# A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

Texas Instruments THS3092 THS3096 Data Sheet

Summary

These high-voltage operational amplifiers are premium, low-distortion solutions engineered for demanding signal transmission systems. Featuring exceptional metrics like a $160 \text{ MHz}$ bandwidth and a $5700 \text{ V}/\mu\text{s}$ slew rate across an expansive $\pm 5$ to $\pm 15 \text{ V}$ supply range, these amplifiers excel in complex driving tasks. Ideal for professionals designing high-voltage arbitrary waveform generators, PIN diode drivers, Power FET circuits, and advanced VDSL line interfaces. The manual covers full electrical specifications, package details, and optimal deployment strategies for reliable signal integrity.

📄 Preview PAGE OF 35

Page 1 Text Content

查询THS3092供应商

THS3092

THS3096

www.ti.com

SLOS428A–DECEMBER 2003–REVISED FEBRUARY

To ta l H ar ic is to rt io

HIGH-VOLTAGE, LOW-DISTORTION, CURRENT-FEEDBACK

OPERATIONAL AMPLIFIERS

FEATURES DESCRIPTION

Low Distortion

The THS3092 and THS3096 are dual high-voltage,

d Bc HD2 at MHz, RL low-distortion, high speed, current-feedback–

amplifiers designed to operate over wide supply–

d Bc HD3 at MHz, RL

range of ±5 to ±15 for applications requiring

Low Noise

large, linear output signals such as Pin, Power FET,

p A/√Hz Noninverting Current Noise and VDSL line drivers.

p A/√Hz Inverting Current Noise

The THS3096 features power-down pin (PD) that

n V/√Hz Voltage Noise puts the amplifier in low power standby mode, and–

lowers the quiescent current from 9.5 m A to µA.•

High Slew Rate: V/µs (G 5, VO VPP)

Wide Bandwidth: MHz (G 5, RL Ω) The wide supply range combined with total harmonic•

distortion as low as -66 d Bc at MHz, in addition, to•

High Output Current Drive: ±250 m A

the high slew rate of V/µs makes the

Wide Supply Range: ±5 to ±15

THS3092/6 ideally suited for high-voltage arbitrary

Power-Down Feature: (THS3096 Only) waveform driver applications. Moreover, having the•

ability to handle large voltage swings driving into

high-resistance and high-capacitance loads while

APPLICATIONS

maintaining good settling time performance makes•

High-Voltage Arbitrary Waveform

the THS3092/6 ideal for Pin driver and Power FET

Power FET Driver

driver applications.

Pin Driver

The THS3092 is offered in an 8-pin SOIC (D), and•

VDSL Line Driver

the 8-pin SOIC (DDA) packages with Power PAD™.

The THS3096 is offered in the 8-pin SOIC (D) and

the 14-pin TSSOP (PWP) packages with Power PAD.

TYPICAL ARBITARY WAVEFORM

TOTAL HARMONIC DISTORTION

GENERATOR OUTPUT DRIVE CIRCUIT

vs FREQUENCY

VO = 20 VPP

RF = 715 Ω, −30 RL = 100 Ω, VS = ±15 V VOUT −40

IOUT1 DAC5686 THS3092

−50 VO = 10 VPP

IOUT2 THS4271

VO = 5 VPP

VO = 2 VPP THS3092

f − Frequency − Hz

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.

Power PAD is trademark of Texas Instruments.

UNLESS OTHERWISE NOTED this document contains PRO- Copyright 2003–2004, Texas Instruments Incorporated

DUCTION DATA information current as of publication date. Prod-

ucts conform to specifications per the terms of Texas Instruments

standard warranty. Production processing does not necessarily

include testing of all parameters.

