Direct conversion receiver having a low pass pole...

Telecommunications – Receiver or analog modulated signal frequency converter – With particular receiver circuit

Reexamination Certificate

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C455S313000, C375S297000, C375S318000

Reexamination Certificate

active

07062248

ABSTRACT:
A wireless communications mobile station (10) includes at least one antenna (240) and a RF transceiver (210,220) containing a direct conversion receiver (1) coupled to the antenna. The direct conversion receiver contains a low noise amplifier (3) for amplifying a received RF signal and for outputting the amplified RF signal to a current switching down-conversion mixer (4). The down-conversion mixer has a first input node for receiving the amplified RF signal, a second input node for receiving a local oscillator (LO) signal for mixing with the amplified RF signal and an output node coupled to an input of an operational amplifier forming a low pass filter (5A). In accordance with an aspect of this invention the low pass filter has a low pass pole generated by a resistor R and a capacitor C coupled in parallel in a feedback path of the operational amplifier, where a low pass comer frequency of the low pass filter is inversely proportional to the product of R and C. In a preferred embodiment at least the down-conversion mixer and the low pass filter are implemented as part of an integrated circuit, and the resistor and the capacitor are fabricated within the integrated circuit.

REFERENCES:
patent: 6654595 (2003-11-01), Dexter
patent: 6738601 (2004-05-01), Rofougaran et al.
patent: 6753727 (2004-06-01), Magoon et al.
patent: 6807406 (2004-10-01), Razavi et al.
patent: 2002/0058491 (2002-05-01), Minnis et al.
patent: 2004/0106380 (2004-06-01), Vassiliou et al.
“A 1.5 GHz Highly Linear CMOS Down Conversion Mixer”, IEEE Journal of Solid State Circuits, J. Crols et al., vol. 30, No. 7, Jul. 1995, pp. 736-742.
“CMOS RF Circuits for Data Communications Applications”, IEEE Journal of Solid-State Circuits, B. Song, vol. SC-21, No.: 2, Apr. 1986, pp. 310-317.
“Analysis and Realization of a Downconverting Quadrature Sampler”, University of Oulu, Department of Electrical Engineering, K. Sami 2001 (Thesis).

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