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ADL5906SCPZN-R7 数据表(PDF) 24 Page - Analog Devices |
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ADL5906SCPZN-R7 数据表(HTML) 24 Page - Analog Devices |
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24 / 32 page ![]() ADL5906 Data Sheet Rev. 0 | Page 24 of 32 SYSTEM CALIBRATION AND ERROR CALCULATION The measured transfer function of the ADL5906 at 2.14 GHz is shown in Figure 53, which contains plots of both output voltage vs. input level and linearity error vs. input level. As the input level varies from −65 dBm to +5 dBm, the output voltage varies from ~0.25 V to ~3.9 V. –6 –5 –4 –3 –2 –1 0 1 2 3 4 5 6 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 –65 –55 –45 –35 –25 –15 –5 5 PIN (dBm) OUTPUT VOLTAGE –40°C OUTPUT VOLTAGE +25°C OUTPUT VOLTAGE +85°C ERROR –40°C ERROR +25°C ERROR +85°C Figure 53. 2.14 GHz VRMS and Log Conformance Error at +25°C, −40°C, and +85°C Using Two-Point Calibration at 0 dBm and −40 dBm Because slope and intercept vary from device to device, board level calibration must be performed to achieve high accuracy. The equation for the idealized output voltage can be written as VRMS(IDEAL) = Slope × (PIN − Intercept) (13) where: Slope is the change in output voltage divided by the change in input power (dB). Intercept is the calculated input power level at which the output voltage is equal to 0 V (note that Intercept is an extrapolated theoretical value and not a measured value). In general, calibration is performed during equipment manufacture by applying two or more known signal levels to the input of the ADL5906 and measuring the corresponding output voltages. The calibration points must be within the linear operating range of the device. With a two-point calibration, the slope and intercept are calculated as follows: Slope = (VRMS1 − VRMS2)/(PIN1 − PIN2) (14) Intercept = PIN1 − (VRMS1/Slope) (15) After the slope and intercept are calculated and stored in nonvolatile memory during equipment calibration, an equation can be used to calculate an unknown input power based on the output voltage of the detector. PIN (Unknown) = (VRMS(MEASURED)/Slope) + Intercept (16) The log conformance error is the difference between this straight line and the actual performance of the detector. Error (dB) = (VRMS(MEASURED) − VRMS(IDEAL))/Slope (17) Figure 53 includes a plot of this error at +25°C, −40°C, and +85°C when using a two-point calibration (calibration points are 0 dBm and −40 dBm). The error at the calibration points at 25°C (in this case, −40 dBm and 0 dBm) is equal to 0 dB by definition. The residual nonlinearity of the transfer function that is apparent in the two-point calibration error plot can be reduced by increasing the number of calibration points. Figure 54 shows the post-calibration error plots for a three-point calibration. With a multipoint calibration, the transfer function is segmented, with each segment having its own slope and intercept. Multiple known power levels (three levels in this case) are applied, and multiple voltages are measured. When the equipment is in operation, the measured voltage from the detector is first used to determine which of the stored slope and intercept calibration coefficients are to be used. Then, the unknown power level is calculated by inserting the appropriate slope and intercept values into Equation 16. When choosing calibration points, there is no requirement for, or value in, equal spacing between the points. There is also no limit to the number of calibration points used. However, when more calibration points are used, calibration time increases. PIN (dBm) –6 –5 –4 –3 –2 –1 0 1 2 3 4 5 6 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 –65 –55 –45 –35 –25 –15 –5 5 OUTPUT VOLTAGE –40°C OUTPUT VOLTAGE +25°C OUTPUT VOLTAGE +85°C ERROR –40°C ERROR +25°C ERROR +85°C VTADJ = 0.35V Figure 54. 2.14 GHz VRMS and Log Conformance Error at +25°C, −40°C, and +85°C Using Three-Point Calibration at 0 dBm, −40 dBm, and −55 dBm The −40°C and +85°C error plots in Figure 54 are generated using the +25°C slope and intercept values. This is consistent with equipment calibration in a mass production environment where calibration of multiple temperatures is not practical. |
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