
MT8804A
CMOS
3-6
* Exceeding these values may cause permanent damage. Functional operation under these conditions is not implied.
DC Electrical Characteristics are at ambient temperature (25°C).
Typical figures are for design aid only; not guaranteed and not subject to production testing.
Absolute Maximum Ratings
*
-
Voltages are with respect to V
EE
unless otherwise stated
.
Parameter
Symbol
Min
Max
Units
1
Supply Voltage
V
DD-
V
SS
V
DD-
V
EE
V
SS-
V
EE
V
INA
V
IN
I
T
S
P
D
P
D
-0.3
-0.3
-0.3
16
16
16
V
V
V
V
2
3
4
5
6
Analog Input Voltage
Digital Input Voltage
Current on any Logic Pin
Storage Temperature
Package Power Dissipation
V
EE
-0.3
V
SS
-0.3
V
DD
+0.3
V
DD
+0.3
10
+150
0.6
1.2
mA
°C
W
W
-65
PLASTIC DIP
CERDIP
Recommended Operating Conditions
- Voltages are with respect to V
EE
unless otherwise stated.
Characteristics
Sym
Min
Typ
Max
Units
Test Conditions
1
2
Operating Temperature
Supply Voltage
T
O
-40
5
5
0
25
5
10
5
85
15
15
10
°C
V
V
V
V
V
V
DD
-V
SS
V
DD
-V
EE
V
SS
-V
EE
3
4
Analog Input Voltage
Digital Input Voltage
V
INA
V
EE
V
DD
V
IN
V
SS
V
DD
DC Electrical Characteristics
-
Voltages are with respect to V
EE
=V
SS
=0V.
Characteristics
Sym
Min
Typ
Max
Units
Test Conditions
1
Quiescent Supply Current
I
DD
1
100
μ
A
V
DD
=15V. All digital inputs at
V
IN
=V
SS
or V
DD
V
DD
=13V, Switch is ‘Off’
IV
Ji
- V
Lj
I = V
DD
- V
EE
V
DD
=10V
V
DD
=5V
V
INA
=V
DD
through 1k
V
DD
=10V
V
DD
=5V
V
INA
=V
DD
through 1k
V
DD
=13V
2
Off-state Leakage Current
(Any line to any junctor)
Input Logic “0” level
I
OFF
±0.1
±500
nA
3
V
IL
3.0
1.5
V
V
4
Input Logic “1” level
V
IH
7.0
3.5
V
V
5
Maximum current through
Crosspoint Switch
I
MAX
±8.0
mA
DC Electrical Characteristics
-
Switch Resistance
- V
DC
is the external DC offset applied at the analog I/O pins.
Characteristics
Sym
25°C
Min
Typ
Max
1 On-state
V
DD
=13V
Resistance V
DD
=10V
V
DD
= 5V
290
650
2 Difference in on-state
resistance between
two switches
V
DD
=13V
V
DD
=10V
30
70°C
Typ
105
120
320
85°C
Typ
110
125
325
Units
Test Conditions
R
ON
60
90
105
108
160
V
SS
=V
EE
=0V,V
DC
=V
DD
/2,
IV
Ji
- V
Lj
I = 0.6V
R
ON
20
20
30
20
30
V
SS
=V
EE
=0V,V
DC
=V
DD
/2,
IV
Ji
- V
Lj
I = 0.6V