(PDF) LM311 Datasheet PDF | ON Semiconductor





LM311 Datasheet PDF

Part Number LM311
Description Single Comparators
Manufacture ON Semiconductor
Total Page 9 Pages
PDF Download Download LM311 Datasheet PDF

Features: Datasheet pdf LM211, LM311 Single Comparators The abi lity to operate from a single power sup ply of 5.0 V to 30 V or $15 V split sup plies, as commonly used with operationa l amplifiers, makes the LM211/LM311 a t ruly versatile comparator. Moreover, th e inputs of the device can be isolated from system ground while the output can drive loads referenced either to groun d, the VCC or the VEE supply. This flex ibility makes it possible to drive DTL, RTL, TTL, or MOS logic. The output can also switch voltages to 50 V at curren ts to 50 mA, therefore, the LM211/LM311 can be used to drive relays, lamps or solenoids. Features • These Devices a re Pb−Free and are RoHS Compliant 3. 0 k VCC 5.0 k 5 2 + 6 87 Inputs 3 − 1 RL Inputs Output 4 VEE Split Power Supply with Offset Balance VCC 28 + 7 3 - 1 VEE 4 RL Output Sing le Supply 2 Inputs 3 VCC +8 7 −1 4 RL Output VEE Input polarity is rever sed when GND pin is used as an output. Ground−Referred Load VCC Inputs 2+ 8 7 3− 1 4 RL Output.

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LM311 datasheet
LM211, LM311
Single Comparators
The ability to operate from a single power supply of 5.0 V to 30 V or
$15 V split supplies, as commonly used with operational amplifiers,
makes the LM211/LM311 a truly versatile comparator. Moreover, the
inputs of the device can be isolated from system ground while the
output can drive loads referenced either to ground, the VCC or the VEE
supply. This flexibility makes it possible to drive DTL, RTL, TTL, or
MOS logic. The output can also switch voltages to 50 V at currents to
50 mA, therefore, the LM211/LM311 can be used to drive relays,
lamps or solenoids.
Features
These Devices are PbFree and are RoHS Compliant
3.0 k VCC
5.0 k
5
2 + 6 87
Inputs 3
1
RL
Inputs
Output
4
VEE
Split Power Supply with Offset Balance
VCC
28
+
7
3
-
1
VEE 4
RL
Output
Single Supply
2
Inputs 3
VCC
+8 7
1
4 RL
Output
VEE
Input polarity is reversed when
GND pin is used as an output.
GroundReferred Load
VCC
Inputs
2+ 8
7
31
4 RL
Output
VEE
Input polarity is reversed when
GND pin is used as an output.
Load Referred to Negative Supply
VCC
VCC
2+
Inputs 3
4
8
7
1
RL
Output
VEE
Load Referred to Positive Supply
Inputs
2+ 8
3
6
4
VEE
7
1
RL
Output
TTL Strobe
1.0 k
Strobe Capability
Figure 1. Typical Comparator Design Configurations
© Semiconductor Components Industries, LLC, 2012
August, 2012 Rev. 6
1
8
1
8
1
http://onsemi.com
MARKING
DIAGRAMS
PDIP8
N SUFFIX
CASE 626
8
LM311AN
AWL
YYWWG
1
SOIC8
D SUFFIX
CASE 751
8
LMx11
ALYW
G
1
x
A
WL, L
YY, Y
WW, W
G
G
= 2 or 3
= Assembly Location
= Wafer Lot
= Year
= Work Week
= PbFree Package
= PbFree Package
PIN CONNECTIONS
GND 1
Inputs
2
3
VEE 4
+
8 VCC
7 Output
6 Balance/Strobe
5 Balance
(Top View)
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 2 of this data sheet.
Publication Order Number:
LM211/D

LM311 datasheet
LM211, LM311
ORDERING INFORMATION
Device
Package
Shipping
LM211DG
98 Units / Rail
LM211DR2G
LM311DG
SOIC8
(PbFree)
2500 Units / Tape & Reel
98 Units / Rail
LM311DR2G
2500 Units / Tape & Reel
LM311NG
PDIP8
(PbFree)
50 Units / Rail
†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging
Specifications Brochure, BRD8011/D.
MAXIMUM RATINGS (TA = +25°C, unless otherwise noted.)
Rating
Symbol
LM211
LM311
Unit
Total Supply Voltage
VCC +VEE
36
36 Vdc
Output to Negative Supply Voltage
VO VEE
50
40 Vdc
Ground to Negative Supply Voltage
VEE 30
30 Vdc
Input Differential Voltage
VID ±30
±30 Vdc
Input Voltage (Note 2)
Vin ±15
±15 Vdc
Voltage at Strobe Pin
VCC to VCC5
VCC to VCC5
Vdc
Power Dissipation and Thermal Characteristics
Plastic DIP
Derate Above TA = +25°C
PD
RqJA
625 mW
5.0 mW/°C
Operating Ambient Temperature Range
TA 25 to +85
0 to +70
°C
Operating Junction Temperature
TJ(max)
+150
+150
°C
Storage Temperature Range
Tstg
65 to +150
65 to +150
°C
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
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2





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