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An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications,
intellectual property matters and other important disclaimers. PRODUCTION DATA.
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
LMV82x Single/Dual/Quad, Low Voltage, Low Power, RRO, 5 MHz Operational Amplifiers
1
1 Features
1 Qualified for Automotive Applications
AEC-Q100 Qualified With the Following Results:
LMV822-Q1 And LMV824-Q1 Are Available in
Automotive AEC-Q100 Grade 1 Version
For Vs = 5 V, Typical Supply Values Unless
Otherwise Noted
LMV824 Available With Extended Temperature
Range to 125°C
Small SC70-5 Package 2.0 x 1.25 x 0.95 mm
Specified Performance At 2.5 V, 2.7 V and 5 V
VOS 3.5 mV (Max)
TCVOS 1 uV/°C
Gain Bandwidth Product At 2.7 V, 5 MHz
ISupply At 2.7 V Supply, 220 μA per Amplifier
Slew Rate 1.4 V/µs (Min)
CMRR 90 dB
PSRR 85 dB
VCM At 5 V Supply, -0.3 V to 4.3 V
Rail to Rail Output (RRO)
600 Load, 160 mV From Rail
10 kLoad, 55 mV From Rail
Stable Performance with Capacitive Loads
2 Applications
Cordless Phones
Cellular Phones
Laptops
PDAs
PCMCIA (1) For all available packages, see the orderable addendum at
the end of the data sheet.
3 Description
The LMV821/LMV822/LMV824 op amps bring
performance and economy to low voltage, low power
systems. With a 5 MHz unity-gain frequency, at 2.7 V
supply, and a 1.4 V/µs slew rate, the quiescent
current is only 220 µA per amplifier. They provide rail
to rail output (RRO) swing into 600 load. The input
common-mode voltage range includes ground and
the maximum input offset voltage is 3.5 mV. They are
also capable of easily driving large capacitive loads
as indicated in the applications section.
The LMV821 single op amp is available in the tiny
SC70-5 package, which is about half the size of the
previous title holder, the SOT23-5. The
LMV824NDGV is specified over the extended
industrial temperature range and is in a TVSOP
package.
Overall, the LMV821/LMV822/LMV824 devices are
low voltage, low power and performance op amps
designed for a wide range of applications at an
economical price.
Device Information(1)
DEVICE NAME PACKAGE BODY SIZE
LMV821-N SOT23 (5) 2.92 mm x 1.60 mm
SC70 (5) 2.00 mm x 1.25 mm
LMV822-N SOIC (8) 4.90 mm x 3.91 mm
VSSOP (8) 3.00 mm x 3.00 mm
LMV822-N-Q1 VSSOP (8) 3.00 mm x 3.00 mm
LMV824-N SOIC (14) 8.65 mm x 3.91 mm
TSSOP (14) 5.00 mm x 4.40 mm
LMV824-N-Q1 TSSOP (14) 5.00 mm x 4.40 mm
LMV824I TVSOP (14) 4.40 mm x 3.60 mm
Telephone Line Transceiver for PCMCIA Modem Card
2
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation Feedback Copyright © 1999–2016, Texas Instruments Incorporated
Table of Contents
1 Features.................................................................. 1
2 Applications ........................................................... 1
3 Description............................................................. 1
4 Revision History..................................................... 2
5 Pin Configuration and Functions......................... 4
6 Specifications......................................................... 5
6.1 Absolute Maximum Ratings ...................................... 5
6.2 ESD Ratings.............................................................. 5
6.3 Recommended Operating Conditions....................... 5
6.4 Thermal Information, 5 Pins...................................... 5
6.5 Thermal Information, 8 Pins(3) .................................. 6
6.6 Thermal Information, 14 Pins(3) ................................ 6
6.7 DC Electrical Characteristics 2.7V ........................... 6
6.8 DC Electrical Characteristics 2.5V............................ 9
6.9 AC Electrical Characteristics 2.7V............................ 9
6.10 DC Electrical Characteristics 5V............................. 9
6.11 AC Electrical Characteristics 5V........................... 12
6.12 Typical Characteristics.......................................... 13
7 Detailed Description............................................ 19
7.1 Overview................................................................. 19
7.2 Functional Block Diagram....................................... 19
7.3 Feature Description................................................. 19
7.4 Device Functional Modes........................................ 19
8 Application and Implementation ........................ 22
8.1 Application Information............................................ 22
8.2 Typical Applications ................................................ 22
8.3 Do's and Don'ts ...................................................... 28
9 Power Supply Recommendations...................... 28
10 Layout................................................................... 29
10.1 Layout Guidelines ................................................. 29
10.2 Layout Example .................................................... 29
11 Device and Documentation Support................. 31
11.1 Documentation Support ....................................... 31
11.2 Receiving Notification of Documentation Updates 31
11.3 Community Resources.......................................... 31
11.4 Related Links ........................................................ 31
11.5 Trademarks........................................................... 31
11.6 Electrostatic Discharge Caution............................ 31
11.7 Glossary................................................................ 31
12 Mechanical, Packaging, and Orderable
Information........................................................... 32
4 Revision History
NOTE: Page numbers for previous revisions may differ from page numbers in the current version.
