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NCV2904


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LM358 - LM358  
current to voltage converter using LM358 - current to voltage converter using LM358  
NCV2904 - NCV2904  

LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904 Single Supply Dual Operational Amplifiers
Utilizing circuit designs perfected Quad Operational Amplifiers, these dual operational amplifiers feature power drain, common mode input voltage range extending ground/VEE, single supply split supply operation. LM358 series equivalent one-half LM324. These amplifiers have several distinct advantages over standard operational amplifier types single supply applications. They operate supply voltages high with quiescent currents about one-fifth those associated with MC1741 amplifier basis). common mode input range includes negative supply, thereby eliminating necessity external biasing components many applications. output voltage range also includes negative power supply voltage. Short Circuit Protected Outputs True Differential Input Stage Single Supply Operation: (LM258/LM358) (LM2904, Input Bias Currents Internally Compensated Common Mode Range Extends Negative Supply Single Split Supply Operation Clamps Inputs Increase Ruggedness Device without Affecting Operation Pb-Free Package Available. G-Suffix Denotes Pb-Free Lead Finish
PDIP-8 SUFFIX CASE
SO-8 SUFFIX CASE
Micro8] DMR2 SUFFIX CASE 846A
CONNECTIONS
Output Inputs VEE/Gnd
Output Inputs
(Top View)
ORDERING INFORMATION
detailed ordering shipping information package dimensions section page this data sheet.
DEVICE MARKING INFORMATION
general marking information device marking section page this data sheet.
Semiconductor Components Industries, LLC, 2004
January, 2004 Rev.
Publication Order Number: LM358/D
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
VCC(max) VEE(max) VEE/Gnd VCC(max)
Single Supply Figure
Split Supplies
Output
Bias Circuitry Common Both Amplifiers
Inputs
VEE/Gnd
Figure Representative Schematic Diagram (One-Half Circuit Shown)
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
MAXIMUM RATINGS +25°C, unless otherwise noted.)
Rating Power Supply Voltages Single Supply Split Supplies Input Differential Voltage Range (Note Input Common Mode Voltage Range (Note Output Short Circuit Duration Junction Temperature Thermal Resistance, Junction-to-Air (Note Storage Temperature Range Protection Human Body Model Machine Model Operating Ambient Temperature Range LM258 LM358 LM2904/LM2904A LM2904V, NCV2904 (Note Symbol VCC, VIDR VICR RqJA Tstg Vesd 2000 +105 +125 LM258 LM358 -0.3 LM2904, LM2904A LM2904V, NCV2904 -0.3 Continuous +125 °C/W Unit
Split Power Supplies. Supply Voltages less than LM258/358 LM2904, absolute maximum input voltage equal supply voltage. RqJA Case 846A. NCV2904 qualified automotive use.
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
ELECTRICAL CHARACTERISTICS (VCC GND, 25°C, unless otherwise noted.)
LM258 Characteristic Input Offset Voltage LM2904, -1.7 25°C Thigh (Note Tlow (Note Average Temperature Coefficient Input Offset Voltage Thigh Tlow (Note Input Offset Current Thigh Tlow (Note Input Bias Current Thigh Tlow (Note Average Temperature Coefficient Input Offset Current Thigh Tlow (Note Input Common Mode Voltage Range (Note LM2904, LM2904, Thigh Tlow Differential Input Voltage Range Large Signal Open Loop Voltage Gain Large Swing, Thigh Tlow (Note Channel Separation kHz, Input Referenced Common Mode Rejection Power Supply Rejection Output Voltage-High Limit Thigh Tlow (Note 25°C LM2904, LM2904, Output Voltage-Low Limit Thigh Tlow (Note Output Source Current +1.0 Output Sink Current -1.0 -1.0 Output Short Circuit Ground (Note Power Supply Current (Total Device) Thigh Tlow (Note LM2904, Symbol LM358 Unit
DVIO/DT
mV/°C
DIIO/DT
-150 -300
-250 -500
pA/°C
VICR
28.3
28.3
VIDR AVOL
-120
-120
V/mV
LM258: Tlow -25°C, Thigh +85°C LM358: Tlow 0°C, Thigh +70°C LM2904V NCV2904: Tlow -40°C, Thigh +125°C LM2904/LM2904A: Tlow -40°C, Thigh +105°C NCV2904 qualified automotive use. input common mode voltage either input signal voltage should allowed negative more than upper common mode voltage range -1.7 Short circuits from output cause excessive heating eventual destruction. Destructive dissipation result from simultaneous shorts amplifiers.
