IMPULSE TECHNOLOGIES / COMPANY TECHNICAL POST WAVEGUIDE · COAX · WR SIZE · FLANGE · VSWR · RF POWER · REFERENCE PLANE

RF INTERFACE FUNDAMENTALS

WHAT IS A
WAVEGUIDE-COAX
ADAPTER?

A waveguide-to-coax adapter is an RF transition that lets energy move between rectangular waveguide and a coaxial transmission line. It converts the field structure of the waveguide into a coaxial mode while maintaining a controlled impedance match across a defined microwave frequency band.

DEFINITION

ONE DEVICE.
TWO TRANSMISSION
MEDIA.

Rectangular waveguide and coaxial cable carry electromagnetic energy differently. A waveguide-coax adapter is the engineered transition between those two structures. Its job is not simply mechanical fit: it must also preserve RF performance over the required band.

WAVEGUIDE SIDE

Rectangular WR interface

The waveguide side is defined by WR size, frequency band and flange geometry.

TRANSITION

Converts field structure

The internal geometry couples the waveguide field into the coaxial center conductor and outer conductor structure.

COAX SIDE

Connectorized 50 Ω interface

Common outputs include Type N, SMA and 2.92 mm connectors, depending on frequency and model.

RF PERFORMANCE

Match and power still matter

VSWR, insertion loss, connector selection and RF power handling determine whether the transition is suitable.

IT IS NOT JUST A CONNECTOR ADAPTER.

A waveguide-to-coax adapter changes transmission structure and electromagnetic mode. The transition must be designed for a specific waveguide band and RF interface rather than treated as a generic mechanical reducer.

HOW IT WORKS

FROM WAVEGUIDE
FIELD TO COAXIAL
CURRENT.

The internal transition is shaped so that RF energy in the supported waveguide mode couples efficiently into the coaxial transmission line. The exact geometry varies by design, but the engineering goal is the same: low reflection, controlled loss and predictable performance across the specified frequency range.

01WAVEGUIDE MODEenergy propagates in the rectangular guide
02COUPLING REGIONthe transition samples and redirects the field
03COAXIAL MODEenergy leaves through the center conductor / shield structure
04TEST SYSTEMconnect to cable, instrument, amplifier or other coaxial hardware
MODE CONVERSION

The electromagnetic field changes form

The adapter must transfer energy between two different transmission structures without exciting excessive unwanted behavior.

IMPEDANCE MATCH

The transition should not create a large reflection

VSWR or return loss is used to describe how well the transition is matched across frequency.

INSERTION LOSS

Some RF power is lost in every real transition

Loss comes from conductor loss, connector loss and imperfect conversion through the transition.

REFERENCE PLANE

The adapter becomes part of the measurement path

In VNA and system tests, decide whether the adapter is included in the DUT result or de-embedded from the reference plane.

WHAT MUST MATCH

THE RIGHT ADAPTER
HAS SIX BASIC
DECISIONS.

Selection starts with frequency and WR size, but a mechanically compatible adapter can still be electrically wrong. The waveguide, flange, coax connector, VSWR requirement, orientation and RF power should all be defined before release.

01Frequency range

State the complete operating band, not only a center frequency.

02Waveguide size

WR size must support the required microwave band.

03Flange

CPRF, Cover or another required flange must mate mechanically.

04Coax connector

Type N, SMA or 2.92 mm selection depends on frequency and system interface.

05VSWR / loss

Confirm the RF match and insertion-loss limit across the full band.

06RF power

Use the correct CW, average, peak and pulsed requirements for the application.

INTERACTIVE IMPULSE MODEL EXPLORER

CHOOSE A WR BAND.
SEE THE INTERFACE.

The current Impulse family spans WR650 through WR28. Use the selector below to see the current catalog frequency, maximum VSWR, standard flange and available coax connector for each listed model.

WR90
90°
SMA-F
MODELWGC90A-F6-C1-ITI
WAVEGUIDEWR90
FREQUENCY8.20–12.4 GHz
VSWR MAX.1.15:1
FLANGECOVER
COAX OUTPUTSMA-F

Catalog values shown here are taken from the current Impulse WG-Coax product table. Verify the individual model page or datasheet before design release.

FREQUENCY + WR SIZE

WAVEGUIDE SIZE
DEFINES THE BAND.

Rectangular waveguide is standardized by internal cross-section. The WR designation changes with frequency: lower-frequency guides are physically larger, while higher-frequency guides become progressively smaller.

WR650–WR229

1.12–4.90 GHz

Larger physical waveguide, commonly paired with Type N or SMA coax interfaces depending on model.

WR187–WR90

3.95–12.4 GHz

Includes widely used C- and X-band ranges with Type N and SMA options in the current family.

WR75–WR51

10.0–22.0 GHz

Current standard models transition primarily to SMA-F interfaces.

WR42–WR28

18.0–40.0 GHz

Higher-frequency current models use 2.92 mm-F coaxial interfaces.

