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Item type:Item, 1.2 V Differential Difference Transconductance Amplifier and Its Application in Mixed-Mode Universal Filter(2022-05-01) ;Kumngern, Montree ;Suksaibul, Pichai ;Khateb, FabianKulej, TomaszThis paper presents a new mixed-mode universal filter based on a differential difference transconductance amplifier (DDTA). Unlike the conventional transconductance amplifier (TA), this DDTA has both advantages of the TA and the differential difference amplifier (DDA). The proposed filter can offer four-mode operations of second-order transfer functions into a single topology, namely, voltage-mode (VM), current-mode (CM), transadmittance-mode (TAM), and transimpedance-mode (TIM) transfer functions. Each operation mode offers five standard filtering responses; therefore, at least twenty filtering transfer functions can be obtained. For the filtering transfer functions, the matching conditions for the input and passive component are absent. The natural frequency and the quality factor can be set orthogonally and electronically controlled. The performance of the proposed topology was evaluated by PSPICE simulator using the 0.18 µm CMOS technology from the Taiwan Semiconductor Manufacturing Company (TSMC). The voltage supply was 1.2 V and the power dissipation of the DDTA was 66 µW. The workability of the filter was confirmed through experimental test by DDTA-based LM13600 discrete-component integrated circuits. - Some of the metrics are blocked by yourconsent settings
Item type:Item, 0.3-Volt Rail-to-Rail DDTA and Its Application in a Universal Filter and Quadrature Oscillator(2022-04-01) ;Khateb, Fabian ;Kumngern, Montree ;Kulej, TomaszBiolek, DaliborThis paper presents the extremely low-voltage supply of the CMOS structure of a differential difference transconductance amplifier (DDTA). With a 0.3-volt supply voltage, the circuit offers rail-to-rail operational capability. The circuit is designed for low-frequency biomedical and sensor applications, and it consumes 357.4 nW of power. Based on two DDTAs and two grounded capacitors, a voltage-mode universal filter and quadrature oscillator are presented as applications. The universal filter possesses high-input impedance and electronic tuning ability of the natural frequency in the range of tens up to hundreds of Hz. The total harmonic distortion (THD) for the band-pass filter was 0.5% for 100 mV<inf>pp</inf> @ 84.47 Hz input voltage. The slight modification of the filter yields a quadrature oscillator. The condition and the frequency of oscillation are orthogonally controllable. The frequency of oscillation can also be controlled electronically. The THD for a 67 Hz oscillation frequency was around 1.2%. The circuit is designed and simulated in a Cadence environment using 130 nm CMOS technology from United Microelectronics Corporation (UMC). The simulation results confirm the performance of the designed circuits. - Some of the metrics are blocked by yourconsent settings
Item type:Item, 0.5 V Differential Difference Transconductance Amplifier and Its Application in Voltage-Mode Universal Filter(2022-01-01) ;Khateb, Fabian ;Kumngern, Montree ;Kulej, TomaszBiolek, DaliborThis paper presents an innovative CMOS structure for Differential Difference Transconductance Amplifiers (DDTA). While the circuit operates under extremely low voltage supply 0.5 V, the circuit's performance is improved thanks to using the multiple-input MOS transistor (MI-MOST), the bulk-driven, self-cascode and partial positive feedback (PPF) techniques. As a result, the DDTA structure is less complex, with high gain of 93 dB, wide input voltage range nearly rail-to-rail, and wide transconductance tunability. As an example of application, a second-order voltage-mode universal filter using three DDTAs and two 6 pF integrated capacitors is presented. The filter is designed such that no matching conditions are required for the input and passive components, and the input signals need not be inverted. The natural frequency and the quality factor can be set orthogonally while the natural frequency can be electronically controlled. The circuit was designed and simulated in Cadence environment using 0.18 \mu \text{m} TSMC technology. The simulation results including intensive Monte-Carlo (MC) and process, temperature, voltage (PVT) analysis confirm the stability and the robustness of the design to process, mismatch variation and PVT corners. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Multiple-Input Universal Filter and Quadrature Oscillator Using Multiple-Input Operational Transconductance Amplifiers(2021-01-01) ;Kumngern, Montree ;Khateb, Fabian ;Kulej, TomaszPsychalinos, CostasThis paper presents a new multiple-input single -output voltage-mode universal biquad filter based on multiple-input operational transconductance amplifiers (MI-OTA). This work demonstrates that the multiple-input OTA-based universal filter can provide more filtering responses and other benefits, compared to conventional OTA-based one. The filter provides electronic and orthogonal control of the natural frequency and the quality factor. Furthermore, a two-phase quadrature oscillator can be obtained by slightly modifying the proposed universal filter while the condition and frequency of oscillation can be controlled orthogonally and electronically. The performance of the proposed circuit is evaluated in Cadence environment using the TSMC $0.18~\mu \text{m}$ CMOS technology. The voltage supply is 1.2 V and the power dissipation of the MI-OTA is $24~\mu \text{W}$. For 1% third intermodulation distortion (IMD3) the dynamic range of the band-pass filter is 78.6 dB. In addition, the proposed filter and oscillator are investigated through experiment tests using LM13700 commercially available OTA. