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Supplier: Vaunix Technology Corporation
Description: -test capabilities up to 50 GHz and data-rate test capabilities up to STM-1/OC-3. We specialize in point-to-point digital microwave radio testing, and also process and test other wireless, wire-line and fiber-optic equipment.
- Equipment Repaired: RF / Microwave Instruments, Other
- Location: North America, United States Only, Northeast US Only
- Services: Bench / Off-site, Field / On-site
- Specialty Instruments: Other Specialty Instruments
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Description: -power switching applications An integrated design example of a 1.25 GHz amplifier, oscillator, and filter printed circuit is also included, which could be useful in printed circuit board designs from tens of megahertz to tens of gigahertz. Introduction to Microwave Circuits provides
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Description: Deals with measurement for cross-polarization interference cancellers (XPIC) used in digital microwave radio-relay systems.
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Supplier: Accuris
Description: INTEROPERABILITY AND PERFORMANCE STANDARDS FOR DIGITAL LOS MICROWAVE RADIO EQUIPMENT
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Supplier: Accuris
Description: Amplifiers, Radio-Frequency And Microwave, Solid-State, Wideband, To Configuration
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Description: Describes measurements for terrestrial radio-relay systems. Should be used in conjunction with IEC 60835-1-1.
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Supplier: Accuris
Description: Methods of measurement for equipment used in digital microwave radio transmission systems - Part 2: Measurements on terrestrial radio-relay systems - Section 2: Antenna
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Supplier: Accuris
Description: Methods of Measurement for Equipment Used in Digital Microwave Radio Transmission Systems Part 2: Measurements on Terrestrial Radio-Relay Systems Section 2.1: General
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Supplier: CSA Group
Description: Deals with measurement for cross-polarization interference cancellers (XPIC) used in digital microwave radio-relay systems.
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Description: Gives methods of measurement of the electrical characteristics of antennas used in terrestrial radio-relay systems at frequencies above 1 GHz. The methods are suitable for both line-of-sight and tropospheric scatter radio-relay systems using linear polarization.
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Supplier: Fairview Microwave Inc.
Description: for a VSWR of and a maximum power of 2 Watts. Fairview Microwave bandpass filter has a minimum frequency of 1 GHz and a maximum frequency of 2 GHz. Cavity RF band-pass filter part number FMFL1012 has the insertion loss maximum that is 2 dB. More coaxial SMA
- Connector Type: SMA
- Filter Type: Bandpass
- Frequency (Fc): 1000 to 2000 MHz
- Insertion Loss: 2 dB
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Supplier: Fairview Microwave Inc.
Description: for a VSWR of and a maximum power of 2 Watts. Fairview Microwave bandpass filter has a minimum frequency of 2 GHz and a maximum frequency of 4 GHz. Cavity RF band-pass filter part number FMFL1013 has the insertion loss maximum that is 2 dB. More coaxial SMA
- Connector Type: SMA
- Filter Type: Bandpass
- Frequency (Fc): 2000 to 4000 MHz
- Insertion Loss: 2 dB
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Description: Deals with measurements pertaining to the service channels used in digital microwave radio-relay systems. Two basic methods are commonly used for the transmission of service channel signals (that is voice, supervisory and control signals).
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Supplier: Rohde & Schwarz USA, Inc.
Description: – receives signals in the range 1 GHz to 18 GHz or 0.85 GHz to 26.5 GHz. The R&S®AC008 is used for detecting radio signals and for field-strength measurements. It can also be directed toward geostationary satellites. The use of different feeds allows reception of
- Form Factor: External
- Pattern Type: Directional
- Polarization Type: Circular, Linear, Slant 45 / Dual
- Primary Frequency Range: 850 to 26500 MHz
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Supplier: LCSC Electronics Technology (HK) Limited
Description: SMD-4P,3.2x1.6mm RF Filters ROHS
- Package Type: Other
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Supplier: LCSC Electronics Technology (HK) Limited
Description: SMD-4P,1.6x3.2mm RF Filters ROHS
- Package Type: Other
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Supplier: Fairview Microwave Inc.
