AD5241/AD5242
TYPICAL PERFORMANCE CHARACTERISTICS
1.0
VDD = +2.7V
VDD = +5.5V
VDD = ±2.7V
0.5
VDD/VSS = +2.7V/0V
0
–0.5
VDD/VSS = +5.5V/0V, ±2.7V
–1.0
0
32
64
96 128 160 192 224 256
CODE (Decimal)
Figure 8. RDNL vs. Code
1.0
VDD/VSS = +2.7V/0V
0.5
VDD = +2.7V
VDD = +5.5V
VDD = ±2.7V
0
–0.5
VDD/VSS = +5.5V/0V, ±2.7V
–1.0
0
32
64
96 128 160 192 224 256
CODE (Decimal)
Figure 9. RINL vs. Code
0.25
0.13
VDD = +2.7V
VDD = +5.5V
VDD = ±2.7V
VDD/VSS = +2.7V/0V, +5.5V/0V, ±2.7V
0
–0.13
–0.25
0
32
64
96 128 160 192 224 256
CODE (Decimal)
Figure 10. DNL vs. Code
0.50
0.25
0
–0.25
VDD/VSS = +2.7V
VDD = +2.7V
VDD = +5.5V
VDD = ±2.7V
VDD/VSS = +2.7V/0V, +5.5V/0V
–0.50
0
32
64
96 128 160 192 224 256
CODE (Decimal)
Figure 11. INL vs. Code
10k
VDD = 2.7V
TA = 25°C
1MΩ
1k
100kΩ
100
10kΩ
10
1
–40
–20
0
20
40
60
80
TEMPERATURE (°C)
Figure 12. Nominal Resistance vs. Temperature
10k
VDD = 5V
1k
VDD = 3V
100
10
VDD = 2.5V
1
0
1
2
3
4
5
INPUT LOGIC VOLTAGE (V)
Figure 13. Supply Current vs. Input Logic Voltage
Rev. C | Page 8 of 20