Typical values at TA =
+25°C with nominal supplies. Default conditions: TX input data rate = 491.52MSPS,
fDAC = 11796.48MSPS (24x interpolation), mixed mode, 1st
Nyquist zone output, PLL clock mode with fREF = 491.52 MHz,
AOUT = –1 dBFS, DSA = 0 dB, Sin(x)/x enabled, DSA calibrated, TX
Clock Dither Enabled, 8.1 GHz matching
includes PCB and cable losses. |
Figure 6-184 TX
Output Power vs Frequency at 8.11 GHz
includes PCB and cable losses. |
Figure 6-186 TX
Output Power vs Temperature at 8.11 GHzFigure 6-188 TX
DSA Calibrated Amplitude Differential Nonlinearity at 8.11 GHz Figure 6-190 TX
DSA Calibrated Amplitude Differential Nonlinearity at 8.11 GHz Figure 6-192 TX
DSA Calibrated Amplitude Integrated Nonlinearity at 8.11 GHz Figure 6-194 TX
DSA Calibrated Amplitude Integrated Nonlinearity at 8.11 GHz Figure 6-196 TX
DSA Calibrated Phase Differential Nonlinearity at 8.11 GHz Figure 6-198 TX
DSA Calibrated Phase Differential Nonlinearity at 8.11 GHz Figure 6-200 TX
DSA Calibrated Phase Integrated Nonlinearity at 8.11 GHz Figure 6-202 TX
DSA Calibrated Phase Integrated Nonlinearity at 8.11 GHz Figure 6-204 TX
Single Tone Output Spectrum at 8.11 GHz Figure 6-206 TX
Single Tone Output Spectrum at 8.11 GHz Figure 6-208 TX
Single Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –7 dBFS each tone |
Figure 6-210 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –12 dBFS each tone |
Figure 6-212 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –30 dBFS each tone |
Figure 6-214 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –60 dBFS each tone |
|
Figure 6-216 TX
Dual Tone Output Spectrum at 8.11 GHzFigure 6-218 TX
IMD3 vs Digital Amplitude at 8.11 GHz Figure 6-220 TX
IMD3 vs DSA Setting at 8.11 GHz Figure 6-222 TX
NSD vs Digital Amplitude at 8.11 GHz Figure 6-224 TX
NSD vs DSA Setting at 8.11 GHz Figure 6-226 TX
NR100MHz ACPR vs DSA Setting 8.11 GHz Figure 6-228 TX
NR100MHz EVM vs DSA Setting 8.11 GHz
includes PCB and cable losses. |
Figure 6-185 TX
Output Power vs DSA Setting at 8.11 GHzFigure 6-187 TX
DSA Uncalibrated Amplitude Differential Nonlinearity at 8.11 GHz Figure 6-189 TX
DSA Uncalibrated Amplitude Differential Nonlinearity at 8.11 GHz Figure 6-191 TX
DSA Uncalibrated Amplitude Integrated Nonlinearity at 8.11 GHz Figure 6-193 TX
DSA Uncalibrated Amplitude Integrated Nonlinearity at 8.11 GHz Figure 6-195 TX
DSA Uncalibrated Phase Differential Nonlinearity at 8.11 GHz Figure 6-197 TX
DSA Uncalibrated Phase Differntial Nonlinearity at 8.11 GHz Figure 6-199 TX
DSA Uncalibrated Phase Integrated Nonlinearity at 8.11 GHz Figure 6-201 TX
DSA Uncalibrated Phase Integrated Nonlinearity at 8.11 GHz Figure 6-203 TX
Single Tone Output Spectrum at 8.11 GHz Figure 6-205 TX
Single Tone Output Spectrum at 8.11 GHz Figure 6-207 TX
Single Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –7 dBFS each tone |
Figure 6-209 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –12 dBFS each tone |
Figure 6-211 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –30 dBFS each tone |
Figure 6-213 TX
Dual Tone Output Spectrum at 8.11 GHz
50-MHz
tone spacing, –60 dBFS each tone |
Figure 6-215 TX
Dual Tone Output Spectrum at 8.11 GHzFigure 6-217 TX
IMD3 vs Digital Amplitude at 8.11 GHz Figure 6-219 TX
IMD3 vs DSA Setting at 8.11 GHz Figure 6-221 TX
2-Tone SFDR vs Digital Amplitude at 8.11 GHz Figure 6-223 TX
NSD vs Digital Amplitude at 8.11 GHz Figure 6-225 TX
NSD vs DSA Setting at 8.11 GHz Figure 6-227 TX
NR100MHz alt-ACPR vs DSA Setting 8.11 GHz