.

TNC Connector

TNC connectors use a threaded coupling mechanism and are suitable for RF applications where a secure connection is required.

BNC Connector

BNC connectors are commonly used in laboratory and test equipment because of their convenient bayonet coupling mechanism.

Other RF Connectors

Depending on the application, RG400 can also be terminated with connectors such as:

  • 2.92 mm

  • 2.4 mm

  • SMB

  • SMC

  • MCX

  • MMCX

  • 7/16 DIN

Connector selection should consider frequency, impedance, power, environmental requirements, and mechanical compatibility.

RG400 Cable Assembly

An RG400 cable assembly combines the RG400 Cable Double Shield with one or more RF connectors.

A customized assembly can be manufactured according to:

  • Cable length

  • Connector type

  • Connector gender

  • Straight connector

  • Right-angle connector

  • Connector orientation

  • Boot or strain relief

  • Electrical performance requirements

Custom assemblies reduce installation time and eliminate the need for field termination in many applications.

RG400 Straight Cable Assembly

Straight connectors extend directly along the cable axis.

They are suitable when:

  • Space is available behind the connector

  • Straight cable routing is preferred

  • Equipment has rear-facing RF ports

RG400 Right-Angle Cable Assembly

Right-angle connectors turn the RF connection approximately 90 degrees.

They are useful when:

  • Installation space is limited

  • Cable routing needs to turn immediately

  • Equipment has closely spaced RF ports

  • Mechanical clearance is restricted

RG400 Cable Double Shield vs Single Shield Cable

Feature

RG400 Double Shield

Single Shield RF Cable

Shield Layers

Two

One

EMI Protection

Higher

Application Dependent

Signal Isolation

Excellent

Good

Flexibility

High

High

RF Applications

Wide

Wide

Noise Protection

Enhanced

Standard

Installation

Flexible

Flexible

Actual shielding effectiveness depends on the specific cable construction and termination.

RG400 Cable Double Shield vs RG58

Feature

RG400

RG58

Impedance

Typically 50 Ohms

Typically 50 Ohms

Shielding

Double Shield

Construction Dependent

Dielectric

Typically PTFE

Commonly Polyethylene

Temperature Capability

Generally Higher

Generally Lower

Flexibility

Flexible

Flexible

High-Temperature Applications

Suitable

More Limited

RF Applications

Demanding RF Systems

General RF Applications

RG400 is commonly selected when higher temperature performance, improved shielding, and demanding RF requirements are important.

Advantages of RG400 Cable Double Shield

Improved Electromagnetic Protection

The dual-shield construction provides additional protection against external interference.

High Temperature Capability

PTFE-based construction allows RG400 to be used in applications where temperature resistance is important.

Flexible Installation

The cable can be routed around equipment and through compact installations.

Reliable RF Transmission

Controlled impedance and coaxial construction support consistent RF signal transmission.

Excellent Mechanical Performance

RG400 can withstand demanding installation and operational environments when correctly specified.

Wide Application Range

The cable can be used across aerospace, defense, telecommunications, instrumentation, industrial, and laboratory applications.

Limitations of RG400 Cable Double Shield

Despite its advantages, RG400 is not suitable for every application.

Potential limitations include:

  • Higher cost than basic coaxial cables

  • Greater diameter than some miniature RF cables

  • Attenuation increases with frequency and length

  • Improper connector termination can reduce performance

  • Repeated extreme bending can damage the cable

  • Not all RG400 products have identical specifications

How to Choose the Right RG400 Cable Double Shield

Selecting the appropriate RG400 Cable Double Shield requires consideration of the complete RF system.

Check Frequency

Confirm that the cable supports the required operating frequency.

Check Impedance

RG400 is generally a 50-ohm cable.

Evaluate Cable Length

Longer cables introduce more attenuation.

Check Shielding Requirements

For electrically noisy environments, verify the manufacturer's shielding effectiveness.

Select the Correct Connector

Ensure the connector is compatible with the equipment and frequency range.

Check Temperature

Confirm the cable's minimum and maximum operating temperatures.

Consider Mechanical Requirements

Evaluate flexibility, installation space, bend radius, vibration, and movement.

Check Power Handling

Verify power capability at the actual operating frequency and environmental conditions.

Installation Guidelines

Correct installation helps preserve the performance of RG400 Cable Double Shield.

Avoid excessive bending.

Do not sharply kink the cable.

Avoid crushing the cable.

Do not pull directly on connectors.

Use suitable connector torque.

Keep mating surfaces clean.

Avoid unnecessary cable length.

Provide proper strain relief.

Follow the manufacturer's minimum bend radius.

Maintenance of RG400 Cable

RG400 Cable Double Shield generally requires limited maintenance, but periodic inspection is useful in mission-critical RF systems.

Check for:

  • Damaged outer jackets

  • Connector damage

  • Loose connections

  • Corrosion

  • Excessive bending

  • Cable deformation

  • Contamination

  • Signs of overheating

For precision systems, cable assemblies can also be tested periodically for insertion loss, return loss, and VSWR.

