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This week I have selected for you 4 Mini-Circuits products and a new article: "Measuring Wideband RF Signals with Power Sensors Fundamentals" for you to discover.
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I hope you will enjoy the read and look forward to be of further assistance to you.
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As always, please feel free to contact us with any questions you may have.
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The ongoing drive to transmit and receive more information wirelessly in a given bandwidth forces modern RF systems to continually increase their spectral efficiency. Some of the earliest commercial wireless systems from several decades ago utilized channel bandwidths of a just few kHz. With more and more pressure being placed on wireless systems, everything from Bluetooth headsets to aviation infrastructure to self-driving cars require wider bandwidths to achieve the required data throughput, with signal bandwidths approaching 1 GHz or more.
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In aerospace/defense applications, wider RF signal bandwidths not only provide more capacity for voice and data, but their wider bandwidths also make jamming and countermeasures more difficult. One popular technique is spread spectrum, a technique in which a wide bandwidth signal is created that operates well in a noisy environment. Spread spectrum was originally adopted by the cellular industry as traditional 2G Code Division Multiple Access (IS-95 CDMA, for example) and evolved to 3G W-CDMA, with signal bandwidths approaching 5 MHz per channel.
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Increasing the RF system bandwidth is one way to accommodate larger amounts of data throughput. Various modulation techniques, encoding and frequency and time division multiplexing are a few ways in which increases in spectral efficiency can be achieved. Invariably, wider bandwidths are implemented as part of an overall strategy to transmit and receive more information. Accurately measuring the power of wideband RF signals ensures efficient power usage as well as high signal quality.
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Phase-Stable Flex Cable
DC-26.5 GHz, 3 FT
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The CBN series carries on the Mini-Circuits commitment to quality, consistency, performance, and value. While achieving the design goal of extreme flexibility, the CBN design has largely eliminated flex resistance as well as spring-back. Difficult routing challenges have been greatly simplified while maintaining improved attenuation and unparalleled RF stability. Whether your application is packaged device characterization on the bench, circuit-level …
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LTCC SMA Balun Bandpass Filter
6375 - 7175 MHz ,50Ω
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Mini-Circuits’ BBFCG2-672+ is a tiny ceramic RF balun filter with an impedance ratio of 1:2, covering a variety of wireless communications applications from 6375 to 7175 MHz. This model provides low insertion loss, low phase unbalance (relative to 180°), and low amplitude unbalance. Fabricated using LTCC technology, the unit comes housed in a tiny, rugged ceramic package (0.079" x 0.049" …
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2 Ways MMIC SMT Power Splitter
1600 - 3300 MHz, 50Ω
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Categories: Power Splitters/RF Power Combiners
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Mini-Circuits’ GP2YA+ is a 50Ω GaAs MMIC 2-way splitter/combiner that operates from 1600 to 3300 MHz. The GP2YA+ provides typical performance of 1.1 dB insertion loss, 22 dB isolation, 0.03 dB amplitude unbalance, and 0.6 deg phase unbalance. In conjunction, it has excellent power handling capabilities of 10 W max as a splitter. This combination of characteristics makes it the …
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Ceramic Balun RF Transformer
50Ω, 1275 to 2200 MHz, 1:2 Ratio
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SENIOR RF Engineer (MANAGERIAL) Mini-Circuits Israel #05-2025
Mini-Circuits Israel develops components and test equipment for the commercial market. We are looking for a motivated RF development engineer, to join our RF team. The candidate will design mixed signal units and will be responsible for the full lifecycle of the product – from concept, schematic, layout, testing stages until final production and will work closely also with the global organization.
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Location: Kiryat Bialik (North Israel)
On-site full-time position
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- At least 8 years’ experience in RF and microwave design.
- Hands on experience in lineups, schematic and layout design of high frequency mixed signal boards (above 20Ghz – an advantage).
- Experience in RF simulations: 2D (ADS or similar) and 3D (HFSS or CST)
- Experience in RF and microwave testing equipment (VNA, spectrum analyzer, power meters etc).
- Experience in digital HW (microcontrollers and FPGAs) – an advantage.
- Good communication skills, teamwork, and self-learning and managerial skills.
- BSc in Electrical engineering (MSC and advantage).
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Want to recomment this job to a friend? Just go to our jobs page and click the Email button.
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Tel: 03-7988118 Mobile: 054-4600801
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Tel: 03-6736696 Mobile: 054-2008813
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Tel: 03-5406052 Mobile: 054-4999216
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Our Engineering Team is here to help you!
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MCDI, Mini-Circuits Exclusive Representative in Israel, hosts a professional team of Application Engineers with decades of experience. Our Engineers are here to assist with identifying the products that are just right for you, advise on correct setups and solutions. They are just a phone call or an email away and also will be delighted to meet you at your location throughout Israel. You may call them directly by clicking on their picture or visit our support page.
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