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ADL5303ACPZ-R7 数据表(PDF) 12 Page - Analog Devices |
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ADL5303ACPZ-R7 数据表(HTML) 12 Page - Analog Devices |
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12 / 24 page ![]() ADL5303 Data Sheet Rev. 0 | Page 12 of 24 USING THE ADL5303 The default configuration (see Figure 25) includes a 2.5:1 atten- uator in the feedback path around the buffer. This increases the slope of 10 mV/dB at the VLOG pin to 25 mV/dB at VOUT. For the full dynamic range of 160 dB (80 dB optical), the output swing is 4.0 V, which can be accommodated by the rail-to-rail output stage when using the recommended 5 V supply. The capacitor from VLOG to ground forms an optional single-pole low-pass filter. Because the resistance at this pin is trimmed to 5 kΩ, an accurate time constant can be realized. For example, with CFLT = 10 nF, the −3 dB corner frequency is 3.2 kHz. Such filtering is useful in minimizing the output noise, particularly when IPD is small. Multipole filters are even more effective in reducing noise. A capacitor between VSUM and ground is essential for minimizing the noise on this node. When the bias voltage at either VPDB or VREF is not needed, these pins should be left unconnected. SLOPE AND INTERCEPT ADJUSTMENTS The choice of slope and intercept depends on the application. The versatility of the ADL5303 permits optimal choices to be made in two common situations. First, it allows an input current range of less than the full 160 dB to use the available voltage span at the output. Second, it allows this output voltage range to be optimally positioned to fit the input capacity of a subsequent ADC. In special applications, very high slopes, such as 1 V/decade, allow small subranges of IPD to be covered at high sensitivity. The slope can be lowered without limit by the addition of a shunt resistor, RS, from VLOG to ground. Because the resistance at this pin is trimmed to 5 kΩ, the accuracy of the modified slope depends on the external resistor. It is calculated by, kΩ 5 + = S S Y Y R R V V (8) For example, using RS = 3 kΩ, the slope is lowered to 75 mV per decade or 3.75 mV/dB. Table 4 provides a selection of suitable values for RS and the resulting slopes. Table 4. Examples of Lowering the Slope RS (kΩ) VY (mV/decade) 3 75 5 100 15 150 In addition to uses in filter and comparator functions, the buffer amplifier provides the means to adjust both the slope and intercept, which require a minimal number of external components. The high input impedance at BFIN, low input offset voltage, large output swing, and wide bandwidth of this amplifier permit numerous transformations of the basic VLOG signal, using standard op amp circuit practices. For example, it has been noted that to raise the gain of the buffer, and therefore the slope, a feedback attenuator, RA and RB in Figure 25, should be inserted between VLOG and the inverting input BFNG pin. NC VOUT 500mV/DEC 200mV/DEC R18 (RB) 10k Ω ~10k Ω R15 (RA) 15kΩ 5k Ω C7 (CFILT) NC NC = NO CONNECT VP 100nF R1 750 C1 1nF IPD C3 PDB BIAS VREF VPDB VSUM INPT VSUM ACOM VPS2 PWDN VPS1 VREF VLOG BFIN BFNG VOUT 0.5V ADL5303 5 2 3 4 15 14 GND GND 7 11 10 16 12 6 8 9 13 TEMPERATURE COMPENSATION Figure 25. Basic Connections (R15, R18, C7 are Optional; R1 and C1 are the Default Values) |
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