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LF13202D View Datasheet(PDF) - National ->Texas Instruments

Part NameDescriptionManufacturer
LF13202D Quad SPST JFET Analog Switches National-Semiconductor
National ->Texas Instruments National-Semiconductor
LF13202D Datasheet PDF : 18 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
(Note 2)
Supply Voltage (VCC−VEE)
Reference Voltage
Logic Input Voltage
Analog Voltage
Analog Current
36V
VEEVRVCC
VR−4.0VVINVR+6.0V
VEEVAVCC+6V;
VAVEE+36V
|IA|<20 mA
Power Dissipation (Note 3)
Molded DIP (N Suffix)
Cavity DIP (D Suffix)
Operating Temperature Range
LF11201, 2 and LF11331, 2, 3
LF13201, 2 and LF13331, 2, 3
Storage Temperature
Soldering Information
N and D Package (10 sec.)
SO Package:
Vapor Phase (60 sec.)
Infrared (15 sec.)
500 mW
900 mW
−55˚C to +125˚C
0˚C to +70˚C
−65˚C to +150˚C
300˚C
215˚C
220˚C
Electrical Characteristics (Note 4)
Symbol
Parameter
RON
“ON” Resistance
RON Match
VA
IS(ON) +
ID(ON)
IS(OFF)
“ON” Resistance Matching
Analog Range
Leakage Current in “ON” Condition
Source Current in “OFF” Condition
ID(OFF)
Drain Current in “OFF” Condition
VINH
VINL
IINH
IINL
Logical “1” Input Voltage
Logical “0” Input Voltage
Logical “1” Input Current
Logical “0” Input Current
tON
tOFF
tON−tOFF
CS(OFF)
CD(OFF)
CS(ON) +
CD(ON)
ISO(OFF)
CT
SR
IDIS
Delay Time “ON”
Delay Time “OFF”
Break-Before-Make
Source Capacitance
Drain Capacitance
Active Source and Drain Capacitance
“OFF” Isolation
Crosstalk
Analog Slew Rate
Disable Current
IEE
Negative Supply Current
IR
Reference Supply Current
ICC
Positive Supply Current
Conditions
VA=0, ID=1 mA
Switch “ON,” VS=VD=±10V
Switch “OFF,” VS=+10V,
VD=−10V
Switch “OFF,” VS=+10V,
VD=−10V
VIN=5V
VIN=0.8
VS=±10V, (Figure 3)
VS=±10V, (Figure 3)
VS=±10V, (Figure 3)
Switch “OFF,” VS=±10V
Switch “OFF,” VD=±10V
Switch “ON,” VS=VD=0V
LF11331/2/3
LF13331/2/3
LF11201/2
LF13201/2
Min Typ Max Min Typ Max
TA=25˚C
150 200
200 300
150 250
200 350
TA=25˚C
5 20
10 50
±10 ±11
±10 ±11
TA=25˚C
0.3 5
3 100
0.3 10
3 30
TA=25˚C
0.4 5
3 100
0.4 10
3 30
TA=25˚C
0.1 5
3 100
0.1 10
3 30
2.0
2.0
0.8
0.8
TA=25˚C
3.6 10
25
3.6 40
100
TA=25˚C
0.1
0.1
1
1
TA=25˚C
500
500
TA=25˚C
90
90
TA=25˚C
80
80
TA=25˚C
4.0
4.0
TA=25˚C
3.0
3.0
TA=25˚C
5.0
5.0
Units
V
nA
nA
nA
nA
nA
nA
V
V
µA
µA
µA
ns
ns
ns
pF
pF
pF
(Figure 4), (Note 5)
(Figure 4), (Note 5)
(Note 6)
(Figure 5), (Note 7)
TA=25˚C
TA=25˚C
TA=25˚C
TA=25˚C
All Switches “OFF,” VS=±10V TA=25˚C
All Switches “OFF,” VS=±10V TA=25˚C
All Switches “OFF,” VS=±10V TA=25˚C
−50
−65
50
0.4 1.0
0.6 1.5
3.0 5.0
4.2 7.5
2.0 4.0
2.8 6.0
4.5 6.0
6.3 9.0
−50
−65
50
0.6 1.5
0.9 2.3
4.3 7.0
6.0 10.5
2.7 5.0
3.8 7.5
7.0 9.0
9.8 13.5
dB
dB
V/µs
mA
mA
mA
mA
mA
mA
mA
mA
Note 1: “Absolute Maximum Ratings” indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
functional, but do not guarantee specific performance limits.
Note 2: Refer to RETSF11201X, RETSF11331X, RETSF11332X and RETSF11333X for military specifications.
Note 3: For operating at high temperature the molded DIP products must be derated based on a +100˚C maximum junction temperature and a thermal resistance
of +150˚C/W, devices in the cavity DIP are based on a +150˚C maximum junction temperature and are derated at ±100˚C/W.
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