TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 D Wide Bandwidth . . . 10 MHz D High Output Drive D D D D D D D Operational Amplifier − IOH . . . 57 mA at VDD − 1.5 V − IOL . . . 55 mA at 0.5 V High Slew Rate − SR+ . . . 16 V/μs − SR− . . . 19 V/μs Wide Supply Range . . . 4.5 V to 16 V Supply Current . . . 1.9 mA/Channel Ultralow Power Shutdown Mode IDD . . .
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TLC070 and TLC071 AVAILABLE OPTIONS PACKAGED DEVICES TA 0°C to 70°C −40°C 40°C to 125°C † SMALL OUTLINE (D)† SMALL OUTLINE (DGN)† SYMBOL PLASTIC DIP (P) TLC070CD TLC071CD TLC070CDGN TLC071CDGN xxTIACS xxTIACU TLC070CP TLC071CP TLC070ID TLC071ID TLC070IDGN TLC071IDGN xxTIACT xxTIACV TLC070IP TLC071IP — — — — TLC
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TLC07x PACKAGE PIN OUTS TLC070 D, DGN OR P PACKAGE (TOP VIEW) NULL IN − IN + GND 1 8 2 7 3 6 4 5 TLC071 D, DGN OR P PACKAGE (TOP VIEW) SHDN VDD OUT NULL NULL IN − IN + GND TLC073 DGQ PACKAGE (TOP VIEW) 1OUT 1IN − 1IN+ GND 1SHDN 1 2 3 4 5 10 9 8 7 6 VDD 2OUT 2IN − 2IN+ 2SHDN 1 20 2 19 3 18 4 17 5 16 6
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 absolute maximum ratings over operating free-air temperature range (unless otherwise noted)† Supply voltage, VDD (see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 V Differential input voltage range, VID . . . . . . . . . . . . . . . . . . . .
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 electrical characteristics at specified free-air temperature, VDD = 5 V (unless otherwise noted) PARAMETER VIO Input offset voltage αVIO Temperature coefficient of input offset voltage TEST CONDITIONS VDD = 5 V, V VIC = 2.5 V, VO = 2.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 electrical characteristics at specified free-air temperature, VDD = 5 V (unless otherwise noted) (continued) PARAMETER TEST CONDITIONS AVD Large signal differential voltage Large-signal amplification ri(d) Differential input resistance CIC Common-mode input capacitance f = 10 kHz zo Closed-loop output impedance f = 1
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 operating characteristics at specified free-air temperature, VDD = 5 V (unless otherwise noted) PARAMETER SR SR+ Positive slew rate at unity gain VO(PP) = 0.8 V, RL = 10 kΩ CL = 50 pF, SR SR− Negative slew rate at unity gain VO(PP) = 0.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 electrical characteristics at specified free-air temperature, VDD = 12 V (unless otherwise noted) PARAMETER VIO Input offset voltage αVIO Temperature coefficient of input offset voltage TEST CONDITIONS VDD = 12 V VIC = 6 V, VO = 6 V, RS = 50 Ω TLC070/1/2/3, TLC074/5 TLC070/1/2/3A, TLC074/5A TA† MIN 25°C IIB Input of
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 electrical characteristics at specified free-air temperature, VDD = 12 V (unless otherwise noted) (continued) PARAMETER † TEST CONDITIONS AVD Large signal differential voltage Large-signal amplification ri(d) Differential input resistance CIC Common-mode input capacitance f = 10 kHz zo Closed-loop output impedance f
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 operating characteristics at specified free-air temperature, VDD = 12 V (unless otherwise noted) PARAMETER SR SR+ Positive slew rate at unity gain VO(PP) = 2 V, RL = 10 kΩ CL = 50 pF, SR SR− Negative slew rate at unity gain VO(PP) = 2 V, RL = 10 kΩ CL = 50 pF, Vn Equivalent input noise voltage In MIN TYP 16 25°C 1
