UPC451 RENESAS | Alldatasheet
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R03DS0142EJ0100 Rev.1.00 Page 1 of 10 2019.1.17 Datasheet μPC451, μPC324 Single Power Supply Quad Operational Amplifiers
DESCRIPTION
μPC451, μ PC324 are quad operational amplifiers designed to operate on a single power supply. The features include low-voltage operation, a common-mode input voltage that range from V− (GND) level, an output from a V− (GND) level that is determined by the output stage of class C push-pull circuit and a 50 μA(TYP.) constant current, and a low current consumption. In addition to that, these amplifiers can also operate in both positive and negative power supply and can be used extensively in various amplifier circuits. The μPC451 is suited for wide operating ambient temperature use due to its temperature expansion type, while μPC324 is for general purposes usage. A DC parameter selection that is compatible to operational amplifiers is also available. μPC1251, μ PC358 which are dual types with the same circuit configuration are also available under this series of operational amplifiers.
FEATURES
Input Offset Voltage ±2 mV (TYP.) Input Offset Current ±5 nA (TYP.) Large Signal Voltage Gain 100000 (TYP.) Internal Frequency Compensation Output Short-Circuit Protection
ORDERING INFORMATION
Ordering Name Selection Package μPC451G2-A General 14-pin plasti c SOP ( 5.72 mm ( 225 )) μPC451G2(5)-A DC parameter selection 14-pin plastic SOP ( 5.72 mm ( 225 )) μPC324G2-A General 14-pin plasti c SOP ( 5.72 mm ( 225 )) μPC324G2(5)-A DC parameter selection 14-pin plastic SOP ( 5.72 mm ( 225 )) μPC451GR-9LG-A General 14-pin plastic TSSOP ( 5.72 mm ( 225 )) μPC451GR(5)-9LG-A DC parameter selection 14-pin plastic TSSOP ( 5.72 mm ( 225 )) μPC324GR-9LG-A General 14-pin plastic TSSOP ( 5.72 mm ( 225 )) μPC324GR(5)-9LG-A DC parameter selection 14-pin plastic TSSOP ( 5.72 mm ( 225 )) The information in this document is subject to change without n otice. Before using this document, please confirm that this is the latest version. Not all products and/or types are available in every country. Please check with Renesas Electronics sales representative for availability and additional information. R03DS0142EJ0100 Rev.1.00 2019.1.17
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 2 of 10 2019.1.17 PIN CONFIGURATION (Marking side) EQUIVALENT CIRCUIT (1/4 Circuit) 1OUT1
11 V -
14 OUT4
13 II4
12 IN4
8 OUT3
9 II3
10 IN3
+ - - + II Q1 IN Q11 Q8 Q9 Q10 Q12 OUT V - V + Q13 50 μA 100 μA RSC 6 μA 6 μA CC
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 3 of 10 2019.1.17 ABSOLUTE MAXIMUM RATINGS (TA = 25 C) Parameter Symbol μPC451G2, μPC451G2(5) μPC324G2, μPC324G2(5) μPC451GR, μPC451GR(5) μPC358GR, μPC358GR(5) Unit Voltage between V+ and V− Note1 Differential Input Voltage VID ± 3 2 V Input Voltage Note 2 VI V - -0.3 ~ V - +32 V Output applied Voltage Note3 Vo V - -0.3 ~ V + +0.3 V Total Power Dissipation Note4 PT 550 mW Output Short Circuit Duration Note5 tS Indefinite s Operating Ambient Temperature Storage Temperature Tstg -55 ~ +125 -55 ~ +150 -55 ~ +125 C 【Note】 1 . Note that reverse connections of the power supply may damage the ICs. 2. The input voltage is allowed to input without damage or destruction independent of the magnitude of V+. Either input signal is not allowe d to go negative by more than 0.3 V. In addition, the input voltage that operates normally as an oper ational amplifier is within the Common Mode Input Voltage range of an e l e c t r i c a l c h a r a c t e r i s t i c . 