TL072CN低噪声的J - FET的双运算放大器

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运放大全

运放大全

线性运算放大器系列(OP、TL、LM、LF系列)型 号 功 能 型 号 功 能OP07 低失调运算放大器 LF13332 四常开模护开关OP07CZ 低失调运算放大器(工业级) LF13333 三常开二常闭模拟开关OP20 高精度、微功耗运算放大器 LF351 JFET输入运算放大器OP27 超低噪声、高精密运算放大器 LF353 JFET输入运算放大器OP37 低噪声精密运算放大器 LF355OP77 超低噪声精密运放 LF356 JFET输入运算放大器TL061 低功耗、JFET输入运算放大器 LF357 JFET输入运算放大器TL062 低功耗JFET输入双运算放大器 LF398 采样/保持器TL064 低功耗JFET输入四运算放大器 LF411 低失调、低漂移、JFET输入TL071 低功耗、JFET输入运算放大器 LF412 双低失调、低漂移JFET运放TL072 低功耗JFET输入双运算放大器 LF441 低功耗、JFET输入运放TL074 低功耗JFET输入四运算放大器TL081 通用JFET输入运算放大器TL082 通用JFET输入双运算放大器TL084 通用JFET输入四运算放大器型 号 功 能型 号 功 能 LM10CLN 高精度基准电源运放(军品) LM318 高速运算放大器 LM101JH 通用可调运算放大器(军品) LM319 高速运算放大器 LM108H 高精度运算放大器(军品)LM324 通用四运放 LM1203 三基色视频放大器LM331 电压、频率/频率、电压转换 LM124J 四运放(军品)LM334 恒流源 LM139J 四电压比较器(军品)LM339 四比较器 LM158J 低耗双运放(军品)LM347 四运放 LM1881N 视频同步分离器LM348 四电路通用运算放大器 LM193J 双电压比较器LM35 温度传感器 LM201 宽通用运放(工业级)LM358 低功耗双运放 LM208H 精密双极单运放(工业级)LM361 高频差动比较器 LM211N 高精度比较器(工业级)LM376 可调稳压电源 LM224J 四运放(工业级)LM386 声频小功放大器 LM231 电压、频率转换(工业级)LM3900 四电路、最流差动运算放大器 LM258N 低功耗双运放(工业级)LM3914 十段点级显示驱动器 LM285 1.2V、2.5V精密基准源(工业) LM3915 十段点级显示驱动器 LM2902N 四电路、单电源运算放大器LM393 双电压比较器 LM2903N 双电压比较器LM710CN 高频差分电压比较器 LM2904N 双电路、单电源运算放大器LM725 低漂移高精度运放 LM2907N 频率电压转换器LM733 视频放大器 LM2917N 频率电压转换器LM741 通用单运放 LM301AN 能用宽带运算放大器LM747 通用双运放 LM308N 单运算放大器LM748CN 不带补尝的741运放 LM310N 电压跟随运算放大器LM759 功率运放 LM311P 单比较器LM760 高速差分比较仪LM776 可编程运放LM777 高电压运放LM796HC 高电压运放LM833 双音频功放品) 器(军品) 准源(工业)。

TI、MOTO、ST三家公司TL072与TL082对比 Microsoft Word 文档

TI、MOTO、ST三家公司TL072与TL082对比 Microsoft Word 文档

TL082与TL072的区别先看意法半导体公司的TL082内部等效电路(见图一):再看意法半导体公司的TL072内部等效电路(见图二):怎么看这两个图中的电路都是一样的,若不是图一右侧标注“1/2TL082”、图二右侧标注“1/2TL072”,大家可能误会我将同一份图纸粘贴了两次。

下面看摩托罗拉半导体公司的TL082和TL072内部等效电路(见图三)、德州仪器公司的TL082和TL072内部等效电路(见图四):大家会发现很有趣:不同厂家的同型号产品电路结构不一样,相同厂家的不同型号产品电路结构相同。

下面我们看意法半导体公司关于TL082和TL072的参数表(详见“参考资料 1. 2. ”),查遍“输入失调电压”、“输入失调电压温度漂移”、“输入失调电流”、“输入偏置电流”、“大信号电压增益”、“供电电压变动抑制比”、“单通道空载供电电流”、“输入共模电压范围”、“共模抑制比”、“输出短路电流”、“输出电压摆幅”、“转换速率”、“上升时间”、“过冲”、“增益带宽积”、“输入阻抗”、“总谐波失真”、“等效输入噪声电压”、“相位裕量”、“通道隔离度”,逐项对比,未发现有何不同。

对比一下摩托罗拉半导体公司关于TL082和TL072的参数表(详见“参考资料 3. 4. ”),发现“输入失调电压”项TL082是小于15mV(全温度范围是小于20mV),而TL072是小于10mV(全温度范围是小于13mV);“输入失调电流”项TL082是小于200pA(全温度范围是小于5nA),而TL072是小于50pA(全温度范围是小于2nA);“输入偏置电流”项TL082是小于400pA(全温度范围是小于10nA),而TL072是小于200pA(全温度范围是小于7nA)。

