SBASB73 August   2026 AFE7903-SEP

PRODMIX  

  1.   1
  2. 1Features
  3. 2Applications
  4. 3Description
  5. 4Specifications
    1. 4.1  Absolute Maximum Ratings
    2. 4.2  ESD Ratings
    3. 4.3  Recommended Operating Conditions
    4. 4.4  Thermal Information
    5. 4.5  Transmitter Electrical Characteristics
    6. 4.6  RF ADC Electrical Characteristics
    7. 4.7  PLL/VCO/Clock Electrical Characteristics
    8. 4.8  Digital Electrical Characteristics
    9. 4.9  Power Supply Electrical Characteristics
    10. 4.10 Timing Requirements
    11. 4.11 Switching Characteristics
    12. 4.12 Typical Characteristics
      1. 4.12.1  RX Typical Characteristics 30MHz and 400MHz
      2. 4.12.2  RX Typical Characteristics at 800MHz
      3. 4.12.3  RX Typical Characteristics 1.75GHz to 1.9GHz
      4. 4.12.4  RX Typical Characteristics 2.6GHz
      5. 4.12.5  RX Typical Characteristics 3.5GHz
      6. 4.12.6  RX Typical Characteristics 4.9GHz
      7. 4.12.7  RX Typical Characteristics 6.8GHz
      8. 4.12.8  TX Typical Characteristics at 30MHz and 600MHz
      9. 4.12.9  TX Typical Characteristics at 800MHz
      10. 4.12.10 TX Typical Characteristics at 1.8GHz
      11. 4.12.11 TX Typical Characteristics at 2.6GHz
      12. 4.12.12 TX Typical Characteristics at 3.5GHz
      13. 4.12.13 TX Typical Characteristics at 4.9GHz
      14. 4.12.14 TX Typical Characteristics at 7.1GHz
      15. 4.12.15 PLL and Clock Typical Characteristics
  6. 5Device and Documentation Support
    1. 5.1 Receiving Notification of Documentation Updates
    2. 5.2 Support Resources
    3. 5.3 Trademarks
    4. 5.4 Electrostatic Discharge Caution
    5. 5.5 Glossary
  7. 6Revision History
  8. 7Mechanical, Packaging, and Orderable Information

RX Typical Characteristics 3.5GHz

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.

