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DAC8814IBDBR Datasheet(PDF) 23 Page - Texas Instruments |
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DAC8814IBDBR Datasheet(HTML) 23 Page - Texas Instruments |
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23 / 31 page ![]() www.ti.com V OUT + *VREF D 65536 (1) RRR 2R 2R 2R R 5 kW S2 S1 From Other DACS AGND VCC DGND VREFX VDD RFBX IOUTX AGNDF AGNDX Digital Interface Connections Omitted For Clarity. Switches S1 and S2 are Closed, VDD Most be Powered. DAC8814 SBAS338 – JANUARY 2005 The DAC is designed to operate with both negative or positive reference voltages. The VDD power pin is only used by the logic to drive the DAC switches on and off. Note that a matching switch is used in series with the internal 5 k Ω feedback resistor. If users are attempting to measure the value of R FB, power must be applied to VDD in order to achieve continuity. An additional VSS bias pin is used to guard the substrate during high temperature applications to minimize zero-scale leakage currents that double every 10 °C. The DAC output voltage is determined by VREF and the digital data (D) according to Equation 1: Note that the output polarity is opposite of the VREF polarity for dc reference voltages. Figure 54. Typical Equivalent DAC Channel The DAC is also designed to accommodate ac reference input signals. The DAC8814 accommodates input reference voltages in the range of -12 V to +12 V. The reference voltage inputs exhibit a constant nominal input resistance of 5 k Ω, ± 30%. On the other hand, the DAC outputs I OUTA, B, C, D are code-dependent and produce various output resistances and capacitances. The choice of external amplifier should take into account the variation in impedance generated by the DAC8814 on the amplifiers' inverting input node. The feedback resistance, in parallel with the DAC ladder resistance, dominates output voltage noise. For multiplying mode applications, an external feedback compensation capacitor (CFB) may be needed to provide a critically damped output response for step changes in reference input voltages. Figure 26 shows the gain vs frequency performance at various attenuation settings using a 23 pF external feedback capacitor connected across the IOUTX and RFBX terminals. In order to maintain good analog performance, power supply bypassing of 0.01 µF, in parallel with 1 µF, is recommended. Under these conditions, clean power supply with low ripple voltage capability should be used. Switching power supplies is usually not suitable for this application due to the higher ripple voltage and PSS frequency-dependent characteristics. It is best to derive the DAC8814 5-V supply from the system analog supply voltages. (Do not use the digital 5-V supply.) See Figure 55. 23 |
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