Typical values at TA = +25°C, ADC
Sampling Rate = 2949.12 GHz. Default conditions: output sample rate = 491.52MSPS
(decimate by 6), PLL clock mode with fREF = 491.52MHz, AIN =
–3 dBFS, DSA setting = 4 dB.
![AFE7906 RX In-Band Gain Flatness, fIN = 3600 MHz GUID-76EA8C01-7587-4E38-97BA-591E71E01D3E-low.gif](/ods/images/JAJSMT3C/GUID-76EA8C01-7587-4E38-97BA-591E71E01D3E-low.gif)
With 3.6 GHz matching, normalized to 3.6 GHz |
|
Figure 6-137 RX In-Band Gain Flatness, fIN = 3600 MHz![AFE7906 RX Uncalibrated Differential Amplitude Error vs DSA Setting at 3.6 GHz GUID-C1D1FBB3-8132-4E00-AAC9-6FE23520B289-low.gif](/ods/images/JAJSMT3C/GUID-C1D1FBB3-8132-4E00-AAC9-6FE23520B289-low.gif)
With 3.6 GHz matching |
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1 |
Figure 6-139 RX Uncalibrated Differential Amplitude Error vs DSA Setting at 3.6 GHz![AFE7906 RX Uncalibrated Integrated Amplitude Error vs DSA Setting at 3.6 GHz GUID-2AE563F1-F5B4-464A-9A8F-71A5EF428867-low.gif](/ods/images/JAJSMT3C/GUID-2AE563F1-F5B4-464A-9A8F-71A5EF428867-low.gif)
With 3.6 GHz matching |
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting) |
Figure 6-141 RX Uncalibrated Integrated Amplitude Error vs DSA Setting at 3.6 GHz![AFE7906 RX Uncalibrated Phase Error vs DSA Setting at 3.6 GHz GUID-7FD1A100-F736-48C1-B9D9-4789A068672F-low.gif](/ods/images/JAJSMT3C/GUID-7FD1A100-F736-48C1-B9D9-4789A068672F-low.gif)
With 3.6 GHz matching |
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting) |
Figure 6-143 RX Uncalibrated Phase Error vs DSA Setting at 3.6 GHz![AFE7906 RX Uncalibrated Integrated Phase Error vs DSA Setting at 3.6 GHz GUID-D607DFA2-5BC0-4AF1-9659-0C56797BE66F-low.gif](/ods/images/JAJSMT3C/GUID-D607DFA2-5BC0-4AF1-9659-0C56797BE66F-low.gif)
With 3.6 GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0) |
Figure 6-145 RX Uncalibrated Integrated Phase Error vs DSA Setting at 3.6 GHz![AFE7906 RX Output FFT at 3.6 GHz GUID-491F723F-2696-42E6-A2E4-AC5890D36033-low.gif](/ods/images/JAJSMT3C/GUID-491F723F-2696-42E6-A2E4-AC5890D36033-low.gif)
With 3.6 GHz matching , fIN = 3610 MHz, AIN = –3 dBFS |
|
Figure 6-147 RX Output FFT at 3.6 GHz![AFE7906 RX IMD3 vs Input Level and Temperature at 3.6 GHz GUID-F7E6092E-B634-4A14-B1BE-5399FC861650-low.gif](/ods/images/JAJSMT3C/GUID-F7E6092E-B634-4A14-B1BE-5399FC861650-low.gif)
With 3.5 GHz matching, 20-MHz tone spacing |
|
Figure 6-149 RX IMD3 vs Input Level and Temperature at 3.6 GHz![AFE7906 RX IMD3 vs Tone
Spacing at 3.76GHz GUID-20210713-CA0I-KHSL-6LJV-NRSX32DJWMF5-low.png](/ods/images/JAJSMT3C/GUID-20210713-CA0I-KHSL-6LJV-NRSX32DJWMF5-low.png)
External clock mode, 2x
Decimation |
|
Figure 6-151 RX IMD3 vs Tone