再对比一下德州仪器公司关于TL082和TL072的参数表(详见“参考资料 5. 6. ”),发现“输入失调电压”项TL082是小于15mV(全温度范围是小于20mV),而TL072是小于10mV(全温度范围是小于13mV);“输入失调电流”项TL082是小于200pA(全温度范围是小于20nA),而TL072是小于100pA(全温度范围是小于20nA);“输入偏置电流”项TL082是小于400pA(全温度范围是小于50nA),而TL072是小于200pA(全温度范围是小于50nA);“供电电压变动抑制比”和“共模抑制比”项TL082是86dB(典型值),而TL072是100dB(典型值);“单通道空载供电电流”项TL082是小于2.8mA,而TL072是小于2.5mA;由上述可知:TL072比TL082略微精密一点,省电一点,也就那么一点点,甚至没有差别。

TL072CP

TL072CP

PACKAGING INFORMATIONOrderable Device Status(1)PackageType PackageDrawingPins PackageQtyEco Plan(2)Lead/Ball Finish MSL Peak Temp(3)8102304HA OBSOLETE10None Call TI Call TI81023052A ACTIVE LCCC FK201None POST-PLATE Level-NC-NC-NC 8102305HA ACTIVE CFP U101None A42SNPB Level-NC-NC-NC 8102305PA ACTIVE CDIP JG81None A42SNPB Level-NC-NC-NC 81023062A ACTIVE LCCC FK201None POST-PLATE Level-NC-NC-NC 8102306CA ACTIVE CDIP J141None A42SNPB Level-NC-NC-NC 8102306DA ACTIVE CFP W141None A42SNPB Level-NC-NC-NC JM38510/11905BPA ACTIVE CDIP JG81None A42SNPB Level-NC-NC-NC JM38510/11906BCA OBSOLETE CDIP J14None Call TI Call TITL071ACD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071ACDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071ACP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL071BCD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071BCDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071BCP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL071CD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071CDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071CP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL071CPSR ACTIVE SO PS82000Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071CPWLE OBSOLETE TSSOP PW8None Call TI Call TITL071ID ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071IDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL071IJG OBSOLETE CDIP JG8None Call TI Call TITL071IP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL071MFKB OBSOLETE LCCC FK20None Call TI Call TITL071MJG OBSOLETE CDIP JG8None Call TI Call TITL071MJGB OBSOLETE CDIP JG8None Call TI Call TITL072ACD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072ACDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEAR TL072ACJG OBSOLETE CDIP JG8None Call TI Call TITL072ACP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCOrderable Device Status(1)PackageType PackageDrawingPins PackageQtyEco Plan(2)Lead/Ball Finish MSL Peak Temp(3)TL072ACPSR ACTIVE SO PS82000Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL072BCD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072BCDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072BCP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL072CD ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072CDR ACTIVE SOIC D82500Green(RoHS&no Sb/Br)CU NIPDAU Level-1-260C-UNLIMTL072CP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL072CPSLE OBSOLETE SO PS8None Call TI Call TITL072CPSR ACTIVE SO PS82000Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL072CPWR ACTIVE TSSOP PW82000Pb-Free(RoHS)CU NIPDAU Level-1-250C-UNLIMTL072ID ACTIVE SOIC D875Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072IDR ACTIVE SOIC D82500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL072IP ACTIVE PDIP P850Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL072MFKB ACTIVE LCCC FK201None POST-PLATE Level-NC-NC-NCTL072MJG ACTIVE CDIP JG81None A42SNPB Level-NC-NC-NCTL072MJGB ACTIVE CDIP JG81None A42SNPB Level-NC-NC-NCTL072MUB ACTIVE CFP U101None A42SNPB Level-NC-NC-NCTL074ACD ACTIVE SOIC D1450Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL074ACDR ACTIVE SOIC D142500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEAR TL074ACJ OBSOLETE CDIP J14None Call TI Call TITL074ACN ACTIVE PDIP N1425Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL074ACNSR ACTIVE SO NS142000Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL074BCD ACTIVE SOIC D1450Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL074BCDR ACTIVE SOIC D142500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL074BCN ACTIVE PDIP N1425Pb-Free(RoHS)CU NIPDAU Level-NC-NC-NCTL074BCNSR ACTIVE SO NS142000Pb-Free(RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIMTL074CD ACTIVE SOIC D1450Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEARTL074CDR ACTIVE SOIC D142500Pb-Free(RoHS)CU NIPDAU Level-2-250C-1YEAROrderable DeviceStatus (1)Package Type Package Drawing Pins Package Qty Eco Plan (2)Lead/Ball Finish MSL Peak Temp (3)TL074CNACTIVE PDIP N 1425Pb-Free (RoHS)CU NIPDAU Level-NC-NC-NC TL074CNSRACTIVE SO NS 142000Pb-Free (RoHS)CU NIPDAU Level-2-260C-1YEAR/Level-1-235C-UNLIM TL074CPWACTIVE TSSOP PW 1490Pb-Free (RoHS)CU NIPDAU Level-1-250C-UNLIM TL074CPWLEOBSOLETE TSSOP PW 14None Call TI Call TI TL074CPWRACTIVE TSSOP PW 142000Pb-Free (RoHS)CU NIPDAU Level-1-250C-UNLIM TL074IDACTIVE SOIC D 1450Pb-Free (RoHS)CU NIPDAU Level-2-250C-1YEAR TL074IDRACTIVE SOIC D 142500Pb-Free (RoHS)CU NIPDAU Level-2-250C-1YEAR TL074IJOBSOLETE CDIP J 14None Call TI Call TI TL074INACTIVE PDIP N 1425Pb-Free (RoHS)CU NIPDAU Level-NC-NC-NC TL074MFKACTIVE LCCC FK 201None POST-PLATE Level-NC-NC-NC TL074MFKBACTIVE LCCC FK 201None POST-PLATE Level-NC-NC-NC TL074MJACTIVE CDIP J 141None A42SNPB Level-NC-NC-NC TL074MJBACTIVE CDIP J 141None A42SNPB Level-NC-NC-NC TL074MWBACTIVE CFP W 141None A42SNPB Level-NC-NC-NC (1)The marketing status values are defined as follows:ACTIVE:Product device recommended for new designs.LIFEBUY:TI has announced that the device will be discontinued,and a lifetime-buy period is in effect.NRND:Not recommended for new designs.Device is in production to support existing customers,but TI does not recommend using this part in a new design.PREVIEW:Device has been announced but is notin production.Samples may or may not be available.OBSOLETE:TI has discontinued the production of the device.(2)Eco Plan -May not be currently available -please check /productcontent for the latest availability information and additional product content details.None:Not yet available Lead (Pb-Free).Pb-Free (RoHS):TI's terms "Lead-Free"or "Pb-Free"mean semiconductor products that are compatible with the current RoHS requirements for all 6substances,including the requirement that lead not exceed 0.1%by weight in homogeneous materials.Where designed to be soldered at high temperatures,TI Pb-Free products are suitable for use in specified lead-free processes.Green (RoHS &no Sb/Br):TI defines "Green"to mean "Pb-Free"and in addition,uses package materials that do not contain halogens,including bromine (Br)or antimony (Sb)above 0.1%of total product weight.(3)MSL,Peak Temp.--The Moisture Sensitivity Level rating according to the JEDECindustry standard classifications,and peak solder temperature.Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided.TI bases its knowledge and belief on information provided by third parties,and makes no representation or warranty as to the accuracy of such information.Efforts are underway to better integrate information from third parties.TI has taken and continues to take reasonable steps to provide representative and accurate information but 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常用运算放大器

