TECHNICAL DATA
Low Power Quad Operational Amplifier
The IL324 contains four independent high gain operationalamplifiers with internal frequency compensation. The four op-ampsoperate over a wide voltage range from a single power supply. Alsouse a split power supply. The device has low power supply currentdrain, regardless of the power supply voltage. The low power drainalso makes the IL324 a good choice for battery operation.
When your project calls for a traditional op-amp function, now youcan streamline your design with a simple single power supply. Useordinary +5VDC common to practically any digital system or personalcomputer application, without requiring an extra 15V power supplyjust 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 dcgain blocks, or any op-amp function. The attached pages offer somerecipes that will have your project cooking in no time.• Internally frequency compensated for unity gain• Large DC voltage gain: 100dB• Wide power supply range:
3V ~ 32V (or ±1.5V ~ ±16V)• Input common-mode voltage range includes ground• Large output voltage swing: 0V DC to VCC-1.5V DC• Power drain suitable for battery operation• Low input offset voltage and offset current• Differential input voltage range equal to the power supply voltage
IL324
ORDERING INFORMATIONIL324N PlasticIL324D SOICTA = 0° to 70° Cfor all packages.LOGIC DIAGRAM
PIN ASSIGNMENTPIN 4 = VCC PIN 11= GND
1
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IL324
MAXIMUM RATINGS*
SymbolVCC
Parameter
Power Supply Voltages
Single SupplySplit Supplies
VIDRVICRISCTJTstgIINTL
*
Value32±16±32-0.3 to 32Continuous
150-55 to +125
50260
UnitVVV
Input Differential Voltage Range (1)Input Common Mode Voltage RangeOutput Short Circuit DurationJunction TemperaturePlastic PackagesStorage TemperaturePlastic PackagesInput Current, per pin (2)
Lead Temperature, 1mm from Case for 10 Seconds
°C°CmA°C
Maximum Ratings are those values beyond which damage to the device may occur.Functional operation should be restricted to the Recommended Operating Conditions.+Derating - Plastic DIP: - 10 mW/°C from 65° to 125°C
SOIC Package: : - 7 mW/°C from 65° to 125°C
Notes:
1. Split Power Supplies.
2. VIN<-0.3V. This input current will only exist when voltage at any of the input leads is driven negative.
RECOMMENDED OPERATING CONDITIONS
SymbolVCCTA
DC Supply Voltage
Operating Temperature, All Package Types
Parameter
Min±2.5 or5.00
Max±15 or30+70
UnitV°C
This device contains protection circuitry to guard against damage due to high static voltages or electric
fields. However, precautions must be taken to avoid applications of any voltage higher than maximum ratedvoltages to this high-impedance circuit. For proper operation, VIN and VOUT should be constrained to the rangeGND≤(VIN or VOUT)≤VCC.
Unused inputs must always be tied to an appropriate logic voltage level (e.g., either GND or VCC).
Unused outputs must be left open.
2
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IL324
DC ELECTRICAL CHARACTERISTICS(TA=0 to +70°C)
Guaranteed Limit
SymbolVIO∆VIO/∆TIIO∆IIO/∆TIIBVICRICCAVOLVOHVOLCMRPSRCSISCIsourceIsink
Parameter
Maximum Input OffsetVoltage
Input Offset VoltageDrift
Maximum Input OffsetCurrent
Maximum Input BiasCurrent
Input Common ModeVoltage Range
Maximum Power SupplyCurrent
Minimum Large SignalOpen-Loop Voltage GainMinimum Output High-Level Voltage SwingMaximum Output Low-Level Voltage SwingPower Supply RejectionChannel SeparationMaximum Output ShortCircuit to GNDMinimum Output SourceCurrent
Minimum Output SinkCurrent
Test Conditions
VO=1.4V VCC=5.0-30V;RS=0ΩVICM=0V to VCC-1.7VRS=0Ω, VCC=30VVCC=5.0V
10
-500
0
2831.2
152627
20
65*65-120*
60*
10512*
VCC*
V/mVVmVdBdBdBmAmAmAµAV
7.0
150
Min
Typ
Max9.0
UnitmVµV/°CnApA/°CnAVmA
Input Offset Current DriftRS=0Ω, VCC=30V
VCC=5.0VVCC=30V
RL=∞,VCC=30V,V0=0VRL=∞,VCC=5V,V0=0VVCC=15V, RL≥2KΩVCC=30V,RL=2KΩVCC=30V,RL=10KΩVCC=5V,RL=10KΩ
Common Mode RejectionVCC=30V, RS=10KΩ
VCC=30V
f=1KHz to 20KHz,VCC=30VVCC=5.0V
VIN+=1V, VIN-=0V, VCC=15V,V0=0V
VIN+=0V, VIN-=1V, VCC=15V,V0=15V
VIN+=0V, VIN-=1V, VCC=15V,V0=0.2V
All VIN≥GND or V-Supply (ifused)
VIDR*=@25°C
Differential InputVoltage Range
3
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IL324
TYPICAL PERFORMANCE CHARACTERISTICS
Figure 1.Input Voltage Range
Figure 2. Open-Loop Frequency
Figure 3. Large-Signal Frequency Response
Figure 4. Small-Signal Voltage Follower PulseResponse (Noninverting)
Figure 5. Power Supply Current versus Power
Supply Voltage
Figure 6. Input Bias Current versus Power Supply
Voltage
4
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