MC33004 STMICROELECTRONICS | Alldatasheet
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Ay, fT SGS -THOMSON MC34004/A/B MICROELECTRONICS MC35004/A/B a eSeSSSSSSSSSSSSMS EPO ES GENERAL PURPOSE QUAD J-FET OPERATIONAL AMPLIFIERS sss m LOW POWER CONSUMPTION = WIDE COMMON-MODE (UP TO Vcc*) AND DIFFERENTIAL VOLTAGE RANGE = LOW INPUT BIAS AND OFFSET CURRENT = OUTPUT SHORT-CIRCUIT PROTECTION = HIGH INPUT IMPEDANCE J-FET INPUT STAGE = INTERNAL FREQUENCY COMPENSATION N = LATCHUP FREE OPERATION DIP14 = HIGH SLEWRATE : 16Vius (typ) (Plastic Package) D $014 (Plastic Micropackage)
DESCRIPTION
These circuits are high speed J-FET input quad ORDER CODES operational amplifiers incorporating well matched, high voltage J-FET and bipolar transistors in a ge monolithic integrated circuit. = 5 |u| o | The devices feature high slew rates, low input bias MC34004/A/B 0 be +70 c iz and offset current, and low offset voltage tempera- MC33004/A/B 40°C, +105°C S ture coefficient. MC35004/A/B 55°C, +125°C 3 PIN CONNECTIONS (top view) YS) Output1 1 (] 1] 14 Output 3 Inverting Input 1 2 ds <p 13° Inverting Input 3 Non-inverting Input? 3 LJ 1] 12 Non-inverting Input3 Ver 4 [J 14 vec Non-inverting Input 2 5 > <h 10 Non-inverting Input 4 Inverting Input 2 6 | Py: 9 Inverting Input 4 Output 2 7 (] 1] 8 Output 4 4 i February 1996 10 SSeS M@@ 7529237 0079394 boT
MC33004/A/B - MC34004/A/B - MC35004/A/B SCHEMATIC DIAGRAM (each amplifier) - isles Invertins — (1) output | LE V4 MC34004 Von CI g cc i ABSOLUTE MAXIMUM RATINGS [Symbor[SSSSCSCSC*aramter SS SSSCdYCSCSCSae ——*d'C] Supply Voltage - (note 1) Input Voltage - (note 3) Differential Input Voltage - (note 2) |_ Pex _| Power Dissipation |__| Output Short-circuit Duration (note 4) [infinite Toper | Operating Free Air Temperature Range MC34004, A, B 0 to 70 er MC33004, A, B 40 to 105 z MC35004, A, B ~55 to 125 8 Storage Temperature Range -65 to 150 3 Notes : 1. All voltage values, except diffe itial voltage, are with re to the af level (ground) of the It where the zero reference levels tho mispontbetwoen Veet and Veo’, >on? =X6l (around) of the supply valagos 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 dissipation rating is not exceeded. mM 7929237 0079395 Sib
MC33004/A/B - MC34004/A/B - MC35004/A/B USE Er ee errr = SOS
ELECTRICAL CHARACTERISTICS
Vcc = +15V, Tamb = 25°C (unless otherwise specified) MC35004A,B MC35004 MC33004A,B MC33004 Parameter MC34004A,B MC34004 Vio Input Offset Voltage (Rs $ 10k) mV Tamp = 25°C 10 MC35004B, MC34004B, MC33004B 5 MC35004A, MC34004A, MC33004A 2 Trin, $ Tam S Tmax. 13 MC35004B, MC34004B, MC33004B 7 MC35004A, MC34004A, MC33004A 4 Input Offset Vatiage Dri Oo Input Offset Current * Tamb = 25°C 100 pA Trin. S Tam S Tmax. 4 nA Input Bias Current * Tamb = 25°C. Trin. S Tam $ Tmax. Ava Large Signal Voltage Gain (Ru = 2kQ, Vo = +10V) VimV ‘amb = 25°C 25 Trin. S Tam $ Tmax. 15 SVR | Supply Voltage Rejection Ratio (Rs < 10k) Tam = 25°C 80 70 | 86 Tmin. $ Tamb S$ Tmax. 80 70 lec Supply Current, per Amp, no Load Tamb = 25°C 14 14 Trin. $ Tam $ Tmax. “12 “12 CMR | Common Mode Rejection Ratio (Rs < 10k) Tamb = 25°C 80 70 Tmin. $ Tam $ Tmax. 80 70 Output Short-circuit Current mA Tamb = 25°C 10 60 60 Trin. $ Tam S Tmax. 10 60 60 +Vope | Output Voltage Swing v Tame = 25°C R= 2kQ 12 Ri = 10kQ 13.5 Trin. S$ Tam $ Tmax. Ro= 2kQ Ri = 10kQ Slew Rate i = 10V, Ru = 2kQ, Cy = 100pF, Vius Tamb = 25°C, unity gain) Rise Time (Vin = 20mV, Fi = 2k, C.