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AD7626 Datasheet(PDF) 16 Page - Analog Devices |
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AD7626 Datasheet(HTML) 16 Page - Analog Devices |
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16 / 28 page ![]() AD7626 Rev. A | Page 16 of . TRANSFER FUNCTIONS The AD7626 uses a 4.096 V reference. The AD7626 converts the differential voltage of the antiphase analog inputs (IN+ and IN−) into a digital output. The analog inputs, IN+ and IN−, require a 2.048 V common-mode voltage (REF/2). The 16-bit conversion result is in MSB first, twos complement format. The ideal transfer functions for the AD7626 are shown in Figure 28 and Table 7 100 ... 000 100 ... 001 100 ... 010 011 ... 101 011 ... 110 011 ... 111 ANALOG INPUT +FSR – 1.5LSB +FSR – 1LSB –FSR + 1LSB –FSR –FSR + 0.5LSB Figure 28. ADC Ideal Transfer Functions (FSR = Full-Scale Range) Table 7. Output Codes and Ideal Input Voltages Description Analog Input (IN+ − IN−) REF = 4.096 V Digital Output Code Twos Complement (Hex) FSR − 1 LSB +4.095875V 0x7FFF Midscale + 1 LSB +125 μV 0x0001 Midscale 0 V 0x0000 Midscale − 1 LSB −125 μV 0xFFFF −FSR + 1 LSB −4.095875 V 0x8001 −FSR − 4.096 V 0x8000 ANALOG INPUTS The analog inputs, IN+ and IN−, applied to the AD7626 must be 180° out of phase with each other. Figure 29 shows an equivalent circuit of the input structure of the AD7626. The two diodes provide ESD protection for the analog inputs, IN+ and IN−. Care must be taken to ensure that the analog input signal does not exceed the reference voltage by more than 0.3 V. If the analog input signal exceeds this level, the diodes become forward-biased and start conducting current. These diodes can handle a forward-biased current of 130 mA maximum. However, if the supplies of the input buffer (for example, the supplies of the ADA4899-1 in Figure 33) are different from those of the reference, the analog input signal may eventually exceed the supply rails by more than 0.3 V. In such a case (for example, an input buffer with a short circuit), the current limitation can be used to protect the part. 67 Ω 25pF VDD1 CNV IN+ OR IN– Figure 29. Equivalent Analog Input Circuit The analog input structure allows the sampling of the true differential signal between IN+ and IN−. By using these differ- ential inputs, signals common to both inputs are rejected. The AD7626 shows some degradation in THD with higher analog input frequencies. 45 50 55 60 65 70 75 1 10 100 1k 10k 100k 1M 10M INPUT COMMON-MODE FREQUENCY (Hz) Figure 30. Analog Input CMRR vs. Frequency |
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