LM358 CADEKA | Alldatasheet

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©2011 CADEKA Microcircuits LLC www.cadeka.com LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers

FEATURES

n 550kHz unity gain bandwidth n 0.5mA supply current n 20nA input bias current n 2mV input offset voltage n 3V to 36V single supply voltage range n ±1.5V to ±18V dual supply voltage range n Input common mode voltage range includes ground n 0V to VS-1.5V output voltage swing n Improved replacements for industry standard LM358 and LM324 n LM358: Pb-free SOIC-8 n LM324: Pb-free SOIC-14

APPLICATIONS

n General purpose controllers n General purpose instruments General Description The LM358 (dual), and LM324 (quad) are voltage feedback amplifiers that are internally frequency compensated to provide unity gain stability. At unity gain (G=1), these amplifiers offer 550kHz of bandwidth. They consume only 0.5mA of supply current over the entire power supply operating range. The LM358, and LM324 are specifically designed to operate from single or dual supply voltages. The LM358, and LM324 offer a common mode voltage range that includes ground and a wide output voltage swing. The combination of low-power, high supply voltage range, and low supply current make these amplifiers well suited for many general purpose applications and as alternatives to several industry standard amplifiers on the market today. Typical Application - Voltage Controlled Oscillator (VCO)

Ordering Information

Part Number Package Pb-Free RoHS Compliant Operating Temperature Range Packaging Method LM358ISO8X SOIC-8 Yes Yes -40°C to +85°C Reel LM324ISO14X SOIC-14 Yes Yes -40°C to +85°C Reel Moisture sensitivity level for all parts is MSL-1. VCC V+/2 R 100k 51k 51k 0.05µF Output 2 51k R/2 50k CLCx050 – CLCx050 Output 1 100k 10k LM358 LM358

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 2 LM358 Pin Configuration Pin No. Pin Name Description

1 OUT1 Output, channel 1

2 -IN1 Negative input, channel 1 3 +IN1 Positive input, channel 1 4 -VS Negative supply 5 +IN2 Positive input, channel 2 6 -IN2 Negative input, channel 2

7 OUT2 Output, channel 2

Pin No. Pin Name Description 2 -IN1 Negative input, channel 1 3 +IN1 Positive input, channel 1 4 +VS Positive supply 5 +IN2 Positive input, channel 2 6 -IN2 Negative input, channel 2

8 OUT3 Output, channel 3

9 -IN3 Negative input, channel 3 10 +IN3 Positive input, channel 3 11 -VS Negative supply 12 +IN4 Positive input, channel 4 13 -IN4 Negative input, channel 4

14 OUT4 Output, channel 4

+IN1 -IN2 +IN2 -IN1 OUT1 -VS +VS LM324 Pin Configuration 4 11 -IN4 +IN1 OUT4 +IN4 -IN1 OUT1 7OUT2 -IN2 +IN2 10 +IN3 -IN3 OUT3 +VS -VS

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 3 Absolute Maximum Ratings The safety of the device is not guaranteed when it is operated above the “Absolute Maximum Ratings”. The device should not be operated at these “absolute” limits. Adhere to the “Recommended Operating Conditions” for proper de - vice function. The information contained in the Electrical Characteristics tables and Typical Performance plots reflect the operating conditions noted on the tables and plots. Parameter Min Max Unit Supply Voltage 0 40 V Differential Input Voltage 40 V Input Voltage -0.3 40 V Power Dissipation (TA = 25°C) - SOIC-8 550 mW Power Dissipation (TA = 25°C) - SOIC-14 800 mW Reliability Information Parameter Min Typ Max Unit Junction Temperature 150 °C Storage Temperature Range -65 150 °C Lead Temperature (Soldering, 10s) 260 °C Package Thermal Resistance SOIC-8 100 °C/W SOIC-14 88 °C/W Notes: Package thermal resistance (qJA), JDEC standard, multi-layer test boards, still air. Recommended Operating Conditions Parameter Min Typ Max Unit Operating Temperature Range -40 +85 °C Supply Voltage Range 3 (±1.5) 36 (±18) V

