P SUFFIX CASE 646 Single Supply Split Supplies SO-14 D SUFFIX CASE 751A PIN CONNECTIONS

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1 Dual Operational Amplifier and Dual Comparator The MC05 contains two differential-input operational amplifiers and two comparators, each set capable of single supply operation. This operational amplifier-comparator circuit fulfills its applications as a general purpose product for automotive and consumer circuits as well as an industrial building block. The MC05 is specified over the commercial operating temperature range of 0 to 0 C. Operational Amplifier Equivalent in Performance to MC0 Comparator Similar in Performance to LM9 Single Supply Operation:.0 V to 6 V Split Supply Operation: ±.5 V to ± V Low Supply Current Drain Operational Amplifier is Internally Frequency Compensated Comparator TTL and CMOS Compatible.0 V to 6 V Single Supply Split Supplies.5 V to V P SUFFIX CASE 66 SO- D SUFFIX CASE 5A PIN CONNECTIONS, GND.5 V to V Out Inputs Comp Op Amp Out Inputs Inputs 5 6 Comp Op Amp 0 9 /GND Inputs Out Out (Top View) ORDERING INFORMATION Device Package Shipping MC05P Plastic DIP??? Units/Rail MC05D SO-??? Tape/Reel Semiconductor Components Industries, LLC, 00 May, 00 - Rev. Publication Order Number: MC05/D

2 MAXIMUM RATINGS Power Supply Voltage - Single Supply Power Supply Voltage - Split Supplies MC05 OPERATIONAL AMPLIFIER SECTION Rating Symbol Value Unit 6, ± Input Differential Voltage Range V IDR ±6 Vdc Input Common Mode Voltage Range V ICR ± Vdc Operating Ambient Temperature Range T A 0 to 0 C Storage Temperature Range Tstg -55 to 5 C Operating Junction Temperature Range T J 50 C Vdc ELECTRICAL CHARACTERISTICS ( = 5.0 V, = GND, T A = 5 C, unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Input Offset Voltage V IO mv Input Offset Current I IO na Input Bias Current I IB na Large-Signal, Open Loop Voltage Gain (R L =.0 k ) A VOL V/mV Power Supply Rejection PSR V/V Output Voltage Range (Note ) V OR V pp (R L =, = 5.0 V)..5 - (R L =, 5.0 V 0 V) Power Supply Current (Notes and ) I CC ma Channel Separation, f =.0 khz to 0 khz (Input Referenced) db ELECTRICAL CHARACTERISTICS ( = 5 V, = -5 V, T A = 5 C, unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Input Offset Voltage V IO mv (T A = T low T high ) (Note ) - - Average Temperature Coefficient of Input Offset Voltage V IO / T V/ C Input Offset Current I IO na (T A = T low to T high ) (Note ) Input Bias Current I IB na (T A = T low to T high ) (Note ) Input Common Mode Voltage Range V ICR Vdc Large Signal, Open Loop Voltage Gain A VOL V /mv (V O = ±0 V, R L =.0 k ) (T A = T low to T high ) (Note ) Common Mode Rejection CMR db Power Supply Rejection Ratio PSRR V/V Output Voltage V O Vdc (R L = ) ± ±.5 - (R L =.0 k ) ±0 ± - (R L =.0 k, T A = T low to T high ) (Note ) ±0 - - Output Short Circuit Current I SC ±0 ±0 ±5 ma Power Supply Current (Notes and ) I CC, I EE -..0 ma Phase Margin fm Degrees Small-Signal Bandwidth (A V =, R L =, V O = 50 mv) BW MHz NOTES:. Output will swing to ground.. Not to exceed maximum package power dissipation.. For operational amplifier and comparator.. T low = 0 C, T high = 0 C