常用运算放大器

2 AD8047AR 250 MHz,通用电压反馈运算放大器3 AD8047AR-REEL 250 MHz,通用电压反馈运算放大器4 AD8047AR-REEL7 250 MHz,通用电压反馈运算放大器5 AD8048AN 250 MHz,通用电压反馈运算放大器6 AD8048AR 250 MHz,通用电压反馈运算放大器7 AD8048AR-REEL 250 MHz,通用电压反馈运算放大器8 AD8048AR-REEL7 250 MHz,通用电压反馈运算放大器9 AD8055AN 单-低成本,300 MHz电压反馈放大器10 AD8055AR 单-低成本,300 MHz电压反馈放大器11 AD8055AR-REEL 单-低成本,300 MHz电压反馈放大器12 AD8055AR-REEL7 单-低成本,300 MHz电压反馈放大器13 AD8055ART-REEL 单-低成本,300 MHz电压反馈放大器14 AD8055ART-REEL7 单-低成本,300 MHz电压反馈放大器15 AD8056AN 双-低成本,300 MHz电压反馈放大器16 AD8056AR 双-低成本,300 MHz电压反馈放大器17 AD8056AR-REEL 双-低成本,300 MHz电压反馈放大器18 AD8056AR-REEL7 双-低成本,300 MHz电压反馈放大器19 AD8056ARM 双-低成本,300 MHz电压反馈放大器20 AD8056ARM-REEL 双-低成本,300 MHz电压反馈放大器21 AD8056ARM-REEL7 双-低成本,300 MHz电压反馈放大器22 AD8057ACHIPS 单-低成本,高性能,电压反馈,325 MHz 放大器23 AD8057AR 单-低成本,高性能,电压反馈,325 MHz 放大器24 AD8057AR-REEL 单-低成本,高性能,电压反馈,325 MHz 放大器25 AD8057AR-REEL7 单-低成本,高性能,电压反馈,325 MHz 放大器26 AD8057ART-REEL 单-低成本,高性能,电压反馈,325 MHz 放大器27 AD8057ART-REEL7 单-低成本,高性能,电压反馈,325 MHz 放大器28 AD8058ACHIPS 双-低成本,高性能,电压反馈,325 MHz 放大器29 AD8058AR 双-低成本,高性能,电压反馈,325 MHz 放大器30 AD8058AR-REEL 双-低成本,高性能,电压反馈,325 MHz 放大器31 AD8058AR-REEL7 双-低成本,高性能,电压反馈,325 MHz 放大器32 AD8058ARM 双-低成本,高性能,电压反馈,325 MHz 放大器33 AD8058ARM-REEL 双-低成本,高性能,电压反馈,325 MHz 放大器34 AD8058ARM-REEL7 双-低成本,高性能,电压反馈,325 MHz 放大器35 AD8001SMD 800MHz,50mW电流反馈放大器36 AD846AN 450V/ms,精密电流反馈运算放大器37 AD846BN 450V/ms,精密电流反馈运算放大器38 AD846AQ 450V/ms,精密电流反馈运算放大器39 AD846BQ 450V/ms,精密电流反馈运算放大器40 AD846SQ 450V/ms,精密电流反馈运算放大器41 AD846SQ/883B 450V/ms,精密电流反馈运算放大器42 5962-8964601PA 450V/ms,精密电流反馈运算放大器43 OP260AZ 2路高速电流反馈型运算放大器44 OP260EZ 2路高速电流反馈型运算放大器46 OP260GP 2路高速电流反馈型运算放大器47 OP260GS 2路高速电流反馈型运算放大器48 OP260ARC/883 2路高速电流反馈型运算放大器49 SSM2024P 4组电流控制放大器50 AD8005ART 270MHz 400mA电流反馈型放大器51 OPA2650P 双路-宽带,低功耗,电压反馈运算放大器52 OPA2650PB 双路-宽带,低功耗,电压反馈运算放大器53 OPA2650U 双路-宽带,低功耗,电压反馈运算放大器54 OPA2650UB 双路-宽带,低功耗,电压反馈运算放大器55 OPA2650E 