3. A range where input voltage can be applied to an output pin ext e r n a l l y w i t h n o d e t e r i o r a t i o n o r d a m a g e t o t h e f e a t u r e ( c h a r a c t e r i s t i c ) . T h e i n p u t v o l t a g e c a n be applied regardless of the electric supply voltage. This s p e c i f i c a t i o n w h i c h i n c l u d e s t h e t r a n s i t i o n s t a t e s u c h a s electric power ON/OFF must be kept. 4. This is the value when the glass epoxy substrate (size: 100 mm x 100 mm, thickness: 1 mm, 15% of the s u b s t r a t e a r e a w h e r e o n l y o n e s i d e i s c o p p e r f o i l e d i s f illing wired) is mounted. Note that restrictions will be made to the following condit ions for each product, and the derating ratio depending on the operating ambient temperature. μPC4511G2, 324G2: Derate at -5.5 mW/ C when TA > 2 5 C μPC451GR-9LG : Derate at -7.0 mW/ C when TA > 71 C ( J u n c t i o n − a m b i e n t thermal resistance Rth(J-A) = 144°C/W) μPC324GR-9LG : Derate at -7.0 mW/ C when TA > 46 C ( J u n c t i o n − a m b i e n t thermal resistance Rth(J-A) = 144°C/W) 5. Short circuits from the output to V+ can cause destruction. (V+ ≦ +15V, for any one channel only) Pay careful a t t e n t i o n t o t h e t o t a l p o w e r d i s s i p a t i o n b y n o t e x c e e d i n g the absolute maximum ratings, Note 4. RECOMMENDED OPERATING CONDITIONS Parameter Symbol MIN. TYP. MAX. Unit Power Supply Voltage (Split) V ± ±1.5 ±15 V Power Supply Voltage (V - = GND) V + +3 +30 V
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 4 of 10 2019.1.17
ELECTRICAL CHARACTERISTICS
μPC451, μPC324 (TA = 25 C, V + = +5 V, V - = GND) Parameter Symbol MIN TYP. MAX. Unit Test Condition Input Offset Voltage VIO ± 2 ± 7 m V R S = 0 Ω Input Offset Current IIO ± 5 ± 5 0 n A Input Bias Current note 6 IB 15 250 nA Large Signal Voltage Gain AV 25000 100000 RL ≧ 2 k Ω Circuit Current note 7 ICC 1.2 2.0 mA R L = ∞, IO = 0 A Common Mode Rejection Ratio CMR 65 85 dB Supply Voltage Rejection Ratio SVR 65 100 dB Output Voltage Swing VO 0 V + -1.5 V RL = 2 kΩ (Connected to GND) Common Mode Input Voltage Range VICM 0 V + -1.5 V Output Source Current IO SOURCE 2 0 4 0 m A VIN (+) = +1 V, VIN (-) = 0 V Output Sink Current IO SINK1 1 0 2 0 m A VIN (-) = +1 V, VIN (+) = 0 V IO SINK2 12 50 μA VIN (-) = +1 V, VIN (+) = 0 V, VO = 200 mV Channel Separation 120 dB f = 1 ~ 20 kHz μPC451(5), μPC324(5) (TA = 25 C, V + = +5 V, V - = GND) Parameter Symbol MIN. TYP. MAX. Unit Test Condition Input Offset Voltage VIO ± 2 ± 3 m V R S = 0 Ω Input Offset Current IIO ± 5 ± 5 0 n A Input Bias Current Note 6 IB 15 60 nA Large Signal Voltage Gain AV 50000 100000 RL ≧ 2 k Ω Circuit Current Note7 ICC 1.2 1.5 mA R L = ∞, IO = 0 A Common Mode Rejection Ratio CMR 65 85 dB Supply Voltage Rejection Ratio SVR 65 100 dB Output Voltage Swing VO 0 V + -1.5 V RL = 2 kΩ (Connected to GND) Common Mode Input Voltage Range VICM 0 V + -1.4 V Output Source Current IO SOURCE 3 0 4 0 m A V IN (+) = +1 V, VIN (-) = 0 V Output Sink Current IO SINK1 1 5 2 0 m A V IN (-) = +1 V, VIN (+) = 0 V IO SINK2 30 50 70 μA VIN (-) = +1 V, VIN (+) = 0 V, VO = 200 mV Channel Separation 120 dB f = 1 ~ 20 kHz 【Note】6. The absolute value of the input bias current is small, thus the direction of the current flowing from the inside of the IC may be reversed due to variations in the product during high temperature. 7. This is a current that flows in the internal circuit. This current will flow irrespective of the channel used.
