NE5532 中文资料

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基于NE5532的信号发生器设计

基于NE5532的信号发生器设计

基于NE5532的信号发生器设计设计基于NE5532的信号发生器引言信号发生器是一种用于产生不同频率和波形的电子设备,被广泛应用在实验室、教学和工程领域。

本文将介绍基于NE5532运算放大器的信号发生器的设计过程和关键步骤。

一、NE5532概述NE5532是一种双运放集成电路,具有高增益、低噪声等特点。

它可以用于音频放大电路和信号处理电路。

二、设计步骤1.确定需求首先,需要确定设计信号发生器的要求,包括频率范围、波形、输出电平等。

2.选择运放电路根据信号发生器的要求,选择合适的运放电路。

NE5532可以用作方法放大器、积分器、微分器等电路。

3.设计放大电路根据选择的运放电路,设计放大电路。

可以根据不同的需求选择不同的电阻和电容值以及连接方式。

4.设计反馈网络根据放大电路设计反馈网络,以实现稳定的增益和频率响应。

可以使用电阻和电容来实现反馈网络。

5.设计输入输出接口设计输入输出接口,包括输入信号源和输出负载。

可以使用电容来隔离输入和输出端。

6.选择电源供应选择合适的电源供应电路,为运放提供稳定的电源电压。

可以使用稳压电路或滤波电路。

7.最终调试将设计的各个部分连接在一起,并进行最终的调试。

可以通过观察输出波形和测量频率响应等指标来验证设计的正确性。

三、电路图下图为基于NE5532的信号发生器的简化电路图。

(插入电路图)四、常见问题及解决方案1.输出波形失真可能是由于电源电压不稳定、输入信号失真或运放参数设置错误等原因引起。

可以通过检查电源电压、更换信号源和重新设置运放参数来解决。

2.频率不稳定可能是由于输入信号源频率变化过大、电容和电阻值选择不当或电源电压不稳定等原因引起。

可以通过更换稳定的信号源、重新选择电容和电阻值以及优化电源电压来解决。

3.噪声较大可能是由于电源电压质量不好、输入信号源质量差、运放回路设计不合理等原因引起。

可以通过改进电源供应、使用更好的信号源和优化运放回路设计来减少噪声。

五、总结本文介绍了基于NE5532的信号发生器的设计过程和关键步骤。

NE5532中文资料_数据手册_参数

NE5532中文资料_数据手册_参数
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NE5532输入电流 (4) -10 10嘛 输出短路持续时间 (5)无限 T J操作虚拟结温度 150 C T STG存储温度范围 -65 150 C (1)强调绝对大 额定值以外列出的可能会导致设备永久性损坏.这些是NE5532压力评级只有在这些或任何其他超出建议的操作条件下的条件下才能操 作设备不暗示条件.暴露在绝对大额定条件下可能会影响器件的可靠性. (2) 所有的电压值,NE5532除了差分电压,相对于V CC + 和 V CC- 之间的中点 . (3)输入电压的大小决不能超过电源电压的大小. (4)如果输入端之间施加的差分输入电压超过大约0.6 V,则输 入电流将过大一些限制电阻被使用. (5)NE5532输出可能会短路到地或任一电源.温度和/或电源电压必须被限制以确保不超过大耗散 额定值. 7.2 ESD等级值单元人体模型(HBM),根据ANSI / ESDA / JEDEC JS-001,全部 2000 (1) V (ESD)静电放电 V带电器件型 号(CDM),根据JEDEC规范JESD22- 1000 C101,所有引脚 (2) (1) JEDEC文件JEP??155指出,500V HBM允许采用标准ESD控制 过程进行安全制造. (2) JEDEC文件JEP??157指出,250V CDM允许使用标准ESD控制过程进行安全制造. 7.3推荐的操作条件 MIN MAX单元 V CC +电源电压五 15 V V CC-电源电压 -5 -15 V NE5532,NE5532A 0 70 T A.操