双路-宽带,低功耗,电压反馈运算放大器56 OPA2658P 双路-宽带,低功耗,电流反馈运算放大器57 OPA2658U 双路-宽带,低功耗,电流反馈运算放大器58 OPA2658UB 双路-宽带,低功耗,电流反馈运算放大器59 OPA2658E 双路-宽带,低功耗,电流反馈运算放大器60 OPA2680U 双路-宽带,电压反馈运算放大器,带使能--------------------------------------------------------------------CA3130高输入阻抗运算放大器CA3140高输入阻抗运算放大器CD4573四可编程运算放大器MC14573,ICL7650斩波稳零放大器LF347带宽四运算放大器KA347,LF351BI-FET单运算放大器LF353BI-FET双运算放大器LF356BI-FET单运算放大器LF357BI-FET单运算放大器LF398采样保持放大器LF411BI-FET单运算放大器LF412BI-FET双运放大器LM124低功耗四运算放大器(军用档)LM1458双运算放大器LM148四运算放大器LM224J低功耗四运算放大器(工业档)LM2902四运算放大器LM2904双运放大器LM301运算放大器LM308运算放大器LM308H运算放大器(金属封装)LM318高速运算放大器LM324,LM348四运算放大器HA17324,KA324四运算放大器LM358通用型双运算放大器HA17358,LM380音频功率放大器LM386-1,LM386-3音频放大器NJM386D,UTC386音频放大器LM386-4音频放大器LM3886音频大功率放大器LM3900四运算放大器LM725高精度运算放大器LM733带宽运算放大器LM741通用型运算放大器HA17741,MC34119小功率音频放大器NE5532高速低噪声双运算放大器NE5534高速低噪声单运算放大器TL062BI-FET双运算放大器TL064BI-FET四运算放大器NE592视频放大器OP07-CP精密运算放大器OP07-DP精密运算放大器TBA820M小功率音频放大器TL061BI-FET单运算放大器TL072BI-FET双运算放大器TL074BI-FET四运算放大器TL081BI-FET单运算放大器TL082BI-FET双运算放大器TL084BI-FET四运算放大器。

TI、MOTO、ST三家公司TL072与TL082对比 Microsoft Word 文档

TI、MOTO、ST三家公司TL072与TL082对比 Microsoft Word 文档

TL082与TL072的区别先看意法半导体公司的TL082内部等效电路(见图一):再看意法半导体公司的TL072内部等效电路(见图二):怎么看这两个图中的电路都是一样的,若不是图一右侧标注“1/2TL082”、图二右侧标注“1/2TL072”,大家可能误会我将同一份图纸粘贴了两次。

下面看摩托罗拉半导体公司的TL082和TL072内部等效电路(见图三)、德州仪器公司的TL082和TL072内部等效电路(见图四):大家会发现很有趣:不同厂家的同型号产品电路结构不一样,相同厂家的不同型号产品电路结构相同。

下面我们看意法半导体公司关于TL082和TL072的参数表(详见“参考资料 1. 2. ”),查遍“输入失调电压”、“输入失调电压温度漂移”、“输入失调电流”、“输入偏置电流”、“大信号电压增益”、“供电电压变动抑制比”、“单通道空载供电电流”、“输入共模电压范围”、“共模抑制比”、“输出短路电流”、“输出电压摆幅”、“转换速率”、“上升时间”、“过冲”、“增益带宽积”、“输入阻抗”、“总谐波失真”、“等效输入噪声电压”、“相位裕量”、“通道隔离度”,逐项对比,未发现有何不同。

对比一下摩托罗拉半导体公司关于TL082和TL072的参数表(详见“参考资料 3. 4. ”),发现“输入失调电压”项TL082是小于15mV(全温度范围是小于20mV),而TL072是小于10mV(全温度范围是小于13mV);“输入失调电流”项TL082是小于200pA(全温度范围是小于5nA),而TL072是小于50pA(全温度范围是小于2nA);“输入偏置电流”项TL082是小于400pA(全温度范围是小于10nA),而TL072是小于200pA(全温度范围是小于7nA)。

