LM611IM National Semiconductor, LM611IM Datasheet - Page 4

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LM611IM

Manufacturer Part Number
LM611IM
Description
Operational Amplifier (Op-Amp) IC
Manufacturer
National Semiconductor
Datasheets

Specifications of LM611IM

No. Of Amplifiers
1
Slew Rate
0.7V/µs
No. Of Pins
14
Operating Temperature Range
-40°C To +85°C
Peak Reflow Compatible (260 C)
No
Leaded Process Compatible
No
Amplifier Type
Operational
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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VOLTAGE REFERENCE
I
e
FB
n
Electrical Characteristics
These specifications apply for V
unless otherwise specified. Limits in standard typeface are for T
Temperature Range.
Note 1: Absolute maximum ratings indicate limits beyond which damage to the component may occur. Electrical specifications do not apply when operating the
device beyond its rated operating conditions.
Note 2: More accurately, it is excessive current flow, with resulting excess heating, that limits the voltages on all pins. When any pin is pulled a diode drop below
V
and unpredictable when any parasitic diode or transistor is conducting.
Note 3: Junction temperature may be calculated using T
soldered to copper-clad board with dissipation from one op amp or reference output transistor, nominal θ
package.
Note 4: Human body model, 100 pF discharged through a 1.5 kΩ resistor.
Note 5: Typical values in standard typeface are for T
most likely parametric norm.
Note 6: All limits are guaranteed at room temperature (standard type face) or at operating temperature extremes (bold face type).
Note 7: Slew rate is measured with op amp in a voltage follower configuration. For rising slew rate, the input voltage is driven from 5V to 25V, and the output voltage
transition is sampled at 10V and 20V. For falling slew rate, the input voltage is driven from 25V to 5V, and output voltage transition is sampled at 20V and 10V.
Note 8: V
Note 9: Average reference drift is calculated from the measurement of the reference voltage at 25˚C and at the temperature extremes. The drift, in ppm/˚C, is
10
is guaranteed by design and sample testing.
Note 10: Hysteresis is the change in V
hysteresis to the typical value, its junction temperature should be cycled in the following pattern, spiraling in toward 25˚C: 25˚C, 85˚C, −40˚C, 70˚C, 0˚C, 25˚C.
Note 11: Low contact resistance is required for accurate measurement.
Note 12: Military RETS 611AMX electrical test specification is available on request. The LM611AMJ/883 can also be procured as a Standard Military Drawing.
Symbol
, a parasitic NPN transistor turns ON. No latch-up will occur as long as the current through that pin remains below the Maximum Rating. Operation is undefined
6
• ∆V
R
/(V
R
R[25˚C]
is the cathode-feedback voltage, nominally 1.244V.
V
V
V
V
FEEDBACK Bias
Current
V
R
+
R
ANODE
R
• ∆T
Change
Change with
Change with
Noise
J
), where ∆V
Parameter
Change
R
is the lowest value subtracted from the highest, V
R
caused by a change in T
= GND = 0V, V
V
(V
V
V
(
(
I
10 Hz to 10,000 Hz, V
FB
@
@
R(V+ = 5V)
R(V+ = 5V)
+
+
; V
= V
V
V
= 32V for LM611C)
J
ANODE
ANODE
= 25˚C; values in boldface type apply for the full operating temperature range. These values represent the
ANODE
(Continued)
J
+
= T
max, ∆V
A
− V
− V
= V
= V
+ P
+
Conditions
≤ V
= 5V, V
D
J
R(V+ = 36V)
R(V+ = 3V)
, after the reference has been “dehysterized”. To dehysterize the reference; that is minimize the
+
θ
FB
JA
R
= GND) − V
− 1.0V)
. The given thermal resistance is worst-case for packages in sockets in still air. For packages
= V
≤ 5.06V
CM
R
RO
= V
4
= V
J
OUT
= 25˚C; limits in boldface type apply over the Operating
R
R[25˚C]
R
= 2.5V, I
is the value at 25˚C, and ∆T
(Note 5)
Typical
R
0.01
0.01
0.1
0.1
0.7
3.3
22
29
30
= 100 µA, FEEDBACK pin shorted to GND,
JA
is 90˚C/W for the N package and 135˚C/W for the M
LM611AM
LM611AI
(Note 6)
Limits
1.2
1.3
1.5
1.5
3.0
35
40
1
J
is the temperature range. This parameter
LM611BI
LM611M
LM611C
(Note 6)
LM611I
Limits
1.2
1.3
1.5
1.6
3.0
50
55
1
mV max
mV max
mV max
mV max
mV max
mV max
nA max
nA max
µV
Units
RMS

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