UPC4558 NEC | Alldatasheet

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HIGH PERFORMANCE DUAL OPERATIONAL AMPLIFIER DESCRIPTION FEATURES The uPC4558 is a dual type operational amplifier © Internal frequency compensation having internal phase compensating circuits, its electri- ® Low noise cal characteristics features higher speed, broader © Output short circuit protection bandwidth, and lower noise compared with such con- ventional general purpose operational amplifier as HPC741. Therefore, application to active filters, audio ampli- fiers, VCO, etc. can be realized with simple circuit composition. CONNECTION DIAGRAM EQUIVALENT CIRCUIT {Top View) V2 CIRCUIT . m | a | J ——, Qs OUT: [s]v* Ae 1 cA ot Re Qs In OUT: bom Qs - £\\ wo Rs Rr = Re Inv [6] 2 v- fa] Inez oy Qs Qo ~ oOUT | D — Re Ra Re

ORDERING INFORMATION

PART NUMBER PACKAGE QUALITY GRADE HPCA55EC 8 PIN PLASTIC DIP (300 mil) uPC4558G2 8 PIN PLASTIC SOP (225 mil) Please refer to “Quality grade on NEC Semiconductor Devices” (Document number IEl-1209) published by NEC Corporation to know the specifications of quality grade ‘on the devices and its recommended applications. Document No. IC-11928 (O.D. No. IC-5394E) Date Published March 1993 M Printed in Japan

ABSOLUTE MAXIMUM RATINGS (Ta = 25 °C) a ee tr] [out Show creation ete [nto [Sereae Temperate Range wy | ato tes de Note 1. Reverse connection of supply voltage can cause destruction. Note 2. The input voltage should be allowed to input without damage or destruction. Even during the transition period of supply voltage, power on/off etc., this specification should be kept. The normal operation will establish when the both inputs are within the Common Mode Input Voltage Range of electrical characteristics. Note 3. This specification is the voltage which should be allowed to supply to the output terminal from external without damage or destructive. Even during the transition period of supply voltage, power on/off etc., this specification should be kept. The output voltage of normal operation will be the Output Voltage Swing of electrical characteristics. Note 4. Thermal derating factor is -5.0 mV / °C when ambient temperature is higher than 55 °C. Note 5. Thermal derating factor is -4.4 mV / °C when ambient temperature is higher than 25 °C. Note 6. Pay careful attention to the total power dissipation not to exceed the absolute maximum ratings, Note 4 and Note 5. RECOMMENDED OPERATING CONDITIONS [___“cranacrenisnie syst] [Sumvorse ed ELECTRICAL CHARACTERISTICS (Ta = 25 °C, V* = +15 V) [____cHaracteristic [sympouT min. [ typ. [ max. [unit [Testconpinion | [mew oreervorage | we |p os | so | wv [mom [new ee Cure WA | tp |p wf | [smo ncn ea | epi | souce Variation RescionRaio | svR |_| 30 | 60 | wN [Resto [owputvotage swing | ve | Ha [sw] |v [azom [Output Vokage Swing ‘| vom | vo | [| vara id [common Mode nut Votoge Range [ven [ve | wa] vw SS [StewRare sa to ve Pe [Input Equvalont Nate Votage | ve [ [6 || Wee [R= 1kan tT ro Ta —_| [channel Separation | ee fie | Note 7. Input bias currents flow out from IC. Because each currents are base current of PNP-transistor on input stage. When using these ICs, pay careful attention to the following points. 1. The total of the internal power dissipation, when the loads of both channels are short-circuited at the same time. 2. The likelihood of interference between the channels, due to the temperature gradient of the chip, when the internal power dissipation of the left and right channels differ greatly in circuits handling low level inputs.

Fig. 1 Noise Measurement Circuit +15V 100kQ2 ‘ent > Vo Vs tt 500 | ko -15V Fig. 2 Channel Separation Measurement Circuit

7 Vor

Channel separation . =|20-1og {1 Vor. 10kQ =f to (son Vor I 10kQ > ©Vor

TYPICAL PERFORMANCE CHARACTERISTICS (Ta = 25 °C, TYP.) POWER DISSIPATION OPEN LOOP FREQUENCY RESPONSE 600 120 REEEA-A--EH LTT ff fe esey Vt=415V 2 ol tt EE 8 00 . i eS EE sot TXT 8 of TEE 5 IN | oo eS PEL IKE LL 8 oo] TT SAL TT S 6 N oS ef | TK Em! ttt PrP NS Ty = 9 N BEE Eee gt TE EN Free) a OO | F 19 N\\

6 EEE EREE EH AEE ETI

LTT TT TT ett 0 N\\ 0 20 40 60 80 100 1 10 100 1k 10k 100k 1M 10M Ta- Ambient Temperature - °C f - Frequency ~ Hz LARGE SIGNAL FREQUENCY RESPONSE OUTPUT VOLTAGE SWING aur 2 ol —L, ; : g7 \\ E fe—oosqesi‘i id 100 1k 10k 100k 1M 100 1k 10k f -Frequency - Hz Ru - Load Resistance - Q INPUT BIAS CURRENT SUPPLY CURRENT <1 | LE g 5 s,, | | tT : a a 60 [S) 2 2 = a 40 a £ 1 970 oO 20 40 60 80 0 +10 +20 Ta- Ambient Temperature - °C V* — Supply Voltage - V

