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ADL5387ACPZ-R2 データシート(PDF) 18 Page - Analog Devices

部品番号 ADL5387ACPZ-R2
部品情報  30 MHz to 2 GHz Quadrature Demodulator
PDF  27 Pages
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メーカー  AD [Analog Devices]
ホームページ  http://www.analog.com
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ADL5387ACPZ-R2 データシート(HTML) 18 Page - Analog Devices

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ADL5387
Data Sheet
Rev. C | Page 18 of 27
ERROR VECTOR MAGNITUDE (EVM)
PERFORMANCE
EVM is a measure used to quantify the performance of a digital
radio transmitter or receiver. A signal received by a receiver
would have all constellation points at the ideal locations; however,
various imperfections in the implementation (such as carrier
leakage, phase noise, and quadrature error) cause the actual
constellation points to deviate from the ideal locations.
The ADL5387 shows excellent EVM performance for various
modulation schemes. Figure 55 shows typical EVM performance
over input power range for a point-to-point application with
16 QAM modulation schemes and zero-IF baseband. The
differential dc offsets on the ADL5387 are in the order of a
few mV. However, ac coupling the baseband outputs with 10 µF
capacitors helps to eliminate dc offsets and enhances EVM
performance. With a 10 MHz BW signal, 10 µF ac coupling
capacitors with the 500 Ω differential load results in a high-pass
corner frequency of ~64 Hz which absorbs an insignificant
amount of modulated signal energy from the baseband signal.
By using ac coupling capacitors at the baseband outputs, the dc
offset effects, which can limit dynamic range at low input power
levels, can be eliminated.
0
–50
–45
–40
–35
–30
–25
–20
–15
–10
–5
–70
10
0
–10
–20
–30
–40
–50
–60
INPUT POWER (dBm)
Figure 55. RF = 140 MHz, IF = 0 Hz, EVM vs. Input Power for a 16 QAM
10 Msym/s Signal (AC-Coupled Baseband Outputs)
Figure 56 shows the EVM performance of the ADL5387 when
ac-coupled, with an IEEE 802.16e WiMAX signal.
0
–50
–45
–40
–35
–30
–25
–20
–15
–10
–5
–50
20
10
0
–10
–20
–30
–40
INPUT POWER (dBm)
Figure 56. RF = 750 MHz, IF = 0 Hz, EVM vs. Input Power for a 16 QAM 10 MHz
Bandwidth Mobile WiMAX Signal (AC-Coupled Baseband Outputs)
Figure 57 exhibits the zero IF EVM performance of a WCDMA
signal over a wide RF input power range.
0
–45
–40
–35
–30
–25
–20
–15
–10
–5
–70
–60
10
0
–10
–20
–30
–40
–50
INPUT POWER (dBm)
Figure 57. RF = 1950 MHz, IF = 0 Hz, EVM vs. Input Power for a WCDMA
(AC-Coupled Baseband Outputs)



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