= 100pF, Tamb = 25°C, unity gain) Kov Overshoot Vin = 20mV, Ri = 2kQ, Ci = 100pF, % Tam = 25°C, unity gain) 10 Gain Bandwidth Product (f = 100kHz, MHz Tame = 25°C, Vin = 10MV, Ri = 2kQ, C= 100pF) 4 4 THD | Total Harmonic Distortion (f = 1kHz, Ay = 20dB, % Ri = 2kQ, Ci = 100pF, Tamb = 25°C, Vo = 2Vpp) Equivalent Input Noise Voltage nv (f = 1kHz, Rs = 1000) 15 THz P Channel Separation (Avi = 100) | [ro] | [rol | # * The input bias currents are junction leakage currents which approximately double for every 10°C increase in the junction temperature. 310 EG 4 M@@ 7929237 0079396 4s2 a
MC33004/A/B - MC34004/A/B - MC35004/A/B MAXIMUM PEAK-TO-PEAK OUTPUT MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS FREQUENCY VOLTAGE VERSUS FREQUENCY 5 ace Tl Nissen » ae ae iN sect Bz \\ ‘amb = +25°C] iI ‘amb = +25°G E SCOMCTMICTTINSseeesd B= Ti TINS BF 8 ce ee TTT ge UU a oe otters UCN TI ce eeereeed | LT TTT
2 LUVIN THT ISS CTI TINT TSS
E 100 1K 10K 100K 1M 10M » 2 100 1K 10K 100K. 1M 10M 8 FREQUENCY (Hz) a FREQUENCY (Hz) 3 MAXIMUM PEAK-TO-PEAK OUTPUT MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS FREQUENCY VOLTAGE VERSUS FREE AIR TEMP. g. =H see Fre 2 5 ae aa se CONN tl | Se @ ep CUI Nese IM BE ae zo 10 ql gh 10 aa eS OMMINNOITM = 88 ee a 2 oUecvse AUR SS [sce TDL 3 10k 40k 100k 400k 1M 4M 10M 2 as -50 -25 0 25 50 75 -50 125 2 FREQUENCY (Hz) 2 TEMPERATURE (°C) ; MAXIMUM PEAK-TO-PEAK OUTPUT MAXIMUM PEAK-TO-PEAK OUTPUT VOLTAGE VERSUS LOAD RESISTANCE VOLTAGE VERSUS SUPPLY VOLTAGE
5 Tey rooms
x. 20 = it _| g 20 [| Ty ee SLAM s**t ooo a eC ZUM) 88 “Ceo s ALUMINIUM gs “Pepper 3 a> 5 g oALIUTTT g° * 0.10.2 04 071 2 4 7 10 e & 0 2 4 6 8 10 12 14 16, LOAD RESISTANCE (k ) : 2 SUPPLY VOLTAGE (+V) ; % a Mm 7929237 007939? 399
MC33004/A/B - MC34004/A/B - MC35004/A/B ——eeSSSSSSSSSSSSSSSSSSSSM©33004/A/B - MC34004/A/B - MC35004/A/B INPUT BIAS CURRENT VERSUS, LARGE SIGNAL DIFFERENTIAL FREE AIR TEMPERATURE VOLTAGE AMPLIFICATION VERSUS FREE AIR TEMPERATURE aS ——> == < 10 bec a ee ee a w 20 SS
5 SSS Se io Lf
- jf YY 35 oo 5 == Se SS 2 ae a | 3 ————— eS jo Ev -tov [ Jt Ty ee ee eee a i ee 5 1 ee 50-25 0 «25 «80 «75100 125 75 50 25 0 2 8 75 100 125, TEMPERATURE (°C) g ‘TEMPERATURE (°C) 3 LARGE SIGNAL DIFFERENTIAL TOTAL POWER DISSIPATION VERSUS VOLTAGE AMPLIFICATION AND PHASE FREE AIR TEMPERATURE SHIFT VERSUS FREQUENCY 250 io rt {i Voc = t5V tot 15V = 225 -f;) Veg = £ 15¥ gy. 1°) TS R= 2kQ = 200 es es a 5B ot ON eee od es fe is NaN ee 8 eS ES Sn A ns ers ee a 65 2 - Ce a BSL maseowr | oT NON = 2 Beer 5 10 (wom soak) rtLINY & pg a | S 180 z oo Ltt TT TT 1 10 100 1k 10k 100k 1M 10M e 2 75 50 25 0 25 60 75 100 125, FREQUENCY (Hz) 2 TEMPERATURE (°C) 3 3 g a B SUPPLY CURRENT PER AMPLIFIER SUPPLY CURRENT PER AMPLIFIER VERSUS FREE AIR TEMPERATURE VERSUS SUPPLY VOLTAGE 2.0 2.0 og a Z te[Ta-eeol [| — TT] 2 we PE EEE veces 2 1.4 | Noload a 5 «2H ttt ee = 4 a 6 , | PPP me 5 vot TPT fe oft tt yt) 8 8p 8S ee Pt Pr B88 Foof {tt T tT PP s Beer ae ee ee | ® ot |} | tT TTT Ty o LTT Trt Ty ot tt TTT TT] 75 50 25 0 2 80 75 100 125% 2 4 6 8 10 12 14 168 ‘TEMPERATURE (°C) 3 SUPPLY VOLTAGE ( +V) i Ea Es &r 5/10 TT ES ETERS ON $$ mm 7929237 0079398 2e2csS
