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A Robust 130 nm-CMOS Built-In Current Sensor Dedicated to RF Applications.

, , , , , and . J. Electronic Testing, 23 (6): 593-603 (2007)

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RFIC design by mathematics for next generation wireless access.. ESSCIRC, page 35. IEEE, (2015)A random-based fractional-N frequency divider for spurious tones cancellation., , , and . ICECS, page 1076-1079. IEEE, (2010)Design of a SiGe Reconfigurable Power Amplifier for RF Applications: Device and Multi-standard Considerations., , , , and . ICECS, page 331-334. IEEE, (2006)A New Industrial Approach Compatible With Microelectronics Education: Application to an RF System Design., , , , and . MSE, page 37-38. IEEE Computer Society, (1999)Fault Coverage on RF VCOs and BIST for Wafer Sort Using Peak-to-Peak Voltage Detectors., , , , and . J. Electronic Testing, 26 (3): 355-365 (2010)The P/DLL frequency synthesizer architecture: A native trade-off between stability and wideband frequency generation., , , , and . NEWCAS, page 413-416. IEEE, (2014)Design of High Sensitivity Radiofrequency Energy Harvesters Dedicated to Low-Power Applications., , , , and . J. Low Power Electronics, 10 (1): 72-83 (2014)Voltage controlled delay line with phase quadrature outputs for 0.9-4 GHz F-DLL dedicated to zero-IF multi-standard LO., , , and . SBCCI, ACM, (2009)An Optimum Body Biasing for Gain and Linearity Control in CMOS Low-Noise Amplifiers., , , and . J. Low Power Electronics, 7 (2): 199-208 (2011)Track and hold circuit design and implementation in 65 nm CMOS technology for RF subsampling receivers., , , , , and . ICECS, page 1249-1252. IEEE, (2008)