TLE2021-EP

Manufacturer Part NumberTLE2021-EP
ManufacturerTexas Instruments
TLE2021-EP datasheet
 


Specifications of TLE2021-EP

Number Of Channels1Total Supply Voltage(min)(+5v=5, +/-5v=10)4
Total Supply Voltage(max)(+5v=5, +/-5v=10)40Iq Per Channel(max)(ma)0.3
Gbw(typ)(mhz)1.2Slew Rate(typ)(v/us)0.5
Vio (25c)(max)(mv)0.6Offset Drift(typ)(uv/c)2
Vn At 1khz(typ)(nv/rthz)17Iib(max)(pa)70000
Cmrr(min)(db)85Operating Temperature Range(c)-40 to 125,-55 to 125
Pin/package8SOIC  
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D
Controlled Baseline
− One Assembly/Test Site, One Fabrication
Site
D
Extended Temperature Performance of
−40 C to 125 C
D
Also Available in −55 C to 125 C
D
Enhanced Diminishing Manufacturing
Sources (DMS) Support
D
Enhanced Product-Change Notification
D
Qualification Pedigree
D
Supply Current . . . 300 A Max
Component qualification in accordance with JEDEC and industry
standards to ensure reliable operation over an extended
temperature range. This includes, but is not limited to, Highly
Accelerated Stress Test (HAST) or biased 85/85, temperature
cycle, autoclave or unbiased HAST, electromigration, bond
intermetallic life, and mold compound life. Such qualification
testing should not be viewed as justifying use of this component
beyond specified performance and environmental limits.
description
The TLE202x and TLE202xA devices are precision, high-speed, low-power operational amplifiers using a new
Texas Instruments Excalibur process. These devices combine the best features of the OP21 with highly
improved slew rate and unity-gain bandwidth.
The complementary bipolar Excalibur process utilizes isolated vertical pnp transistors that yield dramatic
improvement in unity-gain bandwidth and slew rate over similar devices.
The addition of a bias circuit in conjunction with this process results in extremely stable parameters with both
time and temperature. This means that a precision device remains a precision device even with changes in
temperature and over years of use.
This combination of excellent dc performance with a common-mode input voltage range that includes the
negative rail makes these devices the ideal choice for low-level signal conditioning applications in either
single-supply or split-supply configurations. In addition, these devices offer phase-reversal protection circuitry
that eliminates an unexpected change in output states when one of the inputs goes below the negative supply
rail.
A variety of options are available in small-outline packaging for high-density systems applications.
The Q-suffix devices are characterized for operation over the full automotive temperature range of −40 C to
125 C.
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of Texas Instruments
standard warranty. Production processing does not necessarily include
testing of all parameters.
EXCALIBUR HIGH-SPEED LOW-POWER PRECISION
SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010
D
High Unity-Gain Bandwidth . . . 2 MHz Typ
D
High Slew Rate . . . 0.45 V/ s Min
D
Supply-Current Change Over Full Temp
Range . . . 10 A Typ at V
D
Specified for Both 5-V Single-Supply and
15-V Operation
D
Phase-Reversal Protection
D
High Open-Loop Gain . . . 6.5 V/ V
(136 dB) Typ
D
Low Offset Voltage . . . 100 V Max
D
Offset Voltage Drift With Time
0.005 V/mo Typ
D
Low Input Bias Current . . . 50 nA Max
D
Low Noise Voltage . . . 19 nV/ Hz Typ
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
TLE202x-EP, TLE202xA-EP
OPERATIONAL AMPLIFIERS
=
15 V
CC
Copyright
2007 Texas Instruments Incorporated
1

TLE2021-EP Summary of contents

  • Page 1

    ... The TLE202x and TLE202xA devices are precision, high-speed, low-power operational amplifiers using a new Texas Instruments Excalibur process. These devices combine the best features of the OP21 with highly improved slew rate and unity-gain bandwidth. The complementary bipolar Excalibur process utilizes isolated vertical pnp transistors that yield dramatic improvement in unity-gain bandwidth and slew rate over similar devices ...

  • Page 2

    ... Tape and reel TLE2021QDREP SOIC (D) Tape and reel TLE2022AQDREP SOIC (D) Tape and reel TLE2022QDREP SOP (DW) Tape and reel TLE2024AQDWREP SOP (DW) Tape and reel TLE2024QDWREP SOIC (D) Tape and reel TLE2021MDREP TLE2022 D PACKAGE (TOP VIEW) 1OUT CC+ 1IN− 2OUT 2 7 1IN+ 2IN− 3 ...

  • Page 3

    ... Q24 Q20 Q11 Q14 Q12 Q23 Q25 C2 Q10 Q21 R6 Q15 Q26 Q18 Q16 V /GND CC − ACTUAL DEVICE COMPONENT COUNT TLE2021 TLE2022 POST OFFICE BOX 655303 DALLAS, TEXAS 75265 TLE202x-EP, TLE202xA-EP OPERATIONAL AMPLIFIERS Q28 Q31 Q35 Q29 Q32 ...

  • Page 4

    ... I Output current, I (each output): TLE2021 O Total current into ...