NE5532最新资料脚步图

NE5532最新资料脚步图

NE5532中文资料引脚图NE5532功放:NE5532是高性能低噪声双运算放大器(双运放)集成电路。

与很多标准运放相似,但它具有更好的噪声性能,优良的输出驱动能力及相当高的小信号带宽,电源电压范围大等特点。

因此很适合应用在高品质和专业音响设备、仪器、控制电路及电话通道放大器。

用作音频放大时音色温暖,保真度高,在上世纪九十年代初的音响界被发烧友们誉为“运放之皇”,至今仍是很多音响发烧友手中必备的运放之一。

NE5532管脚,NE5532引脚功能:1:AMPOUT1放大信号输出(1)2:IN1-反相信号输入(1)3:IN1+同相信号输入(1)4:GND接地5:IN2+同相信号输入(2)6:IN2-反相信号输入(2)7:AMPOUT2放大信号输出(2)8:Vcc电源NE5532价格:NE5532是属于发烧运放集成电路,价格因厂家和性能等级不同相差非常大,从几毛到几块再到几百块,甚者更高不等。

NE5532生产厂家:TI[TexasInstruments]、ON、PHILIPS、Semiconductor...NE5532描述:The NE5532,NE5532A,SA5532,and_SA5532A devices are high-performance operational amplifiers combining excellent DC and_AC characteristics.They feature very low noise,high output-drive capability,high unity-gainand_maximum-output-swing bandwidths,low distortion,high slew rate,input-protection diodes,and_output short-circuit protection. These operational amplifiers are compensated internally for unity-gain operation. These devices have specified maximum limits for equivalent input noise voltage.NE5532特性:Equivalent Input Noise Voltage:5 nV/√Hz Typ at 1 kHzUnity-Gain Bandwidth: 10 MHz TypCommon-Mode Rejection Ratio: 100 dB TypHigh DC Voltage Gain: 100 V/mV TypPeak-to-Peak Output Voltage Swing 26 V Typ With VCC± = ±15 V and_RL = 600 ?High Slew Rate: 9 V/μs TypNE5532相关型号:NE5532p、NE5532、NE5532A、SA5532、SA5532、ARC4558、JRC4558D、NE4558、OP275、EL2244、AD827你是不是在找?1、NE5532前置放大电路图2、NE5532前置3、NE5532放大4、NE5532电路5、NE5532芯片怎么用6、NE5532前级电路图7、NE5532负反馈电容8、5532运放2604哪个好9、NE5532p10、NE5532p用什么代换11、NE5532封装12、NE5532前级电路图经典13、opa2604运放比5532好吗NE5532相关运放:1、LM833N BJT工艺双运放噪声4.5nV/√Hz GBW:15M 压摆率:7V/uS 输入失调电压:0.3mV 温漂:2.0uV/℃2、OPA627 BJT工艺单运放噪声4.5nV/√Hz GBW:16M 压摆率:55V/uS 输入失调电压:0.13mV 温漂:1.2uV/℃3、OPA2604 FET工艺双运放噪声10nV//√Hz GBW:20M 压摆率:25V/uS 输入失调电压:1mV 温漂:8uV/℃4、NE5534 BJT工艺单运放噪声3.5nV/√Hz GBW:10M 压摆率:13V/uS 输入失调电压:0.5mV 温漂:规格书未给出5、NE5532 BJT工艺双运放噪声5nV/√Hz GBW:10M 压摆率:9V/uS 输入失调电压:0.5mV 温漂:规格书未给出代替NE5532,NE5532用什么代替?NE5532是双路低噪声高速音频运算放大器,op275:和5532比,胆性还重一点,解析力、低频、音场更好一点,可以买贴片的来打磨声卡用(特别是创新的),可以改善硬冷的数码声。