Factors That Affect RG400 Cable Performance

Several factors can influence cable performance.

Frequency

Higher frequencies generally result in greater attenuation.

Cable Length

Longer cables produce greater insertion loss.

Temperature

Temperature changes can influence electrical and mechanical characteristics.

Connector Quality

Poor connector installation can significantly degrade system performance.

Bending

Excessive bending can alter cable geometry and affect impedance.

Shield Termination

The shielding system must be properly terminated to achieve the intended EMI performance.

RG400 Cable Double Shield for High-Frequency Applications

High-frequency RF systems require controlled transmission paths because small impedance variations can create measurable reflections.

RG400 provides a practical combination of:

  • Flexible construction

  • Double shielding

  • Controlled impedance

  • Temperature resistance

  • RF compatibility

  • Mechanical durability

This makes it useful for connecting antennas, RF modules, transmitters, receivers, filters, amplifiers, and test equipment.

RG400 Cable Double Shield for Aerospace and Defense

Aerospace and defense systems often require RF cables capable of operating under demanding environmental and mechanical conditions.

The combination of flexible construction, double shielding, and temperature-resistant materials makes RG400 suitable for various applications where cable reliability and RF isolation are important.

Typical applications include:

  • Avionics

  • Radar

  • Communications

  • Navigation

  • RF instrumentation

  • Defense electronics

  • Electronic warfare equipment

The exact suitability depends on the required qualification standards and environmental specifications.

RG400 Cable Double Shield for RF Laboratories

RF laboratories frequently require cables that can be connected and disconnected repeatedly while maintaining reliable electrical performance.

RG400 can be used in:

  • RF test benches

  • Network analyzer setups

  • Signal generator connections

  • Spectrum analyzer connections

  • Calibration equipment

  • Prototype development

Connector quality is particularly important in laboratory applications because repeated mating can affect RF performance.

Why Choose RG400 Cable Double Shield?

RG400 Cable Double Shield provides a combination of flexibility, shielding, temperature resistance, and RF performance that makes it suitable for demanding RF environments.

Its double-shield construction is particularly useful where electromagnetic interference and signal isolation are important considerations.

For engineers designing RF equipment, choosing the appropriate RG400 construction and connector combination can help establish a reliable RF transmission path while supporting mechanical and environmental requirements.

Conclusion

RG400 Cable Double Shield is a flexible 50-ohm RF coaxial cable designed for demanding signal transmission applications. Its double-shield construction provides enhanced protection against electromagnetic interference, while its PTFE-based construction and flexible design make it suitable for environments requiring reliable electrical and mechanical performance.

The cable is widely applicable in aerospace, defense, telecommunications, RF test and measurement, industrial electronics, medical instrumentation, and other specialized RF systems.

When selecting RG400 Cable Double Shield, engineers should evaluate frequency, impedance, attenuation, shielding effectiveness, connector type, power handling, temperature rating, cable length, and mechanical requirements. Proper installation and connector termination are equally important for achieving the intended performance.

Frequently Asked Questions About RG400 Cable Double Shield

1. What is RG400 Cable Double Shield?

RG400 Cable Double Shield is a flexible 50-ohm coaxial RF cable featuring two shielding layers around the dielectric. It is designed for reliable RF signal transmission and improved electromagnetic protection.

2. What is RG400 Cable Double Shield used for?

RG400 Cable Double Shield is used in aerospace, defense, telecommunications, RF test equipment, instrumentation, industrial electronics, medical equipment, and communication systems.

3. Is RG400 a 50-ohm cable?

Yes. RG400 is generally designed as a 50-ohm coaxial cable for RF and microwave applications.

4. What is the advantage of double shielding in RG400?

Double shielding provides an additional barrier against electromagnetic interference and can improve signal isolation compared with many single-shield cable constructions.

5. What material is used in RG400 cable?

RG400 constructions commonly use a copper-based center conductor, PTFE dielectric, metallic shielding, and a protective outer jacket. Exact materials can vary by manufacturer.

6. Is RG400 cable flexible?

Yes. RG400 is a flexible coaxial cable and is more suitable for routed installations and equipment connections than semi-rigid cable.

7. Can RG400 Cable Double Shield be used at high temperatures?

RG400 is commonly used in applications requiring higher temperature performance than many general-purpose coaxial cables. The exact temperature range should be confirmed from the product datasheet.

8. What connectors can be used with RG400?

RG400 cable assemblies can be terminated with SMA, N-Type, TNC, BNC, SMB, SMC, MCX, MMCX, and other RF connectors depending on the application.

9. What is the difference between RG400 and RG58?

Both are generally 50-ohm RF cables, but RG400 is commonly associated with PTFE dielectric construction, higher temperature capability, and double-shield configurations, while RG58 is widely used as a general-purpose RF coaxial cable.

10. Is RG400 suitable for aerospace applications?

RG400 can be used in aerospace applications where its electrical, mechanical, temperature, and qualification requirements match the system specifications.

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