再对比一下德州仪器公司关于TL082和TL072的参数表(详见“参考资料 5. 6. ”),发现“输入失调电压”项TL082是小于15mV(全温度范围是小于20mV),而TL072是小于10mV(全温度范围是小于13mV);“输入失调电流”项TL082是小于200pA(全温度范围是小于20nA),而TL072是小于100pA(全温度范围是小于20nA);“输入偏置电流”项TL082是小于400pA(全温度范围是小于50nA),而TL072是小于200pA(全温度范围是小于50nA);“供电电压变动抑制比”和“共模抑制比”项TL082是86dB(典型值),而TL072是100dB(典型值);“单通道空载供电电流”项TL082是小于2.8mA,而TL072是小于2.5mA;由上述可知:TL072比TL082略微精密一点,省电一点,也就那么一点点,甚至没有差别。

放大器型号及选用原则

放大器型号及选用原则

CA3130 高输入阻抗运算放大器Intersil[DATA]CA3140 高输入阻抗运算放大器CD4573 四可编程运算放大器MC14573ICL7650 斩波稳零放大器LF347(NS[DATA]) 带宽四运算放大器KA347LF351 BI-FET单运算放大器NS[DATA]LF353 BI-FET双运算放大器NS[DATA]LF356 BI-FET单运算放大器NS[DATA]LF357 BI-FET单运算放大器NS[DATA]LF398 采样保持放大器NS[DATA]LF411 BI-FET单运算放大器NS[DATA]LF412 BI-FET双运放大器NS[DATA]LM124 低功耗四运算放大器(军用档) NS[DATA]/TI[DATA]LM1458 双运算放大器NS[DATA]LM148 四运算放大器NS[DATA]LM224J 低功耗四运算放大器(工业档) NS[DATA]/TI[DATA] LM2902 四运算放大器NS[DATA]/TI[DATA]LM2904 双运放大器NS[DATA]/TI[DATA]LM301 运算放大器NS[DATA]LM308 运算放大器NS[DATA]LM308H 运算放大器(金属封装)NS[DATA]LM318 高速运算放大器NS[DATA]LM324(NS[DATA]) 四运算放大器HA17324,/LM324N(TI) LM348 四运算放大器NS[DATA]LM358 NS[DATA] 通用型双运算放大器HA17358/LM358P(TI) LM380 音频功率放大器NS[DATA]LM386-1 NS[DATA] 音频放大器NJM386D,UTC386LM386-3 音频放大器NS[DATA]LM386-4 音频放大器NS[DATA]LM3886 音频大功率放大器NS[DATA]LM3900 四运算放大器LM725 高精度运算放大器NS[DATA]LM733 带宽运算放大器LM741 NS[DATA] 通用型运算放大器HA17741MC34119 小功率音频放大器NE5532 高速低噪声双运算放大器TI[DATA]NE5534 高速低噪声单运算放大器TI[DATA]NE592 视频放大器OP07-CP 精密运算放大器TI[DATA]OP07-DP 精密运算放大器TI[DATA]TBA820M 小功率音频放大器ST[DATA]TL061 BI-FET单运算放大器TI[DATA]TL062 BI-FET双运算放大器TI[DATA]TL064 BI-FET四运算放大器TI[DATA]TL072 BI-FET双运算放大器TI[DATA] TL074 BI-FET四运算放大器TI[DATA] TL081 BI-FET单运算放大器TI[DATA] TL082 BI-FET双运算放大器TI[DATA] TL084 BI-FET四运算放大器TI[DATA]//----------------------------------------- 常用运放与常见运放型号简介LFC2 高增益运算放大器LFC3 中增益运算放大器LFC4 低功耗运算放大器LFC54 低功耗运算放大器LFC75 低功耗运算放大器F003 通用Ⅱ型运算放大器F004(5G23) 中增益运算放大器F005 中增益运算放大器F006 通用Ⅱ型运算放大器F007(5G24) 通用Ⅲ型运算放大器F010 低功耗运算放大器F011 低功耗运算放大器F1550 射频放大器F1490 宽频带放大器F1590 宽频带放大器F157/A 通用型运算放大器F253 低功耗运算放大器F741(F007) 通用Ⅲ型运算放大器F741A 通用型运算放大器F747 双运算放大器OP-07 超低失调运算放大器OP111A 低噪声运算放大器F4741 通用型四运算放大器F101A/201A 通用型运算放大器F301A 通用型运算放大器F108 通用型运算放大器F308 通用型运算放大器F110/210 电压跟随器F310 电压跟随器F118/218 高速运算放大器F441 低功耗JEET输入运算放大器F318 高速运算放大器F124/224 四运算放大器F324 四运算放大器F148 通用型四运算放大器F248/348 通用型四运算放大器F158/258 单电源双运算放大器F358 单电源双运算放大器F1558 通用型双运算放大器F4558 双运算放大器LF791 单块集成功率运算放大器LF4136 高性能四运算放大器FD37/FD38 运算放大器FD46 