ADG1606 AD [Analog Devices], ADG1606 Datasheet - Page 4

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ADG1606

Manufacturer Part Number
ADG1606
Description
Manufacturer
AD [Analog Devices]
Datasheet

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ADG1606/ADG1607
12 V SINGLE SUPPLY
V
Table 2.
Parameter
ANALOG SWITCH
LEAKAGE CURRENTS
DIGITAL INPUTS
DYNAMIC CHARACTERISTICS
POWER REQUIREMENTS
1
Guaranteed by design, not subject to production test.
DD
Analog Signal Range
On Resistance (R
On Resistance Match Between Channels (∆R
On Resistance Flatness (R
Source Off Leakage, I
Drain Off Leakage, I
Channel On Leakage, I
Input High Voltage, V
Input Low Voltage, V
Input Current, I
Digital Input Capacitance, C
Transition Time, t
t
t
Break-Before-Make Time Delay, t
Charge Injection
Off Isolation
Channel-to-Channel Crosstalk
Total Harmonic Distortion + Noise (THD + N)
−3 dB Bandwidth
C
C
C
I
V
DD
ON
OFF
S
D
D
DD
= 12 V ± 10%, V
, C
(Off)
ADG1606
ADG1606
ADG1607
ADG1606
ADG1607
ADG1606
ADG1607
ADG1606
ADG1607
(Off)
(EN)
(EN)
S
(On)
INL
ON
TRANSITION
or I
)
D
INL
S
(Off)
INH
SS
INH
(Off)
D
, I
= 0 V, GND = 0 V, unless otherwise noted.
S
FLAT(ON)
(On)
1
IN
)
BBM
ON
)
25°C
4
5
0.2
0.5
1
1.3
±0.02
±0.15
±0.05
±0.2
±0.1
±0.3
±0.003
4
143
170
108
128
90
109
40
33
−62
−62
0.04
22
38
18
240
120
263
143
0.001
300
370
−40°C to
+85°C
6.2
0.8
1.6
±0.5
±3
±3
198
136
132
Rev. 0 | Page 4 of 24
−40°C to
+125°C
0 V to V
7
0.9
1.9
±3
±25
±25
2.0
0.8
±0.1
221
142
150
15
1.0
480
600
3.3/16
DD
Unit
V
Ω typ
Ω max
Ω typ
Ω max
Ω typ
Ω max
nA typ
nA max
nA typ
nA max
nA typ
nA max
V min
V max
μA typ
μA max
pF typ
ns typ
ns max
ns typ
ns max
ns typ
ns max
ns typ
ns min
pC typ
dB typ
dB typ
% typ
MHz typ
MHz typ
pF typ
pF typ
pF typ
pF typ
pF typ
μA typ
μA max
μA typ
μA max
μA typ
μA max
V min/max
Test Conditions/Comments
V
V
V
V
V
V
V
V
V
R
V
R
V
R
V
R
V
V
R
R
R
R
V
V
V
V
V
V
Digital inputs = 0 V or V
Digital inputs = 5 V
Digital inputs = 5 V
S
DD
S
S
DD
S
S
S
IN
L
S
L
S
L
S
L
S1
S
L
L
L
L
S
S
S
S
S
DD
= V
= 50 Ω, C
= 110 Ω, 5 V p-p, f = 20 Hz to 20 kHz; see Figure 36
= 0 V to 10 V, I
= 10 V, I
= 0 V to 10 V, I
= 1 V/10 V, V
= 1 V/10 V, V
= 300 Ω, C
= 8 V; see Figure 29
= 300 Ω, C
= 8 V; see Figure 31
= 300 Ω, C
= 8 V; see Figure 31
= 300 Ω, C
= 6 V, R
= 50 Ω, C
= 50 Ω, C
= 6 V, f = 1 MHz
= 6 V, f = 1 MHz
= 6 V, f = 1 MHz
= 6 V, f = 1 MHz
= 6 V, f = 1 MHz
= V
= V
= 10.8 V, V
= 13.2 V, V
= 12 V
D
GND
S2
= 1 V or 10 V; see Figure 28
= 8 V; see Figure 30
or V
S
S
L
= 0 Ω, C
L
L
= −10 mA
= 5 pF, f = 1 MHz; see Figure 33
L
L
L
L
= 5 pF, f = 1 MHz; see Figure 35
= 5 pF; see Figure 34
DD
= 35 pF
= 35 pF
= 35 pF
= 35 pF
SS
SS
D
D
= 0 V
= 0 V
S
S
= 10 V/1 V; see Figure 27
= 10 V/1 V; see Figure 27
= −10 mA; see Figure 26
= −10 mA
L
= 1 nF; see Figure 32
DD

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