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Supplier: QuinStar Technology, Inc.
Description: QuinStar series QFF precision machined waveguide flanges are offered for virtually any waveguide size and flange style in 12.4 to 220 GHz range covering waveguide bands WR-62 (KU) to WR-5 (G-band). Flanges with choke and O-ring groove are also available. All
- Operating Frequency Range: 12.4 to 220 GHz
- Profile: Circular, Rectangular, Square
- Component Type: Flanges
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Supplier: Accuris
Description: GASKET, WAVEGUIDE FLANGE (COVER)
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Supplier: Accuris
Description: GASKETS, WAVEGUIDE FLANGE (COVER)
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Supplier: Accuris
Description: Circular Waveguides and Flanges
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Supplier: Accuris
Description: GASKET, WAVEGUIDE FLANGE (FLAT FACE)
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Supplier: QuinStar Technology, Inc.
Description: narrower than a typical rectangular waveguide in the same general frequency range. Since several internal circular waveguide diameters are applicable for a given frequency, please contact QuinStar with your specific requirement. QuinStar also can supply rectangular to circular
- Operating Frequency Range: 12 to 220 GHz
- Profile: Circular
- Component Type: Straight Section Assemblies
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Description: IEC 60154-4:2017 specifies the dimensions of flanges for circular waveguides for use in electronic equipment. It covers requirements for flanges drilled before or after mounting on waveguides. The aim of this document is to specify for waveguide flanges the
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Description: Relates to designation, reflections at the flange joint and mechanical requirements for flanges for flat rectangular waveguides.
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Description: Relates to designation, reflections at the flange joint and mechanical requirements for flanges for flat rectangular waveguides.
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Supplier: CSA Group
Description: Relates to designation, reflections at the flange joint and mechanical requirements for flanges for flat rectangular waveguides.
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Supplier: CSA Group
Description: IEC 60154-4:2017 specifies the dimensions of flanges for circular waveguides for use in electronic equipment. It covers requirements for flanges drilled before or after mounting on waveguides. The aim of this document is to specify for waveguide flanges the
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Description: Contains a detailed description of flanges for circular waveguides - Type J, including mechanical reqirements and electrical test, as well as tables and drawings.
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Supplier: CSA Group
Description: IEC 60154-2:2016 specifies the dimensions of flanges for ordinary rectangular waveguide for use in electronic equipment. It covers requirements for flanges drilled before or after mounting on waveguides. It should be noted that for optimum electrical performance,
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Supplier: Fairview Microwave Inc.
Description: Waveguides from Fairview Microwave consist of coaxial adapters, bandpass filters, bends, flexible waveguide cables, waveguide gain horns, sections and terminations. Fairview waveguides are available in standard sizes from WR-430 through WR-15 depending on type of
- Component Type: Waveguide Tees
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Supplier: Fairview Microwave Inc.
Description: Waveguides from Fairview Microwave consist of coaxial adapters, bandpass filters, bends, flexible waveguide cables, waveguide gain horns, sections and terminations. Fairview waveguides are available in standard sizes from WR-430 through WR-15 depending on type of
- Component Type: Waveguide Tees
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Supplier: Fairview Microwave Inc.
Description: Waveguides from Fairview Microwave consist of coaxial adapters, bandpass filters, bends, flexible waveguide cables, waveguide gain horns, sections and terminations. Fairview waveguides are available in standard sizes from WR-430 through WR-15 depending on type of
- Component Type: Waveguide Tees
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Supplier: Fairview Microwave Inc.
Description: Waveguides from Fairview Microwave consist of coaxial adapters, bandpass filters, bends, flexible waveguide cables, waveguide gain horns, sections and terminations. Fairview waveguides are available in standard sizes from WR-430 through WR-15 depending on type of
- Component Type: Transition Adapters
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Supplier: Molex Signal Tech Industrial Ltd.
Description: transitions is an integral capability and we offer a choice of connector type and orientation, pin/socket interfaces to waveguide apertures withf standard or custom flange details. Waveguide iso-adapters span from S to Ka-Band and include coaxial and waveguide isolators
- Operating Frequency Range: 1 to 52 GHz
- Component Type: Transition Adapters
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Supplier: QuinStar Technology, Inc.
Description: mounted in a short length of flanged waveguide. These standard terminations, offered in the K through G waveguide bands can dissipate 1 to 5 Watts of power depending on the specific band. They also present a low VSWR over the full waveguide band. • Low VSWR • Compact Size • Full
- Operating Frequency Range: 18 to 220 GHz
- Profile: Circular, Rectangular
- Component Type: Straight Section Assemblies
- Features: Straight Sections
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Supplier: Mini-Circuits
Description: Mini-Circuits’ WR10-10+ is a waveguide-to-coax adapter operating from 75 to 110 GHz (W-band). This product features a WR10 waveguide interface with a precision standard UG387/U anti-cocking flange-to-1.0 mm Female coaxial connector. The WR10-10+ features aluminum alloy
- Frequency Range: 110,000 MHz
- VSWR: 1.3 :1
- Material: Aluminum
- Features: Coaxial / Waveguide, Other
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Supplier: Mini-Circuits
Description: Mini-Circuits’ WR12-10R+ is a waveguide-to-coax adapter operating from 60 to 90 GHz (E-band). This product features a WR12 waveguide interface with a precision standard UG387/U anti-cocking flange to 1.0 mm-Female coaxial connector. The WR12-10+ features aluminum alloy
- Frequency Range: 90,000 MHz
- VSWR: 1.1 :1
- Material: Aluminum
- Features: Coaxial / Waveguide, Other
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Supplier: Molex Signal Tech Industrial Ltd.