Spacing at 3.76GHz![AFE7906 RX HD2 vs DSA Setting and Temperature at 3.6 GHz GUID-F232A7CB-9D5C-445B-98C9-0D9D1D6752AD-low.gif](/ods/images/JAJSMT3C/GUID-F232A7CB-9D5C-445B-98C9-0D9D1D6752AD-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-153 RX HD2 vs DSA Setting and Temperature at 3.6 GHz![AFE7906 RX HD2 vs Input Level and Temperature at 3.6 GHz GUID-3CE19B63-2A7D-4FF9-A03E-099E090D84F0-low.gif](/ods/images/JAJSMT3C/GUID-3CE19B63-2A7D-4FF9-A03E-099E090D84F0-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-155 RX HD2 vs Input Level and Temperature at 3.6 GHz![AFE7906 RX HD2 vs Input
Level GUID-20210713-CA0I-8HGD-BTVN-6FLSVQDQF13N-low.svg](/ods/images/JAJSMT3C/GUID-20210713-CA0I-8HGD-BTVN-6FLSVQDQF13N-low.svg)
External clock mode, 25°C, 2x
Decimation |
Figure 6-157 RX HD2 vs Input
Level![AFE7906 RX HD3 vs DSA Setting and Temperature at 3.6 GHz GUID-309DB605-854C-4AF1-B823-CD18850455E1-low.gif](/ods/images/JAJSMT3C/GUID-309DB605-854C-4AF1-B823-CD18850455E1-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-159 RX HD3 vs DSA Setting and Temperature at 3.6 GHz![AFE7906 RX HD3 vs Input Level and Temperature at 3.6 GHz GUID-959F80ED-9240-4335-AE3C-7FEA5C5EA331-low.gif](/ods/images/JAJSMT3C/GUID-959F80ED-9240-4335-AE3C-7FEA5C5EA331-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-161 RX HD3 vs Input Level and Temperature at 3.6 GHz![AFE7906 RX HD3 vs Input
Level GUID-20210713-CA0I-6PXN-QDCT-RMCCD2PP00BC-low.png](/ods/images/JAJSMT3C/GUID-20210713-CA0I-6PXN-QDCT-RMCCD2PP00BC-low.png)
External clock mode, 25°C, 2x
Decimation |
Figure 6-163 RX HD3 vs Input
Level![AFE7906 RX Noise Spectral
Density vs Input Level at 3.76GHz GUID-20210713-CA0I-0KGT-WB5C-W4DLLFHBQ2DM-low.png](/ods/images/JAJSMT3C/GUID-20210713-CA0I-0KGT-WB5C-W4DLLFHBQ2DM-low.png)
External clock mode, 25°C, 2x
Decimation |
Figure 6-165 RX Noise Spectral
Density vs Input Level at 3.76GHz
Figure 6-167 RX SFDR Excluding HD2/3 vs DSA Setting and Channel at 3.6 GHz![AFE7906 RX 2-tone SFDR vs
Input Amplitude and Frequency at 3.7 GHz GUID-20210720-CA0I-M1HB-2P3W-4PLPQWPB2RK3-low.png](/ods/images/JAJSMT3C/GUID-20210720-CA0I-M1HB-2P3W-4PLPQWPB2RK3-low.png)
External clock mode, 20MHz tone
spacing, excluding 3rd order
distortion |
Figure 6-169 RX 2-tone SFDR vs
Input Amplitude and Frequency at 3.7 GHz![AFE7906 RX
IMD5 vs Supply Voltage and Channel at 3.6
GHz GUID-20220627-SS0I-HDCW-MGVB-SPS9H9K9MTD8-low.svg](/ods/images/JAJSMT3C/GUID-20220627-SS0I-HDCW-MGVB-SPS9H9K9MTD8-low.svg)
With 3.6 GHz matching, –7 dBFS each
tone, 20-MHz tone spacing, all supplies at MIN,
TYP, or MAX recommended operating voltages |
Figure 6-171 RX
IMD5 vs Supply Voltage and Channel at 3.6
