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Raj Senani
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2020 – today
- 2024
- [j42]Aakriti Chhabra, Raj Senani, Bhawna Aggarwal:
An improved CMOS second-generation current controlled conveyor with enhanced tunable range of RX and its applications. Int. J. Circuit Theory Appl. 52(9): 4796-4825 (2024) - [j41]Aakriti Chhabra, Bhawna Aggarwal, Raj Senani:
A low-voltage MOS translinear loop, biased using FVF and its applications in realizing square-rooter and squarer circuits. Integr. 94: 102092 (2024) - [j40]Aakriti Chhabra, Bhawna Aggarwal, Raj Senani:
Low-Voltage Current-Mode Full-Wave Rectifier Employing FVF-Biased MOS Translinear Loop. J. Circuits Syst. Comput. 33(3) (2024) - [j39]Manish Rai, Raj Senani, Abdhesh K. Singh:
CMOS VM/CM Tow-Thomas-Equivalent Biquad Filters and a Linear VCO Using Recently Proposed CMOS Transconductors. J. Circuits Syst. Comput. 33(12): 2420003:1-2420003:15 (2024) - 2023
- [j38]Raj Senani, Data Ram Bhaskar, Shanti Swaroop Gupta, Pragati Kumar, Ravindra Kumar Sharma:
An ingenious methodology of deriving single-FTFN-based canonic grounded-capacitor SRCOs. Int. J. Circuit Theory Appl. 51(4): 1918-1934 (2023) - [j37]Data Ram Bhaskar, Ajishek Raj, Raj Senani:
Third-order quadrature sinusoidal oscillators with fully uncoupled tuning laws using only two CFOAs and grounded capacitors. Int. J. Circuit Theory Appl. 51(6): 2981-2992 (2023) - [j36]Raj Senani, Manish Rai, Abdhesh K. Singh:
CMOS linear voltage-controlled positive/negative floating resistance configuration and its application in realising a voltage controllable all-pass filter. Int. J. Circuit Theory Appl. 51(7): 3543-3555 (2023) - [j35]Aakriti Chhabra, Raj Senani, Bhawna Aggarwal:
Wide-range current-controlled grounded resistor realization: A new application of the CMOS translinear elements. Int. J. Circuit Theory Appl. 51(8): 3622-3636 (2023) - [j34]Manish Rai, Raj Senani, Abdhesh K. Singh:
New CMOS Linear Transconductors and their Applications. J. Circuits Syst. Comput. 32(12): 2350211:1-2350211:24 (2023) - 2022
- [j33]Ajishek Raj, Pragati Kumar, Data Ram Bhaskar, Raj Senani:
New Very-Low-Frequency Third-Order Quadrature Sinusoidal Oscillators Using CFOAs. Circuits Syst. Signal Process. 41(8): 4293-4323 (2022) - [j32]Data Ram Bhaskar, Ajishek Raj, Raj Senani, Pragati Kumar:
CFOA-based simple mixed-mode first-order universal filter configurations. Int. J. Circuit Theory Appl. 50(7): 2631-2641 (2022) - [j31]Data Ram Bhaskar, Ajishek Raj, Raj Senani:
Novel current feedback operational amplifier-based configuration that realizes a single-input multiple-output-type universal active filter and a single-resistance-controlled oscillator. Int. J. Circuit Theory Appl. 50(12): 4251-4264 (2022) - [j30]Dharmesh Kumar Srivastava, Raj Senani, Data Ram Bhaskar:
Single-CFOA-Single-External-Capacitor-Based Partially-Active-R SRCOs: The Fourth Missing Circuit. J. Circuits Syst. Comput. 31(18): 2220004:1-2220004:15 (2022)
2010 – 2019
- 2018
- [j29]Alok Kumar Singh, Pragati Kumar, Raj Senani:
Electronically tunable grounded/floating inductance simulators using Z-copy CFCCC. Turkish J. Electr. Eng. Comput. Sci. 26(2): 1041-1055 (2018) - 2017
- [j28]Ravindra K. Sharma, Tajinder Singh Arora, Raj Senani:
On the realisation of canonic single-resistance-controlled oscillators using third generation current conveyors. IET Circuits Devices Syst. 11(1): 10-20 (2017) - 2012
- [j27]Ashish Gupta, Raj Senani, Data Ram Bhaskar, Abdhesh K. Singh:
OTRA-based Grounded-FDNR and Grounded-Inductance Simulators and Their Applications. Circuits Syst. Signal Process. 31(2): 489-499 (2012) - [j26]Kasim K. Abdalla, Data Ram Bhaskar, Raj Senani:
Configuration for realising a current-mode universal filter and dual-mode quadrature single resistor controlled oscillator. IET Circuits Devices Syst. 6(3): 159-167 (2012) - [j25]Raj Senani:
On the Transformation of Grounded inductors to Floating inductors using ofa and Fccii. J. Circuits Syst. Comput. 21(5) (2012) - 2011
- [j24]Data Ram Bhaskar, Kasim Karam Abdalla, Raj Senani:
Electronically-Controlled Current-mode second order Sinusoidal Oscillators Using MO-OTAs and Grounded Capacitors. Circuits Syst. 2(2): 65-73 (2011) - [j23]Raj Senani, Kasim K. Abdalla, Data Ram Bhaskar:
A State Variable Method for the Realization of Universal Current-Mode Biquads. Circuits Syst. 2(4): 286-292 (2011) - [j22]J. K. Pathak, Abdhesh K. Singh, Raj Senani:
Systematic realisation of quadrature oscillators using current differencing buffered amplifiers. IET Circuits Devices Syst. 5(3): 203-211 (2011) - [j21]Abdhesh K. Singh, Raj Senani, Data Ram Bhaskar, Ravindra K. Sharma:
A New Electronically-Tunable Active-only Universal biquad. J. Circuits Syst. Comput. 20(3): 549-555 (2011) - [j20]Shanti Swarup Gupta, Data Ram Bhaskar, Raj Senani, Abdhesh K. Singh:
Synthesis of Linear VCOs: the State-Variable Approach. J. Circuits Syst. Comput. 20(4): 587-606 (2011) - 2010
- [j19]Data Ram Bhaskar, Raj Senani, Abdhesh K. Singh, Shanti Swarup Gupta:
Two Simple Analog Multiplier Based Linear VCOs Using a Single Current Feedback Op-Amp. Circuits Syst. 1(1): 1-4 (2010) - [j18]Shanti Swarup Gupta, Ravindra K. Sharma, Data Ram Bhaskar, Raj Senani:
Sinusoidal oscillators with explicit current output employing current-feedback op-amps. Int. J. Circuit Theory Appl. 38(2): 131-147 (2010)
2000 – 2009
- 2009
- [j17]Raj Senani, Data Ram Bhaskar, Shanti Swarup Gupta, Vinod Kumar Singh:
A configuration for realizing floating, linear, voltage-controlled resistance, inductance and FDNC elements. Int. J. Circuit Theory Appl. 37(5): 709-719 (2009) - [j16]Ravindra K. Sharma, Raj Senani, Data Ram Bhaskar, Abdhesh K. Singh, Shanti Swarup Gupta:
Electronically-Controllable Floating inductor Using Operational Mirrored amplifier. J. Circuits Syst. Comput. 18(1): 59-66 (2009) - 2008
- [j15]Raj Senani, Data Ram Bhaskar:
COMMENT Practical voltage/current-controlled groundedresistor with dynamic range extension. IET Circuits Devices Syst. 2(5): 465-466 (2008) - 2006
- [j14]Vinod Kumar Singh, Abdhesh K. Singh, Data Ram Bhaskar, Raj Senani:
New Universal Biquads Employing CFOAs. IEEE Trans. Circuits Syst. II Express Briefs 53-II(11): 1299-1303 (2006) - [j13]Data Ram Bhaskar, Raj Senani:
New CFOA-Based Single-Element-Controlled Sinusoidal Oscillators. IEEE Trans. Instrum. Meas. 55(6): 2014-2021 (2006) - 2005
- [j12]Data Ram Bhaskar, Abdhesh K. Singh, Ravindra K. Sharma, Raj Senani:
New OTA-C universal current-mode/trans-admittance biquads. IEICE Electron. Express 2(1): 8-13 (2005) - [j11]Raj Senani, Ravindra K. Sharma:
Explicit-current-output sinusoidal oscillators employing only a single current-feedback op-amp. IEICE Electron. Express 2(1): 14-18 (2005) - [j10]Abdhesh K. Singh, Raj Senani:
CFOA-based state-variable biquad and its high-frequency compensation. IEICE Electron. Express 2(7): 232-238 (2005) - [j9]Vishwakarma Singh, Abdhesh K. Singh, Data Ram Bhaskar, Raj Senani:
Novel mixed-mode universal biquad configuration. IEICE Electron. Express 2(22): 548-553 (2005) - [j8]Vinod Kumar Singh, Abdhesh K. Singh, Raj Senani:
Dual Function Capability of Recently Proposed Four-current-conveyor-based Vm Biquad. J. Circuits Syst. Comput. 14(1): 51-56 (2005) - [j7]Vinod Kumar Singh, Ravindra K. Sharma, Abdhesh K. Singh, Data Ram Bhaskar, Raj Senani:
Two new canonic single-CFOA oscillators with single resistor controls. IEEE Trans. Circuits Syst. II Express Briefs 52-II(12): 860-864 (2005) - 2004
- [j6]Raj Senani, Shanti Swarup Gupta:
Novel sinusoidal oscillators using only unity-gain voltage followers and current followers. IEICE Electron. Express 1(13): 404-409 (2004) - [j5]Raj Senani, Vinod Kumar Singh, Abdhesh K. Singh, Data Ram Bhaskar:
Novel electronically controllable current-mode universal biquad filter. IEICE Electron. Express 1(14): 410-415 (2004) - [j4]Shanti Swarup Gupta, Raj Senani:
New single resistance controlled oscillators employing a reduced number of unity-gain cells. IEICE Electron. Express 1(16): 507-512 (2004) - [j3]Raj Senani, Abdhesh K. Singh, Vinod Kumar Singh:
A new floating current-controlled positive resistance using mixed translinear cells. IEEE Trans. Circuits Syst. II Express Briefs 51-II(7): 374-377 (2004) - 2002
- [j2]Abdhesh K. Singh, Raj Senani:
A New Four-CC-Based Configuration for Realizing a Voltage-Mode Biquad Filter. J. Circuits Syst. Comput. 11(3): 213-218 (2002)
1980 – 1989
- 1987
- [j1]Raj Senani:
A novel application of four-terminal floating nullors. Proc. IEEE 75(11): 1544-1546 (1987)
Coauthor Index
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