LOWER FREQUENCY WR650
1.12 GHz 10 GHz 20 GHz 30 GHz 40 GHz
HIGHER FREQUENCY WR28

VSWR + RF POWER

MECHANICAL FIT
IS ONLY HALF THE
REQUIREMENT.

An adapter can bolt together correctly and still be the wrong RF part. Match, power and connector frequency capability determine whether the transition is appropriate for the actual signal path.

VSWR

Match controls reflected power

Lower VSWR means less power reflected by the transition. Use the model-specific maximum across the operating band.

CW / AVERAGE POWER

Heating accumulates over time

Continuous or average power is limited by connector, conductor, transition geometry and thermal conditions.

PEAK POWER

Short pulses can stress the transition differently

Peak rating should be checked separately from average power when the source is pulsed.

CURRENT IMPULSE GENERAL POWER GUIDANCE

The current product page lists Type N-F configurations at 200 W typical and 3 kW peak, while SMA-F / 2.92 mm-F configurations are listed at 50 W typical with 1–3 kW peak general guidance. Model-specific limits should still be checked before release.

COMMON APPLICATIONS

WHY ENGINEERS USE
WG-COAX ADAPTERS.

The adapter is useful whenever a waveguide component, antenna or subsystem must connect to coaxial instrumentation or another connectorized RF path.

VNA MEASUREMENT

Connect waveguide hardware to coaxial ports

Useful for S-parameter measurement when the calibration and reference plane are defined correctly.

ANTENNA TEST

Feed standard gain horns from coaxial instruments

An attached or separate transition can connect coaxial test equipment to a waveguide-fed antenna.

AMPLIFIER / RECEIVER

Bridge waveguide and connectorized RF stages

Useful when neighboring subsystems use different physical transmission media.

RADAR / EW TEST

Interface waveguide modules with lab equipment

Supports test setups where waveguide front ends must connect to coaxial sources, loads or receivers.

CALIBRATION

Define a repeatable transition in the measurement chain

Characterize or de-embed the adapter when high-accuracy measurement requires a different electrical reference plane.

SYSTEM INTEGRATION

Resolve incompatible RF interfaces

Use a properly specified transition when system architecture mixes waveguide and coaxial components.

IMPULSE WG-COAX ADAPTERS

WR650 TO WR28.
1.12 TO 40 GHz.

The current Impulse family consists of right-angle waveguide-to-coax adapters spanning WR650 through WR28. Standard models use CPRF or Cover flanges and Type N-F, SMA-F or 2.92 mm-F coaxial interfaces depending on waveguide size.

RIGHT-ANGLE FORMAT

Compact 90° transition

The current standard family is built around right-angle waveguide-to-coax geometry.

FLANGES

CPRF + Cover

Standard flange type depends on the selected waveguide band and model.

COAX CONNECTORS

Type N-F / SMA-F / 2.92 mm-F

Connector availability changes with operating frequency and waveguide size.

BODY

Aluminum / brass

The current product page lists aluminum/brass body construction for the family.

VSWR

Model-specific maximum

Current catalog values range by band and model; verify the exact part before design release.

FREQUENCY

1.12–40 GHz

The family covers the full current WR650 through WR28 rectangular-waveguide range.

IMPULSE TECHNOLOGIES / IN-HOUSE RF HARDWARE

COMPARE THE CURRENT
WG-COAX ADAPTER FAMILY.

TECHNICAL FAQ

WAVEGUIDE-COAX
ADAPTER QUESTIONS.

These answers cover the basic RF and mechanical decisions behind selecting a waveguide-to-coax transition.

What is a waveguide-coax adapter?+

A waveguide-coax adapter is an RF transition that couples electromagnetic energy between a rectangular waveguide and a coaxial transmission line over a defined frequency range.

Why can't I choose a waveguide-coax adapter by connector type alone?+

The adapter must also match the waveguide size, operating band, flange, RF power and required VSWR or insertion-loss performance.

What does WR90 mean on a waveguide adapter?+

WR90 identifies a rectangular waveguide size commonly used from 8.20 to 12.4 GHz in the current Impulse standard adapter family.

What coax connectors are used on waveguide adapters?+

The current Impulse family uses Type N-F, SMA-F and 2.92 mm-F connectors, depending on waveguide size and operating frequency.

Why does VSWR matter on a waveguide-to-coax transition?+

VSWR describes mismatch at the transition. A higher mismatch reflects more RF power instead of delivering it through the adapter.

Can a waveguide-to-coax adapter affect VNA measurements?+

Yes. The adapter has its own insertion loss, phase delay and mismatch. If it sits outside the calibrated reference plane, those effects are included in the measured network unless the adapter is characterized and de-embedded.

What waveguide-to-coax adapters does Impulse Technologies offer?+

The current Impulse family spans WR650 through WR28 from 1.12 to 40 GHz with right-angle transitions, CPRF or Cover flanges, and Type N-F, SMA-F or 2.92 mm-F coax interfaces depending on model.