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AD9761-EB Folha de dados(PDF) 12 Page - Analog Devices |
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AD9761-EB Folha de dados(HTML) 12 Page - Analog Devices |
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12 / 23 page ![]() AD9761 –12– REV. A 50pF CURRENT SOURCE ARRAY +1.2V REF REFIO FSADJ REFLO COMP2 AVDD IREF = VREF/RSET AVDD RSET EXT. VREF AVDD 0.1 F AD9761 + – Figure 25. External Reference Configuration REFERENCE CONTROL AMPLIFIER The AD9761 also contains an internal control amplifier which is used to simultaneously regulate both DAC’s full-scale output current, IOUTFS. Since the I and Q IOUTFS are derived from the same voltage reference and control circuitry, excellent gain matching is ensured. The control amplifier is configured as a V-I converter as shown in Figure 25 such that its current out- put, IREF, is determined by the ratio of the VREFIO and an exter- nal resistor, RSET, as stated in Equation (4). IREF is copied over to the segmented current sources with the proper scaling factor to set IOUTFS as stated in Equation (3). The control amplifier allows a wide (10:1) adjustment span of IOUTFS over a 1 mA to 10 mA range by setting IREF between 62.5 µA and 625 µA. The wide adjustment span of I OUTFS pro- vides several application benefits. The first benefit relates di- rectly to the power dissipation of the AD9761’s analog supply, AVDD, which is proportional to IOUTFS (refer to the POWER DISSIPATION section). The second benefit relates to the 20 dB adjustment span which may be useful for system gain control purposes. Optimum noise and dynamic performance for the AD9761 is obtained with a 0.1 µF external capacitor installed between COMP2 and AVDD. The bandwidth of the reference control amplifier is limited to approximately 5 kHz with a 0.1 µF ca- pacitor installed. Since the –3 dB bandwidth corresponds to the dominant pole and hence its dominant time constant, the set- tling time of the control amplifier to a stepped reference input response can be easily determined. Note, the output of the control amplifier, COMP2, is internally compensated via a 50 pF capacitor thus ensuring its stability if no external capaci- tor is added. Depending on the requirements of the application, IREF can be adjusted by varying either RSET, or in the external reference mode, by varying the REFIO voltage. IREF can be varied for a fixed RSET by disabling the internal reference and varying the voltage of REFIO over its compliance range of 1.25 V to 0.10 V. REFIO can be driven by a single-supply amplifier or DAC thus allowing IREF to be varied for a fixed RSET. Since the input im- pedance of REFIO is approximately 1 M Ω, a simple, low cost R-2R ladder DAC configured in the voltage mode topology may be used to control the gain. This circuit is shown in Figure 26 using the AD7524 and an external 1.2 V reference, the AD1580. ANALOG OUTPUTS As previously stated, both the I and Q DACs produce two complementary current outputs which may be configured for single-end or differential operation. IIOUTA and IIOUTB can be converted into complementary single-ended voltage outputs, VIOUTA and VIOUTB, via a load resistor, RLOAD, as described in the DAC TRANSFER SECTION by Equations 5 through 8. The differential voltage, VIDIFF, existing between VIOUTA and VIOUTB can also be converted to a single-ended voltage via a transformer or differential amplifier configuration. Figure 27 shows an equivalent circuit of the AD9761’s I (or Q) DAC output. It consists of a parallel array of PMOS current sources in which each current source is switched to either IOUTA or IOUTB via a differential PMOS switch. As a result, the equivalent output impedance of IOUTA and IOUTB re- mains quite high (i.e., >100 k Ω and 5 pF). AD9761 AVDD RLOAD RLOAD IOUTA IOUTB Figure 27. Equivalent Circuit of the AD9761 DAC Output IOUTA and IOUTB have a negative and positive voltage com- pliance range which must be adhered to achieve optimum per- formance. The negative output compliance range of –1 V is set by the breakdown limits of the CMOS process. Operation be- yond this maximum limit may result in a breakdown of the output stage. 50pF CURRENT SOURCE ARRAY +1.2V REF REFIO FSADJ REFLO COMP2 AVDD AVDD AD1580 1.2V OPTIONAL BANDLIMITING CAPACITOR IREF = VREF/RSET AVDD RSET 0.1V TO 1.2V RFB VDD OUT1 OUT2 AGND VREF AD7524 DB7–DB0 + – AD9761 Figure 26. Single-Supply Gain Control Circuit |
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