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Ditemukan 2 dokumen yang sesuai dengan query
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Doby Prayadinata
"Pada penelitian ini dirancang concurrent quad band LNA mengunakan LC resonator yang bekerja pada frekuensi 0,95 GHz, 1,85 GHz, 2,35 GHz, dan 2,65 GHz. Perancangan dilakukan menggunakan Advance Design System (ADS) kemudian dipabrikasi menggunakan substrat FR4. Kinerja hasil perancangan menunjukan kinerja LNA pada frekuensi 0,95 GHz untuk GSM diantaranya memiliki nilai return loss S11 = -25,4 dB, gain S21 = 38,42 dB, stability K = 18,6, NF =1,3 dB, VSWR = 1,1 , dan FoM sebesar 1,91. Sementara itu, kinerja LNA pada frekuensi 1,85 GHz untuk WCDMA diantaranya memiliki nilai return loss S11 = -26,7 dB, gain S21 = 33,24 dB, stability K = 11,3, NF = 1,31 dB, VSWR = 1,09, dan FoM sebesar 1,59. Sementara itu, kinerja LNA pada frekuensi 2,35 GHz untuk WiMAX diantaranya memiliki nilai return loss S11 = -24,6 dB, gain S21 = 31,24 dB, stability K = 8,5, NF = 1,3 dB, VSWR = 1,24, dan FoM sebesar 1,55. Kinerja LNA pada frekuensi 2,65 GHz untuk LTE diantaranya memiliki nilai return loss S11 = -16,1 dB, gain S21 = 30,13 dB, stability K = 7,3, NF = 1,33 dB, VSWR = 1,13, dan FoM sebesar 1,36.
Hasil pengukuran pada frekuensi 1,205 GHz memiliki nilai return loss S11 = - 16,4 dB, gain S21 = 12,1 dB, stability K = 18,6, NF =1,3 dB, VSWR = 1,1 , dan group delay sebesar 4 ns. Sementara itu, kinerja LNA pada frekuensi 2,05 GHz untuk WCDMA diantaranya memiliki nilai return loss S11 = -14,5 dB, gain S21 = 11,2 dB, dan group delay sebesar 1 ns. Sementara itu, kinerja LNA pada frekuensi 2,45 GHz untuk WiMAX diantaranya memiliki nilai return loss S11 = -13,2 dB, gain S21 = 18,7 dB, dan group delay sebesar 2 ns. Kinerja LNA pada frekuensi 2,75 GHz untuk LTE diantaranya memiliki nilai return loss S11 = -14,3 dB, gain S21 = 15,3 dB, dan group delay sebesar 2 ns.

In the present study was designed quad-band concurrent LNA using LC resonator works at a frequency of 0.95 GHz, 1.85 GHz, 2.35 GHz and 2.65 GHz. The design is done using Advance Design System (ADS) is then fabricated using FR4 substrate. Performance results show the performance of LNA design at a frequency of 0.95 GHz to GSM which have the return loss S11 = -25.4 dB, S21 = 38.42 dB gain, stability K = 18.6, NF = 1.3 dB, VSWR = 1.1, and the FOM of 1.91. Meanwhile, the performance of the LNA at a frequency of 1.85 GHz for WCDMA which have the value of return loss S11 = -26.7 dB, S21 = 33.24 dB gain, stability K = 11.3, NF = 1.31 dB, VSWR = 1.09, and the FOM of 1.59. Meanwhile, the performance of the LNA at a frequency of 2.35 GHz for WiMAX which have the value of return loss S11 = -24.6 dB, S21 = 31.24 dB gain, stability K = 8.5, NF = 1.3 dB, VSWR = 1.24, and the FOM of 1.55. LNA performance at a frequency of 2.65 GHz for the LTE value of which has a return loss S11 = -16.1 dB, S21 = 30.13 dB gain, stability K = 7.3, NF = 1.33 dB, VSWR = 1.13 , and the FOM of 1.36.
