Typical values at TA =
+25°C, ADC Sampling Rate = 2949.12 GHz. Default conditions: output sample rate =
491.52 MSPS (decimate by 6), PLL clock mode with fREF = 491.52 MHz,
AIN = –3 dBFS, DSA setting = 4 dB.
![AFE7953 RX
In-Band Gain Flatness, fIN = 1750 MHz GUID-0B01AE5B-87DE-4849-9904-09442CC76392-low.gif](/ods/images/SBASAN1/GUID-0B01AE5B-87DE-4849-9904-09442CC76392-low.gif)
With
1.8 GHz matching, normalized to 1.75 GHz |
|
Figure 6-306 RX
In-Band Gain Flatness, fIN = 1750 MHz![AFE7953 RX
Input Phase vs Temperature and DSA at fIN = 1.75 GHz GUID-20220908-SS0I-MFF7-VRN8-9GGSVQFWZWCM-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-MFF7-VRN8-9GGSVQFWZWCM-low.svg)
With
2.6 GHz matching, normalized to phase at 25°C |
|
Figure 6-308 RX
Input Phase vs Temperature and DSA at fIN = 1.75 GHz![AFE7953 RX
Calibrated Differential Amplitude Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-BQZM-LBBT-BVPGSW5PQ8MM-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-BQZM-LBBT-BVPGSW5PQ8MM-low.svg)
With
1.8 GHz matching |
Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 6-310 RX
Calibrated Differential Amplitude Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Calibrated Integrated Amplitude Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-S6VK-NKMP-801007VNMVJP-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-S6VK-NKMP-801007VNMVJP-low.svg)
With
1.8 GHz matching |
Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 6-312 RX
Calibrated Integrated Amplitude Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Calibrated Differential Phase Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-WQX0-TN1R-RDVXFD266WNV-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-WQX0-TN1R-RDVXFD266WNV-low.svg)
With
1.8 GHz matching |
Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 6-314 RX
Calibrated Differential Phase Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Calibrated Integrated Phase Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-HJPH-81H0-01RHZNDGSMZX-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-HJPH-81H0-01RHZNDGSMZX-low.svg)
With
1.8 GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 6-316 RX
Calibrated Integrated Phase Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Noise Spectral Density vs Temperature at 1.75 GHz GUID-5973736D-FC20-43E9-8B1B-15608191C812-low.gif](/ods/images/SBASAN1/GUID-5973736D-FC20-43E9-8B1B-15608191C812-low.gif)
With
1.8 GHz matching, 12.5-MHz offset from tone |
Figure 6-318 RX
Noise Spectral Density vs Temperature at 1.75 GHz![AFE7953 RX
Noise Spectral Density vs Input Amplitude and Channel at 1.75 GHz GUID-20220908-SS0I-9JTR-BBWS-DBBLN2J4W0R0-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-9JTR-BBWS-DBBLN2J4W0R0-low.svg)
With
1.8 GHz matching, 12.5-MHz offset from tone |
|
Figure 6-320 RX
Noise Spectral Density vs Input Amplitude and Channel at 1.75 GHz![AFE7953 RX
IMD3 vs Input Level and Temperature at 1.75 GHz GUID-1D458DDB-0B1B-4D15-8495-CABA2D542C16-low.gif](/ods/images/SBASAN1/GUID-1D458DDB-0B1B-4D15-8495-CABA2D542C16-low.gif)
With
1.8 GHz matching, tone spacing = 20 MHz, DSA = 4
dB |
Figure 6-322 RX
IMD3 vs Input Level and Temperature at 1.75 GHz![AFE7953 RX
HD2 vs DSA Setting and Channel at 1.9 GHz GUID-20220908-SS0I-HHPX-S8KX-0TCL1XCBZDCG-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-HHPX-S8KX-0TCL1XCBZDCG-low.svg)
