نتایج جستجو برای: double balanced passive mixer
تعداد نتایج: 357744 فیلتر نتایج به سال:
This paper presents a general analysis of the thirdorder nonlinearity of a differential common-emitter RF amplifier and an improved technique to cancel the third-order nonlinearity. A thorough analysis of the mechanisms leading to the second-order nonlinearity of bipolar double-balanced active mixers is also presented. An SiGe BiCMOS WCDMA direct-conversion mixer is designed based on the thirda...
A down conversion RF mixer is designed with 65nm CMOS technology for a different low power consumption applications. Mixer structure comprises a double-balanced Gilbert-Cell with improving linearity method in the RF stage of circuit; all is at a supply voltage of 1.8V and a power of 2.17 mW. The circuit is simulated for different spectrum applications as: 200 MHz mobile users, 1.9 GHz wireless ...
The capabilities of Horizontal Current Bipolar Transistor (HCBT) technology for radio frequency (RF) integrated circuit (IC) design is analyzed. The HBCT, with its novel technological approach and integration with existing CMOS technologies, is entering the testing phase on IC level. The demanding RF integrated circuit requirements and design issues in the frequency range 0.9 – 5 GHz are presen...
The demand for radio frequency (RF) transceivers operating at 2.4 GHz band has attracted considerable research interest due to the advancement in short range wireless technologies. The performance of RF transceivers depends heavily on the transmitter and receiver front-ends. The receiver front-end is comprised of a low-noise amplifier (LNA) and a downconversion mixer. There are very few designs...
We present the design and measured results for a 60 GHz double balanced sub-harmonic MMIC mixer fabricated using the TRW 0.15μm gate length GaAs pHEMT foundry process. The sub-harmonic mixer architecture eliminates the need for costly mm-wave sources that are usually required with conventional fundamental frequency mixers. The mixer has been integrated into a coaxial package and a measured conv...
A double balanced Gilbert-cell class-A amplifier bleeding mixer (DBGC CAAB mixer) is proposed and implemented. The injection current is utilized to amplify the local oscillator (LO) signal to improve the performance of the transconductor stage. The DBGC CAAB mixer achieves a conversion gain of 17.5 dB at −14 dBm LO power, and the noise figure is suppressed from 45 dB to 10.7 dB. It is important...
We report on the design and performance of a 530-GHz balanced SIS mixer, the first balanced mixer in this frequency range. This quasi-optical balanced mixer utilizes a cross-slot antenna on a hyperhemispherical substrate lens with eight superconductor–insulator–superconductor (SIS) junctions and a 180 lumped element IF hybrid circuit. The local oscillator (LO) and the radio frequency (RF) signa...
This study presents a Ka-band direct-conversion receiver using 28-nm CMOS (Complimentary Metal Oxide Semiconductor) process for radar applications. The designed includes LNA (Low-Noise Amplifier), Mixer, and Baseband amplifier. adopts two-stage cascode amplifier structure. Then, the mixer is single-balanced passive with low flicker noise. At end, baseband transimpedance fat FET (Field-Effect-tr...
objective: in this article, a numerical study is conducted on mixing of two fluids in the liquid phase with two different concentrations of a chemical species in the electro-osmotic flow. methods: the base liquid is an electrolyte which flows in a two-dimensional micro-channel having electrically charged walls. lorentz electric force, which is used as stimulating flow factor, is created by appl...
A DC-offset cancellation scheme in the 5GHz directconversion receiver compliant with IEEE 802.11a wireless LAN standard is described in this paper. It uses the analog R~F4~~ i"a I oU feedback loop to eliminate the DC-offset at the output of the double-balanced mixer. The mixer has a simulation voltageA conversion gain of 13dB at 5.2GHz, noise figure of 9.67dB, -. 1) IIP3 of 7.6dBm. The solution...
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