ISL5829
Electrical Specifications
AV DD = DV DD = +3.3V, V REF = Internal 1.2V, IOUTFS = 20mA, T A = 25°C for All Typical Values (Continued)
T A = -40 ° C TO 85 ° C
PARAMETER
Input Logic Low Voltage with
(Note 3)
TEST CONDITIONS
MIN
-
TYP
0
MAX
1.0
UNITS
V
3.3V Supply, V IL
Sleep Input Current, I IH
Input Logic Current, I IH, IL
Clock Input Current, I IH, IL
Digital Input Capacitance, C IN
-25
-20
-10
-
-
-
-
3
+25
+20
+10
-
μ A
μ A
μ A
pF
TIMING CHARACTERISTICS
Data Setup Time, t SU
Data Hold Time, t HLD
Propagation Delay Time, t PD
See Figure 15
See Figure 15
See Figure 15
-
-
-
1.5
1.5
1
-
-
-
ns
ns
Clock
Period
CLK Pulse Width, t PW1 , t PW2
See Figure 15 (Note 3)
2
-
-
ns
POWER SUPPLY CHARACTERISTICS
AV DD Power Supply
DV DD Power Supply
Analog Supply Current (I AVDD )
Digital Supply Current (I DVDD )
Supply Current (I AVDD ) Sleep Mode
Power Dissipation
Power Supply Rejection
(Note 8)
(Note 8)
3.3V, IOUTFS = 20mA
3.3V, IOUTFS = 2mA
3.3V (Note 5)
3.3V (Note 6)
3.3V, IOUTFS = Don’t Care
3.3V, IOUTFS = 20mA (Note 5)
3.3V, IOUTFS = 20mA (Note 6)
3.3V, IOUTFS = 2mA (Note 5)
Single Supply (Note 7)
2.7
2.7
-
-
-
-
-
-
-
-
-0.125
3.3
3.3
60
24
11
17
5
233
253
115
-
3.6
3.6
62
-
15
21
-
255
274
-
+0.125
V
V
mA
mA
mA
mA
mA
mW
mW
mW
%FSR/V
NOTES:
2. Gain Error measured as the error in the ratio between the full scale output current and the current through R SET (typically 625 μ A). Ideally the
ratio should be 32.
3. Parameter guaranteed by design or characterization and not production tested.
4. Spectral measurements made with differential transformer coupled output and no external filtering. For multitone testing, the same pattern was
used at different clock rates, producing different output frequencies but at the same ratio to the clock rate.
5. Measured with the clock at 130MSPS and the output frequency at 10MHz.
6. Measured with the clock at 200MSPS and the output frequency at 20MHz.
7. See Definition of Specifications .
8. Recommended operation is from 3.0V to 3.6V. Operation below 3.0V is possible with some degradation in spectral performance. Reduction in
analog output current may be necessary to maintain spectral performance.
9. See Typical Performance plots.
7
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