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 4

Electrical Characteristics

TA = 25°C (if bold, TA = -40 to +85°C), Vs = +5V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ to VS/2, G = 2; unless otherwise noted. Symbol Parameter Conditions Min Typ Max Units Frequency Domain Response UGBWSS Unity Gain Bandwidth G = +1, VOUT = 0.2Vpp, VS = 5V 330 kHz G = +1, VOUT = 0.2Vpp, VS = 30V 550 kHz BWSS -3dB Bandwidth G = +2, VOUT = 0.2Vpp, VS = 5V 300 kHz G = +1, VOUT = 0.2Vpp, VS = 30V 422 kHz BWLS Large Signal Bandwidth G = +2, VOUT = 1Vpp, VS = 5V 107 kHz G = +2, VOUT = 2Vpp, VS = 30V 76 kHz Time Domain Response tR, tF Rise and Fall Time VOUT = 1V step; (10% to 90%), VS = 5V 4 µs VOUT = 2V step; (10% to 90%), VS = 30V 5.6 µs OS Overshoot VOUT = 0.2V step 1 % SR Slew Rate 1V step, VS = 5V 200 V/ms 4V step, VS = 30V 285 V/ms Distortion/Noise Response THD Total Harmonic Distortion VOUT = 2Vpp, f = 1kHz, G = 20dB, CL = 100pF, VS = 30V 0.015 % en Input Voltage Noise > 10kHz, VS = 5V 45 nV/√Hz > 10kHz, VS = 30V 40 nV/√Hz XTALK Crosstalk Channel-to-channel, 1kHz to 20kHz 120 dB DC Performance VIO Input Offset Voltage (1) VOUT = 1.4V, RS = 0Ω, VS = 5V to 30V 2 5 mV 7 mV dVIO Average Drift 7 µV/°C Ib Input Bias Current (1) VCM = 0V 20 100 nA 200 nA IOS Input Offset Current (1) VCM = 0V 5 30 nA 100 nA PSRR Power Supply Rejection Ratio (1) DC, VS = 5V to 30V 70 100 dB 60 dB AOL Open-Loop Gain (1) +VS = 15V, RL = ≥2kΩ, VOUT = 1V to 11V 85 100 dB 80 dB Supply Current, LM358 (1) RL = ∞, VS = 30V 0.7 2.0 mA RL = ∞, VS = 5V 0.5 1.2 mA Supply Current, LM324 (1) RL = ∞, VS = 30V 1.0 3.0 mA RL = ∞, VS = 5V 0.7 1.2 mA Input Characteristics CMIR Common Mode Input Range (1,3) +VS = 30V 0 +VS - 1.5 V CMRR Common Mode Rejection Ratio (1) DC, VCM = 0V to (+VS - 1.5V) 60 70 dB 60 dB Output Characteristics VOH Output Voltage Swing, High (1) +VS = 30V, RL = 2kΩ 26 V 26 V +VS = 30V, RL = 10kΩ 27 28 V 27 V VOL Output Voltage Swing, Low (1) +VS = 5V, RL = 10kΩ 5 20 mV 30 mV

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 5 Electrical Characteristics continued TA = 25°C (if bold, TA = -40 to +85°C), Vs = +5V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ to VS/2, G = 2; unless otherwise noted. Symbol Parameter Conditions Min Typ Max Units ISOURCE Output Current, Sourcing (1) VIN+ = 1V, VIN- = 0V, +VS = 15V, VOUT = 2V 20 40 mA ISINK Output Current, Sinking (1) VIN+ = 0V, VIN- = 1V, +VS = 15V, VOUT = 2V 10 15 mA VIN+ = 0V, VIN- = 1V, +VS = 15V, VOUT = 0.2V 12 50 μA ISC Short Circuit Output Current (1) +VS = 15V 40 60 mA Notes: 1. 100% tested at 25°C. (Limits over the full temperature range are guaranteed by design.) 2. The input common mode voltage of either input signal voltage should be kept > 0.3V at 25°C. The upper end of the common-mode voltage range is +VS - 1.5V at 25°C, but either or both inputs can go to +36V without damages, independent of the magnitude of VS.

