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JRC5532C

JRC
Part Number JRC5532C
Manufacturer JRC
Description LOW-NOISE DUAL OPERATIONAL AMPLIFIER
Published Dec 19, 2020
Detailed Description NJM5532C LOW-NOISE DUAL OPERATIONAL AMPLIFIER ■ GENERAL DESCRIPTION The NJM5532C is a high performance dual low noise o...
Datasheet PDF File JRC5532C PDF File

JRC5532C
JRC5532C



Overview
NJM5532C LOW-NOISE DUAL OPERATIONAL AMPLIFIER ■ GENERAL DESCRIPTION The NJM5532C is a high performance dual low noise operational amplifier.
This features low noise performance (5nV/√Hz), and considerably higher Gain Band Width (10MHz), low distortion (0.
0003%).
This makes the device especially suitable for application in high quality and professional audio.
■ FEATURES • Equivalent Input Noise Voltage • Gain bandwidth product • Common-Mode Rejection Ratio • High DC Voltage Gain • High Slew Rate • Wide power supply range • Internal ESD protection Human body model (HBM) : 5nV/√Hz typ.
at 1kHz : 10MHz typ.
: 100dB typ.
: 94dB typ.
: 9V/us typ.
: ±3V to ±22V : ±2000V typ.
■ PIN CONFIGURATION 1 8 2 A 7 3 B 6 4 5 PIN FUNCTION 1.
A OUTPUT 2.
A -INPUT 3.
A +INPUT 4.
V5.
B +INPUT 6.
B -INPUT 7.
B OUTPUT 8.
V+ ■ EQUIVALENT CIRCUIT (Each Amplifier) ■ PACKAGE OUTLINE NJM5532CG (SOP8) ver.
03 -1- NJM5532C ■ ABSOLUTE MAXIMUM RATINGS (Ta=25˚C) PARAMETER SYMBOL RATINGS UNIT Supply voltage V+/V- ±22 V Input voltage (1) VIN V--0.
3 to V-+44 V Output terminal input voltage VO V--0.
3 to V++0.
3 V Differential input voltage(2) VID ±0.
5 V Input current (3) IIN ±10 mA Output short-circuit duration (4) Power Dissipation Infinite - PD 6 9 0 (5) 1 0 0 0 (6) mW Operating free-air temperature range Topr -40 to 85 °C Storage temperature range Tstg -65 to +150 °C (1) Input voltage is the voltage should be allowed to apply to the input terminal independent of the magnitude of V+.
The normal operation will establish when any input is within the Common Mode Input Voltage Range of electrical characteristics.
(2) Differential voltage is the voltage difference between +INPUT and -INPUT.
(3) Excessive input current will flow if a differential input voltage in excess of approximately 0.
5 V is applied between the inputs, unless some limiting resistance is used.
(4) The output may be shorted to ground or either power supply.
Temperature and/or supply...



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