CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
NOTES:
2. Signals on NO, NC, COM, or IN exceeding V+ or V- are clamped by internal diodes. Limit forward diode current to maximum current ratings.
3.
JA
is measured with the component mounted on a low effective thermal conductivity test board in free air. See Tech Brief TB379 for details.
Electrical Specifications -
5V
Supply
Test Conditions: V
SUPPLY
=
4.5V
to
5.5V,
V
INH
= 3.5V, V
INL
= 1.5V (Note 4),
Unless Otherwise Specified
TEST CONDITIONS
TEMP
(
o
C)
Full
(NOTE 5)
MIN
V-
-
-
-
-
-1
-20
-1
-20
-2
-40
(V+) - 1.5
V-
-0.5
-
-
-
-
-
-
-
-
-
TYP
-
13
-
3
4
0.01
-
0.01
-
0.01
-
-
-
-
40
-
30
-
10
>86
9
9
22
(NOTE 5)
MAX
UNITS
V+
20
25
4
6
1
20
1
20
2
40
V+
(V+) - 3.5
0.5
100
150
75
125
20
-
-
-
-
V
nA
nA
nA
nA
nA
nA
V
V
A
ns
ns
ns
ns
pC
dB
pF
pF
pF
PARAMETER
ANALOG SWITCH CHARACTERISTICS
Analog Signal Range, V
ANALOG
ON Resistance, R
ON
R
ON
Flatness, R
FLAT(ON)
NO or NC OFF Leakage Current,
I
NO(OFF)
or I
NC(OFF)
COM OFF Leakage Current,
I
COM(OFF)
COM ON Leakage Current,
I
COM(ON)
Input Voltage High, V
INH
Input Voltage Low, V
INL
Input Current, I
INH
, I
INL
DYNAMIC CHARACTERISTICS
Turn-ON Time, t
ON
Turn-OFF Time, t
OFF
Charge Injection, Q
OFF Isolation
COM OFF Capacitance,
C
COM(OFF)
COM ON Capacitance, C
COM(ON)
V
S
=
5V,
I
COM
= 1.0mA, V
COM
= 3V
(See Figure 4)
V
S
=
5V,
I
COM
= 1.0mA, V
COM
= -3V, 0V, 3V
V
S
=
5.5V,
V
COM
=
4.5V,
V
NO
or V
NC
= +4.5V
(Note 6)
V
S
=
5.5V,
V
COM
=
4.5V,
V
NO
or V
NC
= +4.5V
(Note 6)
V
S
=
5.5V,
V
COM
= V
NO
or V
NC
=
4.5V
(Note 6)
25
Full
25
Full
25
Full
25
Full
25
Full
Full
Full
DIGITAL INPUT CHARACTERISTICS
V
S
=
5.5V,
V
IN
= 0V or V+
V
NO
or V
NC
= 3V, R
L
= 300, C
L
= 35pF,
V
IN
= 0 to V+ (See Figure 1)
V
NO
or V
NC
= 3V, R
L
= 300, C
L
= 35pF,
V
IN
= 0 to V+ (See Figure 1)
C
L
= 1.0nF, V
G
= 0V, R
G
= 0 (See Figure 2)
R
L
= 50, C
L
= 15pF, f = 100kHz (See Figure 3)
f = 1MHz, V
NO
or V
NC
= V
COM
= 0V (See Figure 5)
f = 1MHz, V
NO
or V
NC
= V
COM
= 0V (See Figure 5)
Full
25
Full
25
Full
25
25
25
25
25
NO or NC OFF Capacitance, C
OFF
f = 1MHz, V
NO
or V
NC
= V
COM
= 0V (See Figure 5)
FN6030 Rev.4.00
May 19, 2005
Page 3 of 10
ISL84516, ISL84517
Electrical Specifications -
5V
Supply
Test Conditions: V
SUPPLY
=
4.5V
to
5.5V,
V
INH
= 3.5V, V
INL
= 1.5V (Note 4),
Unless Otherwise Specified
(Continued)
TEST CONDITIONS
TEMP
(
o
C)
Full
V
S
=
5.5V,
V
IN
= 0V or V+, Switch On or Off
V
S
=
5.5V,
V
IN
= 0V or V+, Switch On or Off
25
Full
Negative Supply Current, I-
NOTES:
4. V
IN
= Input voltage to perform proper function.
