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Hasil Pencarian

Ditemukan 9550 dokumen yang sesuai dengan query
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Johnson, David E.
Engliwood Cliffs: Prentice-Hall, 1976
621.381 5 JOH i
Buku Teks  Universitas Indonesia Library
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Williams, Arthur Bernard, 1940-
New York: McGraw-Hill, 1981
R 621.381 WIL e
Buku Referensi  Universitas Indonesia Library
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Lambang Wisnusasongko
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 1992
S27971
UI - Skripsi Membership  Universitas Indonesia Library
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Moschytz, George S.
"This textbook is designed for graduate-level courses, and for self-study, in analog and sampled-data, including switched-capacitor, circuit theory and design for ongoing, or active electrical engineers, needing to become proficient in analog circuit design on a system, rather than on a device, level. After decades of experience in industry and teaching this material in academic settings, the author has extracted many of the most important and useful features of analog circuit theory and design and presented them in a manner that is easy to digest and utilize. The methodology and analysis techniques presented can be applied to areas well beyond those specifically addressed in this book. This book is meant to enable readers to gain a 'general knowledge' of one aspect of analog engineering (e.g., that of network theory, filter design, system theory and sampled-data signal processing). The presentation is self-contained and should be accessible to anyone with a first degree in electrical engineering.
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Switzerland: Springer Nature, 2019
e20506275
eBooks  Universitas Indonesia Library
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Lenk, John D.
Boston: Newnes, 1998
621.381 532 LEN s
Buku Teks  Universitas Indonesia Library
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Toto Supriyanto
"Pada penelitian ini akan dirancang bandpass filter (BPF) untuk CPE m-WiMAX menggunakan filter aktif mikrostrip Hairpin. BPF terdiri dari mikrostrip Hairpin dengan rangkaian resistansi negatif. Rangkaian resistansi negatif berfungsi untuk mengkompensasi rugi resistansi parasitik yang ditimbulkan dari komponen induktor kapasitor dan menggunakan komponen aktif bipolar junction transistor (BJT) BFR-NE662M04. Penggunakan filter aktif mikrostrip Hairpin mempunyai keuntungan yaitu ukuran menjadi lebih kecil, rugi-rugi yang diakibatkan adanya resistansi parasitik menjadi lebih rendah sehingga faktor kualitas Q dapat ditingkatkan dan dapat diterapkan pada frekuensi tinggi. Substrat PCB yang digunakan FR4.
Hasil simulasi yang diperoleh adalah return loss -40,358dB, insertion loss 5,55dB, noise figure 4,726dB, dan VSWR 1.019. Hasil yang dirancang difabrikasi dan dilakukan pengukuran diperoleh return loss -9,82dB, insertion loss -10,559dB, dan VSWR 1,843dB. Hasil perancangan dan fabrikasi keduanya dibandingkan. Hasil fabrikasi memiliki kinerja yang lebih rendah dibandingkan hasil simulasi karena adanya komponen transistor yang pada prakteknya dapat menambahkan noise akibat temperature bertambah. Selain itu pada proses pabrikasi PCB, jalur PCB bergeser. Jalur ini yang menyebabkan terjadinya pergeseran frekuensi kerja dan lain-lain.