NE5532AD8G资料

NE5532AD8G资料

NE5532, SA5532, SE5532, NE5532A, SE5532A Internally Compensated Dual Low Noise Operational AmplifierThe 5532 is a dual high-performance low noise operational amplifier. Compared to most of the standard operational amplifiers, such as the 1458, it shows better noise performance, improved output drive capability and considerably higher small-signal and power bandwidths.This makes the device especially suitable for application in high-quality and professional audio equipment, instrumentation and control circuits, and telephone channel amplifiers. The op amp is internally compensated for gains equal to one. If very low noise is of prime importance, it is recommended that the 5532A version be used because it has guaranteed noise voltage specifications.Features•Small-Signal Bandwidth: 10 MHz•Output Drive Capability: 600 W, 10 V RMS•Input Noise V oltage: 5.0nVńHzǸ (Typical)•DC V oltage Gain: 50000•AC V oltage Gain: 2200 at 10 kHz•Power Bandwidth: 140 kHz•Slew Rate: 9.0 V/m s•Large Supply Voltage Range: "3.0 to "20 V •Compensated for Unity Gain•Pb−Free Packages are AvailableSee detailed ordering and shipping information in the package dimensions section on page 7 of this data sheet.ORDERING INFORMATIONSee general marking information in the device marking section on page 6 of this data sheet.DEVICE MARKING INFORMATIONFigure 1. Equivalent Schematic (Each Amplifier)MAXIMUM RATINGSRating Symbol Value Unit Supply Voltage V S"22V Input Voltage V IN"V SUPPLY V Differential Input Voltage (Note 1)V DIFF"0.5VOperating T emperature Range NE5532/ASA5532SE5532/A T amb0 to 70−40 to +85−55 to +125°CStorage T emperature T stg−65 to +150°C Junction T emperature T j150°CMaximum Power Dissipation, T amb = 25°C (Still-Air) 8D8 Package8N Package16D Packagee P D78012001200mWThermal Resistance, Junction−to−Ambient 8D8 Package8N Package16D Packagee R q JA182130140°C/WLead Soldering T emperature (10 sec max)T sld230°C Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.1.Diodes protect the inputs against overvoltage. Therefore, unless current-limiting resistors are used, large currents will flow if the differential inputvoltage exceeds 0.6 V. Maximum current should be limited to "10 mA.DC ELECTRICAL CHARACTERISTICS (T amb = 25°C; V S = "15 V, unless otherwise noted.) (Notes 2, 3 and 4)Characteristic Symbol Test ConditionsSE5532/A NE5532/A, SA5532Unit Min Typ Max Min Typ MaxOffset Voltage V OS−−0.5 2.0−0.5 4.0mV−Overtemperature−− 3.0−− 5.0mVD V OS/D T−− 5.0−− 5.0−m V/°C Offset Current I OS−−−100−10150nA−Overtemperature−−200−−200nAD I OS/D T−−200−−200−pA/°C Input Current I B−−200400−200800nA−Overtemperature−−700−−1000nAD I B/D T−− 5.0−− 5.0−nA/°C Supply Current I CC−−8.010.5−8.016mA−Overtemperature−−13−−−Common-Mode Input Range V CM−"12"13−"12"13−V Common-Mode Rejection Ratio CMRR−80100−70100−dB Power Supply Rejection Ratio PSRR−−1050−10100m V/V Large-Signal Voltage Gain A VOL R L w2.0 k W; V O = "10 V50100−25100−V/mVOvertemperature25−−15−−R L w600 W; V O = "10 V4050−1550−Overtemperature20−−10−−Output Swing V OUT R L w 600 W"12"13−"12"13−VOvertemperature"10"12−"10"12−R L w 600 W; V S = "18 V"15"16−"15"16−Overtemperature"12"14−"12"14−R L w 2.0 k W"13"13.5−"13"13.5−Overtemperature"12"12.5−"10"12.5−Input Resistance R IN−30300−30300−k W Output Short Circuit Current I