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
ELECTRICAL CHARACTERISTICS (VCC Gnd, 25°C, unless otherwise noted.)
LM2904 Characteristic Input Offset Voltage LM2904, -1.7 25°C Thigh (Note Tlow (Note Average Temperature Coefficient Input Offset Voltage Thigh Tlow (Note Input Offset Current Thigh Tlow (Note Input Bias Current Thigh Tlow (Note Average Temperature Coefficient Input Offset Current Thigh Tlow (Note Input Common Mode Voltage Range (Note LM2904, LM2904, Thigh Tlow Differential Input Voltage Range Large Signal Open Loop Voltage Gain Large Swing, Thigh Tlow (Note Channel Separation kHz, Input Referenced Common Mode Rejection Power Supply Rejection Output Voltage-High Limit Thigh Tlow (Note 25°C LM2904, LM2904, Output Voltage-Low Limit Thigh Tlow (Note Output Source Current +1.0 Output Sink Current -1.0 -1.0 Output Short Circuit Ground (Note Power Supply Current (Total Device) Thigh Tlow (Note LM2904, Symbol LM2904A LM2904V, NCV2904 Unit
DVIO/DT
mV/°C
DIIO/DT
-250 -500
-100 -250
-250 -500
pA/°C
VICR
-120
24.3
-120
24.3
-120
24.3
VIDR AVOL
V/mV
LM258: Tlow -25°C, Thigh +85°C LM358: Tlow 0°C, Thigh +70°C LM2904V NCV2904: Tlow -40°C, Thigh +125°C LM2904/LM2904A: Tlow -40°C, Thigh +105°C NCV2904 qualified automotive use. input common mode voltage either input signal voltage should allowed negative more than upper common mode voltage range -1.7 Short circuits from output cause excessive heating eventual destruction. Destructive dissipation result from simultaneous shorts amplifiers.
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
CIRCUIT DESCRIPTION LM358 series made using internally compensated, two-stage operational amplifiers. first stage each consists differential input devices with input buffer transistors differential single ended converter first stage performs only first stage gain function also performs level shifting transconductance reduction functions. reducing transconductance, smaller compensation capacitor (only employed, thus saving chip area. transconductance reduction accomplished splitting collectors Q18. Another feature this input stage that input common mode range include negative supply ground, single supply operation, without saturating either input devices differential single-ended converter. second stage consists standard current source load amplifier stage. Each amplifier biased from internal-voltage regulator which temperature coefficient thus giving each amplifier good temperature characteristics well excellent power supply rejection.
25°C V/DIV
ms/DIV
Figure Large Signal Voltage Follower Response
AVOL, OPEN LOOP VOLTAGE GAIN (dB)
INPUT VOLTAGE VCC/VEE, POWER SUPPLY VOLTAGES Negative Positive
FREQUENCY (Hz) 25°C
Figure Input Voltage Range
Figure Large-Signal Open Loop Voltage Gain
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
OUTPUT VOLTAGE RANGE (Vpp OUTPUT VOLTAGE (mV) FREQUENCY (kHz) 1000 Gain -100 TIME (ms) Input 25°C Output
Figure Large-Signal Frequency Response
Figure Small Signal Voltage Follower Pulse Response (Noninverting)
POWER SUPPLY CURRENT (mA) VCC, POWER SUPPLY VOLTAGE INPUT BIAS CURRENT (nA) 25°C
VCC, POWER SUPPLY VOLTAGE
Figure Power Supply Current versus Power Supply Voltage
Figure Input Bias Current versus Supply Voltage
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
Vref
MC1403
LM358
Vref
LM358
For: 0.01
Figure Voltage Reference
Figure Wien Bridge Oscillator
Vref Hysteresis
LM358
LM358
LM358
VinL Vref
VinH
LM358
Vref VinL VinH Vref (VOH VOL)
Figure High Impedance Differential Amplifier
Figure Comparator with Hysteresis
For: Vref
LM358
LM358
LM358
Vref
Vref Bandpass Output
Vref
Notch Output 0.001
LM358
Vref
Where: Center Frequency Gain Passband Notch Gain
Figure Bi-Quad Filter
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
Vref
LM358
Vref
Given:
center frequency A(fo) gain center frequency
Choose value Vref Vref
Triangle Wave Output Vref
Then:
A(fo)
LM358
LM358
Square Wave Output
less than error from operational amplifier. Where expressed
source impedance varies, filter preceded with voltage follower buffer stabilize filter parameters.
