LM101A - LM201A LM301A

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1 LM2A LM3A SINGLE OPERATIONAL AMPLIFIERS LM3A LM2A INPUT OFFSET VOLTAGE.7mV 2mV. INPUT BIAS CURRENT 25nA 7nA INPUT OFFSET CURRENT.5nA 2nA SLEW RATE AS INVERTING AMPLIFIER V/µs V/µs N DIP (Plastic Package) D SO (Plastic Micropackage) DESCRIPTION The is a generalpurpose operational amplifier. This amplifier offers many features : supply voltages from ±5 Vto ±22 V, low current drain, overload protection on the input and output, no latchup when the commonmode range is exceeded, freedom from oscillations and compensation with a single 3pF capacitor. It has advantages over internally compensated amplifiers in that the compensationcan be tailored to the particular application : slew rates of V/µs and bandwidths of 3.5MHz can be easily achieved. ORDER CODES Temperature Package Part Number Range N D 55, +5 o C LM2A, +5 o C LM3A, +7 o C Example : LM2AN PIN CONNECTIONS (top view) Balance compensation 2 Inverting input 3 Noninverting input V CC 5 Balance 6 7VCC + Compensation 2 April 995 /

2 LM2A LM3A SCHEMATIC DIAGRAM V CC Balance/Compensation Compensation 2 Q7 Inverting Noninverting Q Q2 Q Q5 Q6 Q3 Q 25 Ω 25k Ω 65 Ω Balance Q7 6 Ω Q 2 5 Ω Q3 Q Q Q5 R5 k Ω Q6 5 2k Ω Q R7 5k Ω 3 5 Ω Q Q9 Q9 Q22 R Ω Q2 Q2 7.5k Ω 2k Ω k Ω 25 Ω V CC ABSOLUTE MAXIMUM RATINGS Symbol Parameter LM2A LM3A Unit V CC Supply Voltage ±22 ±22 ±22 V Vid Differential Voltage ±3 ±3 ±3 V V i Voltage ±5 ±5 ±5 V Shortcircuit Duration Infinite Ptot Power Dissipation N Suffix D Suffix Toper Operating Freeair Temperature Range 55 to +5 to +5 to +7 Tstg Storage Temperature Range 65 to to to mw o C o C 2/

3 LM2A LM3A ELECTRICAL CHARACTERISTICS LM3A o C < Tamb < +7 o C ±5V VCC ±2V = 3pF LM2A o C < Tamb < +5 o C ±5V VCC ±2V = 3pF 55 o C < Tamb < +5 o C ±5V V CC ±2V = 3pF *=>V CC = ±5V, T amb = 25 o C(unless otherwise specified) Symbol V io I ib I io Parameter Offset Voltage (R S kω) T amb =25 o C Tmin. Tamb Tmax. Bias Current T amb =25 o C T min. T amb T max. LM2A LM3A Min. Typ. Max. Min. Typ. Max Offset Current T amb =25 o C.5 T min. T amb T max. 2 A vd Large Signal Voltage Gain * (V O = ±V, R L =2kΩ) Tamb =25 o C 5 T min. T amb T max. 25 SVR ICC Vicm CMR Supply Voltage Rejection Ratio (R S kω) T amb =25 o C Tmin. Tamb Tmax Supply Current no Load Tamb =25 o C. 3 T min. T amb T max. 3 Common Mode Voltage Range (VCC = ±2V) Tamb =25 o C ±5 T min. T amb T max. ±5 Common Mode Rejection Ratio (RS kω) Tamb =25 o C T min. T amb T max. ±5 ± IOS Shortcircuit Current * Tamb =25 o C ± V OPP Voltage Swing * T amb =25 o C Tmin. Tamb Tmax. R L = kω RL =2kΩ RL = kω RL =2kΩ Unit mv na na V/mV db ma V db ma V 3/

