Waveguides
guide the propagation of electromagnetic, light or sound waves.
See Also: Millimeter Waveguides, Optical Waveguides
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Double Ridged Waveguide Horn
QRH400
Frequency range: 400 MHz - 6 GHz VSWR (max): < 2.3 :1Impedance: 50 O (Ohm)Connector: 2xN female Power (CW / Peak): 350 W / 350 W
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Waveguide Harmonic Mixer (smart mixer), 50 to 75 GHz
M1971V
Keysight M1971V 50 to 75 GHz waveguide harmonic mixer is an un-preselected mixer that provides a complete solution for wideband millimeter-wave signal analysis of more than 2 GHz with X-Series signal analyzers. Embedded smart features help you to greatly simplify your overall test setup and improve the DANL and TOI of your test system. Go smart with harmonic mixing for your millimeter-wave applications.
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Systems Integration for Circuit Card Assembly
Teledyne Advanced Electronic Solutions integrates CCAs and other sub-assemblies, cables and fabricated parts into system modules shipped directly to customers for integration into their products.- Box Build: custom built to order system solutions- High complexity box assemblies and subsystems- High frequency RF box assemblies and subsystems- Full functional RF testing up to 26 GHz (K band)- Multi-level systems integration – build and test modules and CCAs and integrate into higher level assemblies- Custom cell design for customer subsystems- Special bonding processes including thermal management and vibration- Robust torque and FOD control programs- System level testing including functional, vibration and thermal- Complex harness fabrication and integration- Fiber-Optic and RF waveguide integration and testing- Large system capacity in excess of 200 lbs.- Configure to order – Integrate different options, firmware, configurations, etc across a single order as required
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Waveguide Harmonic Mixer, 33 to 50 GHz
11970Q
The Keysight 11970Q waveguide mixer is a general-purpose harmonic mixer employing a dual-diode design to achieve flat frequency response and low conversion loss. These are achieved without external dc bias or tuning stubs. Manual operation and computer-controlled hardware operation are simplified because mixer bias and tuning adjustment are not required.
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Magic Tees
As part of our extensive waveguide portfolio, CAES offers a wide range of magic tees and hybrid tees to help add, subtract or divide signals in your designs.
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Waveguide Harmonic Mixer, 50 to 75 GHz
11970V
The Keysight 11970V waveguide mixer is a general-purpose harmonic mixer employing a dual-diode design to achieve flat frequency response and low conversion loss. These are achieved without external dc bias or tuning stubs. Manual operation and computer-controlled hardware operation are simplified because mixer bias and tuning adjustment are not required.
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Coaxial Waveguide Adapter, 1.0 mm (m), 50 to 75 GHz
V281D
The Keysight V281D is a 1-mm male to V-band waveguide adapter with a frequency range of 50 GHz to 75 GHz. The Keysight V281D is used with the Keysight 8510XF systems.
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Double Ridged Waveguide Horn
DRH818
Frequency range: 7.5 GHz - 18 GHz VSWR (max): < 1.18:1Impedance: 50 O (Ohm) Power (CW / Peak): 1 kW / 2.5 kW
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Waveguide Twists
Waveguide twists and bent types of waveguides are used extensively in electromagnetic devices. Twist waveguides are used to change the polarity of the fields. Waveguide twist VSWR is as low. Both 45° and 90° waveguide twists are available. The 45° versions being available in both right hand and left hand twist configurations.View more Twist Waveguides
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Integrated Rotating Systems
In a radar, for instance, the integrated Rotary Joint connects the moving part of the radar with the pedestal, enabling uninterrupted transfer of multiple media. This transmission can be a combination of RF signals in waveguides or coax channels, or multiple other needed transfers like cooling media, fiber optical signals, electrical signals and air. The design of this Integrated Rotating System is conducted in cooperation with the customer, resulting in a tailor-made product with low losses, high peak performance and compact physical dimensions. EVERAXIS’s extensive experience guarantees a product that has one of the longest lifespans in the market.
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Compact Loudspeakers
ULTRA-X40
The ULTRA-X40 brings the technology breakthroughs in our flagship LEO Family line arrays to a versatile, compact loudspeaker. Its innovative concentric-driver configuration couples two 8-inch cone drivers to a rotatable waveguide surrounding a 3-inch high-frequency compression driver, to deliver smooth response across its entire range and directional control down to 400 Hz.
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Waveguide and Coaxial Rotary Joint Assembly
Waveguide and Coaxial Rotary Joints are used for the transmission of power and signal between the locked and rotating parts of a radar or satcom system.
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GaN Amplifiers
SBP-3233831838-KFKF-E1-HR
Model SBP-3233831838-KFKF-E1-HR is a power amplifier with a typical small signal gain of 18 dB and a nominal Psat of +38 dBm across the frequency range of 32 to 38 GHz. The DC power requirement for the amplifier is +30 VDC/2 A. The mechanical configuration is an inline structure with K(F) connector as its input port and output port. Other port configurations, such as K connectors and WR-28 waveguides for either the input or output, are also available under different model numbers.
