AD7366-5/AD7367-5
Parameter
REFERENCE INPUT/OUTPUT
Reference Output Voltage3
Long-Term Stability
Output Voltage Hysteresis1
Reference Input Voltage Range
DC Leakage Current
Input Capacitance
DCAPA, DCAPB Output Impedance
Reference Temperature Coefficient
VREF Noise
LOGIC INPUTS
Input High Voltage, VINH
Input Low Voltage, VINL
Input Current, IIN
Input Capacitance, CIN2
LOGIC OUTPUTS
Output High Voltage, VOH
Output Low Voltage, VOL
Floating State Leakage Current
Floating State Output Capacitance2
CONVERSION RATE
Conversion Time
Track/Hold Acquisition Time2
Throughput Rate
POWER REQUIREMENTS
VCC
VDD
VSS
VDRIVE
Normal Mode (Static)
IDD
ISS
ICC
Normal Mode (Operational)
IDD
ISS
ICC
Shutdown Mode
IDD
ISS
ICC
Power Dissipation
Normal Mode (Operational)
Min
Typ Max
2.494
2.5
2.5
150
50
±0.01
25
17
7
6
20
2.506
3.0
±1
25
0.7 × VDRIVE
±0.01
6
+0.8
±1
VDRIVE − 0.2
0.4
±0.01 ±1
8
1.25
140
500
4.75
5.25
5
16.5
−16.5
−5
2.7
5.25
370 550
40 60
1.5 2.25
1
1.2
0.7 0.82
3.4 4
0.01 1
0.01 1
0.3 3
46 54.5
Shutdown Mode
1 See the Terminology section.
2 Sample tested during initial release to ensure compliance.
3 Refers to Pin DCAPA or Pin DCAPB specified for 25oC.
15
20
1.9 48.75
Unit Test Conditions/Comments
V
ppm
ppm
V
μA
pF
pF
Ω
ppm/°C
μV rms
±0.2% maximum @ 25°C
For 1000 hours
External reference applied to Pin DCAPA/Pin DCAPB
±5 V and ±10 V analog input range
0 V to 10 V analog input range
Bandwidth = 3 kHz
V
V
μA
VIN = 0 V or VDRIVE
pF
V
V
μA
pF
μs
ns
kSPS
V
V
V
V
Full-scale step input
For 2.7 V ≤ VDRIVE ≤ 5.25 V, fSCLK = 20 MHz
Digital inputs = 0 V or VDRIVE
See Table 7
See Table 7
See Table 7
μA
VDD = 16.5 V
μA
VSS = −16.5 V
mA
VCC = 5.5 V
fS = 500 kSPS
mA
VDD = 16.5 V
mA
VSS = −16.5 V
mA
VCC = 5.25 V, internal reference enabled
μA
VDD = 16.5 V
μA
VSS = −16.5 V
μA
VCC = 5.25 V
mW
VDD = +16.5 V, VSS = −16.5 V, VCC = +5.25 V,
fS = 500 kSPS
mW
±10 V input range, fS = 100 kSPS
mW
±5 V and 0 V to +10 V input range, fS = 100 kSPS
μW
VDD = +16.5 V, VSS = −16.5 V, VCC = +5.25 V
Rev. B | Page 4 of 28