TL061 SYC | Alldatasheet
Document overview
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Technical content
■ VERY LOW POWER CONSUMPTION : 200µA ■ WIDE COMMON-MODE (UP TO V CC +) AND DIFFERENTIAL VOLTAGE RANGES ■ LOW INPUT BIAS AND OFFSET CURRENTS ■ OUTPUT SHORT-CIRCUIT PROTECTION ■ HIGH INPUT IMPEDANCE J-FET INPUT STAGE ■ INTERNAL FREQUENCY COMPENSATION ■ LATCH UP FREE OPERATION ■ HIGH SLEW RATE : 3.5V/µs
DESCRIPTION
The TL061, TL061A and TL061B are high speed J-FET input single operational amplifiers family. Each of these J-FET input operational amplifiers incorporates well matched, high voltage J-FET and bipolar transistors in a monolithic integrated circuit. The devices feature high slew rates, low input bias and offset currents, and low offset voltage temper- ature coefficient. ORDER CODE N = Dual in Line Package (DIP) D = Small Outline Package (SO) - also available in Tape & Reel (DT) PIN CONNECTIONS (top view) Part Number Temperature Range Package ND TL061M/AM/BM -55°C, +125°C •• TL061I/AI/BI -40°C, +105°C •• TL061C/AC/BC 0°C, +70°C •• Example : TL061IN N DIP8 (Plastic Package) D SO8 (Plastic Micropackage) 1 - Offset null 1 2 - Inverting input 3 - Non-inverting input 4 - V CC 5 - Offset null 2 6 - Output 7 - VCC 8 - N.C. TL061 TL061A - TL061B LOW POWER J-FET SINGLE OPERATIONAL AMPLIFIERS November 2001
INPUT OFFSET VOLTAGE NULL CIRCUIT ABSOLUTE MAXIMUM RATINGS Non-inverting Input Inverting Input Output 4.2kΩ 100 Ω 45k Ω 220 Ω 64 Ω 270 Ω 3.2kΩ Offset Null 1 Offset Null 2 V CC V CC N1 N2 TL061 100k Ω V CC Symbol Parameter TL061M, AM, BM TL061I, AI, BI TL061C, AC, BC Unit VCC Supply voltage - note 1) 1. All voltage values, except differential voltage, are with respect to the zero reference level (ground) of the supply voltages where the zero reference level is the midpoint between VCC + and VCC ±18 V Vi Input Voltage - note 2) 2. The magnitude of the input voltage must never exceed the magnitude of the supply voltage or 15 volts, whichever is less. ±15 V Vid Differential Input Voltage - note 3) 3. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. ±30 V Ptot Power Dissipation 680 mW Output Short-circuit Duration - note 4) 4. The output may be shorted to ground or to either supply. Temperature and/or supply voltages must be limited to ensure that the dissipation rating is not exceeded Infinite Toper Operating Free-air Temperature Range -55 to +125 -40 to +105 0 to +70 °C Tstg Storage Temperature Range -65 to +150 °C
ELECTRICAL CHARACTERISTICS