Description: for a VSWR of and a maximum power of 2 Watts. Fairview Microwave bandpass filter has a minimum frequency of 17.2 GHz and a maximum frequency of 21.2 GHz. Cavity RF band-pass filter part number FMFL1007 has the insertion loss maximum that is 1 dB. More
- Connector Type: SMA
- Filter Type: Bandpass
- Frequency (Fc): 17200 to 21200 MHz
- Insertion Loss: 1 dB
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Supplier: Fairview Microwave Inc.
Description: for a VSWR of and a maximum power of 2 Watts. Fairview Microwave bandpass filter has a minimum frequency of 17.2 GHz and a maximum frequency of 18.2 GHz. Cavity RF band-pass filter part number FMFL1008 has the insertion loss maximum that is 1.5 dB. More
- Connector Type: SMA
- Filter Type: Bandpass
- Frequency (Fc): 17200 to 18200 MHz
- Insertion Loss: 1.5 dB
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Supplier: Ericsson, Inc.
Description: MINI-LINK is Ericsson's Microwave & Packet Aggregation offerings provide lowest cost of ownership whether for new mobile network rollouts, evolution of mobile networks, or fixed broadband over microwave. Outdoor units Outdoor units supporting all outdoor and split
- Applications: Cellular / PCS Base Station
- Form Factor: Stationary / Fixed
- Technology Type: Panel / Sector
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Supplier: CSA Group
Description: Gives methods of measurement of the electrical characteristics of antennas used in terrestrial radio-relay systems at frequencies above 1 GHz. The methods are suitable for both line-of-sight and tropospheric scatter radio-relay systems using linear polarization.
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Supplier: Richardson RFPD
Description: The MASW-011152 is an absorptive, ultra wideband single pole double throw (SPDT) switch with 2.2 dB of insertion loss at 50 GHz. The RF output ports are terminated in 50 Ohm in the isolated path. The power handling capability is 26 dBm. The input and output return losses in the thru
- Actuator Type: SPDT, Other
- Frequency Range: 0.0 to 67000 MHz
- Insertion Loss: 1.91 dB
- Isolation (Port to Port): 48 dB
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Supplier: Qorvo
Description: GHz Wi-Fi spectrum in use cases such as tri-radio Wi-Fi mesh applications. Using common module packaging techniques to achieve the industry standard footprint while negating as many external passive placements to help end users ease of integration into their circuits.
- Filter Design: Other
- Filter Technology: Passive Filter
- Filter Type: Bandpass
- Frequency (Fc): 5490 to 5895 MHz
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Supplier: SemiGen
Description: & “K” space screened units Applications: These attenuator pads are the perfect solution for a wide range of applications including microwave radio, military subsystems, fiber optics, scientific instruments and sensor applications up to 30 GHz.
- Attenuation: 2 dB
- Attenuator Type: Fixed
- Frequency Range: 0.0 to 50 GHz
- Insertion Loss: 0.2000 dB
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Supplier: Qorvo
Description: Qorvo's CMD308 is a broadband MMIC low noise amplifier ideally suited for microwave radios and S and C-band applications where small size and low power consumption are needed. At 4 GHz the device delivers 32 dB of gain with a corresponding output 1 dB compression point of +12
- Operating Range: Military
- Package Type: Other
- RoHS Compliant: Yes
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Supplier: Broadcom Inc.
Description: AMMC-6545 is an easy-to-use broadband sub-harmonic mixer, with the LO injected at half the frequency of that required by a conventional mixer. Intended applications include microwave radios, 802.16, VSAT and satellite receivers.
- Conversion Loss: 10 dB
- IF Frequency Range: 0.0 to 3000 MHz
- LO - IF Isolation: 36 dB
- LO - RF Isolation: 40 dB
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Supplier: SAE International
Description: The radio-frequency (RF) or microwave-based catalyst state determination offers the opportunity to operate an automotive catalyst at its optimal point. This has already been proven for the oxidation state of TWCs, the soot loading state on DPFs/GPFs, and the ammonia storage state of
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Supplier: L-com, Inc.