Figure Function Generator
Figure Multiple Feedback Bandpass Filter
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
ORDERING INFORMATION
Device LM358D LM358DR2 LM358DR2G LM358DMR2 LM358N LM358NG LM258D LM258DR2 LM258DMR2 LM258N LM2904D LM2904DR2 LM2904DMR2 LM2904N LM2904ADMR2 LM2904AN LM2904VD LM2904VDR2 LM2904VDMR2 LM2904VN NCV2904DR2* NCV2904DMR2* Package SO-8 SO-8 SO-8 (Pb-Free) Micro8 PDIP-8 PDIP-8 (Pb-Free) SO-8 SO-8 Micro8 PDIP-8 SO-8 SO-8 Micro8 PDIP-8 Micro8 PDIP-8 SO-8 SO-8 Micro8 PDIP-8 SO-8 Micro8 -40°C +125°C -40°C +105°C -25°C +85°C Operating Temperature Range +70°C Shipping Units/Rail 2500 Tape Reel 2500 Tape Reel 4000 Tape Reel Units/Rail Units/Rail Units/Rail 2500 Tape Reel 4000 Tape Reel Units/Rail Units/Rail 2500 Tape Reel 2500 Tape Reel Units/Rail 4000 Tape Reel Units/Rail Units/Rail 2500 Tape Reel 4000 Tape Reel Units/Rail 2500 Tape Reel 4000 Tape Reel
*NCV2904 qualified automotive use. information tape reel specifications, including part orientation tape sizes, please refer Tape Reel Packaging Specifications Brochure, BRD8011/D.
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
MARKING DIAGRAMS
PDIP-8 SUFFIX CASE LMx58N YYWW LM2904N YYWW
PDIP-8 SUFFIX CASE LM2904AN YYWW
PDIP-8 SUFFIX CASE
LM2904VN YYWW
SO-8 SUFFIX CASE LMx58 ALYW 2904 ALYW
SO-8 SUFFIX CASE 2904V ALYW
Micro8 DMR2 SUFFIX CASE 846A 2904 904A 904V
Assembly Location Wafer Year Work Week
*This diagram also applies NCV2904
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
PACKAGE DIMENSIONS
PDIP-8 SUFFIX CASE 626-05 ISSUE
NOTES: DIMENSION CENTER LEAD WHEN FORMED PARALLEL. PACKAGE CONTOUR OPTIONAL (ROUND SQUARE CORNERS). DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. MILLIMETERS 9.40 10.16 6.10 6.60 3.94 4.45 0.38 0.51 1.02 1.78 2.54 0.76 1.27 0.20 0.30 2.92 3.43 7.62 0.76 1.01 INCHES 0.370 0.400 0.240 0.260 0.155 0.175 0.015 0.020 0.040 0.070 0.100 0.030 0.050 0.008 0.012 0.115 0.135 0.300 0.030 0.040
NOTE
SEATING PLANE
0.13 (0.005)
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
PACKAGE DIMENSIONS
SO-8 SUFFIX CASE 751-07 ISSUE
NOTES: DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. CONTROLLING DIMENSION: MILLIMETER. DIMENSION INCLUDE MOLD PROTRUSION. MAXIMUM MOLD PROTRUSION 0.15 (0.006) SIDE. DIMENSION DOES INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL 0.127 (0.005) TOTAL EXCESS DIMENSION MAXIMUM MATERIAL CONDITION. 751-01 THRU 751-06 OBSOLETE. STANDARD 751-07. MILLIMETERS 4.80 5.00 3.80 4.00 1.35 1.75 0.33 0.51 1.27 0.10 0.25 0.19 0.25 0.40 1.27 0.25 0.50 5.80 6.20 INCHES 0.189 0.197 0.150 0.157 0.053 0.069 0.013 0.020 0.050 0.004 0.010 0.007 0.010 0.016 0.050 0.010 0.020 0.228 0.244
0.25 (0.010)
0.25 (0.010)
SEATING PLANE
0.10 (0.004)
SOLDERING FOOTPRINT*
1.52 0.060 0.275 0.155
0.024
1.270 0.050
SCALE inches
SO-8
*For additional information Pb-Free strategy soldering details, please download Semiconductor Soldering Mounting Techniques Reference Manual, SOLDERRM/D.
