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MCP48FVB01 数据表(PDF) 62 Page - Microchip Technology |
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MCP48FVB01 数据表(HTML) 62 Page - Microchip Technology |
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62 / 84 page ![]() MCP48FVBXX DS20005466A-page 62 2015 Microchip Technology Inc. 8.2 Application Examples The MCP48FVBXX devices are rail-to-rail output DACs designed to operate with a VDD range of 2.7V to 5.5V. The internal output operational amplifier is robust enough to drive common, small-signal loads directly, thus eliminating the cost and size of external buffers for most applications. The user can use gain of 1 or 2 of the output operational amplifier by setting the Configuration register bits. Also, the user can use internal VDD as the reference or use an external reference. Various user options and easy-to-use features make the devices suitable for various modern DAC applications. Application examples include: • Decreasing Output Step Size • Building a “Window” DAC • Bipolar Operation • Selectable Gain and Offset Bipolar Voltage Output • Designing a Double-Precision DAC • Building Programmable Current Source • Serial Interface Communication Times • Power Supply Considerations • Layout Considerations 8.2.1 DC SET POINT OR CALIBRATION A common application for the devices is a digitally-controlled set point and/or calibration of variable parameters, such as sensor offset or slope. For example, the MCP48FVB2X provides 4096 output steps. If voltage reference is 4.096V (where Gx = ‘0’), the LSb size is 1 mV. If a smaller output step size is desired, a lower external voltage reference is needed. 8.2.1.1 Decreasing Output Step Size If the application is calibrating the bias voltage of a diode or transistor, a bias voltage range of 0.8V may be desired with about 200 µV resolution per step. Two common methods to achieve small step size are: • Using lower V REF pin voltage: Using an external voltage reference (VREF) is an option if the external reference is available with the desired output voltage range. However, occasionally, when using a low-voltage reference voltage, the noise floor causes a SNR error that is intolerable. • Using a voltage divider on the DAC’s output: Using a voltage divider provides some advantages when external voltage reference needs to be very low or when the desired output voltage is not available. In this case, a larger value reference voltage is used while two resistors scale the output range down to the precise desired level. Figure 8-2 illustrates this concept. A bypass capacitor on the output of the voltage divider plays a critical function in attenuating the output noise of the DAC and the induced noise from the environment. FIGURE 8-2: Example Circuit Of Set-Point or Threshold Calibration. EQUATION 8-1: VOUT AND VTRIP CALCULATIONS R1 VCC+ VCC– VOUT SPI 4-wire VREF Optional MCP48FVBXX VDD VO R2 C1 RSENSE Comp. VDD VTRIP + - V trip V OUT R 2 R 1 R 2 + -------------------- = VOUT = VREF • G • DAC Register Value 2N |
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