Low Power Quad Operational Amplifier
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- Magnus Adams
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1 TECNICAL DATA Low Power Quad Operational Amplifier IL324 The IL324 contains four independent high gain operational amplifiers with internal frequency compensation. The four op-amps operate over a wide voltage range from a single power supply. Also use a split power supply. The device has low power supply current drain, regardless of the power supply voltage. The low power drain also makes the IL324 a good choice for battery operation. When your project calls for a traditional op-amp function, now you can streamline your design with a simple single power supply. Use ordinary +5DC common to practically any digital system or personal computer application, without requiring an extra 15 power supply just to have the interface electronics you need. The IL324 is a versatile, rugged workhorse with a thousand-and-one uses, from amplifying signals from a variety of transducers to dc gain blocks, or any op-amp function. The attached pages offer some recipes that will have your project cooking in no time. Internally frequency compensated for unity gain Large DC voltage gain: 100dB Wide power supply range: 3 ~ 32 (or 1.5 ~ 16) Input common-mode voltage range includes ground Large output voltage swing: 0 DC to CC -1.5 DC Power drain suitable for battery operation Low input offset voltage and offset current Differential input voltage range equal to the power supply voltage ORDERIN INFORMATION IL324N Plastic IL324D SOIC T A = -40 to +85 C for all packages. LOIC DIARAM PIN ASSINMENT PIN 4 = CC PIN 11= ND
2 MAXIMUM RATINS * Symbol Parameter alue Unit CC Power Supply oltages Single Supply Split Supplies IDR Input Differential oltage Range (1) 32 ICR Input Common Mode oltage Range -0.3 to 32 I SC Output Short Circuit Duration Continuous T J Junction Temperature Plastic Packages 150 C Tstg Storage Temperature Plastic Packages -55 to +125 C I IN Input, per pin (2) 50 ma T L Lead Temperature, 1mm from Case for 10 Seconds 260 C * * Stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under recommended operating conditions is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. Functional operation should be restricted to the Recommended Operating Conditions. +Derating - Plastic DIP: - 10 mw/c from 65 to 125C SOIC Package: : - 7 mw/c from 65 to 125C Notes: 1. Split Power Supplies. 2. IN <-0.3. This input current will only exist when voltage at any of the input leads is driven negative. RECOMMENDED OPERATIN CONDITIONS Symbol Parameter Min Max Unit CC DC Supply oltage 2.5 or or 30 T A Operating Temperature, All Package Types C This device contains protection circuitry to guard against damage due to high static voltages or electric fields. owever, precautions must be taken to avoid applications of any voltage higher than maximum rated voltages to this high-impedance circuit. For proper operation, IN and OUT should be constrained to the range ND( IN or OUT ) CC. Unused inputs must always be tied to an appropriate logic voltage level (e.g., either ND or CC ). Unused outputs must be left open.
3 DC ELECTRICAL CARACTERISTICS (T A =-40 to +85C) uaranteed Limit Symbol Parameter Test Conditions Min Typ Max Unit IO IO /T I IO Maximum Input Offset oltage Input Offset oltage Drift Maximum Input Offset O =1.4 CC =5.0-30;R S =0 ICM =0 to CC * m R S =0, CC = /C CC = I IO /T Input Offset Drift R S =0, CC =30 10 pa/c I IB ICR I CC A OL O OL Maximum Input Bias Input Common Mode oltage Range Maximum Power Supply Minimum Large Signal Open-Loop oltage ain Minimum Output igh- Level oltage Swing Maximum Output Low- Level oltage Swing 50* CC = * CC = R L =, CC =30, 0 =0 R L =, CC =5, 0 =0 CC =15, R L 2K 15 CC =30,R L =2K CC =30,R L =10K 25* na na ma /m CC =5,R L =10K 20 m CMR Common Mode Rejection CC =30, R S =10K 65* db PSR Power Supply Rejection CC =30 65* db CS Channel Separation f=1kz to 20Kz, CC =30-120* db I SC I source I sink IDR *=@25C Maximum Output Short Circuit to ND Minimum Output Source Minimum Output Sink Differential Input oltage Range CC =5.0 60* ma IN+ =1, IN- =0, CC =15, 0 =0 IN+ =0, IN- =1, CC =15, 0 =15 IN+ =0, IN- =1, CC =15, 0 =0.2 All IN ND or -Supply (if used) 10 ma 5 10* 12* CC * ma A
4 TYPICAL PERFORMANCE CARACTERISTICS Figure 1.Input oltage Range Figure 2. Open-Loop Frequency Figure 3. Large-Signal Frequency Response Figure 4. Small-Signal oltage Follower Pulse Response (Noninverting) Figure 5. Power Supply versus Power Supply oltage Figure 6. Input Bias versus Power Supply oltage
5 N SUFFIX PLASTIC DIP (MS - 001AA) NOTES: 14 1 A F 0.25 (0.010) M T 1. Dimensions A, B do not include mold flash or protrusions. Maximum mold flash or protrusions 0.25 mm (0.010) per side. 8 7 D N B -T- SEATIN 5.27 PLANE K D M J F J (0.010) M T C M NOTES: K Dimensions A and B do not include mold flash or protrusion. M Maximum mold flash or protrusion 0.15 mm (0.006) per side P for A; for B 0.25 mm (0.010) per side. R C -T- K SEATIN PLANE M L J Dimension, mm Symbol MIN MAX A B C 5.33 D F J 0 10 K L M N 0.38 D SUFFIX SOIC (MS - 012AB) 14 1 A 8 7 B P C Symbol MIN MAX A B C D F R x 45 Dimension, mm 1.27
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