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Order this document by MC4558AC/D Dual Wide Bandwidth Operational Amplifiers The MC4558AC, C combine all the outstanding features of the MC1458 and, in addition offer three times the unity gain bandwidth of the industry standard. * 2.5 MHz Unity Gain Bandwidth Guaranteed (MC4558AC) MC4558AC MC4558C DUAL WIDE BANDWIDTH OPERATIONAL AMPLIFIERS SEMICONDUCTOR TECHNICAL DATA * * * * * 2.0 MHz Unity Gain Bandwidth Guaranteed (MC4558C) Internally Compensated Short Circuit Protection Gain and Phase Match between Amplifiers Low Power Consumption 8 MAXIMUM RATINGS (TA = +25C, unless otherwise noted.) Rating Power Supply Voltage Input Differential Voltage Input Common Mode Voltage (Note 1) Output Short Circuit Duration (Note 2) Ambient Temperature Range Storage Temperature Range Junction Temperature Symbol VCC VEE VID VICM tSC TA Tstg TJ MC4558AC +22 -22 30 15 Continuous 0 to +70 -55 to +125 150 C C C MC4558C +18 -18 Unit Vdc V V 8 1 P1 SUFFIX PLASTIC PACKAGE CASE 626 1 D SUFFIX PLASTIC PACKAGE CASE 751 (SO-8) NOTES: 1. For supply voltages less than 15 V, the absolute maximum input voltage is equal to the supply voltage. 2. Short circuit may be to ground or either supply. PIN CONNECTIONS Representative Schematic Diagram (1/2 of Circuit Shown) 2.9 k VCC Output A Inputs A VEE 1 2 3 4 8 VCC Output B Inputs B - + A B - + 7 6 5 Inverting Input - Input + Noninverting 620 150 25 Output 25 (Top View) 10 pF ORDERING INFORMATION Device VEE MC4558CD MC4558ACP1,CP1 TA = 0 to +70C Operating Temperature Range Package SO-8 Plastic DIP 5.0 k 53 pF 5.0 k 680 1.84 k 20 k 50 k (c) Motorola, Inc. 1996 Rev 5 MOTOROLA ANALOG IC DEVICE DATA 1 MC4558AC MC4558C FREQUENCY CHARACTERISTICS (VCC = +15 V, VEE = -15 V, TA = 25C) MC4558AC Characteristic Unity Gain Bandwidth Symbol BW Min 2.5 Typ 2.8 Max - Min 2.0 MC4558C Typ 2.8 Max - Unit MHz ELECTRICAL CHARACTERISTICS (VCC = 15 V, VEE = -15 V, TA = 25C, unless otherwise noted.) Input Offset Voltage (RS 10 k) Input Offset Current Input Bias Current (Note 1) Input Resistance Input Capacitance Common Mode Input Voltage Range Large Signal Voltage Gain (VO = 10 V, RL = 2.0 k) Output Resistance Common Mode Rejection (RS 10 k) Supply Voltage Rejection Ratio (RS 10 k) Output Voltage Swing (RL 10 k) (RL 2.0 k) Output Short Circuit Current Supply Currents (Both Amplifiers) Power Consumption (Both Amplifiers) Transient Response (Unity Gain) (VI = 20 mV, RL 2.0 k, CL 100 pF) Rise Time (VI = 20 mV, RL 2.0 k, CL 100 pF) Overshoot (VI = 10 V, RL 2.0 k, CL 100 pF) Slew Rate Input Offset Voltage (RS 10 k) Input Offset Current (TA = Thigh) (TA = Tlow) (TA = 0 to +70C) Input Bias Current (TA = Thigh) (TA = Tlow) (TA = 0 to +70C) Common Mode Input Voltage Range Large Signal Voltage Gain (VO = 10 V, RL = 2.0 k) Common Mode Rejection (RS 10 k) Supply Voltage Rejection Ratio (RS 10 k) Output Voltage Swing (RL 10 k) (RL 2.0 k) Supply Currents (Both Amplifiers) (TA = Thigh) (TA = Tlow) Power Consumption (Both Amplifiers) (TA = Thigh) (TA = Tlow) NOTES: 1. IIB is out of the amplifier due to PNP input transistors. 