GHz![AFE7906 RX Input Phase vs Temperature at 3.6 GHz GUID-DE756DF5-9910-4F4B-AC33-804AA135735B-low.gif](/ods/images/JAJSMT3C/GUID-DE756DF5-9910-4F4B-AC33-804AA135735B-low.gif)
With 3.6 GHz matching, normalized to phase at 25°C |
Figure 6-138 RX Input Phase vs Temperature at 3.6 GHz![AFE7906 RX Calibrated Differential Amplitude Error vs DSA Setting at 3.6 GHz GUID-601C686C-DC69-46B4-9C08-E0B43B0EC7EB-low.gif](/ods/images/JAJSMT3C/GUID-601C686C-DC69-46B4-9C08-E0B43B0EC7EB-low.gif)
With 3.6 GHz matching |
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1 |
Figure 6-140 RX Calibrated Differential Amplitude Error vs DSA Setting at 3.6 GHz![AFE7906 RX Calibrated Integrated Amplitude Error vs DSA Setting at 3.6 GHz GUID-286BD3D8-C1C6-43EF-9F7A-F7EE08011C51-low.gif](/ods/images/JAJSMT3C/GUID-286BD3D8-C1C6-43EF-9F7A-F7EE08011C51-low.gif)
With 3.6 GHz matching |
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting) |
Figure 6-142 RX Calibrated Integrated Amplitude Error vs DSA Setting at 3.6 GHz![AFE7906 RX Calibrated Differential Phase Error vs DSA Setting at 3.6 GHz GUID-7378D37E-7B6D-47A0-A172-1E75B97E1FB8-low.gif](/ods/images/JAJSMT3C/GUID-7378D37E-7B6D-47A0-A172-1E75B97E1FB8-low.gif)
With 3.6 GHz matching |
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting) |
Figure 6-144 RX Calibrated Differential Phase Error vs DSA Setting at 3.6 GHz![AFE7906 RX Calibrated Integrated Phase Error vs DSA Setting at 3.6 GHz GUID-82EA5C11-8B01-4821-A4DC-AB4AA6520410-low.gif](/ods/images/JAJSMT3C/GUID-82EA5C11-8B01-4821-A4DC-AB4AA6520410-low.gif)
With 3.6 GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0) |
Figure 6-146 RX Calibrated Integrated Phase Error vs DSA Setting at 3.6 GHz![AFE7906 RX IMD3 vs DSA Setting and Temperature at 3.6 GHz GUID-253AD12B-86DB-40BD-A1A1-0EE7508BEEE5-low.gif](/ods/images/JAJSMT3C/GUID-253AD12B-86DB-40BD-A1A1-0EE7508BEEE5-low.gif)
With 3.5 GHz matching, each tone at –7 dBFS, 20-MHz tone spacing |
Figure 6-148 RX IMD3 vs DSA Setting and Temperature at 3.6 GHz![AFE7906 RX IMD3 vs Input
Level GUID-20210709-CA0I-9TPX-ZVTK-G1FCG78PDBSW-low.png](/ods/images/JAJSMT3C/GUID-20210709-CA0I-9TPX-ZVTK-G1FCG78PDBSW-low.png)
External clock mode, 20-MHz tone
spacing, 2x Decimation |
|
Figure 6-150 RX IMD3 vs Input
Level![AFE7906 RX HD2 vs DSA Setting and Channel at 3.6 GHz GUID-80A257B1-9969-4E57-862A-5A0C2B7FFBB6-low.gif](/ods/images/JAJSMT3C/GUID-80A257B1-9969-4E57-862A-5A0C2B7FFBB6-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-152 RX HD2 vs DSA Setting and Channel at 3.6 GHz![AFE7906 RX HD2 vs Input Level and Channel at 3.6 GHz GUID-3745D214-4491-434B-9ACD-0D81F3D6F2FF-low.gif](/ods/images/JAJSMT3C/GUID-3745D214-4491-434B-9ACD-0D81F3D6F2FF-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-154 RX HD2 vs Input Level and Channel at 3.6 GHz![AFE7906 RX HD2 vs Input Level
