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ADL5321ARKZ-R7 Folha de dados(PDF) 13 Page - Analog Devices |
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ADL5321ARKZ-R7 Folha de dados(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() Data Sheet ADL5321 Table 8. Load Conditions for GainMAX Frequency (MHz) ΓLoad (Magnitude) ΓLoad (°) Gain MAX (dB) 2600 0.6100 136.24 15.02 3500 0.7686 162.58 14.02 3600 0.7057 161.81 13.44 Table 9. Load Conditions for OIP3MAX Frequency (MHz) ΓLoad (Magnitude) ΓLoad (°) IP3 MAX (dBm) 2600 0.4705 86.63 41.7 3500 0.6911 142.11 41.37 3600 0.7070 140.65 41.29 WiMAX OPERATION Figure 33 shows a plot of adjacent channel leakage ratio (ACLR) vs. POUT for the ADL5321. The signal type used is a WiMAX, 64 QAM, single carrier with a 10 MHz channel bandwidth. This signal is generated by a WiMAX-enabled source and followed with suitable band-pass filtering. The band-pass filter helps reduce the adjacent and alternate channel noise and distortion out of the signal generator down to −63 dB in the adjacent channels and −76 dB in the alternate channels at 2.6 GHz and −60 dB at 3.5 GHz. Below an output power of 7 dBm, measured ADL5321 output spectral performance is limited by the signal quality from the signal source used (−63 dB at 2.6 GHz and −60 dB at 3.5 GHz). At high power operation, input power to the ADL5321 is 1 dBm for 15 dBm output power and the source ACLR is −60.2 dB. It is expected that with a better signal source, the ADL5321 output spectral quality improves further, especially at output power levels ≤10 dBm. For instance, the ADL5373 quadrature modulator measured ACLR is −69 dB for an output power of −10 dBm. For output powers up to 10 dBm rms, the ADL5321 adds very little distortion to the output spectrum. At 2.6 GHz, the ACLR is −59 dB and a relative constellation error of −46.6 dB (<0.5% EVM) at an output power of 10 dBm rms. Figure 33. ACLR vs. POUT, WiMAX 64 QAM, 10 MHz Bandwidth, Single Carrier Figure 34. RCE/EVM vs. POUT, WiMAX 64 QAM, 10 MHz Bandwidth, Single Carrier –30 –40 –50 –60 –70 –80 –90 –10 –5 0 5 10 15 20 POUT (dBm) ADJ CH LOW 2.6 GHZ ALT CH LOW 2.6 GHZ ADJ CH LOW 3.5 GHZ ALT CH UP 3.5 GHZ 0 –5 –10 –15 –20 –25 –30 –35 –40 –45 –50 –20 –15 –10 –5 0 5 10 15 20 POUT (dBm) 2.6 GHz 3.5 GHz Rev. D | Page 13 of 16 |
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