
PRELIMINARY TECHNICAL DATA
ADG3247–SPECIFICATIONS
1
(V
= 2.3 V to 3.6 V, GND = 0 V, all specifications T
MIN
to T
MAX
, unless otherwise
REV. PrD
–2–
noted.)
B Version
Min
Parameter
Symbol
Conditions
Typ
2
Max
Unit
DC ELECTRICAL CHARACTERISTICS
Input High Voltage
V
INH
V
INH
V
INL
V
INL
I
I
I
OZ
I
OL
V
P
V
CC
= 2.7 V to 3.6 V
V
CC
= 2.3 V to 2.7 V
V
CC
= 2.7 V to 3.6 V
V
CC
= 2.3 V to 2.7 V
2.0
1.7
V
V
V
V
μ
A
μ
A
μ
A
V
V
V
Input Low Voltage
0.8
0.7
±
1
±
1
±
1
2.9
2.1
2.1
Input Leakage Current
OFF State Leakage Current
ON State Leakage Current
Max Pass Voltage
±
0.01
±
0.01
±
0.01
2.5
1.8
1.8
0 A, B V
CC
0 A, B V
CC
V
A
/V
B
= V
CC
=
SEL
= 3.3 V, I
O
= –5
μ
A
V
A
/V
B
= V
CC
=
SEL
= 2.5 V, I
O
= –5
μ
A
V
A
/V
B
= V
CC
= 3.3 V,
SEL
= 0 V, I
O
= –5
μ
A
2.0
1.5
1.5
CAPACITANCE
3
A Port Off Capacitance
B Port Off Capacitance
A, B Port On Capacitance
Control Input Capacitance
C
A
OFF
C
B
OFF
C
A
, C
B
ON
f = 1 MHz
C
IN
f = 1 MHz
f = 1 MHz
5
5
10
6
pF
pF
pF
pF
f = 1 MHz
SWITCHING CHARACTERISTICS
3
Propagation Delay A to B or B to A,
t
PD4
Propagation Delay Matching
5
Bus Enable Time
BEx
to A or B
6
Bus Disable Time
BEx
to A or B
6
Bus Enable Time
BEx
to A or B
6
Bus Disable Time
BEx
to A or B
6
Bus Enable Time
BEx
to A or B
6
Bus Disable Time
BEx
to A or B
6
Max Data Rate
Channel Jitter
Operating Frequency—Bus Enable
t
PHL,
t
PLH
C
L
= 50 pF, V
CC
=
SEL
=
3 V
0.225
22.5
4.8
4.8
3.3
2.9
3
2.6
ns
ps
ns
ns
ns
ns
ns
ns
Gbps
ps p-p
MHz
t
PZH
, t
PZL
t
PHZ
, t
PLZ
t
PZH
, t
PZL
t
PHZ
, t
PLZ
t
PZH
, t
PZL
t
PHZ
, t
PLZ
V
CC
= 3.0 V to 3.6 V;
SEL
= V
CC
V
CC
= 3.0 V to 3.6 V;
SEL
= V
CC
V
CC
= 3.0 V to 3.6 V;
SEL
= 0 V
V
CC
= 3.0 V to 3.6 V;
SEL
= 0 V
V
CC
= 2.3 V to 2.7 V;
SEL
= V
CC
V
CC
= 2.3 V to 2.7 V;
SEL
= V
CC
V
CC
=
SEL
= 3.3 V; V
A
/V
B
= 2 V
V
CC
=
SEL
= 3.3 V; V
A
/V
B
= 2 V
1
1
0.5
0.5
0.5
0.5
3.2
3.2
2.2
1.7
2.2
1.75
1.244
50
f
BEx
10
DIGITAL SWITCH
On Resistance
R
ON
V
CC
= 3 V,
SEL
= V
CC
, V
A
= 0 V, I
BA
= 8 mA
V
CC
= 3 V,
SEL
= V
CC
, V
A
= 1.7 V, I
BA
= 8 mA
V
CC
= 2.3 V,
SEL
= V
CC
, V
A
= 0 V, I
BA
= 8 mA
V
CC
= 2.3 V,
SEL
= V
CC
, V
A
= 1 V, I
BA
= 8 mA
V
CC
= 3 V,
SEL
= 0 V, V
A
= 0 V, I
BA
= 8 mA
V
CC
= 3 V,
SEL
= 0 V, V
A
= 1 V, I
BA
= 8 mA
V
CC
= 3 V,
SEL
= V
CC
, V
A
= 0 V, I
BA
= 8 mA
V
CC
= 3 V,
SEL
= V
CC
, V
A
= 1 V, I
BA
= 8 mA
4.5
15
5
11
5
14
0.45
0.65
8
28
9
18
8
On Resistance Matching
R
ON
POWER REQUIREMENTS
V
CC
Quiescent Power Supply Current
2.3
3.6
1
1.2
V
μ
A
mA
I
CC
I
CC
I
CC
Digital Inputs = 0 V or V
CC
;
SEL
= V
CC
Digital Inputs = 0 V or V
CC
;
SEL
= 0 V
V
CC
= 3.6 V,
BE
1
= 3.0 V;
BE
2
= V
CC
or GND;
SEL
= V
CC
0.001
0.65
Increase in I
CC
per Input
7
85
μ
A
NOTES
1
Temperature range is as follows: B Version: –40
°
C to +85
°
C.
2
Typical values are at 25
°
C, unless otherwise stated.
3
Guaranteed by design, not subject to production test.
4
The digital switch contributes no propagation delay other than the RC delay of the typical R
of the switch and the load capacitance when driven by an ideal voltage
source. Since the time constant is much smaller than the rise/fall times of typical driving signals, it adds very little propagation delay to the system. Propagation delay
of the digital switch when used in a system is determined by the driving circuit on the driving side of the switch and its interaction with the load on the driven side.
5
Propagation delay matching between channels is calculated from the on resistance matching and load capacitance of 50 pF.
6
See Timing Measurement Information.
7
This current applies to the control pins (
BEx
) only. The A and B ports contribute no significant ac or dc currents as they transition.
Specifications subject to change without notice.