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AD8315ARMZ датащи(PDF) 12 Page - Analog Devices |
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AD8315ARMZ датащи(HTML) 12 Page - Analog Devices |
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12 / 22 page ![]() AD8315 Data Sheet Rev. D | Page 12 of 22 THEORY OF OPERATION The AD8315 is a wideband logarithmic amplifier (log amp) similar in design to the AD8313 and AD8314. However, it is strictly optimized for use in power control applications rather than as a measurement device. Figure 32 shows the main features in block schematic form. The output (Pin 7, VAPC) is intended to be applied directly to the automatic power-control (APC) pin of a power amplifier module. BASIC THEORY Logarithmic amplifiers provide a type of compression in which a signal having a large range of amplitudes is converted to one of smaller range. The use of the logarithmic function uniquely results in the output representing the decibel value of the input. The fundamental mathematical form is: Z IN SLP OUT V V V V 10 log (1) Here VIN is the input voltage, VZ is called the intercept (voltage) because when VIN = VZ the argument of the logarithm is unity and thus the result is zero, and VSLP is called the slope (voltage), which is the amount by which the output changes for a certain change in the ratio (VIN/VZ). When BASE-10 logarithms are used, denoted by the function log10, VSLP represents the volts/decade, and since a decade corresponds to 20 dB, VSLP/20 represents the volts/dB. For the AD8315, a nominal (low frequency) slope of 24 mV/dB was chosen, and the intercept VZ was placed at the equivalent of −70 dBV for a sine wave input (316 μV rms). This corresponds to a power level of −57 dBm when the net resistive part of the input impedance of the log amp is 50 Ω. However, both the slope and the intercept are dependent on frequency (see Figure 16 and Figure 19). Keeping in mind that log amps do not respond to power but only to voltages and that the calibration of the intercept is waveform dependent and is only quoted for a sine wave signal, the equivalent power response can be written as VOUT = VDB (PIN − PZ) (2) where: PIN, the input power, and PZ, the equivalent intercept, are both expressed in dBm (thus, the quantity in parentheses is simply a number of decibels). VDB is the slope expressed as so many mV/dB. For a log amp having a slope VDB of 24 mV/dB and an intercept at −57 dBm, the output voltage for an input power of –30 dBm is 0.024 [−30 − (−57)] = 0.648 V. Further details about the structure and function of log amps can be found in data sheets for other log amps produced by Analog Devices, Inc. Refer to the AD640 data sheet and AD8307 data sheet, both of which include a detailed discussion of the basic principles of operation and explain why the intercept depends on waveform, an important consideration when complex modulation is imposed on an RF carrier. VPOS ENBL RFIN COMM (PADDLE) DET 10dB DET 10dB DET DET DET 10dB 10dB OFFSET COMP’N INTERCEPT POSITIONING LOW NOISE GAIN BIAS LOW NOISE BAND GAP REFERENCE OUTPUT ENABLE DELAY ×1.35 VAPC HI-Z LOW NOISE (25nV/√Hz) RAIL-TO-RAIL BUFFER FLTR VSET V-I 23mV/dB 250mV TO 1.4V = 50dB (CURRENT- NULLING MODE) (WEAK GM STAGE) (CURRENT-MODE SIGNAL) (CURRENT-MODE FEEDBACK) (SMALL INTERNAL FILTER CAPACITOR FOR GHz RIPPLE) (ELIMINATES GLITCH) (PRECISE SLOPE CONTROL) (PRECISE GAIN CONTROL) Figure 32. Block Schematic |
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