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS Table of Graphs FIGURE VIO Input offset voltage vs Common-mode input voltage 1, 2 IIO Input offset current vs Free-air temperature 3, 4 IIB Input bias current vs Free-air temperature 3, 4 VOH High-level output voltage vs High-level output current 5, 7 VOL Low-level output voltage vs Low-
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS INPUT OFFSET VOLTAGE vs COMMON-MODE INPUT VOLTAGE 250 150 125 100 75 50 25 −50 −75 −100 −125 −150 −175 −200 −225 −250 −25 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 −275 0 VICR − Common-Mode Input Voltage − V −20 −40 −60 −80 −100 IIB −120 VDD = 12 V −140 6 7 8 9 10 11 12 4.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS SUPPLY CURRENT vs SUPPLY VOLTAGE 2.0 TA = 125°C TA = 70°C 1.0 AV = 1 SHDN = VDD Per Channel 0.5 0.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS DIFFERENTIAL VOLTAGE GAIN AND PHASE vs FREQUENCY DIFFERENTIAL VOLTAGE GAIN AND PHASE vs FREQUENCY 70 70 80 Gain −45 50 Phase 40 −90 30 20 −135 10 0 −10 −20 1k VDD = ±2.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS SLEW RATE vs FREE-AIR TEMPERATURE 10 5 0 −55 −35 −15 5 25 45 65 85 105 125 TA - Free-Air Temperature - °C 0.01 AV = 10 AV = 1 100k f − Frequency − Hz RL = 10 kΩ 0.001 0.0001 0.25 AV = 1 0.001 100 0.75 1.25 1.75 2.25 2.75 3.25 3.75 VDD = 5 V RL = 600 Ω and 10 kΩ CL = 8 pF TA = 25°C 1.2 1.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS LARGE SIGNAL INVERTING PULSE RESPONSE LARGE SIGNAL INVERTING PULSE RESPONSE VI (5 V/div) VDD = 5 V RL = 600 Ω and 10 kΩ CL = 8 pF TA = 25°C VI (100 mV/div) V O − Output Voltage − V V O − Output Voltage − V VI (2 V/div) V O − Output Voltage − V SMALL SIGNAL INVERTING PULSE RESPONSE VDD = 12 V RL
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 TYPICAL CHARACTERISTICS SHUTDOWN PULSE SHUTDOWN PULSE 5.5 4 Shutdown Pulse I DD − Supply Current − mA 5.0 4.5 4.0 2 VDD = 5 V CL= 8 pF TA = 25°C 3.5 3.0 2.5 0 IDD RL = 10 kΩ 2.0 1.5 −2 IDD RL = 600 Ω 1.0 6 5.5 SD Off Shutdown Pulse - V I DD − Supply Current − mA 6.0 6 −4 SD Off 5.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION driving a capacitive load When the amplifier is configured in this manner, capacitive loading directly on the output will decrease the device’s phase margin leading to high frequency ringing or oscillations.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION high speed CMOS input amplifiers The TLC07x is a family of high-speed low-noise CMOS input operational amplifiers that has an input capacitance of the order of 20 pF.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION general configurations When receiving low-level signals, limiting the bandwidth of the incoming signals into the system is often required. The simplest way to accomplish this is to place an RC filter at the noninverting terminal of the amplifier (see Figure 50).
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION shutdown function Three members of the TLC07x family (TLC070/3/5) have a shutdown terminal (SHDN) for conserving battery life in portable applications.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION general PowerPAD design considerations The TLC07x is available in a thermally-enhanced PowerPAD family of packages. These packages are constructed using a downset leadframe upon which the die is mounted [see Figure 52(a) and Figure 52(b)].