MC33004/A/B - MC34004/A/B - MC35004/A/B ——erm—s' 00008000 OO COMMON MODE REJECTION RATIO VOLTAGE FOLLOWER LARGE SIGNAL VERSUS FREE AIR TEMPERATURE PULSE RESPONSE had s To 3 opicest tt ete eT TI ze =H 4 CPeREEERS (EOP ee wt LTT TT TT 8. CL A poe eg ee ee eee gs wf litt TTT 3 (Pp tie 3 At | @ weL LTT TT TT) 5 Eg eee EAE] 8 75 $0 25 0 2 50 75 100 125 2 © 05 1 #15 2 25 3 35 TEMPERATURE (°C) : TIME ( pis) i E : OUTPUT VOLTAGE VERSUS EQUIVALENT INPUT NOISE VOLTAGE ELAPSED TIME VERSUS FREQUENCY 28 70 «Et fff > Cy Pee Hg, SCs | ee tA Be SONIC Tl BS pte gE 3 CONIC 2 | e 5 COMIN ao 5 olay i tT [Rio 57 B00 tes a a ee Ti 0 01 02 03 04 05 06 O7% 10 40 100 400 tk = 4k 10k 40k 100k TIME ( jts) : FREQUENCY (Hz) = i i TOTAL HARMONIC DISTORTION VERSUS FREQUENCY 1 Sa z Vee diy =—H arin S04 Fayed oer — PtH Sor Loma LTT TTT g ~ ee a 2 a 1 NY 8 — oooy L—LETI TTT CT 100 400 1k 4k 10k 40k 100k FREQUENCY (Hz) s j @® 7929237 0079395 1b]
MC33004/A/B - MC34004/A/B - MC35004/A/B PARAMETER MEASUREMENT INFORMATION Figure 1 : Voltage Follower Figure 2 : Gain-of-10 Inverting Amplifier 10k Q - kQ Lt MC34004 © & 4 MC34004, © & o4+ i i TYPICAL APPLICATIONS AUDIO DISTRIBUTION AMPLIFIER fo = 100kHz 4 | imMQ MC34004 © Output A { y V4 | : 1pF MC34004 Input O—] + Mc34004 © Output B 100k Q | | 100k Q y 100k Q L_F-O Vogt
100 PF -
| 100k Q 14 mc34004 © Output g y B mm 7929237 0079400 703
MC33004/A/B - MC34004/A/B - MC35004/A/B TYPICAL APPLICATIONS (continued) POSITIVE FEEDBACK BANDPASS FILTER 1eka zopr_ + — 220pF Ko rn 22k 20k 4aka 30K0 we ot cos tom Ly] es 220pF —y | 220pF LN | wel aa mel ve = i Ground Output g i OUTPUT A OUTPUT B KK A : Ba \\ 7 4 SECOND ORDER BANDPASS FILTER 8 CASCADED BANDPASS FILTER 8 fo = 100kHz ; Q = 30; Gain = 4 5 fo = 100kHz ; Q = 69; Gain = 16 5 a/t0 Gy 8s"
8 SESS A
MC33004/A/B - MC34004/A/B - MC35004/A/B MC 3004/88 - MIC 4004/08 - MC35004/A/B PACKAGE MECHANICAL DATA
14 PINS - PLASTIC DIP
7] ; a | D PL ti ei rl Co) Cr) LILI LI CLI CI CT CI 3 | Pimensions | — fg, —] meant | ee | <a F< OS SC XC pot os tots S—S a OO 1 [Os poe as ots SSS a HO > CY a a CE ZX TO YT a a SO BY c [2 ar aos S~C*d:C*éi tO ~*YdSS mM 7929237 0079402 5S&b
MC33004/A/B - MC34004/A/B - MC35004/A/B PACKAGE MECHANICAL DATA
14 PINS - PLASTIC MICROPACKAGE (SO)
L & o ee | QUO 4 b Le | < b-] E D u 1 {}_ {) fi [i f) fi] a = UOUUUCOO a [Min typ, Max | Min. Typ. Max. | Po 00869 [oat 0.004 008 Pa 0.063) a SS BX) Jot | ote 05 0007 0.010] pos 020 a 0) Poo ess as ose a poe Pa 0.050 pes P6300 PoP 0 0ts0 057 Po ae soar 208 | poe Po a7 0020 0.050 po op .0827 Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsi- bility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from Its use. No licence is granted by implication or otherwise under any patent or patent rights of SGS-THOMSON Microelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. SGS-THOMSON Microelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of SGS-THOMSON Microelectronics. © 1996 SGS-THOMSON Microelectronics - All Rights Reserved ‘SGS-THOMSON Microelectronics GROUP OF COMPANIES: 3 Australia - Brazil - France - Germany - Hong Kong - Italy - Japan - Korea - Malaysia - Malta - Morocco - The Netherlands g ‘Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A. 3 10/10 yr 858! oS SR 8 m 7929237 0079403 412 a