Description: Waveguide to coaxial transitions are an integral capability of the business. TRAK offers a choice of connector type and orientation, pin/socket interfaces to waveguide apertures with a choice of standard or custom flange details. Features & Benefits Offering a choice of “dc
- Operating Frequency Range: 1.2 to 46 GHz
- Component Type: Transition Adapters
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Supplier: Mini-Circuits
Description: Mini-Circuits’ WR15-185+ is a waveguide-to-coax adapter operating from 50 to 70 GHz (V-band). This product features a WR15 waveguide interface with a precision standard UG385/U anti-cocking flange-to-1.85 mm-Female coaxial connector. The WR15-185+ features aluminum alloy
- Frequency Range: 70,000 MHz
- VSWR: 1.2 :1
- Material: Aluminum
- Features: Coaxial / Waveguide, Other
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Supplier: ZTS Technologies Co., Ltd
Description: ZTS provides waveguide to coaxial adapters frequency up to 26.5GHz with SMA coaxial connectors. It features low insertion loss, high isolation, high power handling and excellent VSWR. Widely used for military, defense, space and commercial applications. Custom design is available upon
- Frequency Range: 18,000 to 26,500 MHz
- Maximum Input Power: 46.98970004336019 dBm
- VSWR: 1.2 :1
- Material: Aluminum
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Supplier: ZTS Technologies Co., Ltd
Description: ZTS provides waveguide to coaxial adapters frequency up to 26.5GHz with SMA coaxial connectors. It features low insertion loss, high isolation, high power handling and excellent VSWR. Widely used for military, defense, space and commercial applications. Custom design is available upon
- Frequency Range: 14,500 to 22,000 MHz
- Maximum Input Power: 46.98970004336019 dBm
- VSWR: 1.2 :1
- Material: Aluminum
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Supplier: ZTS Technologies Co., Ltd
Description: ZTS provides waveguide to coaxial adapters frequency up to 26.5GHz with SMA coaxial connectors. It features low insertion loss, high isolation, high power handling and excellent VSWR. Widely used for military, defense, space and commercial applications. Custom design is available upon
- Frequency Range: 3,940 to 5,990 MHz
- Maximum Input Power: 46.98970004336019 dBm
- VSWR: 1.2 :1
- Material: Aluminum
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Supplier: ZTS Technologies Co., Ltd
Description: ZTS provides waveguide to coaxial adapters frequency up to 18GHz with Type N coaxial connectors. It features low insertion loss, high isolation, high power handling and excellent VSWR. Widely used for military, defense, space and commercial applications. Custom design is available upon
- Frequency Range: 9,840 to 15,000 MHz
- Maximum Input Power: 51.76091259055681 dBm
- VSWR: 1.2 :1
- Material: Aluminum
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Supplier: Advanced Technical Materials, Inc.
Description: Full waveguide frequency range, multiple flange types available
- Frequency Range: 5,850 to 8,200 MHz
- VSWR: 1.25 :1
- Material: Aluminum, Brass, Copper
- Features: Coaxial / Waveguide
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Supplier: Advanced Technical Materials, Inc.
Description: Full waveguide frequency range, multiple flange types available
- Frequency Range: 10,000 to 15,000 MHz
- VSWR: 1.25 :1
- Material: Aluminum, Brass, Copper
- Features: Coaxial / Waveguide
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Supplier: Advanced Technical Materials, Inc.
Description: Full waveguide frequency range, multiple flange types available
- Frequency Range: 3,300 to 4,900 MHz
- VSWR: 1.25 :1
- Material: Aluminum, Brass, Copper
- Features: Coaxial / Waveguide
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Supplier: Advanced Technical Materials, Inc.
Description: Full waveguide frequency range, multiple flange types available
- Frequency Range: 1,700 to 2,600 MHz
- VSWR: 1.25 :1
- Material: Aluminum, Brass, Copper
- Features: Coaxial / Waveguide
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Supplier: Maury Microwave
Description: mismatch between connected components and ensuring highest signal flow. Calibration-grade metrology adapters are available with waveguide-to-coaxial transitions with WR90, WR75, WR62, WR51, WR42, WR34, WR28 and WR22 flanges to 50 GHz in right-angle and end-launch configurations.
- Operating Frequency Range: 10 to 15 GHz
- VSWR: 1.2 :1
- Component Type: Transition Adapters
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Supplier: QuinStar Technology, Inc.