  • Page 5

    ... NOTE 4: Typical values are based on the input offset voltage shift observed through 168 hours of operating life test using the Arrhenius equation and assuming an activation energy of 0.96 eV. A EXCALIBUR HIGH-SPEED LOW-POWER PRECISION SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2021-EP † † ...

  • Page 6

    ... TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2021 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER Input offset voltage Input offset voltage Temperature coefficient of input offset voltage VIO ...

  • Page 7

    ... NOTE 4: Typical values are based on the input offset voltage shift observed through 168 hours of operating life test using the Arrhenius equation and assuming an activation energy of 0.96 eV. A EXCALIBUR HIGH-SPEED LOW-POWER PRECISION SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2021-EP † † ...

  • Page 8

    ... TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2021 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER Input offset voltage Input offset voltage Temperature coefficient of input offset voltage VIO ...

  • Page 9

    TLE2022 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER V V Input offset voltage Input offset voltage IO Temperature coefficient of Temperature coefficient of VIO input offset voltage Input offset voltage Input offset voltage long-term ...

  • Page 10

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2022 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER V V Input offset voltage Input offset voltage IO Temperature coefficient Temperature coefficient VIO ...

  • Page 11

    TLE2024 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER V V Input offset voltage Input offset voltage IO Temperature coefficient VIO of input offset voltage Input offset voltage long-term drift (see Note 4) I ...

  • Page 12

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2024 electrical characteristics at specified free-air temperature, V noted) PARAMETER PARAMETER V V Input offset voltage Input offset voltage IO Temperature coefficient VIO of input ...

  • Page 13

    ... V V N(PP) noise voltage I Equivalent input noise current n B Unity-gain bandwidth 1 Phase margin at unity gain m TLE2021 operating characteristics at specified free-air temperature, V PARAMETER SR SR Slew rate at unity gain Slew rate at unity gain Equivalent input noise voltage Equivalent input noise voltage (see Figure 2) ...

  • Page 14

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 TLE2022 operating characteristics at specified free-air temperature, V PARAMETER SR SR Slew rate at unity gain Slew rate at unity gain Equivalent input noise Equivalent ...

  • Page 15

    PARAMETER MEASUREMENT INFORMATION − (see Note A) (a) SINGLE SUPPLY NOTE A: C includes fixture capacitance. L Figure 1. Slew-Rate Test Circuit ...

  • Page 16

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 PARAMETER MEASUREMENT INFORMATION 5 V − 0 (see Note A) (a) SINGLE SUPPLY NOTE A: ...

  • Page 17

    TYPICAL CHARACTERISTICS V Input offset voltage IO I Input bias current IB I Input current I V Maximum peak output voltage OM V High-level output voltage OH V Low-level output voltage OL V Maximum peak-to-peak output voltage O(PP) A Large-signal ...

  • Page 18

    ... TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 DISTRIBUTION OF TLE2021 INPUT OFFSET VOLTAGE 20 231 Units Tested From 1 Wafer Lot Package Î Î Î Î −600 −450 − ...

  • Page 19

    ... INPUT BIAS CURRENT vs COMMON-MODE INPUT VOLTAGE −50 −45 −40 −35 −30 −25 −20 −15 −10 − − Common-Mode Input Voltage − Figure 9 TLE2021 INPUT BIAS CURRENT vs FREE-AIR TEMPERATURE −35 −30 −25 −20 −15 −10 −5 0 −75 −50 − − ...

  • Page 20

    ... T − Free-Air Temperature − Figure 13 TLE2021 MAXIMUM PEAK OUTPUT VOLTAGE vs OUTPUT CURRENT Î Î Î Î Î Î Î Î 10 Î Î Î Î − 8 Î Î Î Î ...

  • Page 21

    ... I − Output Current − Figure 17 TLE2021 HIGH-LEVEL OUTPUT VOLTAGE vs HIGH-LEVEL OUTPUT CURRENT Á Á Á Á −1 −2 −3 −4 I − High-Level Output Current − mA ...

  • Page 22

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 HIGH-LEVEL OUTPUT VOLTAGE vs FREE-AIR TEMPERATURE 4.8 4.6 No Load 4.4 Á Á Á Á 4.2 4 −75 −50 ...

  • Page 23

    EXCALIBUR HIGH-SPEED LOW-POWER PRECISION TYPICAL CHARACTERISTICS MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE vs FREQUENCY Á Á Á Á Á Á Á Á Á Á Á Á ...

  • Page 24

    ... DALLAS, TEXAS 75265 TLE2022 † AMPLIFICATION vs FREE-AIR TEMPERATURE − 100 T − Free-Air Temperature − Figure 28 TLE2021 SHORT-CIRCUIT OUTPUT CURRENT vs SUPPLY VOLTAGE −100 100 mV Î Î Î Î Î ...

  • Page 25

    ... TLE2021 vs SUPPLY VOLTAGE = −100 100 − Supply Voltage − Figure 32 TLE2021 † vs FREE-AIR TEMPERATURE = −100 100 − 100 T − Free-Air Temperature − Figure 34 ...

