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DAC8043FSZ 数据表(PDF) 13 Page - Analog Devices |
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DAC8043FSZ 数据表(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() DAC8043 Rev. E | Page 13 of 16 Bipolar Operation (4-Quadrant) Figure 19 details a suggested circuit for bipolar, or offset binary, operation. Table 7 shows the digital input to analog output relationship. The circuit uses offset binary coding. Twos comple- ment code can be converted to offset binary by software inversion of the MSB or by the addition of an external inverter to the MSB input. Table 7. Bipolar (Offset Binary) Code Table1, 2 Digital Input Nominal Analog Output MSB LSB (VOUT as Shown in Figure 19) 1111 1111 1111 2048 2047 REF V 1000 0000 0001 2048 1 REF V 1000 0000 0000 0 0111 1111 1111 2048 1 REF V 0000 0000 0001 2048 2047 REF V 0000 0000 0000 2048 2048 REF V 1 Nominal full scale for Figure 19 circuits is given by 2048 2047 REF V FS 2 Nominal LSB magnitude for Figure 19 circuits is given by 2048 1 REF V LSB Resistors R3, R4, and R5 must be selected to match within 0.01%, and they all must be of the same (preferably metal foil) type to ensure temperature coefficient matching. Mismatching between R3 and R4 causes offset and full-scale errors, while an R5 to R4 and R3 mismatch results in full-scale error. Calibration is performed by loading the DAC register with 1000 0000 0000 and adjusting R1 until VOUT = 0 V. R1 and R2 may be omitted, adjusting the ratio of R3 to R4 to yield VOUT = 0 V. Full scale can be adjusted by loading the DAC register with 1111 1111 1111 and either adjusting the amplitude of VREF or the value of R5 until the desired VOUT is achieved. Analog/Digital Division The transfer function for the DAC8043 connected in the multiplying mode, as shown in Figure 16, Figure 17, and Figure 19, is 12 3 2 1 2 ... 2 2 2 12 3 2 1 IN O A A A A V V where AX assumes a value of 1 for an on bit and 0 for an off bit. The transfer function is modified when the DAC is connected in the feedback of an operational amplifier, as shown in Figure 18 and becomes 4 3 2 1 2 ... 2 2 2 12 3 2 1 IN O A A A A V V The previous transfer function is the division of an analog voltage (VREF) by a digital word. The amplifier goes to the rails with all bits off because division by zero is infinity. With all bits on the gain is 1 (±1 LSB). The gain becomes 4096 with the LSB, Bit 12, on. DAC8043 RFB VDD 5V LD SRI CLK VREF IOUT GND DIGITAL INPUT VIN OP42 2 3 6 VOUT Figure 18. Analog/Digital Divider VOUT CONTROL INPUTS SERIAL DATA INPUT ANALOG COMMON VIN R2 50Ω R3 10kΩ 5V R4 20kΩ R5 20kΩ R1 100Ω C1 10.33pF 1/2 OP200 A2 DAC8043 RFB VDD VREF IOUT GND CONTROL BITS SRI 1/2 OP200 A1 Figure 19. Bipolar Operation (4-Quadrant, Offset Binary) |
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