ISL43231IR Intersil, ISL43231IR Datasheet - Page 12

IC SWITCH TRIPLE SPDT 20QFN

ISL43231IR

Manufacturer Part Number
ISL43231IR
Description
IC SWITCH TRIPLE SPDT 20QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL43231IR

Function
Switch
Circuit
3 x SPDT
On-state Resistance
50 Ohm
Voltage Supply Source
Single, Dual Supply
Voltage - Supply, Single/dual (±)
±2 V ~ 6 V, 2 V ~ 12 V
Current - Supply
7µA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
20-VFQFN Exposed Pad
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ISL43231IR
Manufacturer:
Intersil
Quantity:
218
note that the input signal range, switching times, and on-
resistance degrade at lower supply voltages. Refer to the
electrical specification tables and Typical Performance
Curves for details.
V+ and GND power the internal logic (thus setting the digital
switching point) and level shifters. The level shifters convert
the logic levels to switched V+ and V- signals to drive the
analog switch gate terminals.
Logic-Level Thresholds
V+ and GND power the internal logic stages, so V- has no
affect on logic thresholds. This switch family is TTL
compatible (0.8V and 2.4V) over a V+ supply range of 2.7V
to 10V. At 12V the V
the CMOS guaranteed high output minimum level of 4V, but
noise margin is reduced. For best results with a 12V supply,
use a logic family that provides a V
The digital input stages draw supply current whenever the
digital input voltage is not at one of the supply rails. Driving
the digital input signals from GND to V+ with a fast transition
time minimizes power dissipation.
High-Frequency Performance
In 50Ω systems, signal response is reasonably flat even past
100MHz (see Figures 18 and 19). Figures 18 and 19 also
illustrates that the frequency response is very consistent
over varying analog signal levels.
An OFF switch acts like a capacitor and passes higher
frequencies with less attenuation, resulting in signal feed
through from a switch’s input to its output. Off Isolation is the
Typical Performance Curves
400
300
200
100
FIGURE 10. ON-RESISTANCE vs SUPPLY VOLTAGE
70
60
50
40
30
20
0
2
-40°C
3
+85°C
4
IH
+25°C
level is about 3.3V. This is still below
5
6
12
V- = -5V
V- = 0V
V+ (V)
7
OH
8
greater than 4V.
+85°C
+25°C
-40°C
T
A
9
V
I
= 25°C, Unless Otherwise Specified
COM
COM
10
= 1mA
= (V+) - 1V
11
12
ISL43231
resistance to this feed through, while Crosstalk indicates the
amount of feed through from one switch to another.
Figure 20 details the high Off Isolation and Crosstalk
rejection provided by this family. At 10MHz, Off Isolation is
about 55dB in 50Ω systems, decreasing approximately 20dB
per decade as frequency increases. Higher load
impedances decrease Off Isolation and Crosstalk rejection
due to the voltage divider action of the switch OFF
impedance and the load impedance.
Leakage Considerations
Reverse ESD protection diodes are internally connected
between each analog-signal pin and both V+ and V-. One
of these diodes conducts if any analog signal exceeds V+
or V-.
Virtually all the analog leakage current comes from the ESD
diodes to V+ or V-. Although the ESD diodes on a given
signal pin are identical and therefore fairly well balanced,
they are reverse biased differently. Each is biased by either
V+ or V- and the analog signal. This means their leakages
will vary as the signal varies. The difference in the two diode
leakages to the V+ and V- pins constitutes the analog-signal-
path leakage current. All analog leakage current flows
between each pin and one of the supply terminals, not to the
other switch terminal. This is why both sides of a given
switch can show leakage currents of the same or opposite
polarity. There is no connection between the analog signal
paths and GND.
120
110
100
90
80
70
60
50
90
80
70
60
50
40
30
60
50
40
30
20
FIGURE 11. ON-RESISTANCE vs SWITCH VOLTAGE
-5
I
COM
+25°C
-40°C
-4
= 1mA
-40°C
+25°C
+85°C
-3
+85°C
-2
-1
V
COM
0
(V)
1
+85°C
+25°C
-40°C
2
V
S
=
3
±
October 28, 2010
5V
V
V
S
S
=
=
4
FN6054.3
±
±
3V
2V
5

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