A fully integrated 2 A fractional Synthesizer (included VCO, Loop Filter, Xtal oscillator negative impedance) is implemented in a 0.4 um, 45 GHz (SiGe) BiCMOS. The measured close in phase noise is -106 dBdHz at 900 MHz using 26 MHz comparison frequency and frequency resolution less than 5Hz is achieved. The VCO's inductors are not integrated in order to test the PLL performance on different frequency's range. Using a 200 KHz close loop bandwidth the level of the tones generated, when critical channels are synthesized, exceed the GSM transmitter specifications without applying any dithering technique. The very low close in phase noise and low level of tone generation, make it suitable for "indirect GMSK VCO modulation" application
3 Sigma delta PLLs covering an octave have been integrated on one BiCMOS 0.35um CSS (channel stacking switch) chip. The 3 PLLs can work simultaneously synthesizing the same frequencies or different frequencies. To minimize the dynamic coupling among the PLLs a complete calibration algorithm has been implemented while to avoid static coupling a large use of differential structure and other design techniques have been used. The maximum composite spurious (due to PLLs coupling, Xtal spurious and fractional spurs) is -35dBc (in +/-15MHz range). Each PLL has a frequency range from 2.2GHz to 4.4GHz with a worst-case (over process and temperature) integrated rms of 1.2deg at 3.8GHz. The frequency step (31.25KHz) is obtained with a 10bit SD clocked at 32MHz. The single PLL draw 35 mA from 3.8 Volt supply (regulated internally to 2.8 or 3.4 Volt) for 3.2 mm 2 .
The analog Power Amplifier (PA) control loop of a fullyintegrated GSM/GPRS quad band transceiver [1][2] is presented. The control loop is based on a fully-integrated PA controller which meets all GSM/GPRS specifications. Both the gain and the bandwidth of the PA control loop are programmable as well as the stand-by voltage delivered to the PA. These features, together with a high driving capability (8.4mA @ 2.5V), make this solution capable to interface vast combinations of PAs, couplers and detectors. The proposed PA controller has been integrated in a BiCMOS SiGe 0.35µm process and measures 0.33mm 2 . The current consumption is 2.8mA without load and 7.2mA in the application (using Hitachi PF08109B PA) from a single 2.8V power supply.
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