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION Although there are many ways to properly heatsink the PowerPAD package, the following steps illustrate the recommended approach. general PowerPAD design considerations (continued) 1. The thermal pad must be connected to the same voltage potential as the GND pin. 2.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION general PowerPAD design considerations (continued) MAXIMUM POWER DISSIPATION vs FREE-AIR TEMPERATURE Maximum Power Dissipation − W 7 6 5 4 3 2 PWP Package Low-K Test PCB θJA = 29.7°C/W DGN Package Low-K Test PCB θJA = 52.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION macromodel information Macromodel information provided was derived using Microsim Parts™, the model generation software used with Microsim PSpice™. The Boyle macromodel (see Note 1) and subcircuit in Figure 55 are generated using the TLC07x typical electrical and operating characteristics at TA = 25°C.
TLC070, TLC071, TLC072, TLC073, TLC074, TLC075, TLC07xA FAMILY OF WIDE-BANDWIDTH HIGH-OUTPUT-DRIVE SINGLE SUPPLY OPERATIONAL AMPLIFIERS SLOS219F − JUNE 1999 − REVISED DECEMBER 2011 APPLICATION INFORMATION 99 3 VDD + 9 RSS IN − DP IN + 1 C1 VDD − C2 6 − VE − − − + + GA GCM VLIM − RO1 DE 5 + OUT *DEVICE=TLC07X_5V, OPAMP, PJF, INT * TLC07X − 5V operational amplifier ”macromodel” subcircuit * created using Parts release 8.0 on 12/16/99 at 08:38 * Parts is a MicroSim product.
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PACKAGE OPTION ADDENDUM www.ti.com Orderable Device 31-Oct-2013 Status (1) TLC075IPWPG4 Package Type Package Pins Package Drawing Qty ACTIVE HTSSOP PWP 20 70 Eco Plan Lead/Ball Finish MSL Peak Temp (2) (6) (3) Green (RoHS & no Sb/Br) CU NIPDAU Level-2-260C-1 YEAR Op Temp (°C) Device Marking (4/5) -40 to 125 TLC075I (1) The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs.
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PACKAGE MATERIALS INFORMATION www.ti.com 12-Aug-2013 TAPE AND REEL INFORMATION *All dimensions are nominal Device Package Package Pins Type Drawing SPQ Reel Reel A0 Diameter Width (mm) (mm) W1 (mm) B0 (mm) K0 (mm) P1 (mm) W Pin1 (mm) Quadrant TLC070CDR SOIC D 8 2500 330.0 12.4 6.4 5.2 2.1 8.0 12.0 Q1 TLC070IDGNR MSOPPower PAD DGN 8 2500 330.0 12.4 5.3 3.4 1.4 8.0 12.0 Q1 TLC070IDR SOIC D 8 2500 330.0 12.4 6.4 5.2 2.1 8.0 12.
PACKAGE MATERIALS INFORMATION www.ti.com 12-Aug-2013 Device Package Package Pins Type Drawing SPQ Reel Reel A0 Diameter Width (mm) (mm) W1 (mm) B0 (mm) K0 (mm) P1 (mm) W Pin1 (mm) Quadrant PAD TLC072IDR SOIC D 8 2500 330.0 12.4 6.4 5.2 2.1 8.0 12.0 Q1 TLC073AIDR SOIC D 14 2500 330.0 16.4 6.5 9.0 2.1 8.0 16.0 Q1 TLC073CDR SOIC D 14 2500 330.0 16.4 6.5 9.0 2.1 8.0 16.0 Q1 TLC073IDGQR MSOPPower PAD DGQ 10 2500 330.0 12.4 5.3 3.4 1.4 8.0 12.
PACKAGE MATERIALS INFORMATION www.ti.com 12-Aug-2013 Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) TLC071CDGNR MSOP-PowerPAD DGN 8 2500 358.0 335.0 35.0 TLC071CDR SOIC D 8 2500 340.5 338.1 20.6 TLC071IDGNR MSOP-PowerPAD DGN 8 2500 358.0 335.0 35.0 TLC071IDR SOIC D 8 2500 340.5 338.1 20.6 TLC072AIDR SOIC D 8 2500 340.5 338.1 20.6 TLC072CDGNR MSOP-PowerPAD DGN 8 2500 358.0 335.0 35.0 TLC072CDR SOIC D 8 2500 340.
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