Typical values at TA = +25°C, ADC
Sampling Rate = 2949.12GHz. Default conditions: output sample rate = 491.52MSPS
(decimate by 6), PLL clock mode with fREF = 491.52MHz, AIN =
–3dBFS, DSA setting = 4dB.
![AFE7950-SP RX In-Band Gain Flatness
for Channel 1RX, fIN = 830MHz AFE7950-SP RX In-Band Gain Flatness
for Channel 1RX, fIN = 830MHz](/ods/images/SBASAG7A/GUID-B8890DB8-043D-4A13-98D9-07B81E07650E-low.gif)
With 0.8GHz matching, normalized to
830MHz |
|
Figure 4-285 RX In-Band Gain Flatness
for Channel 1RX, fIN = 830MHz![AFE7950-SP RX Input Phase vs
Temperature and DSA at fOUT = 0.8GHz AFE7950-SP RX Input Phase vs
Temperature and DSA at fOUT = 0.8GHz](/ods/images/SBASAG7A/GUID-224BDED7-AF4C-4C83-8003-D66A46C5DC51-low.gif)
With 0.8GHz matching, normalized to phase at
25°C |
|
Figure 4-287 RX Input Phase vs
Temperature and DSA at fOUT = 0.8GHz![AFE7950-SP RX Calibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz AFE7950-SP RX Calibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-FDA75889-F6BD-418D-8F38-F0BB70363919-low.gif)
With 0.8GHz matching |
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1 |
Figure 4-289 RX Calibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Calibrated Integrated Amplitude Error vs DSA Setting at 2.6GHz AFE7950-SP RX Calibrated Integrated Amplitude Error vs DSA Setting at 2.6GHz](/ods/images/SBASAG7A/GUID-96B8F527-905D-4CBF-AFF4-4A42735F607A-low.gif)
With 0.8GHz matching |
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting) |
Figure 4-291 RX Calibrated Integrated Amplitude Error vs DSA Setting at 2.6GHz![AFE7950-SP RX Calibrated
Differential Phase Error vs DSA Setting at 0.8GHz AFE7950-SP RX Calibrated
Differential Phase Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-164606DB-4318-4DA8-916F-5EB935836609-low.gif)
With 0.8GHz matching |
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting) |
Figure 4-293 RX Calibrated
Differential Phase Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Calibrated Integrated
Phase Error vs DSA Setting at 0.8GHz AFE7950-SP RX Calibrated Integrated
Phase Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-3ADF27C0-FDAE-4088-B2F2-C091C803123D-low.gif)
With 0.8GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0) |
Figure 4-295 RX Calibrated Integrated
Phase Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Noise Spectral Density
vs Temperature at 0.8GHz AFE7950-SP RX Noise Spectral Density
vs Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-3772B8C5-111E-4E5E-9858-2D4A917DD4DA-low.gif)
With 0.8GHz matching, 12.5MHz offset from
tone |
Figure 4-297 RX Noise Spectral Density
vs Temperature at 0.8GHz![AFE7950-SP RX Noise Spectral Density
vs Input Amplitude and Channel at 0.8GHz AFE7950-SP RX Noise Spectral Density
vs Input Amplitude and Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-044AE012-70F1-4F96-A349-A67A80678AFC-low.gif)
With 0.8GHz matching, 12.5MHz offset from
tone |
|
Figure 4-299 RX Noise Spectral Density
vs Input Amplitude and Channel at 0.8GHz![AFE7950-SP RX IMD5 vs DSA Setting
and Temperature at 0.8GHz AFE7950-SP RX IMD5 vs DSA Setting
and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-9F709F91-2E4E-4767-AFFB-832F9A82BE06-low.gif)
With 0.8GHz matching, each tone –7dBFS, tone
spacing = 20MHz |
Figure 4-301 RX IMD5 vs DSA Setting
and Temperature at 0.8GHz![AFE7950-SP RX IMD3 vs Input Level
and Temperature at 0.8GHz AFE7950-SP RX IMD3 vs Input Level
and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-C9D08EB7-F134-4970-AD28-881897B3F948-low.gif)
With 0.8GHz matching, tone spacing = 20MHz,