With
1.8 GHz matching, fin = 1900 MHz, measured
after HD2 trim, DDC bypass mode (TI only mode for
characterization) |
Figure 6-324 RX
HD2 vs DSA Setting and Channel at 1.9 GHz![AFE7953 RX
HD2 vs Input Amplitude and Channel at 1.9 GHz GUID-20220908-SS0I-Z5J3-F7BH-HFC9RSZDXW2V-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-Z5J3-F7BH-HFC9RSZDXW2V-low.svg)
With
1.8 GHz matching, fin = 1900 MHz, measured
after HD2 trim, DDC bypass mode (TI only mode for
characterization) |
Figure 6-326 RX
HD2 vs Input Amplitude and Channel at 1.9 GHz![AFE7953 RX
HD3 vs DSA Setting and Channel at 1.9 GHz GUID-20220908-SS0I-TBLJ-WSV5-ZC1KXB7WGTT5-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-TBLJ-WSV5-ZC1KXB7WGTT5-low.svg)
With
1.8 GHz matching, fin = 1900 MHz, DDC bypass
mode (TI only mode for characterization) |
Figure 6-328 RX
HD3 vs DSA Setting and Channel at 1.9 GHz![AFE7953 RX
HD3 vs Input Level and Channel at 1.9 GHz GUID-20220908-SS0I-QBDQ-6NW4-6DMPGJXLQLG0-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-QBDQ-6NW4-6DMPGJXLQLG0-low.svg)
With
1.8 GHz matching, fin = 1900 MHz, DDC bypass
mode (TI only mode for characterization) |
Figure 6-330 RX
HD3 vs Input Level and Channel at 1.9 GHz![AFE7953 RX
In-Band SFDR (±400 MHz) vs Input Amplitude at 1.75 GHz GUID-20220908-SS0I-WB1V-M1ZS-NTBLTZVH8DFK-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-WB1V-M1ZS-NTBLTZVH8DFK-low.svg)
With
1.8 GHz matching, decimated by 3 |
Figure 6-332 RX
In-Band SFDR (±400 MHz) vs Input Amplitude at 1.75 GHz![AFE7953 RX
IMD3 vs Supply and Channel at 1.75 GHz GUID-20220908-SS0I-NF96-TXTS-VZ6B8SP1W8WK-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-NF96-TXTS-VZ6B8SP1W8WK-low.svg)
With
1.8 GHz matching, –7 dBFS each tone, 20-MHz tone
spacing, all supplies at MIN, TYP, or MAX recommended
operating voltages |
Figure 6-334 RX
IMD3 vs Supply and Channel at 1.75 GHz![AFE7953 RX
Input Fullscale vs Temperature and Channel at 1.75 GHz GUID-20220908-SS0I-PVXP-DTPZ-G60RJJNHQMB8-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-PVXP-DTPZ-G60RJJNHQMB8-low.svg)
With
1.8 GHz matching, normalized to fullscale at 25°C for
each channel |
Figure 6-307 RX
Input Fullscale vs Temperature and Channel at 1.75 GHz![AFE7953 RX
Uncalibrated Differential Amplitude Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-5RKX-9DGD-VBF4DSDMLTHW-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-5RKX-9DGD-VBF4DSDMLTHW-low.svg)
With
1.8 GHz matching |
Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 6-309 RX
Uncalibrated Differential Amplitude Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Uncalibrated Integrated Amplitude Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-KDTP-F1BT-MZPZG3MKRQJB-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-KDTP-F1BT-MZPZG3MKRQJB-low.svg)
With
1.8 GHz matching |
Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 6-311 RX
Uncalibrated Integrated Amplitude Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Uncalibrated Differential Phase Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-PKQ5-DQRG-MQ6W6DX5N3JH-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-PKQ5-DQRG-MQ6W6DX5N3JH-low.svg)
With
1.8 GHz matching |
Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 6-313 RX
