IL358S IKSEMICON [IK Semicon Co., Ltd], IL358S Datasheet

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IL358S

Manufacturer Part Number
IL358S
Description
Low Power Dual Operational Amplifier
Manufacturer
IKSEMICON [IK Semicon Co., Ltd]
Datasheet
Low Power Dual Operational Amplifier
internal frequency compensation. The two 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 IL358 a good choice for battery
operation.
streamline your design with a simple single power supply. Use ordinary
+5V
application, without requiring an extra 15V power supply just to have the
interface electronics you need.
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.
The IL358 contains two independent high gain operational amplifiers with
When your project calls for a traditional op-amp function, now you can
The IL358 is a versatile, rugged workhorse with a thousand-and-one uses,
DC
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 V
Power drain suitable for battery operation
Low input offset voltage and offset current
Differential input voltage range equal to the power supply voltage
Possible to exchange the position of Pin9 for Pin1 because of Pin
Connection being symmetric (IL358S only)
common to practically any digital system or personal computer
LOGIC DIAGRAM
PIN 4 = GND
PIN 8=V
CC
CC
-1.5V DC
ORDERING INFORMATION
PIN ASSIGNMENT
TECHNICAL DATA
T
IL358N Plastic
IL358D SOIC
IL358S-9 SIP-9
IL358S SIP-8
for all packages.
A
= -40° to 85° C
SIP-8
SIP-9
IL358
Rev. 01

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IL358S Summary of contents

Page 1

... Power drain suitable for battery operation • Low input offset voltage and offset current • Differential input voltage range equal to the power supply voltage • Possible to exchange the position of Pin9 for Pin1 because of Pin Connection being symmetric (IL358S only) LOGIC DIAGRAM PIN 4 = GND PIN 8=V CC -1. ...

Page 2

MAXIMUM RATINGS Symbol V Power Supply Voltages CC Single Supply Split Supplies V Input Differential Voltage Range (1) IDR V Input Common Mode Voltage Range ICR I Output Short Circuit Duration SC T Junction Temperature J Plastic Packages Tstg ...

Page 3

DC ELECTRICAL CHARACTERISTICS Symbol Parameter V Maximum Input Offset IO Voltage Input Offset Voltage ∆V /∆T IO Drift I Maximum Input Offset IO Current Input Offset Current Drift R ∆I /∆ Maximum Input Bias IB Current V Input ...

Page 4

TYPICAL PERFORMANCE CHARACTERISTICS Figure 1.Input Voltage Range Figure 3. Large-Signal Frequency Response Figure 5. Power Supply Current versus Power Supply Voltage Figure 2. Open-Loop Frequency Figure 4. Small-Signal Voltage Follower Pulse Response (Noninverting) Figure 6. Input Bias Current versus Power ...

Page 5

SEATING -T- PLANE 0.25 (0.010 NOTES: 1. Dimensions “A”, “B” do not include mold flash or protrusions. Maximum mold flash or protrusions 0.25 mm (0.010) per ...

Page 6

SIP-9 IL358 Rev. 01 ...

Page 7

SIP-8 IL358 Rev. 01 ...

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