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Four-input four-output current-mode multifunction filter using CDTAs(2017-07-02) ;Kumngern, MontreeTorteanchai, UsaThis paper proposed a novel four-input four-output current-mode employing two grounded capacitors and two current differencing transconductance amplifiers (CDTAs) from a universal filter and it has been done. The filter could implement five filtering functions on a single topology. The conditions of passive component-matching and requirements of inverting-type input signal are absent in implementing of these filtering functions. The bias currents could control the natural frequency electronically meanwhile the filter passive and active sensitivities are low. To confirm between both the proposed filter and presented theory, the PSPICE simulation results were taken and carried out. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Quadrature Oscillator Using Operational Transresistance Amplifiers(2016-07-02) ;Torteanchai, Usa ;Phatsornsiri, PunnavichKumngern, MontreeThis paper presents a new quadrature oscillator using operational transresistance amplifiers (OTRAs). The use of OTRA as active elements which offers low parasitic parameters, high slew rate and high bandwidth independent of the gain, precision of oscillating frequency can be achieved. The oscillating frequency and oscillating condition of proposed oscillator can be independently controlled. Also output terminals are possessed low impedance level which can be directly connected to the load without any buffer circuits. Simulation results verifying the theoretical analysis are included to confirm proposed structure. From simulation results, it can be expressed that the simulation result is very agree well with theory. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Single-element control third-order quadrature oscillator using OTRAs(2015-01-05) ;Kumngern, MontreeKansiri, IttipolThis paper presents a new third-order quadrature oscillator using operational transresistance amplifiers as active elements. The proposed circuit provides high precision of the frequency of oscillation. The frequency of oscillation can be controlled using a single passive component and the condition of oscillation can be controlled orthogonally by setting the circuit components. Also two quadrature voltage output terminals possess low impedance level which can be directly connected to the load. Simulation results verifying the theoretical analysis are also included. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Three-input one-output voltage-mode universal filter using simple OTAs(2015-01-05) ;Wattikornsirikul, NatchayathornKumngern, MontreeThis paper presents three-input one-output voltage-mode electronically tunable universal filter using only simple CMOS operational transconductance amplifiers. The proposed filter provides low-pass, band-pass, high-pass, band-stop and allpass filters into one single topology. For realize all the filtering function, no component-matching conditions are required. The natural frequency and the quality factor can be controlled orthogonally and electronically by adjusting the bias currents. The proposed filter is simulated using PSPICE simulators to confirm the presented theory. - Some of the metrics are blocked by yourconsent settings
Item type:Item, A DXCCII-based four-quadrant multiplier(2013-08-28)Kumngern, MontreeThis paper presents a four-quadrant analog multiplier using dual-X second-generation current conveyors (DXCCIIs). The proposed multiplier employs only two DXCCIIs and eight MOS transistors operating in saturation region, which is ideal for monolithic implementation. The use of MOS devices operating in saturation region offers high-frequency capability of the circuit. PSPICE simulators using 0.35 μm TSMC CMOS process are used to validate the workability of the circuit. Simulation results show that the circuit has a -3dB bandwidth of 450 MHz, 1.59 % total harmonic distortion for the input current 200 mVP-P. © 2013 IEEE. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Three-input single-output current-mode universal filter using a MCDTA(2013-01-01) ;Kumngern, Montree ;Khwama, KulasakJunnapiya, SomyotThis paper presents a new three inputs and one output current-mode universal filter employing one modified current differencing transconductance amplifier (MCDTA) and two grounded capacitors. The filter can realize low-pass, bandpass, high-pass, band-stop and all-pass responses by appropriately connecting the input terminals. For realize filtering functions, without component-matching conditions and inverting-type input signal requirements. The natural frequency can be electronically controlled by the bias currents of MCDTA. The active and passive sensitivity of the filter are low. The PSPICE simulation results are performed to confirm the presented theory. © 2013 IEEE.
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