Waveguides
guide the propagation of electromagnetic, light or sound waves.
See Also: Millimeter Waveguides, Optical Waveguides
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Waveguides
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A waveguide attenuator is an RF device specifically designed to reduce the power of a signal without affecting or reducing the waveform of the signal.
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Waveguides
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Learn about waveguides at Precision MMW. This is a handy waveguide tutorial for the everyday mmWave engineer.Learn more on Waveguides at Precision website here.
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Waveguides
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CAES offers a full range of rectangular (WR-22 to WR430) and double-ridge (WRD-180 to WR430) waveguides covering frequency bands from a few hundred MHz to 100 GHz.
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Ferrites and Waveguides
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Wide range of Ferrite Devices Waveguide products for a variety of commercial, defence and space applications. The breadth of products includes devices operating from 1.0 to 52.0 GHz and includes isolators and circulators, combiners, transitions and terminations. Power combiners & dividers, Iso-adapters, WG loads, Isolators & circulators are offered in drop in, connectorized and micro-strip versions.
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Passive Waveguide Components
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We cover all kinds of connections between waveguide, coaxial, micro-strip and co-planar lines. Filters are available in waveguide technology as well as in stripline/micro-strip. Passive structures such as power splitter, power combiner, ortho-mode transducer and hybrids mostly are designed to meet the specific goals of the customer.
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Personal Computer Aided Antenna Design
PCAAD 7.0
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Antenna Design Associates, Inc.
PCAAD 7.0 is a Windowscompatible antenna analysis, modeling, and design software package. It contains more than 50 routines treating wire antennas, aperture antennas, microstrip antennas, arrays, transmission lines and waveguides, and more. These routines are integrated into a menudriven, userfriendly system allowing you to quickly evaluate the performance of a wide variety of antenna types. PCAAD 7.0 includes a 120-page printed user manual which describes the use of the software, provides examples for each of the routines, and lists technical references.
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Waveguide Switches
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With over 70 years of RF experience, EVERAXIS specializes in designing the most demanding Waveguide Switches in extremely complex systems, including in low quantities.
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Double Ridged Waveguide Horn
DRH50
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Frequency range: 4.5 GHz - 50 GHz VSWR (max): < 1.55:1Impedance: 50 O (Ohm)Connector: 2.40mm female Power (CW / Peak): 10 W / 20 W
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TDR Structural Health Monitoring
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Material Sensing & Instrumentation
MSI Time-Domain-Reflectometry (TDR) Structural-Health Monitoring probes the structural health of a composite part by propagating a fast electrical pulse along a distributed linear sensor which has been fabricated directly in the laminate. The sensor is formed from the native graphite fibers already used in composite manufacture, and constitutes zero defect. Fibers are patterned into a microwave waveguide geometry, or transmission line, and interrogated by a rapid pulse as shown below. Structural faults along the line cause distortions in waveguide geometry, producing reflected pulses similar to radar. Cracking, delamination, disbonds, moisture penetration, marcelling, and strain are all detected by propagation delay, for sensor lengths up to several meters.
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Double Ridged Waveguide Horn
QRH40
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Frequency range: 4 GHz - 40 GHz VSWR (max): < 2.4:1Impedance: 50 O (Ohm)Connector: 2xK female Power (CW / Peak): 10W / 20 W
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V-Band Low Noise Amplifier 50 to 75 GHz, 35 dB Gain, 5 dB NF
SBL- 5037533550-1515-E1
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50 to 75 GHz, 35 dB Gain, 5 dB Noise Figure V Band Low Noise Amplifier for IEEE 802.11.ad WiGig. Model SBL-5037533550-1515-E1 is a low noise amplifier with a typical small signal gain of 35 dB and a nominal noise figure of 5 dB across the frequency range of 50 to 75 GHz. The DC power requirement for the amplifier is +8 VDC/150 mA. The mechanical configuration offers an in-line structure with WR-15 waveguides and UG-385/U flanges.
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Waveguide Power Sensor
R8486D
Power Sensor
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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Fixed Attenuator (Waveguide)
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RF Lambda’s fixed waveguide attenuators are used to attenuate RF signals with a waveguide interface. They come in a variety of different frequencies and power levels depending on the application.
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E Bend Waveguide
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E-plane waveguide bends are sections of high-precision crafted waveguides and shaped to either 30º, 45º ,60º, or 90º angles for e-plane needs. It directs the radio frequency beam and “bends” the signal to go the direction you want. Think of it like Tokyo drifting around a corner in your car. Precision MMW will help you with the highest quality E bend waveguides. We are a millimeter wave spectrum manufacturer of various active and passive mmWave products and sub-system engineering.View more E Bend Waveguide
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Lens Corrected Antennas
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Lens corrected antennas are offered with either a circular or rectangular waveguide interface. While lens corrected antennas 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. These antennas are designed and constructed to offer high efficiency, low side lobes and a rugged mechanical configuration. In general, lens corrected antennas are ideal for achieving gain levels of up to 30 dB with moderate side lobe rejections. Additionally, its dielectric lens provides phase error corrections and serves as a radome to protect from environmental conditions.
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Double Ridged Waveguide Horn
DRH20E
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Frequency range: 1.6 GHz - 20 GHz VSWR (max): < 1.5:1Impedance: 50 O (Ohm)Connector: SMA female Power (CW / Peak): 50W / 100 W
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Receiver Products
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QuinStar receiver products are designed for maximum performance. Our offerings include low-noise amplifiers, balanced mixers, and harmonic and subharmonic mixers. Our receivers cover the frequency range of 18 to 110 GHz in seven waveguide bands.
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Waveguide Duplexer
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RF Lambda’s waveguide duplexers are used to combine two frequencies onto a common waveguide. They offer high isolation and low insertion and come in a variety of frequencies. Hermetically sealed options are available upon request.
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RF Coaxial Probes & Probe Positioner
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Fairview Microwave’s line of coaxial RF probes and RF PCB probe positioner are ideal for use with chip evaluations, signal integrity measurements, coplanar waveguide, substrate characterization, gigabit SERDES and test fixture applications. The RF coaxial probes provide return loss better than 10 dB and a maximum operating frequency of 20 GHz. The probes have a 3.5mm female interface, a pitch of 800 or 1500 micron and they can be cable-mounted. They feature gold-plated contacts and can be used by hand, with or without a probe positioner. Compliant coaxial GSG (or GS) pogo pins allow for a broad range of probing angles. The RF PCB probe positioner can hold coaxial probes, has articulated joints and delivers multi-axis positioner control. This positioner also boasts a magnetic mounting plate with on-off positioner switch.
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Double Ridged Waveguide Horn
DRH110
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Frequency Range 14 GHz - 110 GHz VSWR (AVG) <2.1 1:1Impedance 50 WConnector 1.00mm female Power (CW / Peak): 4 W / 8 W
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WR-12 Waveguide Straight
WAG-12-SXX
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• 60 GHz to 90 GHz• Low Insertion Loss, typical for length• Low Return Loss, typical for length• UG-387 flangeView more WR-12 Waveguide Straight
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Waveguide Rotary Joints
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Waveguide Rotary Joints are used for the rotary transmission of power and signal between the stationary and rotating parts of a radar or satcom system.EVERAXIS has designed and produced single and multi channel Waveguide (WG) Rotary Joints since 1958. Every new design is simulated in FEM software as well as physically tested for optimal performance. Each high power Waveguide Rotary Joint is tested at maximum peak power before shipment.





























