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MICROCIRCUIT DATA SHEET MNLM101-X REV 0A0 OPERATION AMPLIFIER General Description The LM101 is a general purpose operational amplifier which features improved performance over industry standards such as the LM709. Advanced processing techniques make possible an order of magnitude reduction in input currents, and a redesign of the biasing circuitry reduces the temperature drift of input current. Improved specifications include: - Offset voltage 4 mV maximum over temperature - Input current 1000 nA maximum over temperture - Offset current 500 nA maximum over temperature - Offsets guaranteed over entire common mode and supply voltage ranges - Slew rate of 10V/uS as a summing amplifier This amplifier offers many features which make its application nearly foolproof: overload protection on the input and output, no latch-up when the common mode range is exceeded, and freedom from oscillations and compensation with a single 30 pF capacitor. It has advantages over internally compensated amplifiers in that the frequency compensation can be tailored to the particular application. For example, in low frequency circuits it can be overcompensated for increased stability margin. Or the compensation can be optimized to give more than a factor of ten improvement in high frequency performance for most applications. In addition, the device provides better accuracy and lower noise in high impedance circuitry. The low input currents also make it particularly well suited for long interval integrators or timers, sample and hold circuits, and low frequency waveform generators. Further, replacing circuits where matched transistor pairs buffer the inputs of conventional IC op amps, it can give lower offset voltage and a drift at a lower cost. Original Creation Date: 06/21/95 Last Update Date: 03/17/97 Last Major Revision Date: 02/18/97 Industry Part Number LM101 NS Part Numbers LM101W/883 Prime Die LM101 Processing MIL-STD-883, Method 5004 Subgrp Description 1 2 3 4 5 6 7 8A 8B 9 10 11 Static tests at Static tests at Static tests at Dynamic tests at Dynamic tests at Dynamic tests at Functional tests at Functional tests at Functional tests at Switching tests at Switching tests at Switching tests at Temp ( oC) +25 +125 -55 +25 +125 -55 +25 +125 -55 +25 +125 -55 Quality Conformance Inspection MIL-STD-883, Method 5005 1 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET (Absolute Maximum Ratings) (Note 1) Supply Voltage +22V Differential Input Voltage + 30V Input Voltage (Note 3) +15V Ouput Short Circuit Duration (Note 4) Continuous Operating Ambient Temperature Range -55 C to +125 C Maximum Junction Temperature 150 C Power Dissipation at TA = 25C (Note 2) W-Package (Still Air) W-Package (500LF/Min Air Flow) Thermal Resistance (Typical) ThetaJA W-Package (Still Air) (500LF/Min Air flow) ThetaJC W-Package Storage Temperature Range Lead Temperature (Soldering, 10 seconds) ESD Tolerance (Note 5) 500 mW 1200 mW 233 C/W 155 C/W 26 C/W -65 C to +150 C 300 C 2000V Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics. The guaranteed specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the listed test conditions. The maximum power dissipation must be derated at elevated temperatures and is dictated by Tjmax (maximum junction temperature), ThetaJA (package junction to ambient thermal resistance), and TA (ambient temperature). The maximum allowable power dissipation at any temperature is Pdmax = (Tjmax - TA)/ThetaJA or the number given in the Absolute Maximum Ratings, whichever is lower. For supply voltages less than +15V, the absolute maximum input voltage is equal to the supply voltage. Continuous short circuit is allowed for case temperatures to 125C and ambient temperatures to 75 C for LM101A. Human body model, 100 pF discharged through 1.5K Ohms. Note 2: Note 3: Note 4: Note 5: 2 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET Electrical Characteristics DC PARAMETERS (The following conditions apply to all the following parameters, unless otherwise specified.) DC: Vcc = +20V, Vcm = 0 SYMBOL Vio PARAMETER Input Offset Voltage Vcm = -15V CONDITIONS NOTES PINNAME MIN -3 -4 Vcm = +15V -3 -4 Vcm = 0 -3 -4 Vcc = +5V, Vcm = 0 Vcc = +5V, Vcm = 0 Iio Input Offset Current Vcm = -15V -3 -4 -200 -500 Vcm = +15V -200 -500 Vcm = 0 -200 -500 Vcc = + 5V, Vcm = 0 Vcc = + 5V, Vcm = 0 +Iib Input Bias Current Vcm = -15V -200 -500 3 4 3 4 3 4 3 4 200 500 200 500 200 500 200 500 500 1000 Vcm = +15V 500 1000 Vcm = 0 500 1000 Vcc = + 5V, Vcm = 0 Vcc = + 5V, Vcm = 0 500 1000 MAX UNIT mV mV mV mV mV mV mV mV nA nA nA nA nA nA nA nA nA nA nA nA nA nA nA nA SUBGROUPS 1 2, 3 1 2, 3 1 2, 3 1 2, 3 1, 2 3 1, 2 3 1, 2 3 1, 2 3 1, 2 3 1, 2 3 1, 2 3 1, 2 3 3 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET Electrical Characteristics DC PARAMETERS(Continued) (The following conditions apply to all the following parameters, unless otherwise specified.) DC: Vcc = +20V, Vcm = 0 SYMBOL -Iib PARAMETER Input Bias Current Vcm = -15V CONDITIONS NOTES PINNAME MIN MAX 500 1000 Vcm = +15V 500 1000 Vcm = 0 500 1000 Vcc = + 5V, Vcm = 0 Vcc = + 5V, Vcm = 0 +PSRR -PSRR CMRR Vio(ADJ+) Vio(ADJ-) +Ios Power Supply Rejection Ratio Power Supply Rejection Ratio Common Mode Rejection Ratio Input Offset Voltage Adjust Input Offset Voltage Adjust Short Circuit Current -45 -45 -55 -Ios Short Circuit Current 7 5 7 Icc Power Supply Current +5V < Vcc < +20V +5V < Vcc < +20V -15V < Vcm < +15V 70 70 70 4 -4 -7 -5 -7 45 45 55 3 2.5 3.5 Vop+ Output Voltage Swing Rl = 10K Ohms Rl = 2K Ohms Vcc = +15V, Rl = 10K Ohms Vcc = +15V, Rl = 2K Ohms 16 15 12 10 500 1000 UNIT nA nA nA nA nA nA nA nA dB dB dB mV mV mA mA mA mA mA mA mA mA mA V V V V SUBGROUPS 1, 2 3 1, 2 3 1, 2 3 1, 2 3 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3 1 2 3 1 2 3 1 2 3 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3 4 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET Electrical Characteristics DC PARAMETERS(Continued) (The following conditions apply to all the following parameters, unless otherwise specified.) DC: Vcc = +20V, Vcm = 0 SYMBOL VopPARAMETER Output Voltage Swing Rl = 10K Ohms Rl = 2K Ohms Vcc = +15V, Rl = 10K Ohms Vcc = +15V, Rl = 2K Ohms Rin Vin AvsInput Resistance Input Voltage Range Open Loop Gain Avs = +15V, Vo = 0 to -10V, Rl = 2K Ohms Avs = +15V, Vo = 0 to -10V, Rl = 2K Ohms Avs+ Open Loop Gain Avs = +15V, Vo = 0 to +10V, Rl = 2K Ohms Avs = +15V, Vo = 0 to +10V, Rl = 2K Ohms Iib:Rin= SKT/Q11B 2, 3 1, 3 4 4 4 4 0.3 -15 50 25 50 25 15 CONDITIONS NOTES PINNAME MIN MAX -16 -15 -12 -10 UNIT V V V V SUBGROUPS 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3 MOhms 1 V 1, 2, 3 V/mV 1 V/mV 2, 3 V/mV 1 V/mV 2, 3 AC PARAMETERS (The following conditions apply to all the following parameters, unless otherwise specified.) AC: Vcc = +20V, Vcm = 0 SrSr+ Gbw Slew Rate Slew Rate Gain Bandwidth Vin = Vin = +5V to -5V, Av = 1 -5V to 5V, Av = 1 0.2 0.2 0.25 V/uS 9 V/uS 9 MHz 9 Vin = 50mVRMS, f = 20KHz, Rl = 2K Ohms DC PARAMETERS: DRIFT VALUES (The following conditions apply to all the following parameters, unless otherwise specified.) DC: Vcc = +20V, Vcm = 0. "Deltas not required on B-Level product. Deltas required for S-Level product ONLY as specified on Internal Processing Instructions (IPI)". Vio Iio +Iib -Iib Input Offset Voltage Input Offset Current Input Bias Current Input Bias Current Note 1: Vcm = 0 Vcm = 0 Vcm = 0 Vcm = 0 -1 -20 -50 -50 1 20 50 50 mV nA nA nA 1 1 1 1 Parameter guaranteed by the input conditions of several DC parameters. 5 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET (Continued) Note 2: Note 3: Note 4: Guaranteed parameter, not tested. Delta computations for this device can be performed on the Teradyne. The ITP must indicate Data Reduction on the ITP prior to first read and record. Datalog reading in K+V/mV. 6 MNLM101-X REV 0A0 MICROCIRCUIT DATA SHEET Graphics and Diagrams GRAPHICS# 05309HN MKT-W10ARE (blank) (blank) DESCRIPTION See attached graphics following this page. 7 |
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