{"volume":"71 ","language":[{"iso":"eng"}],"issue":"9-10","status":"public","related_material":{"link":[{"relation":"confirmation","url":"https://doi.org/10.1515/freq-2017-0174"}]},"date_updated":"2022-01-06T06:56:13Z","page":"399-414","year":"2017","citation":{"short":"C. Scheytt, A.R. Javed, E.R. Bammidi, K. KrishneGowda, I. Kallfass, R. Kraemer, Frequenz* Journal of RF-Engineering and Telecommunications 71 (2017) 399–414.","ama":"Scheytt C, Javed AR, Bammidi ER, KrishneGowda K, Kallfass I, Kraemer R. 100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing. Frequenz* Journal of RF-Engineering and Telecommunications. 2017;71(9-10):399-414.","apa":"Scheytt, C., Javed, A. R., Bammidi, E. R., KrishneGowda, K., Kallfass, I., & Kraemer, R. (2017). 100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing. Frequenz* Journal of RF-Engineering and Telecommunications, 71(9–10), 399–414.","ieee":"C. Scheytt, A. R. Javed, E. R. Bammidi, K. KrishneGowda, I. Kallfass, and R. Kraemer, “100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing,” Frequenz* Journal of RF-Engineering and Telecommunications, vol. 71, no. 9–10, pp. 399–414, 2017.","bibtex":"@article{Scheytt_Javed_Bammidi_KrishneGowda_Kallfass_Kraemer_2017, title={100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing}, volume={71}, number={9–10}, journal={Frequenz* Journal of RF-Engineering and Telecommunications}, author={Scheytt, Christoph and Javed, Abdul Rehman and Bammidi, Eswara Rao and KrishneGowda, Karthik and Kallfass, Ingmar and Kraemer, Rolf}, year={2017}, pages={399–414} }","mla":"Scheytt, Christoph, et al. “100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing.” Frequenz* Journal of RF-Engineering and Telecommunications, vol. 71, no. 9–10, 2017, pp. 399–414.","chicago":"Scheytt, Christoph, Abdul Rehman Javed, Eswara Rao Bammidi, Karthik KrishneGowda, Ingmar Kallfass, and Rolf Kraemer. “100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing.” Frequenz* Journal of RF-Engineering and Telecommunications 71, no. 9–10 (2017): 399–414."},"publication":"Frequenz* Journal of RF-Engineering and Telecommunications","date_created":"2021-09-13T08:20:30Z","author":[{"last_name":"Scheytt","full_name":"Scheytt, Christoph","id":"37144","first_name":"Christoph"},{"last_name":"Javed","full_name":"Javed, Abdul Rehman","first_name":"Abdul Rehman"},{"full_name":"Bammidi, Eswara Rao","last_name":"Bammidi","first_name":"Eswara Rao"},{"last_name":"KrishneGowda","full_name":"KrishneGowda, Karthik","first_name":"Karthik"},{"full_name":"Kallfass, Ingmar","last_name":"Kallfass","first_name":"Ingmar"},{"full_name":"Kraemer, Rolf","last_name":"Kraemer","first_name":"Rolf"}],"title":"100 Gbps Wireless System and Circuit Design Using Parallel Spread-Spectrum Sequencing","department":[{"_id":"58"}],"type":"journal_article","user_id":"15931","abstract":[{"lang":"eng","text":"In this article mixed analog/digital signal processing techniques based on parallel spread-spectrum sequencing (PSSS) and radio frequency (RF) carrier synchronization for ultra-broadband wireless communication are investigated on system and circuit level."}],"_id":"24216"}