高速运送放大器LF082 高输入阻抗运送放大器LFOP37 超低噪声精密放大器LF3140 高输入阻抗双运送放大器LF7650 斩波自稳零运送放大器LZ1606 积分放大器LZ19001 挠性石英表伺服电路变换放大器LBMZ1901 热电偶温度变换器LM741 运算放大器LM747 双运算放大器OP-07 超低失调运算放大器LM101/201 通用型运算放大器LM301 通用型运算放大器LM108/208 通用型运算放大器LM308 通用型运算放大器LM110 电压跟随器LM310 电压跟随器LM118/218 高速运算放大器LM318 高速运算放大器LM124/224 四运算放大器LM324 四运算放大器LM148 四741运算放大器LM248/348 四741运算放大器LM158/258 单电源双运算放大器LM358 单电源双运算放大器LM1558 双运算放大器OP-27CP 低噪声运算放大器TL062 低功耗JEET运算放大器TL072 低噪声JEET输入型运算放大器TL081 通用JEET输入型运算放大器TL082 四高阻运算放大器(JEET)TL084 四高阻运算放大器(JEET)MC1458 双运放(内补偿)LF147/347 JEET输入型运算放大器LF156/256/356 JEET输入型运算放大器LF107/307 运算放大器LF351 宽带运算放大器LF353 双高阻运算放大器LF155/355 JEET输入型运算放大器LF157/357 JEET输入型运算放大器LM359 双运放(GB=400MC)LM381 双前置放大器CA3080 跨导运算放大器CA3100 宽频带运算放大器CA3130 BiMOS运算放大器CA3140 BiMOS运算放大器CA3240 BiMOS双运算放大器CA3193 BiMOS精密运算放大器CA3401 单电源运算放大器MC3303 单电源四运算放大器MC3403 低功耗四运放LF411 低失调低漂移JEET输入运放LF444 四高阻抗运算放大器μpc4558低噪声宽频带运放MC4741 四通用运放LM709 通用运放LM725 低漂移高精度运放LM733 宽带放大器LM748 双运放ICL7650 斩波稳零运放ICL7660 CMOS电压放大(变换)器=============常见运放型号简介CA3130 高输入阻抗运算放大器Intersil[DATA]CA3140 高输入阻抗运算放大器CD4573 四可编程运算放大器MC14573ICL7650 斩波稳零放大器LF347(NS[DATA]) 带宽四运算放大器KA347LF351 BI-FET单运算放大器NS[DATA]LF353 BI-FET双运算放大器NS[DATA]LF356 BI-FET单运算放大器NS[DATA]LF357 BI-FET单运算放大器NS[DATA]LF398 采样保持放大器NS[DATA]LF411 BI-FET单运算放大器NS[DATA]LF412 BI-FET双运放大器NS[DATA]LM124 低功耗四运算放大器(军用档) NS[DATA]/TI[DATA] LM1458 双运算放大器NS[DATA]LM148 四运算放大器NS[DATA]LM224J 低功耗四运算放大器(工业档) NS[DATA]/TI[DATA] LM2902 四运算放大器NS[DATA]/TI[DATA]LM2904 双运放大器NS[DATA]/TI[DATA]LM301 运算放大器NS[DATA]LM308 运算放大器NS[DATA]LM308H 运算放大器(金属封装)NS[DATA]LM318 高速运算放大器NS[DATA]LM324(NS[DATA]) 四运算放大器HA17324,/LM324N(TI)LM348 四运算放大器NS[DATA]LM358 NS[DATA] 通用型双运算放大器HA17358/LM358P(TI)LM380 音频功率放大器NS[DATA]LM386-1 NS[DATA] 音频放大器NJM386D,UTC386LM386-3 音频放大器NS[DATA]LM386-4 音频放大器NS[DATA]LM3886 音频大功率放大器NS[DATA]LM3900 四运算放大器LM725 高精度运算放大器NS[DATA]LM733 带宽运算放大器LM741 NS[DATA] 通用型运算放大器HA17741MC34119 小功率音频放大器NE5532 高速低噪声双运算放大器TI[DATA]NE5534 高速低噪声单运算放大器TI[DATA]NE592 视频放大器OP07-CP 精密运算放大器TI[DATA]OP07-DP 精密运算放大器TI[DATA]TBA820M 小功率音频放大器ST[DATA]TL061 BI-FET单运算放大器TI[DATA]TL062 BI-FET双运算放大器TI[DATA]TL064 BI-FET四运算放大器TI[DATA]TL072 BI-FET双运算放大器TI[DATA]TL074 BI-FET四运算放大器TI[DATA]TL081 BI-FET单运算放大器TI[DATA]TL082 BI-FET双运算放大器TI[DATA]TL084 BI-FET四运算放大器TI[DATA]2.2 主要交流指标开环带宽:开环带宽定义为,将一个恒幅正弦小信号输入到运放的输入端,从运放的输出端测得开环电压增益从运放的直流增益下降3db(或是相当于运放的直流增益的0.707)所对应的信号频率。

