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MCP47FVB01 数据表(PDF) 66 Page - Microchip Technology |
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MCP47FVB01 数据表(HTML) 66 Page - Microchip Technology |
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66 / 92 page ![]() MCP47FVBXX DS20005405A-page 66 2015 Microchip Technology Inc. 8.6 Designing a Double-Precision DAC Figure 8-7 shows an example design of a single-supply voltage output capable of up to 24-bit resolution. This requires two 12-bit DACs. This design is simply a voltage divider with a buffered output. As an example, if a similar application to the one developed in Section 8.5.1 “Bipolar DAC Example” required a resolution of 1 µV instead of 1 mV, and a range of 0V to 4.1V, then 12-bit resolution would not be adequate. FIGURE 8-7: Simple Double Precision DAC using MCP47FVBX2. EQUATION 8-8: VOUT CALCULATION 8.7 Building Programmable Current Source Figure 8-8 shows an example of building a programmable current source using a voltage follower. The current sensor resistor is used to convert the DAC voltage output into a digitally-selectable current source. The smaller RSENSE is, the less power dissipated across it. However, this also reduces the resolution that the current can be controlled. FIGURE 8-8: Digitally-Controlled Current Source. Step 1: Calculate the resolution needed: 4.1V/1 µV = 4.1 x 106. Since 222 =4.2 x 106, 22-bit resolution is desired. Since DNL = ±1.0 LSb, this design can be attempted with the 12-bit DAC. Step 2: Since DAC1’s VOUT1 has a resolution of 1 mV, its output only needs to be “pulled” 1/1000 to meet the 1 µV target. Dividing VOUT0 by 1000 would allow the application to compensate for DAC1’s DNL error. Step 3: If R2 is 100, then R1 needs to be 100 k. Step 4: The resulting transfer function is shown in the equation of Example 8-8. R1 VCC+ VCC– VOUT I2C™ 2-wire VREF Optional MCP47FVBX2 VDD I2C 2-wire VREF Optional MCP47FVBX2 VDD R2 0.1 µF VOUT0 VOUT1 (DAC0) (DAC1) VOUT = Gx = Selected Op Amp Gain VOUT0 * R2 + VOUT1 * R1 R1 + R2 VOUT0 = (VREF G DAC0 register Value)/4096 VOUT1 = (VREF G DAC1 register Value)/4096 Where: RSENSE Ib Load IL VCC+ VCC– VOUT I L V OUT R se ns e --------------- 1 + ------------- = I b I L ---- = Common-Emitter Current Gain where VDD I2C™ 2-wire VREF Optional MCP47FVBXX VDD (or VREF) |
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