SC−103860103860mA 2.Diodes protect the inputs against overvoltage. Therefore, unless current-limiting resistors are used, large currents will flow if the differential inputvoltage exceeds 0.6 V. Maximum current should be limited to "10 mA.3.For operation at elevated temperature, derate packages based on the package thermal resistance.4.Output may be shorted to ground at V S = "15 V, T amb = 25°C. T emperature and/or supply voltages must be limited to ensure dissipation ratingis not exceeded.AC ELECTRICAL CHARACTERISTICS (T amb = 25°C; V S = "15 V, unless otherwise noted.)Characteristic Symbol Test ConditionsNE/SE5532/A, SA5532Unit Min Typ MaxOutput Resistance R OUT A V = 30 dB Closed-loopf = 10 kHz, R L = 600 W−0.3−W Overshoot−Voltage-Follower%V IN = 100 mV P-P−10−C L = 100 pF; R L = 600 WGain A V f = 10 kHz− 2.2−V/mV Gain Bandwidth Product GBW C L = 100 pF; R L = 600 W−10−MHz Slew Rate SR−−9.0−V/m s Power Bandwidth−V OUT = "10 V−140−kHzV OUT = "14 V;R L = 600 W−100−V CC= "18 VELECTRICAL CHARACTERISTICS (T amb = 25°C; V S = "15 V, unless otherwise noted.)Characteristic Symbol Test ConditionsNE/SE5532NE/SA/SE5532AUnit Min Typ Max Min Typ MaxInput Noise Voltage V NOISE f O = 30 Hz−8.0−−8.012nV/√Hzf O = 1.0 kHz− 5.0−− 5.0 6.0Input Noise Current I NOISE f O = 30 Hz− 2.7−− 2.7−pA/√Hzf O = 1.0 kHz−0.7−−0.7−Channel Separation− f = 1.0 kHz; R S = 5.0 k W−110−−110−dBTYPICAL PERFORMANCE CHARACTERISTICSG A I N (d B )1208040-40-55-25255075100+125T amb (o C)I O (mA)Vp; −V N (V)10200246f (Hz)I P I N(mA)Vp; −V N (V)T amb (o C)Figure 5. Output Short −CircuitCurrentFigure 6. Input Bias CurrentFigure 7. Input Common −ModeVoltage RangeFigure 8. Supply CurrentFigure 9. Input Noise VoltageDensityClosed-Loop Frequency Response Voltage-FollowerV IFigure 10. Test CircuitsMARKING DIAGRAMSSOIC −8D SUFFIX CASE 751PDIP −8N SUFFIX CASE 626A = Assembly Location WL, L = Wafer Lot YY , Y = YearWW, W = Work WeekG or G= Pb −Free PackageeNE5532ANAWL YYWWGNE5532NAWL YYWWGSA5532NAWLYYWWGSE5532NAWL YYWWGSOIC −16 WB D SUFFIXCASE 751GORDERING INFORMATIONDevice Description Temperature Range Shipping†NE5532AD88−Pin Plastic Small Outline (SO−8) Packagee0 to 70°C98 Units / Rail0 to 70°C98 Units / RailNE5532AD8G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)NE5532AD8R28−Pin Plastic Small Outline (SO−8) Packagee0 to 70°C2500 / T ape & Reel0 to 70°C2500 / T ape & Reel NE5532AD8R2G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)NE5532AN8−Pin Plastic Dual In−Line Package (PDIP−8)0 to 70°C50 Units / Rail0 to 70°C50 Units / RailNE5532ANG8−Pin Plastic Dual In−Line Package (PDIP−8)(Pb−Free)NE5532D16−Pin Plastic Small Outline (SO−16 WB) Package0 to 70°C47 Units / Rail0 to 70°C47 Units / RailNE5532DG16−Pin Plastic Small Outline (SO−16 WB) Package(Pb−Free)NE5532DR216−Pin Plastic Small Outline (SO−16 WB) Package0 to 70°C1000 T ape & Reel0 to 70°C1000 T ape & ReelNE5532DR2G16−Pin Plastic Small Outline (SO−16 WB) Package(Pb−Free)NE5532D88−Pin Plastic Small Outline (SO−8) Packagee0 to 70°C98 Units / Rail0 to 70°C98 Units / RailNE5532D8G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)NE5532D8R28−Pin Plastic Small Outline (SO−8) Packagee0 to 70°C2500 / T ape & Reel0 to 70°C2500 / T ape & Reel NE5532D8R2G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)NE5532N8−Pin Plastic Dual In−Line Package (PDIP−8)0 to 70°C50 Units / Rail0 to 70°C50 Units / RailNE5532NG8−Pin Plastic Dual In−Line Package (PDIP−8)(Pb−Free)SA5532N8−Pin Plastic Dual In−Line Package (PDIP−8)−40 to +85°C50 Units / Rail−40 to +85°C50 Units / RailSA5532NG8−Pin Plastic Dual In−Line Package (PDIP−8)(Pb−Free)SE5532AD88−Pin Plastic Small Outline (SO−8) Packagee−55 to +125°C98 Units / Rail−55 to +125°C98 Units / RailSE5532AD8G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)SE5532AD8R28−Pin Plastic Small Outline (SO−8) Packagee−55 to +125°C2500 / T ape & Reel−55 to +125°C2500 / T ape & Reel SE5532AD8R2G8−Pin Plastic Small Outline (SO−8) Package(Pb−Free)SE5532N8−Pin Plastic Dual In−Line Package (PDIP−8)−55 to +125°C50 Units / Rail−55 to +125°C50 Units / RailSE5532NG8−Pin Plastic Dual In−Line Package (PDIP−8)(Pb−Free)†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging Specifications Brochure, BRD8011/D.PACKAGE DIMENSIONSSOIC−8 NBCASE 751−07ISSUE AGNOTES:1.DIMENSIONING AND TOLERANCING PERANSI Y14.5M, 1982.2.CONTROLLING DIMENSION: MILLIMETER.3.DIMENSION A AND B DO NOT INCLUDEMOLD PROTRUSION.4.MAXIMUM MOLD PROTRUSION 0.15 (0.006)PER SIDE.5.DIMENSION D DOES NOT INCLUDE DAMBARPROTRUSION. ALLOWABLE DAMBARPROTRUSION SHALL BE 0.127 (0.005) TOTALIN EXCESS OF THE D DIMENSION ATMAXIMUM MATERIAL CONDITION.6.751−01 THRU 751−06 ARE OBSOLETE. NEWSTANDARD IS 751−07.DIMAMIN MAX MIN MAXINCHES4.805.000.1890.197MILLIMETERSB 3.80 4.000.1500.157C 1.35 1.750.0530.069D0.330.510.0130.020G 1.27 BSC0.050 BSCH0.100.250.0040.010J0.190.250.0070.010K0.40 1.270.0160.050M0 8 0 8N0.250.500.0100.020S 5.80 6.200.2280.244 YM0.25 (0.010)Z S X S____ǒmminchesǓSCALE 6:1*For additional information on our Pb−Free strategy and solderingdetails, please download the ON Semiconductor Soldering andMounting T echniques Reference Manual, SOLDERRM/D.SOLDERING FOOTPRINT*PACKAGE DIMENSIONS8−Pin Plastic Dual In−Line Package (PDIP−8)N SUFFIXCASE 626−05NOTES:1.DIMENSION L TO CENTER OF LEAD WHENFORMED PARALLEL.2.PACKAGE CONTOUR OPTIONAL (ROUND ORSQ UARE CORNERS).3.DIMENSIONING AND TOLERANCING PER ANSIY14.5M, 1982.DIM MIN MAX MIN MAXINCHESMILLIMETERSA9.4010.160.3700.400B 6.10 6.600.2400.260C 3.94 4.450.1550.175D0.380.510.0150.020F 1.02 1.780.0400.070G 2.54 BSC0.100 BSCH0.76 1.270.0300.050J0.200.300.0080.012K 2.92 3.430.1150.135L7.62 BSC0.300 BSCM−−−10 −−−10N0.76 1.010.0300.040__PACKAGE DIMENSIONSSOIC −16 WB D SUFFIX CASE 751G −03ISSUE CqNOTES:1.DIMENSIONS ARE IN MILLIMETERS.2.INTERPRET DIMENSIONS AND TOLERANCES PER ASME Y14.5M, 1994.3.DIMENSIONS D AND E DO NOT INLCUDE MOLD PROTRUSION.4.MAXIMUM MOLD PROTRUSION 0.15 PER SIDE.5.DIMENSION B DOES NOT INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0.13 TOTAL INEXCESS OF THE B DIMENSION AT MAXIMUM MATERIAL CONDITION.DIM MIN MAX MILLIMETERS A 2.35 2.65A10.100.25B 0.350.49C 0.230.32D 10.1510.45E 7.407.60e 1.27 BSC H 10.0510.55h 0.250.75L 0.500.90q 0 7 __ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. “Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights nor the rights of others. SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body,or other applications intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees,subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part.SCILLC is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner.PUBLICATION ORDERING INFORMATION。

