Download Analog Circuit Design: RF Circuits: Wide band, Front-Ends, by Michiel Steyaert, Arthur H.M. van Roermund, Johan Huijsing PDF

By Michiel Steyaert, Arthur H.M. van Roermund, Johan Huijsing

Analog Circuit layout comprises the contribution of 18 tutorials of the 14th workshop on Advances in Analog Circuit layout. each one half discusses a selected todate subject on new and worthwhile layout rules within the zone of analog circuit layout. every one half is gifted by means of six specialists in that box and state-of-the-art info is shared and overviewed. This ebook is quantity 14 during this profitable sequence of Analog Circuit layout, offering helpful details and perfect overviews of analog circuit layout, CAD and RF systems.

Analog Circuit layout is a necessary reference resource for analog circuit designers and researchers wishing to maintain abreast with the newest improvement within the box. the academic assurance additionally makes it appropriate to be used in a complicated layout course.

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Read or Download Analog Circuit Design: RF Circuits: Wide band, Front-Ends, DAC's, Design Methodology and Verification for RF and Mixed-Signal Systems, Low Power and Low Voltage PDF

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Extra info for Analog Circuit Design: RF Circuits: Wide band, Front-Ends, DAC's, Design Methodology and Verification for RF and Mixed-Signal Systems, Low Power and Low Voltage

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6. Implementation and measurement results In [12] we have used the proposed structure with cascodes on top of the switches in a 10-bit binary-weighted DAC. Although the main purpose was to demonstrate that a binary-weighted DAC can have good dynamic linearity, it also demonstrated that our switching structure can achieve good linearity. The basic structure is shown in figure 14. The actual DAC contains many of these basic structures in parallel. Transistor M12 is used as the current source. This transistor has a large width and length and hence a lot of parasitic capacitance.

2) depicts the criteria for the silicon technology choice and the technology options. 13um low power process with a dual gate oxide for 2V5 transistors. 13 um transistors. This concerns mainly the circuits connected to the antenna like LNA and PPA and high frequency circuits in the PLL, like I-Q-generation, the LO buffers and the prescaler. 13um transistors. Circuits that benefit from a higher supply voltage, mainly the IF part of the transceiver because of the dynamic range, are designed in the 2V5 dual gate oxide transistors.

RL is the load resistor. This agrees with the findings in [1]. The form of equation (5) once again emphases the importance of the gain of the switch. Compared to [1] we do not find higher-order non-linear terms in our results. This difference is caused by the fact that in [1] the feedback takes the distortion caused by the distortion spurious into account. Reviewing the findings in [1] one can see that, for well designed converters, the third or higher-order distortion is negligible. This lead in [2] to the conclusion that in a differential converter the cascode can be omitted as the third-order distortion caused by the output impedance is very low.

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