3 ELECTRICAL CHARACTERISTICS ( = 5 V, = -5 V, T A = 5 C, unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Power Bandwidth (A V =, R L =.0 k, V O = 0 V pp, THD = 5%) BWp khz Rise Time/Fall Time t TLH, t THL s Overshoot (A V =, R L =, V O = 50 mv) os % Slew Rate SR V/ s MAXIMUM RATINGS COMPARATOR SECTION Rating Symbol Value Unit Power Supply Voltage - Single Supply 6 Vdc Power Supply Voltage - Split Supplies, ± Input Differential Voltage Range V IDR ±6 Vdc Input Common Mode Voltage Range V ICR -0. to 6 Vdc Sink Current I Sink 0 ma Operating Ambient Temperature Range T A 0 to 0 C Storage Temperature Range Tstg -55 to 5 C Operating Junction Temperature Range T J 50 C ELECTRICAL CHARACTERISTICS ( = 5.0 V, = GND, T A = 5 C, unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Input Offset Voltage V IO mv (T A = T low to T high ) (Notes and ) - - Average Temperature Coefficient of Input Offset Voltage V IO / T V/ C Input Offset Current I IO na (T A = T low to T high ) (Note ) Input Bias Current I IB na (T A = T low to T high ) (Note ) Input Common Mode Voltage Range V ICR VPP (T A = T low to T high ) (Note ) Input Differential Voltage (All V in 0 Vdc) V ID V Large-Signal, Open Loop Voltage Gain (R L = 5 k ) A VOL V /mv Output Sink Current (-V in.0 Vdc, V in = 0, V O.5 V) I Sink ma Low Level Output Voltage (V in = 0 V, -V in =.0 V, I Sink =.0 ma) (T A = T low to T high ) (Note ) V OL - - Output Leakage Current I OL A (V in.0 Vdc, -V in = 0, V O = 5.0 Vdc) (T A = T low to T high ) (Note ) Large-Signal Response ns Response Time (Note ) (V RL = 5.0 Vdc, R L = 5. k ) s NOTES:. T low = 0 C, T high = 0 C. V O. V, R S = 0 with from 5.0 Vdc to 0 Vdc, and over the input common mode range 0 to -. V.. The response time specified is for a 00 mv input step with 5.0 mv overdrive. For larger signals 00 ns is typical A

4 Representative Schematic Diagram (/ of Circuit Shown) () 0, Output, () (), 6, 5 VCC Q Q0 Q9 Q9 Q Q () 9, Q5 Q Q Q Q Q Q5 Q6 Q Q6 Q0 Q Q 5.0 pf Q6 Q. k 0 pf. k Q Q 5 Q Q Q Q Q9 Q Q Q6 Q5 Output, Q MC05 Q9 Q Q5 Q Q Q0 Q Q Operational Amplifier Side.0 k Q Q. k Bias Circuitry Common to All Op Amps and Comparators Comparator Side 00 Q0 VEE/Gnd

5 OPERATIONAL AMPLIFIER SECTION 50 mv/div 0.5 V/DIV Figure. Sine Wave Response A V = 00 *Note Class A B output stage produces distortion less sinewave. 50 s/div A VOL, LARGE SIGNAL OPEN LOOP VOLTAGE GAIN (db) Figure. Open Loop Frequency Response = 5 V = 5 V T A = 5 C k 00 k.0 M f, FREQUENCY (Hz) Figure. Power Bandwidth Figure. Output Swing versus Supply Voltage V O, OUTPUT VOLTAGE (V pp ) T A = 5 C k 00 k.0 M f, FREQUENCY (Hz) 5 V 5 V V O V O, OUTPUT VOLTAGE RANGE (V pp ) T A = 5 C AND, POWER SUPPLY VOLTAGES (V) Figure 5. Input Bias Current versus Temperature Figure 6. Input Bias Current versus Supply Voltage IIB, INPUT BIAS CURRENT (na) = 5 V = 5 V T A = 5 C I IB, INPUT BIAS CURRENT (na) T, TEMPERATURE ( C) AND, POWER SUPPLY VOLTAGES (V) 5

6 .0 COMPARATOR SECTION Figure. Normalized Input Offset Voltage 00 Figure. Input Bias Current INPUT OFFSET VOLTAGE NORMALIZED TO 5 C = 5 V = GND Slope Can Be Either Polarity. I IB, INPUT BIAS CURRENT (na) T A = 55 C T A = 5 C T A = 5 C = GND T A, AMBIENT TEMPERATURE ( C) , POSITIVE SUPPLY VOLTAGE (V) INPUT OFFSET VOLTAGE NORMALIZED TO 5 C Figure 9. Normalized Input Offset Current Slope Can Be Either Polarity. = 5 V = GND I Sink, OUTPUT SINK CURRENT (ma) Figure 0. Output Sink Current versus Output Voltage T A = 55 C T A = 5 C T A = 5 C = 5 V = GND T A, AMBIENT TEMPERATURE ( C) V OL, OUTPUT VOLTAGE (mv) Figure. Pulse Width Modulator Schematic and Waveforms.0 M V C V Comp CC 5.0 k 5.0 k 6 Comp k V out V SW (a) Oscillator Square Wave Output Time 5.0 k 0 Amp 9 C v t 50 k R R f 00 k R Amp V SW v t V TH V TL V out (b) Triangle Wave and Control Voltage (c) Output Pulses V C Time V TH = М V S ( R/R) V EE V S = Time V TL = М V S ( R/R) V EE R Oscillator Frequency f = R f CR V c V TL Pulse Width = when: V TL < V C < V f V TH TH V TL V c V TL Duty Cycle in % = (00) V TH V TL 6

