Japanese Scientists Develop Long Distance Wireless Power Transmission
Japanese Scientists Develop Long Distance Wireless Power Transmission

Long-distance wireless charging may be something of a holy grail for gadgets, devices and electric vehicles, but Japanese researchers are a step closer toward making it reality, making wireless power reception antennas that draw power from space-based solar arrays.

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DC – 4 GHz GaN RF Transistors: QPD1009 And QPD1010 DC – 4 GHz GaN RF Transistors: QPD1009 And QPD1010

The QPD1009 and QPD1010 are discrete GaN on SiC HEMTs operating from the DC to 4 GHz frequency range. The QPD1009 is a 15W, 50V device with an output power level of 17W at 2 GHz, and a linear gain of 24 dB at 2 GHz. The 10W, 50V QPD1010 features an output power of 11W at 2 GHz and a linear gain of 24.7 dB at 2 GHz. These two devices are housed in low thermal resistance 3 x 3 mm packages, and are ideal for wideband or narrowband amplifiers, jammers, and for military radar, civilian radar, land mobile, military radio, and test instrumentation applications.

RF Switch Matrix: RFMS-4X256-B RF Switch Matrix: RFMS-4X256-B

Corry Micronics’ RFMS-4X256-B is a 4 to 256 blocking RF switch matrix covering the 900-2500 MHz frequency range. It has a -8dB insertion loss, 50 ohms impedance, 10 dB return loss, +30 dBm P1dB, -80 dB isolation, and a 5µs switching speed (50% trigger to 10% RF power).

Boost Received Signals And Maintain Noise Figure: 700 MHz to 2700 MHz LNA Boost Received Signals And Maintain Noise Figure: 700 MHz to 2700 MHz LNA

This low noise amplifier provides multiple broadband channels of high signal gain and linearity with low added noise levels, boosting received signals and maintaining system noise figure. The package itself contains three separate LNAs, and any of the three amplifiers can be independently bypassed via signal control.

Solid State Single Band 0.7 to 6 GHz Amplifiers Solid State Single Band 0.7 to 6 GHz Amplifiers

These single band solid state RF amplifiers are an ideal solution in both military and commercial marketplaces and have been designed for applications where instantaneous bandwidth, high gain and linearity are required. They’re available in 15, 25, 50, 100, 200, and 300 watt power versions and they cover the 0.7 to 6 GHz frequency range. Each model features an excellent noise figure and also provides excellent flatness across their specified frequency range.

Low Loss RF Cable Assemblies: GrooveTube<sup>®</sup> Series Low Loss RF Cable Assemblies: GrooveTube® Series

MegaPhase offers a series of low loss cable systems made with the industry-leading GrooveTube® design and rugged construction to resist torque, pull, and crush forces. This wide range of connector types may be used in many different markets including phased array radar, electronic warfare, military, and communication systems.

1200W GaN L-Band Avionics Transistor: Highest Power In The Industry 1200W GaN L-Band Avionics Transistor: Highest Power In The Industry

Integra Technologies introduces IGN1011L1200 on GaN/SiC, exhibiting 17dB gain and 75% efficiency at 1030-1090 MHz, 50V, for IFF at ELM Mode S pulse conditions. Devices are 100% tested.

ShockLine™ 4-port Performance VNA: MS46524B ShockLine™ 4-port Performance VNA: MS46524B

The MS46524B series of 4-port Performance ShockLine Vector Network Analyzers are designed to deliver an unprecedented level of value and performance. With features such as a best-in-class dynamic range, this Performance series lowers cost-of-test and speeds time to market in numerous testing applications up to 92 GHz. Typical applications include designing and manufacturing multi-port mobile network equipment, mobile devices, automotive cables, high-speed data interconnects, and system integration components.

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At IMS 2016, Teledyne Microwave Solutions, Booth #1739, is highlighting its new line of SWaP-friendly GaN amplifiers, Integrated Assemblies for EW, its industry-leading portfolio of TWTs, the industry’s most comprehensive line of MW & RF Components, and its diverse range of Microwave PCB capabilities.  Like last year, stop by our booth for a free cup of Espresso!


  • Measuring Channel Operating Margin

    Channel Operating Margin, COM, is a single measure of channel performance with high data rates that includes the effects of signal impairments and the techniques used to compensate for those impairments. COM measures the performance margin of an interconnect, and can also be used to examine the interoperability margin of a high speed serial system. The derivation of COM itself can offer insights into the strengths and weaknesses of a design due to the inclusion of the ISI (inter-symbol interference) calculation that remains after equalization and the effects of noise, jitter, and crosstalk.

