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DAC7573IPW датащи(PDF) 28 Page - Texas Instruments |
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DAC7573IPW датащи(HTML) 28 Page - Texas Instruments |
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28 / 30 page ![]() www.ti.com REF02 15 V 5 V 1.6 mA VDD SCL SDA I2C Interface VOUT = 0 V to 5 V DAC7573 DAC7573 SLAS398 – SEPTEMBER 2003 APPLICATION INFORMATION (continued) USING REF02 AS A POWER SUPPLY FOR DAC7573 Due to the extremely low supply current required by the DAC7573, a possible configuration is to use a REF02 +5 V precision voltage reference to supply the required voltage to the DAC7573’s supply input as well as the reference input, as shown in Figure 42. This is especially useful if the power supply is quite noisy or if the system supply voltages are at some value other than 5 V. The REF02 outputs a steady supply voltage for the DAC7573. If the REF02 is used, the current it needs to supply to the DAC7573 is 600 µA typical and 900 µA max for VDD = 5 V. When a DAC output is loaded, the REF02 also needs to supply the current to the load. The total typical current required (with a 5-k Ω load on a single DAC output) is: 600 µA + (5 V / 5 k Ω) = 1.6 mA The load regulation of the REF02 is typically 0.005%/mA, which results in an error of 400 µV for 1.6 mA of current drawn from it. This corresponds to a 0.33 LSB error for a 0 V to 5 V output range. Figure 42. REF02 Power Supply LAYOUT A precision analog component requires careful layout, adequate bypassing, and clean, well-regulated power supplies. The power applied to VDD should be well-regulated and low noise. Switching power supplies and dc/dc converters often have high-frequency glitches or spikes riding on the output voltage. In addition, digital components can create similar high-frequency spikes as their internal logic switches states. This noise can easily couple into the DAC output voltage through various paths between the power connections and analog output. As with the GND connection, VDD should be connected to a positive power-supply plane or trace that is separate from the connection for digital logic until they are connected at the power-entry point. In addition, a 1 µF to 10 µF capacitor in parallel with a 0.1 µF bypass capacitor is strongly recommended. In some situations, additional bypassing may be required, such as a 100 µF electrolytic capacitor or even a Pi filter made up of inductors and capacitors—all designed to essentially low-pass filter the –5 V supply, removing the high-frequency noise. 28 |
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