LM2902 FAIRCHILD | Alldatasheet

Document overview

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Technical content

Features

  • Internally Frequency Compensated for Unity Gain
  • Large DC V oltage Gain: 100dB
  • Wide Power Supply Range: LM224/LM224A, LM324/LM324A : 3V~32V (or ±1.5 ~ 16V) LM2902: 3V~26V (or ±1.5V ~ 13V)
  • Input Common Mode V oltage Range Includes Ground
  • Large Output V oltage Swing: 0V to V CC -1.5V
  • Power Drain Suitable for Battery Operation

Description

The LM324/LM324A,LM2902,LM224/LM224A consist of four independent, high gain, internally frequency compensated operational amplifiers which were designed specifically to operate from a single power supply over a wide voltage range. operation from split power supplies is also possible so long as the difference between the two supplies is 3 volts to 32 volts. Application areas include transducer amplifier, DC gain blocks and all the conventional OP Amp circuits which now can be easily implemented in single power supply systems. 14-SOP 14-DIP Internal Block Diagram 2 3 + + _ _ _ OUT4 GND OUT2 OUT1 OUT3 IN4 (-) IN3 (-) IN4 (+) IN3 (+) IN1 (-) IN1 (+) IN2 (+) IN2 (-) VCC LM2902,LM324/LM324A,LM224/ LM224A Quad Operational Amplifier

LM2902,LM324/LM324A,LM224/LM224A Schematic Diagram (One Section Only) Absolute Maximum Ratings Thermal Data Parameter Symbol LM224/LM224A LM324/LM324A LM2902 Unit Power Supply Voltage V CC ±16 or 32 ±16 or 32 ±13 or 26 V Differential Input Voltage V I(DIFF) 32 32 26 V Input Voltage V I -0.3 to +32 -0.3 to +32 -0.3 to +26 V Output Short Circuit to GND Vcc≤15V, TA=25°C(one Amp) - Continuous Continuous Continuous - Power Dissipation, TA=25°C 14-DIP 14-SOP P D 1310 640 1310 640 1310 640 mW Operating Temperature Range T OPR -25 ~ +85 0 ~ +70 -40 ~ +85 °C Storage Temperature Range T STG -65 ~ +150 -65 ~ +150 -65 ~ +150 °C Parameter Symbol Value Unit Thermal Resistance Junction-Ambient Max. 14-DIP 14-SOP Rθja 95 195 °C/W Q6Q5 Q3Q2 Q10 Q11 Q12 Q14 Q15 Q16 Q18 Q19 Q20 Q21 GND OUTPUTIN(+) IN(-) VCC Q13 Q17

LM2902,LM324/LM324A,LM224/LM224A

Electrical Characteristics

(VCC = 5.0V, VEE = GND, TA = 25°C, unless otherwise specified) Note : 1. VCC=30V for LM224 and LM324 , VCC = 26V for LM2902 2. This parameter, although guaranteed, is not 100% tested in production. Parameter Symbol Conditions LM224 LM324 LM2902 Unit Input Offset Voltage VIO VCM = 0V to VCC -1.5V V O(P) = 1.4V, RS = 0Ω (Note1) Input Offset Current IIO VCM = 0V - 2.0 30 - 3.0 50 - 3.0 50 nA Input Bias Current I BIAS VCM = 0V - 40 150 - 40 250 - 40 250 nA Input Common- Mode Voltage Range V I(R) Note1 0 - VCC -1.5 0 VCC -1.5 - 0 - VCC -1.5 V Supply Current I CC RL = ∞ ,VCC = 30V (LM2902,VCC=26V) - 1.0 3 - 1.0 3 - 1.0 3 mA Large Signal Voltage Gain GV VCC = 15V,RL=2kΩ VO(P) = 1V to 11V 50 100 - 25 100 - 25 100 - V/ mV Output Voltage Swing VO(H) Note1 RL = 2kΩ 26 - - 26 - - 22 - - V RL=10kΩ 27 28 - 27 28 - 23 24 - V VO(L) VCC = 5V,RL=10kΩ - 5 20 - 5 20 - 5 100 mV Common-Mode Rejection Ratio CMRR - 70 85 - 65 75 - 50 75 - dB Power Supply Rejection Ratio PSRR - 65 100 - 65 100 - 50 100 - dB Channel Separation CS f = 1kHz to 20kHz (Note2) - 120 - - 120 - - 120 - dB Short Circuit to GND ISC VCC = 15V - 40 60 - 40 60 - 40 60 mA Output Current ISOURCE VI(+) = 1V, VI(-) = 0V VCC = 15V VO(P) = 2V 20 40 - 20 40 - 20 40 - mA ISINK VI(+) = 0V, VI(-) = 1V VCC = 15V VO(P) = 2V 10 13 - 10 13 - 10 13 - mA VI(+) = 0V, VI(-) = 1V VCC = 5V,VO(R) = 200mV 1 2 4 5 - 1 2 4 5 ---- µA Differential Input Voltage VI(DIFF) -- - V CC -- V CC -- V CC V