7 Figure. Window Comparator V Adjust V C Adjust Amp 9 0 Amp 5 6 V in Comp Comp.0 k v O V O V V C V V in C Figure. Squelch Circuit for AM or FM V in C R C R Amp C R Comp. k. k 0 9 Amp V AO High Pass Filter Given: A o, Q, o = f o High Pass Filter Choose: C = C = C, a convenient value Calculate: МR = Q (A o C o ) C = C A o A o R = Q o C(A o ) RC > 5 T in Where : T in is the period of V in Q = Quality Factor A o = High Frequency Gain o = Break Frequency 00 k Squelch Threshold Adj R f R i V Ai Switched Audio Stage Gain of Audio Stage A CI = R f R i Figure. High/Low Limit Alarm V C R R5 R6 Amp Oscillator 0 V IL V IH V i V i.0 k.0 k R R R 5 6 Comp Comp.0 k.0 k V C Hi/Low Limit Detector C R f k 0 9 Amp 0.0 F V O V IL = V IH = R R R R R R R R R Oscillator If R = R5 = R6 f = 0./R f C As shown, f =. khz V O will oscillate if V IH < V i, or V IL > V i V O will be low if V IL < V i < V IH

8 Figure 5. Zero Crossing Detector with Temperature Sensor V in R N9 R N9 V D V D Comp 6 5 Comp Zero Crossing Detector Temp Adjust R R6 R R.0 M 0 9 Amp Amp V O V t = (V BE of Q) > R and R control the switching voltage of the zero crossing detector ±V S = ±V D V BE R5 R R R R R5 R5 Q R R5 v t Temperature Sensor V S0 V S v o Time T A < T Set Figure 6. LSTTL to CMOS Interface with Hysteresis Figure. NOR Gate 5.0 V. k k Comp * 50 k.0 k * 5 V A B C D.0 k* Comp * G LSTTL Level Shift CMOS V IL =. V V IH =.0 V *The same configuration may be used with an op amp if the.0 k resistor is removed. G = A B C D *The same configuration may be used with an op amp if the.0 k resistor is removed.

9 PACKAGE DIMENSIONS B P SUFFIX PLASTIC PACKAGE CASE ISSUE M NOTES:. DIMENSIONING AND TOLERANCING PER ANSI Y.5M, 9.. CONTROLLING DIMENSION: INCH.. DIMENSION L TO CENTER OF LEADS WHEN FORMED PARALLEL.. DIMENSION B DOES NOT INCLUDE MOLD FLASH. 5. ROUNDED CORNERS OPTIONAL. A F L N C -T- SEATING PLANE K H G D PL 0. (0.005) M J M -B- -T- SEATING PLANE G D PL -A- K P PL C 0.5 (0.00) M T B S A S D SUFFIX (SO-) PLASTIC PACKAGE CASE 5A-0 ISSUE F 0.5 (0.00) M B M NOTES:. DIMENSIONING AND TOLERANCING PER ANSI Y.5M, 9.. CONTROLLING DIMENSION: MILLIMETER.. DIMENSIONS A AND B DO NOT INCLUDE MOLD PROTRUSION.. MAXIMUM MOLD PROTRUSION 0.5 (0.006) PER SIDE. 5. DIMENSION D DOES NOT INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0. (0.005) TOTAL IN EXCESS OF THE D DIMENSION AT MAXIMUM MATERIAL CONDITION. MILLIMETERS INCHES R X 5 F DIM MIN MAX MIN MAX A B C D M J F G. BSC BSC J K M 0 0 P R

10 ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC 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 special, consequential or incidental damages. Typical parameters which may be provided in SCILLC 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. SCILLC does not convey any license under its patent rights nor the rights of others. SCILLC 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 SCILLC product could create a situation where personal injury or death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC 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 SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal Opportunity/Affirmative Action Employer. PUBLICATION ORDERING INFORMATION Literature Fulfillment: Literature Distribution Center for ON Semiconductor P.O. Box 56, Denver, Colorado 0 USA Phone: or Toll Free USA/Canada Fax: or Toll Free USA/Canada ONlit@hibbertco.com N. American Technical Support: Toll Free USA/Canada JAPAN: ON Semiconductor, Japan Customer Focus Center -9- Kamimeguro, Meguro-ku, Tokyo, Japan Phone: ON Semiconductor Website: For additional information, please contact your local Sales Representative. 0 MC05/D

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