Description: diffraction. Probe length is customizable to suit your application. • Rectangular open ended waveguide with single flange • Standard waveguide sizes from 8 GHz up to 325 GHz • Tapered waveguide end to minimize diffraction • Custom lengths available
- Primary Frequency Range: 8,000 to 325,000 MHz
- Pattern Type: Directional
- Polarization: Other
- Features: Other Antennas & Arrays
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Supplier: Newark, An Avnet Company
Description: WR-112 COMMERCIAL GRADE WAVEGUIDE H-BEND WITH UG-51/U FLANGE OPERATING FROM 7.05 GHZ TO 10 GHZ
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Supplier: Pasternack
Description: PE9863-15 WR-284 standard gain horn antenna is also known as a waveguide horn. This WR-284 standard gain horn antenna has a 15 dB nominal gain and a square cover flange. Our 15 dB WR-284 horn antenna has a minimum frequency of 2.6 GHz and a maximum frequency of 3.95 GHz. WR-284
- Operating Frequency Range: 2.6 to 3.95 GHz
- Type: Cover or Plate
- Profile: Square
Find Suppliers by Category Top
Featured Products Top
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Maury produces waveguide components in a broad range of popular waveguide sizes. A comprehensive line of standard products is available in standard EIA WR rectangular waveguide sizes. They are generally supplied with cover flanges. Units from R through P bands are normally aluminum construction (read more)
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, covering both X Band and Ku Band applications. This precision-engineered adapter features a robust construction with a square flange design, ensuring secure and stable connections between waveguide systems and coaxial cables. Designed for radar (read more)
Browse RF Waveguide Components Datasheets for 5o.com -
-frequency equipment; Mounting Design: Features 4 M3.0 mounting holes paired with a standard waveguide flange interface, ensuring convenient installation and secure connections. 2.Wide Temperature Adaptability The operating temperature (read more)
Browse RF Isolators and RF Circulators Datasheets for 5o.com -
types (including 1.85mm, 2.4mm, 3.5mm, 7mm, Type N, TNC, AFTNC, TNCA, BNC, OSP™, 14mm, and 7-16) and rectangular waveguide in EIA flange sizes (from WR430 to WR10). Other less common connector types (including BZ, ZMA, C, HN, SC, Multiport, etc.) and other rectangular waveguide sizes are also offered, as are custom and OEM kits. Calibrate with Confidence...Calibrate with Maury! (read more)
Browse Datasheets for Maury Microwave -
Maury offers a full range of in-series and between-series metrology-grade RF coaxial and waveguide adapters in most popular connector types, including 1.85mm, 2.4mm (Q), 2.92mm (K), 3.5mm, 7mm, 14mm, type N, (50 and 75 ohm), BNC (50 and 75 ohm) TNC, AFTNC, TNCA, LPC/OSP, and (read more)
Browse RF Adapters Datasheets for Maury Microwave -
Did you know , Smiths Interconnect has been supporting the next phase of space exploration? The Juice project, which will send a satellite on an eight year journey to reach the icy moons of Jupiter, blasted off recently fitted with waveguide components from the Interconnect team (read more)
Browse RF Waveguide Components Datasheets for Molex Signal Tech Industrial Ltd. -
Professional 11.9-18GHz Ku Band WR62 BJ140 Waveguide to Coaxial Adapter, a high-reliability transition component designed to facilitate seamless signal transfer between WR62 waveguide systems and coaxial cables (read more)
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WR90 (BJ100) X Band Waveguide to Coaxial Adapter operating 8.2-12.4GHz with industry-leading 0.2dB maximum insertion loss, low VSWR <1.15, 50Ω impedance, SMA/N female connector options. Precision machined, rugged, -55? to +85? for radar, satellite communications, 5G millimeter-wave, and (read more)
Browse RF Waveguide Components Datasheets for 5o.com -
dBm is defined as power ratio in decibel (dB) referenced to one milliwatt (mW). It is an abbreviation for dB with respect to 1 mW and the "m" in dBm stands for milliwatt.
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Antenna beamwidth directly impacts RF testing accuracy by controlling signal coverage and directivity. Narrower beamwidth increases antenna gain and focus, while wider beamwidth improves coverage consistency across EMC and compliance testing environments.
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Browse RF Waveguide Components Datasheets for A.H. Systems Inc.
More Information Top
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Micromachined contactless pin-flange adapter for robust high-frequency measurements
The pin-flange adapter is used to avoid leakage at the interface of two waveguides even when a gap between them is present and can be fitted onto any standard WR03 waveguide flange .
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Millimeter Wave Vector Analysis Calibration and Measurement Problems Caused by Common Waveguide Irregularities
2) Significant waveguide flange misalignment possible with current MIL SPECS specified tolerances with no widely accepted technique for precise alignment.
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TEM radiation from a parallel‐plate waveguide with an arbitrarily flanged surface of finite size
[22] In summary, it is seen that a tilted or uptapered flange surface has improved the radiated power of a flanged PPW as it has matched the waveguide flange .
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