LM210J NSC [National Semiconductor], LM210J Datasheet - Page 2

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LM210J

Manufacturer Part Number
LM210J
Description
Voltage Follower
Manufacturer
NSC [National Semiconductor]
Datasheet
Input Offset Voltage
Input Bias Current
Input Resistance
Input Capacitance
Large Signal Voltage T
Gain
Output Resistance
Supply Current
Input Offset Voltage
Offset Voltage
Temperature Drift
Input Bias Current
Large Signal Voltage V
Gain
Output Voltage
Swing (Note 5)
Supply Current
Supply Voltage
Rejection Ratio
Absolute Maximum Ratings
If Military Aerospace specified devices are required
please contact the National Semiconductor Sales
Office Distributors for availability and specifications
(Note 6)
Supply Voltage
Power Dissipation (Note 1)
Input Voltage (Note 2)
Output Short Circuit Duration (Note 3)
Operating Temperature Range
Electrical Characteristics
Note 1 The maximum junction temperature of the LM110 is 150 C of the LM210 is 100 C and of the LM310 is 85 C For operating at elevated temperatures
devices in the HO8 package must be derated based on a thermal resistance of 165 C W junction to ambient or 22 C W junction to case The thermal resistance
of the dual-in-line package is 100 C W junction to ambient
Note 2 For supply voltages less than
Note 3 Continuous short circuit for the LM110 and LM210 is allowed for case temperatures to 125 C and ambient temperatures to 70 C and for the LM310 70 C
case temperature or 55 C ambient temperature It is necessary to insert a resistor greater than 2 k
impedance sources to prevent damage when the output is shorted R
Note 4 These specifications apply for
the LM310 unless otherwise specified
Note 5 Increased output swing under load can be obtained by connecting an external resistor between the booster and V
Note 6 Refer to RETS110X for LM110H LM110J military specifications
Application Hint
The input must be driven from a source impedance of typically 10 k
impedance will be reduced at high frequencies if there is stray capacitance at the input pin In these cases a 10 k
should be inserted in series with the input physically close to the input pin to minimize the stray capacitance and prevent
oscillation
LM110
LM210
LM310
Parameter
T
T
T
V
T
T
b
a
0 C
R
V
T
g
A
A
A
A
OUT
A
A
S
S
A
L
55 C
5V
85
e
e
e
e
e
e
e
e
e
e
s
s
s
25 C
25 C
25 C
25 C V
e
25 C
25 C
10 k
125 C
g
g
T
s
T
A s
V
Conditions
15V V
15V R
g
A s
S s g
g
g
T
10V R
5V
15V the absolute maximum input voltage is equal to the supply voltage
A s
a
S
s
125 C
70 C
OUT
L
e
V
a
18V
e
S s g
L
g
85 C
e
e
10 k
b
15V
b
(Note 4)
18V and
55 C to
8 k
g
25 C to
10V
0 C to
b
Indefinite
500 mW
a
0 999 0 9999
0 999
55 C
g
10
a
a
Min
70
g
g
125 C
10
85 C
70 C
10
S
18V
15V
s
e
T
LM110
5k min 10k typical is recommended for dynamic stability in all applications
A
10
125 C for the LM110
0 75
Typ
1 5
1 0
1 5
3 9
2 0
12
80
6
2
12
Storage Temperature Range
Lead Temperature (Soldering 10 sec )
Soldering Information
See AN-450 ‘‘Surface Mounting Methods and Their Effect
on Product Reliability’’ for other methods of soldering sur-
face mount devices
ESD rating to be determined
Max
4 0
3 0
2 5
5 5
6 0
4 0
Dual-In-Line Package
Small Outline Package
10
Soldering (10 sec )
Vapor Phase (60 sec )
Infrared (15 sec )
(5 k
0 999 0 9999
0 999
10
g
Min
70
10
b
10
in series with the input when the amplifier is driven from low
25 C
min ) to maintain stability The total source
LM210
s
10
0 75
Typ
1 5
1 0
1 5
3 9
2 0
80
6
T
12
A s
85 C for the LM210 and 0 C
Max
2 5
5 5
4 0
3 0
6 0
4 0
10
b
0 999 0 9999
0 999
terminals See curve
10
g
Min
70
10
10
LM310
10
0 75
Typ
b
2 5
2 0
1 5
3 9
10
80
12
65 C to
s
Max
T
7 5
7 0
2 5
5 5
10
10
A s
a
resistor
70 C for
150 C
260 C
260 C
215 C
220 C
Units
V V
V V
mV
mA
mV
V C
V C
V C
mA
nA
pF
nA
dB
V

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