The results of measurements at a frequency of 1,205 GHz has a value of return loss S11 = -16.4 dB, S21 = 12.1 dB gain, stability K = 18.6, NF = 1.3 dB, VSWR = 1.1, and group delay of 4 ns. Meanwhile, the performance of the LNA at a frequency of 2.05 GHz for WCDMA which have the value of return loss S11 = -14.5 dB, S21 = 11.2 dB gain and group delay of 1 ns. Meanwhile, the performance of the LNA at a frequency of 2.45 GHz for WiMAX which have the value of return loss S11 = -13.2 dB, S21 = 18.7 dB gain and group delay of 2 ns. LNA performance at a frequency of 2.75 GHz for the LTE value of which has a return loss S11 = -14.3 dB, S21 = 15.3 dB gain and group delay of 2 ns.
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Depok: Fakultas Teknik Universitas Indonesia, 2012
T31163
UI - Tesis Open  Universitas Indonesia Library
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Dwi Muji Raharjo
"LNA merupakan bagian depan rangkaian radio frequency (RF) pada perangkat CPE, low noise amplifier (LNA) memainkan peranan penting terhadap noise dari system secara keseluruhan dari system RF. Rancangan Dual Band LNA merupakan solusi atas kebutuhan pasar akan adanya sebuah perangkat yang memiliki kemampuan multistandard (multi mode/multi band) yang digunakan untuk bisa memberikan penguatan yang cukup tinggi untuk mendorong pada stage selanjutnya dengan derau serendah-rendahnya. Tesis ini membahas rancang bangun rangkaian dual band LNA untuk CPE Mobile Broadband Wireless Access dengan menggunakan HJFET 3210S01. Untuk mendapatkan fungsi dual band digunakan LC Tank Resonator yang dirancang beresonansi pada frekuensi 2,3GHz dan 2,6 GHz. Rancangan dual band LNA diharapkan menghasilkan Noise figure yang rendah, gain yang tinggi, stabil tanpa adanya osilasi, secara simultan.
Hasil simulasi menunjukkan bahwa dual band LNA ini dapat bekerja pada frekuensi 2,3GHz dan 2,6 GHz dengan gain >12dB, sensitivitas > -73 dBm dan IIP3 >5 dBm. LNA ini juga menghasilkan noise figure < 1dB. LNA ini membutuhkan tegangan catu sebesar 3.5 V. Sedangkan hasil pabrikasi yang diperoleh menunjukkan bahwa terjadi penggeseran frekuensi kerja yaitu dari 2,3 GHz dan 2,6 GHz ke frekuensi 1,06 GHz GHz dan 1,61 GHz. Hasil pengukuran didapatkan nilai gain (S21) masing-masing 9,275 dB dan 0 dB, input return loss (S11) masing-masing - 4 dB dB dan -12 dB, output return loss (S22) masing-masing -8,59 dB dB dan -4 dB dan VSWR masing-masing pada frekuensi 1,63 GHz sebesar 1,0728 dan pada frekuensi 1,06 GHz sebesar 5.

LNA is the front-end of radio frequency (RF) on the CPE mobile BWA devices, low noise amplifier (LNA) plays an important role to noise from the system as a whole from the RF system. Dual Band LNA Design is a solution to the needs of the market that there is a device that has the ability multistandard (multi mode / multi band) used to be able to give a high enough reinforcement to encourage the next stage with noise as low. This thesis discusses the design of a series of dualband LNA for Wireless Mobile Broadband CPE access using HJFET 3210S01. To obtain the dual function of the band used the LC Tank Resonator is designed to resonate at a frequency of 2.3 GHz and 2.6 GHz. The design of dual-band LNA is expected to generate low noise figures, high gain, stable in the absence of oscillations, simultaneously.
The simulation results show that the dual-band LNA can work at a frequency of 2.3 GHz and 2.6 GHz with a gain of > 12dB, sensitivity> -73 dBm and IIP3> 5 dBm. This LNA also generate noise figure < 1dB. LNA requires supply voltages of 3.5 V. While manufacturing results obtained show that there is shift working frequency of 2.3 GHz and 2.6 GHz to 1.06 GHz frequency GHz and 1.61 GHz. The measurement results obtained value of the gain (S21) 9.275 dB and 0 dB, input return loss (S11) - 4 dB dB and -12 dB, output return loss (S22) dB -8.59 dB and -4 dB, VSWR 5 and 1.0728 respectively.
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Depok: Fakultas Teknik Universitas Indonesia, 2011
T30138
UI - Tesis Open  Universitas Indonesia Library