LM2902,LM324/LM324A,LM224/LM224A Electrical Characteristics (Continued) (VCC = 5.0V, VEE = GND, unless otherwise specified) The following specification apply over the range of -25°C ≤ TA ≤ + 85°C for the LM224; and the 0°C ≤ TA ≤ +70°C for the LM324 ; and the -40°C ≤ TA ≤ +85°C for the LM2902 Note: 1. VCC=30V for LM224 and LM324 , VCC = 26V for LM2902 2. These parameters, although guaranteed, are not 100% tested in production. Input Offset Voltage V IO VICM = 0V to VCC -1.5V VO(P) = 1.4V, RS = 0Ω (Note1) Input Offset Voltage Drift ∆VIO/∆TR S = 0Ω (Note2) - 7.0 - - 7.0 - - 7.0 - µV/°C Input Offset Current I IO VCM = 0V - - 100 - - 150 - - 200 nA Input Offset Current Drift ∆IIO/∆TR S = 0Ω (Note2) - 10 - - 10 - - 10 - pA/ °C Input Bias Current I BIAS VCM = 0V - - 300 - - 500 - - 500 nA Input Common-Mode Voltage Range VI(R) Note1 0 - VCC -2.0 0- VCC -2.0 0- VCC -2.0 V Large Signal Voltage Gain GV VCC = 15V, RL = 2.0kΩ VO(P) = 1V to 11V Output Voltage Swing VO(H) Note1 RL=2kΩ 26 - - 26 - - 22 - - V RL=10kΩ 27 28 - 27 28 - 23 24 - V VO(L) VCC = 5V, RL=10kΩ -52 0-52 0- 5 1 0 0 m V Output Current ISOURCE VI(+) = 1V, VI(-) = 0V VCC = 15V, VO(P) = 2V 10 20 - 10 20 - 10 20 - mA ISINK VI(+) = 0V, VI(-) = 1V VCC = 15V, VO(P) = 2V 10 13 - 5 8 - 5 8 - mA Differential Input Voltage VI(DIFF) -- - V CC -- V CC -- V CC V

LM2902,LM324/LM324A,LM224/LM224A Electrical Characteristics (Continued) (VCC = 5.0V, VEE = GND, TA = 25°C, unless otherwise specified) Note: 1. VCC=30V for LM224A, LM324A 2. This parameter, although guaranteed, is not 100% tested in production. Input Offset Voltage V IO VCM = 0V to VCC -1.5V V O(P) = 1.4V, RS = 0Ω (Note1) Input Offset Current I IO VCM = 0V - 2 15 - 3.0 30 nA Input Bias Current I BIAS VCM = 0V - 40 80 - 40 100 nA Input Common-Mode Voltage Range VI(R) VCC = 30V 0 - VCC -1.5 0- VCC -1.5 V Supply Current I CC VCC = 30V, RL = ∞ -1 . 53 -1 . 53m A Large Signal Voltage Gain G V VCC = 15V, RL= 2kΩ VO(P) = 1V to 11V 50 100 - 25 100 - V/mV Output Voltage Swing VO(H) Note1 RL = 2kΩ 26 - - 26 - - V RL = 10kΩ 27 28 - 27 28 - V VO(L) VCC = 5V, RL=10kΩ -5 2 0 -5 2 0 m V Common-Mode Rejection Ratio CMRR - 70 85 - 65 85 - dB Power Supply Rejection Ratio PSRR - 65 100 - 65 100 - dB Channel Separation CS f = 1kHz to 20kHz (Note2) - 120 - - 120 - dB Short Circuit to GND I SC VCC = 15V - 40 60 - 40 60 mA Output Current ISOURCE VI(+) = 1V, VI(-) = 0V VCC =15V, VO(P) = 2V 20 40 - 20 40 - mA ISINK VI(+) = 0V, VI(-) = 1V VCC = 15V, VO(P) = 2V 10 20 - 10 20 - mA VI(+) = 0v, VI(-) = 1V VCC = 5V VO(P) = 200mV 12 50 - 12 50 - µA Differential Input Voltage V I(DIFF) -- - V CC -- V CC V

