DG300A, DG301A, DG303A
Data Sheet
May 2001
File Number 3119.3
TTL-Compatible, CMOS Analog Switches
Features
The DG300A through DG303A family of monolithic CMOS
switches are truly compatible second source of the original
• Low Power Consumption
itle
• Break-Before-Make Switching
G30 manufacturer. The switches are latch-proof and are
- t
- t
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 150ns
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 130ns
ON
designed to block signals up to 30V when OFF. Featuring
,
P-P
OFF
low leakage and low power consumption, these switches are
ideally suited for precision application in instrumentation,
communication, data acquisition and battery powered
applications. Other key features include Break-Before-Make
switching, TTL and CMOS compatibility, and low ON
resistance. Single supply operation (for positive switch
voltages) is possible by connecting V- to 0V.
301
• TTL, CMOS Compatible
• Low r (Max). . . . . . . . . . . . . . . . . . . . . . . . . . . 50Ω
303
b-
DS(ON)
• Single Supply Operation
• True Second Source
t
TL-
m-
ti-
,
OS
a-
Part Number Information
TEMP.
PKG.
NO.
o
PART NUMBER RANGE ( C)
PACKAGE
DG300ABK
DG301ACJ
DG303AAK
DG303ABK
DG303ACJ
DG303ACY
-25 to 85
0 to 70
14 Ld CERDIP
14 Ld PDIP
F14.3
E14.3
F14.3
F14.3
E14.3
M16.3
-55 to 125 14 Ld CERDIP
-25 to 85
0 to 70
0 to 70
14 Ld CERDIP
14 Ld PDIP
itch
utho
)
ey-
rds
ter-
16 Ld SOIC
Functional Diagrams and Pinouts (Switches shown for a logic “1” input)
DG300A
(SPST)
DG300A (CERDIP)
DG300A TRUTH TABLE
TOP VIEW
LOGIC
SWITCH
OFF
0
1
NC
1
2
3
4
5
6
7
14 V+
13
12 NC
11
10 NC
S
D
1
1
rpo-
ion,
i-
ON
D
D
2
1
Logic “0” ≤ 0.8V, Logic “1” ≥ 4.0V.
IN
1
NC
S
S
2
1
n-
IN
S
2
NC
IN
ctor,
itch
OS
9
8
IN
V-
1
2
D
2
2
GND
PST,
DT,
ST,
DT,
eo,
DG301A
(SPDT)
DG301A (PDIP)
TOP VIEW
DG301A TRUTH TABLE
LOGIC
SWITCH 1
OFF
SWITCH 2
ON
NC
1
14 V+
13
12 NC
11
10 NC
0
1
S
S
1
D
1
D
1
2
3
4
5
6
7
D
2
ON
OFF
ET,
alog
Logic “0” ≤ 0.8V, Logic “1” ≥ 4.0V.
NC
D
2
2
S
S
2
1
NC
IN
9
8
NC
V-
IN
GND
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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