Araştırma Makalesi

A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source

Cilt: 9 Sayı: 2 26 Aralık 2023
PDF İndir
EN

A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source

Öz

This work employs a leap-frog Gm-C structure to design a sixth-order Butterworth and elliptic bandpass filter that the cutoff frequency (Fo = 30MHz). A continuous-time differential Gm-C biquad and its corresponding voltage-mode version are elucidated, utilizing F.C.S (Floating Current Source) circuits as fundamental components. The enhanced current source architecture exhibits a streamlined configuration. It incorporates a reduced number of transistors, which facilitates optimal utilization of the chip's area and introduces a streamlined approach to circuit design. The suggested filter topology lacks a crucial resistor component, vital in achieving integration functionality. The suggested filter incorporates a grounding configuration for all capacitors, thereby mitigating the detrimental impact of parasitic effects. The filter design has been effectively realized utilizing TSMC's 0.18μm CMOS process. The findings from simulations have been provided to validate the theoretical analysis.

Anahtar Kelimeler

Kaynakça

  1. Feng, J., Wang, C., Zang, M., & Ren, Y. (2011, January). Realization of current-mode general nth-order filter based on current mirrors. In 2011 3rd International Conference on Advanced Computer Control. IEEE, 367-370.
  2. Bozomitu, R.G., & Cehan, V. A. (2009). Vlsi Implementation of a New Low Voltage 4th Order Differential Gm-C Bandpass Filters for Different Approximation In CMOS Technology. Acta Technica Napocensis, Electronics and Telecommunications, 50, 5-12.
  3. Ranjan, A., & Paul, S. K. (2011). Voltage mode universal biquad using CCCII. Active and Passive Electronic Components, 1-5.
  4. Gaspar, J., Chen, S. F., Gordillo, A., Hepp, M., Ferreyra, P., & Marqués, C. (2004). Digital lock in amplifier: study, design and development with a digital signal processor. Microprocessors and Microsystems, 28(4), 157-162.
  5. Hiroshi, Y. (1999). A 450kHz CMOS Gm-C Band-pass Filter with±0.5% Center Frequency Accuracy for On-Chip PDC IF Receivers. In IEEE International Solid-State Circuits Conference, February.
  6. Song, H. J., & Kim, C. K. (1990). An MOS four-quadrant analog multiplier using simple two-input squaring circuits with source followers. IEEE Journal of Solid-State Circuits, 25(3), 841-848.
  7. Khorramabadi, H. (1992). A CMOS line driver with 80-dB linearity for ISDN applications. IEEE journal of solid-state circuits, 27(4), 539-544.
  8. Edwards, R. T., Strohbehn, K., & Jaskulek, S. E. (2000, May). A field-programmable mixed-signal array architecture using antifuse interconnects. In 2000 IEEE International Symposium on Circuits and Systems (ISCAS). IEEE (3), 319-322.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mikroteknolojiler

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

26 Aralık 2023

Gönderilme Tarihi

24 Kasım 2023

Kabul Tarihi

17 Aralık 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 9 Sayı: 2

Kaynak Göster

APA
Demirel, H., & Ahmed, A. (2023). A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source. Kastamonu University Journal of Engineering and Sciences, 9(2), 96-103. https://doi.org/10.55385/kastamonujes.1395608
AMA
1.Demirel H, Ahmed A. A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source. Kastamonu University Journal of Engineering and Sciences. 2023;9(2):96-103. doi:10.55385/kastamonujes.1395608
Chicago
Demirel, Huseyin, ve Arsen Ahmed. 2023. “A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source”. Kastamonu University Journal of Engineering and Sciences 9 (2): 96-103. https://doi.org/10.55385/kastamonujes.1395608.
EndNote
Demirel H, Ahmed A (01 Aralık 2023) A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source. Kastamonu University Journal of Engineering and Sciences 9 2 96–103.
IEEE
[1]H. Demirel ve A. Ahmed, “A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source”, Kastamonu University Journal of Engineering and Sciences, c. 9, sy 2, ss. 96–103, Ara. 2023, doi: 10.55385/kastamonujes.1395608.
ISNAD
Demirel, Huseyin - Ahmed, Arsen. “A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source”. Kastamonu University Journal of Engineering and Sciences 9/2 (01 Aralık 2023): 96-103. https://doi.org/10.55385/kastamonujes.1395608.
JAMA
1.Demirel H, Ahmed A. A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source. Kastamonu University Journal of Engineering and Sciences. 2023;9:96–103.
MLA
Demirel, Huseyin, ve Arsen Ahmed. “A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source”. Kastamonu University Journal of Engineering and Sciences, c. 9, sy 2, Aralık 2023, ss. 96-103, doi:10.55385/kastamonujes.1395608.
Vancouver
1.Huseyin Demirel, Arsen Ahmed. A Low-Power 30MHz,6th Order Bandpass Differential Gm-C Filter on Chip Utilizing Floating Current Source. Kastamonu University Journal of Engineering and Sciences. 01 Aralık 2023;9(2):96-103. doi:10.55385/kastamonujes.1395608

Cited By