5. The algebraic convention, whereby the most negative value is a minimum and the most positive a maximum, is used in this data sheet.
6. Leakage parameter is 100% tested at high temp, and guaranteed by correlation at 25
o
C.
25
Full
(NOTE 5)
MIN
1.5
-
-
-125
-200
TYP
-
40
-
30
-
(NOTE 5)
MAX
UNITS
6
125
200
-
-
V
A
A
A
A
PARAMETER
POWER SUPPLY CHARACTERISTICS
Power Supply Range
Positive Supply Current, I+
Test Circuits and Waveforms
V+
LOGIC
INPUT
50%
0V
t
OFF
V
OUT
90%
SWITCH
OUTPUT
0V
t
ON
90%
LOGIC
INPUT
C
V-
SWITCH
INPUT
NO or NC
COM
IN
R
L
300
C
L
35pF
V
OUT
t
r
< 20ns
t
f
< 20ns
V+
C
SWITCH
INPUT
FIGURE 1A. MEASUREMENT POINTS
Logic input waveform is inverted for switches that have the opposite
logic sense.
FIGURE 1B. TEST CIRCUIT
C
L
includes fixture and stray capacitance.
V
OUT
=
V
FIGURE 1. SWITCHING TIMES
R
L
------------------------------
(NO or NC) R
+
R
L
ON
V+
C
SWITCH
OUTPUT
V
OUT
ON
V
OUT
R
G
NO or NC
COM
V
OUT
LOGIC
INPUT
ON
OFF
V
G
IN
C
L
C
Q =
V
OUT
x C
L
V-
LOGIC
INPUT
FIGURE 2A. MEASUREMENT POINTS
FIGURE 2. CHARGE INJECTION
FIGURE 2B. TEST CIRCUIT
FN6030 Rev.4.00
May 19, 2005
Page 4 of 10
ISL84516, ISL84517
Test Circuits and Waveforms
(Continued)
V+
C
SIGNAL
GENERATOR
R
ON
= V
1
/1mA
NO or NC
COM
V+
C
V
COM
IN
V- or V+
1mA
V
1
IN
V
INL
or V
INH
ANALYZER
R
L
COM
NO or NC
C
V-
C
V-
FIGURE 3. OFF ISOLATION TEST CIRCUIT
FIGURE 4. R
ON
TEST CIRCUIT
V+
NO or NC
IMPEDANCE
ANALYZER
COM
IN
V- or V+
V-
FIGURE 5. CAPACITANCE TEST CIRCUIT
Detailed Description
The ISL84516 and ISL84517 analog switches offer precise
switching capability from
1.5V
to
6V
supplies with low on-
resistance (13) and high speed operation (t
ON
= 40ns, t
OFF
=
30ns). The devices are especially well suited to portable
battery powered equipment thanks to the low operating supply
voltage (1.5V), low power consumption (350W), low leakage
currents (2nA max), and the tiny SOT-23 packaging. High
frequency applications also benefit from the wide bandwidth,
and the very high off isolation.
be applied before any input signals, and input signal voltages
must remain between V+ and V-. If these conditions cannot be
guaranteed, then one of the following two protection methods
should be employed.
Logic inputs can easily be protected by adding a 1k resistor
in series with the input (see Figure 6). The resistor limits the
input current below the threshold that produces permanent
damage, and the sub-microamp input current produces an
insignificant voltage drop during normal operation.
Adding a series resistor to the switch input defeats the purpose
of using a low R
ON
switch, so two small signal diodes can be
added in series with the supply pins to provide overvoltage
protection for all pins (see Figure 6). These additional diodes
limit the analog signal from 1V below V+ to 1V above V-. The
low leakage current performance is unaffected by this
Supply Sequencing And Overvoltage Protection
With any CMOS device, proper power supply sequencing is
required to protect the device from excessive input currents
which might permanently damage the IC. All I/O pins contain
ESD protection diodes from the pin to V+ and to V- (see Figure
6). To prevent forward biasing these diodes, V+ and V- must