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NE5532 standard linear preamplifier IC circuit features and application schematics

Source: InternetPublisher:刘德华河北分华 Keywords: NE5532 amplifier Updated: 2024/10/17

NE5532/SE5532/SA5532/NE5532A/SE5532A/SA5532A is a dual op amp high performance low noise operational amplifier. Compared to most standard operational amplifiers, such as 1458, it shows better noise performance, improved output drive capability and quite high small signal and power supply bandwidth. This makes the device particularly suitable for applications in high quality and professional audio equipment, instrument and control circuits and telephone channel amplifiers. If noise is very important, it is recommended to use the 5532A version because it can guarantee the noise voltage index.

Features:

Small signal bandwidth: 10MHZ
Output drive capability: 600Ω, 10V effective value
Input noise voltage: 5nV/√Hz (typical value)
DC voltage gain: 50000
AC voltage gain: 2200-10KHZ
Power bandwidth: 140KHZ
Conversion rate: 9V/μs
Large power supply voltage range: ±3V-±20V
Unity gain compensation

Pin diagram:

Package Pin Function Diagram

Figure 3 5532 internal circuit diagram

ABSOLUTE MAXIMUM RATINGS

YMBOL Symbol

PARAMETER

RATING value

UNIT

VSSupply voltage±22

V

VINInput voltage±VSUPPLYV
VDIFFDifferential input voltage1 Differential input voltage±0.5V
TambOperating temperature rangeNE5532/A0 to 70
SA5532C40 to +85
SE5532/AC55 to +125
TsjStorage temperatureC65 to +150
TjJunction temperature150
PDMaximum power dissipation, Tamb = 25 ℃ (still-air) Maximum power dissipation, Tamb = 25 ℃ (still-air)D8 package780mW
8 N package1200mW
16 D package1200mW
TslDLead soldering temperature (10sec max)230

DC ELECTRICAL CHARACTERISTICSTamb
= 25 ℃; VS = ±15 V, unless otherwise specified

SYMBOL

PARAMETERTEST CONDITIONSSE5532/A Value

NE5532/A, SA5532 Value

UNIT

MinimumtypicalmaximumMinimumtypicalmaximum
Vos

△VOS/△T

Offset voltageOver the entire operating temperature range-0.5

5

twenty
three
-0.5

5

4
5
mV
mV μV/℃
iOS

△IOS/△T

Offset currentOver the entire operating temperature range-200100 200-10

200

150 200nA
nA pA/℃
IB

△IB/△T

Input currentOver the entire operating temperature range-200

5

400 700-200

5

800 1000nA
nA nA/℃
IccSupply currentOver temperature-8  10.5 13-8  16  mA mA
VCMCommon-mode input range Common-mode input range-±12±13-±12±13-V
CMRRCommon-mode rejection ratio Common-mode rejection ratio-80100-70100-dB
PSRRPower supply rejection ratio Power supply rejection ratio--105010100μV/V
AVOLLarge-signal voltage gainRL≥2kΩ;VO=±10V Over temperature RL≥600Ω;VO=±10V Over temperature50 25 40 20100

50

-25
15
15
10
100

50

-V/mV V/mV V/mV V/mV
VOUTOutput swing Out ut swing Output swing voltageRL≥600Ω
Over temperature RL.600Ω; VS=±18V
Over temperature RL≥2 kΩ
Over temperature
±12 ±10 ±15 ±12 ±13 ±12±13 ±12 ±16 ±14 ±13.5 ±12.5-±12 ±10 ±15 ±12 ±13 ±10±13 ±12 ±16 ±14 ±13.5 ±12.5-V
RINInputResistance30300-30300-
IscOutput short circuit current Output short circuit current103860103860mA

AC ELECTRICAL CHARACTERISTICSTamb
= 25℃; VS = ±15 V, unless otherwise specified.

SYMBOLPARAMETERTEST CONDITIONSNE/SE5532/A, SA5532

UNIT

MinimumtypicalMaximum
ROUTOutput resistanceAV = 30dB Closed-loop f = 10kHz, RL = 600Ω-0.3-W
-OvershootVoltage-follower VIN=100 mVP-P CL=100pF; RL=600Ω-10-%
AvGainf = 10kHz-2.2-V/mV
GBWGain bandwidth productCL = 100 pF; RL = 600Ω-10-MHz
SRSlew rate--9-V/μs
-Power bandwidthV = ±10V-140-kHz
VOUT = ±14V; RL = 600Ω, VCC=±18V-100-kHz

ELECTRICAL CHARACTERISTICSTamb
= 25℃; VS = ±15 V, unless otherwise specified

SYMBOLPARAMETERTEST CONDITIONSNE/SE5532NE/SA/SE5532AUNITUNIT
MinimumtypicalMaximumMinimumTypical ValueMaximum
VNOISEInput noise voltagefO = 30Hz8812nV/√Hz
fO = 1kHz556nV/√Hz
INOISEInput noise current Input noise currentfO = 30Hz2.72.7pA/√Hz
fO = 1kHz0.70.7pA/√Hz
Channel separationf = 1kHz; RS = 5kΩ110110dB

Test circuit:

Figure 4 Closed loop frequency response Figure 5 Voltage follower circuit

5532 op amp application circuit:

Figure 6 5532 low power audio amplifier

Figure 7 Power amplifier circuit composed of NE5532 LM386

Characteristic curve:

Figure 8 Open loop frequency response Figure 9 Closed loop frequency response

Figure 10 Large signal frequency response Figure 11 Output short circuit current

Figure 12 Input bias current Figure 13 Input common mode voltage range

Figure 14 Supply current Figure 15 Input noise voltage density

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