Changes from Revision H (April 2014) to Revision I Page
Changed Features Section..................................................................................................................................................... 1
Moved Storage Temperature from Handling Ratings Table which has been renamed ESD Table ...................................... 5
Changed Handling Ratings Table to ESD Ratings Table Format - no data changed............................................................ 5
Added Thermal Information ................................................................................................................................................... 5
Changed and updated Electrical Tables ............................................................................................................................... 9
Changes from Revision G (November 2013) to Revision H Page
Changed data sheet flow and layout to conform with new TI standards. Added the following sections: Application
and Implementation, Power Supply Recommendations, Layout, Device and Documentation Support, Mechanical,
Packaging, and Orderable Information .................................................................................................................................. 1
Added Added new LMV824I throughout datasheet................................................................................................................ 1
Deleted "Refer to application note AN-397 for detailed explanation." - no such appnote.................................................... 23
Added Added Section .......................................................................................................................................................... 28
Added Added Section .......................................................................................................................................................... 28
Changes from Revision D (February 2013) to Revision G Page
Added new part ...................................................................................................................................................................... 1
Added new device.................................................................................................................................................................. 1
Added new device.................................................................................................................................................................. 5
Added new device.................................................................................................................................................................. 6
Added new device.................................................................................................................................................................. 9
Added new device.................................................................................................................................................................. 9
3
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation FeedbackCopyright © 1999–2016, Texas Instruments Incorporated
4
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation Feedback Copyright © 1999–2016, Texas Instruments Incorporated
5 Pin Configuration and Functions
5-Pin SC70-5/SOT23-5
DCK0005A, DBV0005A Packages
Top View
8-Pin SOIC/VSSOP
D0008A, DGK0008A Packages
Top View
14-Pin SOIC/TSSOP/TVSOP
D0014A, PW0014A, DGV0014A Packages
Top View
Pin Functions
PIN NAME I/O DESCRIPTION
+IN I Non-Inverting Input
-IN I Inverting Input
OUT O Output
V- P Negative Supply
V+ P Positive Supply
5
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation FeedbackCopyright © 1999–2016, Texas Instruments Incorporated
(1) Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for
which the device is intended to be functional, but specific performance is not ensured. For ensured specifications and the test
conditions, see the Electrical Characteristics.
(2) If Military/Aerospace specified devices are required, please contact the TI Sales Office/Distributors for availability and specifications.
(3) Applies to both single-supply and split-supply operation. Continuous short circuit operation at elevated ambient temperature can result in
exceeding the maximum allowed junction temperature of 150°C. Output currents in excess of 45 mA over long term may adversely
affect reliability.
(4) The maximum power dissipation is a function of TJ(max) ,θJA, and TA. The maximum allowable power dissipation at any ambient
temperature is PD= (TJ(max)–TA)/θJA. All numbers apply for packages soldered directly into a PC board.
6 Specifications
6.1 Absolute Maximum Ratings(1)(2)
MIN MAX UNIT
Differential Input Voltage VV+V
Supply Voltage (V+ V ) –0.3 5.5 V
Output Short Circuit to V+(3) See (3)
Output Short Circuit to V(3) See (3)
Soldering Information
Infrared or Convection (20 sec) 235 °C
Junction Temperature(4) 150 °C
Storage Temperature Tstg –65 150 °C
(1) Level listed above is the passing level per ANSI, ESDA, and JEDEC JS-001. JEDEC document JEP155 states that 500-V HBM allows
safe manufacturing with a standard ESD control process.
(2) Human body model, 1.5 kin series wth 100 pF.
(3) AEC Q100-002 indicates HBM stressing is done in accordance with the ANSI/ESDA/JEDEC JS-001 specification for Q grade devices.
(4) Machine model, 200in series with 100 pF.