NE5532运放提高输出电压和功率的应用

NE5532运放提高输出电压和功率的应用

NE5532运放提高输出电压和功率的应用老铎:未经文章作者许可请郑重转载采用美国国半公司的运算放大器NE5532实现将输出电压幅度的扩展和功率放大。

除高压运放外,一般运放的最大输出电压在供电电压为±15V时仅有±12V左右。

这在高保真音响电路和自动控制电路中均不能满足要求。

这时可采用提高输出电压的方法将输出电压幅度扩展。

图1-1、图1-2是两种最简单扩展输出电压的方法。

在图1-1中运放A的供电电压不是直接取自稳压电源,而是由三极管T1、T2的发射极供给。

假设R1=R2=R3=R4=7.5Ω,并且忽略T1、T2的VBE压降,则加到运放上的供电电压为:V+=+[30-(30-Vo)/2]=15+Vo/2 V- =+[30-(30-Vo)/2]=-15+Vo/2 V+-V-=15+Vo/2-(-15-Vo/2)=30由此可知:改变电阻R1、R2、R3、R4之间的比例,可以得到运放A所需的供电电压;由于T1和T2的作用,A的供电电压随输出电压Vo的变化而“浮动”国,但A的正、负供电电压之差则保持不变。

如当A的最大输出蒙幅度为±24V 的输出幅度,这就大大扩展了输出电压的范围。

使用此电路时应注意:由于V+、V-随着输出电压Vo的变化而上下“浮动”,这就相当于A的两个输入端加了一个浮动的共模电压,因此电路的输出幅度受集成运放共模输入电压范围的限制,对于共模输入电压范围小的运放上述电路不宜采用。

图551中运放A的供电电压也是由T1、T2的发射极供给的,与图1-2不同之处是,它的V+、V-是固定的,其值由R1和R2的分压比确定。

V+=20/[(R1+R2)×R2-VBE]≈+15V,V-=-[20/(R1+R2)×R2-VBE]≈+15V。

它的工作原理是利用大多数集成运放的末级工作在乙类或甲乙类状态,当其输出电压为零时,静态工作电流很小;当其输出电压为正且逐渐增大时,负载上的电流增大,此电流由V-提供。

NE5532功率放大器

NE5532功率放大器

摘要随着音响技术的发展,整个音响技术领域发生了巨大的变化,它不仅融合了音频技术和功放技术,现代人对听觉的水平要求越来越高,所以对音响的音质真色,音高和音强等音质状况本来面貌的能力,同时对声音信号进行必要的修饰和加工。

因此,此次实训题目是双通道集成功率放大器。

本文主要介绍的是由NE5532芯片构成的音频放大器,它在音频应用场合提供低失真度和较高质量的音色,以及具有较宽的通频带。

放大倍数可根据需要更改,方便设计者研究。

关键词:音频技术;NE5532芯片;功率放大器AbstractWith the development of audio technology, gigantic change happened in the entire audio technology field , it has fused not only VF technology and meritorious service readjust oneself to a certain extent technology, horizontal demand of modernist to sense of hearing is more and more high, therefore to real color of the audio acoustic fidelity , pitch accord waits for an acoustic fidelity by force status original face ability, carries out necessary polishing and treating on sound signal at the same time. That reality trains examination questions is a binary channels integration power amplifier therefore , this time.That the main body of a book is introduced mainly is the VF amplifier being composed of NE5532 chip, as well as having broader band its tone colour applying occasion providing low distortion degree and higher mass in VF. Need changes , the convenient designer studies multiplications but basis.Keywords:VF technology;NE5532 chip; Power amplifier目录引言 (1)1主要器件功能介绍 (1)1.1三极管 (1)1.1.1三极管外形特征 (1)1.1.2达林顿三极管 (1)1.1.3三极管工作原理 (2)1.2 NE5532芯片 (2)1.2.1 NE5532的管脚分布 (2)1.2.2 NE5532的特点 (2)1.2.3 NE5532的主要参数 (3)2集成功率放大电路 (3)2.1负反馈电路作用及原理 (3)2.1.1放大器非线性失真 (4)2.1.2放大器幅频特性 (4)2.1.3负反馈降低噪声原理 (5)2.2自激及消振 (5)2.2.1自激 (5)2.2.2消振电路原理 (6)2.3功率放大器工作原理 (6)3双声道集成功率设计 (6)3.1 原理图设计 (6)3.2 电路音量调节部分 (6)3.3 NE5532构成前级电压放大 (6)3.4 三极管构成后级电流放大 (6)4实物制作与调试说明 (7)4.1 制作电路板 (7)4.1.1 PCB设计流程如图7所示。