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Double Ridged Waveguide Horn
DRH18-EX
Frequency range: 800 MHz - 18 GHz VSWR (AVG): < 2.4:1Impedance: 50 O (Ohm)Connector: SMA female Power (CW / Peak): 100 W / 170 W
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Waveguide Power Sensor
R8486D
Excellent SWR for reducing mismatch uncertainty50 MHz calibration port Accurate calibration and traceability to US National Institute of Standards and Technology (NIST) millimeter-wave sensor calibration Compatible with EPM (new N1913A/ 14A, E4418B/ 19B), EPM-P (E4416A/ 17A) and P-series (N1911A/ 12A) power meters, plus the E1416A VXI and discontinued 70100A and 43X power meter Accurate average power measurements over -70 to -20 dBm Frequency range 26.5 GHz to 40 GHz Diode power sensing element
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Optical Fiber Cable Testing Equipment
Optical fiber consists of a core and a cladding layer, selected for total internal reflection due to the difference in the refractive index between the two. In practical fibers, the cladding is usually coated with a layer of acrylate polymer or polyimide. This coating protects the fiber from damage but does not contribute to its optical waveguide properties. Individual coated fibers then have a tough resin buffer layer and/or core tube(s) extruded around them to form the cable core. Several layers of protective sheathing, depending on the application, are added to form the cable. Rigid fiber assemblies sometimes put light-absorbing ("dark") glass between the fibers, to prevent light that leaks out of one fiber from entering another. This reduces cross-talk between the fibers, or reduces flare in fiber bundle imaging applications Optical fibers are very strong, but the strength is drastically reduced by unavoidable microscopic surface flaws inherent in the manufacturing process. The initial fiber strength, as well as its change with time, must be considered relative to the stress imposed on the fiber during handling, cabling, and installation for a given set of environmental conditions. There are three basic scenarios that can lead to strength degradation and failure by inducing flaw growth: dynamic fatigue, static fatigues, and zero-stress aging.
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Scalar Feed Horn Antennas
Scalar feed horns are offered as both standard and custom build models with either a circular or rectangular waveguide interface. While scalar feed horns with a rectangular waveguide interface can only support linear polarization, models with a circular waveguide interface can support various polarization types including horizontal, vertical, left-handed circular, and right-handed circular polarization for broader applications. The standard models operate across the full waveguide band and offer 17 dBi nominal gain, 25 degrees half power beamwidth and a -28 dB side lobe level at center frequency. The below standard offering covers the frequency range of 8.5 to 140 GHz. However, other frequencies or gain values are also available.
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Full W-Band Power Amplifier
SBP-7531142515-1010-E1
For communication and radar applications, SAGE Millimeter has released a new full W-Band power amplifier. Model SBP-7531142515-1010-E1 is a power amplifier with a typical small signal gain of 25 dB and a nominal output power of +15 dBm across the frequency range of 75 to 110 GHz. The DC power requirement for the amplifier is +15 VDC/190 mA. The mechanical configuration offers an in-line structure with WR-10 waveguides and UG-387/U-M flanges. Other port configurations, such as with 1 mm connectors or a right angle structure with WR-10 waveguides, are also available under different model numbers. Features include: Full Band, High Gain, High Output Power.
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Waveguide Harmonic Mixers (Smart Mixers), 55/60 to 90 GHz
M1971E
Keysight M1971E 55/60 to 90 GHz waveguide harmonic mixers is an un-preselected mixer provides a complete solution for wideband millimeter-wave signal analysis of more than 2 GHz with X-Series signal analyzers. Smart features are embedded to help you to greatly simplify your overall test setup and improve the DANL and TOI of your test system. Go smart with harmonic mixing for your millimeter-wave applications.
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Solid State Power Amplifier Module
SSPA
Macom Technology Solutions Holdings Inc.
MACOM’s Solid State Power Amplifier (SSPA) and waveguide module product portfolio leverages our world class MMIC technology and system design expertise for high performance Industrial, Aerospace, Defense, and Communications applications. Our SSPA modules feature up to 16 power-combined MMICs in a single module and we can power-combine multiple modules up to 100GHz featuring either coaxial or waveguide interfaces.
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Waveguide Bends
Fairview Microwave’s lines of precision waveguide bends are widely used in applications such as high efficiency RF, microwave and mm-wave transmissions, satellite and military communications, radar, telecom, instrumentation and test benches. In waveguide systems that require a signal to turn or bend 90 degrees, Fairview’s waveguide bends are used to facilitate that bend or turn without degrading the transmission signal. These WG bends operate from 5.85 GHz to 90 GHz across 12 frequency bands and are available in sizes from WR-12 to WR-137. This family of waveguide bends also boast low loss and VSWR as low as 1.08:1 and are available in both E-plane and H-plane configurations. They are constructed using gold plated, oxygen free hard copper (OFHC) or painted copper alloy depending on the model and are also offered with either a UG-style flange per the military standard or a CPR-style flange. Many models are RoHS compliant.
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Microwave Testing
140
The PICOPROBE® MODEL 140, a high performance microwave probe which incorporates a WR-8 waveguide with our patented coaxial design techniques, has inherent low loss and low dispersion characteristics.
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Waveguide Bend
DWG8-WR-2C36.5-2561
Waveguide E-Plan Bend, Frequency 325~500GHz, VSWR 1.3:1, FUGP Flange
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Band Pass Filters
High-Pass (HPF series), Low Pass (LPF series) and Band Pass (BPF series) Filters are available, providing desired skirt selectivity and rejection levels with minimum insertion loss in the pass band. The filters are offered in all standard waveguide bands covering 18 to 400 GHz depending on our possibility to fulfil the customers' requirements. Dimensions of filters depends on required specifications. .





























