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MCP48FVB08 数据表(PDF) 68 Page - Microchip Technology |
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MCP48FVB08 数据表(HTML) 68 Page - Microchip Technology |
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68 / 112 page ![]() MCP48FXBX4/8 DS20006362A-page 68 2020 Microchip Technology Inc. 5.4 Output Buffer/VOUT Operation The output driver buffers the Wiper Voltage (VW) of the resistor ladder. The DAC output is buffered with a low-power and pre- cision output amplifier (op amp). This amplifier provides a rail-to-rail output with low offset voltage and low noise. The amplifier’s output can drive the resistive and high capacitive loads without oscillation. The amplifier provides a maximum load current, which is enough for most programmable voltage reference applications. See Section 1.0 “Electrical Characteristics” for the specifications of the output amplifier. Figure 5-5 shows the block diagram of the output driver circuit. The user can select the output gain of the output amplifier. The gain options are: a) Gain of 1, when either the VDD, External VREF or Band Gap mode are used. In case of the Band Gap mode, the effective gain is 2; see Section 5.3 “Internal Band Gap”. b) Gain of 2, when the External VREF or Internal Band Gap modes are used. In case of the Band Gap mode, the effective gain is 4; see Section 5.3 “Internal Band Gap”. FIGURE 5-5: Output Driver Block Diagram. 5.4.1 PROGRAMMABLE GAIN The amplifier’s gain is controlled by the Gain (G) Configuration bit (see Register 4-5) and the VRL reference selection. The volatile Gain bit value can be modified by: • POR events • BOR events • SPI WRITE commands 5.4.2 OUTPUT VOLTAGE The volatile DAC register values, along with the device’s Configuration bits, control the analog VOUT voltage. The volatile DAC register’s value is unsigned binary. The formula for the output voltage is given in Equation 5-2. Table 5-5 shows examples of volatile DAC register values and the corresponding theoretical VOUT voltage for the MCP48FXBX4/8 devices. EQUATION 5-2: CALCULATING OUTPUT VOLTAGE (VOUT) The following events update the DAC register value, and therefore, the analog Voltage Output (VOUT): •POR •BOR • WRITE command The VOUT voltage starts driving to the new value after the event has occurred. 5.4.3 STEP VOLTAGE (VS) The step voltage depends on the device resolution and the calculated output voltage range. One LSb is defined as the ideal voltage difference between two successive codes. The step voltage can be easily cal- culated by using Equation 5-3 (DAC register value is equal to 1). Theoretical step voltages are shown in Table 5-2 for several VREF voltages. EQUATION 5-3: VS CALCULATION Note: The load resistance must be kept higher than 5 k for the stable and expected analog output (to meet electrical specifications). VW Gain (1x or 2x) VOUT PDnB:PDnA VDD PDnB:PDnA + – Note: When Gain = 2 (VRL= VREF) and if VREF > VDD/2, the VOUT voltage will be limited to VDD. So if VREF = VDD, then the VOUT voltage will not change for volatile DAC register values midscale and greater, since the op amp is at full-scale output. Where: # Resistors in R-Ladder = 4096 (MCP48FXB2X) 1024 (MCP48FXB1X) 256 (MCP48FXB0X) VOUT VRL DAC Register Value # Resistor in Resistor Ladder ----------------------------------------------------------------------Gain = Where: # Resistors in R-Ladder = 4096 (12-bit) 1024 (10-bit) 256 (8-bit) VS VRL # Resistor in Resistor Ladder ----------------------------------------------------------------------Gain = |
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