VCC = ±15V, Tamb = +25°C (unless otherwise specified) Symbol Parameter TL061M TL061I TL061C Unit Vio Input Offset Voltage (Rs = 50Ω ) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 31 5 mV DV io Temperature Coefficient of Input Offset Voltage (Rs = 50Ω ) 10 10 10 µV/°C Iio Input Offset Current- note 1) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 1. The input bias currents of a FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive. Pulse techniques must be used that will maintain the junction temperature as close to the ambient temperature as possible. 51 0 0 5 100 5 200 pA nA Iib Input Bias Current -note 1 Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 30 200 30 200 30 400 pA nA Vicm Input Common Mode Voltage Range ±11.5 +15 -12 ±11.5 +15 -12 ±11 +15 -12 V Vopp Output Voltage Swing (RL = 10kΩ) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 27 20 27 20 27 V Avd Large Signal Voltage Gain R L = 10kΩ , Vo = ±10V, Tamb = +25°C Tmin ≤ Tamb ≤ Tmax
6 V/mV
Tamb = +25°C, RL =10kΩ , C L = 100pF 111 MHz R i Input Resistance 1012 1012 1012 Ω CMR Common Mode Rejection Ratio R S = 50Ω 80 86 80 86 70 76 dB SVR Supply Voltage Rejection Ratio R S = 50Ω 80 95 80 95 70 95 dB ICC Supply Current, no load Tamb = +25°C, no load, no signal 200 250 200 250 200 250 µA PD Total Power Consumption Tamb = +25°C, no load, no signal 6 7.5 6 7.5 6 7.5 mW SR Slew Rate Vi = 10V, RL = 10kΩ , tr Rise Time Vi = 20mV, RL = 10kΩ , C L = 100pF, Av = 1 0.2 0.2 0.2 µs Kov Overshoot Factor (see figure 1) Vi = 20mV, RL = 10kΩ , C L = 100pF, Av = 1 10 10 10 en Equivalent Input Noise Voltage R S = 100Ω, f = 1KHz 42 42 42 nV Hz
VCC = ±15V, Tamb = +25°C (unless otherwise specified) Symbol Parameter TL061AC, AI, AM TL061BC, BI, BM Unit Vio Input Offset Voltage (Rs = 50Ω ) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 7.5 mV DV io Temperature Coefficient of Input Offset Voltage (Rs = 50Ω ) 10 10 µV/°C Iio Input Offset Current - note 1) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 1. The input bias currents of a FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive. Pulse techniques must be used that will maintain the junction temperature as close to the ambient temperature as possible. 5 100 51 0 0 pA nA Iib Input Bias Current -note 1 Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 30 200 30 200 pA nA Vicm Input Common Mode Voltage Range ±11.5 +15 -12 ±11 +15 -12 V Vopp Output Voltage Swing (RL = 10kΩ) Tamb = +25°C Tmin ≤ Tamb ≤ Tmax 27 20 V Avd Large Signal Voltage Gain R L = 10kΩ , Vo = ±10V , Tamb = +25°C Tmin ≤ Tamb ≤ Tmax V/mV GBP Gain Bandwidth Product Tamb = +25°C, RL =10kΩ , CL = 100pF 11 MHz R i Input Resistance 1012 1012 Ω CMR Common Mode Rejection Ratio R S = 50Ω 80 86 80 86 dB SVR Supply Voltage Rejection Ratio R S = 50Ω 80 95 80 95 dB ICC Supply Current, no load Tamb = +25°C, no load, no signal 200 250 200 250 µA PD Total Power Consumption Tamb = +25°C, no load, no signal 6 7.5 6 7.5 mW SR Slew Rate Vi = 10V, RL = 10kΩ , CL = 100pF, Av = 1 1.5 3.5 1.5 3.5 V/µs tr Rise Time Vi = 20mV, RL = 10kΩ , CL = 100pF, Av = 1 0.2 0.2 µs Kov Overshoot Factor (see figure 1) Vi = 20mV, RL = 10kΩ , CL = 100pF, Av = 1 10 10 en Equivalent Input Noise Voltage R S = 100Ω, f = 1KHz 42 42 nV Hz
MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE versus SUPPLY VOLTAGE MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE versus LOAD RESISTANCE DIFFERENTIAL VOLTAGE AMPLIFICATION versus FREE AIR TEMPERATURE MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE versus FREE AIR TEMPERATURE MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE versus FREQUENCY LARGE SIGNAL DIFFERENTIAL VOLTAGE AMPLIFICATION AND PHASE SHIFT versus FREQUENCY
SUPPLY CURRENT PER AMPLIFIER versus SUPPLY VOLTAGE TOTAL POWER DISSIPATED versus FREE AIR TEMPERATURE NORMALIZED UNITY GAIN BANDWIDTH SLEW RATE, AND PHASE SHIFT versus TEMPERATURE SUPPLY CURRENT PER AMPLIFIER versus FREE AIR TEMPERATURE COMMON MODE REJECTION RATIO versus FREE AIR TEMPERATURE INPUT BIAS CURRENT versus FREE AIR TEMPERATURE Tamb No signal No load = +25˚C 250 200 150 100 SUPPLY CURRENT ( µA) 02 64 8 10 12 14 16 SUPPLY VOLTAGE ( V) TOTAL POWER DISSIPATED (mW) -50 -25 0 25 50 75 100 125 FREE AIR TEMPERATURE (˚C) -75 = 15VV CC No signal No load 0.9 0.8 0.7 NORMALIZED UNITY-GAIN BANDWIDTH AND SLEW RATE -50 -25 0 25 50 75 100 125 FREE AIR TEMPERATURE (˚C) -75 1.1 1.2 1.3 UNITY-GAIN-BANDWIDTH (left sc ale) PHASE SHIFT (right scale) SLEW RATE (left scale) = 15VVCC R L = 10kΩ f = B for phase shift1 0.99 0.98 0.97 1.01 1.02 1.03 NORMALIZED PHASE SHIFT 250 200 150 100 SUPPLY CURRENT ( µA) -75 -50 0-25 25 50 75 100 125 FREE AIR TEMPERATURE (˚C) VCC = 15V No signal No load COMMON MODE REJECTION RATIO (dB) -50 -25 0 25 50 75 100 125 FREE AIR TEMPERATURE (˚C) -75 = 15VV CC R L = 10kΩ 100 0.1 0.01 INPUT BIAS CURRENT (nA) -50 -25 02 5 5 0 7 5 1 0 0 1 2 5 FREE AIR TEMPERATURE (˚C) VCC = 15V
VOLTAGE FOLLOWER LARGE SIGNAL PULSE RESPONSE OUTPUT VOLTAGE versus ELAPSED TIME EQUIVALENT INPUT NOISE VOLTAGE versus FREQUENCY PARAMETER MEASUREMENT INFORMATION Figure 1 : Voltage Follower Figure 2 : Gain-of-10 inverting amplifier 02 46 8 1 0 INPUT AND OUTPUT VOLTAGES (V) TIME (µs) OUTPUT INPUT = 15V = 10kΩR L VCC = 100pFC L Tamb = +25˚C tr OUTPUT VOLTAGE (mV) 0 0.2 0.4 0.6 0.8 1 12 14 TIME (µs) 10% 90% OVERSHOOT Tamb = +25˚C V CC = 15V R L = 10kΩ EQUIVALENT INPUT NOISE VOLTAGE (nV/VHz) 40 100 400 1k 4k 10k 40k 100k FREQUENCY (Hz) 100 R S = 100Ω Tamb = +25˚C VCC = 15V -eI TL061 R L C L= 100pF 1k Ω 10k Ω eo
8 PINS - PLASTIC DIP
A 3.32 0.131 a1 0.51 0.020 B 1.15 1.65 0.045 0.065 b 0.356 0.55 0.014 0.022 b1 0.204 0.304 0.008 0.012 D 10.92 0.430 E 7.95 9.75 0.313 0.384 e 2.54 0.100 e3 7.62 0.300 e4 7.62 0.300 F 6.6 0260 i 5.08 0.200 L 3.18 3.81 0.125 0.150 Z 1.52 0.060
8 PINS - PLASTIC MICROPACKAGE (SO)
A 1.75 0.069 a1 0.1 0.25 0.004 0.010 a2 1.65 0.065 a3 0.65 0.85 0.026 0.033 b 0.35 0.48 0.014 0.019 b1 0.19 0.25 0.007 0.010 C 0.25 0.5 0.010 0.020 c1 45° (typ.) D 4.8 5.0 0.189 0.197 E 5.8 6.2 0.228 0.244 e 1.27 0.050 e3 3.81 0.150 F 3.8 4.0 0.150 0.157 L 0.4 1.27 0.016 0.050 M 0.6 0.024 S 8° (max.) b A s L C E D M 8 5 1 4 F