In this study will be designed bandpass filter (BPF) for m-WiMAX CPE using Hairpin microstrip active filter. Hairpin microstrip BPF composed of the negative resistance circuit. Negative resistance circuit functions to compensate for the loss of resistance caused by parasitic capacitors and inductor component using the active component of bipolar junction transistor (BJT)-BFR NE662M04. Using Hairpin microstrip active filter has the advantage that the size becomes smaller, the losses caused by parasitic resistance becomes lower so that the Q factor can be improved and can be applied at high frequency. Substrate PCB use FR4.
The simulation results obtained return loss is -40.358 dB, insertion loss 5,55 dB, noise figure 4,726 dB, and VSWR 1,019. Results are designed fabricated and performed measurements obtained -9.82 dB return loss, insertion loss -10.559 dB, and VSWR 1.843 dB. The result of both design and fabrication compared. Results fabrication have lower performance than the simulation results because of transistor components which in practice can add noise due to temperature increases. In addition to the manufacturing process of PCB, PCB lane shifts. The line was that caused the frequency shift work and others.
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Depok: Fakultas Teknik Universitas Indonesia, 2010
T40957
UI - Tesis Open  Universitas Indonesia Library
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Universitas Indonesia, 1992
S27984
UI - Skripsi Membership  Universitas Indonesia Library
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Lubkin, Yale Jay
Reading, Mass.: Addison-Wesley, 1970
532 LUB f
Buku Teks  Universitas Indonesia Library
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Sedra, Adel S.
London: Pitman, , 1978
621.3815 SED f
Buku Teks  Universitas Indonesia Library
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M. Rendra Perdana Kusuma Djaka
"Pada penelitian ini, dirancang sebuah triple-band bandpass filter (BPF) menggunakan hairpin Tri Section Step Impedance Resonator (TSSIR), yang dapat bekerja pada frekuensi 1400 MHz, 2400 MHz dan 3800 MHz secara bersamaan, dirancang, dibuat dan dievaluasi. Proses perancangan dan simulasi menggunakan perangkat lunak Advanced Design System (ADS). Bandpass Filter (BPF) yang dirancang menggunakan konfigurasi hairpin TSSIR yang dibuat pada Printed Circuit Board (PCB) FR-4 dengan nilai permitivitas 4.6, ketebalan substrat 1.6 mm dan loss tangent 0.002. Parameter yang digunakan saat perancangan ialah Insertion Loss, Return Loss, VSWR dan Bandwidth. Hasil simulasi Return Loss memiliki nilai -30.156 dB, -20.607 dB, dan -17.287 dB dan hasil fabrikasi pada penelitian ini memiliki nilai Return Loss sebesar dan -15.007 dB, -10.467 dB, dan -10.047 dB. Sedangkan nilai hasil simulasi Insertion Loss sebesar -0.682 dB, -0.855 dB, dan -1.262 dB dan hasil fabrikasi pada penelitian ini memiliki nilai Insertion Loss sebesar -2.236 dB, -2.983 dB dan -12.067 dB. Sehingga pada perancangan kali ini bandwidth pada frekuensi tengah yang ketiga (3800) MHz tidak memenuhi target disebabkan  adanya perbedaan nilai konstanta dielektrik substrat yang memiliki nilai pada rentang 4.6-4.9 pada tempat fabrikasi sehingga terjadinya pergeseran frekuensi tengah dan tidak tercapainya parameter yang diinginkan.

In this research, a triple-band bandpass filter (BPF) was designed using a hairpin Tri Section Step Impedance Resonator (TSSIR), which can work at 1400 MHz, 2400 MHz and 3800 MHz simultaneously, was designed, fabricated and evaluated. The design and simulation process uses the Advanced Design System (ADS) software. The Bandpass Filter (BPF) was designed using a TSSIR hairpin configuration made on a Printed Circuit Board (PCB) FR-4 with a permittivity value of 4.6, a substrate thickness of 1.6 mm and a loss tangent of 0.002. The parameters used when designing are Insertion Loss, Return Loss, VSWR and Bandwidth. The results of the Return Loss simulation have values of -30,156 dB, -20,607 dB, and -17,287 dB and the fabrication results in this study have Return Loss values of and -15,007 dB, -10,467 dB, and -10,047 dB. While the insertion loss simulation results are -0.682 dB, -0.855 dB, and -1.262 dB and the fabrication results in this study have insertion loss values of -2.236 dB, -2.983 dB and -12.067 dB. So that in this design the bandwidth at the third center frequency (3800) MHz does not meet the target due to differences in the dielectric constant values of the substrate which have values in the range 4.6-4.9 at the fabrication site resulting in a shift in the middle frequency and the desired parameters are not achieved."
Depok: Fakultas Teknik Universitas Indonesia, 2023
T-pdf
UI - Tesis Membership  Universitas Indonesia Library
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