AFE7903-SEP RX In-Band Gain Flatness,
                                          fIN = 3600MHz
With 3.6GHz matching, normalized to 3.6GHz
Figure 4-137 RX In-Band Gain Flatness, fIN = 3600MHz
AFE7903-SEP RX Uncalibrated Differential Amplitude Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1
Figure 4-139 RX Uncalibrated Differential Amplitude Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Uncalibrated Integrated Amplitude Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting)
Figure 4-141 RX Uncalibrated Integrated Amplitude Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Uncalibrated Phase Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting)
Figure 4-143 RX Uncalibrated Phase Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Uncalibrated Integrated Phase Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0)
Figure 4-145 RX Uncalibrated Integrated Phase Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Output FFT at 3.6GHz
With 3.6GHz matching , fIN = 3610MHz, AIN = –3dBFS
Figure 4-147 RX Output FFT at 3.6GHz
AFE7903-SEP RX IMD3 vs Input Level and Temperature at 3.6GHz
With 3.5GHz matching, 20MHz tone spacing
Figure 4-149 RX IMD3 vs Input Level and Temperature at 3.6GHz
AFE7903-SEP RX
                                                  IMD3 vs Tone Spacing at 3.76GHz
External clock mode, 2x Decimation
Figure 4-151 RX IMD3 vs Tone Spacing at 3.76GHz
AFE7903-SEP RX HD2 vs DSA Setting and Temperature at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-153 RX HD2 vs DSA Setting and Temperature at 3.6GHz
AFE7903-SEP RX HD2 vs Input Level and Temperature at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-155 RX HD2 vs Input Level and Temperature at 3.6GHz
AFE7903-SEP RX HD2 vs Input
                                                  Level
External clock mode, 25°C, 2x Decimation
Figure 4-157 RX HD2 vs Input Level
AFE7903-SEP RX HD3 vs DSA Setting and Temperature at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-159 RX HD3 vs DSA Setting and Temperature at 3.6GHz
AFE7903-SEP RX HD3 vs Input Level and Temperature at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-161 RX HD3 vs Input Level and Temperature at 3.6GHz
AFE7903-SEP RX HD3 vs Input
                                                  Level
External clock mode, 25°C, 2x Decimation
Figure 4-163 RX HD3 vs Input Level
AFE7903-SEP RX
                        Noise Spectral Density vs Input Level at 3.76GHz
External clock mode, 25°C, 2x Decimation
Figure 4-165 RX Noise Spectral Density vs Input Level at 3.76GHz
AFE7903-SEP RX
                        SFDR Excluding HD2/3 vs DSA Setting and Channel at 3.6GHz
With 3.5GHz matching
Figure 4-167 RX SFDR Excluding HD2/3 vs DSA Setting and Channel at 3.6GHz
AFE7903-SEP RX 2-Tone SFDR vs Input
                                    Amplitude and Frequency at 3.7GHz
External clock mode, 20MHz tone spacing, excluding 3rd order distortion
Figure 4-169 RX 2-Tone SFDR vs Input Amplitude and Frequency at 3.7GHz
AFE7903-SEP RX
                        IMD5 vs Supply Voltage and Channel at 3.6GHz
With 3.6GHz matching, –7dBFS each tone, 20MHz tone spacing, all supplies at MIN, TYP, or MAX recommended operating voltages
Figure 4-171 RX IMD5 vs Supply Voltage and Channel at 3.6GHz
AFE7903-SEP RX Input Phase vs Temperature at 3.6GHz
With 3.6GHz matching, normalized to phase at 25°C
Figure 4-138 RX Input Phase vs Temperature at 3.6GHz
AFE7903-SEP RX Calibrated Differential Amplitude Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Differential Amplitude Error = PIN(DSA Setting – 1) – PIN(DSA Setting) + 1
Figure 4-140 RX Calibrated Differential Amplitude Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Calibrated Integrated Amplitude Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Integrated Amplitude Error = PIN(DSA Setting) – PIN(DSA Setting = 0) + (DSA Setting)
Figure 4-142 RX Calibrated Integrated Amplitude Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Calibrated Differential Phase Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Differential Phase Error = PhaseIN(DSA Setting – 1) – PhaseIN(DSA Setting)
Figure 4-144 RX Calibrated Differential Phase Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX Calibrated Integrated Phase Error vs DSA Setting at 3.6GHz
With 3.6GHz matching
Integrated Phase Error = Phase(DSA Setting) – Phase(DSA Setting = 0)
Figure 4-146 RX Calibrated Integrated Phase Error vs DSA Setting at 3.6GHz
AFE7903-SEP RX IMD3 vs DSA Setting and Temperature at 3.6GHz
With 3.5GHz matching, each tone at –7dBFS, 20MHz tone spacing
Figure 4-148 RX IMD3 vs DSA Setting and Temperature at 3.6GHz
AFE7903-SEP RX IMD3 vs Input
                                                  Level
External clock mode, 20MHz tone spacing, 2x Decimation
Figure 4-150 RX IMD3 vs Input Level
AFE7903-SEP RX
                                                  HD2 vs DSA Setting and Channel at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-152 RX HD2 vs DSA Setting and Channel at 3.6GHz
AFE7903-SEP RX
                                                  HD2 vs Input Level and Channel at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-154 RX HD2 vs Input Level and Channel at 3.6GHz
AFE7903-SEP RX HD2 vs Input Level
                                                  at 3.76GHz
External clock mode, 2x Decimation
Figure 4-156 RX HD2 vs Input Level at 3.76GHz
AFE7903-SEP RX
                                                  HD3 vs DSA Setting and Channel at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-158 RX HD3 vs DSA Setting and Channel at 3.6GHz
AFE7903-SEP RX
                                                  HD3 vs Input Level and Channel at 3.6GHz
With 3.5GHz matching, DDC bypass mode (TI only mode for characterization)
Figure 4-160 RX HD3 vs Input Level and Channel at 3.6GHz
AFE7903-SEP RX HD3 vs Input Level
                                                  at 3.76GHz
External clock mode, 2x Decimation
Figure 4-162 RX HD3 vs Input Level at 3.76GHz
AFE7903-SEP RX
                        Noise Spectral Density vs Input Level and DSA Setting at 3.6GHz
With 3.5GHz matching, 12.5MHz offset from tone
Figure 4-164 RX Noise Spectral Density vs Input Level and DSA Setting at 3.6GHz
AFE7903-SEP RX In-Band SFDR (±200MHz)
                                    vs Input Level and Channel at 3.6GHz
With 3.5GHz matching
Figure 4-166 RX In-Band SFDR (±200MHz) vs Input Level and Channel at 3.6GHz
AFE7903-SEP RX 2-Tone SFDR vs Input
                                    Amplitude and DSA Setting at 3.7GHz
External clock mode, 20MHz tone spacing, excluding 3rd order distortion
Figure 4-168 RX 2-Tone SFDR vs Input Amplitude and DSA Setting at 3.7GHz
AFE7903-SEP RX
                        IMD3 vs Supply Voltage and Channel at 3.6GHz
With 3.6GHz matching, –7dBFS each tone, 20MHz tone spacing, all supplies at MIN, TYP, or MAX recommended operating voltages
Figure 4-170 RX IMD3 vs Supply Voltage and Channel at 3.6GHz
AFE7903-SEP RX
                        Noise Spectral Density vs Supply Voltage and Channel at 3.6GHz
With 3.6GHz matching, tone at –20dBFS, 12.5MHz offset frequency, all supplies at MIN, TYP, or MAX recommended operating voltages
Figure 4-172 RX Noise Spectral Density vs Supply Voltage and Channel at 3.6GHz