A 70Mb/s −100.5dBm sensitivity 65nm LP MIMO chipset for WiMAX portable router

Solid-State Circuits Conference Digest of Technical Papers(2011)

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摘要
In this paper, we present a low-power high-performance WiMAX chipset fully compliant with IEEE 802.16e specification corrigendum 1, 2 for mobile broad band access and WiMAX Forum System Profile Wave2. The chipset is comprised of a 632.7mW modem/router chip and a 364mW RF transceiver chip, both devel oped in 65nm CMOS. A fully programmable SIMD processor is used for WiMAX baseband and only parts of physical-layer functions are implemented; the FEC processor, media access control (MAC) processor, application proces sor, peripherals, etc. are excluded. Compared to hard-wired ASIC design, the use of a SIMD processor may cause higher power consumption and larger area if exactly the same functionality and algorithm are implemented. The baseband of our chipset is realized by HW accelerators and controlled by a simple DSP to minimize area and power. The modem/router chip also includes an analog fron tend (AFE), MAC, memory controller, application processor, and interfaces such as PCM, PCI, USB 2.0 and fast Ethernetto provide rich and highly integrated CPE applications for portable router, VoIP phone, printer server, storage server, NAS, etc.
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关键词
cmos integrated circuits,mimo communication,wimax,application specific integrated circuits,broadband networks,microprocessor chips,radio access networks,radio transceivers,telecommunication network routing,telecommunication standards,cmos,fec processor,ieee 802.16e,lp mimo chipset,rf transceiver chip,wimax forum system profile wave2,wimax portable router,bit rate 70 mbit/s,low-power high-performance wimax chipset,media access control processor,mobile broad band access,modem/router chip,power 632.7 mw,programmable simd processor,size 65 nm,transceivers,digital signal processing,chip,baseband,radio frequency,media access control,frequency synthesizer,noise figure,error vector magnitude,phase noise,mimo,conformance testing,physical layer
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