6.2 ESD Ratings VALUE UNIT
V(ESD) Electrostatic discharge
Human body model (HBM), per ANSI/ESDA/JEDEC JS-001, all pins(1)
(2)(3) ±2000
VHuman body model (HBM), per ANSI/ESDA/JEDEC JS-001, all pins (1)
LMV821 ±1500
Machine Model (MM) (4) ±200
6.3 Recommended Operating Conditions MIN NOM MAX UNIT
Supply Voltage 2.5 5.5 V
Temperature Range LMV821, LMV822, LMV824 –40 85 °C
LMV822-Q1, LMV824I and LMV824-Q1 –40 125
(1) For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application
report.
6.4 Thermal Information, 5 Pins(1)
THERMAL METRIC(1)
DCK
SC70-5
PACKAGE
DBV
SOT23-5
PACKAGE UNIT
5 PIN 5 PIN
RθJA Junction-to-ambient thermal resistance 263.4 217.8 °C/W
RθJC(top) Junction-to-case (top) thermal resistance 102.8 142.4 °C/W
RθJB Junction-to-board thermal resistance 50.9 49.4 °C/W
ψJT Junction-to-top characterization parameter 3.7 29.1 °C/W
ψJB Junction-to-board characterization parameter 50.2 48.5 °C/W
RθJC(bot) Junction-to-case (bottom) thermal resistance N/A N/A °C/W
6
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation Feedback Copyright © 1999–2016, Texas Instruments Incorporated
(1) For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application
report.
6.5 Thermal Information, 8 Pins(1)
THERMAL METRIC(1)
D
SOIC
PACKAGE
DGK
VSSOP
PACKAGE UNIT
8 PIN 8 PIN
RθJA Junction-to-ambient thermal resistance 132.6 193.9 °C/W
RθJC(top) Junction-to-case (top) thermal resistance 76.9 84.4 °C/W
RθJB Junction-to-board thermal resistance 73.2 114.5 °C/W
ψJT Junction-to-top characterization parameter 25.0 21.6 °C/W
ψJB Junction-to-board characterization parameter 72.6 113.0 °C/W
RθJC(bot) Junction-to-case (bottom) thermal resistance N/A N/A °C/W
(1) For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application
report.
6.6 Thermal Information, 14 Pins(1)
THERMAL METRIC(1)
D
SOIC PACKAGE PW
TSSOP
PACKAGE
DGV
TVSOP
PACKAGE UNIT
14 PIN 14 PIN 14 PIN
RθJA Junction-to-ambient thermal resistance 109.7 135.6 148.2 °C/W
RθJC(top) Junction-to-case (top) thermal resistance 65.9 63.8 67.3 °C/W
RθJB Junction-to-board thermal resistance 64.1 77.4 77.5 °C/W
ψJT Junction-to-top characterization parameter 24.5 13.0 12.9 °C/W
ψJB Junction-to-board characterization parameter 63.9 76.8 76.9 °C/W
RθJC(bot) Junction-to-case (bottom) thermal resistance N/A N/A N/A °C/W
(1) All limits are ensured by testing or statistical analysis.
(2) Typical Values represent the most likely parametric norm.