  • Page 26

    ... V = −100 100 mV ID − 100 T − Free-Air Temperature − Figure 36 TLE2021 SUPPLY CURRENT vs SUPPLY VOLTAGE = 125 C A Î Î Î Î Î Î Î Î Î Î Î Î − Î Î Î Î ...

  • Page 27

    ... Supply Voltage − Figure 39 TLE2021 SUPPLY CURRENT vs FREE-AIR TEMPERATURE 225 200 175 150 Î Î Î Î Î Î 125 Î Î Î Î Î Î 100 75 Á Á Á Á ...

  • Page 28

    ... POST OFFICE BOX 655303 DALLAS, TEXAS 75265 TLE2021 vs FREQUENCY Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î Î ...

  • Page 29

    ... TLE2021 SLEW RATE vs FREE-AIR TEMPERATURE 1 Î Î Î Î Î Î Î Î Î Î 0.8 Î Î Î Î Î Î Î Î 0.6 0.4 0 See Figure 1 0 −75 −50 − − Free-Air Temperature − C ...

  • Page 30

    ... Î Î Î Î Î See Figure 1 3 Î Î Î Î Î POST OFFICE BOX 655303 DALLAS, TEXAS 75265 TLE2021 PULSE RESPONSE − Time − s Figure 52 TLE2024 PULSE RESPONSE − Time − s ...

  • Page 31

    ... TLE2021 VOLTAGE-FOLLOWER LARGE-SIGNAL PULSE RESPONSE See Figure Á Á Á Á − 5 −10 − − Time − s Figure 55 TLE2024 VOLTAGE-FOLLOWER LARGE-SIGNAL PULSE RESPONSE 15 Î Î Î Î Î ...

  • Page 32

    ... CC 0 0.3 0.2 0.1 0 − 0.1 − 0.2 − 0.3 − 0.4 Á Á Á − 0 Á Á Á t − Time − s Á Á Á Figure 59 TLE2021 UNITY-GAIN BANDWIDTH vs SUPPLY VOLTAGE See Figure − ...

  • Page 33

    ... See Figure Î Î Î Î Î −75 −50 − − Free-Air Temperature − Figure 63 TLE2021 PHASE MARGIN vs SUPPLY VOLTAGE See Figure Á Á Á Á 42 ...

  • Page 34

    ... LOAD CAPACITANCE Á Á Á Á 20 Á Á − Load Capacitance − Figure 67 TLE2021 PHASE MARGIN vs FREE-AIR TEMPERATURE See Figure Á Á − ...

  • Page 35

    The TLE202x circuitry includes input-protection diodes to limit the voltage across the input transistors; however, no provision is made in the circuit to limit the current if these diodes are forward biased. This condition can occur when the ...

  • Page 36

    TLE202x-EP, TLE202xA-EP EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS SGLS235D− FEBRUARY 2004 − REVISED SEPTEMBER 2010 macromodel information Macromodel information provided was derived using Microsim Parts , the model generation software used with Microsim PSpice . The Boyle macromodel (see Note ...

  • Page 37

    ... Figure 74. Boyle Macromodel for the TLE2021 .SUBCKT TLE2022 6.814E− 20.00E− dlp ...

  • Page 38

    ... PACKAGING INFORMATION Orderable Device (1) Package Type Package Status TLE2021AQDREP ACTIVE SOIC TLE2021MDREP ACTIVE SOIC TLE2021QDREP ACTIVE SOIC TLE2022AQDREP ACTIVE SOIC TLE2022QDREP ACTIVE SOIC TLE2024AQDWREP ACTIVE SOIC TLE2024QDWREP ACTIVE SOIC V62/04755-01XE ACTIVE SOIC V62/04755-02XE ACTIVE SOIC V62/04755-03XE ACTIVE SOIC V62/04755-04XE ...

  • Page 39

    ... TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold Customer on an annual basis. OTHER QUALIFIED VERSIONS OF TLE2021-EP, TLE2021A-EP, TLE2022-EP, TLE2022A-EP, TLE2024-EP, TLE2024A-EP : Catalog: TLE2021, TLE2021A, TLE2022, TLE2022A, TLE2024, • ...

  • Page 40

    ... TAPE AND REEL INFORMATION *All dimensions are nominal Device Package Package Type Drawing TLE2021AQDREP SOIC TLE2021MDREP SOIC TLE2021QDREP SOIC TLE2022AQDREP SOIC TLE2022QDREP SOIC TLE2024AQDWREP SOIC DW TLE2024QDWREP SOIC DW PACKAGE MATERIALS INFORMATION Pins SPQ Reel Reel Diameter Width (mm) W1 (mm 2500 330 ...

  • Page 41

    ... Device Package Type TLE2021AQDREP SOIC TLE2021MDREP SOIC TLE2021QDREP SOIC TLE2022AQDREP SOIC TLE2022QDREP SOIC TLE2024AQDWREP SOIC TLE2024QDWREP SOIC PACKAGE MATERIALS INFORMATION Package Drawing Pins SPQ Length (mm 2500 D 8 2500 D 8 2500 D 8 2500 D 8 2500 ...

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    ... Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. All products are sold subject to TI’ ...