2. Thigh = +70C, Tlow = 0C. VIO IIO IIB ri Ci VICR AVOL ro CMR PSRR VO - - - 0.3 - 12 50 - 70 - 12 10 10 - - - - 1.5 1.0 20 80 2.0 1.4 13 200 75 90 30 14 13 20 2.3 70 0.3 15 1.6 5.0 200 500 - - - - - - 150 - - 40 5.0 150 - - - - - - 0.3 - 12 20 - 70 - 12 10 10 - - - - 1.0 2.0 20 80 2.0 1.4 13 200 75 90 30 14 13 20 2.3 70 0.3 15 1.6 6.0 200 500 - - - - - - 150 - - 40 5.6 170 - - - mV nA nA M pF V V/mV dB V/V V ISC ID PC tTLH os SR mA mA mW s % V/s ELECTRICAL CHARACTERISTICS (VCC = +15 V, VEE = -15 V, TA = Thigh to Tlow, unless otherwise noted. See Note 2.) VIO IIO - - - IIB - - - VICR AVOL CMR PSRR VO 12 25 70 - 12 10 - - PC - - - - 135 180 - - - - 150 200 30 300 - 13 - 90 30 14 13 - - 500 1500 - - - - 150 - - 4.5 6.0 - - - - 15 - - 12 10 - - - - - - - - - 14 13 - - - - 800 - - - - - - mA 5.0 6.7 mW V V/mV dB V/V V 7.0 85 - 200 500 - - - - - - - - - 300 nA - 1.0 6.0 - - 7.5 mV nA ID 2 MOTOROLA ANALOG IC DEVICE DATA MC4558AC MC4558C Figure 1. Burst Noise versus Source Resistance 1000 en,INPUT NOISE (Peak) (V) BW = 1.0 Hz to 1.0 kHz 100 e n, INPUT NOISE (Peak) ( V) 100 Figure 2. RMS Noise versus Source Resistance BW = 1.0 Hz to 1.0 kHz 10 10 1.0 0 10 100 1.0 k 10 k 100 k 1.0 M RS, SOURCE RESISTANCE () 0.1 10 100 1.0 10 k 100 k 1.0 M RS, SOURCE RESISTANCE () Figure 3. Output Noise versus Source Resistance 10 en, OUTPUT NOISE (RMS) (mV) AV = 1000 1.0 100 10 0.1 1.0 e n, INPUT NOISE ( nV/ Hz ) 140 120 100 80 60 40 20 0 10 Figure 4. Spectral Noise Density AV = 10, RS = 100 k 0.01 10 100 1.0 k 10 k 100 k 1.0 M RS, SOURCE RESISTANCE () 100 1.0 k f, FREQUENCY (Hz) 10 k 100 k Figure 5. Burst Noise Test Circuit Positive Threshold Voltage - 100 k + 1.0 k 100 k Operational Amplifier Under Test Low Pass Filter 1.0 Hz to 1.0 kHz Negative Threshold Voltage Unlike conventional peak reading or RMS meters, this system was especially designed to provide the quick response time essential to burst (popcorn) noise testing. The test time employed is 10 sec and the 20 V peak limit refers to the operational amplifier input thus eliminating errors in the closed loop gain factor of the operational amplifier. - + X 500 X2 100 k + - To Pass / Fail Indicator MOTOROLA ANALOG IC DEVICE DATA 3 MC4558AC MC4558C Figure 6. Open Loop Frequency Response 180 PHASE MARGIN (DEGREES) A VOL , VOLTAGE GAIN (dB) 140 120 100 80 60 40 20 0 -20 1.0 160 140 120 100 80 60 40 20 10 100 1.0 k 10 k 100 k 1.0 M 10 M f, FREQUENCY (Hz) 0 1.0 10 100 1.0 k 10 k 100 k 1.0 M 10 M f, FREQUENCY (Hz) Unity Gain Figure 7. Phase Margin versus Frequency Figure 8. Positive Output Voltage Swing versus Load Resistance 15 VO,OUTPUT VOLTAGE (Vpeak ) 13 11 9.0 7.0 5.0 3.0 1.0 100 500 6.0 V 3.0 V 1.0 k 2.0 k 10 k RL, LOAD RESISTANCE () 20 k 50 k 100 k 12 V 9.0 V 15 V Supplies VO, OUTPUT VOLTAGE (Vpp ) 15 13 11 9.0 7.0 5.0 3.0 1.0 100 Figure 9. Negative Output Voltage