6.7 DC Electrical Characteristics 2.7V
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 2.7V, V = 0V, VCM = 1.0V, VO= 1.35V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
VOS Input Offset Voltage
LMV821/822/822-Q1/824 1 3.5
mV
LMV821/822/822-Q1/824, Over Temperature 4
LMV824-Q1/LMV824I 1
LMV824-Q1/LMV824I, Over Tempeature 5.5
TCVOS Input Offset Voltage
Average Drift 1μV/°C
IBInput Bias Current 30 90 nA
Over Temperature 140
IOS Input Offset Current 0.5 30 nA
Over Temperature 50
CMRR Common Mode
Rejection Ratio 0V VCM 1.7V 70 85 dB
0V VCM 1.7V, Over Temperature 68
+PSRR Positive Power Supply
Rejection Ratio
1.7V V+4V, V-= 1V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/LMV824I 75 85
dB1.7V V+4V, V-= 1V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/LMV824I, Over Temperature 70
LMV822-Q1 75 85
7
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation FeedbackCopyright © 1999–2016, Texas Instruments Incorporated
DC Electrical Characteristics 2.7V (continued)
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 2.7V, V = 0V, VCM = 1.0V, VO= 1.35V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
PSRR Negative Power
Supply Rejection
Ratio
-1.0V V--3.3V, V+= 1.7V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/LMV824I 73 85
dB-1.0V V--3.3V, V+= 1.7V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/LMV824I, Over Temperature 70
LMV822-Q1 73 85
VCM Input Common-Mode
Voltage Range For CMRR 50dB –0.3 –0.2 V
1.9 2.0
AVLarge Signal Voltage
Gain
Sourcing, RL= 600to 1.35V,
VO= 1.35V to 2.2V;
LMV821/822/824 90 100
dBSourcing, RL= 600to 1.35V,
VO= 1.35V to 2.2V;
LMV821/822/824, Over Temperature 85
LMV822-Q1/LMV824-Q1/LMV824I 90 100
Sinking, RL= 600to 1.35V,
VO= 1.35V to 0.5V
LMV821/822/824 85 90
dB
Sinking, RL= 600to 1.35V,
VO= 1.35V to 0.5V
LMV821/822/824, Over Temperature 80
LMV824I 85 90
LMV824I, Over Temperature 78
LMV822-Q1/LMV824-Q1 85 90
Sourcing, RL=2kto 1.35V,
VO= 1.35V to 2.2V;
LMV821/822/824 95 100
dBSourcing, RL=2kto 1.35V,
VO= 1.35V to 2.2V;
LMV821/822/824, Over Temperature 90
LMV822-Q1/LMV824-Q1/LMV824I 95 100
Sinking, RL= 2kto 1.35V,
VO= 1.35V to 0.5V
LMV821/822/824 90 95
dBSinking, RL= 2kto 1.35V,
VO= 1.35V to 0.5V
LMV821/822/824, Over Temperature 85
LMV822-Q1/LMV824-Q1/LMV824I 90 95
VOOutput Swing
V+= 2.7V, RL= 600to 1.35V 2.50 2.58 V0.13 0.20
V+= 2.7V, RL= 600to 1.35V, Over Temp 2.40 0.30
V+= 2.7V, RL= 2kto 1.35V 2.60 2.66 V0.08 0.120
V+= 2.7V, RL= 2kto 1.35V, Over Temp 2.50 0.200
IOOutput Current Sourcing, VO= 0V 12 16 mA
Sinking, VO= 2.7V 12 26
8
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation Feedback Copyright © 1999–2016, Texas Instruments Incorporated
DC Electrical Characteristics 2.7V (continued)
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 2.7V, V = 0V, VCM = 1.0V, VO= 1.35V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
ISSupply Current
LMV821 (Single) 0.22 0.3 mA
LMV821, Over Temperature 0.5
LMV822 (Dual) 0.45 0.6 mA
LMV822, Over Temperature 0.8
LMV824 (Quad) 0.72 1.0 mA
LMV824, Over Temperature 1.2
9
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation FeedbackCopyright © 1999–2016, Texas Instruments Incorporated
(1) All limits are ensured by testing or statistical analysis.
(2) Typical Values represent the most likely parametric norm.
6.8 DC Electrical Characteristics 2.5V
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 2.5V, V = 0V, VCM = 1.0V, VO= 1.25V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER CONDITION MIN (1) TYP (2) MAX (1) UNIT
VOS Input Offset Voltage
LMV821/822/822-Q1/824 1 3.5
mV
LMV821/822/822-Q1/824, Over Temperature 4
LMV824-Q1/LMV824I 1
LMV824-Q1/LMV824I, Over Temperature 5.5
VOOutput Swing
V+= 2.5V, RL= 600to 1.25V 2.30 2.37 V0.13 0.20
V+= 2.5V, RL= 600to 1.25V, Over Temperature 2.20 0.30
V+= 2.5V, RL= 2kto 1.25V 2.40 2.46 V0.08 0.12
V+= 2.5V, RL= 2kto 1.25V, Over Temperature 2.30 0.20
(1) All limits are ensured by testing or statistical analysis.
(2) Typical Values represent the most likely parametric norm.
(3) V+= 5V. Connected as voltage follower with 3V step input. Number specified is the slower of the positive and negative slew rates.
(4) Input referred, V+= 5V and RL= 100kconnected to 2.5V. Each amp excited in turn with 1 kHz to produce VO= 3 VPP.
6.9 AC Electrical Characteristics 2.7V
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 2.7V, V = 0V, VCM = 1.0V, VO= 1.35V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
SR Slew Rate See (3) 1.5 V/μs
GBW Gain-Bandwdth
Product 5 MHz
ΦmPhase Margin 61 Deg.
