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AD8616ARM датащи(PDF) 13 Page - Analog Devices |
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AD8616ARM датащи(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() AD8616/AD8618 Rev. A | Page 13 of 16 OVERLOAD RECOVERY TIME Overload recovery time is the time it takes the output of the amplifier to come out of saturation and recover to its linear region. Overload recovery is particularly important in applications where small signals must be amplified in the presence of large transients. Figure 42 and Figure 43 show the positive and negative overload recovery times of the AD8616. In both cases, the time elapsed before the AD8616 comes out of saturation is less than 1 µs. In addition, the symmetry between the positive and negative recovery times allows for excellent signal rectification without distortion to the output signal. TIME (1 µs/DIV) VS = ±2.5V RL = 10kΩ AV = 100 VIN = 50mV –50mV +2.5V 0V 0V Figure 42. Positive Overload Recovery TIME (1 µs/DIV) VS = ±2.5V RL = 10kΩ AV = 100 VIN = 50mV +50mV –2.5V 0V 0V Figure 43. Negative Overload Recovery D/A CONVERSION The AD8616 can be used at the output of high resolution DACs. Their low offset voltage, fast slew rate, and fast settling time make the parts suitable to buffer voltage output or current output DACs. Figure 44 shows an example of the AD8616 at the output of the AD5542. The AD8616’s rail-to-rail output and low distortion help maintain the accuracy needed in data acquisition systems and automated test equipment. AD5542 VOUT UNIPOLAR OUTPUT AGND DGND REFS 1/2 AD8616 REFF VDD SERIAL INTERFACE 0.1 µF 0.1 µF 10 µF 5V 2.5V + CS DIN SCLK LDAC* Figure 44. Buffering DAC Output LOW NOISE APPLICATIONS Although the AD8618 typically has less than 8 nV/√Hz of voltage noise density at 1 kHz, it is possible to reduce it further. A simple method is to connect the amplifiers in parallel, as shown in Figure 45. The total noise at the output is divided by the square root of the number of amplifiers. In this case, the total noise is approximately 4 nV/√Hz at room temperature. The 100 Ω resistor limits the current and provides an effective output resistance of 50 Ω. V– R3 100 Ω R1 10 Ω V+ VIN 3 2 1 R2 1k Ω V– R6 100 Ω R4 10 Ω V+ 3 2 1 R5 1k Ω V– R9 100 Ω R7 10 Ω V+ 3 2 1 R8 1k Ω V– R12 100 Ω R10 10 Ω V+ 3 2 1 R11 1k Ω VOUT Figure 45. Noise Reduction |
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