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 5 of 10 2019.1.17 TYPICAL PERFORMANCE CHARACTERISTICS (TA = 25 C, TYP.) (Reference Value) 200 400 600 800 1000 0 2 04 06 08 0 1 0 0 1 2 0 1 4 0 Total Power Dissiplation, PT [mW] Operating Ambient Temperature, TA [C] PT vs. TA With 100 mm x 100 mm, thickness 1 mm glass epoxy substrate (refer to "ABSOLUTE MAXIMUM RATINGS Note4") TA = -40 C TA = 25 C TA = 125 C 0.5 1.5 2.5 3.5 01 0 2 0 3 0 4 0 Supply Current, ICC [mA] Power Supply Voltage, V+ [V] (V - = GND) ICC vs. V + RL = IO = 0 AICC V + A 0 1 02 03 04 0 Input Offset Voltage, VIO [mV] Power Supply Voltage, V + [V] (V - = GND) VIO vs. V + -50 0 50 100 150 Input Offset Voltage, VIO [mV] Operating Ambient Temperature,TA [C] VIO vs. TA V + = +5 V, V - = GND Any 5 samples data -10 0 1 02 03 04 0 Iniput Bias Current, IB [nA] Power Supply Voltage, V + [V] (V - = GND) IB vs. V + -10 -50 0 50 100 150 Input Bias Current, IB [nA] Operating Ambient Temperature TA [C] IB vs. TA V + = +15 V V - = GND
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 6 of 10 2019.1.17 V + = +5 V V - = GND V + = +30 V, V - = GND -50 0 50 100 150 Output Short Current, IO SHORT [mA] Operating Ambient Temperature, TA [C] IO SHORT vs. TA IO SHORT RL = 2 kΩ RL = 20 kΩ 120 160 0 1 02 03 04 0 Votlage Gain, AV [dB] Power Supply Voltage, V + [V] (V - = GND) AV vs. V + VIN = ⊿ 1 Vp-p V ± = ±15 V V ± = ±15 V V ± = ±2.5 V V ± = ±2.5 V 100 120 140 0.1 1 10 100 1k 10k 100k 1M 10M Voltage Gain, AV [dB], Phase Margin φ [deg] Frequency, f [Hz] AV, φ vs. f φ AV VO 1 μF VIN 100 kΩ V + 0 V V - 1 kΩ RL = 2 kΩ 1k 10k 100k 1M Output Voltage Signal, VO [Vp-p] Frequency, f [Hz] VO vs. f V + = +15 V V - = GND RL = 2 kΩ 6.8 V RL V + 1 kΩ 100 kΩ 1 μF VIN 100 120 10 100 1k 10k 100k 1M Common Mode Rejection Ratio, CMR [dB] Frequency, f [Hz] CMR vs. f V ± = ±15 V
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 7 of 10 2019.1.17 SR + SR - 0.1 0.2 0.3 0.4 -50 0 50 100 150 Slew Rate, SR [V/μs] Operating Ambient Temperature, TA [C] SR vs. TA V ± = ±15 V VO = ±10 V RL = 2 kΩ TA = -40 C TA = 25 C TA = 125 C 0.01 0.1 0.01 0.1 1 10 100 Output Voltage, VO [V] Output Sink Current, IOS I N K[mA] VO vs. IOS I N K V + = +15 V V + IO SINK VO V + /2 - TA = -40 C TA = 25 C TA = 125 C 0.01 0.1 1 10 100 Output Voltage to V+ - V ,⊿VO [V] Output Source Current, IO SOURCE[mA] ⊿VO vs. IO SOURCE IO SOURCE ⊿VO+ V + V + /2 V + = +15 V 0 2 04 06 08 0 Input Voltage, VIN [V] Time, t [μs] 4Output Voltage, VO [V] Pulse Response V + = +15 V V - = GND RL = 2 kΩ
