ZHCSPA8A March   2024  – August 2024 AFE7950-SP

PRODMIX  

  1.   1
  2. 1特性
  3. 2应用
  4. 3说明
  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  TX Typical Characteristics 800MHz
      2. 4.12.2  TX Typical Characteristics at 1.8GHz
      3. 4.12.3  TX Typical Characteristics at 2.6GHz
      4. 4.12.4  TX Typical Characteristics at 3.5GHz
      5. 4.12.5  TX Typical Characteristics at 4.9GHz
      6. 4.12.6  TX Typical Characteristics at 8.1GHz
      7. 4.12.7  TX Typical Characteristics at 9.6GHz
      8. 4.12.8  RX Typical Characteristics at 800MHz
      9. 4.12.9  RX Typical Characteristics at 1.75-1.9GHz
      10. 4.12.10 RX Typical Characteristics at 2.6GHz
      11. 4.12.11 RX Typical Characteristics at 3.5GHz
      12. 4.12.12 RX Typical Characteristics at 4.9GHz
      13. 4.12.13 RX Typical Characteristics at 8.1GHz
      14. 4.12.14 RX Typical Characteristics at 9.6GHz
  6. 5Device and Documentation Support
    1. 5.1 接收文档更新通知
    2. 5.2 支持资源
    3. 5.3 Trademarks
    4. 5.4 静电放电警告
    5. 5.5 术语表
  7. 6Revision History
  8. 7Mechanical, Packaging, and Orderable Information

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RX Typical Characteristics at 8.1GHz

Typical values at TA = +25°C, ADC Sampling Rate = 2949.12GHz. Default conditions: output sample rate = 1474.56MSPS (decimate by 2) , External clock mode with fCLK = 11796.48MHz, AIN = –3dBFS, DSA setting = 3 dB, 8.1GHz matching.

AFE7950-SP RX
                        Amplitude vs Frequency and Channel
Normalized to 8.11GHz
Figure 4-422 RX Amplitude vs Frequency and Channel
AFE7950-SP RX
                        Amplitude vs Frequency and DSA Setting
2RX and 4RX, Normalized to 8.11GHz
Figure 4-424 RX Amplitude vs Frequency and DSA Setting
AFE7950-SP RX
                        Amplitude Integrated Nonlinearity at 8.11GHz
Figure 4-426 RX Amplitude Integrated Nonlinearity at 8.11GHz
AFE7950-SP RX
                        Phase Differential Nonlinearity at 8.11GHz
Figure 4-428 RX Phase Differential Nonlinearity at 8.11GHz
AFE7950-SP RX
                        IMD3 vs DSA Setting at 8.11GHz
50MHz tone spacing
Figure 4-430 RX IMD3 vs DSA Setting at 8.11GHz
AFE7950-SP RX
                        NSD vs Digital Amplitude at 8.11GHz
Figure 4-432 RX NSD vs Digital Amplitude at 8.11GHz
AFE7950-SP RX
                        NSD vs DSA Setting at 8.11GHz
Figure 4-434 RX NSD vs DSA Setting at 8.11GHz
AFE7950-SP RX
                        HD2 vs Digital Amplitude at 8.11GHz
Figure 4-436 RX HD2 vs Digital Amplitude at 8.11GHz
AFE7950-SP RX
                        HD3 vs Digital Amplitude at 8.11GHz
Figure 4-438 RX HD3 vs Digital Amplitude at 8.11GHz
AFE7950-SP RX
                        2-tone SFDR vs Digital Amplitude at 8.11GHz
50MHz Tone Spacing
Figure 4-440 RX 2-tone SFDR vs Digital Amplitude at 8.11GHz
AFE7950-SP RX
                        Single Tone Output FFT at 8.11GHz, -12dBFS
External clock mode
Figure 4-442 RX Single Tone Output FFT at 8.11GHz, -12dBFS
AFE7950-SP RX
                        Single Tone Output FFT at 8.11GHz, -60 dBFS
External clock mode
Figure 4-444 RX Single Tone Output FFT at 8.11GHz, -60 dBFS
AFE7950-SP RX
                        Dual Tone Output FFT at 8.11GHz
External clock mode, -13dBFS each tone
Figure 4-446 RX Dual Tone Output FFT at 8.11GHz
AFE7950-SP RX
                        Dual Tone Output FFT at 8.11GHz
External clock mode, -60dBFS each tone
Figure 4-448 RX Dual Tone Output FFT at 8.11GHz
AFE7950-SP RX
                        Amplitude vs Frequency and DSA Setting
1RX and 3RX, Normalized to 8.11GHz
Figure 4-423 RX Amplitude vs Frequency and DSA Setting
AFE7950-SP RX
                        Amplitude Differential Nonlinearity at 8.11GHz
Figure 4-425 RX Amplitude Differential Nonlinearity at 8.11GHz
AFE7950-SP RX
                        Phase Differential Nonlinearity at 8.11GHz
Figure 4-427 RX Phase Differential Nonlinearity at 8.11GHz
AFE7950-SP RX
                        IMD3 vs Input Amplitude at 8.11GHz
50MHz tone spacing
Figure 4-429 RX IMD3 vs Input Amplitude at 8.11GHz
AFE7950-SP RX
                        IMD3 vs Tone Spacing at 8.11GHz
Figure 4-431 RX IMD3 vs Tone Spacing at 8.11GHz
AFE7950-SP RX
                        NSD vs Digital Amplitude at 8.11GHz
Figure 4-433 RX NSD vs Digital Amplitude at 8.11GHz
AFE7950-SP RX
                        NSD vs DSA Setting at 8.11GHz
External clock mode
Figure 4-435 RX NSD vs DSA Setting at 8.11GHz
AFE7950-SP RX
                        HD2 vs DSA Setting at 8.11GHz
Figure 4-437 RX HD2 vs DSA Setting at 8.11GHz
AFE7950-SP RX
                        HD3 vs DSA Setting at 8.11GHz
Figure 4-439 RX HD3 vs DSA Setting at 8.11GHz
AFE7950-SP RX
                        Single Tone Output FFT at 8.11GHz, -1dBFS
External clock mode
Figure 4-441 RX Single Tone Output FFT at 8.11GHz, -1dBFS
AFE7950-SP RX
                        Single Tone Output FFT at 8.11GHz, -30 dBFS
External clock mode
Figure 4-443 RX Single Tone Output FFT at 8.11GHz, -30 dBFS
AFE7950-SP RX
                        Dual Tone Output FFT at 8.11GHz
External clock mode, -7dBFS each tone
Figure 4-445 RX Dual Tone Output FFT at 8.11GHz
AFE7950-SP RX
                        Dual Tone Output FFT at 8.11GHz
External clock mode, -30dBFS each tone
Figure 4-447 RX Dual Tone Output FFT at 8.11GHz