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ADL6010SCPZN-R7 データシート(PDF) 18 Page - Analog Devices |
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ADL6010SCPZN-R7 データシート(HTML) 18 Page - Analog Devices |
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18 / 22 page ![]() ADL6010 Data Sheet Rev. B | Page 18 of 22 Multipoint calibration can be used to further improve accuracy and extend the dynamic range. The transfer function is now broken into segments, with each having its own slope and intercept. Thus, Figure 40 shows the error plot of the same test device with calibration input points of −28 dBm, −10 dBm, and +10 dBm. The three point, dual slope calibration results in tighter error bounds over the high end of the range and extends the lower measurement range to −30 dBm for ±1 dB error. Figure 40. Conformance Error and Output Voltage vs. RF Input Power (PIN) and Temperature (−55°C, −40°C, +25°C, +85°C, +125°C) at 10 GHz Using Three Point Calibration For the device shown in Figure 40, the change in error with temperature is very small over the upper 25 dB of the measurement range, being ±0.4 dB, and widens at lower power levels, reaching ±0.9 dB over the −10 dBm to −20 dBm segment. High volume production samples may perform better. For comparison, the three point calibration of a second device is shown in Figure 41 using the same frequency and calibration points. This sample has greater dynamic range, and the temperature dependence of error at lower power levels is inverted relative to the first device. Figure 41. 10 GHz Conformance Error and Output Voltage vs. RF Input Power (PIN) for Second Device at +25°C, −40°C, −55°C, +85°C, and +125°C Figure 42 shows the conformance error at 10 GHz for four devices at +25°C, −40°C, and +85°C using a three point calibration at input levels of −28 dBm, −10 dBm, and +10 dBm. The error plots at each temperature were calculated with respect to the slope and intercept values extracted from the 25°C line in each case. This calculation is consistent with a typical production scenario where calibration at only one temperature is used. Figure 42 illustrates the various error scenarios possible at low input levels. The dynamic range of the three point calibrated devices extends to −30 dBm for ±1.0 dB error at 25°C. Figure 42. 10 GHz Conformance Error and Output Voltage vs. RF Input Power (PIN) at +25°C, +85°C, and −40°C for Multiple Devices 4 3 2 1 0 –1 –2 –3 –4 10 1 0.1 0.01 0.001 PIN (dBm) –55°C –40°C +25°C +85°C +125°C 15 5 –5 –15 –25 20 10 0 –10 –20 –30 CALIBRATION AT –28dBm, –10dBm, AND +10dBm 4 3 2 1 0 –1 –2 –3 –4 10 1 0.1 0.01 0.001 PIN (dBm) –55°C –40°C +25°C +85°C +125°C 15 5 –5 –15 –25 20 10 0 –10 –20 –30 CALIBRATION AT –28dBm, –10dBm, AND +10dBm 4 3 2 1 0 –1 –2 –3 –4 10 1 0.1 0.01 0.001 PIN (dBm) –40°C +25°C +85°C 15 5 –5 –15 –25 20 10 0 –10 –20 –30 CALIBRATION AT –28dBm, –10dBm, AND +10dBm |
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