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AD8364ACPZ-R2 数据表(PDF) 27 Page - Analog Devices |
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AD8364ACPZ-R2 数据表(HTML) 27 Page - Analog Devices |
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27 / 44 page ![]() Data Sheet AD8364 Rev. C | Page 27 of 44 CONSTANT OUTPUT POWER OPERATION In controller mode, the AD8364 can be used to hold the output power stable over a broad temperature/input power range. This can be very useful in systems, such as a transmit module driving a high power amplifier (HPA) in a base station, that connect multiple power sensitive modules together. In applications where stable output power is needed, the RF output is connected to Channel B using a coupler, VLVL is connected to VREF, VSTB is used to set the power to a particular level and can be controlled using a DAC or a dc voltage, OUTB is used to drive the gain control of an amplifier that is capable of negative- gain law conformance (such as the AD8367), and ADJB (set at 0 V in this example) is used to control the temperature drift. Using this configuration, the RF input signal is down converted to 80 MHz using the AD8343 and amplified using the AD8367. The signal then splits and part of it is fed back to the AD8364 through Channel B, and a setpoint voltage is applied to VSTB. This voltage corresponds to a particular power level, which is determined by the slope of the AD8364. The power detected at the input of the AD8364 is compared with this voltage, and the voltage present at OUTB is adjusted up or down to match the setpoint voltage, with the power detected on the input. The OUTB voltage is connected to the gain control of the AD8367 VGA and increases or decreases the gain of the AD8367, resulting in the output power being held constant, regardless of variations in the input power. The AD8364 is able to maintain a fixed output power from the AD8367 even though the input power is changing. The input power can vary over a 36 dB range, while the output power remains constant and the drift over temperature is less than 0.2 dB Figure 64 shows a constant output power circuit using the AD8364 and the AD8367 VGA. The input power was swept from +3 dBm to −35 dBm, the output power was measured at multiple temperatures between −40°C and +85°C, and the power changed less than ±0.07 dB (Figure 63). PIN (dBm) 5 –40 –35 –30 –20 –15 –25 –10 –5 0 –15.0 –15.2 –15.3 –15.1 –15.4 –15.5 –15.7 –15.6 –15.8 –15.9 –16.0 POUT +25°C –20°C POUT –40°C POUT +85°C Figure 63. AD8364 Constant Power Performance |
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