NE5532运放并联驱动mj2955+2n3055的20W纯甲类功放

NE5532运放并联驱动mj2955+2n3055的20W纯甲类功放

NE5532运放并联驱动mj2955+2n3055的20W纯甲类功放国外有很多制作精良的功率放大器,输出功率并不大,但其甜美优雅的音乐往往是很多大功率放大器所无法比拟的。

k本文介绍的这款功放,虽然它的元件用得可算一般,其输出功率也只有20W,但其音乐表现力却极为出众,特别是对于古典音乐的重放尤其神韵。

【电路原理】电路如图6-1所示,本机电路中使用两组独立的运算放大器(NE5532)分别构成两路完整的单端放大器,它们都工作在纯甲类方式下,各自独立构成性能优良的全波形放大器。

放大后的信号在输出点再有机地混合,有效地降低了对音质危害极大的奇次谐波失真。

激励级的双极二极管(VT1和VT2)作为电流控制器件,直接从运放的输出端吸取所需的基极电流,是一种较为理想的使用方式。

VT3和VT4分别用作VT2、VT1的恒流源负载,保证了整机的稳定性,也使得本机可免去麻烦的调试手续。

,2激励级的VT1、VT2与输出级的两个大功率三极管构成交叉耦合方式。

由于各二极管工作点之间的钳位作用,使得此电路的稳定性极好,在电源接通瞬间也不会出现冲击电流声。

交叉耦合的另一个好处是激励级和输出级分别从正负电源端索取工作电流,这对提高放大器的共模抑制比十分有利。

激励级的工作电流高达85mA,输出级的工作电流更是高达1.7A之巨(两管并联)。

由于本机电流很大,制作时一定要给每一个三极管(包括激励级和恒流源负载三极管)都加上足够大的散热器,且电源变压器一定要有充足的余量(推荐为150W)。

由于本机对电源的适应性很强,故电源电路只需简单的整流、滤波即可。

有条件者可在供电回路串入1~2H的电感以获得更佳的效果(责任编辑:admin)。

ne5532低通滤波电路图设计及难点解析

ne5532低通滤波电路图设计及难点解析

ne5532 低通滤波电路图设计及难点解析
本文主要是关于ne5532 的相关介绍,并着重对ne5532 低通滤波电路
图设计及难点进行了详尽的阐述。

ne5532
NE5532 是高性能低噪声双运算放大器(双运放)集成电路。

与很多
标准运放相似,但它具有更好的噪声性能,优良的输出驱动能力及相当高的小信号带宽,电源电压范围大等特点。

因此很适合应用在高品质和专业音响设备、仪器、控制电路及电话通道放大器。

用作音频放大时音色温暖,保真度高,在上世纪九十年代初的音响界被发烧友们誉为“运放之皇”,至今仍是很多音响发烧友手中必备的运放之一。

特性。

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NE5532/SE5532/SA5532/NE5532A/SE5532A/SA5532A是一种双运放高性能低噪声运算放大器。

相比较大多数标准运算放大器,如1458,它显示出更好的噪声性能,提高输出驱动
能力和相当高的小信号和电源带宽。

这使该器件特别适合应用在高品质和专业音响设备,仪器和控制电路和电话通道放大器。

如果噪音非常最重要的,因此建议使用5532A版,因为它能保证噪声电压指标。

特点介绍:
.小信号带宽:10MHZ
.输出驱动能力:600Ω,10V有效值
.输入噪声电压:5nV/√Hz(典型值)
.直流电压增益:50000
.交流电压增益:2200-10KHZ
.功率带宽:140KHZ
.转换速率:9V/μs
.大的电源电压范围:±3V-±20V
.单位增益补偿
管脚图:
图1 NE5532 8脚引脚图图2 NE5532 16脚封装引脚功能图
ABSOLUTE MAXIMUM RATINGS绝对最大额定值
Tamb = 25 ℃; VS = ±15 V, unless otherwise specified
AC ELECTRICAL CHARACTERISTICS 交流电气特性
Tamb = 25℃; VS = ±15 V, unless otherwise specified.
Tamb = 25℃; VS = ±15 V, unless otherwise specified
图7 NE5532 LM386构成的功放电路图。

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