COMMON MODE INPUT VOLTAGE RANGE VOLTAGE FOLLOWER PULSE RESPONSE

20 LI 10

a —! E> 10 = 5 E> pe > ra € 0 s 0 So > s P= 88 a 5 1 10 UN —— os - I~ 4 205 +10 +20 ° 0 10 20 30 40 \\V* = Supply Voltage - V Time - ps INPUT EQUIVALENT NOISE VOLTAGE DENSITY 1000 g 2S 300 ‘ot \\ Zi ez B85 100 ag Ee 1 10 100 Tk f —Frequency — Hz

RIAA PREAMP (Av = 32.5 dB) TYPICAL CHARACTERISTIC Distortion 0.03 % (Vo = 1 Vrms, f = 1 KHz} 0.0022 pF 0.01 pe +18 _ Input Equiv., Input Short F Noise 1.0 bVims, ( Peak Det., Average Indication ) 36 kQ | 390 ka 00 ue = TOTAL HARMONIC DISTORTION a z ~ Te V*=215V sHap———ocoupt g Te = 25°C Input o- Nl ~- 33 pF 5 Riker 2.2 ka $ 10} — tke a {) + 2 ZT _ 2 T= 100 pF . 56kQS S1kQ + 10 ka zy, N 6 zB 0. a = 0.01 0.01 01 1.0 10 Vo ~ Output Voltage = Vrms PEAK LEVEL METER This circuit converts the peak voltage (about +10 mV to 10 7) of the input signal to a DC voltage (about 0.2 V to 1.3 V) and drives the meter. Since the output voltage is proportional to the logarithmic value of the peak voltage of the input signal, indication of a much wider dynamic range can be obtained compared to conventional linear indicating methods. 18953 ka ay +15V [ronal aa ° 20kQ S953} ° 40 dB to +5 dB (0. dB = 1 Vp) >> > eS reas f= 9 ie 6 o 4 100k 30ka_ By 30 ka gv 3 I 20k O 15 VO 200 kQ 3.3 pF 2 kQ 0.22 pF Log-Compression Ful-wave Rectification Peak Hold Meter Amp

8PIN PLASTIC DIP (300 mil) 8 5 1 4 A K H i > VOI OY oF | = Foy mil cB M 0~15° D P8C-100-3008,¢ 1) Each lead centerline is located within 0.25 mm (0.01 inch) of its true position (T.P.) at 0.400 MAX, maximum material condition. [ 8 | 127MAx. | 0.050 MAX. — item “K” to center of leads when forme Toro ater parallel. [© | osore | 0.02078 88 i 4.31 MAX. | 0.170 MAX. 5.08 MAX. 0.200 MAX. | ~ fe ee ec

8 PIN PLASTIC SOP (225 mil)

THe & C1 O Oo 7 a A H © —_ J a | Ge fo OTT Ly 2, a\\ D _ ; S8GM-50-225B-2 NOTE iTem| MILLIMETERS INCHES Each lead centerline is located within 0.12 mm (0.006 inch) of its true position (TP) at D 0.404348 0.016*3:383 E 0120.1 0.004+0.004 G 1.49 0.059 ' 44 0.173 J ie 0.043 M 0.12 0.005

RECOMMENDED SOLDERING CONDITIONS The following conditions (see table below) must be met when soldering this product. Please consult with our sales offices in case other soldering process is used, or in case soldering is done under different conditions. TYPES OF SURFACE MOUNT DEVICE For more details, refer to our document “SEMICONDUCTOR DEVICE MOUNTING TECHNOLOGY MANUAL” (IEI-1207). [ uPC4558G2 | Soldering . cae, Recommended Infrared ray reflow Peak package's surface temperature: 230 °C or below, Reflow time: 30 seconds or below (210 °C or higher), 1R30-00-1 Number of reflow process: 1, Exposure limit*: None VPS Peak package's surface temperature: 215 °C or below, Reflow time: 40 seconds or below (200 °C or higher), VP15-00-1 Number of reflow process: 1, Exposure limit*: None Wave soldering Solder temperature: 260 °C or below, Flow time: 10 seconds or below WS15-00-1 Number of flow process: 1, Exposure limit*: None Partial heating method | Terminal temperature: 300 °C or below, Flow time: 10 seconds or below, Exposure limit*: None ~*: Exposure limit before soldering after dry-pack package is opened. Storage conditions: 25 °C and relative humidity at 65 % or less. Note: Do not apply more than a single process at once, except for “Partial heating method”. TYPES OF THROUGH HOLE DEVICE [ uPC4558C ] Soldering . eae Recommended Soldering conditions condition symbol Wave soldering Solder temperature: 260 °C or below, Flow time: 10 seconds or below i

[MEMO] No part of this document may be copied or reproduced in any from or by any means without the prior written consent of NEC Corporation. NEC Corporation assumes no responsibility for any errors which may appear in this document. NEC Corporation does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a device described herein or any other liability arising from use of such device. No license, either express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Corporation or others. The devices listed in this document are not suitable for use in aerospace equipment, submarine cables, nuclear reactor control systems and life support systems. If customers intend to use NEC devices for above applications or they intend to use "Standard" quality grade NEC devices for applications not intended by NEC, please contact our sales people in advance. Application examples recommended by NEC Corporation. Standard: Computer, Office equipment, Communication equipment, Test and Measurement equipment, Machine tools, Industrial robots, Audio and Visual equipment, Other consumer products, etc. Special: Automotive and Transportation equipment, Traffic control systems, Antidisaster systems, Anticrime systems, etc. M4 92.6