TCA332 SIEMENS | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 7
Technical content
Singie Operational Amplifier with TCA 332 E Darlington Input TCA 335 Features Bipolar IC @ High input impedance @ Wide common-mode range @ Large supply-voltage range @ Large control range @ High output current Soe © Simple frequency compensation iN @ Wide temperature range (TCA 332) @ NPN Darlington input @ Open collector output P0106
Applications
© Amplifier @ Comparator @ Level converter Q @ Impedance converter @ Driver P-0s0-6 BEITCA 332A Q67000-A2272 P-DIP-6 - @ TCA332G Q67000-A2270 P-DSO 6 (SMD) orange/yellow METCA 335A Q67000-A563 P-DIP-6 - BATCA 335G Q67000-A1018-G403 P-DSO-6 blue/yellow ™@ =Not for new design For TCA 315 and TCA 325 see chapter “Comparators”. These op amps are particularly economic and versatile. Owing to their excellent performance characteristics they are well suited for a wide scope of applications, such as measuring and control engineering, automotive electronics, AF circuits, analog computers, etc. The low input current of these amplifiers is particularly advantageous for application in measuring and control systems. 7 75 8.90
rt ——t—-F OK Input o Frequency / compensation output sIngut o—=— '- {« + + ~o-l Pin Configurations (top view) TCA 332 A TCA 332 G TCA 335 A TCA 335 G B Frequency 1 6 “1 compensation sept Devs + 4 Frequenc Input 2| 5 Output input rT Compensction “Input 3| Ve % Output Connection Diagram or, ‘ I 1 | Pew C. = output frequency compensation not | R, =load resistance (collector resistance) -Inpul i i Output olnput ii | ° u —o-Vs Siemens Aktiengesellschaft 76
Absolute Maximum Ratings E Parameter Limit Values Unit Supply voltage £16 v Differential input voltage: Vs = 13 to 15 V Vio £13 v Differential input voltage: Vs= 2to 13V Vio Vs v Junction temperature 7 160 °C Storage temperature range Tate —55 to 125 °C Thermal resistance system ~ air TCA 332 A Ransa Kw TCA 332G Rinsa Kw Operating Range Supply voltage #2to+15 Vv Characteristics Vz=45Vtot15V R. = 2 kQ, unless otherwise specified Limit Values | Umit Values Th = 25°C Th= 55 t0125°C | Parameter Symbol | min. | typ. | max. | min. | max | Unit Open-loop supply current consumption Is 18 | 25 25 | ma Input offset voltage Vo 15 | mv Rg =50Q Input offset current To 10. | nA Input current I 25 | nA Input current h nA Vip = £13.V Control range Vo = 15 V Yoon | 149 -140 | 148 | -140 | v R, =620.0, Vg=+15V Vopo | 149 -125 | 148 | -120 |v Vg = +15 V, f= 100 KHz Va pp £10 Vv Siemens Aktiengesellschatt 7
V;= +5 V to +15 V; R.=2kQ, unless otherwise specified ” - "Limit Values ~ Limit Values Th = 25°C T= ~55 to 125°C Input impedance Z MQ. f=1 kHz Open-loop | voltage gain f= 1 kHz Go | 80 | 83 7 dB Ry = 10 kQ, f= 1 kHz Gvo 88 3B f=1MHz Gyo 4a) ce Common-mode input voltage range Vc —Vs+2 Ve-2 | —Ve+3| Ve-3 | V Common-mode rejection lkeua | 75 70 3B RL=2kQ | Supply voltage | rejection ksva 25 200 200 | ww Gy=100 Temperature coefficient of Yio a0 12 | 50 50 ww Re = 500 ‘Temperature coefficient of Tio | aio 50 PAIK Ro= 500 ~ 1 _ | — Slew rate | sr 9 vias of Ve for non-inverting operation’) | (see TAA 765, test circuit 1) | Slew rate SR 18 | Vins of Vo for inverting operation’) (see TAA 765, test circuit 2) Output saturation | Vosat Vv voltage Ig= 10 mA Characteristics Ve=+2V,R.=2kQ Input offset voltage Yo mv R= 500 Input offset current lho -5 5 -10 | 10 nA Input current i 5 15 | 25 nA Open-loop voltage gain Gio | 75 zo | dB f= 1 kHz | 1) For the relationship between power bandwidth and slew rate refer to “Introduction to Operational Amplifiers” Siemens Aktiengeselischatft 78
Absolute Maximum Ratings E Supply voltage £15 v Output current Tg 70 mA Differential input voltage: Vs = 13 to 15 V Yio £13 v Differential input voltage: Vs= 2 to 13 V Vio £Vs v Junction temperature I, 180 °¢ Storage temperature range Tote —55 to 125 °C Thermal resistance system ~ air TCA 335A Rinsa 118 Kw TCA 335 G Rinse 200 KW Operating Range Supply voltage £2toz15 v Ambient temperature —26 to 85 °C Characteristics Vg=+5Vtot15V;R, =2kQ, unless otherwise specified Limit Values | Limit Values: Ty = 25°C Th = 25 to 85°C Parameter Symbol | in| yp. | max | min | mex Unt Open-loop supply { current consumption Is 25 | ma Input offset voltage Vio -18 mv Rg =50Q Input offset current To to | -20 [20 |na Input current 1 25 35 | nA Input current 1 200 nA Vp = #13V | Control range | Vs=+15V Yop | 14.9 -140 | 148 | -140] Vv R, = 6200, Vo=+15V Vopo | 149 -125 | 148 | -120| v Vs = + 15 V, f= 100 kHz Vo pe +10 v Siemens Aktiengesellschaft 79
Vs = £5V to +15 V; RL =2kQ, unless otherwise specified Limit Values Limit Values Ta = 25°C Th =-25 to 85°C Parameter symbol min, [wp [max | min | max | Uni Input impedance 2, 3 MQ fatkhe a | fo Open-loop voltage gain i] { f=1 kHz Gyo 75 ao | 75 dB Ry = 10 kQ, f= 1 kHz Gyo 85 dB foi MHz vo a | sB_ Common-mode input | voltage range [Me Ve42 Ve-2 | -Vs+3| Vs—3 | V Commonsnede ejection [tem 70/7 fo Supply voltage rejection ksva nv Gy= 100 ‘Temperature coefficient of Vio yi0 HWK R= 50Q Temperature coefficient of Jig 10 PAIK R= 502 Slew rate SR vias of Vg for non-inverting operation!) | (see TAA 765, test circuit 1) | Slew rate sR vis of Va for inverting operation’) (see TAA 765, test circuit 2) ‘Output saturation voltage Vosat v Ig= 10 mA Output overs Sent a Characteristics Vz=+2V,R_=2kQ Input offset voltage Vio =17 17 mv Rg =50Q Input offset current To —20 nA Inputcurrent i a nA Open-loop voltage gain Gyo 70 70 dB f=1 kHz 1) For the relationship between power bandwidth and slew rate refer to “Introduction to Operational Amplifiers” Siemens Aktiengeseilschaft 80
Input current versus Input current versus E ambient temperature supply voltage R.=2kQ Th= 25°C; RL =2 KD nA nk h | h i TT | i \\ Lj} i | TT bt TS | | iL = » oe Bo B SO 1 WO 125 90 a 5 t BY —-h +4 Input offset voltage versus supply voltage av an | TOT TT ] Ye - {ot \\ | it sof ft 2+ { | f . - 4 | DY ju - a eee ae fe LL! L-—- ——) te 0 5 0 BY ey ‘Siemens Aktiengesellschatt at