GmGain Margin 10 dB
Amp-to-Amp Isolation See (4) 135 dB
enInput-Related Voltage
Noise f = 1 kHz, VCM = 1V 28 nV/Hz
inInput-Referred
Current Noise f = 1 kHz 0.1 pA/Hz
THD Total Harmonic
Distortion f = 1 kHz, AV=2,
RL= 10 k, VO= 4.1 V PP 0.01%
(1) All limits are ensured by testing or statistical analysis.
(2) Typical Values represent the most likely parametric norm.
6.10 DC Electrical Characteristics 5V
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 5 V, V = 0V, VCM = 2.0V, VO= 2.5V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
VOS Input Offset Voltage
LMV821/822/822-Q1/824 1 3.5
mV
LMV821/822/822-Q1/824, Over Temperature 4.0
LMV824-Q1/LMV824I 1
LMV824-Q1/ LMV824I, Over Temperature 5.5
TCVOS Input Offset Voltage
Average Drift 1μV/°C
10
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
Submit Documentation Feedback Copyright © 1999–2016, Texas Instruments Incorporated
DC Electrical Characteristics 5V (continued)
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 5 V, V = 0V, VCM = 2.0V, VO= 2.5V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
IBInput Bias Current 40 100 nA
Over Temperature 150
IOS Input Offset Current 0.5 30 nA
Over Temperature 50
CMRR Common Mode
Rejection Ratio 0V VCM 4.0V 72 90 dB
0V VCM 4.0V, Over Temperature 70
+PSRR Positive Power
Supply Rejection
Ratio
1.7V V+4V, V-= 1V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/824I 85 75
dB1.7V V+4V, V-= 1V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/824I, Over Temperature 70
LMV822-Q1 75 85
PSRR Negative Power
Supply Rejection
Ratio
-1.0V V--3.3V, V+= 1.7V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/824I 73 85
dB-1.0V V--3.3V, V+= 1.7V, VO= 0V, VCM = 0V
LMV821/822/824/824-Q1/824I 70
LMV822-Q1 73 85
VCM Input Common-Mode
Voltage Range For CMRR 50dB -0.3 -0.2 V
4.2 4.3 V
AVLarge Signal Voltage
Gain
Sourcing, RL= 600to 2.5V,
VO= 2.5V to 4.5V;
LMV821/822/824 95 105
dBSourcing, RL= 600to 2.5V,
VO= 2.5V to 4.5V;
LMV821/822/824, Over Temperature 90
LMV822-Q1/LMV824-Q1/LMV824I 95 105
Sinking, RL= 600to 2.5V,
VO= 2.5V to 0.5V
LMV821/822/824 95 105
dB
Sinking, RL= 600to 2.5V,
VO= 2.5V to 0.5V
LMV821/822/824, Over Temperature 90
LMV824I 95 105
LMV824I, Over Temperature 82
LMV822-Q1/LMV824-Q1 95 105
Sourcing, RL=2kto 2.5V,
VO= 2.5V to 4.5V;
LMV821/822/824 95 105
dBSourcing, RL=2kto 2.5V,
VO= 2.5V to 4.5V;
LMV821/822/824, Over Temperature 90
LMV822-Q1/LMV824-Q1/LMV824I 95 105
Sinking, RL= 2kto 2.5V,
VO= 2.5V to 0.5V
LMV821/822/824 95 105
dBSinking, RL= 2kto 2.5V,
VO= 2.5V to 0.5V
LMV821/822/824, Over Temperature 90
LMV822-Q1/LMV824-Q1/LMV824I 95 105
11
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
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SNOS032I AUGUST 1999REVISED JUNE 2016
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DC Electrical Characteristics 5V (continued)
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 5 V, V = 0V, VCM = 2.0V, VO= 2.5V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
VOOutput Swing
V+= 5V,RL= 600to 2.5V 4.75 4.84
V
V+= 5V,RL= 600to 2.5V, Over Temperature 4.70
V+= 5V,RL= 600to 2.5V (LMV824-Q1, LMV824I) 4.84
V+= 5V,RL= 600to 2.5V (LMV824-Q1, LMV824I),
Over Temperature 4.60
V+= 5V,RL= 600to 2.5V 0.17 0.250
V
V+= 5V,RL= 600to 2.5V, Over Temperature 0.30
V+= 5V,RL= 600to 2.5V (LMV824-Q1, LMV824I) 0.17
V+= 5V,RL= 600to 2.5V (LMV824-Q1, LMV824I),
Over Temperature 0.40
V+= 5V, RL= 2kto 2.5V 4.85 4.90 V0.10 0.15
V+= 5V, RL= 2kto 2.5V, Over Temperature 4.80 0.20
IOOutput Current
Sourcing, VO= 0V 20 45 mA
Sourcing, VO= 0V, Over Temperature 15
Sourcing, VO= 0V
LMV824I 20 45 mA
Sourcing, VO= 0V
LMV824I, Over Temperature 10
Sinking, VO= 5V 20 40 mA
Sinking, VO= 5V, Over Temperature 15
Sinking, VO= 5V
LMV824I 20 40 mA
Sinking, VO= 5V
LMV824I, Over Temperature 10
ISSupply Current
LMV821 (Single) 0.30 0.4 mA
LMV821, Over Temperature 0.6
LMV822 (Dual) 0.5 0.7 mA
LMV822, Over Temperature 0.9
LMV824 (Quad) 1.0 1.3 mA
LMV824, Over Temperature 1.5
LMV824I (Quad) 1.0 1.3 mA
LMV824I, Over Temperature 1.6
12
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
www.ti.com
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
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(1) All limits are ensured by testing or statistical analysis.
(2) Typical Values represent the most likely parametric norm.
(3) V+= 5V. Connected as voltage follower with 3V step input. Number specified is the slower of the positive and negative slew rates.
(4) Input referred, V+= 5V and RL= 100kconnected to 2.5V. Each amp excited in turn with 1 kHz to produce VO= 3 VPP.
6.11 AC Electrical Characteristics 5V
Unless otherwise specified, all limits ensured for TJ= 25°C. V+= 5 V, V = 0V, VCM = 2.0V, VO= 2.5V and RL> 1 M.
Temperature extremes are 40°C TJ85°C for LMV821/822/824, and 40°C TJ125°C for LMV822-Q1/LMV824-
Q1/LMV824I. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT
SR Slew Rate See (3) 1.4 2.0 V/μs min
GBW Gain-Bandwdth
Product 5.6 MHz
ΦmPhase Margin 67 Deg.
GmGain Margin 15 dB
Amp-to-Amp Isolation See (4) 135 dB
enInput-Related Voltage
Noise f = 1 kHz, VCM = 1V 24 nV/Hz
inInput-Referred
Current Noise f = 1 kHz 0.25 pA/Hz
THD Total Harmonic
Distortion f = 1 kHz, AV=2,
RL= 10 k, VO= 4.1 V PP 0.01%
13
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
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6.12 Typical Characteristics
Unless otherwise specified, VS= +5V, single supply, TA= 25°C.
Figure 1. Supply Current vs. Supply Voltage (LMV821) Figure 2. Input Current vs. Temperature
Figure 3. Sourcing Current vs. Output Voltage (VS= 2.7V) Figure 4. Sourcing Current vs Output Voltage (VS= 5V)
Figure 5. Sinking Current vs. Output Voltage (VS= 2.7V) Figure 6. Sinking Current vs. Output Voltage
(VS= 5V)
14
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
SNOS032I AUGUST 1999REVISED JUNE 2016
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Typical Characteristics (continued)
Unless otherwise specified, VS= +5V, single supply, TA= 25°C.
Figure 7. Output Voltage Swing vs. Supply Voltage
(RL= 10k)Figure 8. Output Voltage Swing vs. Supply Voltage
(RL= 2k)
Figure 9. Output Voltage Swing vs. Supply Voltage (RL=
600)Figure 10. Output Voltage Swing vs. Load Resistance
Figure 11. Input Voltage Noise vs. Frequency Figure 12. Input Current Noise vs. Frequency
15
LMV821-N
,
LMV822-N
,
LMV822-N-Q1
,
LMV824-N
,
LMV824-N-Q1
www.ti.com
SNOS032I AUGUST 1999REVISED JUNE 2016
Product Folder Links: LMV821-N LMV822-N LMV822-N-Q1 LMV824-N LMV824-N-Q1
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Typical Characteristics (continued)
Unless otherwise specified, VS= +5V, single supply, TA= 25°C.
Figure 13. Crosstalk Rejection vs. Frequency Figure 14. +PSRR vs. Frequency
Figure 15. -PSRR vs. Frequency Figure 16. CMRR vs. Frequency
Figure 17. Input Voltage vs. Output Voltage Figure 18. Gain and Phase Margin vs. Frequency
(RL= 100k, 2k, 600) at 2.7V