DG201HS
4
Siliconix
E-77071—Rev. E, 01-Sep-97
Conditions Unless
Otherwise Specified
V+ = 10.8 V to 16.5 V
V– = GND = 0 V
V
IN
= 3 V, 0.8 V
f
A Suffix
–55 to 125 C
D Suffix
–40 to 85 C
Parameter
Symbol
Temp
b
Typ
c
Min
d
Max
d
Min
d
Max
d
Unit
Analog Switch
Analog Signal Range
e
V
ANALOG
Full
0
V+
0
V+
V
Drain-Source On-Resistance
r
DS(on)
I
S
= –10 mA, V
D
= 8.5 V
V+ = 10.8 V
Room
Full
65
90
120
90
120
Switch Off Leakage Current
I
S(off)
V+ = 16.5 V,
= 0.5 V,
10 V 0 5 V
V
D
= 10 V, 0.5 V
Room
Full
0.1
–1
–60
1
60
–1
–20
1
20
I
D(off)
S
Room
Full
0.1
–1
–60
1
60
–1
–20
1
20
nA
Channel On Leakage Current
I
D(on)
+
I
S(on)
V+ = 16.5 V, V
D
=
0.5 V, 10 V
Room
Full
0.1
–1
–60
1
60
–1
–20
1
20
Digital Control
Input, High Voltage
V
INH
V
INL
Full
2.4
2.4
V
Input, Low Voltage
Full
0.8
0.8
Input Capacitance
C
in
Full
5
pF
Input Current
I
INL
or
I
INH
V+ = 16.5 V
V
IN
under test = 0.8 V, 3 V
Full
–1
1
–1
1
A
Dynamic Characteristics
Turn-On Time
t
ON
R
L
= 1 k
V= 10.8 V, See Figure 2
35 F V
Room
Full
50
70
50
70
Turn-Off Time
t
OFF1
, C
L
= 35 pF, V
S
= 2 V
Room
Full
50
70
50
70
ns
t
OFF2
Room
150
Output Settling Time to 0.1%
t
s
Room
180
Charge Injection
Q
C
L
= 1 nF, V
S
= 0 V
V
gen
= 0 V, R
gen
= 0
Room
10
pC
Off Isloation
OIRR
R
L
= 1 k
, C
L
= 10 pF
f = 100 kHz
Room
85
dB
Crosstalk
(Channel-to-Channel)
X
TALK
Any Other Channel Switches
R
L
= 1 k
f = 100 kHz
, C
L
= 10 pF
Room
100
Source Off Capacitance
C
S(off)
f = 1 MHz
Room
10
Drain Off Capacitance
C
D(off)
Room
10
pF
Channel On Capacitance
C
D(on)
V
ANALOG
= 0 V
Room
30
Power Supplies
Positive Supply Current
Power Consumption
c
I+
V+ = 15 V V
V+ = 15 V, V
IN
= 0 or 5 V
Full
10
10
mA
P
C
Full
150
150
mW
Notes:
a.
b.
c.
d.
e.
f.
Refer to PROCESS OPTION FLOWCHART.
Room = 25 C, Full = as determined by the operating temperature suffix.
Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
The algebraic convention whereby the most negative value is a minimum and the most positive a maximum, is used in this data sheet.
Guaranteed by design, not subject to production test.
V
IN
= input voltage to perform proper function.