Datasheet
DAC8562, DAC8563
DAC8162, DAC8163
DAC7562, DAC7563
SLAS719D –AUGUST 2010–REVISED AUGUST 2012
www.ti.com
TABLES OF GRAPHS
Table 3. Typical Characteristics: Internal Reference Performance
POWER-SUPPLY
MEASUREMENT FIGURE NUMBER
VOLTAGE
Internal Reference Voltage vs Temperature Figure 2
Internal Reference Voltage Temperature Drift Histogram Figure 3
Internal Reference Voltage vs Load Current 5.5 V Figure 4
Internal Reference Voltage vs Time Figure 5
Internal Reference Noise Density vs Frequency Figure 6
Internal Reference Voltage vs Supply Voltage 2.7 V – 5.5 V Figure 7
Table 4. Typical Characteristics: DAC Static Performance
POWER-SUPPLY
MEASUREMENT FIGURE NUMBER
VOLTAGE
FULL-SCALE, GAIN, OFFSET AND ZERO-CODE ERRORS
Full-Scale Error vs Temperature Figure 16
Gain Error vs Temperature Figure 17
5.5 V
Offset Error vs Temperature Figure 18
Zero-Code Error vs Temperature Figure 19
Full-Scale Error vs Temperature Figure 63
Gain Error vs Temperature Figure 64
2.7 V
Offset Error vs Temperature Figure 65
Zero-Code Error vs Temperature Figure 66
LOAD REGULATION
5.5 V Figure 30
DAC Output Voltage vs Load Current
2.7 V Figure 74
DIFFERENTIAL NONLINEARITY ERROR
T = –40°C Figure 9
Differential Linearity Error vs Digital Input Code T = 25°C Figure 11
5.5 V
T = 125°C Figure 13
Differential Linearity Error vs Temperature Figure 15
T = –40°C Figure 56
Differential Linearity Error vs Digital Input Code T = 25°C Figure 58
2.7 V
T = 125°C Figure 60
Differential Linearity Error vs Temperature Figure 62
INTEGRAL NONLINEARITY ERROR (RELATIVE ACCURACY)
T = –40°C Figure 8
Linearity Error vs Digital Input Code T = 25°C Figure 10
5.5 V
T = 125°C Figure 12
Linearity Error vs Temperature Figure 14
T = –40°C Figure 55
Linearity Error vs Digital Input Code T = 25°C Figure 57
2.7 V
T = 125°C Figure 59
Linearity Error vs Temperature Figure 61
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