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MCP4822-E/MS датащи(PDF) 15 Page - Microchip Technology |
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MCP4822-E/MS датащи(HTML) 15 Page - Microchip Technology |
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15 / 36 page ![]() © 2005 Microchip Technology Inc. DS21953A-page 15 MCP4821/MCP4822 4.0 GENERAL OVERVIEW The MCP482X devices are voltage-output string DACs. These devices include rail-to-rail output amplifiers, internal voltage reference, shutdown and reset-man- agement circuitry. Serial communication conforms to the SPI protocol. The MCP482X devices operate from 2.7V to 5.5V supplies. The coding of these devices is straight binary, with the ideal output voltage given by Equation 4-1, where G is the selected gain (1x or 2x), DN represents the digital input value and n represents the number of bits of resolution (n = 12). EQUATION 4-1: LSb SIZE 1 LSb is the ideal voltage difference between two successive codes. Table 4-1 illustrates how to calculate LSb. 4.0.1 INL ACCURACY INL error for these devices is the maximum deviation between an actual code transition point and its corre- sponding ideal transition point once offset and gain errors have been removed. These endpoints are from 0x000 to 0xFFF. Refer to Figure 4-1. Positive INL represents transition(s) later than ideal. Negative INL represents transition(s) earlier than ideal. FIGURE 4-1: INL Accuracy. 4.0.2 DNL ACCURACY DNL error is the measure of variations in code widths from the ideal code width. A DNL error of zero would imply that every code is exactly 1 LSb wide. FIGURE 4-2: DNL Accuracy. 4.0.3 OFFSET ERROR Offset error is the deviation from zero voltage output when the digital input code is zero. 4.0.4 GAIN ERROR Gain error is the deviation from the ideal output, VREF – 1 LSb, excluding the effects of offset error. TABLE 4-1: LSb SIZES Device Gain LSb Size MCP482X 1x 2.048V/4096 MCP482X 2x 4.096V/4096 V OUT 2.048V G D N ⋅⋅ 2 n -------------------------------------- = 111 110 101 100 011 010 001 000 Digital Input Code Actual Transfer Function INL < 0 Ideal Transfer Function INL < 0 DAC Output 111 110 101 100 011 010 001 000 Digital Input Code Actual Transfer Function Ideal Transfer Function Narrow Code < 1 LSb DAC Output Wide Code > 1 LSb |
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