DSA = 12dB |
Figure 4-303 RX IMD3 vs Input Level
and Temperature at 0.8GHz![AFE7950-SP RX HD2 vs DSA Setting and
Channel at 0.8GHz AFE7950-SP RX HD2 vs DSA Setting and
Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-B236C924-B5AD-4D20-8771-B3C8EAF341AA-low.gif)
With 0.8GHz matching, measured after HD2 trim,
DDC bypass mode (TI only mode for
characterization) |
Figure 4-305 RX HD2 vs DSA Setting and
Channel at 0.8GHz![AFE7950-SP RX HD2 vs Input Level and
Temperature at 0.8GHz AFE7950-SP RX HD2 vs Input Level and
Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-95A2BCB5-460F-4F05-A96F-6CF5AEA39A08-low.gif)
With 0.8GHz matching, measured after HD2 trim,
DDC bypass mode (TI only mode for
characterization) |
Figure 4-307 RX HD2 vs Input Level and
Temperature at 0.8GHz![AFE7950-SP RX HD3 vs DSA Setting and
Temperature at 0.8GHz AFE7950-SP RX HD3 vs DSA Setting and
Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-3AAD2CBF-61BC-4BB4-B2A7-5E0B41BAE00C-low.gif)
With 0.8GHz matching, DDC bypass mode (TI only
mode for characterization) |
Figure 4-309 RX HD3 vs DSA Setting and
Temperature at 0.8GHz![AFE7950-SP RX HD3 vs Input Level and
Temperature at 0.8GHz AFE7950-SP RX HD3 vs Input Level and
Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-BD309C49-64BD-4659-942D-EDA3E3626A6F-low.gif)
With 0.8GHz matching, DDC bypass mode (TI only
mode for characterization) |
Figure 4-311 RX HD3 vs Input Level and
Temperature at 0.8GHz![AFE7950-SP RX IMD3 vs Supply and
Channel at 0.8GHz AFE7950-SP RX IMD3 vs Supply and
Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-99E0A924-65EE-4249-AF62-C20373F7407F-low.gif)
With 0.8GHz matching, –7dBFS each tone, 20MHz
tone spacing, all supplies at MIN, TYP, or MAX
recommended operating voltages |
Figure 4-313 RX IMD3 vs Supply and
Channel at 0.8GHz![AFE7950-SP RX Noise Spectral Density
vs Supply and Channel at 0.8GHz AFE7950-SP RX Noise Spectral Density
vs Supply and Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-1F4F1580-E183-492D-B5C1-E8CAE32B960B-low.gif)
With 0.8GHz matching, 12.5MHz offset, all
supplies at MIN, TYP, or MAX recommended operating
voltages |
Figure 4-315 RX Noise Spectral Density
vs Supply and Channel at 0.8GHz![AFE7950-SP RX Input Fullscale vs
Temperature and Channel at 800MHz AFE7950-SP RX Input Fullscale vs
Temperature and Channel at 800MHz](/ods/images/SBASAG7A/GUID-E8FFAE4E-59E6-4CF5-AB84-A31EF5CB0CDB-low.gif)
With 0.8GHz matching, normalized to fullscale
at 25°C for each channel |
Figure 4-286 RX Input Fullscale vs
Temperature and Channel at 800MHz![AFE7950-SP RX Uncalibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz AFE7950-SP RX Uncalibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-4318FA4B-09D1-4E6D-BCB5-E6BEA876E568-low.gif)
With 0.8GHz matching |
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1 |
Figure 4-288 RX Uncalibrated
Differential Amplitude Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Uncalibrated
Integrated Amplitude Error vs DSA Setting at 0.8GHz AFE7950-SP RX Uncalibrated
Integrated Amplitude Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-8DDF137E-600E-4ADA-8EFB-6529ADE48DA2-low.gif)
With 0.8GHz matching |
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting) |
Figure 4-290 RX Uncalibrated
Integrated Amplitude Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Uncalibrated
Differential Phase Error vs DSA Setting at 0.8GHz AFE7950-SP RX Uncalibrated
Differential Phase Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-457865D3-3582-48A0-8FB8-7F616FEA6586-low.gif)