at 3.76 GHz GUID-20210713-CA0I-6N7X-FQQC-KTM19LPJVDFJ-low.png](/ods/images/JAJSMT3C/GUID-20210713-CA0I-6N7X-FQQC-KTM19LPJVDFJ-low.png)
External clock mode, 2x
Decimation |
Figure 6-156 RX HD2 vs Input Level
at 3.76 GHz![AFE7906 RX HD3 vs DSA Setting and Channel at 3.6 GHz GUID-F5634162-46F5-4760-9B3F-6DDA0AF689CE-low.gif](/ods/images/JAJSMT3C/GUID-F5634162-46F5-4760-9B3F-6DDA0AF689CE-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-158 RX HD3 vs DSA Setting and Channel at 3.6 GHz![AFE7906 RX HD3 vs Input Level and Channel at 3.6 GHz GUID-0950FEA0-0C71-4390-9296-89F9DCE46DE3-low.gif](/ods/images/JAJSMT3C/GUID-0950FEA0-0C71-4390-9296-89F9DCE46DE3-low.gif)
With 3.5 GHz matching, DDC bypass mode (TI only mode for characterization) |
Figure 6-160 RX HD3 vs Input Level and Channel at 3.6 GHz![AFE7906 RX HD3 vs Input Level
at 3.76GHz GUID-20210713-CA0I-RSHK-SQZK-N9JRZHXBNNWN-low.svg](/ods/images/JAJSMT3C/GUID-20210713-CA0I-RSHK-SQZK-N9JRZHXBNNWN-low.svg)
External clock mode, 2x
Decimation |
Figure 6-162 RX HD3 vs Input Level
at 3.76GHz![AFE7906 RX Noise Spectral Density vs Input Level and DSA Setting at 3.6 GHz GUID-6003AA8B-B401-4332-9743-AD1717067278-low.gif](/ods/images/JAJSMT3C/GUID-6003AA8B-B401-4332-9743-AD1717067278-low.gif)
With 3.5 GHz matching, 12.5-MHz offset from tone |
Figure 6-164 RX Noise Spectral Density vs Input Level and DSA Setting at 3.6 GHz
Figure 6-166 RX In-Band SFDR (±200 MHz) vs Input Level and Channel at 3.6 GHz![AFE7906 RX 2-tone SFDR vs
Input Amplitude and DSA Setting at 3.7 GHz GUID-20210720-CA0I-DPRZ-L5NT-M6768D6NVK7R-low.svg](/ods/images/JAJSMT3C/GUID-20210720-CA0I-DPRZ-L5NT-M6768D6NVK7R-low.svg)
External clock mode, 20MHz tone
spacing, excluding 3rd order
distortion |
Figure 6-168 RX 2-tone SFDR vs
Input Amplitude and DSA Setting at 3.7 GHz![AFE7906 RX
IMD3 vs Supply Voltage and Channel at 3.6
GHz GUID-20220627-SS0I-P9TF-G3FS-07CJNN7F1FDJ-low.svg](/ods/images/JAJSMT3C/GUID-20220627-SS0I-P9TF-G3FS-07CJNN7F1FDJ-low.svg)
With 3.6 GHz matching, –7 dBFS each
tone, 20-MHz tone spacing, all supplies at MIN,
TYP, or MAX recommended operating voltages |
Figure 6-170 RX
IMD3 vs Supply Voltage and Channel at 3.6
GHz![AFE7906 RX
Noise Spectral Density vs Supply Voltage and
Channel at 3.6 GHz GUID-20220627-SS0I-BGTM-L1LD-0L3PDM243VVZ-low.svg](/ods/images/JAJSMT3C/GUID-20220627-SS0I-BGTM-L1LD-0L3PDM243VVZ-low.svg)
With 3.6 GHz matching, tone at –20
dBFS, 12.5-MHz offset frequency, all supplies at
MIN, TYP, or MAX recommended operating
voltages |
Figure 6-172 RX
Noise Spectral Density vs Supply Voltage and
Channel at 3.6 GHz