Swing versus Load Resistance 15 V Supplies 12 V 9.0 V 6.0 V 3.0 V 500 1.0 k 2.0 k 10 k RL, LOAD RESISTANCE () 20 k 50 k 100 k Figure 10. Power Bandwidth (Large Signal Swing versus Frequency) 28 VO, OUTPUT VOLTAGE (Vpp ) 24 20 16 12 8.0 4.0 0 10 100 1.0 k 10 k f, FREQUENCY (Hz) 100 k 1.0 M Voltage Follower THD < 5% VI Figure 11. Transient Response Test Circuit To Scope (Input) - + RL CL To Scope (Output) 4 MOTOROLA ANALOG IC DEVICE DATA MC4558AC MC4558C OUTLINE DIMENSIONS P1 SUFFIX PLASTIC PACKAGE CASE 626-05 ISSUE K 8 5 -B- 1 4 NOTES: 1. DIMENSION L TO CENTER OF LEAD WHEN FORMED PARALLEL. 2. PACKAGE CONTOUR OPTIONAL (ROUND OR SQUARE CORNERS). 3. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. DIM A B C D F G H J K L M N MILLIMETERS MIN MAX 9.40 10.16 6.10 6.60 3.94 4.45 0.38 0.51 1.02 1.78 2.54 BSC 0.76 1.27 0.20 0.30 2.92 3.43 7.62 BSC --- 10_ 0.76 1.01 INCHES MIN MAX 0.370 0.400 0.240 0.260 0.155 0.175 0.015 0.020 0.040 0.070 0.100 BSC 0.030 0.050 0.008 0.012 0.115 0.135 0.300 BSC --- 10_ 0.030 0.040 F NOTE 2 -A- L C -T- SEATING PLANE J N D K M M H G 0.13 (0.005) TA M B M D SUFFIX PLASTIC PACKAGE CASE 751-05 (SO-8) ISSUE R A 8 D 5 C E 1 4 H 0.25 M B M h B C e A SEATING PLANE X 45 _ NOTES: 1. DIMENSIONING AND TOLERANCING PER ASME Y14.5M, 1994. 2. DIMENSIONS ARE IN MILLIMETERS. 3. DIMENSION D AND E DO NOT INCLUDE MOLD PROTRUSION. 4. MAXIMUM MOLD PROTRUSION 0.15 PER SIDE. 5. DIMENSION B DOES NOT INCLUDE MOLD PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0.127 TOTAL IN EXCESS OF THE B DIMENSION AT MAXIMUM MATERIAL CONDITION. DIM A A1 B C D E e H h L MILLIMETERS MIN MAX 1.35 1.75 0.10 0.25 0.35 0.49 0.18 0.25 4.80 5.00 3.80 4.00 1.27 BSC 5.80 6.20 0.25 0.50 0.40 1.25 0_ 7_ q L 0.10 A1 0.25 B M CB S A S q MOTOROLA ANALOG IC DEVICE DATA 5 MC4558AC MC4558C NOTES 6 MOTOROLA ANALOG IC DEVICE DATA MC4558AC MC4558C NOTES MOTOROLA ANALOG IC DEVICE DATA 7 MC4558AC MC4558C Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. "Typical" parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including "Typicals" must be validated for each customer application by customer's technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should Buyer purchase or use Motorola products for any such unintended or unauthorized application, Buyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/Affirmative Action Employer. How to reach us: USA / EUROPE / Locations Not Listed: Motorola Literature Distribution; P.O. Box 20912; Phoenix, Arizona 85036. 1-800-441-2447 or 602-303-5454 MFAX: RMFAX0@email.sps.mot.com - TOUCHTONE 602-244-6609 INTERNET: http://Design-NET.com JAPAN: Nippon Motorola Ltd.; Tatsumi-SPD-JLDC, 6F Seibu-Butsuryu-Center, 3-14-2 Tatsumi Koto-Ku, Tokyo 135, Japan. 03-81-3521-8315 ASIA/PACIFIC: Motorola Semiconductors H.K. Ltd.; 8B Tai Ping Industrial Park, 51 Ting Kok Road, Tai Po, N.T., Hong Kong. 852-26629298 8 *MC4558AC/D* MOTOROLA ANALOG IC DEVICE DATA MC4558AC/D |
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