Uncalibrated Differential Phase Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Uncalibrated Integrated Phase Error vs DSA Setting at 1.75 GHz GUID-20220908-SS0I-9BML-SNTV-K5TN8XPCQ1V7-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-9BML-SNTV-K5TN8XPCQ1V7-low.svg)
With
1.8 GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 6-315 RX
Uncalibrated Integrated Phase Error vs DSA Setting at 1.75 GHz![AFE7953 RX
Output FFT at 1.75 GHz GUID-16B91F8A-7D5E-4692-8FE2-8EA181C1147D-low.gif](/ods/images/SBASAN1/GUID-16B91F8A-7D5E-4692-8FE2-8EA181C1147D-low.gif)
With
1.8 GHz matching, fIN = 2610 MHz,
AIN= –3 dBFS |
Figure 6-317 RX
Output FFT at 1.75 GHz![AFE7953 RX
Noise Spectral Density vs Input Amplitude and Temperature at 1.75
GHz GUID-FB93EBD6-AA31-4991-A09A-4725E3FB9E5F-low.gif](/ods/images/SBASAN1/GUID-FB93EBD6-AA31-4991-A09A-4725E3FB9E5F-low.gif)
With
1.8 GHz matching, DSA Setting = 12 dB, 12.5-MHz offset
from tone |
Figure 6-319 RX
Noise Spectral Density vs Input Amplitude and Temperature at 1.75
GHz![AFE7953 RX
IMD3 vs DSA Setting and Temperature at 1.75 GHz GUID-96740E6D-2A2B-416D-BAD8-E69B0A410E10-low.gif](/ods/images/SBASAN1/GUID-96740E6D-2A2B-416D-BAD8-E69B0A410E10-low.gif)
With
1.8 GHz matching, each tone –7 dBFS, tone spacing = 20
MHz |
Figure 6-321 RX
IMD3 vs DSA Setting and Temperature at 1.75 GHz![AFE7953 RX
IMD3 vs Input Level and Temperature at 1.75 GHz GUID-BFD7A83F-30D5-41F6-BA17-D1F2767D2C5A-low.gif](/ods/images/SBASAN1/GUID-BFD7A83F-30D5-41F6-BA17-D1F2767D2C5A-low.gif)
With
1.8 GHz matching, tone spacing = 20 MHz, DSA = 12
dB |
Figure 6-323 RX
IMD3 vs Input Level and Temperature at 1.75 GHz![AFE7953 RX
HD2 vs DSA Setting and Temperature at 1.9 GHz GUID-5038831B-B1BE-4D67-ABF4-9F7BDDE339E0-low.gif](/ods/images/SBASAN1/GUID-5038831B-B1BE-4D67-ABF4-9F7BDDE339E0-low.gif)
With
1.8 GHz matching, fin = 1900 MHz, measured
after HD2 trim, DDC bypass mode (TI only mode for
characterization) |
Figure 6-325 RX
HD2 vs DSA Setting and Temperature at 1.9 GHz![AFE7953 RX
HD2 vs Input Amplitude and Temperature at 1.9 GHz GUID-B3DA79A5-0838-434B-A5AE-AD355F35623E-low.gif](/ods/images/SBASAN1/GUID-B3DA79A5-0838-434B-A5AE-AD355F35623E-low.gif)
With
1.8 GHz matching, fin = 1900 MHz, measured
after HD2 trim, DDC bypass mode (TI only mode for
characterization) |
Figure 6-327 RX
HD2 vs Input Amplitude and Temperature at 1.9 GHz![AFE7953 RX
HD3 vs DSA Setting and Temperature at 1.9 GHz GUID-4825B00B-C4BC-4A19-A033-737A6C1FFA50-low.gif](/ods/images/SBASAN1/GUID-4825B00B-C4BC-4A19-A033-737A6C1FFA50-low.gif)
With
1.8 GHz matching, fin = 1900 MHz, DDC bypass
mode (TI only mode for characterization) |
Figure 6-329 RX
HD3 vs DSA Setting and Temperature at 1.9 GHz![AFE7953 RX
HD3 vs Input Level and Temperature at 1.9 GHz GUID-718BA633-B0EA-418A-B652-5130ED51C1C9-low.gif](/ods/images/SBASAN1/GUID-718BA633-B0EA-418A-B652-5130ED51C1C9-low.gif)
With
1.8 GHz matching, fin = 1900MHz, DDC bypass
mode (TI only mode for characterization) |
Figure 6-331 RX
HD3 vs Input Level and Temperature at 1.9 GHz
Figure 6-333 RX
Non-HD2/3 vs DSA Setting at 1.75 GHz![AFE7953 RX
Noise Spectral Density vs Supply and Channel at 1.75 GHz GUID-20220908-SS0I-SSWD-TH1X-VXVCX2QGQT5K-low.svg](/ods/images/SBASAN1/GUID-20220908-SS0I-SSWD-TH1X-VXVCX2QGQT5K-low.svg)
With
1.8 GHz matching, 12.5-MHz offset, all supplies at MIN,
TYP, or MAX recommended operating voltages |
Figure 6-335 RX
Noise Spectral Density vs Supply and Channel at 1.75 GHz