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 8 of 10 2019.1.17 PRECAUTIONS The process of unused circuits If there is an unused circuit, the following connection is recommended. Process example of unused circuits Remark: A midpoint potential of V+ and V− is applied to this example. Ratings of input/output pin voltage When the voltage of input/output pin exceeds the absolute maxim um rating, it may cause degradation of characteristics or damage, by a conduction of a parasitic diode within an IC. In addition, if the input pin is lower than V−, or the output pin exceeds the power supply voltage, it is rec ommended to make a clamp circuit using a diode with low forward voltage (e.g.: Schottky diode) as protection. Range of common-mode input voltage When the supply voltage does not meet the condition of electri cal characteristics, the range of common- mode input voltage is as follows. V ICM (TYP.): V− to V+ − 1.5 (V) (TA = 25°C). During designing, do include so me tolerance by considering temperature characteristics and etc. Maximum output voltage The TYP. value range of the maximum output voltage when the supply voltage does not meet the condition of electrical characteristics is as follows: During designing, include some tolerance such as characteristics variation and temperature characteristics consideration and so forth. In addition, also note that the out put voltage range (V om+ − Vom−) will become narrow when an output current increases. Operation of output This IC output level consist of a class C push-pull. Therefore, when a load resistance is connected to the midpoint potential of V+ , V− , a crossover distortion occurs during the transition state of output current flow direction (source, sink). Handling of ICs When stress is added to the ICs due to warpage or bending of a board, the characteristic may fluctuates due to piezoelectric effect. Therefore, pay attention to warpage or bending of a board. To potentials within the range of common-mode in put voltage (VICM)
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 9 of 10 2019.1.17 PACKAGE DRAWINGS 14-PIN PLASTIC SOP P-SOP14-0225-1.27 PRSP00 14DI-A P14GR-50-225B 0.14 ITEM A B C D0 . 4 2 +0.08 -0.07 E F1 . 5 9 +0.21 -0.2 G1 . 4 9 H I J K0 . 1 7 +0.08 -0.07 L M N P3 ° +7° -3° 0.10 MILLIMETERS
1.42 MAX
1.27 (T.P) 0.1 ±0.1 10.2 ±0.26 6.5 ±0.2 4.4 ±0.1 1.1 ±0.16 0.6 ±0.2 0.1 Unit : mm NOTE Each lead centerline is located within 0.12 mm of its true position (T.P.) at maximum material condition. detail of lead end
μPC451, μPC324 R03DS0142EJ0100 Rev.1.00 Page 10 of 10 2019.1.17 14-PIN PLASTIC TSSOP P-TSSOP14-0225-0.65 PTSP 0014JB-A P14GR-65-9LG-1 - ITEM D E HE A A3 0.25 +0.06 -0.05 c L0 . 5 Lp +5° -3° e0 . 6 5 x0 . 1 0 y0 . 1 0 ZD 0.625 0.60 ±0.15 1.00 ±0.20 θ3 ° 1.20 MAX. 0.10 ±0.05 1.00 ±0.05 b0 . 2 4 0.145 ±0.055 MILLIMETERS 5.15 ±0.15 5.00 ±0.10 4.40 ±0.10 6.40 ±0.20 Unit : mm NOTE Each lead centerline is located within 0.10 mm of its true position at maximum material condition. detail of lead end