4 LM2A LM3A ELECTRICAL CHARACTERISTICS (continued) Symbol SR t r Parameter LM2A LM3A Min. Typ. Max. Min. Typ. Max. Slew Rate (V I = ±V, R L =2kΩ,C L = pf, T amb =25 o C, unity gain) (note ) * Rise Time (V I = ±2 µv, R L =2kΩ,C L = pf,.3.3 Tamb =25 o C, unity gain) * KOV Overshoot (VI = 2 mv, RL =2kΩ,CL= pf, % Tamb =25 o C, unity gain) 5 5 Zi Impedance *.5.5 MΩ R o Resistance * Ω GBP Gain Bandwidth Product * (V I = mv, R L =2kΩ,C L = pf, f = khz, T amb =25 o C).5.5 MHz THD en DV io DIio Total Harmonic Distortion ( f = khz, A V = 2dB, R L =2kΩ,V O =2V PP, C L = pf, T amb =25 o C ).5.5 Equivalent Noise Voltage (f = khz, Rs = Ω) Offset Voltage Drift T min. T amb T max Offset Current Drift 25 o C Tamb Tmax. T min. T amb 25 o C 2 2 Note :.May be improved up to V/µs in inverting amplifier configuration (see basic diagram) Unit V/µs µs % nv Hz µv/ C pa/ C INPUT VOLTAGE RANGE ( V) 2 6 INPUT VOLTAGE RANGE P osi tiv e ive N egat OUTPUT SWING ( V) OUTPUT S WING k Ωmin. R L= mi n. Ω R L=2k S UPPLYVOLTAGE ( V) S UP P LY VOLTAGE ( V) /

5 LM2A LM3A VOLTAGE GAIN 2.5 SUPPLY CURRENT VOLTAGE GAIN (db) 9 T amb =55 C Tamb =+25 C T amb = +5 C SUPPLY CURRENT (ma) T amb =55 C T amb = +25 C T amb = +5 C SUPPLYVOLTAGE ( V) SUPPLY VOLTAGE ( V) MEAN SQUARE NOISE VOLTAGE 3 (V Hz) 5 6 INPUT NOISE VOLTAGE T amb = +25 C k k k FREQUENCY (Hz) OUTPUT SWING ( V) 5 5 CURRENT LIMITING V CC = 5V T amb = +5 C C = +25 T amb OUTPUT CURRENT ( ma) SINGLE POLE COMPENSATION OPEN LOOP FREQUENCY RESPONS E FEED FORWARD COMPENSATION OPEN LOOP FREQUENCY RESPONSE VOLTAGE GAIN (db) 6 2 = 3pF VCC = 5V Tamb = +25 C = 3pF PHASE LAG (Degrees) VOLTAGE GAIN (db) 6 2 Phase Gain VCC = 5V Tamb = +25 C PHASE LAG (Degrees) 2 k k k M M FREQUENCY (Hz) 2 k k k M M FREQUENCY (Hz) 5/

6 LM2A LM3A SINGLE POLE COMPENSATION LARGE SIGNAL FREQUENCY RESPONSE 6 FEED FORWARD COMPENSATION LARGE SIGNAL FREQUENCY RESPONSE 5 OUPUT SWING ( V) = 3pF V CC = 5V T amb =+25 C = 3 pf OUTPUT SWING ( V) T amb =+25 C V CC =+5V k k K M M FREQUENCY (Hz) k M M FREQUENCY (Hz) VOLTAGE SWING (V) VOLTAGE FOLLOWER PULSE RESPONS E 6 2 Ouput 2 6 Tamb =+25 C VCC = 5V TIME (µs) VOLTAGE SWING (V) INVERTER PULSE RESPONS E Ouput Tamb = +25 C VCC = 5V TIME (µs) INPUT BIAS CURRENT (na) INPUT BIAS CURRENT vs AMBIENT TEMPERATURE TEMPERATURE ( C) MEAN SQUARE NOISE CURRENT (A 2 /Hz) 2 25 INPUT NOISE CURRENT T amb =+25 C 26 k k k FREQUENCY(Hz) 6/