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 6 Typical Performance Characteristics TA = 25°C, +Vs = 30V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ, G = 2; unless otherwise noted. Frequency Response vs. VOUT -3dB Bandwidth vs. VOUT Frequency Response vs. CL Frequency Response vs. RL Non-Inverting Frequency Response Inverting Frequency Response -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) G = 1 Rf = 0 G = 2 G = 5 G = 10 VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) G = -1 G = -2 G = -5 G = -10 VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) CL = 10nF Rs = 0Ω CL = 5nF Rs = 0Ω CL = 1nF Rs = 0Ω CL = 100pF Rs = 0Ω VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) RL = 1K VOUT = 0.2Vpp RL = 2K RL = 5K RL = 10K -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) Vout = 2Vpp Vout = 4Vpp 100 200 300 400 500 -3dB Bandwidth (KHz) VOUT (VPP)

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 7 Typical Performance Characteristics TA = 25°C, +Vs = 30V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ, G = 2; unless otherwise noted. Frequency Response vs. VOUT at VS = 5V -3dB Bandwidth vs. VOUT at VS = 5V Frequency Response vs. CL at VS = 5V Frequency Response vs. RL at VS = 5V Non-Inverting Frequency Response at VS = 5V Inverting Frequency Response at VS = 5V -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) G = 1 Rf = 0 G = 2 G = 5 G = 10 VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) G = -1 G = -2 G = -5 G = -10 VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) CL = 10nF Rs = 0Ω CL = 5nF Rs = 0Ω CL = 1nF Rs = 0Ω CL = 100pF Rs = 0Ω VOUT = 0.2Vpp -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) RL = 1K VOUT = 0.2Vpp RL = 2K RL = 5K RL = 10K -25 -20 -15 -10 0.01 0.1 1 10 Normalized Gain (dB) Frequency (MHz) Vout = 1Vpp Vout = 2Vpp 100 150 200 250 300 350 400 -3dB Bandwidth (KHz) VOUT (VPP)

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 8 Typical Performance Characteristics - Continued TA = 25°C, +Vs = 30V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ, G = 2; unless otherwise noted. Supply Current vs. Supply Voltage Input Voltage Range vs. Power Supply Small Signal Pulse Response at VS = 5V Large Signal Pulse Response at VS = 5V Small Signal Pulse Response Large Signal Pulse Response 2.35 2.40 2.45 2.50 2.55 2.60 2.65 0 10 20 30 40 50 Output Voltage (V) Time (us) 0.00 1.00 2.00 3.00 4.00 5.00 0 10 20 30 40 50 Output Voltage (V) Time (us) 2.35 2.40 2.45 2.50 2.55 2.60 2.65 0 10 20 30 40 50 Output Voltage (V) Time (us) 1.00 1.50 2.00 2.50 3.00 3.50 4.00 0 10 20 30 40 50 Output Voltage (V) Time (us) 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 0 5 10 15 20 25 30 35 40 Supply Current (mA) Supply Voltage (V) CLC4050 CLC2050 CLC1050 VOUT = 0.2Vpp 0 5 10 15 Input Voltage (+/-Vdc) Power Supply Voltage (+/-Vdc) NEGATIVE POSITIVE

LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A ©2011 CADEKA Microcircuits LLC www.cadeka.com 9 Typical Performance Characteristics - Continued TA = 25°C, +Vs = 30V, -Vs = GND, Rf = Rg =2kΩ, RL = 2kΩ, G = 2; unless otherwise noted. Functional Block Diagram Voltage Gain vs. Supply Voltage Input Current vs. Temperature 105 120 0 8 16 24 32 40 Voltage Gain (dB) Power Supply Voltage (V) RL=2K RL=20K VOUT = 0.2Vpp -50 -25 0 25 50 75 100 125 Input Current (nA) Temperature (°C) Q8 Q9 Q10 Q11 50µA 100µA6µA 4µA Q13 Rsc Output Q12 VCC Cc Inputs

For additional information regarding our products, please visit CADEKA at: cadeka.com CADEKA, the CADEKA logo design, COMLINEAR, and the COMLINEAR logo design are trademarks or registered trademarks of CADEKA Microcircuits LLC. All other brand and product names may be trademarks of their respective companies. CADEKA reserves the right to make changes to any products and services herein at any time without notice. CADEKA does not assume any responsibility or liability arising out of the application or use of any product or service described herein, except as expressly agreed to in writing by CADEKA; nor does the purchase, lease, or use of a product or service from CADEKA convey a license under any patent rights, copyrights, trademark rights, or any other of the intellectual property rights of CADEKA or of third parties. Copyright ©2011 by CADEKA Microcircuits LLC. All rights reserved. CADEKA Headquarters Loveland, Colorado T: 970.663.5452 T: 877.663.5452 (toll free) Data Sheet LM358, LM324 Low Power, 3V to 36V, Single/Dual/Quad Amplifiers Rev 1A Mechanical Dimensions