What Is The Real Value Of IoT?

The name “Internet of Things” (IoT) can be misleading in that it does not actually refer to a specific group of things. It really isn’t a new concept either, rather a maturing technology that is making its way into the mainstream eye. Just like every other universally connected device, it operates over our regular internet with familiar applications in wearables and the smart home. So what is the real value of IoT? This white paper provides information on what the IoT has to offer now and in the future, and what defines its true value.

Bluetooth Low Energy 101

This two-part article will provide product designers with the information they need to develop quality Bluetooth low energy products, starting with an understanding of the standard.

Recent History And Current Trends In GaN Reliability Testing

Gallium Nitride (GaN) technology is growing to be the essential technology of choice in applications ranging from space and military systems to consumer electronics. As the technology in GaN devices matures, the long-term reliability issues must be tested and addressed. Test system capabilities must expand to perform not only traditional elevated temperature life testing, but must also allow for in-situ performance-degradation characterization with age. Accel-RF’s platform solution is the only available integrated instrument that can demonstrate a compliance with aerospace, government, and commercial RF semiconductor life-test standards with all desired capabilities.

Instrumentation And The Internet Of Things: Seven Essentials For Rugged Connectors In Instrumentation Applications

The use of measuring devices to monitor and control processes is a critical component for the smooth operation of large systems, and is an integral part to the future of the Internet of Things. The concept of integrating things into interconnect solutions requires knowing the application and environment in order to create the most successful product. This white paper presents seven essential considerations to keep in mind for engineering rugged connector solutions for the Internet of Things.

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Standard Gain Horn Antenna 12.4 GHz to 18.0 GHz:SAS-586
Standard Gain Horn Antenna 12.4 GHz to 18.0 GHz:SAS-586

The Standard Gain Horn Antennas are designed specifically for utilization in emissions and immunity testing over the frequency range of 1 to 40 GHz. Each antenna is linearly polarized and has medium gain, low VSWR, and a constant antenna factor.

  • Custom EMI Filters
    Custom EMI Filters

    EMI Filters are used to prevent electromagnetic interference in avionics and aircraft systems, as well as military shipboard/vehicle electronics, and in military communication systems. Electromagnetic interference can cause a complete loss of data in communications systems, or a simple decline in data quality.

  • Fischer Plastic Series
    Fischer Plastic Series

    The Fischer Plastic Series is a family of high performance, fully insulated plastic connector bodies that are all compatible with Fischer’s metallic connectors. Key features include high reliable signal path, high signal and contact density, clear coding for easy operation, and resistance to large temperature variations.  

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Qorvo Qorvo

Qorvo ("kor-vo") enables customers to launch next-generation designs even faster. Our unique combination of talent, technology, scalability and innovation helps you eliminate barriers to bringing your most powerful ideas to market.

"We believe that our new name reflects our company's commitment to keep customers at the center of all that we do," said Bob Bruggeworth, Qorvo president and CEO. "As a new leader in RF solutions, Qorvo will offer the agility, innovation and precision customers need for success in mobile, infrastructure, and defense markets."


AR RF/Microwave Instrumentation manufacturers and distributes: | RF Amplifiers, 1 to 50,000 Watts, dc to 1 GHz| Microwave Amplifiers, 1 to 10,000 Watts, 0.8 to 45 GHz| Antennas, 1 to 15,000 Watts, 10 kHz to 50 GHz| Accessories and Software| Precompliance Test Systems| Transient Generators|AR Modular RF manufacturers and distributes: | RF Amplifier Modules with single dc supply| Broadband and sub band RF amplifier systems, rack and case mounted units| Modules and systems are available from slight modifications to full custom designs|AR Receiver Systems manufacturers and sold by AR RF/Microwave Instrumentation: | EMI Receivers | Impulse Generators| Leak Detectors

MtronPTI MtronPTI

Worldwide manufacturer of frequency control products such as high precision oscillators, crystal and LC filters, precision resonators

AR Modular RF AR Modular RF
AR Modular RF designs and builds some of the most durable, innovative, dependable, and versatile RF amplifier modules and RF amplifier systems in the world.


Electronic Military & Defense was developed as a resource for engineers, program managers, project managers, and other professionals involved in the design and development of electronic and electro-optic systems for a wide range of defense and aerospace applications. Check out the digital edition of our latest issue for exclusive editorial on optimizing defense technology in harsh environments, a 3D X-ray diagnostic tool for use in combat, the first international standard for tactical fiber optic cables, early warning systems for chemical warfare agents, and more.

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18th Annual Global MilSatCom November 8 - 10, 2016
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