Ground Bounce Reduction in Digital Circuit Using EMI Suppressors
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2011
Authors
Kisic, MilicaBabković, K.
Krstić, Dejan
Radovanović, Milan
Menicanin, Aleksandar
Zivanov, Ljiljana
Damnjanovic, Mirjana
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IEEE
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Ground noise voltage generated by a logic gate on a signal return conductor is investigated in this paper. An analytical method for calculating the ground bounce and the factors that affect it are discussed. The efficiency of a ferrite EMI suppressor in minimizing its effects is also investigated. The measurement is obtained by digital oscilloscope. Measured data with and without implemented EMI suppressor are presented. The impact of various transition times of the driving signal on the ground bounce is analyzed and measured data are given. The measurement is obtained using an HP 8082A pulse generator.
Keywords:
Electromagnetic interference, ground bounce, ferrite devices, impedance.Source:
IEEE 16th International Symposium on Power Electronics-Ee2011, 2011, T4-2.8, 1-5Funding / projects:
- Innovative electronic components and systems based on inorganic and organic technologies embedded in consumer goods and products (RS-MESTD-Technological Development (TD or TR)-32016)
- E!4570
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Institut za multidisciplinarna istraživanjaTY - CONF AU - Kisic, Milica AU - Babković, K. AU - Krstić, Dejan AU - Radovanović, Milan AU - Menicanin, Aleksandar AU - Zivanov, Ljiljana AU - Damnjanovic, Mirjana PY - 2011 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/3159 AB - Ground noise voltage generated by a logic gate on a signal return conductor is investigated in this paper. An analytical method for calculating the ground bounce and the factors that affect it are discussed. The efficiency of a ferrite EMI suppressor in minimizing its effects is also investigated. The measurement is obtained by digital oscilloscope. Measured data with and without implemented EMI suppressor are presented. The impact of various transition times of the driving signal on the ground bounce is analyzed and measured data are given. The measurement is obtained using an HP 8082A pulse generator. C3 - IEEE 16th International Symposium on Power Electronics-Ee2011 T1 - Ground Bounce Reduction in Digital Circuit Using EMI Suppressors EP - 5 IS - T4-2.8 SP - 1 UR - https://hdl.handle.net/21.15107/rcub_rimsi_3159 ER -
@conference{ author = "Kisic, Milica and Babković, K. and Krstić, Dejan and Radovanović, Milan and Menicanin, Aleksandar and Zivanov, Ljiljana and Damnjanovic, Mirjana", year = "2011", abstract = "Ground noise voltage generated by a logic gate on a signal return conductor is investigated in this paper. An analytical method for calculating the ground bounce and the factors that affect it are discussed. The efficiency of a ferrite EMI suppressor in minimizing its effects is also investigated. The measurement is obtained by digital oscilloscope. Measured data with and without implemented EMI suppressor are presented. The impact of various transition times of the driving signal on the ground bounce is analyzed and measured data are given. The measurement is obtained using an HP 8082A pulse generator.", journal = "IEEE 16th International Symposium on Power Electronics-Ee2011", title = "Ground Bounce Reduction in Digital Circuit Using EMI Suppressors", pages = "5-1", number = "T4-2.8", url = "https://hdl.handle.net/21.15107/rcub_rimsi_3159" }
Kisic, M., Babković, K., Krstić, D., Radovanović, M., Menicanin, A., Zivanov, L.,& Damnjanovic, M.. (2011). Ground Bounce Reduction in Digital Circuit Using EMI Suppressors. in IEEE 16th International Symposium on Power Electronics-Ee2011(T4-2.8), 1-5. https://hdl.handle.net/21.15107/rcub_rimsi_3159
Kisic M, Babković K, Krstić D, Radovanović M, Menicanin A, Zivanov L, Damnjanovic M. Ground Bounce Reduction in Digital Circuit Using EMI Suppressors. in IEEE 16th International Symposium on Power Electronics-Ee2011. 2011;(T4-2.8):1-5. https://hdl.handle.net/21.15107/rcub_rimsi_3159 .
Kisic, Milica, Babković, K., Krstić, Dejan, Radovanović, Milan, Menicanin, Aleksandar, Zivanov, Ljiljana, Damnjanovic, Mirjana, "Ground Bounce Reduction in Digital Circuit Using EMI Suppressors" in IEEE 16th International Symposium on Power Electronics-Ee2011, no. T4-2.8 (2011):1-5, https://hdl.handle.net/21.15107/rcub_rimsi_3159 .