Page Summary Contents For Texas Instruments THS3092 THS3096 Data Sheet

Page 1 查询THS3092供应商 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY To ta l H ar ic is to rt io HIGH-VOLTAGE, LOW-DISTORTION, CURRENT-FEEDBACK OPERATIONAL AMPLIFIERS FEATURES DESCRIPTION L...
Page 2 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY These devices have limited built-in ESD protection. The leads should be shorted together or the device placed in conductive foam duri...
Page 3 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY RECOMMENDED OPERATING CONDITIONS MIN MAX UNIT Dual supply ±5 ±15 Supply voltage Single supply Operating free-air temperature, TA -40 ...
Page 4 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ELECTRICAL CHARACTERISTICS VS ±15 V, RF Ω, RL Ω, and (unless otherwise noted) TYP OVER TEMPERATURE PARAMETER TEST CONDITIONS 0°C to -...
Page 5 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ELECTRICAL CHARACTERISTICS (CONTINUED) VS ±15 V, RF Ω, RL Ω, and (unless otherwise noted) TYP OVER TEMPERATURE PARAMETER TEST CONDITI...
Page 6 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ELECTRICAL CHARACTERISTICS VS ±5 V, RF Ω, RL Ω, and (unless otherwise noted) TYP OVER TEMPERATURE PARAMETER TEST CONDITIONS 0°C to -4...
Page 7 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ELECTRICAL CHARACTERISTICS (CONTINUED) VS ±5 V, RF Ω, RL Ω, and (unless otherwise noted) TYP OVER TEMPERATURE PARAMETER TEST CONDITIO...
Page 8 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY TYPICAL CHARACTERISTICS TABLE OF GRAPHS FIGURE ±15-V graphs Noninverting frequency response 1, Inverting frequency response 0.1 d B f...
Page 9 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY TYPICAL CHARACTERISTICS (continued) TABLE OF GRAPHS FIGURE ±5-V graphs Noninverting frequency response Inverting frequency response 0...
Page 10 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ig al ai in ve rt in ai in ve rt in ai TYPICAL CHARACTERISTICS (±15 V) NONINVERTING NONINVERTING INVERTING FREQUENCY RESPONSE FREQUEN...
Page 11 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY le at sµ 3r ar ic is to rt io Vo lt ag is TYPICAL CHARACTERISTICS rr en is (±15 V) (continued) 3RD HARMONIC DISTORTION 2ND HARMONIC D...
Page 12 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED tp FEBRUARY t V lt ag In ff se Vo lt ag ie sc en rr en TYPICAL CHARACTERISTICS (±15 V) (continued) INPUT BIAS AND QUIESCENT CURRENT OUTPUT VOL...
Page 13 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY tp t V lt ag lo se -L tp Im ed an ce TYPICAL CHARACTERISTICS (±15 V) (continued) DIFFERENTIAL GAIN DIFFERENTIAL PHASE vs vs OVERDRIVE...
Page 14 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED 2n ar FEBRUARY ic es to rt io in ve rt in ai in ve rt in ai TYPICAL CHARACTERISTICS (±5 V) NONINVERTING INVERTING FREQUENCY RESPONSE FREQUENCY...
Page 15 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER tp Vo lt ag 2003–REVISED FEBRUARY le at sµ TYPICAL CHARACTERISTICS (±5 V) (continued) SLEW RATE SLEW RATE vs vs NONINVERTING SMALL SIGNAL OUTPUT VOLTAGE ST...
Page 16 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY APPLICATION INFORMATION WIDEBAND, NONINVERTING OPERATION Current-feedback amplifiers are highly dependent on the feedback resistor RF...
Page 17 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY WIDEBAND, INVERTING OPERATION Figure shows the THS3092 in typical inverting gain configuration where the input and output impedances ...
Page 18 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY Figure shows traditional hybrid connection One of the concerns about any DSL line driver is the approach for achieving the 14.5-d Bm ...
Page 19 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY 15 V ec en ed 75-Ω Transmission Line VO(1) IS VI Ferrite Bead n Lines 100 Ω LOAD −VS 1 µF VO(n) Figure 60. Figure 57. Video Distribut...
Page 20 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY RF VS VS VS −VS RG FB 100 Ω LOAD −VS 1 µF Figure 62. −VS −VS Figure is shown using two amplifiers in parallel to the output drive cur...
Page 21 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY PRINTED-CIRCUIT BOARD LAYOUT VS = ±15 V and ±5 V TECHNIQUES FOR OPTIMAL PERFORMANCE er tp Im ed an ce Achieving optimum performance w...
Page 22 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY Connections to other wideband devices on the leadframe upon which the die is mounted [see board may be made with short direct traces ...
Page 23 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY Power PAD™ LAYOUT CONSIDERATIONS POWER DISSIPATION AND THERMAL CONSIDERATIONS1. PCB with side etch pattern as shown in Figure 67. The...
Page 24 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY DESIGN TOOLS ax im er is si at io 3.5 Evaluation Fixtures, Spice Models, and θJA = 45.8°C/W Application Support Texas Instruments is ...
Page 25 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY THS3092 EVM - 5 V GND 5 V J7 J8 J9 FB1 FB2 TP1 TP2 J1 Figure 70. THS3092 EVM Board Layout (Top Layer) Figure 69. THS3092 EVM Schemati...
Page 26 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY Figure 72. THS3092 EVM Board Layout Figure 73. THS3092 EVM Board Layout (Power Plane) (Bottom Layer) Table 2. THS3092 EVM Bill of Mat...
Page 27 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY THS3096 EVM 5 V GND -5 V J7 J8 J9 FB1 FB2 TP1 TP2 Figure 75. THS3096 EVM Board Layout R2 (Top Layer) R13 J10 JP1 R14 Figure 74. THS30...
Page 28 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY Figure 77. THS3096 EVM Board Layout Figure 78. THS3096 EVM Board Layout (Power Plane) (Bottom Layer) Table 3. THS3096 EVM Bill of Mat...
Page 29 THS3092 THS3096 www.ti.com SLOS428A–DECEMBER 2003–REVISED FEBRUARY ADDITIONAL REFERENCE MATERIAL Power PAD Made Easy, application brief (SLMA004) Power PAD Thermally Enhanced Package, technical brief ...
Page 34 IMPORTANT NOTICE Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and servic...
Page 35 WWW.ALLDATASHEET.COM Copyright © Each Manufacturing Company. All Datasheets cannot be modified without permission. This datasheet has been download from : www.All Data Sheet.com 100% Free Data Sheet S...

Manual Details

Brand Texas Instruments
Pages 35
File Size 1.50 MB
Published June 06, 2026
45 views

Enter the captcha to get the download link:

captcha

Frequently Asked Questions

What is the THS3096 power saving feature?

The THS3096 has a power-down pin (PD) which lowers the quiescent current from 9.5 mA to 500µA.

Is special handling required for this device?

Because of limited built-in ESD protection, leads should be shorted together or the device placed in conductive foam during storage to prevent static damage.

How must thermal dissipation be managed for PowerPAD™ packages?

The PowerPAD™ acts as a heatsink and must be connected to a thermally dissipating plane; failure to do so may cause permanent damage.

What are the operating voltage range specifications?

These amplifiers support a wide supply range from ±5 V to ±15 V.