Datasheet

HD3SS3412
www.ti.com
SLAS828B FEBRUARY 2012REVISED NOVEMBER 2013
RECOMMENDED OPERATING CONDITIONS
Typical values for all parameters are at V
DD
= 3.3 V and T
A
= 25°C. (Temperature limits are specified by design)
MIN TYP MAX UNIT
V
DD
Supply voltage 3.0 3.3 3.6 V
V
IH
Input high voltage (SEL pin) 2.0 VDD V
V
IL
Input low voltage (SEL pin) –0.1 0.8 V
V
I/O_Diff
Differential voltage (differential pins) Switch I/O diff voltage 0 1.8 VPP
V
I/O_CM
Common voltage (differential pins) Switch I/O common mode voltage 0 2.0 V
T
A
Operating free-air temperature Ambient temperature 0 70
o
C
ELECTRICAL CHARACTERISTICS
Over operating free-air temperature range (unless otherwise noted)
PARAMETER CONDITIONS MIN TYP MAX UNITS
DEVICE PARAMETERS
I
IH
Input High Voltage (SEL) V
DD
= 3.6 V; V
IN
= VDD 95 µA
I
IL
Input Low Voltage (SEL) V
DD
= 3.6 V; V
IN
= GND 1 µA
V
DD
= 3.6 V; V
IN
= 0 V; V
OUT
= 2 V
130
(I
LK
On OPEN outputs) [Ports B and C]
Leakage Current (Differential
I
LK
µA
I/O pins)
V
DD
= 3.6 V, V
IN
= 2 V; V
OUT
= 0 V
4
(I
LK
On OPEN outputs) [Port A]
I
DD
Supply Current V
DD
= 3.6 V; SEL = V
DD
/GND; Outputs Floating 4.7 6 mA
C
ON
Outputs ON Capacitance V
IN
= 0 V; Outputs Open; Switch ON 1.5 pF
C
OFF
Outputs OFF Capacitance V
IN
= 0 V; Outputs Open, Switch OFF 1 pF
R
ON
Output ON resistance V
DD
= 3.3 V; V
CM
= 0.5 V to 1.5 V ; I
O
= 8 mA 5 8 Ω
On resistance match between
V
DD
= 3.3 V ; –0.35 V V
IN
1.2 V; I
O
= –8 mA 2 Ω
channels
ΔR
ON
On resistance match between
V
DD
= 3.3 V; –0.35 V V
IN
1.2 V; I
O
= –8 mA 0.7 Ω
pairs of the same channel
On resistance flatness
R
FLAT_ON
V
DD
= 3.3 V; 0.35 V V
IN
1.2 V 1.15 Ω
(R
ON(MAX)
R
ON(MAIN)
DEVICE PARAMETERS (Continued) R
SC
and R
LOAD
= 50Ω and C
L
= 50 pF unless otherwise noted
t
PD
Switch propagation delay Rsc and R
LOAD
= 50 Ω 85 ps
SEL-to-switch T
ON
70 250
Rsc and R
LOAD
= 50 Ω ns
SEL-to-switch T
OFF
70 250
Inter-pair output skew (CH-
T
SKEW_Inter
20 ps
CH)
Rsc and R
LOAD
= 50 Ω
T
SKEW_Intra
Intra-pair output skew (bit-bit) 8 ps
f = 0.3 MHz –28
Differential return loss (VCM =
0 V)
R
L
f = 2500 MHz –12 dB
Also see typical plots section
f = 4000 MHz –11
f = 0.3 MHz –90
Differential Crosstalk(VCM = 0
V)
X
TALK
f = 2500 MHz –39 dB
Also see typical plots section
f = 4000 MHz –35
f = 0.3 MHz –75
Differential Off-Isolation(VCM
= 0 V)
O
IRR
f = 2500 MHz –22 dB
Also see typical plots section
f = 4000 MHz –19
f = 0.3 MHz –0.5
Differential Insertion Loss
(VCM = 0 V)
I
L
f = 2500 MHz –1.1 dB
Also see typical plots section
f = 4000 MHz –1.5
BW Bandwidth At –3 dB 8 GHz
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