Description: This connector manufactured by Times Microwave® is a Type N Female connector designed for Wireless and Low Loss applications and made for LMR®900 cable. The ANF-2904 is the Times Microwave part EZ-900-NFC-2 manufactured directly from Times Microwave and not a generic
- Connector Type: Type N
- Gender: Female / Jack
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Supplier: ZTS Technologies Co., Ltd
Description: ZTS provides mmWave waveguide to coaxial adapters frequency up to 110GHz, coaxial connectors for 1.0mm, 1.85mm, 2.4mm, 2.92mm. It features low insertion loss, high isolation, high power handling and excellent VSWR. Widely used for military, defense, space and commercial
- Frequency Range: 17600 to 26700 MHz
- Maximum Input Power: 40 dBm
- RF Connector Type: 2.4 mm
- VSWR: 1.2 :1
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Supplier: Custom MMIC
Description: The CMD278C4 is a broadband MMIC GaN low noise amplifier housed in a leadless 4x4 mm QFN package. The CMD278C4 is ideally suited for microwave radios and X-band applications where small size and high input power survivability are needed. The broadband device delivers 15 dB of gain with
- Amplifier Type: Low Noise Amplifier
- Applications: Terrestrial RF/Microwave Systems, Other
- Frequency Range: 8000 to 12000 MHz
- MMIC Technology Required: Yes
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through the SCIF grant. A key goal for Smiths Interconnect is to reduce both the time-to-market and cost of manufacturing of its radio frequency (RF) and optical components. This will be enabled by developing new, in-house digital manufacturing capabilities and scaling up (read more)
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As radio architectures evolve, the need for filters is also evolving. At the same time, the industry is working to miniaturize mmWave devices while continually minimizing costs. This means RF designers need filter solutions that offer a smaller footprint while keeping prices manageable (read more)
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D-2182-N Power Divider, 2-way, 2-18GHz, N Female WM2PD-2-18-N is a wideband 2-way in-line power splitter covering the continuous bandwidth of 2 to 18 GHz in a compact enclosure measuring 2.25 x 1.96 x 0 (read more)
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WM2PD-2-18-N Power Divider, 2-way, 2-18GHz, N Female WM2PD-2-18-N is a wideband 2-way in-line power splitter covering the continuous bandwidth of 2 to 18 GHz in a compact enclosure measuring 2.25 x 1.96 x 0 (read more)
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Model NO.: UIYBCC5049A135T27SF Type: RF Broadband Circulator Brand Name: UIY Freq. Range (GHz): 1.35 to 2.7GHz Insertion Loss (read more)
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assure reliable signal transmission and reception over both the 2.4 GHz and 5.8 GHz frequency bands. This high-gain antenna, with its sturdy exterior design and N-male straight connector, performs reliably in severe settings. It is suited for microwave lines, high (read more)
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Back cover
F. Giorda and A. Racciu A Technique of PCM Transmission over 2 GHz Microwave Radio ..
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Correction to "Image Coding via a Nearest Neighbor Image Model"
A technique fortransmitting multiplexed PCM voice channels over a 2 GHz microwave radio hasbeen described.
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Low-Power-Consumption Microwave Radio Relay System
Naujagdlup Nuna repeater station (Greenland 2GHz micro- wave radio relay system).
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An RF amplifier for low inter-modulation distortion
"Linear Amplification Techniques in 2 GHz Microwave Radios ," .
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HKU Scholars Hub: Seminar on circuits and systems, Tuesday, 31st July 1979.
Linear amplification techniques in 2 GHz microwave radios Chi-Chia Hsieh Hsieh, Chi-chia .
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Optical Communications Versus Microwave Transmission Systems
In France 2 GHz microwave radio was introduced ten years ago.
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Use of Microwave Radio for Protective Relaying
A new thermoelectric type of power supply has been developed for the new all solid-state 2 - GHz microwave radio equipment which requires only 40 watts per terminal as compared to 500 watts per terminal for much of the 7-GHz …
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IF Variable Equalizers for FM Microwave Radio Links
In 2 - GHz microwave radio links where theantennadirectivity .
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Bandwidth Reduction of Video Signals via Shift Vector Transmission
A system that processes a digital PCM signal for application to a 2 GHz FM microwave radio transmitterandreconstructsthe original PCM signal from the radio receiver should meetthe following objectives: 1) The long term biterror rate for the entire system should be …
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Computer aided design of digital microwave line of sight radio relay systems
The costs that were used in the project were derived from actual financial figures used during the execution of a contract for the supply and installation of a major 2GHz digital microwave radio relay system in Kenya between 1982and 1984.
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