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RF Power Amplifier

Power, efficiency, linearity: pick any three ¡ª such a choice just about summarizes the challenges presented to the power amplifier (PA) designer in 2005. As wireless systems pack more data into limited bandwidths, power amplifiers carry a bigger burden but are still required to be efficient. Simultaneously, in order to maintain high information throughput from an ever-increasing number of users, the specifications on adjacent channel interference keep getting more stringent, and more efficient modulation systems keep demanding more dynamic range and higher instantaneous signal bandwidth. Meeting these challenges has evolved into an interesting blend of old and new techniques in device technology, PA architecture, and an ever-increasing intrusion of high speed digital signal processing (DSP) into the very traditional analog preserve of RF power engineering.

 

From the PA viewpoint, things did not quite go to plan for GaAs fabrication shareholders. Two new transistor technologies emerged to dominate both ends of the mobile phone PA markets: silicon laterally diffused metal oxide semiconductor (LDMOS) for high power base stations and GaAs heterojunction bipolar transistor (HBT) for handsets. Neither technology would have attracted backers in the early ¡®90s to dominate the scene in the way they have done; their emergence is an interesting case study. At the high power end, cost matters most, and although LDMOS needed careful stretching to meet performance goals at 2 GHz, the lavishly over-performing GaAs FET technology appeared to be more expensive on a dollar-per-watt basis. In the battery-powered environment of the mo- problem, which all carry the name of their accredited inventors: Kahn, Doherty and Chireix.2¨C4 It is probably a fair statement to say that just about any company or research group involved with PA design is putting major R&D efforts into at least one of these techniques at the present time.



 

Radio Frequency Recommended Products


Radio Frequency Interference News

Ethernet Radios operate in high-interference environmnets. - ThomasNet Industrial News Room


Ethernet Radios operate in high-interference environmnets.
ThomasNet Industrial News Room, NY - Dec 1, 2008
The RAD-ISM-900-EN-BD uses the MOTR-9T radio platform, a 1-watt, frequency-hopping spread spectrum (FHSS) transceiver. It operates in the license-free ...

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CAPITAL CURRENTS: The other digital video transition - CED Magazine


CAPITAL CURRENTS: The other digital video transition
CED Magazine, CO - Nov 30, 2008
This is the outcome of years of radio interference. The interference victims were public safety agencies that were using 800 MHz mobile radio frequencies, ...

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Epson Toyocom's US-Based Timing Products Division Develops ... - MarketWatch


Epson Toyocom's US-Based Timing Products Division Develops ...
MarketWatch - Nov 25, 2008
Among its functions, the module offers output in two different frequencies. Communications system malfunctions triggered by interference waves in adjacent ...

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Sparks cause radio frequency interference above - Southgate Amateur Radio Club


Sparks cause radio frequency interference above
Southgate Amateur Radio Club, UK - Nov 12, 2008
As a result, sparks, or arcs, of electrical energy are a common source of radio frequency interference. An electricity infrastructure company recently ...

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Bluetooth Modules meet health device profile. - ThomasNet Industrial News Room


Bluetooth Modules meet health device profile.
ThomasNet Industrial News Room, NY - 1 hour ago
... mechanical actuation systems, signal integrity components, and wireless antennae solutions, as well as radio frequency (RF) modules and systems. ...

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