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AD8363ACPZ-R7 数据表(PDF) 17 Page - Analog Devices |
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AD8363ACPZ-R7 数据表(HTML) 17 Page - Analog Devices |
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17 / 29 page ![]() Data Sheet AD8363 Rev. B | Page 17 of 29 over a population of devices to be useful in mass production applications. The TCM1 and TCM2 pins have high input impedances, approximately 5 kΩ and 500 kΩ, respectively, and can be conveniently driven from an external source or from a fraction of VREF by using a resistor divider. VREF does change slightly with temperature and RF input amplitude (see Figure 32 and Figure 29); however, the amount of change is unlikely to result in a significant effect on the final temperature stability of the RF measurement system. Figure 38 shows a simplified schematic representation of TCM1. See the Power-Down Interface section for the TCM2 interface. 3kΩ 3kΩ ESD ESD ESD VPOS COMM TCM1 Figure 38. TCM1 Interface Simplified Schematic POWER-DOWN INTERFACE The quiescent and disabled currents for the AD8363 at 25°C are approximately 60 mA and 300 μA, respectively. The dual function pin, TCM2/PWDN, is connected to a temperature compensation circuit as well as a power-down circuit. Typically, when PWDN is greater than VPOS − 0.1 V, the device is fully powered down. Figure 28 shows this characteristic as a function of VPWDN. Note that because of the design of this section of the AD8363, as VTCM2 passes through a narrow range at ~4.5 V (or ~VPOS − 0.5 V), the TCM2/PWDN pin sinks approximately 750 μA. The source used to disable the AD8363 must have a sufficiently high current capability for this reason. Figure 23 shows the typical response times for various RF input levels. The output reaches within 0.1 dB of its steady-state value in approximately 35 μs; however, the refer- ence voltage is available to full accuracy in a much shorter time. This wake-up response varies depending on the input coupling and the capacitances, CHPF and CLPF. TCM2/ PWDN COMM VPOS 200Ω 200Ω 7kΩ 7kΩ VREF INTERCEPT TEMPERATURE COMPENSATION 200Ω POWER-UP CIRCUIT SHUTDOWN CIRCUIT ESD ESD ESD Figure 39. PWDN Interface Simplified Schematic VSET INTERFACE The VSET interface has a high input impedance of 72 kΩ. The voltage at VSET is converted to an internal current used to set the internal VGA gain. The VGA attenuation control is approximately 19 dB/V. COMM 2.5kΩ 18kΩ VSET GAIN ADJUST 54kΩ Figure 40. VSET Interface Simplified Schematic OUTPUT INTERFACE The output driver used in the AD8363 is different from the output stage on the AD8362. The AD8363 incorporates rail-to- rail output drivers with pull-up and pull-down capabilities. The closed-loop −3 dB bandwidth of the VOUT buffer with no load is approximately 58 MHz with a single-pole roll-off of −20 dB/dec. The output noise is approximately 45 nV/√Hz at 100 kHz, which is independent of CLPF due to the architecture of the AD8363. VOUT can source and sink up to 10 mA. There is an internal load between VOUT and COMM of 2.5 kΩ. VOUT CLPF 2kΩ 500Ω 2pF ESD ESD ESD VPOS COMM Figure 41. VOUT Interface Simplified Schematic |
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