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(Note 2) “Renesas Electronics product(s)” means any product developed or manufactured by or for Renesas Electronics. 以下“注意事项”为从英语原稿翻译的中文译文,仅作为参考译文,英文版的“Notice”具有正式效力。 注意事项 1. 本文档中所记载的关于电路、软件和其他相关信息仅用于说明半导体产品的操作和应用实例。用户如在产品或系统设计中应用本文档中的电路、软件和相关信息或将此等内容用于其他目的时,请自行负责。对 于用户或第三方因使用上述电路、软件或信息而遭受的任何损失和损害,瑞萨电子概不承担任何责任。 2. 瑞萨电子在此明确声明,对于因使用瑞萨电子产品或本文档中所述技术信息(包括但不限于产品数据、图、表、程序、算法、应用实例)而造成的与第三方专利、版权或其他知识产权相关的侵权或任何其他索 赔,瑞萨电子不作任何保证并概不承担责任。 3. 本文档所记载的内容不应视为对瑞萨电子或其他人所有的专利、版权或其他知识产权作出任何明示、默示或其它方式的许可及授权。 4. 用户不得对瑞萨电子的任何产品进行全部或部分更改、修改、复制或反向工程。对于用户或第三方因上述更改、修改、复制或对瑞萨电子产品进行反向工程的行为而遭受的任何损失或损害,瑞萨电子概不承担 任何责任。 5. 瑞萨电子产品根据其质量等级分为两个等级:“标准等级”和“高质量等级”。 每种瑞萨电子产品的预期用途均取决于产品的质量等级,如下所示: 标准等级: 计算机、办公设备、通讯设备、测试和测量设备、视听设备、家用电器、机械工具、个人电子设备、工业机器人等。 高质量等级: 运输设备(汽车、火车、轮船等)、交通控制系统(交通信号灯)、大型通讯设备、关键金融终端系统、安全控制设备等。 除非是瑞萨电子数据表或其他瑞萨电子文档中明确指定为高可靠性产品或用于恶劣环境的产品,否则瑞萨电子产品不能用于、亦未授权用于可能对人类生命造成直接威胁的产品或系统及可能造成人身伤害的产 品或系统(人工生命维持装置或系统、植埋于体内的装置等)中,或者可能造成重大财产损失的产品或系统(太空系统、海底增音机、核能控制系统、飞机控制系统、关键装置系统、军用设备等)中。对于用 户或任何第三方因使用不符合瑞萨电子数据表、使用说明书或其他瑞萨电子文档的瑞萨电子产品而遭受的任何损害或损失,瑞萨电子概不承担任何责任。 6. 使用瑞萨电子产品时,请参阅最新产品信息(数据表、使用说明书、应用指南、可靠性手册中的“半导体元件处理和使用一般注意事项”等),并确保使用条件在瑞萨电子指定的最大额定值、电源工作电压范 围、散热特性、安装条件等范围内使用。对于在上述指定范围之外使用瑞萨电子产品而产生的任何故障、失效或事故,瑞萨电子概不承担任何责任。 7. 虽然瑞萨电子一直致力于提高瑞萨电子产品的质量和可靠性,但是,半导体产品有其自身的具体特性,如一定的故障发生率以及在某些使用条件下会发生故障等。除非是瑞萨电子数据表或其他瑞萨电子文档中 指定为高可靠性产品或用于恶劣环境的产品,否则瑞萨电子产品未进行防辐射设计。用户负责执行安全保护措施,以避免因瑞萨电子产品失效或发生故障而造成身体伤害、火灾导致伤害或损害和/或其他对公众 构成危险的事故。例如进行软硬件安全设计(包括但不限于冗余设计、防火控制以及故障预防等)、适当的老化处理或其他适当的措施等。由于对微机软件单独进行评估非常困难且不实际,所以请用户自行负 责对最终产品或系统进行安全评估。 8. 关于环境保护方面的详细内容,例如每种瑞萨电子产品的环境兼容性等,请与瑞萨电子的营业部门联系。用户负责仔细并充分查阅对管制物质的使用或含量进行管理的所有适用法律法规(包括但不限于《欧盟 RoHS指令》),并在使用瑞萨电子产品时遵守所有适用法律法规。对于因用户未遵守相应法律法规而导致的损害或损失,瑞萨电子概不承担任何责任。 9. 不可将瑞萨电子产品和技术用于或者嵌入日本国内或海外相应的法律法规所禁止生产、使用及销售的任何产品或系统中。也不可将瑞萨电子产品或技术用于(1)与大规模杀伤性武器(例如核武器、化学武器、生 物武器或运送此等武器的导弹,包括无人机(UAV))的开发、设计、制造、使用、存储等相关的任何目的;(2)与常规武器的开发、设计、制造或使用相关的任何目的;(3)扰乱国际和平与安全的任何其他目的, 并且不可向任何第三方销售、出口、租赁、转让、或让与瑞萨电子产品或技术,无论直接或间接知悉或者有理由知悉该第三方或任何其他方将从事上述活动。用户必须遵守对各方或交易行使司法管辖权的任意 国家/地区政府所公布和管理的任何适用出口管制法律法规。 10. 瑞萨电子产品的买方或分销商,或者分销、处置产品、或以其他方式向第三方出售或转让产品的任何其他方有责任事先向所述第三方通知本文档规定的内容和条件。 11. 在事先未得到瑞萨电子书面认可的情况下,不得以任何形式部分或全部再版、转载或复制本文档。 12. 如果对本文档所记载的信息或瑞萨电子产品有任何疑问,请向瑞萨电子的营业部门咨询。 (注1) 瑞萨电子:在本文档中指瑞萨电子株式会社及其控股子公司。 (注2) 瑞萨电子产品:指瑞萨电子开发或生产的任何产品。 http://www.renesas.comSALES OFFICES Renesas Electronics Corporation TOYOSU FORESIA, 3-2-24 Toyosu, Koto-ku, Tokyo 135-0061, Japan Renesas Electronics America Inc. 1001 Murphy Ranch Road, Milpitas, CA 95035, U.S.A. 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