at AVDD = 5V, DVDD = 3.3V, INP = –1V to 1V,
INN = AGND, and sinc3 filter with OSR = 256 (unless otherwise noted)

Total uncalibrated output error (in %) is defined
as: (Output Code /
216) – (VIN + 1.25V) / 2.5V) ×
100, where
VIN = (VINP –
VINN) |
Figure 5-6 Total
Uncalibrated Output Error vs Input Voltage
Figure 5-8 Differential Input Resistance vs Temperature
Figure 5-10 Input
Bias Current vs High-Side Supply Voltage
Figure 5-12 Common-Mode Rejection Ratio vs Ripple Frequency
Figure 5-14 Offset Error vs High-Side Supply Voltage
Figure 5-16 Gain
Error vs High-Side Supply Voltage
Figure 5-18 Integral Nonlinearity vs Input Voltage
Figure 5-20 Total
Harmonic Distortion vs High-Side Supply Voltage
Figure 5-22 Total
Harmonic Distortion vs Input Signal Frequency
| sinc3, OSR = 1, frequency bin width =
1Hz |
Figure 5-24 Noise
Density With Both Inputs Shorted to HGND
| sinc3, OSR = 256, VIN =
2VPP |
Figure 5-26 Frequency Spectrum With 10kHz Input Signal
Figure 5-28 Supply Current vs Temperature
Figure 5-7 Single-Ended Input Resistance vs Temperature
Figure 5-9 Input
Bias Current vs Common-Mode Input Voltage
Figure 5-11 Input
Bias Current vs Temperature
Figure 5-13 Power-Supply Rejection Ratio vs Ripple Frequency
Figure 5-15 Offset Error vs Temperature
Figure 5-17 Gain
Error vs Temperature
Figure 5-19 Integral Nonlinearity vs Temperature
Figure 5-21 Total
Harmonic Distortion vs Temperature
Figure 5-23 Total
Harmonic Distortion vs Input Signal Amplitude
| sinc3, OSR = 256, VIN =
2VPP |
Figure 5-25 Frequency Spectrum With 1kHz Input Signal
Figure 5-27 Supply Current vs Supply Voltage