常用电子元器件

常用电子元器件

整流二极管:1N4001~1N4007 50V~1000~/1。

0A 1N5391~1N5399 50V~1000V/1。

5A 1N5400~1N54 08 50V~1000V/3。

0A开关二极管:1N4148 1N4150 1N4448肖特基二极管:1N5817~1N5819 20V~40V/1。

0A 1N5820~1N5822 20V~40V/3。

0A 1N60 1N60P小电流低压降光电耦合器:4N35 4N36 4N37晶体三极管:PNP:8550 9015 A92NPN:9012 9013 8050 9014 9018D/A转换器:AD7520 AD7521 AF7530 AD75218位(D/A):DAC0830 DAC0832 (D/A )12位:AD7541 (D/A)8位(A/D):ADC0802 ADC0803 ADC0804 ADC0831 ADC0832 ADC0834 ADC0838(A/D)跨导运算变压器:CA3080 CA3080A OTABiMOS运算变压器:CA3140 CA3140ADB3 双向触发二极管快恢复二极管:FR101~FR107 50V~1000/1。

0A三位半A/D转换器:ICL7106 ICL7107 ICL7116 ICL7117载波稳零运算放大器:ICL7650CMOS电源电压变换器:ICL7660/MAX1044单片函数发生器:ICL8038通用计数器:ICM7216 ICM7216B ICM7216D 10MHz 带BCD输出10MZ通用计数器:ICM7226A ICM7226B单/双通用定时器:ICM7555 ICM7555DTMF 收发器:ISO2-CMOS MT8880CJFET输入运算放大器:LF351FJET输入宽带高速双运算放大器:LF353三端可调电源:LM117 LM317A LM317低功耗四运算放大器:LM124 LM124 LM324 LM2920三端可调负电压调整器:LM137 LM337低功耗四电压比较器:LM139 LM239 LM339 LM2901 LM3302可关断开关电源:LM1575-3.3、LM2575-3.3、LM2575HV-3.3、LM1575- 5.0、LM2575-5.0、LM2575HV-5.0、L M1575-12、LM2575-12、LM2575HV-12、LM1575-15, LM2575-15、LM2575HV-15、LM157 5- ADJ、LM2575-ADJ LM2576-3.3、LM2576HV-3.3、LM2576-5.0、LM2576HV- 5.0、LM257 6-12、LM2576HV-12、LM2576-15、LM2576HV-15、LM2576-ADJ低功耗双运算放大器:LM158 LM258 LM358 LM2904低功耗双电压比较器:LM193 LM293 LM393 LM2903通用运算放大器:LM201 LM301 LM741精密电压频率转换器:LM231A LM231 LM331A LM331 微功耗基准电压二极管:LM285 LM358精密运算放大器:LM308A低压音频小功率放大器:LM386带温度稳定器精密电压基准电路:LM299 LM399 LM3999可调电压基准电路:LM431锁相环音频译码器:LM657 LM657C双低噪声音频功率放大器:LM831 LM833双定时LED电子钟电路:LM8365单片函数发生器;MAX038 0。

常用运算放大器型号

常用运算放大器型号

常用运算放大器型号CA3130高输入阻抗运算放大器CA3140高输入阻抗运算放大器CD4573四可编程运算放大器MC14573,ICL7650斩波稳零放大器LF347带宽四运算放大器KA347,LF351BI-FET单运算放大器LF353BI-FET双运算放大器LF356BI-FET单运算放大器LF357BI-FET单运算放大器LF398采样保持放大器LF411BI-FET单运算放大器LF412BI-FET双运放大器LM124低功耗四运算放大器(军用档)LM1458双运算放大器LM148四运算放大器LM224J低功耗四运算放大器(工业档)LM2902四运算放大器LM2904双运放大器LM301运算放大器LM308运算放大器LM308H运算放大器(金属封装)LM318高速运算放大器LM324,LM348四运算放大器HA17324,KA324四运算放大器LM358通用型双运算放大器HA17358,LM380音频功率放大器LM386-1,LM386-3音频放大器NJM386D,UTC386音频放大器LM386-4音频放大器LM3886音频大功率放大器LM3900四运算放大器LM725高精度运算放大器LM733带宽运算放大器LM741通用型运算放大器HA17741,MC34119小功率音频放大器NE5532高速低噪声双运算放大器NE5534高速低噪声单运算放大器TL062BI-FET双运算放大器TL064BI-FET四运算放大器NE592视频放大器OP07-CP精密运算放大器OP07-DP精密运算放大器TBA820M小功率音频放大器TL061BI-FET单运算放大器TL072BI-FET双运算放大器TL074BI-FET四运算放大器TL081BI-FET单运算放大器TL082BI-FET双运算放大器TL084BI-FET四运算放大器。