7 LM2A LM3A BASIC DIAGRAM BALANCING CIRCUIT ALTERNATE BALANCING CIRCUIT 5MΩ 5.MΩ 3pF 3pF 5.MΩ M Ω V CC 5kΩ SINGLE POLE COMPENSATION FEEDFORWARD COMPENSATION V I V I V O V I V O > C S + C S= 3pF 5pF = 2 π f f = 3MHz PROTECTING AGAINST GROSS FAULT CONDITIONS COMPENSATING FOR STRAY INPUT CAPA CITANCES OR LARGE FEEDBACK RESISTOR R5 Test point : protectsinput : protects output R5 : protectsoutput. Not needed when is used = C S C S 7/

8 LM2A LM3A BASIC DIAGRAM (continued) ISOLATING LARGE CAPACITIVE LOAD TYPICAL APPLICATIONS SIMULATED INDUCTOR C L Ω MΩ L L > R S = R P=.µF MΩ C3 3pF 3pF kω FAST AMPLIFIER WITH HIGH INPUT IMPEDANCE SINE WAVE OSCILLATOR Sine output LMAH k Ω 5pF kω 5pF 2pF 22k Ω R6 22k Ω D2 6.3V pf D 6.3V C3 pf kω 5k Ω C pf C5 5pF f osc = khz Cosine output R5 2k Ω FAST AC/DC CONVERTER INSTRUMENTATION AMPLIFIER R6 2kΩ 2kΩ 2kΩ C pf kω D N µf R7 22.2kΩ MΩ. kω. kω. MΩ. 5kΩ 5pF D2 N R5 6.2kΩ C3 3pF 3pF s 3pF = ; = A V= + /

9 LM2A LM3A TYPICAL APPLICATIONS (continued) VARIABLE CAPACITANCE MULTIPLIER LOW FREQUENCY SQUARE WAVE GENERATOR C = ( + Rb Ra ) k Ω kω C3 pf Ra Rb LMAH 2kΩ MΩ MΩ 5kΩ 6.2V Low impedance output Clamped output C k Ω.µF 5pF MΩ 6.2V FAST HALF WAVE RECTIFIER 2kΩ 2kΩ 3pF D N 5k Ω 5pF D2 N 9/

10 a I LM2A LM3A PACKAGE MECHANICAL DATA PINS PLASTIC DIP OR CERDIP e L b B B e E Z e3 Z D 5 F A b PMDIP.EPS Dimensions Millimeters Inches Min. Typ. Max. Min. Typ. Max. A a.5.2 B b b D.92.3 E e 2.5. e e F i 5..2 L Z.52.6 DIP.TBL /

11 F LM2A LM3A PACKAGE MECHANICAL DATA PINS PLASTIC MICROPACKAGE (SO) L C c a2 A a3 b e s a b e3 E D M 5 Dimensions Millimeters Inches Min. Typ. Max. Min. Typ. Max. A a a a b b C c 5 o (typ.) D E e.27.5 e F L M.6.2 S o (max.) PMSO.EPS SO.TBL Information furnished is believed to be accurate and reliable. However, SGSTHOMSON Microelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No licence is granted by implication or otherwise under any patent or patent rights of SGSTHOMSON Microelectronics. Specifications mentioned in this publicationare subject to change without notice. This publication supersedes and replaces all information previously supplied. SGSTHOMSON Microelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of SGSTHOMSON Microelectronics. 995 SGSTHOMSON Microelectronics All Rights Reserved SGSTHOMSON Microelectronics GROUP OF COMPANIES Australia Brazil France Germany Hong Kong Italy Japan Korea Malaysia Malta Morocco The Netherlands Singapore Spain Sweden Switzerland Taiwan Thailand United Kingdom U.S.A. ORDER CODE : /

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