LM358, LM258, LM2904, LM2904A, LM2904V, NCV2904
PACKAGE DIMENSIONS
Micro8 DMR2 SUFFIX CASE 846A-02 ISSUE
NOTES: DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. CONTROLLING DIMENSION: MILLIMETER. DIMENSION DOES INCLUDE MOLD FLASH, PROTRUSIONS GATE BURRS. MOLD FLASH, PROTRUSIONS GATE BURRS SHALL EXCEED 0.15 (0.006) SIDE. DIMENSION DOES INCLUDE INTERLEAD FLASH PROTRUSION. INTERLEAD FLASH PROTRUSION SHALL EXCEED 0.25 (0.010) SIDE. 846A-01 OBSOLETE, STANDARD 846A-02. MILLIMETERS 2.90 3.10 2.90 3.10 1.10 0.25 0.40 0.65 0.05 0.15 0.13 0.23 4.75 5.05 0.40 0.70 INCHES 0.114 0.122 0.114 0.122 0.043 0.010 0.016 0.026 0.002 0.006 0.005 0.009 0.187 0.199 0.016 0.028
0.08 (0.003)
PLANE 0.038 (0.0015)
SEATING
SOLDERING FOOTPRINT*
1.04 0.041
0.38 0.015
3.20 0.126
4.24 0.167
5.28 0.208
0.65 0.0256
SCALE
inches
Micro8E
*For additional information Pb-Free strategy soldering details, please download Semiconductor Soldering Mounting Techniques Reference Manual, SOLDERRM/D.
Micro8 trademark International Rectifier.
Semiconductor registered trademarks Semiconductor Components Industries, (SCILLC). SCILLC reserves right make changes without further notice products herein. SCILLC makes warranty, representation guarantee regarding suitability products particular purpose, does SCILLC assume liability arising application product circuit, specifically disclaims liability, including without limitation special, consequential incidental damages. "Typical" parameters which provided SCILLC data sheets and/or specifications vary different applications actual performance vary over time. operating parameters, including "Typicals" must validated each customer application customer's technical experts. SCILLC does convey license under patent rights rights others. SCILLC products designed, intended, authorized components systems intended surgical implant into body, other applications intended support sustain life, other application which failure SCILLC product could create situation where personal injury death occur. Should Buyer purchase SCILLC products such unintended unauthorized application, Buyer shall indemnify hold SCILLC officers, employees, subsidiaries, affiliates, distributors harmless against claims, costs, damages, expenses, reasonable attorney fees arising directly indirectly, claim personal injury death associated with such unintended unauthorized use, even such claim alleges that SCILLC negligent regarding design manufacture part. SCILLC Equal Opportunity/Affirmative Action Employer. This literature subject applicable copyright laws resale manner.
PUBLICATION ORDERING INFORMATION
LITERATURE FULFILLMENT: Literature Distribution Center Semiconductor P.O. 5163, Denver, Colorado 80217 Phone: 303-675-2175 800-344-3860 Toll Free USA/Canada Fax: 303-675-2176 800-344-3867 Toll Free USA/Canada Email: orderlit@onsemi.com American Technical Support: 800-282-9855 Toll Free USA/Canada Japan: Semiconductor, Japan Customer Focus Center 2-9-1 Kamimeguro, Meguro-ku, Tokyo, Japan 153-0051 Phone: 81-3-5773-3850 Semiconductor Website: http://onsemi.com Order Literature: http://www.onsemi.com/litorder additional information, please contact your local Sales Representative.
LM358/D

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