LM2902,LM324/LM324A,LM224/LM224A Electrical Characteristics (Continued) (VCC = 5.0V, VEE = GND, unless otherwise specified) The following specification apply over the range of -25°C ≤ TA ≤ +85°C for the LM224A; and the 0°C ≤ TA ≤ +70°C for the LM324A Note: 1. VCC=30V for LM224A and LM324A. 2. These parameters, although guaranteed, are not 100% tested in production. Parameter Symbol Conditions LM224A LM324A Unit Input Offset Voltage V IO VCM = 0V to VCC -1.5V VO(P) = 1.4V, RS = 0Ω (Note1) Input Offset Voltage Drift ∆VIO/∆TR S = 0Ω (Note2) - 7.0 20 - 7.0 30 µV/°C Input Offset Current I IO VCM = 0V - - 30 - - 75 nA Input Offset Current Drift ∆IIO/∆TR S = 0Ω (Note2) - 10 200 - 10 300 pA/ °C Input Bias Current I BIAS - - 40 100 - 40 200 nA Input Common-Mode Voltage Range VI(R) Note1 0 - VCC -2.0 0- VCC -2.0 V Large Signal Voltage Gain G V VCC = 15V, RL= 2.0kΩ 25 - - 15 - - V/mV Output Voltage Swing VO(H) Note1 RL = 2kΩ 26 - - 26 - - V RL = 10kΩ 27 28 - 27 28 - V VO(L) VCC = 5V, RL= 10kΩ -5 2 0 -5 2 0 m V Output Current ISOURCE VI(+) = 1V, VI(-) = 0V VCC = 15V, VO(P) = 2V 10 20 - 10 20 - mA ISINK VI(+) = 0V, VI(-) = 1V VCC = 15V, VO(P) = 2V 58 -58 -m A Differential Input Voltage V I(DIFF) -- - V CC -- V CC V

LM2902,LM324/LM324A,LM224/LM224A Mechanical Dimensions Package Dimensions in millimeters 6.40 ±0.20 7.62 0.300 2.54 0.100 #7 #8 #14 0.252 ±0.008 0~15° 0.25 +0.10 –0.05 0.010 +0.004 –0.002 3.30 ±0.30 0.130 ±0.012 3.25 ±0.20 0.128 ±0.008 19.40 ±0.20 0.764 ±0.008 19.80 0.780MAX 5.08 0.200 0.20 0.008 MAX MIN 2.08 0.082() 0.46 ±0.10 0.018 ±0.004 0.059 ±0.004 1.50 ±0.10 14-DIP

LM2902,LM324/LM324A,LM224/LM224A Mechanical Dimensions (Continued) Package Dimensions in millimeters8.56 ±0.20 0.337 ±0.008 1.27 0.050 5.72 0.225 1.55 ±0.10 0.061 ±0.004 0.05 0.002 6.00 ±0.30 0.236 ±0.012 3.95 ±0.20 0.156 ±0.008 0.60 ±0.20 0.024 ±0.008 8.70 0.343MAX #7 #8 0~8 #14 0.47 0.019() 1.80 0.071 MAX0.10 MAX0.004 MAX MIN +0.10-0.05 0.20 +0.004-0.002 0.008 +0.10 -0.050.406 +0.004 -0.0020.016 14-SOP

LM2902,LM324/LM324A,LM224/LM224A

Ordering Information

Product Number Package Operating Temperature LM324N 14-DIP 0 ~ +70°CLM324AN LM324M 14-SOPLM324AM LM2902N 14-DIP -40 ~ +85°CLM2902M 14-SOP LM224N 14-DIP -25 ~ +85°CLM224AN LM224M 14-SOPLM224AM

LM2902,LM324/LM324A,LM224/LM224A 11/19/02 0.0m 001 Stock#DSxxxxxxxx  2002 Fairchild Semiconductor Corporation LIFE SUPPORT POLICY FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. www.fairchildsemi.com DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS.