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ADL5519ACPZ-R7 数据表(PDF) 17 Page - Analog Devices |
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ADL5519ACPZ-R7 数据表(HTML) 17 Page - Analog Devices |
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17 / 27 page ![]() Preliminary Technical Data ADL5519 Rev. PrB | Page 17 of 27 ADL5519ACPZ EXPOSED PADDLE CLPA TEMP VPSR ADJA CLPB VLVL VREF ADJB VPSB VSTA VSTB OUTB FBKB OUTN OUTP FBKA OUTA VPSA 27 28 29 30 31 32 INHB INLB COMR PWDN INLA INHA 25 26 3 4 5 6 7 8 1 2 COMR COMR COMR COMR 14 13 12 11 10 9 16 15 NC NC 22 21 20 19 18 17 24 23 COMR COMR INHA C4 47nF C3 47nF VPSB C11 100pF C16 0.1 μF R11 0 Ω R10 0 Ω R9 DIFF OUT + DIFF OUT – R4 0 Ω C8 100pF C15 0.1 μF VPSA C7 100pF C12 0.1 μF R3 0 Ω VPSR SEE TEXT R5 52.3 Ω INHB C2 C1 47nF R6 52.3 Ω 47nF R7 R12 0 Ω SETPOINT VOLTAGE B OUTPUT VOLTAGE B R20 0 Ω R2 1k Ω R1 1k Ω R8 0 Ω SETPOINT VOLTAGE B OUTPUT VOLTAGE B R21 0 Ω 0 Ω SEE TEXT SEE TEXT SEE TEXT 0 Ω SEE TEXT Figure 19. Basic Connections for Operation in Measurement Mode CONTROLLER MODE In addition to being a measurement device, the ADL5519 can also be configured to measure and control signal levels. The ADL5519 has two controller modes. Each of the two log detectors can be separately configured to set and control the output power level of a variable gain amplifier (VGA) or variable voltage attenuator (VVA). Alternatively, the two log detectors can be configured to measure and control the gain of an amplifier or signal chain. The channel difference outputs can be used for controlling a feedback loop to the ADL5519’s RF inputs. A capacitor connected between FBKA and OUTP forms an integrator, keeping in mind that the on-chip 1 kΩ feedback resistor forms a zero. (The value of the on-chip resistors can vary as much as ±20% with manufac- turing process variation.) If Channel A is driven and Channel B has a feedback loop from OUTP through a PA, then OUTP integrates to a voltage value such that OUTB = (OUTA + VLVL)/2 (11) The output value from OUTN may or may not be useful. It is given by OUTN = 0 V (12) For VLVL < OUTA/3, Otherwise, OUTN = (3 × VLVL – OUTA)/2 (13) If VLVL is connected to OUTA, then OUTB is forced to equal OUTA through the feedback loop. This flexibility provides the user with the capability to measure one channel operating at a given power level and frequency while forcing the other channel to a desired power level at another frequency. ADJA and ADJB should be set to different voltage levels to reduce the temperature drift of the output measurement. The temperature drift will be statistical sum of the drift from Channel A and Channel B. As stated before, VLVL can be used to force the slaved channel to operate at a different power than the other channel. If the two channels are forced to operate at different power levels, then some static offset occurs due to voltage drops across metal wiring in the IC. If an inversion is necessary in the feedback loop, OUTN can be used as the integrator by placing a capacitor between OUTN |
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