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MAXIMUM PEAK-TO-PEAKOUTPUT VOLTAGE (V)
MAXIMUMPEAK-TO-PEAK OUTPUT VOLTAGE (V)
MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS FREQUENCY
30
25
VCC = 15V
20 VCC = 10V
25
20
VCC = 15V RL = 2kΩ S ee Figure 2
15
10
5 Ta mb = +125 C
0 10k 40k 100k
Ta mb = -55 C 400k 1M 4M
10M
FREQUENCY (Hz)
MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS LOAD RESISTANCE
10
µs 0.1
% 10
GBP Ri
Gain Bandwidth Product (f = 100kHz, Tamb = 25oC, Vin = 10mV, RL = 2kΩ, CL = 100pF) Input Resistance
2.5 4 1012
2.5 4 1012
MHz Ω
THD
Total RL =
TL072
®
TL072A - TL072B
LOW NOISE J-FET DUAL OPERATIONAL AMPLIFIERS
. WIDE COMMON-MODE (UP TO VCC+) AND DIFFERENTIAL VOLTAGE RANGE
. LOW INPUT BIAS AND OFFSET CURRENT . LOW NOISE en = 15nV/√Hz (typ) . OUTPUT SHORT-CIRCUIT PROTECTION . HIGH INPUT IMPEDANCE J–FET INPUT
mA
10 40 60 10 40 60
10
60 10
60
±VOPP
Output Voltage Swing Tamb = 25oC
RL = 2kΩ
10 12
10 12
V
RL = 10kΩ
12 13.5
12 13.5
Tmin. ≤ Tamb ≤ Tmax.
RL = 2kΩ
10
10
RL = 10kΩ
12
3/9
TL072 - TL072A - TL072B
MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS FREQUENCY
MAXIMUM PEAK-TO-PEAKOUTPUT VOLTAGE (V)
30 V CC = 15V
25
20 V CC = 10V
15
R L = 2kΩ T a mb = +25° C See Figure 2
December 1998
1/9
TL072 - TL072A - TL072B
SCHEMATIC DIAGRAM
VCC
Non- inverting i np ut
I nver t ing input
1 0 0Ω
200Ω
10 0Ω 30k
Output
1/2 TL072
8.2k
1.3k
35k
1.3k
35k 1 0 0Ω
TL072C,AC,BC
0 to 70
oC
TL072I,AI,BI
–40 to 105
TL072M,AM,BM
–55 to 125
–65 to 150
oC
Notes :
1. All voltage values, except differential voltage, are with respect to the zero reference level (ground) of the supply voltages where the zero reference level is the midpoint between VCC+ and VCC–.
TL072I,M,AC,AI, AM,BC,BI,BM
TL072C
Unit
Min. Typ. Max. Min. Typ. Max.
Vio DVio
Input Offset Voltage Tamb = 25oC
(RS
=
50Ω)
Tmin. ≤ Tamb ≤ Tmax.
TL072 TL072A TL072B TL072 TL072A
15
R L= 10kΩ Tamb = +25 C See Figure 2
10
5 0 100
VCC = 5V
1K
10K 100K 1M
FREQUENCY (Hz)
Tmin. ≤ Tamb ≤ Tmax.
20 200 20
20 200
pA
20
nA
Avd
Large Signal Voltage Tamb = 25oC
Gain
(RL
=
2kΩ,
VO
=
±10V)
50
200
Tmin. ≤ Tamb ≤ Tmax.
25
25 200 15
V/mV
SVR
Supply Voltage Rejection Tamb = 25oC
TL072B
Input Offset Voltage Drift
3 10
3
6
1
3
13
7
5
10
mV 3 10
13
10
µV/oC
Iio
Input Offset Current * Tamb = 25oC
Tmin. ≤ Tamb ≤ Tmax.
5 100 4
5 100
pA
10
nA
Iib
Input Bias Current * Tamb = 25oC
2. Differential voltages are at the non-inverting input terminal with respect to the inverting input terminal. 3. The magnitude of the input voltage must never exceed the magnitude of the supply voltage or 15 volts, whichever is less. 4. The output may be shorted to ground or to either supply. Temperature and /or supply voltages must be limited to ensure that the
12
SR
Slew Tamb
=Ra2t5eoC(V, inun=ity10gVa,inR)L
=
2kΩ,
CL
=
100pF,
8 16
8 16
V/µs
tr
Rise Tamb
T=im25eoC(V, inun=ity20gmaiVn,) RL
=
2kΩ,
CL
=
100pF,
0.1
KOV
OTavmebrs=ho2o5toC(V, inun=ity20gmaiVn,) RL = 2kΩ, CL = 100pF,
Ratio
(RS
=
50Ω)
80 86
70 86
dB
Tmin. ≤ Tamb ≤ Tmax.
80
70
ICC
Supply Current, per Amp, no Load Tamb = 25oC
Tmin. ≤ Tamb ≤ Tmax.
Vicm Input Common Mode Voltage Range
STAGE
. LOW HARMONIC DISTORTION : 0.01% (typ) . INTERNAL FREQUENCY COMPENSATION . LATCH UP FREE OPERATION . HIGH SLEW RATE : 16V/µs (typ)
N DIP8 (Plastic Package)
dissipation rating is not exceeded.
2/9
TL072 - TL072A - TL072B
ELECTRICAL CHARACTERISTICS VCC = ±15V, Tamb = 25oC (unless otherwise specified)
Symbol
Parameter
10 V CC = 5V
5
0
100
1K
10K
100K
1M
10M
FREQUENCY (Hz)
MAXIMUMPEAK-TO-PEAK OUTPUT VOLTAGE (V)
MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS FREQUENCY
30 Ta mb = +25 C
VCC
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
Value
Unit
VCC Supply Voltage - (note 1)
±18
V
Vi Input Voltage - (note 3)
±15
V
Vid Differential Input Voltage - (note 2)
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