Figure 3. Voltage Gain Across LO Frequency for Internal LO Mode
Figure 5. Voltage Gain Across IF Frequency for Internal LO Mode
Figure 7. IIP3 Across LO Frequency for Internal LO Mode
Figure 9. IIP3 Across IF Frequency for Internal LO Mode
Figure 11. IIP2: F1-F2 Across LO Frequency for Internal LO Mode
Figure 13. IIP2: F1-F2 Across IF Frequency for Internal LO Mode
Figure 15. IIP2: F1+F2 Across LO Frequency for Internal LO Mode
Figure 17. IIP2: F1+F2 Across IF Frequency for Internal LO Mode
Figure 19. Noise Figure Across LO Frequency for Internal LO Mode
Figure 21. Noise Figure Across IF Frequency for Internal LO Mode
Figure 23. Uncalibrated IQ Phase Difference for Internal LO Mode
Figure 25. Uncalibrated IQ Gain Imbalance for Internal LO Mode
Figure 27. IMRR for Internal LO Mode: Calibrated and Uncalibrated
Minus sign on x-axis means polarity is set to '1'.
Figure 29. IMRR Phase Calibration: Fine Accuracy Mode
Figure 31. IMRR Gain Calibration
Figure 33. 2x2 Spur for External LO Mode
Figure 35. 3x3 Spur for External LO Mode
Figure 37. LO to IF Leakage Level
Figure 39. LO to RF Leakage Level: External LO Mode
Jammer frequency = 8.8GHz, LO = 7.8GHz, IF = 100MHz.
Internal LO phase noise values used for calculation at -40, 25, and 85 degrees C are –155, –154.5 and –154 dBc/Hz, separately.
Figure 41. Noise Figure with Jammer
Figure 43. LO Port Mixed Modes S11
Figure 4. Voltage Gain Across LO frequency for External LO Mode
Figure 6. Voltage Gain Across IF Frequency for External LO Mode
Figure 8. IIP3 Across LO Frequency for External LO Mode
Figure 10. IIP3 Across IF Frequency for External LO Mode
Figure 12. IIP2: F1-F2 Across LO Frequency for External LO Mode
Figure 14. IIP2: F1-F2 Across IF Frequency for External LO Mode
Figure 16. IIP2: F1+F2 Across LO Frequency for External LO Mode
Figure 18. IIP2: F1+F2 Across IF Frequency for External LO Mode
Figure 20. Noise Figure Across LO Frequency for External LO Mode
Figure 22. Noise Figure Across IF Frequency for External LO Mode
Figure 24. Uncalibrated IQ Phase Difference for External LO Mode
Figure 26. Uncalibrated IQ Gain Imbalance for External LO Mode
Figure 28. IMRR for External LO Mode: Calibrated and Uncalibrated
Figure 30. IMRR Phase Calibration: Extended Range Mode
Figure 32. 2x2 Spur for Internal LO Mode
Figure 34. 3x3 Spur for Internal LO Mode
Figure 36. RF to IF Isolation
Figure 38. LO to RF Leakage Level: Internal LO Mode
The LO frequency is capped at 6600MHz because IP1dB exceeds +10dBm when LO frequency goes beyond 6600MHz; The device can be damaged when input power is more than +10dBm.
Figure 40. OP1dB Across LO Frequency
Figure 42. RF Port S11
Board losses and mismatch are not subtracted out. True output power may be higher. This plot shows single-ended LO output power only. Differential output power can be higher.
Figure 44. LO Output Power
Measurements are done at 25 degree C unless temperature is specified in the plots.
For measurements across LO frequency, IF = 65MHz, and LO injection type is high side injection. For measurements across IF frequency, high side injection is applied
For all measurements that require RF input, RF input power = -10 dBm unless otherwise specified.
For two-tone measurements, the separation between two tones is 17MHz.
For all measurements, internal 1.7V VCM is applied.
For all external LO mode measurements, LO power = +6 dBm.
IF baluns used for measurements are: ADT2-18+ from Mini-Circuits™.
LO balun used for measurements is: BIB-100G from PPM-Test™.
RF combiner used for measurements of IP2, IP3 and NF with jammer is: 4426-2 from Narda-MITEQ™.