With 0.8GHz matching |
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting) |
Figure 4-292 RX Uncalibrated
Differential Phase Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Uncalibrated
Integrated Phase Error vs DSA Setting at 0.8GHz AFE7950-SP RX Uncalibrated
Integrated Phase Error vs DSA Setting at 0.8GHz](/ods/images/SBASAG7A/GUID-D47286C9-FB56-4569-8C8A-99102C891D10-low.gif)
With 0.8GHz matching |
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0) |
Figure 4-294 RX Uncalibrated
Integrated Phase Error vs DSA Setting at 0.8GHz![AFE7950-SP RX Output FFT at
0.8GHz AFE7950-SP RX Output FFT at
0.8GHz](/ods/images/SBASAG7A/GUID-F20F0BFD-4813-49E5-B765-D27042F42419-low.gif)
With 0.8GHz matching, fIN = 840MHz,
AIN= –3dBFS |
Figure 4-296 RX Output FFT at
0.8GHz![AFE7950-SP RX Noise Spectral Density
vs Input Amplitude and Temperature at 0.8GHz AFE7950-SP RX Noise Spectral Density
vs Input Amplitude and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-DC870B4F-AAB7-4FCA-8BBA-6E9AA3BCBC0C-low.gif)
With 0.8GHz matching, DSA Setting = 12dB,
12.5MHz offset from tone |
Figure 4-298 RX Noise Spectral Density
vs Input Amplitude and Temperature at 0.8GHz![AFE7950-SP RX IMD3 vs DSA Setting
and Temperature at 0.8GHz AFE7950-SP RX IMD3 vs DSA Setting
and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-33603C82-B83C-4FAD-A77E-7E19169D4440-low.gif)
A. With 0.8GHz matching, each tone –7dBFS, tone
spacing = 20MHz |
Figure 4-300 RX IMD3 vs DSA Setting
and Temperature at 0.8GHz![AFE7950-SP RX IMD3 vs Input Level
and Temperature at 0.8GHz AFE7950-SP RX IMD3 vs Input Level
and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-5B21D5F9-B90D-4A4C-A700-E4AD1E403F1A-low.gif)
With 0.8GHz matching, tone spacing = 20MHz,
DSA = 4dB |
Figure 4-302 RX IMD3 vs Input Level
and Temperature at 0.8GHz![AFE7950-SP RX IMD5 vs Input Level
and Temperature at 0.8GHz AFE7950-SP RX IMD5 vs Input Level
and Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-784EE6E1-95C2-46BD-8D50-884EA2C039CC-low.gif)
With 0.8GHz matching, tone spacing = 20MHz,
DSA = 12dB |
Figure 4-304 RX IMD5 vs Input Level
and Temperature at 0.8GHz![AFE7950-SP RX HD2 vs DSA Setting and
Temperature at 0.8GHz AFE7950-SP RX HD2 vs DSA Setting and
Temperature at 0.8GHz](/ods/images/SBASAG7A/GUID-3766ACA0-553A-4BA3-B7C7-681BA01A2D37-low.gif)
With 0.8GHz matching, measured after HD2 trim,
DDC bypass mode (TI only mode for
characterization) |
Figure 4-306 RX HD2 vs DSA Setting and
Temperature at 0.8GHz![AFE7950-SP RX HD3 vs DSA Setting and
Channel at 0.8GHz AFE7950-SP RX HD3 vs DSA Setting and
Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-9A8F42A1-C95C-48F7-A0AB-32C3B85AB6E4-low.gif)
With 0.8GHz matching, DDC bypass mode (TI only
mode for characterization) |
Figure 4-308 RX HD3 vs DSA Setting and
Channel at 0.8GHz![AFE7950-SP RX HD3 vs Input Level and
Channel at 0.8GHz AFE7950-SP RX HD3 vs Input Level and
Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-6A88DCC1-0ED3-446F-A28A-943B5750F692-low.gif)
With 0.8GHz matching, DDC bypass mode (TI only
mode for characterization) |
Figure 4-310 RX HD3 vs Input Level and
Channel at 0.8GHz
Figure 4-312 RX Non-HD2/3 vs DSA
Setting at 0.8GHz![AFE7950-SP RX IMD5 vs Supply and
Channel at 0.8GHz AFE7950-SP RX IMD5 vs Supply and
Channel at 0.8GHz](/ods/images/SBASAG7A/GUID-93C63C25-3B41-491A-9477-482F5D731FB4-low.gif)
With 0.8GHz matching, –7dBFS each tone, 20MHz
tone spacing, all supplies at MIN, TYP, or MAX
recommended operating voltages |
Figure 4-314 RX IMD5 vs Supply and
Channel at 0.8GHz